PL-XXR-00-S43-C6 [JDSU]

850 nm 10 G ROSA; 850纳米的10G ROSA
PL-XXR-00-S43-C6
型号: PL-XXR-00-S43-C6
厂家: JDSU    JDSU
描述:

850 nm 10 G ROSA
850纳米的10G ROSA

文件: 总5页 (文件大小:233K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
COMMUNICATIONS COMpONENTS  
850 nm 10 G ROSA  
PL-xxR-00-S43-C6  
Key Features  
Dataꢀratesꢀupꢀtoꢀ10ꢀGbps  
3.3ꢀVꢀoperation  
-40ꢀ°Cꢀtoꢀ85ꢀ°Cꢀoperation  
Differentialꢀoutput  
Isolatedꢀcase  
Receivedꢀsignalꢀstrengthꢀindicatorꢀ(RSSI)ꢀ  
LCꢀorꢀSCꢀconnectorizedꢀPINꢀplusꢀpreamplifier  
Benefits  
The JDSU 850 nm PL-xxR-00-S43-C6 connectorized ROSA product (Receiver Op-  
tical Sub-Assembly) is designed for high-speed data communication applications.  
The product utilizes a GaAs PIN/TIA integrated in a custom hermetic TO pack-  
age. Each device is actively aligned to a precision OSA housing using a proprietary  
alignment algorithm and tested to precise requirements. A controlled impedance  
flex circuit provides the user with optimum performance.  
• Optional controlled impedance flex  
from OSA to PCBA for excellent  
10 Gbps product performance  
• Industrial operational temperature  
• Industry standard form factor and size  
• Modulation performance verification  
The PL-xxR-00-S43-C6 converts optical power into an electrical signal at data  
rates up to 10 Gbps and is engineered for performance over extended operating  
temperature and power conditions with high reliability.  
Each part is electro-optically tested to insure optimum performance and sensitivity.  
wEBSITE: ꢀꢀꢀ.jdsu.com  
NORTH AMERICA: 800 498-JDSU (5378)  
wORlDwIDE: +800 5378-JDSU  
850 NM 10 G ROSA  
ROSA ꢀithout Fꢁex Dimensions (lC)  
REV  
DESCRIPTION  
ECO  
ENG  
DATE  
CHECKED  
DATE  
UNITS: MM  
.X  
=
=
0.2  
.XX  
0.10  
.XXX = 0.050  
10 MAX ROTATIONAL  
MISALIGNMENT BETWEEN  
TO CAN ASSY AND BARREL  
+0.050  
-0.025  
2X 41°  
4.039  
0.660  
2X 5.941  
5X 13.460  
6.599  
A
A
PIN 3  
PIN 4  
PIN 2  
2.540  
BARREL  
KEYING  
2X 82°  
FEATURE  
2.083 0.025  
0.838 0.025  
+0.025  
-0.076  
5.080  
2X 0.250  
PIN 1  
2.921 0.025  
PIN 5  
3X 0.440  
1.270  
+0.38  
45° 1°  
6.50  
-0.25  
OPTICAL REF PLANE  
4.039  
4.166  
45° 1°  
SECTION A-A  
pl-SxR-00-S43-C6 (no flex)  
pl-FxR-00-S43-C6 (ꢀith flex)  
pin  
Symboꢁ  
Function  
pad  
Symboꢁ  
Function  
1
2
3
4
5
Vout P  
Vdd  
RSSI  
Vout N  
GND  
TIA Output Voltage (Non-Inverted)  
Positive Supply Voltage  
Receive Signal Power, Avg. Current  
TIA Output Voltage (Inverted)  
Ground  
1
2
3
4
5
6
Vcc  
Vcc  
Ground  
GND  
Vout P  
Vout N  
GND  
RSSI  
TIA Output Voltage (Non-Inverted)  
TIA Output Voltage (Inverted)  
Ground  
Receive Signal Power, Avg. Current  
850 NM 10 G ROSA  
3
ROSA ꢀith Fꢁex Dimensions (SC)  
UNITS: MM  
1.092  
.X  
=
0.2  
.XX  
=
0.10  
1.035  
5X 1  
.XXX = 0.050  
7.264  
+0.050  
6.731  
A
-0.025  
PIN 3  
PIN 2  
PIN 4  
4.623 0.025  
3.124  
PIN 1  
PIN 5  
A
10.80  
1.219  
5.74  
90° 10°  
BARREL KEYING FEATURE  
+0.38  
2.28  
6.18  
-0.25  
OPTICAL REF PLANE  
PAD 1  
PAD 6  
B
0.13  
0.5  
0.80  
PAD PITCH  
4.840  
6.248  
0.400  
6X 1.120  
4X 0.92  
6.121  
12X 0.300  
6X 0.46  
C
SECTION A-A  
L
4X 0.38  
2X 0.710  
DETAIL B  
ROSA ꢀith Fꢁex Dimensions (lC)  
UNITS: MM  
.X  
=
0.2  
.XX  
=
0.10  
+0.050  
- 0.025  
2X 5.941  
.XXX = 0.050  
4.039  
5X 1  
0.660  
6.599  
A
PIN 3  
PIN 2  
2.083 0.025  
BARREL  
KEYING  
FEATURE  
+0.025  
5.080  
PIN 4  
PIN 5  
-0.076  
PIN 1  
0.838 0.025  
2.921 0.025  
A
10.80  
90° 10°  
1.270  
+0.38  
6.18  
-0.25  
PAD 1  
PAD 6  
2X 2.28  
OPTICAL REF PLANE  
0.80  
PAD PITCH  
B
4.840  
45.0° 0.5°  
0.13  
0.5  
0.40  
4.039  
1.12  
0.92  
0.46  
0.30  
4.166  
0.38  
2X 0.71  
DETAIL B  
45.0° 0.5°  
SECTION A-A  
850 NM 10 G ROSA  
4
Shiꢂꢂing Information  
Shipped in anti-static stackable trays.  
Absoꢁute Maximum Ratings  
parameter  
(Tcase = 30 °C , Continuous Wave (CW) operation unless otherwise stated)  
Symboꢁ  
Ratings  
Unit  
Storage temperature  
Incident optical power  
Lead solder temperature  
Tst  
Pin  
-40 to +100  
+5  
260 °C for 10 sec.  
2 mm from case  
370 °C for 10 sec.  
4.0  
°C  
dBm  
T
s
Flex attach temperature  
Power supply voltage  
TF  
VP  
V
Note:  
Conditions exceeding those listed may cause permanent damage to the device. Devices subjected to conditions beyond the limits specified for extended periods of time may  
adversely affect reliability.  
Eꢁectro-oꢂticaꢁ Characteristics  
parameter  
(Tcase = 30 °C , Vcc = 3.3 V unless otherwise stated)  
Symboꢁ  
Minimum  
Tyꢂicaꢁ  
Maximum  
Unit  
Wavelength responsivity  
Case operating temperature  
Supply voltage  
Supply current  
Bandwidth  
Low frequency cutoff  
Responsivity (@50 MHz)  
Sensitivity (OMA)  
Output resistance  
l
840  
-40  
2.97  
34  
850  
860  
85  
3.63  
61  
nm  
°C  
V
Top  
Vcc  
Icc  
3.3  
45  
12  
mA  
GHz  
kHz  
V/W  
dBm  
W
dBm  
mV  
%
BW  
7.5  
70  
R
S
Ro  
5000  
-13  
100  
-12  
Optical overload  
1.5  
Differential output voltage  
Duty cycle distortion  
Rise/Fall time  
Slope of RSSI vs Pin  
RSSI current with zero input1  
RSSI linearity range  
Vout  
285  
10  
45  
1.1  
1
1100  
1
1
TR/TF  
20  
0.9  
ps  
A/W  
uA  
RSSI slope  
RSSI offset  
RSSI range  
5
uA  
1. Connect RSSI to ground with a resistor <2500 ohms.  
850 NM 10 G ROSA  
Order Information  
For more information on this or other products and their availability, please contact your local JDSU account manager or  
JDSU directly at 1-800-498-JDSU (5378) in North America and +800-5378-JDSU worldwide or via e-mail at  
customer.service@jdsu.com.  
Samꢂꢁe: pl-FSR-00-S43-C6  
part Number  
Descriꢂtion  
PL-FSR-00-S43-C6ꢁ  
PL-FLR-00-S43-C6ꢁ  
PL-SSR-00-S43-C6ꢁ  
PL-SLR-00-S43-C6ꢁ  
850ꢁnmꢁ10ꢁGꢁROSAꢁwithꢁSCꢁhousing,ꢁwithꢁflex  
850ꢁnmꢁ10ꢁGꢁROSAꢁwithꢁLCꢁhousing,ꢁwithꢁflex  
850ꢁnmꢁ10ꢁGꢁROSAꢁwithꢁSCꢁhousing,ꢁwithoutꢁflex  
850ꢁnmꢁ10ꢁGꢁROSAꢁwithꢁLCꢁHousing,ꢁwithoutꢁflex  
wORlDwIDE: +800 5378-JDSU  
wEBSITE: ꢀꢀꢀ.jdsu.com  
NORTH AMERICA: 800 498-JDSU (5378)  
Product specifications and descriptions in this document subject to change without notice. © 2008 JDS Uniphase Corporation 30149329 000 0308 PL-XXR-00-S43-C6.DS.CC.AE  
March 2008  

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