IP113MLF-DS-R08 [ETC]
Managed 10/100Base-TX / FX Media Converter; 管理的10 / 100Base - TX / FX光纤收发器型号: | IP113MLF-DS-R08 |
厂家: | ETC |
描述: | Managed 10/100Base-TX / FX Media Converter |
文件: | 总58页 (文件大小:705K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
IP113M LF
Preliminary Data Sheet
Managed 10/100Base-TX / FX Media Converter
Features
General Description
ꢀ
A 10/100BASE-TX/ 100BASE-FX converter
IP113M LF can be
a
10/100BASE-TX to
with a SMI port for management
Built in a 10/100BASE-TX transceiver
Built in a PHY for 100BASE-FX
Built in a 2-port switch
100BASE-FX converter with an SMI port for
management. It consists of a 2-port switch
controller, a fast Ethernet transceiver and a PHY
for 100BASE-FX. The transceivers in IP113M LF
are designed in DSP approach with advance
0.25um technology; this results in high noise
immunity and robust performance.
ꢀ
ꢀ
ꢀ
–
–
–
–
Pass all packets without address and
CRC check (optional)
Supports modified cut-through frame
forwarding for low latency
Supports pure converter mode data
forwarding for extreme low latency
Supports flow control for full and half
duplex operation
IP113M LF not only supports store and forward
mode, it also supports modified cut through mode
and pure converter mode for low latency data
forwarding. IP113M LF can transmit packet(s) up
to 1600 bytes to meet requirement of extra long
packets.
–
–
–
Bandwidth control
Max packet length 1600 bytes
Optional forward fragments
ꢀ
ꢀ
Built in 128Kb RAM for data buffer
Supports 3.3v I/O tolerance SMI (MDC, MDIO)
and MII registers for management
IP113M LF supports remote management function.
IP113M LF supports remote access functions and
it also supports remote monitor and loop back test
function defined in TS-1000 spec (*). Local
IP113M LF can access the MII registers of remote
IP113M LF by programming local IP113M LF’s MII
registers via SMI connection. IP113M LF
implements the management function using the
maintenance frame defined in TS-1000 spec.
–
–
–
Configure local and remote IP113M LF
through local SMI
Monitor local and remote IP113M LF
through local SMI
Configure/ monitor TP port support
(auto-negotiation or force 10M/100M,
full/half)
–
–
Configure/ monitor flow control, bandwidth
Supports loop back test (In-band or
out-band, auto or program)
The maintenance frame is compliant to
TS-1000 standard (the
IP113M LF supports IEEE802.3x, collision base
backpressure, and various LED functions, etc.
These functions can be configured to fit the
different requirements by feeding operation
parameters via EEPROM interface or pull
up/down resistors on specified pins.
–
Telecommunication Technology
Committee, TTC)
ꢀ
ꢀ
ꢀ
ꢀ
ꢀ
ꢀ
Supports Statistic Counters
Supports auto MDI-MDIX function
Supports link fault pass through function
Supports far end fault function
LED display for link/activity, full/half, 10/100
Built in a watchdog timer to monitor internal
switch error
ꢀ
ꢀ
ꢀ
ꢀ
ꢀ
Supports EEPROM Configuration
0.25u CMOS technology
Single 2.5V power supply
48-pin LQFP package
Support Lead Free package (Please refer to the
Order Information)
* The Telecommunication Technology Committee
owns the copyright of TS-1000.
1/58
April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Contents
Features....................................................................................................................................................... 1
General Description..................................................................................................................................... 1
Contents ...................................................................................................................................................... 2
Revision History........................................................................................................................................... 4
Block Diagram ............................................................................................................................................. 5
Application Diagram .................................................................................................................................... 5
Applications ................................................................................................................................................. 6
Managed converter (up to 31 pieces of IP113M LF in a chassis) ............................................................... 6
Un-managed converter................................................................................................................................ 6
PIN Diagram................................................................................................................................................ 7
1.
PIN Description................................................................................................................................... 8
PIN Description (continued).............................................................................................................. 9
PIN Description (continued)............................................................................................................ 10
PIN Description (continued).............................................................................................................11
PIN Description (continued)............................................................................................................ 12
PIN Description (continued)............................................................................................................ 13
Functional Description ...................................................................................................................... 14
2.1 Data forwarding ................................................................................................................ 14
2.1.1 Modified cut-through mode................................................................................... 14
2.1.2 Pure converter mode............................................................................................ 14
2.1.3 Fragment forwarding ............................................................................................ 14
2.2 TP port force mode........................................................................................................... 15
2.3 Remote management....................................................................................................... 16
2.3.1 Maintenance frame format at MII ......................................................................... 16
2.3.2 Bit definition of maintenance frame...................................................................... 16
2.3.3 Bit definition of maintenance frame (continued)................................................... 17
2.3.4 Remote monitor.................................................................................................... 18
2.3.5 Remote control read............................................................................................. 18
2.3.6 Remote control write............................................................................................. 18
2.4 Loop back test .................................................................................................................. 19
2.4.1 Out-band loop back test ....................................................................................... 19
2.4.2 In-band loop back test.......................................................................................... 21
2.4.3 Programming procedure for In-band loop back test............................................. 22
2.4.4 Auto in-band loop back test.................................................................................. 22
2.5 Remote monitor without SMI programming...................................................................... 23
2.5.1 Auto sends (Status change notice)....................................................................... 23
2.6 Link fault pass through ..................................................................................................... 24
2.6.1 Normal case ......................................................................................................... 24
2.6.2 Remote TP port disconnected.............................................................................. 24
2.6.3 FX port disconnected .............................................................................................. 25
2.6.4 LED diagnostic functions for fault indication ........................................................ 25
2.7 EEPROM – store the initial value..................................................................................... 26
2.8 Auto MDI_MDIX................................................................................................................ 27
2.9 Serial management interface............................................................................................ 28
MII registers ...................................................................................................................................... 29
3.1 The basic MII registers ..................................................................................................... 30
The basic MII registers 0................................................................................................ 30
The basic MII registers 1................................................................................................ 32
The basic MII registers 1(continued).............................................................................. 33
The basic MII registers 2 , 3........................................................................................... 34
The basic MII registers 4................................................................................................ 35
The basic MII registers 5................................................................................................ 36
2.
3.
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April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
The basic MII registers 6................................................................................................ 37
3.2 Extended MII registers and EEPROM registers............................................................... 38
Extended MII registers and EEPROM registers 16........................................................ 39
Extended MII registers and EEPROM registers 17........................................................ 40
Extended MII registers and EEPROM registers 17(continued)...................................... 41
Extended MII registers and EEPROM registers 18........................................................ 42
Extended MII registers and EEPROM registers 19........................................................ 43
Extended MII registers and EEPROM registers 20........................................................ 44
Extended MII registers and EEPROM registers 20(continued)...................................... 45
Extended MII registers and EEPROM registers 21........................................................ 46
Extended MII registers and EEPROM registers 22........................................................ 47
Extended MII registers and EEPROM registers 22(continued)...................................... 48
Extended MII registers and EEPROM registers 23........................................................ 49
Extended MII registers and EEPROM registers 23(continued)...................................... 50
Extended MII registers and EEPROM registers 24........................................................ 51
Extended MII registers and EEPROM registers 25........................................................ 52
Extended MII registers and EEPROM registers 26........................................................ 53
Extended MII registers and EEPROM registers 27,28,29,30......................................... 54
Extended MII registers and EEPROM registers 31........................................................ 55
Electrical Characteristics .................................................................................................................. 57
4.1 Absolute Maximum Rating................................................................................................ 57
4.2. DC Characteristic ............................................................................................................ 57
Order Information.............................................................................................................................. 57
Package Detail.................................................................................................................................. 58
4.
5.
6.
3/58
April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Revision History
Revision #
Change Description
IP113M LF-DS-R01 Initial release.
IP113M LF-DS-R02
IP113M LF-DS-R03
IP113M LF-DS-R04 Remove Operation Junction Temperature.
IP113M LF-DS-R05 TP port should be linked at 100M full duplex when working at this mode.
IP113M LF-DS-R06 Update page 42,1
IP113M LF-DS-R07 Add the order information for lead free package.
Update page 50 (Item:31.2 & 31.3)
IP113M LF-DS-R08 Update page 27
Update the default value of following resisters
MII reg3.[5:4], reg4.10, reg6.2, reg16.6, reg18.3, reg18.13, reg22.4, reg22.6,
reg23.13 and
Description of reg26.0
Add explanation to MII reg31.[5:4], reg31.3, reg31.2
IP113M LF-DS-R09 Revise the diagram.
IP113M LF-DS-R10 Modify the IPL : pull-low and IPH : pull-high on page 8.
Add Power Pin description on Page13
IP113M LF-DS-R11
4/58
April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Block Diagram
MDC
MDIO
SSRAM
PLL/ Clock
Generator
MII registers
FXSD
RXIP
RXIM
TXOP
FXRDP
FXRDM
FXTDP
FXTDM
10/100M TX
PHY
MII
MII
Two port switch
100M FX
TXOM
Forward Mode
Control
EEPROM
I/F
SCL
SDA
LED
I/F
LED
Remote
Control
Application Diagram
FX
Fiber Module
IP113M LF
TX
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April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Applications
Managed converter (up to 31 pieces of IP113M LF in a chassis)
VCC
FAST_FWD
MDC, MDIO
IP113M LF
uC
(for management)
X 1
X 31
Un-managed converter
10BASE_T/1
00BASE-TX
PHY1
PHY2
SWITCH
100BASE-FX
RAM
IP113M LF
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April 9, 2007
IP113M LF-DS-R11
Copyright © 2004, IC Plus Corp.
IP113M LF
Preliminary Data Sheet
PIN Diagram
36
LED_FX_LINK/ FX_FULL
AVCC
1
2
3
4
35
34
BGRES
GND_IO
VCC_IO
AUTO_TEST
33
32
31
30
29
28
27
26
25
LED_TP_SPD
GND
RXIP
LED_TP_FDX/ ADDR3
LED_TP_LINK/ ADDR4
LED_FX_FEF_DET/ DUPLEX_MODE
LED_RMT_TP_LINK/ X_EN
RESETB
5
6
7
IP113M LF
RXIM
AVCC
TXOP
8
9
TXOM
GND
TSE
10
11
12
TSM
AVCC
ADDR1
LED_RMT_TP_SPD/ AUTO_SEND
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April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
1. PIN Description
Type
Description
I
Input pin
Output pin
O
IPH
IPL
Input pin with internal pull-high resistor
Input pin with internal pull-low resistor
Pin no.
Label
Type
Description
Transceiver
5, 6
8, 9
2
RXIP, RXIM
TXOP, TXOM
BGRES
I
TP receive
O
O
TP transmit
Band gap resistor
It is connected to GND through a 6.19k (1%) resistor in
application circuit.
18
FXSD
I
I
100Base-FX signal detect
Fiber signal detect. It is an input signal from fiber MAU.
Fiber signal detect is active if the voltage on FXSD is
higher than the threshold voltage, which is 1.35v ±5%
when VCC is equal to 2.5v.
13, 14
16, 17
FXRDP, FXRDM
FXTDP, FXTDM
Fiber receiver data pair
Common-mode voltage of FXRDP and FXRDM are
suggested to near 0.5x AVCC.
When voltage peak-to-peak>0.1V,FXRX could be
workable.
O
Fiber transmitter data pair
FXTX with the external 100Ω resistor.
Common-mode voltage of FXTDP and FXTDM are
suggested to near 0.5x AVCC.
Swing of Voltage ≧ 0.8V.
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April 9, 2007
IP113M LF-DS-R11
Copyright © 2004, IC Plus Corp.
IP113M LF
Preliminary Data Sheet
PIN Description (continued)
Pin no.
LED pins
31
Label
Type
Description
LED_TP_LINK
O
TP port link LED
On: link ok, Off: link fail, Flash: link ok & activity
(Flash: on for 20ms and off for 80ms)
33
32
LED_TP_SPD
LED_TP_FDX
O
O
TP port speed LED
On: 100M, Off: 10M
TP port full duplex LED
On: full, Off: half,
Flash: half & collision happens
(Flash: on for 20ms and off for 80ms)
36
37
LED_FX_LINK
LED_FX_FDX
O
O
Fiber port link LED
On: link ok, Off: link fail, Flash: link ok & activity
(Flash: on for 20ms and off for 80ms)
Fiber port full duplex LED
On: full, Off: half, Flash: half & collision happens
(Flash: on for 20ms and off for 80ms)
38
30
LED_FX_SD
O
O
Fiber port signal detect
On: FXSD is active, Off: FXSD is inactive
LED_FX_FEF_DET
Far end fault pattern received
Far End Fault Pattern received:
LED On: 80ms, LED Off: 20ms
Far End Fault Pattern not Receive:
LED is always off
29
25
24
LED_RMT_TP_LINK
LED_RMP_TP_SPD
LED_RMT_TP_FDX
O
O
O
LED for link status of TP port of remote IP113M LF
Pin 3 AUTO_TEST = 0
Pin 3 AUTO_TEST = 1
On: link ok,
Off: link fail
Flash
(On: 80ms, Off: 20ms)
LED for speed of TP port of remote IP113M LF
Pin 3 AUTO_TEST = 0
Pin 3 AUTO_TEST = 1
On: 100M,
Off: 10M
On: loop back test complete,
Off: under loop back test
LED for full duplex of TP port of remote IP113M LF
Pin 3 AUTO_TEST = 0
Pin 3 AUTO_TEST = 1
On: full duplex,
Off: half duplex
On: loop back test result is ok,
Off: loop back test result fails
Note: The output of LED pin is logic low when the LED is on.
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April 9, 2007
IP113M LF-DS-R11
Copyright © 2004, IC Plus Corp.
IP113M LF
Preliminary Data Sheet
PIN Description (continued)
Pin no.
Label
Type
Description
LED pins used as initial setting mode during reset
29
24
X_EN
IPH Flow control enable on TP port and fiber port
1: enable (default),
0: disable
TP_FORCE
IPL
Local TP port auto negotiation enable
1: TP port supports auto-negotiation with limited capability
defined by pin 38 SPEED_MODE and pin 30
DUPLEX_MODE.
0: TP port supports auto-negotiation with 10M/100M, full/
half capability (default)
The setting may be updated by programming EEPROM
register 3.5 or MII register 20.13.
38
30
SPEED_MODE
DUPLEX_MODE
IPH Local TP port speed selection
1: TP port has the 100Mb speed ability
0: TP port has the 10Mb speed ability only
It is valid only if pin 24 TP_FORCE is enabled.
IPH Local TP port duplex selection
1: TP port has the full duplex ability
0: TP port has the half duplex ability only
It is valid only if pin 24 TP_FORCE is enabled.
25
36
3
AUTO_SEND
FX_FULL
IPL
Auto send the status to the remote IP113M LF
1: enable
0: disable (default)
IPH Set the duplex of fiber port
1: full duplex (default)
0: half duplex
AUTO_TEST
IPL
Auto loop back test
1: enable
When IP113M LF detects a low-to-high transition on this
pin, it will perform loop back test for once. It supports an
easy way to instruct IP113M LF performing fiber loop back
test without programming MII registers.
0: disable (default)
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April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
PIN Description (continued)
Pin no.
Label
Type
Description
LED pins used as initial setting mode during reset
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April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
PIN Description (continued)
Pin no.
Label
Type
Description
MC operation mode
21
LFP
IPL
Link fault pass through (LFP)
1: enable
Link status of one port is forwarded to the other port.
0: disable (default)
22
23
DIRECT_WIRE
FAST_FWD
IPL
DIRECT_ FAST_F
Function
WIRE
WD
0
0
Store and forward switch mode
(default)
0
1
1
1
0
1
Modified cut-through switch mode
Converter mode
Converter mode with
auto-change-forward function
Store and forward switch mode:
IP113M LF begins to forward a frame at the end of
receiving a frame completely.
Modified cut-through switch mode:
IP113M LF begins to forward a frame after the first 64
bytes data received. TP port should be forced at 100M at
this mode.
Converter mode:
Incoming frames are not buffered in IP113M LF to achieve
the min latency. Both TP port and fiber port of IP113M LF
should work at 100M full duplex in this mode. If TP port is
linked at half duplex, the total length of UTP cable and
fiber should be less than 60 meters to meet the
requirement of CSMACD in IEEE802.3.
Converter mode with auto-change-forward function:
IP113M LF will change forward mode itself if it detects the
speed is different in TP port and FX port.
In converter mode, IP113M LF forwards IEEE802.3x
pause frame directly. In the other modes, IP113M LF
doesn’t forward IEEE802.3x pause frame directly, it sends
out pause frame when its internal buffer is full.
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April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
PIN Description (continued)
Pin no.
Label
Type
Description
SMI interface
47, 48
MDC, MDIO
I, IO SMI interface
The external MAC device uses the interface to program
IP113M LF. MDIO is an open drain.
31, 32,
ADDR[4:0]
IPL
PHY address
37, 12, 46
The external MAC device uses the address to identify
each IP113M LF in a chassis.
IP113M LF also uses ADDR[2:0] as EEPROM address
A[2:0] to read EEPROM.
Pin no.
Label
Type
Description
EEPROM interface
45, 46
SDA, SCL
IPH, O EEPROM interface
Pin no.
Misc.
28
Label
RESETB
Type
Description
I
Reset
It is low active.
41, 40
OSCI, X2
I, O Crystal pins
OSCI and X2 are connected to a 25Mhz crystal.
If a 25MHz oscillator is used, OSCI is connected to the
oscillator’s output and X2 should be left open.
26, 27
15
TSM, TSE
INTB
IPL
O
Scan pins
These two pins should be left open or connected to ground
for normal operation.
Interrupt
0: an interrupt happens. Its output is low.
1: no interrupt. Its output is high impedance and it needs
an external pull up resistor.
Pin no.
Power
1,7,11
19,39,44
34
Label
Type
Description
AVCC
VCC
2.5V Analog Power
2.5V Digital Power
3.3V or 2.5V Digital Power
I/O Ground
VCC_IO
GND_IO
GND
35
4,10,20,
42,43
Ground
13/58
April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
2. Functional Description
2.1 Data forwarding
IP113M LF supports three types of data forwarding mode, store & forward mode, modified cut-through
mode and pure converter mode. It can forward a frame despite of its address and CRC error. IP113M LF
begins to forward the received data when it receives the frame completely. The latency depends on the
packet length.
2.1.1 Modified cut-through mode
IP113M LF begins to forward the received data when it receives the first 64 bytes of the frame. The
latency is about 512 bits time width. The maximum packet length is up to1600 bytes in this mode. Please
refer to pin description of FAST_FWD for configuration information.
2.1.2 Pure converter mode
IP113M LF operates with the minimum latency in this mode. The transmission flow does not wait until
entire frame is ready, but instead it forwards the received data immediately after the data being received.
Both transceivers are interconnected via internal MIIs and the internal switch engine and data buffer are
not used. Both TP port and fiber port of IP113M LF should work at 100M full duplex in this mode. If TP port
is linked at half duplex, the total length of UTP cable and fiber should be less than 60 meters to meet the
requirement of CSMACD in IEEE802.3. The packet length is not limited at this mode. Please refer to pin
description of DIRECT_WIRE for configuration information.
In converter mode, it is strongly recommended that both TP port and fiber port of IP113M LF should work
at 100M full duplex. If TP port is linked at half duplex, the UTP cable length should be less than 30 meters
to meet the requirement of CSMACD in IEEE802.3.
2.1.3 Fragment forwarding
IP113M LF forwards CRC error packets but it will filter fragments when it works in modified cut-through
mode. IP113M LF forwards fragments if user turns on bit 3 of MII register 20.
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April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
2.2 TP port force mode
The TP port of IP113M LF can work at auto mode or force mode. The following table shows all of the
combination of its TP port.
Link partner’s capability
AN on
AN off
{TP_FORCE,
SPEED_MODE,
DUPLEX_MODE}
IP113M LF’s link result
IP113M LF’s capability
100F 100H 10F 10H 100F 100H 10F 10H
011
010
001
000
111
110
101
100
100/10M, Full/Half, AN on
100/10M, Half, AN on
10M, Full/Half, AN on
10M, Half, AN on
100F 100H 10F 10H 100H 100H 10H 10H
X
X
100H
X
10H 100H 100H 10H 10H
X
X
10F 10H 100H 100H 10H 10H
X
X
X
10H 100H 100H 10H 10H
100M, Full, AN on
100M, Half, AN on
10M, Full, AN on
100F
X
X
X
X
100F 100F
100H 100H
X
X
X
X
100H
X
X
X
10F
X
X
X
X
X
X
10F 10F
10H 10H
10M, Half, AN on
X
X
10H
Note:
AN on: with auto-negotiation capability
AN off: without auto-negotiation capability
100F: 100M full duplex
100H: 100M half duplex
10F: 10M full duplex
10H: 10M half duplex
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April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
2.3 Remote management
IP113M LF supports remote monitor and configuration function. IP113M LF implement the function by
exchanging maintenance frames on fiber ports between two IP113M LF’s. The maintenance frames are
not forwarded to TP ports. The frame format follows the TS-1000 standard.
2.3.1 Maintenance frame format at MII
TXD0 F0 F4 C0 C4 C8 C12 S0 S4 S8 S12 M0 M4 M8 M12M16M20M24M28M32M36M40M44 E0 E4
TXD1 F1 F5 C1 C5 C9 C13 S1 S5 S9 S13 M1 M5 M9 M13M17M21M25M29M33M37M41M45 E1 E5
TXD2 F2 F6 C2 C6 C10 C14 S2 S6 S10 S14 M2 M6 M10M14M18M22M26M30M34M38M42M46 E2 E6
TXD3 F3 F7 C3 C7 C11 C15 S3 S7 S11 S15 M3 M7 M11M15M19M23M27M31M35M39M43M47 E3 E7
TXEN
2.3.2 Bit definition of maintenance frame
Bit
F7 – F0
C0
Item
Description
Note
Fixed
Fixed
Preamble
01010101
0
Discriminator for the
maintenance signal
C1
Direction
0: terminal MC Æ central MC
1: central MC Æ terminal MC
(MC: media converter)
C3 – C2
Command
00: Reserved
10: Indication
01: Request
11: Acknowledge
C7 – C4
Version
0000
Fixed
C15
C8
01
00
C15 – C8
Control signal
Function
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
Loop test start
Loop test finished
0
0
10 Status indication
Address [4:0]
R/W 11 R/W link partner’s
registers
S0
S1
Condition of power
0: normal, 1: power off
Situation of receiving optical 0: normal, 1: abnormal
power
S2
Terminal/ network side link
0: link up, 1: link down
If S11=“1”, S2=”X”
S3
S4
MC (media converter) fails
0: normal, 1: abnormal
Informing way for optical
receiving power off
0: maintenance frame
1: Far end fault indication
S5
Status indication for loop test 0: normal mode, 1: under loop test
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April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
2.3.3 Bit definition of maintenance frame (continued)
Bit
Item
Description
Note
S6
Information for notice of
terminal link status
0: terminal IP113M LF does not support option
B.
(Available for option B or not)
1: terminal IP113M LF supports option B, which
can inform speed, duplex, and
auto-negotiation in terminal IP113M LF.
If S11 = “1”, S6=”X’
S8 – S7
Terminal link speed
00: 10 Mbps
01: 100 Mbps
10: 1000 Mbps
11: others
It is valid, if S6 = ”1”.
If S2 or S11 = “1”, S7, S8 = {X, X}
S9
Duplex for the terminal side
1: full duplex, 0: half duplex
It is valid, if S6 = ”1”.
If S6 =“0”, S9=“0”.
If {S7, S8} = {1,1}, S9=”X”
If S2 or S11 = “1”, S9=”X”
S10
Auto-negotiation capability for 1: available, 0: un-available
the terminal side
It is valid, if S6 = ”1”.
If S6 =“0”, S10=“0”.
If {S7, S8} = {1,1}, S10=”X”
If S11 = “1”, S10=”X”
S11
Number of interface in
Terminal/ network side
0: one UTP
1: more than one UTP
S15 – S12
M23 – M0
Reserved
Vender code
Vender code for TTC standard
It is C30900h.
M47 – M24 Model number
E7 – E0 FCS
Specified by vender
It is 000000h.
CRC – 8
FCS calculation area: C0 - M47
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April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
2.3.4 Remote monitor
Refer to the diagram below, users can instruct central IP113M LF, on the right, to issue a status request
frame to get status defined in TS-1000 by programming MII register 24. The terminal IP113M LF, on the
left, receives the status request frame and sends out its current status as a response frame onto the fiber
port when it is available. The central IP113M LF receives the status frame and stores the status of
terminal IP113M LF to its MII register 23. An acknowledge maintenance frame is store to MII register
26~30. The status of terminal IP113M LF is shown on the LEDs of central IP113M LF.
(1)
Maintenance frame
IP113M LF
(terminal)
IP113M LF
(central)
(MII reg 24, 23)
(C1=1, C2-3=10, C8-15=01000000)
FX
TP
TP
(2)
Maintenance frame
(C1=0, C2-3=11, C8-15=01000000)
MDC, MDIO
2.3.5 Remote control read
Users can instruct central IP113M LF to issue a remote control read frame to read the MII register of
terminal IP113M LF by programming MII register 24. The bits [11:7] of the register 24 are filled with the
address of register and bits [6:4] of the register 24 are filled with “011”. The terminal IP113M LF receives
the frame and sends out the content of the MII register to central IP113M LF when it is available. The
central IP113M LF receives the frame and stores the data to MII register 27. An acknowledge
maintenance frame is stored to MII register 26~30. The status of terminal IP113M LF is shown on LED of
central IP113M LF.
Maintenance frame
(C1=1, C2-3=10, C8-15=110xxxxx)
IP113M LF
(terminal)
IP113M LF
(central)
(MII reg 24,27)
FX
TP
TP
Maintenance frame
(C1=0, C2-3=11, C8-15=01000000)
MDC, MDIO
2.3.6 Remote control write
Users can instruct central IP113M LF to issue a configure frame to write the MII register of terminal
IP113M LF by programming MII register 24 and 25. The bits [11:7] of the register 24 are filled with the
address of register and bits [6:4] of the register 24 are filled with “111”. MII register 25 defines the data.
The terminal IP113M LF receives the configure frame, configures itself according to the content of the
frame and sends out its current status as a response frame onto the fiber port when it is available. The
status of terminal IP113M LF is shown on LED of central IP113M LF.
Maintenance frame
(C1=1, C2-3=10, C8-15=111xxxxx)
IP113M LF
(terminal)
IP113M LF
(central)
(MII reg 24,25)
FX
TP
TP
Maintenance frame
(C1=0, C2-3=11, C8-15=01000000)
MDC, MDIO
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April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
2.4 Loop back test
IP113M LF supports two kind of loop back test function, in-band loop back test and out-band loop back
test.
2.4.1 Out-band loop back test
Users can instruct central IP113M LF to issue a maintenance frame onto the fiber port by programming
MII register 24 to request a loop back test. Central IP113M LF does not generate test frames and users
need an external packet source from PC.
1. Disconnect switch port and instruct the terminal IP113M LF to perform loop back and disable
terminal T2 timer by programming central IP113M LF through SMI
(1)
Maintenance frame
(C1=1, C2-3=10, C8-15=10000000)
TP
IP113M LF
IP113M LF
(terminal)
Switch
(central)
(MII reg 24)
FX
TP
(2)
Maintenance frame
(C1=0, C2-3=11, C8-15=10000000)
MDC, MDIO
2 . T e rm in a l IP 1 1 3 M L F ru n s a t lo o p b a c k m o d e
T P
IP 1 1 3 M L F
(te rm in a l)
IP 1 1 3 M L F
(c e n tra l)
S w itc h
F X
T P
(M II re g 0 .1 4 = 1 )
3. PC forces test frames to central IP113M LF and terminal IP113M LF loops back the frames.
test frame
TP
IP113M LF
(terminal)
IP113M LF
(central)
FX
TP
(MII reg 0.14=1)
PC
test frame
4. PC reports the loop back test result after sending all test frames.
TP
IP113M LF
(terminal)
(MII reg 0.14=1)
IP113M LF
(central)
FX
TP
PC
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April 9, 2007
IP113M LF-DS-R11
Copyright © 2004, IC Plus Corp.
IP113M LF
Preliminary Data Sheet
5. Reconnect switch and instruct the central IP113M LF to end loop back test and enable T2
timer.
(1)
Maintenance frame
(C1=1, C2-3=10, C8-15=00000000)
TP
IP113M LF
(central)
(MII reg 24)
IP113M LF
(terminal)
Switch
FX
TP
(2)
Maintenance frame
(C1=0, C2-3=11, C8-15=00000000)
MDC, MDIO
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April 9, 2007
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Loop back test (continued)
2.4.2 In-band loop back test
Besides performing the loop back test with an external packet source, IP113M LF supports an easy
alternative. IP113M LF sends out private maintenance frame to do loop back test. All users have to do is
to program MII registers through SMI.
1. Disabe receive function of central TP port and instruct the terminal IP113M LF to perform loop
back and disable T2 timer by programming central IP113M LF through SMI
Maintenance frame
(C1=1, C2-3=10, C8-15=10000000)
TP
IP113M LF
(central)
(MII reg 24)
IP113M LF
(terminal)
Switch
FX
TP
MDC, MDIO
2. Terminal IP113M LF runs at loop back mode and acknowledges with maintenance frame
TP
IP113M LF
(terminal)
IP113M LF
(central)
Switch
FX
TP
(MII reg 0.14=1)
Maintenance frame
(C1=0, C2-3=11, C8-15=10000000)
3. Central IP113M LF forces test frames to terminal IP113M LF and terminal IP113M LF loops
back the test frames. Central IP113M LF checks the received test frame.
test frame
TP
IP113M LF
(terminal)
IP113M LF
(central)
(MII reg 24,25)
Switch
FX
TP
(MII reg 0.14=1)
test frame
MDC, MDIO
4. Central IP113M LF ends loop back test enables receive function of TP port and enable LP T2
timer
(1)
Maintenance frame
(C1=1, C2-3=10, C8-15=00000000)
TP
IP113M LF
(central)
(MII reg 24)
IP113M LF
(terminal)
Switch
FX
TP
(2)
Maintenance frame
(C1=0, C2-3=11, C8-15=00000000)
MDC, MDIO
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April 9, 2007
IP113M LF-DS-R11
Copyright © 2004, IC Plus Corp.
IP113M LF
Preliminary Data Sheet
Loop back test (continued)
2.4.3 Programming procedure for In-band loop back test
Step
1
Description
C1
C3~C2
C15~C8
Note
Set local IP113M LF TP receive disabled
Set Reg. 20.14 off
Reg24 and Reg 25
2a
Set remote T2 timer disabled by
maintenance frame
1
01
11 11 11 11
2
3
4
5
6
Set remote IP113M LF to be loop back
mode enabled by maintenance frame
1
01
01
00 00 00 01
TS-1000: loop
back set
Remote IP113M LF sends back loop back --
acknowledge
--
--
--
--
Send loop back test maintenance frame
1
11 01 10 11
Reg24 and Reg 25
--
Remote IP113M LF send back
acknowledge
--
--
--
Local IP113M LF stores the loop back
maintenance to Reg. 26~30 and checks
CRC bit is in Reg. 26.12
7
8
Repeat step 4~6 continuously
--
Set remote IP113M LF to be loop back
mode disable by maintenance frame
1
01
00 00 00 00
TC-1000: loop
back end
9
Remote IP113M LF sends back loop back --
acknowledge
--
--
--
10
Set local IP113M LF TP receive enable
Set Reg. 20.14 on
2.4.4 Auto in-band loop back test
Step
Description
1
Set pin AUTO_TEST to “1” (The following step is executed automatically by IP113M LF)
1.1
Central IP113M LF sends loop back start request to remote IP113M LF and goes to CST2
state.
1.2
Remote IP113M LF sends loop back start acknowledge to Central IP113M LF and enters loop
back test mode.
1.3
1.4
1.5
2
Central IP113M LF goes to CST1 state and begins sending 15 frames in 64 bytes.
Remote IP113M LF loops back the received frames at the TP port’s PMD sub-layer.
Central IP113M LF checks the loop back frames and reports the result.
The LED pin LED_RMT_TP_LINK is Flash (on 80ms / off 20ms) during the auto loop back test
period (AUTO_TEST is “1”).
3
4
The LED pin LED_RMT_TP_SPD indicates the loop back test complete (on) (when
AUTO_TEST is “1”). The LED pin LED_RMT_TP_FDX indicates the loop back test ok (on)
(when AUTO_TEST is “1”)
If another auto loop back test is needed, set AUTO_TEST to “0” and then “1”. That is,
AUTO_TEST is triggered whenever there is a low-to-high transition on this pin.
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April 9, 2007
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
2.5 Remote monitor without SMI programming
2.5.1 Auto sends (Status change notice)
IP113M LF sends out status frame without receiving status request frame if pin AUTO_SEND is pulled
high. It sends out the first status frame onto the fiber port when the link status of fiber port has established.
It sends out status frames when the status on TP port has changed. IP113M LF supports two types of
frame. For a TS-1000 maintenance frame, C[9:8] is 2’b10 and S[15:0] is defined as that in TS-1000
standard. For an ICplus maintenance frame, C[9:8] is 2’b11 and S[15:0] is the content of MII register 22. It
carries ICplus private defined information. User can select the frame type by programming MII register
20.10. Central IP113M LF uses the mechanism to get the status of the remote IP113M LF even if there is
no SMI programming.
Option A
Central IP113M LF sends indication frames to terminal IP113M LF if its status is changed.
Maintenance frame
(C1=1, C2-3=01, C8-9= 01)
IP113M LF
(terminal)
IP113M LF
(central)
TP
TP
FX
status changed !!
Option B
Terminal IP113M LF sends indication frames to central IP113M LF if its status is changed.
Maintenance frame
(C1=0, C2-3=01, C8-9= 01)
IP113M LF
(terminal)
IP113M LF
(central)
TP
TP
FX
status changed !!
CRC polynomial for maintenance frame: X8 + X2 + X + 1
data in
CRC + data
X0
X1
X2
X3
X4
X5
X6
X7
CRC calculation
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IP113M LF-DS-R11
Copyright © 2004, IC Plus Corp.
IP113M LF
Preliminary Data Sheet
2.6 Link fault pass through
When link fault pass through function is enabled, link status on TX port will inform the FX port of the same
device and vice versa. From the link fault pass through procedure illustrates in the figure below, if link fail
happens on IP113M LF’s TX port (1), the local FX port sends non-idle pattern to notice the remote FX port
(2). The remote FX port then forces its TX port to link failed after receiving the non-idle pattern (4). In other
words, this mechanism will alert the link fault status of local TX port to the remote converter’s TX port, and
the link status of the remote TX port will become off. Link status LED will also be off for both IP113M LF
and its link partner.
(5) remote TP
link is off
(3) fiber port gets remote
link fault information
(1) TP port link failed
local
IP113M
LF
remote
IP113M
LF
Fiber
UTP
Switch1 or
NIC 1
Switch2 or
NIC 2
UTP
link off
(2) fiber port sends
non-idle pattern
(4) TP link fail
The procedure of link fault pass through
2.6.1 Normal case
remote
local
UTP
Fiber
UTP
IP113M
LF
IP113M
LF
Switch1
Switch2
LED
SW1
LED
SW2
LED_TP_LINK1 LED_FX_LINK1 LED_FX_LINK2 LED_TP_LINK2
Link LED on SW1 LED_TP_LINK1 LED_FX_LINK1 LED_FX_LINK2 LED_TP_LINK2 Link LED on SW2
ON
ON
ON
ON
ON
ON
2.6.2 Remote TP port disconnected
UTP
disconnected
remote
local
Switch2
UTP
Fiber
IP113M
LF
IP113M
LF
Switch1
LED
SW1
LED
SW2
LED_TP_LINK1 LED_FX_LINK1 LED_FX_LINK2 LED_TP_LINK2
Link LED on SW1 LED_TP_LINK1 LED_FX_LINK1 LED_FX_LINK2 LED_TP_LINK2 Link LED on SW2
Off
Off
Off
Off
Off
Off
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Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
2.6.3 FX port disconnected
remote
local
UTP
Fiber
UTP
Switch1
IP113M
IP113M
Switch2
LED
SW1
LED
SW2
LED_TP_LINK1 LED_FX_LINK1 LED_FX_LINK2 LED_TP_LINK2
Link LED on SW1 LED_TP_LINK1 LED_FX_LINK1 LED_FX_LINK2 LED_TP_LINK2 Link LED on SW2
Off Off Off Off Off Off
2.6.4 LED diagnostic functions for fault indication
LED_TP_LINK LED_FX_LINK LED_FX_SD LED_FX_FEF_DET
Status
On
Flash
Off
On
Flash
Off
On
On
On
Off
On
Off
Off
Link ok
Link ok & activity
Off
Remote TP link off
Fiber RX off, Fiber TX/ RX off
Fiber TX off
Off
Off
Off
Off
Off
Flash
Note
Flash: flash, period 100 ms
Link fault pass through is enabled.
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
2.7 EEPROM – store the initial value
IP113M LF supports two ways to load initial value of MII registers. The procedure is illustrated as below.
1. IP113M LF reads the default setting of MII register from pins
IP113M LF
pins
2. IP113M LF updates the default setting of MII by reading EEPROM. If there exists an
EEPROM.
IP113M LF
EEPROM
3. After reading EEPROM, IP113M LF is virtually isolated from the EEPROM. Micro-controller
can program both MII register and EEPROM.
IP113M LF
EEPROM
SCL, SDA
uC
MDC, MDIO
4. IP113M LF reloads the content of EEPROM to recover the value in MII registers
programmed by Micro-controller after power on reset.
IP113M LF
EEPROM
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
2.8 Auto MDI_MDIX
IP113M LF supports auto MDI-MDIX. It is always enabled. The following is its application circuit for auto
MDI-MDIX.
RXIP
TXOP
RD +
RD -
TD +
TD -
RXIM
TXOM
IP113M LF
IP113M LF
AVCC
AVCC
CT
CT
50Ω
50Ω
50Ω
50Ω
MDI-MDIX
transformer
MDI-MDIX
transformer
0.1u
0.1u
GND
GND
IP113M LF's application circuit (auto MDI-MDIX on)
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
2.9 Serial management interface
User can access IP113M LF’s MII registers through serial management interface MDC and MDIO. A
specific pattern on MDIO is used to access a MII register. Its format is shown in the following table. When
the SMI is idle, MDIO is in high impedance. To initialize the MDIO interface, the management entity sends
a sequence of 32 contiguous “1” and “start” on MDIO.
Syatem diagram
113M LF
113M LF
113M LF
MDC MDIO
MDC MDIO
MDC MDIO
management
entity
Frame
format
<Idle><start><op code><IP113M LF’s address><Registers
address><turnaround>
<data><idle>
Read
Operation
<Idle><01><10><A4A3A2A1A0><R4R3R2R1R0><Z0>
<b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1b0><Idle>
Write
Operation
<Idle><01><01><A4A3A2A1A0><R4R3R2R1R0><10>
<b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1b0><Idle>
MDC
z
z
MDIO
1..1
1..1
0 0 0 0
0 0
0
0
0
0 0 1
0
0 1 1 0 0
0 1
1
0
0 1 0 0 0
0
0 1 1 0
op
code
A A A A A R R R R R
4 3 2 1 0 4 3 2 1 0
b b b b b b b b b b b b b b b b
1 1 1 1 1 1 9 8 7 6 5 4 3 2 1 0
idle
idle
start
TA
write
PHY address =
01h
Reg address =
00h
5 4 3 2 1 0
Register data
MDC
z
z
z
MDIO
1..1
1..1
0 0 0 0
0 0
1
0
0
0 0 Z
0
0 0 1 0 0
0 1
0
0
0 1 0 0 0
0
0 1 1 0
op
code
A A A A A R R R R R
4 3 2 1 0 4 3 2 1 0
b b b b b b b b b b b b b b b b
1 1 1 1 1 1 9 8 7 6 5 4 3 2 1 0
idle
idle
start
TA
read
PHY address =
01h
Reg address =
00h
5 4 3 2 1 0
Register data
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April 9, 2007
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
3. MII registers
Address
Register Name
Control
NWAY
0
Control Register
1
Status Register
NWAY
2
PHY identifier Register 1
PHY identifier Register 2
NWAY
3
NWAY
4
AN Advertisement Register
AN Link Partner Base Page Ability Register
AN Expansion Register
(Reserved)
NWAY
5
NWAY
6
NWAY
7
8
(Reserved)
9
(Reserved)
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
(Reserved)
(Reserved)
(Reserved)
(Reserved)
(Reserved)
(Reserved)
Special Control Register
Interrupt Register
NWAY
NWAY
NWAY
SWITCH
SWITCH
SWITCH
SWITCH
SWITCH
RMC
Extended Status Register
Statistic Counter Register
Switch Configuration Register 1
Switch Configuration Register 2
Local Switch Extended Register
Link Partner Switch Extended Status Register
Remote Control Transmit Register 1
Remote Control Transmit Register 2
Remote Control Receive Register 1
Remote Control Receive Register 2
Remote Control Receive Register 3
Remote Control Receive Register 4
Remote Control Receive Register 5
Switch Configuration Register 3
RMC
RMC
RMC
RMC
RMC
RMC
SWITCH
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April 9, 2007
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
3.1 The basic MII registers
Type
R/W
SC
Description
Type
RC
LL
Description
Read/Write
Self-Clearing
Read Only
Read and Clear
Latching Low
Latching High
RO
LH
The default value is “1” and it depends
on the setting of its corresponding pin.
Pin(0) The default value is “0” and it depends
on the setting of its corresponding pin.
Pin(1)
The basic MII registers 0
MII
NAME
R/W
DESCRIPTION
DEFAULT
MII control register (address 00h)
0.15
Reset
R/W 1 = PHY reset
SC 0 = normal operation
0
This bit is self-clearing, IP113M LF will return a
value of 1 before reset process is completed, and
will not accept any write transaction of MII
Management within reset process. Make any
change to Auto-Negotiation or speed mode will
cause IP113M LF reset again.
0.14
Loop back
R/W 1 = Loop back mode
0 = normal operation
0
When this bit is set, IP113M LF will be isolated
from the network media, and the assertion of
TXEN at the MII will not transmit data on the
network. All MII transmit data path will return to MII
receive data path in response to the assertion of
TXEN. MII COL signal will remain de-asserted at
all times, unless bit 0.7 (Collision Test) is set. Use
has to wait about 100ms for loop back path ready.
0.13
Speed Selection
RW 1 = 100Mbps
Pin(1)
1
0 = 10Mbps
It is valid only if bit 0.12 is set to be 0.
0.12 Auto-Negotiation
Enable
RW 1 = Auto-Negotiation Enable
0 = Auto-Negotiation Disable
MII register 16.11 auto-MDI/MDIX should be
disabled if auto-negotiation is disabled.
0.11
0.10
Reserved
Isolate
R/W This bit should be “0” for normal operation.
0
0
R/W 1 = electrically isolate PHY from MII
0 = normal operation
When this bit is setting to 1, IP113M LF will be
isolated from MII, and not respond to the TXD[3:0]
and TXEN and keep CRS, RXDV and RXD[3:0]
in high impedance, but will respond to
management transactions.
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
MII
NAME
R/W
DESCRIPTION
DEFAULT
MII control register (address 00h)
0.9
Restart Auto-
Negotiation
RW 1 = re-starting Auto-Negotiation
0
0 = Auto-Negotiation re-start complete
Setting this bit to logic high will cause IP113M LF
to restart an Auto-Negotiation cycle, but depend on
the value of bit 0.12 (Auto-Negotiation Enable). If
bit 0.12 is cleared then this bit has no effect, and
change to Read Only. When an Auto-Negotiation
cycle is being processed, write 0 into this bit has
no effect. This bit is self-clearing after
Auto-Negotiation process is completed.
0.8
0.7
Duplex mode
R/W 1 = full duplex
Pin(1)
0
0 = half duplex
It is valid only if bit 0.12 is set to be 0.
Collision test enable R/W 1 = enable the collision test
0 = disable the collision test
If setting this bit to logic 1, when MII TXEN signal is
asserted, IP113M LF will assert the MII COL signal
within 512BT (Bit Time, depend on 10Mbps or
100Mbps). When MII TXEN is de-asserted, then
TP110 will assert MII COL signal within 4BT.
Clearing this bit to logic 0 for normal operation
0[6:0] Reserved
R/W Write as 0, ignore on read
-
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
The basic MII registers 1
MII
NAME
R/W
DESCRIPTION
DEFAULT
MII status register (address 01h)
1.15
1.14
100Base-T4
capable
RO
1 = 100Base-T4 capable
0 = not 100Base-T4 capable
IP113M LF does not support 100Base-T4. This bit
is fixed to be 0.
0
100Base-X full
duplex Capable
RO
1 = 100Base-X full duplex capable
0 = not 100Base-X full duplex capable
The default of this bit will change depend on the
external setting of IP113M LF. If external pin
setting without 100Base-X full duplex support, then
this bit will change default to logic 0.
1
1
1
1
1.13
1.12
1.11
100Base-X half
duplex Capable
RO
1 = 100Base-X half duplex capable
0 = not 100Base-X half duplex capable
The default of this bit will change depend on the
external setting of IP113M LF. If external pin
setting without 100Base-X half duplex support,
then this bit will change default to logic 0
10Base-T full duplex RO
Capable
1 = 10Base-T full duplex capable
0 = not 10Base-T full duplex capable
The default of this bit will change depend on the
external setting of IP113M LF. If external pin
setting without 100Base-T full duplex support, then
this bit will change default to logic 0
10Base-T half
RO
1 = 10Base-T half duplex capable
duplex Capable
0 = not 10Base-T half duplex capable
The default of this bit will change depend on the
external setting of IP113M LF. If external pin
setting without 100Base-X full duplex support, then
this bit will change default to logic 0
1[10:7] Reserved
RO
RO
Ignore on read
-
1.6
MF preamble
1 = preamble may be suppressed
0 = preamble always required
1
Suppression
1.5
Auto-Negotiation
Complete
RO
1 = Auto-Negotiation complete
0 = Auto-Negotiation in progress
0
When read as logic 1, indicates that the
Auto-Negotiation process has been completed,
and the contents of register 4, 5, 6 and 7 are valid.
When read as logic 0, indicates that the
Auto-Negotiation process has not been completed,
and the contents of register 4, 5, 6 and 7 are
meaningless. If Auto-Negotiation is disabled (bit
0.12 set to logic 0), then this bit will always read as
logic 0.
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April 9, 2007
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
The basic MII registers 1(continued)
MII
NAME
R/W
DESCRIPTION
DEFAULT
MII status register (address 01h)
1.4
Remote fault
RO
LH
1 = remote fault detected
0 = not remote fault detected
0
When read as logic 1, indicates that IP113M LF
has detected a remote fault condition. This bit is
set until remote fault condition gone and before
reading the contents of the register. This bit is
cleared after IP113M LF reset.
1.3
1.2
Auto-Negotiation
Ability
RO
1 = Auto-Negotiation capable
0 = not Auto-Negotiation capable
When read as logic 1, indicates that IP113M LF
has the ability to perform Auto-Negotiation. The
value of this bit will depend on the external mode
setting of IP113M LF operation mode.
1
0
Link Status
RO
LL
1 = Link Pass
0 = Link Fail
When read as logic 1, indicates that IP113M LF
has determined a valid link has been established.
When read as logic 0, indicates the link is not valid.
This bit is cleared until a valid link has been
established and before reading the contents of this
registers.
1.1
1.0
Jabber Detect
RO
LH
1 = jabber condition detected
0 = no jabber condition detected
0
1
When read as logic 1, indicates that IP113M LF
has detected a jabber condition. This bit is always
0 for 100Mbps operation and is cleared after
IP113M LF reset. This bit is set until jabber
condition is cleared and reading the contents of the
register.
Extended capability
RO
1 = Extended register capabilities
0 = No extended register capabilities
IP113M LF has extended register capabilities.
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
The basic MII registers 2 , 3
MII
NAME
R/W
DESCRIPTION
DEFAULT
PHY Identifier (address 02h)
2[15:0] PHY identifier
RO
IP113M LF OUI (Organizationally Unique Identifier)
ID, the msb is 3rd bit of IP113M LF OUI ID, and the
lsb is 18th bit of IP113M LF OUI ID. IP113M LF OUI
is 0090C3.
0243h
MII
NAME
R/W
DESCRIPTION
DEFAULT
PHY Identifier (address 03h)
3[15:10] PHY identifier
RO
RO
RO
IP113M LF OUI ID, the msb is 19th bit of IP113M
LF OUI ID, and lsb is 24th bit of IP113M LF OUI ID.
3h
5h
0
3[9:4] Manufacture’s
Model Number
TP110 model number
3[3:0] Revision Number
IP113M LF revision number
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April 9, 2007
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
The basic MII registers 4
MII
NAME
R/W
DESCRIPTION
DEFAULT
Auto-Negotiation Advertisement register (address 04h)
4.15
Next Page
RO
1 = Next Page ability is supported
0
0 = Next Page ability is not supported
IP113M LF does not support next page, this bit is
fixed to be 0.
4.14
4.13
Reserved
RW Reserved by IEEE, write as 0, ignore on read
0
0
Remote Fault
R/W 1 = Advertises that this device has detected a
remote fault
0 = No remote fault detected
4[12:11] Reserved
RO
Reserved for future IEEE use, write as 0, ignore on
read
0
4.10
Pause
RW 1 = Advertises that this device has implemented
pause function
Pin(1)
0 = No pause function supported
4.9
4.8
4.7
4.6
4.5
100BASE-T4
RW 1 = 100BASE-T4 is supported
0 = 100BASE-T4 is not supported
0
100BASE-TX full
duplex
R/W 1 = 100BASE-TX full duplex is supported
0 = 100BASE-TX full duplex is not supported
Pin(1)
Pin(1)
Pin(1)
Pin(1)
00001
100BASE-TX
R/W 1 = 100BASE-TX is supported
0 = 100BASE-TX is not supported
10BASE-T full
duplex
R/W 1 = 10BASE-T full duplex is supported
0 = 10BASE-T full duplex is not supported
10BASE-T
R/W 1 = 10BASE-T is supported
0 = 10BASE-T is not supported
4[4:0] Selector Field
RO
Use to identify the type of message being sent by
Auto-Negotiation.
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
The basic MII registers 5
MII
NAME
R/W
DESCRIPTION
DEFAULT
Link partner ability register (address 05h) Base Page
5.15
5.14
5.13
Next Page
RO
RO
RO
1 = Next Page ability is supported by link partner
0 = Next Page ability is not supported by link partner
0
0
0
Acknowledge
Remote Fault
1 = Link partner has received the ability data word
0 = Not acknowledge
1 = Link partner indicates a remote fault
0 = No remote fault indicate by link partner
If this bit is set to logic 1, then bit 1.4 (Remote fault)
will set to logic 1.
5[12:10] Reserved
RO Reserved by IEEE for future use, write as 0, read
as 0.
0
0
0
5.9
5.8
100BASE-T4
RO
1 = Link partner support 100BASE-T4
0 = Link partner is not support 100BASE-T4
100BASE-TX full
duplex
RO
1 = Link partner support 100BASE-TX full duplex
0 = Link partner is not support 100BASE-TX full
duplex
5.7
5.6
5.5
100BASE-TX
RO
RO
RO
RO
1 = Link partner support 100BASE-TX
0 = Link partner is not support 100BASE-TX
0
10BASE-T full
duplex
1 = Link partner support 10BASE-T full duplex
0 = Link partner is not support 10BASE-T full duplex
0
0
10BASE-T
1 = Link partner support 10BASE-T
0 = Link partner is not support 10BASE-T
5[4:0] Selector Field
Protocol selector of the link partner
00000
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April 9, 2007
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
The basic MII registers 6
MII
NAME
R/W
DESCRIPTION
DEFAULT
Auto-Negotiation Expansion register (address 06h)
6[15:5] Reserved
RO
Reserved by IEEE, writes as 0, ignore on read.
0
0
6.4
Parallel Detection
RO
LH
1 = A fault has been detected via Parallel Detection
Fault
function
0 = A fault has not detected via Parallel Detection
function
6.3
6.2
6.1
6.0
Link Partner Next
Page Able
RO
RO
1 = Link Partner is Next Page able
0 = Link Partner is not Next Page able
0
1
0
0
Next Page Able
1 = Local Device is Next Page able
0 = Local Device is not Next Page able
Page Received
RO
LH
1 = A New Page has been received
0 = A New Page has not been received
Link Partner
Auto-Negotiation Able
RO
1 = Link Partner is Auto-Negotiation able
0 = Link Partner is not Auto-Negotiation able
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April 9, 2007
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
3.2 Extended MII registers and EEPROM registers
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
EEPROM enable register 0 (EEPROM register 00D)
--
0[7:0]
RO
EEPROM enable register 0
55
This register should be filled with 55.
IP113M LF will examine the specified
pattern to confirm if there is a valid
EEPROM.
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
EEPROM enable register 1 (EEPROM register 01D)
--
1[7:0]
RO
EEPROM enable register 1
AA
This register should be filled with AA.
IP113M LF will examine the specified
pattern to confirm if there is a valid
EEPROM. The initial setting is updated with
the content of EEPROM only if the specified
pattern 55AA is found.
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 16
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Special control register (16D)
16.0
16.1
16.2
16.3
-- Reserved
-- Reserved
-- Reserved
This bit should be “0” for normal operation.
This bit should be “0” for normal operation.
This bit should be “0” for normal operation.
0
0
0
0
-- mr_bypass_scramble R/W Bypass PCS scrambler (It is valid only if
16.15=1.)
1: bypass scrambler, 0: not bypass (default)
This bit should be “0” for normal operation.
16.4
-- mr_bypass_100x
_coder
R/W Bypass PCS 4B/5B coder (It is valid only if
16.15=1.)
0
1: bypass 4B/5B, 0: not bypass (default)
This bit should be “0” for normal operation.
16.5
16.6
16.7
16.8
16.9
16.10
16.11
-- mr_bypass_dsp_rst
-- mr_tx_nlp_disable
R/W Bypass DSP re-start function in PCS
1: bypass DSP re-start, 0: not bypass (default)
This bit should be “0” for normal operation.
0
0
0
0
0
0
0
R/W 10Mb transmit NLP enable
1: enable (default), 0:disable
This bit should be “1” for normal operation.
-- mr_analog_pwsv
_disable
R/W Analog power save mode disable
1: disable, 0: enable (default)
The default value is recommended to adopt.
-- mr_fef_disable
R/W Far-End-Fault function disable
1: disable, 0: enable (default)
The default value is recommended to adopt.
-- mr_jabber_enable
R/W Jabber function enable
1: enable, 0:disable (default)
The default value is recommended to adopt.
-- mr_heart_beat
_enable
R/W Heart Beat function enable
1: enable, 0:disable (default)
The default value is recommended to adopt.
-- mr_auto_cross
_disable
R/W Auto Crossover function disable
1: disable, 0: enable (default)
It should be disabled if MII register 0.12
auto-negotiation is disabled.
16.12
16.13
16.14
16.15
-- Reserved
-- Reserved
-- Reserved
-- Reserved
This bit should be “0” for normal operation.
This bit should be “0” for normal operation.
R/W
0
0
0
0
This bit should be “0” for normal operation.
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 17
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Interrupt register (17D)
17.0
17.1
17.2
17.3
--
--
--
intr_link
RO Link status change
0
RC
It is logic “1” when link status changes on
TP port and it will active interrupt pin. It is
self-clear after reading the register.
1: link status change Interrupt occur,
0: no interrupt
intr_duplex
intr_speed
RO
RC
Duplex mode change
0
0
0
It is logic “1” when duplex status changes
on TP port and it will active interrupt pin. It
is self-clear after reading the register.
1: duplex status change Interrupt occur,
0: no interrupt
RO
RC
Speed mode change
It is logic “1” when speed changes on TP
port and it will active interrupt pin. It is
self-clear after reading the register.
1: speed change interrupt occur,
0: no interrupt
-- intr_mf_rx_indicate
RO
RC
Undefined maintenance frame receive
indication
It is logic “1” when an undefined maintenance
frame is received and it will active interrupt
pin. An undefined maintenance frame is a
frame, which can’t be recognized by IP113M
LF. It is self-clear after reading the register.
1: Rx maintenance frame interrupt occur,
0: no interrupt
17.4
--
intr_cnt_overflow
RO Statistic counter overflow
0
RC
It is logic “1” when statistic counter is
overflow and it will active interrupt pin. It is
self-clear after reading the register.
1: counter overflow interrupt occur,
0: no interrupt
17.5
17.6
--
--
intr_status
Intr_pwabn
RO Interrupt status
RC It is logic “OR” of bit 17.0~17.4.
1: any interrupt occur, 0: no interrupt
RO Power abnormal
RC It is logic “1” when 113M receives a
0
0
maintenance frame with link partner’s power
abnormal message and it will active interrupt
pin. It is self-clear after reading the register.
1: remote link partner power abnormal
0: nothing happen
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April 9, 2007
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 17(continued)
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Interrupt register (17D)
17.7
--
Intr_pwabn_en
RW Remote LP power abnormal interrupt enable
A mask for bit 17.6.
0
1: not mask interrupt
0: mask interrupt
17.8
17.9
--
--
--
--
intr_link_mask
RW Mask TP port link change Interrupt
A mask for bit 17.0.
1
1
1
1
1: mask, 0: not mask (default)
intr_duplex_mask
intr_speed_mask
RW Mask TP port duplex mode change Interrupt
A mask for bit 17.1.
1: mask interrupt (default), 0: not mask
17.10
17.11
RW Mask TP port speed mode change Interrupt
A mask for bit 17.2.
1: mask interrupt (default), 0: not mask
intr_mf_rx_indc
_mask
RW Mask maintenance frame receive indication
Interrupt
A mask for bit 17.3.
1: mask interrupt (default), 0: not mask
17.12
17.13
--
--
intr_cnt_ov_mask
intr_all_mask
Reserved
RW Mask Statistic counter overflow Interrupt
A mask for bit 17.4.
1
1
0
1: mask interrupt (default), 0: not mask
RW Mask all Interrupt
It enables the all mask bits 17.7~17.12.
1: mask interrupt (default), 0: not mask
17[15:14] --
RW
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 18
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
PHY extended status register (18D)
18[6:0]
18.7
--
--
Reserved[2:0]
jabber
RO
RO
8d
0
Jabber status
1: jabber is detected, 0: no jabber (default)
It is a mirror bit of MII register 1 bit 1.
18.8
18.9
--
--
polarity
RO
RO
Polarity status
1: polarity error, RXIP and RXIM are reversed,
0: polarity ok (default)
0
0
mdix_en
MDI/MDIX status
0: MDI, TX and RX are normal on TP port.
1:MDIX, TX and RX are crossed over on TP
port.
18.10
18.11
--
--
link_real
resolved
RO
RO
TP port link Status
1: link ok, 0: link fail (default)
It is a mirror bit of MII register 1 bit 2.
0
0
Resolve complete
1: Auto-negotiation complete,
0: during Auto-negotiation (default)
It is a mirror bit of MII register 1 bit 5.
18.12
18.13
--
--
Reserved
RO
RO
0
0
mr_duplex_mode
TP port duplex mode (It is valid only if 8.11=1.)
1: full duplex (default), 0: half duplex
It is a mirror bit of MII register 0 bit 8.
18.14
18.15
--
--
mr_speed_selection
Reserved
RO
RO
TP port speed mode (It is valid only if
18.11=1.)
1: 100M (default), 0: 10M
It is a mirror bit of MII register 0 bit 13.
1
0
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 19
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Statistic counter registers (MII register 19D)
19[11:0]
--
mg_statistic_cnt[11:0] RO Statistic Counter [11:0]
The statistic counter maintains some kinds of
0
statistic information. Before reading the
statistic counter, user has to select one
counter by writing MII register 19[14:12]
cnt_index[2:0]. The relationship between
cnt_index and its corresponding counter is
shown in the following table.
Cnt_index Content of statistic counter[11:0]
3'b000
3'b001
Received packet count on TP port
Received CRC error count on TP
port
3'b010
3'b011
3'b100
3'b101
Drop packet count on TP port
Collision event count on TP port
Received packet count on fiber port
Received CRC error count on fiber
port
3'b110
3'b111
Drop packet count on fibe port
Collision event count on fiber port
19[14:12]
19.15
--
--
cnt_index[2:0]
cnt_loop_en
RW The current counter index
A counter index to select one counter before
reading MII register 19[11:0]
0
1
RW The counter index loop enable
1: MII register 19[14:12] cnt_index[2:0] is
increased by one automatically whenever
the MII register 19 is read. Cnt_index[2:0] is
turned arounf to “000” when it reaches to
“111” and is read.
0: cnt_index[2:0] is not increased when MII
register 19 is read.
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 20
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Switch configuration register 1 (MII register 20D, EEPROM register 02~03D)
20.0
20.1
2.0 Reserved
2.1 direct_wire
0
R/W Please see pin description of DIRECT_WIRE
for more detail information.
Pin (0)
This bit overwrites the setting on pin 22
DIRECT_WIRE.
20.2
20.3
20.4
2.2 fast_fwd
R/W Please see pin description of FAST_FWD
for more detail information.
Pin (0)
This bit overwrites the setting on pin 23
FAST_FWD.
2.3 mg_pass_fragment
_en
R/W Pass fragment packet, which is longer than
7 bytes and shorter than 64bytes1: pass
fragment
0
0
0: not pass fragment
2.4 mg_col16_drop_en
R/W Collision 16 times drop enable
A port drops a transmission packet if it
experiences 16 consecutive collisions.
1: enable
0: disable
20.5
2.5 mg_col_backoff_en
2.6 Reserved
R/W Collision back-off enable
1: back off after collision
1
0: not back off after collision
This bit should be “1” for normal operation.
20.6
20.7
R/W It must be 0.
0
1
2.7 p01_mg_backpress
_en
R/W TP port backpressure enable
Backpressure is flow control for half duplex
operation
1: backpressure enable
0: backpressure disable
20.8
20.9
3.0 mg_rem_ctrl_en
R/W Remote control enable
1: ability enable. IP113M LF is capable of
transmission and receiving maintenance
frame to perform remote control.
0: ability disable. IP113M LF is not capable
of transmission and receiving
1
maintenance frame to perform remote
control.
3.1 mg_auto_tx_mf_en
R/W Auto send status frame to link partner
through fiber port (AUTO_SEND)
Pin (0)
1: auto send indication maintenance frame
0: disable auto send function
This bit overwrites the setting on pin 25
AUTO_SEND. Please see pin description
of AUTO_SEND for more detail information.
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April 9, 2007
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 20(continued)
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Switch configuration register 1 (MII register 20D, EEPROM register 02~03D)
20.10
3.2 mg_auto_tx_ttc
_content
R/W The format of auto send status frame
1: TTC (TS-1000)
1
IP113M LF performs auto send functions
with the frame format defined in TS-1000.
0: ICPLUS
IP113M LF performs auto send functions
with the ICPLUS proprietary frame format.
The frame format is similar to the one
defined in TS-1000 except the bit definition
of S[15:0]. S[15:0] carries the content of MII
register 22[15:0] local MC extended
register. IP113M LF uses the frame to
indicate its status to its link partner. The link
partner, another IP113M LF, stores the
information in the S[15:0] field of the frame
to its MII register 23 after receiving the
frame.
20.11
3.3 mg_sd_off_way
R/W Informing way for optical receiving SD off
1: IP113M LF uses far end fault pattern to
notify the link partner SD off information
through fiber port.
1
0: IP113M LF uses maintenance frame to
notify the link partner SD off information
through fiber port.
20.12
20.13
3.4 Reserved
3.5 tp_force
R/W This bit should be “0” for normal operation.
1
R/W This pin overwrites the setting on pin 26
TP_FORCE. Please see pin description of
TP_FORCE for more detail information.
Pin (0)
20.14
20.15
3.6 mg_receive_en
3.7 p02_receive_on
R/W TP receive enable
1
0
1: TP port can receive packet
0: TP port drop all received packet
This bit should be “1” for normal operation.
RO Fiber port receive path ready
LL
RC
1: Fiber port receive path is ready (SD is on
and normal IDLE pattern received)
0: Fiber port receive path is not ready
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 21
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Switch configuration register 2 (MII register 21D, EEPROM register 04~05D)
The register is for testing only. Access to this register may cause malfunction.
21[7:0] 4[7:0] Reserved
R/W The default value must be adopted if uses
use an EEPORM.
120d
120d
21[15:8] 5[7:0] Reserved
R/W The default value must be adopted if uses
use an EEPORM.
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 22
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Local MC extended register (MII register 22D, EEPROM register 06~07D)
22.0
6.0 mg_loopback_en
R/W TP port loop-back test enable
1: loop back mode
0
0: normal mode
It is a mirror bit of MII register 0 bit 14.
22.1
22.2
6.1
6.2
mg_status_rpt_en
RO
TP port status (link, speed, duplex) available
1: TP status is valid
0: TP status is not ready
0
1
p01_mg_auto_neg
_en
R/W TP port auto-negotiation enable
1: TP auto-negotiation enable
0: TP auto-negotiation disable
It is a mirror bit of MII register 0 bit 12.
22.3
22.4
6.3
6.4
p01_mg_speed
_mode
R/W TP port speed selection
1: 100M, 0:10M
Pin (1)
Pin (0)
It is a mirror bit of MII register 0 bit 13.
p01_mg_duplex
_mode
R/W TP port duplex mode selection
1: full duplex, 0:half duplex
It is a mirror bit of MII register 0 bit 8. This
bit overwrites the setting on pin 30
DUPLEX_MODE.
22.5
6.5
p01_mg_flow_ctrl_
en
R/W TP port flow control selection
1: on, 0:off
Pin (1)
It is a mirror bit of MII register 4 bit 10. This
bit overwrites the setting on pin 29 X_EN for
TP port.
22.6
22.7
6.6
6.7
p01_mg_link_status RO
TP port link status off
1: link off, 0: link on
1
p02_mg_flow_ctrl_
en
R/W Fiber port flow control/backpressure enable
1: enable, 0: disable
Pin (1)
This bit overwrites the setting on pin 29
X_EN for fiber port.
22.8
22.9
7.0
7.1
7.2
p02_mg_duplex
_mode
R/W Fiber port duplex mode
1: full duplex, 0:half duplex
This bit overwrites the setting on pin 36
FX_FULL.
Pin(1)
p02_mg_link_status RO
Fiber port signal detect (power)
1: Fiber SD has been low since last read
0: Fiber SD is O.K.
1
0
LL
RC
It is self-set after reading.
22.10
p02_mg_fef_detect
RO
LH
RC
Fiber port Far-End-Fault detect
1: FEF has been detected since last read
0: no FEF pattern detected
It is self-clear after reading.
47/58
April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 22(continued)
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Local MC extended register (MII register 22D, EEPROM register 06~07D)
22[12:11] 7[4:3] p01_mg_throttle
_confg
R/W TP port input Rate Control
00
IP113M LF limits the input traffic of TP port.
Traffic
10M mode
00 10Mbps
01 2.5Mbps
10 5Mbps
100M mode
100Mbps
25Mbps
50Mbps
11 7.5Mbps
75Mbps
22[14:13] 7[6:5] p01_mg_throttle
_confg
R/W TP port output Rate Control
IP113M LF limits the output traffic of TP
port.
00
Traffic
10M mode
00 10Mbps
01 2.5Mbps
10 5Mbps
100M mode
100Mbps
25Mbps
50Mbps
11 7.5Mbps
75Mbps
22.15
7.7 mg_link_pass_en
R/W Link Fault Pass through enable (LFP)
1: enable, 0: disable
Pin (0)
This bit overwrites the setting on pin 21 LFP.
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 23
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Link partner MC extended status register (MII register 23D)
23.0
--
lp_loopback_en
RO
RO
Loop-back enable of remote LP
0
1: Link partner’s fiber port is in loop back
mode. Its fiber port will forward all receiving
frames from FXRDP/M to FXTDP/M..
0: Link partner’s fiber port is in normal mode
23.1
23.2
23.3
23.4
23.5
--
--
lp_status_rpt_en
lp_tp_autoneg_en
Option B support
1: Link partner supports TS-1000 option B
0: not support
0
0
0
0
0
RO TP port auto-negotiation enable
1: Link supports aut0-negotuation,
0: Link partner doesn’t support auto-negotiation.
-- lp_tp_speed_mode
-- lp_tp_duplex_mode
-- lp_tp_flow_ctrl_en
RO TP port speed of link partner
1: 100M,
0:10M
RO
RO
TP port duplex mode of link partner
1: full duplex,
0: half duplex
TP port flow control of link partner.
1: flow control enable
0: flow control disable
This bit is valid only if MII register 20 bit10
is set to be 0.
23.6
23.7
-- lp_tp_link_off
RO
RO
TP port link status of link partner
1: link off,
0:link on
1
0
-- lp_fb_flow_ctrl_en
Fiber port flow control/backpressure of link
partner
This bit is valid only if MII register 20 bit10
is set to be 0.
1: flow control enable
0: flow control disable
23.8
23.9
-- lp_fb_duplex_mode
-- lp_fb_link_status
RO
RO
Fiber port duplex mode of link partner
0
0
1: full duplex, 0: half duplex
This bit is valid only if MII register 20 bit10
is set to be 0.
Fiber port signal detect status of link partner
1: off,
0: on
This bit is valid only if MII register 20 bit10
is set to be 0.
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April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 23(continued)
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Link partner MC extended status register (MII register 23D)
23.10
23.11
-- reserved
RO
RO
0
0
-- lp_power_abnormal
Power status of link partner
1: power abnormal
0: power O.K.
23.12
23.13
-- lp_mc_failed
-- lp_sd_off_way
RO
RO
MC failed
1: link partner malfunctions
0: link partner is normal
0
1
Link Partner informing way of SD off
1: Link partner sends far end fault pattern
when its SD is off.
0: Link partner sends maintenance frame
when its SD is off.
23.14
23.15
-- lp_multi_tp_port
-- mg_link_pass_en
RO
RO
MC support multi-port UTP
1: Link partner supports more than one TP
port
0
0
0: Link partner supports one TP port
Link Fault Pass through enable
1: Link partner supports Link Fault Pass
Through function
0: Link partner doesn’t support Link Fault
Pass Through function
This bit is valid only if MII register 20 bit10
is set to be 0.
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 24
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Remote control Transmit register 1 (MII register 24D)
24.0
--
mg_rem_tx_code
R/W Remote control frame send trigger
1: command IP113M LF to send a
maintenance frame
0
0: does not command IP113M LF to send a
maintenance frame
If user wants to send another maintenance
frame, he has to write “1” to this bit again.
24.1
--
--
mg_rem_tx_code
mg_rem_tx_code
R/W Transmitted maintenance direction
discriminator C1
0
It is C1 field of a maintenance frame.
0: upstream
1: downstream
24[3:2]
R/W Transmitted maintenance frame command
discriminator C3~C2
00
It is C[3:2] field of a maintenance frame.
01: request
11: acknowledge
10: Indication
00: reserved
24[11:4]
--
mg_rem_tx_code
R/W Transmitted maintenance frame control
signals C15~C8
8’b0
It is C[15:8] field of a maintenance frame.
Bit11(C15) ……..bit4(C8)
Function
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
01
00
10
Loop test start
Loop test finished
Status indication
Address [4:0] R/W 11
R/W link partner’s
registers
Note:
R/W: 0: read, 1: write
A[4:0]: register address
24[15:12] --
Reserved
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 25
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Remote control Transmit register 2 (MII register 25D)
25[15:0]
--
mg_rem_wt_data
R/W Remote control write data
16’b0
If a remote write command is issued, that is,
MII register 24[6:4] is programmed as 111.
The content in this register will be embedded
into S[15:0] of a maintenance and is sent to
the link partner. The link partner, an IP113M
LF, will update the addressed MII register
with the value defined in this register after
receiving the remote write command.
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IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 26
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Remote control Receive register 1 (MII register 26D)
26.0
--
mg_rem_rx_code
RO Receive an acknowledge maintenance, that
0
RC
is field C[2:3]=11, or undefined maintenance
frame.
1: IP113M LF receives a response
(acknowledge) maintenance frame or
undefined maintenance frame.
0: no response (acknowledge)
maintenance frame or undefined
maintenance frame received.
User can poll this bit to make sure if there is
an acknowledge maintenance frame or an
undefined maintenance frame is received. It
is a read and auto-clear bit.
Note: register 26~30 will be updated only
when this bit is 1.
26.1
--
--
--
--
mg_rem_rx_code
mg_rem_rx_code
mg_rem_rx_code
mg_rem_rx_code
RO
RO
RO
Direction discriminator C1 of a received
maintenance frame.
0
26[3:2]
26[11:4]
26[12]
Command discriminator C3~C2 of
received maintenance frame.
a
00
control signals C15~C8 of a received
maintenance frame.
8’b0
RO Received maintenance frame CRC error
RC
1: received a maintenance frame with CRC
error.
0: received a maintenance frame with
correct CRC .
It is a read and auto-clear bit.
26[15:13] --
Reserved
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April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 27,28,29,30
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Remote control Receive register 2 (MII register 27D)
27[15:0]
--
mg_rem_rd_data
RO
Remote read data
16’b0
The link partner will send out a maintenance
frame carrying remote-read data if IP113M
LF issues a remote-read command by
sending a maintenance frame. It is derived
from the S[15:0] field of
a received
maintenance frame sent by the link partner.
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Remote control Receive register 3 (MII register 28D)
28[15:0]
--
mg_rem_rd_data
RO
Vender message M0~M15
The M[15:0] field of
16’b0
a
received
maintenance frame sent by the link partner.
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Remote control Receive register 4 (MII register 29D)
29[15:0]
--
mg_rem_rd_data
RO Vender message M16~M31
The M[31:16] field of
16’b0
a
received
maintenance frame sent by the link partner.
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Remote control Receive register 5 (MII register 30D)
30[15:0]
--
mg_rem_rd_data
RO Vender message M32~M47
The M[47:32] field of
16’b0
a
received
maintenance frame sent by the link partner.
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April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
Extended MII registers and EEPROM registers 31
MII
ROM
NAME
R/W
DESCRIPTION
DEFAULT
Switch configuration register 3 (MII register 31D)
31.0
31.1
-- software_reset
R/W Chip software reset
SC Reset IP113M LF without updating the
0
content of registers. It is a self-clear bit.
1: reset, 0: not reset
-- mg_power_indicate
_disable
R/W IP113M LF power abnormal indication
disable
0
1: IP113M LF does not send out
maintenance frame with power abnormal
message when its power is abnormal
0: IP113M LF sends out maintenance
frame with power abnormal message
when its power is abnormal
31.2
31.3
-- TP_link_list_fail
-- Fiber_link_list_fail
-- BIST_status
RO
RO
TP port link list failure indication
0
0
1: TP port memory link list fails
0: TP port memory link list is ok
This bit is always 0, if IP113M LF is in
normal operation.
Fiber port link list failure indication
1: Fiber port memory link list fails
0: Fiber port memory link list is ok
This bit is always 0, if IP113M LF is in
normal operation.
31[5:4]
RO BIST Status of embedded SSRAM
bit[4] : memory is under testing
1: under testing, 0: testing over
bit[5] : memory test result is good when
testing over
01
1: good, 0: fail
Bit[5:4] is “01” at the end of reset. After
BIST, If the test result is ok, it becomes
“10”, otherwise it shows “00”.
31.6
31.7
-- mg_auto_loopback
_test
R/W Auto loopback test enable
0
0
1: start an auto loopback test procedure,
0:does not perform auto loop back test
-- mg_t2_timer_disable R/W Loopback test T2 timer disabled
Disable the function of T2 timer defined in
TS-1000.
1: IP113M LF does not send loopback end
indication maintenance frame when T2
timer expires
0: IP113M LF sends loopback end
maintenance frame when T2 timer expires
31.8
-- mg_auto_loopback
_complete
RO
Auto loopback test complete
1: loopback test is completed,
0: under testing
0
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Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
31.9
-- mg_auto_loopback
_ok
RO
Auto loopback test OK
1: loopback test result is ok
0: loopback test result fails
0
31[15:10] -- Reserved
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April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
IP113M LF
Preliminary Data Sheet
4. Electrical Characteristics
4.1 Absolute Maximum Rating
Stresses above those listed under Absolute Maximum Ratings may cause permanent damage to the
device. Functional performance and device reliability are not guaranteed under these conditions. All
voltages are specified with respect to GND.
Supply Voltage
Input Voltage
Output Voltage
Storage Temperature
Ambient Operating Temperature (Ta)
–0.3V to Vcc+0.3V
–0.3V to Vcc+0.3V
–0.3V to Vcc+0.3V
-55°C to 125°C
0°C to 70°C
4.2. DC Characteristic
Operating Conditions
Parameter
Supply Voltage
Sym.
Min.
Typ.
2.5
Max.
Unit
V
Conditions
VCC
2.375
2.645
Power Consumption
0.475
W
VCC=2.5v
Input Clock
Parameter
Frequency
Sym.
Min.
Typ.
Max.
Unit
MHz
PPM
Conditions
Conditions
25
Frequency Tolerance
-100
+100
I/O Electrical Characteristics
Parameter
Input Low Voltage
Sym.
VIL
Min.
Typ.
Max.
Unit
V
0.8
Input High Voltage
Output Low Voltage
Output High Voltage
VIH
2.0
V
VOL
VOH
0.4
V
IOH=4mA
IOL=4mA
VCC_I
O-0.4
V
5. Order Information
Part No.
IP113M
Package
Notice
48-PIN LQFP
48-PIN LQFP
-
IP113M LF
Lead free
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April 9, 2007
IP113M LF-DS-R11
Copyright © 2004, IC Plus Corp.
IP113M LF
Preliminary Data Sheet
6. Package Detail
48
37
1
36
12
25
13
24
"E"
HE
12"
GAUGE PLANE
F
SEATING
PLANE
y
F
12"
e
b
θ
L
E
L1
DETAIL "E"
13
24
unit
mm
inch
Symbol
A
1.600MAX.
0.0630MAX.
12
25
A1
A2
b
0.050~0.150
0.0020~0.0059
2
+
+
1.400 0.05
0.0551 0.0020
-
-
0.200TYP
0.127TYP
0.0078TYP
0.0050TYP
c
+
+
D
7.000 0.100
0.2756 0.0039
-
-
+
+
E
7.000 0.100
0.2756 0.0039
-
-
2
e
0.500TYP
0.0196TYP
+
+
Hd
He
L
9.000 0.250
0.3543 0.0098
-
-
+
+
9.000 0.250
0.3543 0.0098
1
36
-
-
+
+
0.600 0.150
0.0236 0.006
-
-
L1
y
1.000REF
0.100MAX.
0"~7"
0.0393REF
0.0039MAX.
0"~7"
48
37
Notes:
1. DIMENSION D & E DO NOT INCLUDE MOLD FLASH OR PROTRUSION.
2. DIMENSION b DOES NOT INCLUDE DAMBAR PROTRUSION / INTRUSION.
3. MAX. END FLASH IS 0.15MM.
4. MAX. DAMBAR PROTRUSION IS 0.13MM.
GENERAL APPEARANCE SPEC SHOULD BE BASED ON FINAL VISUAL INSPECTION SPEC.
IC Plus Corp.
Headquarters
Sales Office
10F, No.47, Lane 2, Kwang-Fu Road, Sec. 2,
Hsin-Chu City, Taiwan 300, R.O.C.
4F, No. 106, Hsin-Tai-Wu Road, Sec.1,
Hsi-Chih, Taipei Hsien, Taiwan 221, R.O.C.
TEL : 886-3-575-0275
FAX : 886-3-575-0475
TEL : 886-2-2696-1669
FAX : 886-2-2696-2220
Website : www.icplus.com.tw
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April 9, 2007
Copyright © 2004, IC Plus Corp.
IP113M LF-DS-R11
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