FTM-5001C-SL80G [SOURCE]

155Mbps SFP Transceiver with Spring Latch; 155Mbps的SFP收发器与弹簧锁
FTM-5001C-SL80G
型号: FTM-5001C-SL80G
厂家: SOURCE PHOTONICS, INC.    SOURCE PHOTONICS, INC.
描述:

155Mbps SFP Transceiver with Spring Latch
155Mbps的SFP收发器与弹簧锁

光纤 石英晶振
文件: 总11页 (文件大小:247K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
May 12, 2006  
155Mbps SFP Transceiver with Spring Latch  
(For 15km80km transmission)  
Members of FlexonTM Family  
‹
‹
Compatible with FCC 47 CFR Part 15, Class B  
Compatible with FDA 21 CFR 1040.10 and  
1040.11, Class I  
‹
Compliant with RoHS  
Description  
Fiberxon 155Mbps spring-latch SFP transceiver is  
high performance, cost effective modules that  
supports data-rate of 155Mbps and transmission  
distance from 15km to 0km.  
Features  
‹
‹
Up to 155Mbps data-rate  
1310nm FP laser and PIN photodetector for  
15km and 40km transmission  
The transceiver consists of two sections: The  
transmitter section incorporates a FP or uncooled  
DFB laser. And the receiver section consists of a  
PIN photodiode integrated with a trans-impedance  
preamplifier (TIA). All modules satisfy class I laser  
safety requirements.  
‹
‹
1550nm uncooled DFB laser and P
photodetector for 80km transmission  
Standard serial ID information Compatible wit
SFP MSA  
‹
‹
‹
‹
‹
SFP MSA package witplex LC connector  
With spring latch for easremoving  
Very low EMI and excellent ESD protection  
+3.3V single power supply  
The optical output can be disabled by a TTL logic  
high-level input of Tx Disable. Tx Fault is provided to  
indicate degradation of the laser. Loss of signal  
(LOS) output is provided to indicate the loss of an  
input optical signal of receiver.  
Operating case temperature:  
Standard : 0 to +70℃  
Industrial : -40 to +85℃  
The standard serial ID information Compatible with  
SFP MSA describes the transceiver’s capabilities,  
standard interfaces, manufacturer and other  
information. The host equipment can access this  
information via the two-wire serial CMOS EEPROM  
protocol. For further information, please refer to SFP  
Multi-Source Agreement (MSA).  
Applications  
‹
‹
‹
SDH STM-1, S-1.1, L-1.1, L-1.2  
SONET OC-3 IR1, LR1, LR2  
Other optical links  
Standard  
‹
‹
‹
Compatible with SFP MSA  
Compatible with ITU-T G.957 and G.958  
Compatible with Telcordia GR-253-CORE  
Fiberxon Proprietary and Confidential, Do Not Copy or Distribute  
Page 1 of 11  
Controlled Electronic Version. 24hrs Obsolete when printed out without authorization. Last printed 2006-05-15 10:28  
155Mbps Spring Latch SFP Transceiver  
May 12, 2006  
1580 km transmission  
Regulatory Compliance  
The transceivers have been tested according to American and European product safety and electromagnetic  
compatibility regulations (See Table 1). For further information regarding regulatory certification, please refer  
to Fiberxon regulatory specification and safety guidelines, or contact with Fiberxon, Inc. America sales office  
listed at the end of the documentation.  
Table 1 - Regulatory Compliance  
Feature  
Standard  
MIL-STD-883E  
Method 3015.7  
Performance  
Class 1(>500 V)  
Electrostatic Discharge  
(ESD) to the Electrical Pins  
Electrostatic Discharge (ESD) IEC 61000-4-2  
Compatible with standards  
Comptible with standards  
to the Duplex LC Receptacle  
GR-1089-CORE  
FCC Part 15 Class B  
EN55022 Class B (CISPR 22B)  
VCCI Class B  
Electromagnetic  
Interference (EMI)  
Immunity  
IEC 61000-4-3  
Compatible with standards  
Compatible with Class 1 laser  
product.  
FDA 21CFR 104and 1040.11  
EN60950, EN (IE60825-1,2  
Laser Eye Safety  
Component Recognition  
TUV Certificate No. 50030043  
UL file E223705  
UL and CSA  
Absolute Maximum Ratings  
Stress in excess of the maximum absolute ratings can cause permanent damage to the module.  
Table 2 - Absolute Maximum Ratings  
Parameter  
Storage Temperature  
Symbol  
Min.  
-40  
-0.5  
5
Max.  
+85  
3.6  
Unit  
°C  
V
TS  
VCC  
-
Supply Voltage  
Operating Relative Humidity  
95  
%
Recommended Operating Conditions  
Table 3- Recommended Operating Conditions  
Parameter  
Symbol  
Min.  
0
Typical  
Max.  
+70  
+85  
3.47  
300  
Unit  
Standard  
Industrial  
TC  
Operating Case  
Temperature  
°C  
-40  
3.13  
Power Supply Voltage  
Power Supply Current  
Data Rate  
VCC  
ICC  
3.3  
V
mA  
155  
Mbps  
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Page 2 of 11  
Controlled Electronic Version. 24hrs Obsolete when printed out without authorization. Last printed 2006-05-15 10:28  
155Mbps Spring Latch SFP Transceiver  
May 12, 2006  
1580 km transmission  
FTM-3001C-SL15G, FTM-3001C-SL15iG (1310nm FP and PIN, 15km)  
Table 4 - Optical and Electrical Characteristics  
Parameter  
Symbol  
Min.  
Transmitter  
1261  
Typical  
Max.  
Unit  
Notes  
Centre Wavelength  
λC  
P0ut  
σ
1360  
-8  
nm  
Average Output Power  
Spectral Width (RMS)  
Extinction Ratio  
-15  
dBm  
nm  
dB  
UI  
1
4
EX  
8.2  
Jitter Generation (RMS)  
Jitter Generation (pk-pk)  
0.01  
0.1  
UI  
Compatible with Telcordia GR-253-CORE and ITU-T  
G.957  
Output Optical Eye  
2
3
Data Input Swing Differential  
Input Differential Impedance  
VIN  
ZIN  
300  
1860  
10  
mV  
V
90  
100  
Disable  
TX Disable  
2.0  
Vcc  
Enable  
0
2.0  
0.8  
V
Fault  
TX Fault  
Vcc+0.3  
0.8  
V
Normal  
0
V
Rceiver  
1260  
Centre Wavelength  
Receiver Sensitivity  
Receiver Overload  
Optical Path Penalty  
LOS De-Assert  
λC  
1580  
-34  
nm  
dBm  
dBm  
dB  
4
4
5
-8  
1
LOSD  
LOSA  
-37  
dBm  
dBm  
dB  
LOS Assert  
-45  
1
LOS Hysteresis  
4
DataOutput Swing Differential  
VOUT  
370  
2.0  
0
1800  
Vcc+0.3  
0.8  
mV  
V
6
High  
LOS  
Low  
V
Notes:  
1. The optical power is launched into SMF.  
2. Measured with a PRBS 223-1 test pattern @155Mbps.  
3. PECL input, internally AC coupled and terminated.  
4. Measured with a PRBS 223-1 test pattern @155Mbps, BER 1×10-10.  
5. Measured with a PRBS 223-1 test pattern @155Mbps, over 15km G.652 SMF, BER 1×10-10.  
6. Internally AC coupled.  
Fiberxon Proprietary and Confidential, Do Not Copy or Distribute  
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Controlled Electronic Version. 24hrs Obsolete when printed out without authorization. Last printed 2006-05-15 10:28  
155Mbps Spring Latch SFP Transceiver  
May 12, 2006  
1580 km transmission  
FTM-3001C-SL40G, FTM-3001C-SL40iG (1310nm FP and PIN, 40km)  
Table 5 - Optical and Electrical Characteristics  
Parameter  
Symbol  
Min.  
Transmitter  
1263  
Typical  
Max.  
Unit  
Notes  
Centre Wavelength  
λC  
P0ut  
σ
1360  
nm  
Average Output Power  
Spectral Width (RMS)  
Extinction Ratio  
-5  
0
3
dBm  
nm  
dB  
UI  
1
EX  
10  
Jitter Generation (RMS)  
Jitter Generation (pk-pk)  
0.01  
0.1  
UI  
Compatible with Telcordia GR-253-CORE and ITU-T  
G.957  
Output Optical Eye  
2
3
Data Input Swing Differential  
Input Differential Impedance  
VIN  
ZIN  
300  
1860  
10  
mV  
V
90  
100  
Disable  
TX Disable  
2.0  
Vcc  
Enable  
0
2.0  
0.8  
V
Fault  
TX Fault  
Vcc+0.3  
0.8  
V
Normal  
0
V
Rceiver  
1260  
Centre Wavelength  
Receiver Sensitivity  
Receiver Overload  
Optical Path Penalty  
LOS De-Assert  
λC  
1580  
-34  
nm  
dBm  
dBm  
dB  
4
4
5
-8  
1
LOSD  
LOSA  
-37  
dBm  
dBm  
dB  
LOS Assert  
-45  
1
LOS Hysteresis  
4
DataOutput Swing Differential  
VOUT  
370  
2.0  
0
1800  
Vcc+0.3  
0.8  
mV  
V
6
High  
LOS  
Low  
V
Notes:  
1. The optical power is launched into SMF.  
2. Measured with a PRBS 223-1 test pattern @155Mbps.  
3. PECL input, internally AC coupled and terminated.  
4. Measured with a PRBS 223-1 test pattern @155Mbps, extinction ratio ER=10dB, BER 1×10-10.  
5. Measured with a PRBS 223-1 test pattern @155Mbps, over 40km G.652 SMF, BER 1×10-10.  
6. Internally AC coupled.  
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Controlled Electronic Version. 24hrs Obsolete when printed out without authorization. Last printed 2006-05-15 10:28  
155Mbps Spring Latch SFP Transceiver  
May 12, 2006  
1580 km transmission  
FTM-5001C-SL80G (1550nm DFB and PIN, 80km)  
Table 6 - Optical and Electrical Characteristics  
Parameter  
Symbol  
Min.  
Transmitter  
1480  
Typical  
Max.  
Unit  
Notes  
Centre Wavelength  
λC  
P0ut  
1580  
nm  
Average Output Power  
Spectral Width (-20dB)  
Side Mode Suppression Ratio  
Extinction Ratio  
-5  
0
1
dBm  
nm  
dB  
dB  
UI  
1
∆λ  
SMSR  
EX  
30  
10  
Jitter Generation (RMS)  
Jitter Generation (pk-pk)  
0.01  
0.1  
UI  
Compatible with Telcordia GR-253-CORE and ITU-T  
G.957  
Output Optical Eye  
2
3
Data Input Swing Differential  
Input Differential Impedance  
VIN  
ZIN  
300  
160  
110  
mV  
V
90  
100  
Disable  
TX Disable  
2.0  
Vcc  
Enable  
0
2.0  
0.8  
V
Fault  
TX Fault  
Vcc+0.3  
0.8  
V
Normal  
0
V
Receiver  
1260  
Centre Wavelength  
Receiver Sensitivity  
Receiver Overload  
Optical Path Penalty  
LOS De-Assert  
λC  
1580  
-34  
nm  
dBm  
dBm  
dB  
4
4
5
-8  
1
LOSD  
LOSA  
-37  
dBm  
dBm  
dB  
LOS Assert  
-45  
1
LOS Hysteresis  
4
DataOutput Swing Differential  
VOUT  
370  
2.0  
0
1800  
Vcc+0.3  
0.8  
mV  
V
6
High  
LOS  
Low  
V
Notes:  
1. The optical power is launched into SMF.  
2. Measured with a PRBS 223-1 test pattern @155Mbps.  
3. PECL input, internally AC coupled and terminated.  
4. Measured with a PRBS 223-1 test pattern @155Mbps, extinction ratio ER=10dB, BER 1×10-10.  
5. Measured with a PRBS 223-1 test pattern @155Mbps, over 80km G.652 SMF, BER 1×10-10.  
6. Internally AC coupled.  
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155Mbps Spring Latch SFP Transceiver  
May 12, 2006  
1580 km transmission  
EEPROM Information  
The SFP MSA defines a 256-byte memory map in EEPROM describing the transceiver’s capabilities,  
standard interfaces, manufacturer, and other information, which is accessible over a two-wire serial interface  
at the 8-bit address 1010000X (A0h). For memory contents please refer to Table 7.  
Table 7 - EEPROM Serial ID Memory Contents (A0h)  
Field Size  
Addr.  
Name of Field  
Hex  
Description  
(Bytes)  
0
1
1
1
1
8
1
1
1
1
1
1
1
1
1
Identifier  
03  
SFP  
Ext. Identifier 04  
Connector 07  
Transceiver 00 00 xx 00 00 00 00 00  
Encoding 03  
BR, nominal 01  
Reserved 00  
MOD4  
2
LC  
3—10  
11  
OC 3, Single mode inter. or long reach  
NRZ  
12  
13  
14  
15  
16  
17  
18  
19  
155Mbps  
Length (9um)-kmxx  
Length (9um) xx  
Length (50um) 00  
Length .5um) 00  
Length per) 00  
15km/40km/80km(0F/28/50)  
15km/40km/80km(96/FF/FF)  
Resd  
Vendor name  
Reserved  
00  
46 49 42 45 52 58 4F 4E  
20 49 4E 43 2E 20 20 20  
00  
20—35  
16  
“FIBERXON INC. “(ASC)  
36  
1
3
37—39  
Vendor OUI 00 00 00  
46 54 4D 2D xx 30 30 31  
40—55  
16  
Vendor PN  
“FTM-x001C-SLxx(i)G” (ASC)  
43 2D 53 4C xx xx xx 47  
56—59  
60—62  
63  
4
3
1
2
1
1
Vendor rev  
Reserved  
CC BASE  
Options  
xx xx 00 00  
ASC(“31 30 00 00” means 1.0 revision)  
00 00 00  
xx  
Check sum of bytes 0 - 62  
64—65  
66  
00 1A  
LOS, TX_FAULT and TX_DISABLE  
BR, max  
BR, min  
00  
67  
00  
xx xx xx xx xx xx xx xx  
xx xx xx xx xx xx xx xx  
68—83  
16  
Vendor SN  
ASCⅡ.  
84—91  
92—94  
95  
8
3
Vendor date codexx xx xx xx xx xx 20 20 Year (2 bytes, Month (2 bytes), Day (2 bytes)  
Reserved  
CC EXT  
00 00 00  
xx  
1
Check sum of bytes 64 - 94  
96—255  
160  
Vendor specific  
Note: The “xx” byte should be filled in according to practical case. For more information, please refer to the  
related document of SFP Multi-Source Agreement (MSA).  
Fiberxon Proprietary and Confidential, Do Not Copy or Distribute  
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155Mbps Spring Latch SFP Transceiver  
May 12, 2006  
1580 km transmission  
Recommended Host Board Power Supply Circuit  
Figure 1 shows the recommended host board power supply circuit.  
Figure 1, Recommended Host Board Power Supply Circut  
Recommended Interface Circuit  
Figure 2 shows the recommended interface circuit
Host Board  
Vc3V)  
SFP Module  
VccT  
10K  
2×4.0K  
TX Disable  
TX Fault  
TD +  
Z=50  
SerDat Out +  
SerDat Out -  
Laser  
driver  
Z=50  
Z=50  
TD -  
RD +  
RD -  
Protocol  
IC  
SERDES  
IC  
SerDat In +  
SerDat In -  
Amplifier  
Z=50  
LOS  
Vcc (+3.3V)  
3×4.7K to 10K  
MOD-DEF2  
MOD-DEF1  
MOD-DEF0  
EEPROM  
RGND  
Figure 2, Recommended Interface Circuit  
Pin Definitions  
Figure 3 below shows the pin numbering of SFP electrical interface. The pin functions are described in Table 8  
with some accompanying notes.  
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155Mbps Spring Latch SFP Transceiver  
May 12, 2006  
1580 km transmission  
P in 20  
P in 11  
TO P V IE W  
O F B O A R D  
P in 10  
B O TTO M V IE W  
O F B O A R D  
P in  
1
Figure 3, Pin View  
Table 8– Pin Function Definitions  
Pin No.  
1
Name  
VeeT  
Function  
Plug Seq
Notes  
Transmitter Ground  
1
3
3
3
3
3
3
3
1
1
1
3
3
1
2
2
1
3
3
1
2
TX Fault  
TX Disable  
MOD-DEF2  
MOD-DEF1  
MOD-DEF0  
Rate Select  
LOS  
Transmitter Fault Indication  
Transmitter Disabl
Module Definition 2  
Module Definition 1  
Module Definition 0  
Not Connected  
Note 1  
Note 2  
Note 3  
Note 3  
Note 3  
3
4
5
6
7
8
Loss of Signal  
Note 4  
9
VeeR  
Receiver Ground  
Receiver Ground  
Receiver Ground  
Inv. Received Data Out  
Received Data Out  
Receiver Ground  
Receiver Power  
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
20  
VeeR  
VeeR  
RD-  
Note 5  
Note 5  
RD+  
VeeR  
VccR  
VccT  
Transmitter Power  
Transmitter Ground  
Transmit Data In  
VeeT  
TD+  
Note 6  
Note 6  
TD-  
Inv. Transmit Data In  
Transmitter Ground  
VeeT  
Notes:  
1. TX Fault is an open collector output, which should be pulled up with a 4.7k~10kresistor on the host  
board to a voltage between 2.0V and Vcc+0.3V. Logic 0 indicates normal operation; logic 1 indicates a  
laser fault of some kind. In the low state, the output will be pulled to less than 0.8V.  
2. TX Disable is an input that is used to shut down the transmitter optical output. It is pulled up within the  
module with a 4.7k~10kresistor. Its states are:  
Low (0~0.8V):  
Transmitter on  
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155Mbps Spring Latch SFP Transceiver  
May 12, 2006  
1580 km transmission  
(>0.8V, <2.0V):  
High (2.0~3.465V):  
Open:  
Undefined  
Transmitter Disabled  
Transmitter Disabled  
3. MOD-DEF 0,1,2 are the module definition pins. They should be pulled up with a 4.7k~10kresistor on  
the host board. The pull-up voltage shall be VccT or VccR.  
MOD-DEF 0 grounded by the module indicates that the module is present  
MOD-DEF 1 is the clock line of two-wire serial interface for serial ID  
MOD-DEF 2 is the data line of two-wire serial interface for serial ID  
4. LOS is an open collector output, which should be pulled up with a 4.7k~10kresistor on the host board to  
a voltage between 2.0V and Vcc+0.3V. Logic 0 indicates normal operation; logic 1 indicates loss of signal.  
In the low state, the output will be pulled to less than 0.8V.  
5. These are the differential receiver outputs. They are internally AC-coupled 100differential lines which  
should be terminated with 100(differential) at the user SERDES.  
6. These are the differential transmitter inputs. They are AC-coupled, differential lines with 100differential  
termination inside the module.  
Mechanical Design Diagram  
The mechanical design diagram is shown in Figure
34.6± 0.1  
41.8± 0.15  
45.0± 0.2  
LABEL  
55.7± 0.1  
6.25± 0.05  
Rx  
Tx  
Figure 4, Mechanical Design Diagram of the SFP with Spring-Latch  
Ordering information  
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155Mbps Spring Latch SFP Transceiver  
May 12, 2006  
1580 km transmission  
FTM  
x
0
0
1
C
S
G
L
x
x
x
Others  
Wavelength  
3: 1310nm  
5: 1550nm  
Receptacle  
C: LC  
: RoHS Compliance  
G
Distance  
15: 15km  
40: 40km  
80: 80km  
Function  
0: Standard  
Package  
SL: SFP with Spring Latch  
Temperature  
S: Standard Temp  
i: Industrial Temp  
( This bit will be omiited  
when it is "S" )  
Data rate  
01: 155M  
Part No.  
Product Description  
FTM-3001C-SL15G  
FTM-3001C-SL15iG  
FTM-3001C-SL40G  
FTM-3001C-SL40iG  
FTM-5001C-SL80G  
1310nm, 155Mbps, 15km, SFP with spring latch, 0°C~+70°C,RoHS compliance  
1310nm, 155Mbps, 15km, SFP with spring latch, -40°C~+85°C,RoHS compliance  
1310nm, 155Mbps, 40km, SFP with spring latch, 0°C~70°C,RoHS compliance  
1310nm, 155Mbps, 40km, SFP with spring atch, 40°C~+85°C,RoHS compliance  
1550nm, 155Mbps, 80km, SFP with spring latch, 0°C~+70°C,RoHS compliance  
Related Documents  
For further information, pleefer to the following documents:  
Fiberxon Spring-Latch SFP Installation Guide  
Fiberxon SFP Application Notes  
SFP Multi-Source Agreement (MSA)  
Obtaining Document  
You can visit our website:  
http://www.fiberxon.com  
Or contact Fiberxon, Inc. America Sales Office listed at the end of the documentation to get the latest  
documents.  
Revision History  
Revision  
Rev. 1a  
Rev. 1b  
Initiate  
Review  
Approve  
Subject  
Release Date  
Dec 23, 2005  
Mar 15, 2006  
Solaris Zhu Monica Wei  
Solaris Zhu Monica Wei  
Walker.Wei  
Initial datasheet  
Walker.Wei Modified the recommended  
circuit; Updated overload  
value to -8dBm  
Rev. 1c  
Solaris Zhu Monica Wei  
Walker.Wei Deleted FTM-5001C-SL80iG  
May 12, 2006  
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155Mbps Spring Latch SFP Transceiver  
May 12, 2006  
1580 km transmission  
and updated datasheet from  
preliminary version to formal  
version  
© Copyright Fiberxon Inc. 2006  
All Rights Reserved.  
All information contained in this document is subject to change without notice. The products described in this  
document are NOT intended for use in implantation or other life support applications where malfunction may  
result in injury or death to persons.  
The information contained in this document does not affect or change Fiberxon product specifications or  
warranties. Nothing in this document shall operate as an express or implied license or indemnity under the  
intellectual property rights of Fiberxon or third parties. All information contained in this document was obtained  
in specific environments, and is presented as an illustration. The results obtained in other operating  
environment may vary.  
THE INFORMATION CONTAINED IN THIS DOCUMENT IS PROVIDED ON AN ”AS IS” BASIS. In no event  
will Fiberxon be liable for damages arising directly from any use of the informatioconained in this document.  
Contact  
U.S.A. Headquarter:  
5201 Great America Parkway, Suite 350  
Santa Clara, CA 95054  
U. S. A.  
Tel: 408-562-6288  
Fax: 408-562-6289  
Or visit our website: http://www.fiberxon.com  
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Fiber Optic Device,
SOURCE

FTM-5006C-SL80G

Fiber Optic Device,
SOURCE

FTM-5012C-SL80G

1.25G Spring-Latch SFP Transceiver
SOURCE

FTM-5012S-G50

Fiber Optic Device,
SOURCE

FTM-5012S-G50G

1.0625~1.25Gbps GBIC Transceiver
SOURCE

FTM-5012S-G80

Fiber Optic Device,
SOURCE

FTM-5012S-G80G

1.25Gbps GBIC Transceiver
SOURCE

FTM-5101C-L80

Fiber Optic Device,
SOURCE

FTM-5101C-L80G

Fiber Optic Device,
SOURCE

FTM-5101C-L80I

Fiber Optic Device,
SOURCE