PLRXPL-VI-S24-22 JDS UNIPHASE, PLRXPL-VI-S24-22 Datasheet - Page 16

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PLRXPL-VI-S24-22

Manufacturer Part Number
PLRXPL-VI-S24-22
Description
Manufacturer
JDS UNIPHASE
Datasheet

Specifications of PLRXPL-VI-S24-22

Optical Fiber Type
TX/RX
Optical Rise Time
0.15/0.2ns
Optical Fall Time
0.15/0.2ns
Operating Temperature Classification
Industrial
Peak Wavelength
850nm
Operating Supply Voltage (min)
2.97V
Operating Supply Voltage (typ)
3.3V
Operating Supply Voltage (max)
3.63V
Operating Temp Range
-40C to 85C
Lead Free Status / RoHS Status
Compliant
ROHS-COMPLIANT 2.125, 1.25 AND 1.063 GBPS 850 NM TRANSCEIVER
16
Transceiver Temperature in degrees Celsius: Internally measured. Represented
as a 16 bit signed two’s complement value in increments of 1/256 degrees Celsius
from -40 to +125 degree C with LSB equal to 1/256 degrees C. Accuracy is ± 3 de-
grees Celsius over the specifi ed operating temperature and voltage range.
Vcc/Supply Voltage in Volts: Internally measured. Represented as a 16 bit un-
signed integer with the voltage defi ned as the full 16 bit value(0-65535) with LSB
equal to 100V with a measurement range of 0 to +6.55V. Accuracy is ± 3% of
nominal value over the specifi ed operating temperature and voltage ranges.
TX Bias Current in A: Represented as a 16 bit unsigned integer with current
defi ned as the full 16 bit value(0-65535) with LSB equal to 2A with a measure-
ment range of 0 - 131mA. Accuracy is ± 10% of nominal value over the specifi ed
operating temperature and voltage ranges.
TX Output Power in mW: Represented as a 16 bit unsigned integer with the power
defi ned as the full 16 bit value (0-65535) with LSB equal to 0.1W. Accuracy is ±
2dB over the specifi ed temperature and voltage ranges over the range of 100W to
800W (-10dBm to -1dBm). Data is not valid when transmitter is disabled.
RX Received Optical Power in mW: Represented as average power as a 16 bit un-
signed integer with the power defi ned as the full 16 bit value(0-65535) with LSB
equal to 0.1W. Accuracy over the specifi ed temperature and voltage ranges is ±
3dB from 30W to 1000W (-15dBm to 0dBm).
Reading the data
The information is accessed through the MOD_DEF(1), and MOD_DEF(2) con-
nector pins of the module. The specifi cation for this EEPROM (ATMEL AT-
24CO1A family) contains all the timing and addressing information required for
accessing the data.
The device address used to read the Serial ID data is 1010000X(A0h), and the ad-
dress to read the diagnostic data is 1010001X(A2h). Any other device addresses
will be ignored. Refer to Table 3, Table 4, and Table 5 for information regarding
addresses and data fi eld descriptions
MOD_DEF(0), pin 6 on the transceiver, is connected to Logic 0 (Ground) on the transceiver.
MOD_DEF(1), pin 5 on the transceiver, is connected to the SCL pin of the EEPROM.
MOD_DEF(2), pin 4 on the transceiver, is connected to the SDA pin of the EEPROM.
The EEPROM WP pin is internally tied to ground with no external access, allowing
write access to the customer-writable fi eld(bytes 128-247 of address 1010001X).
Note: address bytes 0-127 are not write protected and may cause diagnostic mal-
functions if written over.

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