DSC2132FI1-T [MICREL]

Low-Jitter I2C/SPI Programmable LVDS-LVPECL Oscillator;
DSC2132FI1-T
型号: DSC2132FI1-T
厂家: MICREL SEMICONDUCTOR    MICREL SEMICONDUCTOR
描述:

Low-Jitter I2C/SPI Programmable LVDS-LVPECL Oscillator

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DSC2132 DSC2232  
Low-Jitter I2C/SPI Programmable LVDS-LVPECL Oscillator  
General Description  
Features  
The DSC2132 and DSC2232 series of  
Low RMS Phase Jitter: <1 ps (typ)  
High Stability: ±50 ppm  
programmable,  
high-performance  
dual  
oscillators utilizes a proven silicon MEMS  
technology to provide excellent jitter and  
stability while incorporating additional device  
flexibility. DSC2132 and DSC2232 allow the  
user to independently modify the frequency  
of each output using I2C or SPI interface,  
respectively. User can also select from two  
pre-programmed default output frequencies  
using the control pin.  
Wide Temperature Range  
o Industrial: -40° to 85° C  
o Ext. commercial: -20° to 70° C  
High Supply Noise Rejection: -50 dBc  
Independent LVDS & LVPECL Outputs  
I2C/SPI Programmable Frequencies  
Short Lead Times: 2 Weeks  
DSC2132 and DSC2232 are packaged in 14-  
pin 3.2x2.5 mm QFN packages and available  
in temperature grades from Ext. Commercial  
to Industrial.  
Wide Frequency Range:  
o LVDS Output: 2.3 to 460 MHz  
o LVPECL Output: 2.3 to 460 MHz  
Miniature Footprint of 3.2x2.5mm  
Excellent Shock & Vibration Immunity  
o Qualified to MIL-STD-883  
Block Diagram  
High Reliability  
o 20x better MTF than quartz oscillators  
Supply Range of 2.25 to 3.6 V  
Lead Free & RoHS Compliant  
Applications  
Storage Area Networks  
o SATA, SAS, Fibre Channel  
Passive Optical Networks  
o EPON, 10G-EPON, GPON, 10G-PON  
Ethernet  
o 1G, 10GBASE-T/KR/LR/SR, and FCoE  
HD/SD/SDI Video & Surveillance  
PCI Express  
Pin # DSC2132 (I2C)  
DSC2232 (SPI)  
3
5
6
7
NC  
SDA  
SCL  
SCLK  
MOSI  
MISO  
SS  
CS_bar  
______________________________________________________________________________________________________________________________________________  
DSC2132 DSC2232 Page 1 MK-Q-B-P-D-12050108  
Low-Jitter I2C/SPI Programmable LVDS-LVPECLOscillator  
DSC2132 DSC2232  
Pin Description  
Pin No. Pin Name Pin Type  
Description  
Enables outputs when high and disables when low  
Leave unconnected or grounded  
DSC2132: Leave unconnected or grounded  
DSC2232: Serial clock from master  
Ground  
1
2
Enable  
NC  
NC  
SCLK  
GND  
SDA  
MOSI  
SCL  
MISO  
CS_bar  
SS  
I
NA  
NA  
I
Power  
I
3
4
5
DSC2132: I2C Serial Data  
DSC2232: SPI Serial Data from Master to Slave  
I
O
I
I
DSC2132: I2C Serial Clock  
6
7
DSC2232: SPI Serial Data from Slave to Master  
DSC2132: I2C Chip Select (Active Low)  
DSC2232: SPI Slave Select (Active Low)  
Positive LVDS Output 1  
Negative LVDSOutput 1  
Negative LVPECL Output 2  
Positive LVPECL Output 2  
Power Supply for LVDS Output  
Power Supply  
8
9
Output1+  
Output1-  
Output 2-  
Output 2+  
VDD2  
VDD  
O
O
O
10  
11  
12  
13  
14  
O
Power  
Power  
I
FS  
Default output clock frequency bit  
Operational Description  
The DSC2132/2232 is a dual oscillator with an  
LVPECL output and an LVDS output. The  
device consists of a MEMS resonator and a  
support PLL IC. The outputs are generated  
through independent 8-bit programmable  
dividers from the output of the internal PLL.  
control pin (FS) selects the initial pair. Once  
the device is powered up, a new output  
frequency  
pair  
can  
be  
programmed.  
Programming details are provided in the  
Programming Guide. Standard default  
frequency pairs are described in the following  
sections. Discera supports customer defined  
versions of the DSC2132/22332.  
DSC2132/2232 allows for easy programming  
of the output frequencies using I2C/SPI  
interface. Upon power-up, the initial output  
frequencies are controlled by an internal pre-  
programmed memory (OTP). This memory  
stores all coefficients required by the PLL for  
two different default frequency pairs. The  
When Enable (pin 1) is floated or connected to  
VDD, the DSC2132/2232 is in operational  
mode. Driving Enable to ground will tri-state  
both output drivers (hi-impedance mode).  
______________________________________________________________________________________________________________________________________________  
DSC2132 DSC2232 Page 2 MK-Q-B-P-D-12050108  
Low-Jitter I2C/SPI Programmable LVDS-LVPECLOscillator  
DSC2132 DSC2232  
Output Clock Frequencies  
Table 1 lists the standard default frequency configurations and the associated ordering information  
to be used in conjunction with the ordering code. Customer defined combinations are available.  
Table 1. Pre-programmed pin-selectable output frequency pairs  
Select Bit [FS] Default is [1]  
Ordering  
Info  
Freq  
(MHz)  
fOUT1  
fOUT2  
fOUT1  
fOUT2  
fOUT1  
0
1
125  
0*  
L0001  
L0002  
156.25  
125  
156.25  
0*  
156.25  
156.25  
Contact factory for additional  
configurations.  
LXXXX  
fOUT2  
Frequency select bit are weakly tied high so if left unconnected the default setting will be [1] and  
the device will output the associated frequency highlighted in Bold.  
0* denotes invalid selection, output frequency is not specified.  
Absolute Maximum Ratings  
Ordering Code  
Item  
Min  
Max  
Unit Condition  
Prog Mode  
1: I2C bus  
2: SPI bus  
Temp Range  
E: -20 to 70  
I: -40 to 85  
Packing  
T: Tape & Reel  
: Tube  
Supply Voltage  
-0.3  
+4.0  
V
Input Voltage  
Junction Temp  
Storage Temp  
Soldering Temp  
-0.3 VDD+0.3  
V
°C  
°C  
-
-55  
-
+150  
+150  
+260  
DSC2 1 32 F I 1  
xxxxx  
T
-
°C  
V
40sec max.  
ESD  
HBM  
MM  
-
Package  
F: 3.2x2.5mm  
Stability  
1: ±50ppm  
Freq (MHz)  
See Freq. table  
4000  
400  
CDM  
1500  
Note: 1000+ years of data retention on internal memory  
______________________________________________________________________________________________________________________________________________  
DSC2132 DSC2232 Page 3 MK-Q-B-P-D-12050108  
Low-Jitter I2C/SPI Programmable LVDS-LVPECLOscillator  
DSC2132 DSC2232  
Specifications (Unless specified otherwise: T=25° C)  
Parameter  
Supply Voltage1  
Condition  
Min.  
Typ.  
Max.  
3.6  
Unit  
V
VDD  
IDD  
2.25  
Supply Current  
Supply Current2  
EN pin low outputs are disabled  
21  
64  
23  
mA  
EN pin high outputs are enabled  
RL=50Ω, FO1=FO2 =156.25 MHz  
Includes frequency variations due  
to initial tolerance, temp. and  
power supply voltage  
IDD  
mA  
Frequency Stability  
Aging  
Startup Time3  
Δf  
±50  
ppm  
Δf  
tSU  
1 year @25°C  
T=25°C  
±5  
5
ppm  
ms  
Input Logic Levels  
Input logic high  
Input logic low  
VIH  
VIL  
0.75xVDD  
-
-
V
0.25xVDD  
Output Disable Time4  
Output Enable Time  
Pull-Up Resistor2  
tDA  
5
ns  
ns  
tEN  
20  
Pull-up exists on all digital IO  
LVDS Output  
40  
kΩ  
Output Offset Voltage  
Delta Offset Voltage  
Pk to Pk Output Swing  
Output Transition time4  
Rise Time  
R=100Ω Differential  
1.125  
1.4  
50  
V
mV  
mV  
Single-Ended  
350  
200  
20% to 80%  
RL=50Ω, CL= 2pF  
tR  
tF  
ps  
Fall Time  
Frequency  
f0  
Single Frequency  
Differential  
2.3  
48  
460  
52  
MHz  
%
Output Duty Cycle  
Period Jitter5  
SYM  
JPER  
FO1=FO2=156.25 MHz  
2.5  
psRMS  
200kHz to 20MHz @156.25MHz  
100kHz to 20MHz @156.25MHz  
12kHz to 20MHz @156.25MHz  
0.25  
0.38  
1.7  
Integrated Phase Noise  
JPH  
psRMS  
2
LVPECL Output  
Output Logic Levels  
Output logic high  
Output logic low  
VOH  
VOL  
RL=50Ω  
VDD-1.08  
-
-
V
VDD-1.55  
Pk to Pk Output Swing  
Output Transition time4  
Rise Time  
Single-Ended  
800  
250  
mV  
ps  
20% to 80%  
tR  
tF  
RL=50Ω  
Fall Time  
Frequency  
f0  
Single Frequency  
Differential  
2.3  
48  
460  
52  
MHz  
%
Output Duty Cycle  
Period Jitter5  
SYM  
JPER  
FO1=FO2=156.25 MHz  
2.5  
0.25  
0.38  
1.7  
psRMS  
200kHz to 20MHz @156.25MHz  
100kHz to 20MHz @156.25MHz  
12kHz to 20MHz @156.25MHz  
Integrated Phase Noise  
JPH  
psRMS  
2
Notes:  
1.  
Pin 4 VDD should be filtered with 0.01uf capacitor.  
2.  
3.  
4.  
5.  
Output is enabled if Enable pad is floated or not connected.  
tsu is time to 100PPM stable output frequency after VDD is applied and outputs are enabled.  
Output Waveform and Test Circuit figures below define the parameters.  
Period Jitter includes crosstalk from adjacent output.  
______________________________________________________________________________________________________________________________________________  
DSC2132 DSC2232 Page 4 MK-Q-B-P-D-12050108  
Low-Jitter I2C/SPI Programmable LVDS-LVPECLOscillator  
DSC2132 DSC2232  
Nominal Performance Parameters (Unless specified otherwise: T=25° C, VDD=3.3 V)  
2.5  
2.0  
1.5  
1.0  
0.5  
0.0  
156MHz-LVDS  
212MHz-LVDS  
320MHz-LVDS  
410MHz-LVDS  
LVPECL  
LVPECL  
LVPECL  
t
0
200  
400  
600  
800  
1000  
Low-end of integration BW: x kHz to 20 MHz  
LVPECL Phase jitter (integrated phase noise)  
LVDS Phase jitter (integrated phase noise)  
Output Waveform: LVDS  
tR  
tF  
Output  
Output  
80%  
50%  
20%  
350 mV  
tEN  
1/fo  
tDA  
VIH  
Enable  
VIL  
Output Waveform: LVPECL  
tR  
tF  
Output  
80%  
830 mv  
50%  
20%  
Output  
tEN  
1/fo  
tDA  
VIH  
Enable  
VIL  
______________________________________________________________________________________________________________________________________________  
DSC2132 DSC2232 Page 5 MK-Q-B-P-D-12050108  
Low-Jitter I2C/SPI Programmable LVDS-LVPECLOscillator  
DSC2132 DSC2232  
Solder Reflow Profile  
20-40  
Sec  
260°C  
MSL 1 @ 260°C refer to JSTD-020C  
Ramp-Up Rate (200°C to Peak Temp) 3°C/Sec Max.  
217°C  
200°C  
60-150  
Sec  
Preheat Time 150°C to 200°C  
Time maintained above 217°C  
Peak Temperature  
Time within 5°C of actual Peak  
Ramp-Down Rate  
60-180 Sec  
60-150 Sec  
255-260°C  
20-40 Sec  
6°C/Sec Max.  
8 min Max.  
Reflow  
60-180  
Sec  
150°C  
Cool  
Pre heat  
25°C  
Time 25°C to Peak Temperature  
Time  
8 min max  
Package Dimensions  
3.2 x 2.5 mm 14 Lead Plastic Package  
Disclaimer:  
Micrel makes no representations or warranties with respect to the accuracy or completeness of the information furnished in this data sheet. This information  
is not intended as a warranty and Micrel does not assume responsibility for its use. Micrel reserves the right to change circuitry, specifications and  
descriptions at any time without notice. No license, whether express, implied, arising by estoppel or otherwise, to any intellectual property rights is granted  
by this document. Except as provided in Micrel’s terms and conditions of sale for such products, Micrel assumes no liability whatsoever, and Micrel disclaims  
any express or implied warranty relating to the sale and/or use of Micrel products including liability or warranties relating to fitness for a particular purpose,  
merchantability, or infringement of any patent, copyright or other intellectual property right.  
Micrel Products are not designed or authorized for use as components in life support appliances, devices or systems where malfunction of a product can  
reasonably be expected to result in personal injury. Life support devices or systems are devices or systems that (a) are intended for surgical implant into the  
body or (b) support or sustain life, and whose failure to perform can be reasonably expected to result in a significant injury to the user. A Purchaser’s use or  
sale of Micrel Products for use in life support appliances, devices or systems is a Purchaser’s own risk and Purchaser agrees to fully indemnify Micrel for any  
damages resulting from such use or sale.  
MICREL, Inc.  
Phone: +1 (408) 944-0800  
2180 Fortune Drive,  
Fax: +1 (408) 474-1000  
San Jose, California  
95131  
USA  
Email: hbwhelp@micrel.com  
www.micrel.com  
______________________________________________________________________________________________________________________________________________  
DSC2132 DSC2232 Page 6 MK-Q-B-P-D-12050108  

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