C-135-2500C-FDFB-SLC4 [SOURCE]

2.5 Gbps Single Mode SFF LC Transceiver; 2.5 Gbps的单模SFF LC收发器
C-135-2500C-FDFB-SLC4
型号: C-135-2500C-FDFB-SLC4
厂家: SOURCE PHOTONICS, INC.    SOURCE PHOTONICS, INC.
描述:

2.5 Gbps Single Mode SFF LC Transceiver
2.5 Gbps的单模SFF LC收发器

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中文:  中文翻译
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2.5 Gbps Single Mode SFF LC Transceiver  
C-1XX-2500(C)-FDFB-SLCX  
Features  
• Duplex LC Single Mode Transceiver  
• Small Form Factor Multi-sourced 2x5 Pin Package  
• Complies with SONET OC-48 / SDH STM-16  
• 1270 nm to1610 nm Wavelength, CWDM DFB Laser  
• Single +3.3V Power Supply  
• LVPECL Differential Inputs and Outputs  
• LVTTL Signal Detection Output (C-1XX-2500C-FDFB-SLCX)  
• LVPECL Signal Detection Output (C-1XX-2500-FDFB-SLCX)  
• Class 1 Laser International Safety Standard IEC 825  
compliant  
• Solderability to MIL-STD-883, Method 2003  
• Pin Coating is Sn/Pb with minimum 2% Pb content  
• Flammability to UL94V0  
• Humidity RH 5-85% (5-90% short term) to IEC 68-2-3  
• Complies with Bellcore GR-468-CORE  
• Uncooled laser diode with MQW structure  
Absolute Maximum Rating  
Parameter  
Symbol  
Vcc  
Min.  
Max.  
3.6  
30  
Unit  
V
Note  
Power Supply Voltage  
Output Current  
0
0
Iout  
mA  
ºC  
Soldering Temperature  
Operating Temperature  
Storage Temperature  
-
-
260  
70  
10 seconds on leads only  
Topr  
Tstg  
0
ºC  
-40  
85  
ºC  
Recommended Operating Condition  
Parameter  
Symbol  
Min.  
3.1  
0
Typ.  
3.3  
-
Max.  
3.5  
70  
Unit  
V
Power Supply Voltage  
Operating Temperature (Case)  
Data rate  
Vcc  
Topr  
ºC  
-
2488  
-
Mbps  
Transmitter Specifications  
Parameter  
Symbol  
Min  
Typical  
Max  
Unit  
Notes  
Optical  
Po  
Po  
λ
-5  
0
-
-
0
dBm  
dBm  
nm  
C-1XX-2500(C)-FDFB-SLC2  
C-1XX-2500(C)-FDFB-SLC4  
Optical Transmit Power  
Optical Transmit Power  
Output center Wavelength  
Output Spectrum Width  
Side Mode Suppression Ratio  
Extinction Ratio  
+5  
λ -5.5  
λ
λ +7.5  
λ =1XX0 nm  
p
p
p
p
λ  
Sr  
-
-
35  
-
1
-
nm  
-20 dB width  
CW, Po=5mW  
30  
8.2  
dBm  
dB  
ER  
-
Output Eye  
Compliant with G.957 STM-16  
Optical Rise Time  
tr  
tf  
-
-
-
-
-
-
150  
150  
-120  
ps  
ps  
20% to 80% Values  
20% to 80% Values  
Optical Fall Time  
Relative Intensity Noise  
RIN  
dB/Hz  
Total Jitter  
TJ  
-
-
150  
ps  
Measured with 223-1 PRBS  
20550 Nordhoff St. • Chatsworth, CA 91311 • tel: 818.773.9044 • fax: 818.576.9486  
9F, No 81, Shui Lee Rd. • Hsinchu, Taiwan, R.O.C. • tel: 886.3.5169222 • fax: 886.3.5169213  
LUMINENTOIC.COM  
LUMNDS851-Jul2005  
rev. A.0  
1
2.5 Gbps Single Mode SFF LC Transceiver  
C-1XX-2500(C)-FDFB-SLCX  
Transmitter Specifications  
Parameter  
Symbol  
Min  
Typical  
Max  
Unit  
Notes  
Electrical  
Maximum current is specified at Vcc=  
Maximum @ maximum temperature  
ICC  
-
-
200  
mA  
Power Supply Current  
Transmit Enable Voltage  
Transmit Disable Voltage  
0
-
-
0.8  
Vcc  
V
V
VEN  
VD  
LVTTL input  
AC-coupled  
2.0  
Differential Data Input Voltage  
VIH-VIL  
300  
-
-
mV  
Receiver Specifications  
Parameter  
Symbol  
Min  
Typical  
Max  
Unit  
Notes  
Optical  
Measured with 223-1 PRBS, BER = 10 -10  
Sensitivity  
-
-
0
-
-
-
-
-
-
-20  
dBm  
dBm  
dBm  
dBm  
dB  
Maximum Input Power  
Signal Detect-Asserted  
Signal Detect-Deasserted  
Signal Detect-Hysteresis  
Wavelength of Operation  
Pin  
Pa  
Pd  
-
-20  
-
-
Measured on transition: low to high  
Measured on transition: high to low  
-38  
0.5  
1100  
-
1620  
nm  
Receiver Specifications  
Parameter  
Symbol  
Min  
Typical  
Max  
Unit  
Note  
Electrical  
The current excludes the output load  
current  
ICC  
-
-
120  
mA  
Power Supply Current  
Differential Data Output Voltage  
Signal Detect Output Voltage-Low  
Signal Detect Output Voltage-High  
Signal Detect Output Voltage-Low  
Signal Detect Output Voltage-High  
VOH -VOL  
VSDL-Vcc  
370  
-2  
-
-
-
-
-
1600  
-1.58  
-0.74  
0.5  
mV  
V
AC-coupled  
LVPECL, C-1XX-2500-FDFB-SLCX  
Vcc  
-1.1  
-
V
VSDH-  
VSDL-Vcc  
Vcc  
V
LVTTL, C-1XX-2500C-FDFB-SLCX  
2.0  
-
V
VSDH-  
20550 Nordhoff St. • Chatsworth, CA 91311 • tel: 818.773.9044 • fax: 818.576.9486  
9F, No 81, Shui Lee Rd. • Hsinchu, Taiwan, R.O.C. • tel: 886.3.5169222 • fax: 886.3.5169213  
LUMINENTOIC.COM  
LUMNDS851-Jul2005  
rev. A.0  
2
2.5 Gbps Single Mode SFF LC Transceiver  
C-1XX-2500(C)-FDFB-SLCX  
Connection Diagram  
Legal Notice  
PIN  
Symbol  
RxGND  
TxVcc  
SD  
Notes  
Directly connect this pin to the receiver ground plane  
+3.3 V dc power for the receiver section  
1
2
3
Active high on this indicates a received optical signal(LVPECL/LVTTL)  
Receiver Data Out Bar (LVPECL, AC-coupled)  
Receiver Dat Out (LVPECL, AC-coupled)  
4
RD-  
5
RD+  
6
TxVcc  
TxGND  
TxDIS  
TD+  
+3.3 V dc power for the transmitter section  
Directly connect this pin to the transmitter ground plane  
Transmitter disable (LVTTL)  
7
8
9
Transmitter Data In (LVPECL, AC-coupled)  
10  
TD-  
Transmitter Data In Bar (LVPECL, AC-coupled)  
The attaching posts are at case potential and may be connected to chassis  
ground. They are isolated from circuit ground.  
Attaching Posts  
20550 Nordhoff St. • Chatsworth, CA 91311 • tel: 818.773.9044 • fax: 818.576.9486  
9F, No 81, Shui Lee Rd. • Hsinchu, Taiwan, R.O.C. • tel: 886.3.5169222 • fax: 886.3.5169213  
LUMINENTOIC.COM  
LUMNDS851-Jul2005  
rev. A.0  
3
2.5 Gbps Single Mode SFF LC Transceiver  
C-1XX-2500(C)-FDFB-SLCX  
Recommended Circuit Schematic  
Inputs to the C-1XX-2500(C)-FDFB-SLCX series transmitters are AC coupled and internally terminated through 50 ohms to AC ground.  
These transceivers can operate with LVPECL or CML logic levels. The input signal must have at least a 200 mV peak to (single ended) signal  
swing. Output from the receiver section of the module is also AC coupled and is expected to drive into 50 ohm load. Different termination  
strategies may be required depending on the particular Serializer / Deserializer chip set used.  
The C-1XX-2500(C)-FDFB-SLCX series product family are designed with AC coupled data inputs and outputs to provide the following  
advantages:  
Close positioning of SERDES with respect to transceiver; allows for shorter line lengths and at gigabit speeds reduces EMI.  
Minimum number of external components.  
Internal termination reduces the potential for unterminated stubs which would otherwise increase jitter and reduce transmission  
margin.  
Figure 1 & Figure 2 illustrates the recommended transmit and receive data line trminations for SERDES with CML and LVPECL Inputs / Outputs  
respectively.  
8
TX_DIS  
TTL logic level  
7
TX_GND  
TRANSMITTER  
Z=50  
TD +  
TD -  
TX_D  
TX_D  
9
DRIVER  
Z=50�  
0  
LASER  
Vcc_TX  
Vcc_RX  
6
2
Serializer / De-Serializer  
with CML lnputs/Outputs  
See  
Fig. 4A  
3
4
See  
SD  
Fig. 3  
BIAS  
Z=50�  
RD -  
RX_D  
TZ  
POST  
AMP  
PIN  
AMP  
Z=50�  
RD +  
RX_D  
5
RX_GND  
RECEIVER  
Note ꢀ  
Figure 1.Recommended TRANSMIT and RECEIVE Data Terminations for SERDES with CML I/Os.  
Note 1. Consult SERDES manufacturers data sheet and application data for appropriate receiver input biasing network.  
Some deserializer inputs are internally terminated and may not need external termination resistors.  
20550 Nordhoff St. • Chatsworth, CA 91311 • tel: 818.773.9044 • fax: 818.576.9486  
LUMINENTOIC.COM  
LUMNDS851-Jul2005  
rev. A.0  
9F, No 81, Shui Lee Rd. • Hsinchu, Taiwan, R.O.C. • tel: 886.3.5169222 • fax: 886.3.5169213  
4
2.5 Gbps Single Mode SFF LC Transceiver  
C-1XX-2500(C)-FDFB-SLCX  
8
7
TX_DIS  
TTL logic level  
TX_GND  
TRANSMITTER  
Z=50  
TD +  
TX_D  
TX_D  
9
DRIVER  
Z=50�  
TD -  
10  
LASER  
Vcc_TX  
Vcc_RX  
6
2
See  
N
 t
1
N
o
e
Note 1  
Fig. 4A  
Serializer / De-Serializer  
with LVPECL lnputs/Outputs  
See  
3
4
Vcc= +3.3V  
Fig. 3  
SD  
BIAS  
82  
82  
Z=50  
Z=50�  
RD -  
RX_D  
TZ  
AMP  
POST  
AMP  
PIN  
RD +  
RX_D  
5
1
130  
130  
RX_GND  
RECEIVER  
Figure 2.Recommended TRANSMIT and RECEIVE Data Terminations for SERDES with LVPECL I/Os.  
Note 1. Consult SERDES manufacturers application information for biasing required for Tx outputs. Some serializer outputs  
are internally biased and may not need external bias resistors.  
Signal Detect  
The C-1XX-2500(C)-FDFB-SLCX transceivers are equipped with LVTTL / LVPECL signal detect outputs. The standard LVTTL output eliminates  
the need for a LVPECL to LVTTL level shifter in most in most applications.  
R2  
LVPECL  
or  
LVTTL Logic  
R1  
R: For LVTTL level R1=N.C., R2=N.C.  
LVPECL level R1=82,R2=130  
Figure 3: Signal Detect  
Note:  
C-1XX-2500-FDFB-SLCX with LVPECL SD output  
C-1XX-2500C-FDFB-SLCX with LVTTL SD output  
20550 Nordhoff St. • Chatsworth, CA 91311 • tel: 818.773.9044 • fax: 818.576.9486  
9F, No 81, Shui Lee Rd. • Hsinchu, Taiwan, R.O.C. • tel: 886.3.5169222 • fax: 886.3.5169213  
LUMINENTOIC.COM  
LUMNDS851-Jul2005  
rev. A.0  
5
2.5 Gbps Single Mode SFF LC Transceiver  
C-1XX-2500(C)-FDFB-SLCX  
Power Coupling  
A suggested layout for power and ground connections is given in figure 4B below. Connections are made via separate voltage and ground  
planes. The mounting posts are at case ground and should not be connected to circuit ground. The mounting posts are at case ground and  
should not be connected to circuit ground. The ferrite bead should provide a real impedance of 50 to 100 ohms at 100 to 1000 MHz. Bypass  
capacitors should be placed as close to the 10-pin connector as possible.  
Figure 4A: Suggested Power Coupling-Electrical Schematic  
L1  
C2  
TOP VIEW  
C3 C4  
C1 L2  
VALUES:  
C1, C2 = 1000pF,  
NOTE :  
1.) Components shown ore placed  
on the bottom layer and are  
viewed through the board.  
C3,  
C4,  
= 0.1uF  
= 10uF,  
LEHEND:  
L1, L2 = Real impedance of 50 to  
100 Ohms to 1000MHz.  
Vcc PLANE CONNECTION  
CIRCUIT GROUND PLANE CONNECTION  
CASE GROUND  
Figure 4B: Suggested Power Coupling-Component Placement  
20550 Nordhoff St. • Chatsworth, CA 91311 • tel: 818.773.9044 • fax: 818.576.9486  
9F, No 81, Shui Lee Rd. • Hsinchu, Taiwan, R.O.C. • tel: 886.3.5169222 • fax: 886.3.5169213  
LUMINENTOIC.COM  
LUMNDS851-Jul2005  
rev. A.0  
6
2.5 Gbps Single Mode SFF LC Transceiver  
C-1XX-2500(C)-FDFB-SLCX  
Package Diagram  
Units: mm (inches)  
+0  
8.8  
-0.  
+(  
)
(1.921)  
-(0.008)  
6.9  
(0.274)  
.95  
1.50  
(0.)  
(0.3  
)
  
(0.413)  
  
(0.020)  
2  
  
7  
(0.246)  
(0.039±0.002)  
72  
  
(0.070)  
(0.280)  
(0.200)  
77  
(0.700)  
20550 Nordhoff St. • Chatsworth, CA 91311 • tel: 818.773.9044 • fax: 818.576.9486  
9F, No 81, Shui Lee Rd. • Hsinchu, Taiwan, R.O.C. • tel: 886.3.5169222 • fax: 886.3.5169213  
LUMINENTOIC.COM  
LUMNDS851-Jul2005  
rev. A.0  
7
2.5 Gbps Single Mode SFF LC Transceiver  
C-1XX-2500(C)-FDFB-SLCX  
Printed Circuit Board Layout Consideration  
A fiber-optic receiver employs a very high gain, wide bandwidth transimpedance amplifier. This amplifier detects and amplifies signals  
that are only tens of nA in amplitude when the receiver is operating near its limit. Any unwanted signal current that couples into the  
receiver circuitry causes a decrease in the receivers sensitivity and can also degrade the performance of the receivers signal detect (SD) circuit.  
To minimize the coupling of unwanted noise into the receiver, careful attention must be given to the printed circuit board.  
At a minimum, a double-sided printed circuit board(PCB) with a large component side ground plane beneath the transceiver must be  
used. In applications that include many other high speed devices, a multi-layer PCB is highly recommended. This permits the placement of  
power and ground on separate layers, wich allows them to be isolated from the signal lines. Multilayer construction also permits the routing  
of signal traces away from high level, high speed sinal lines. To minimize the possibility of coupling noise into the receiver section, high level,  
high speed signals such as transmitter inputs and clock lines should be routed as far away as possible from the receiver pins.  
Noise that couples into the receiver through the power supply pins can also degrade performance. It is recommended that a pi filter be  
used in both transmitter and receiver power supplies.  
EMI and ESC Consideration  
LuminentOIC transceivers offer a metalized plastic case and a special chassis grounding clip. As shown in the drawing, this clip connects  
the module case to chassis ground then installs flush through the panel cutout. This way, the grounding clip brushes the edge of the cutout in  
order to make a proper contact. The use of a grounding clip also provides increased electrostatic protection and helps reduce radiated emission  
from the module or the host circuit board through the chassis faceplate. The attaching posts are at case potential and may be connected to  
chassis ground. They should not be connected to circuit ground.  
Plastic optical subassemblies are used to further reduce the possibility of radiated emission by eliminating the metal from the  
transmitter and receiver diode housings, which extend into connector space. By providing a non-metal receptacle for the optical cable ferrule,  
the gigabit speed RF electrical signal is isolated from the connector area thus preventing radiated energy leakage from these surfaces to the  
outside of the panel.  
20550 Nordhoff St. • Chatsworth, CA 91311 • tel: 818.773.9044 • fax: 818.576.9486  
9F, No 81, Shui Lee Rd. • Hsinchu, Taiwan, R.O.C. • tel: 886.3.5169222 • fax: 886.3.5169213  
LUMINENTOIC.COM  
LUMNDS851-Jul2005  
rev. A.0  
8
2.5 Gbps Single Mode SFF LC Transceiver  
C-1XX-2500(C)-FDFB-SLCX  
Recommended Board Layout Hole Pattern  
DIMENSION IN MILLIMETER (INCHES)  
NOTES:  
1.THIS FIGURE DESCRIBE THE RECOMMAND CIRCUIT BOARD LAYOUT FOR THE SFF TRANSCEIVER.  
2.THE HATCHED AREAS ARE KEEP-OUT AREAS RESERVED FOR HOUSING STANDOFF. NO METAL  
TRACES OR GROUND CONNECTION IN KEEP-OUT AREAS.  
3.THE MOUNTING STUDS SHOULD BE SOLDERED TO CHASSIS GROUND FOR MECHANICAL INTEGRITY.  
Recommended Panel mounting  
DIMENSION IN MILLIMETER (INCHES)  
20550 Nordhoff St. • Chatsworth, CA 91311 • tel: 818.773.9044 • fax: 818.576.9486  
9F, No 81, Shui Lee Rd. • Hsinchu, Taiwan, R.O.C. • tel: 886.3.5169222 • fax: 886.3.5169213  
LUMINENTOIC.COM  
LUMNDS851-Jul2005  
rev. A.0  
9
2.5 Gbps Single Mode SFF LC Transceiver  
C-1XX-2500(C)-FDFB-SLCX  
Ordering Information  
Available Options:  
C-1XX-2500-FDFB-SLC2  
C-1XX-2500-FDFB-SLC4  
C-1XX-2500C-FDFB-SLC2  
C-1XX-2500C-FDFB-SLC4  
Part numbering Definition:ꢀ  
C - 1XX - 2500(C) - FDFB - S LC TxPower  
• 1XX = Wavelength 1XX0 nm  
XX=27, 29, 31, 33, 35, 37, 39, 41, 43,  
45, 47, 49, 51, 53, 55, 57, 59, 61  
• Communication protocol  
2500= LVPECL SD output  
2500C= LVTTL SD output  
• FDFB = +3.3V SFF Transceiver  
• Single mode fiber  
• Connector options  
• Tx Power range  
2 = -5 to 0 dBm  
4 = 0 to +5 dBm  
Warnings:  
Handling Precautions: This device is susceptible to damage as a result of electrostatic discharge (ESD). A static free environment is highly recommended. Follow  
guidelines according to proper ESD procedures.  
Laser Safety: Radiation emitted by laser devices can be dangerous to human eyes. Avoid eye exposure to direct or indirect radiation.  
Legal Notes:  
IMPORTANT NOTICE!  
All information contained in this document is subject to change without notice, at LuminentOIC’s sole and absolute discretion. LuminentOIC warrants performance  
of its products to current specifications only in accordance with the company’s standard one-year warranty; however, specifications designated as “preliminary” are  
given to describe components only, and LuminentOIC expressly disclaims any and all warranties for said products, including express, implied, and statutory warran-  
ties, warranties of merchantability, fitness for a particular purpose, and non-infringement of proprietary rights. Please refer to the company’s Terms and Conditions of  
Sale for further warranty information.  
LuminentOIC assumes no liability for applications assistance, customer product design, software performance, or infringement of patents, services, or intellectual  
property described herein. No license, either express or implied, is granted under any patent right, copyright, or intellectual property right, and LuminentOIC makes  
no representations or warranties that the product(s) described herein are free from patent, copyright, or intellectual property rights. Products described in this docu-  
ment are NOT intended for use in implantation or other life support applications where malfunction may result in injury or death to persons. LuminentOIC customers  
using or selling products for use in such applications do so at their own risk and agree to fully defend and indemnify LuminentOIC for any damages resulting from  
such use or sale.  
THE INFORMATION CONTAINED IN THIS DOCUMENT IS PROVIDED ON AN “AS IS” BASIS. Customer agrees that LuminentOIC is not liable for any  
actual, consequential, exemplary, or other damages arising directly or indirectly from any use of the information contained in this document. Customer must contact  
LuminentOIC to obtain the latest version of this publication to verify, before placing any order, that the information contained herein is current.  
© LuminentOIC, Inc. 2003  
All rights reserved  
20550 Nordhoff St. • Chatsworth, CA 91311 • tel: 818.773.9044 • fax: 818.576.9486  
9F, No 81, Shui Lee Rd. • Hsinchu, Taiwan, R.O.C. • tel: 886.3.5169222 • fax: 886.3.5169213  
LUMINENTOIC.COM  
LUMNDS851-Jul2005  
rev. A.0  
10  

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