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QSFP ZR4 Transceiver 40G Single Mode 80km

QSFP-40G-ZR4 Transceiver, 40Gbps, Single Mode 80km

INFORMATION

Features:

  • 4 lanes MUX/DEMUX design
  • Integrated LAN WDM TOSA / ROSA
  • Up to 11.2Gbps per channel bandwidth
  • Aggregate bandwidth of > 40Gbps
  • Duplex LC connector
  • Compliant with 40G Ethernet IEEE802.3ba and 40GBASE-ZR4
  • QSFP MSA compliant
  • APD photo-detector
  • Up to 60/80 km transmission
  • Compliant with QDR/DDR Infiniband data rates
  • Single +3.3V power supply operating
  • Built-in digital diagnostic functions
  • Temperature range 0°C to 70°C
  • RoHS Compliant Part

Description:

The QSFP ZR4 transceiver module designed for 80km optical communication applications. The design is compliant to 40GBASE-ZR4 of the IEEE P802.3ba standard. The module converts 4 inputs channels of 10Gb/s electrical data to 4 CWDM optical signals, and multiplexes them into a single channel for 40Gb/s optical transmission. Reversely, on the receiver side, the module optically de-multiplexes a 40Gb/s input into 4 CWDM channels signals, and converts them to 4 channel output electrical data.

The central wavelengths of the 4 LANWDM channels are 1296 nm, 1300 nm, 1305 nm and 1309 nm as members of the LAN WDM wavelength grid defined in ITU-T G694.2. It contains a duplex LC connector for the optical interface and a 38-pin connector for the electrical interface. To minimize the optical dispersion in the long-haul system, single-mode fiber (SMF) has to be applied in this module.

The product is designed with form factor, optical/electrical connection and digital diagnostic interface according to the QSFP Multi-Source Agreement (MSA). It has been designed to meet the harshest external operating conditions including temperature, humidity and EMI interference.

The QSFP ZR4 transceiver module operates from a single +3.3V power supply and LVCMOS/LVTTL global control signals such as Module Present, Reset, Interrupt and Low Power Mode are available with the modules. A 2-wire serial interface is available to send and receive more complex control signals and to obtain digital diagnostic information. Individual channels can be addressed and unused channels can be shut down for maximum design flexibility.

It is designed with form factor, optical/electrical connection and digital diagnostic interface according to the QSFP Multi-Source Agreement (MSA). It has been designed to meet the harshest external operating conditions including temperature, humidity and EMI interference. The module offers very high functionality and feature integration, accessible via a two-wire serial interface.

QSFP ZR4 transceiver application diagram

Optical Parameters(TOP = 0 to 70 °C, VCC = 3.0 to 3.6 Volts)

Parameter

Symbol

Min

Typ

Max

Unit

Ref.

Transmitter

 

 

Wavelength
Assignment

L0

1294.53

1295.56

1296.59

nm

 

L1

1299.02

1300.05

1301.09

nm

 

L2

1303.54

1304.58

1305.63

nm

 

L3

1308.09

1309.14

1310.19

nm

 

Side-mode Suppression Ratio

SMSR

30

dB

 

Total Average Launch Power

PT

 

10.5

dBm

 

Average Launch Power, each Lane

 

+3

7

dBm

 

Transmit
OMA per Lane

TxOMA

0.3

 

5.0

dBm

 

Difference
in launch power between any two lanes (OMA)

 

 

 

4.7

dBm

 

Transmitter
Dispersion Penalty each Lane

TDP

 

 

2.6

dB

 

Extinction Ratio

ER

5.5

6.5

 

dB

 

Transmitter Eye Mask Definition {X1, X2, X3, Y1, Y2,
Y3}

 

{0.25, 0.4, 0.45, 0.25, 0.28, 0.4}

 

 

 

 

Optical Return Loss Tolerance

 

20

dB

 

Average Launch Power OFF Transmitter, each Lane

Poff

 

 

-30

dBm

 

Relative Intensity Noise

Rin

 

 

-128

dB/HZ

1

Optical Return Loss Tolerance

 

12

dB

 

Receiver

Damage Threshold

THd

0

 

 

dBm

1

Average Power at Receiver
Input, each Lane

R

-24

 

-6

dBm

80km

R

-22

 

-6

dBm

60KM

Receive Electrical 3 dB upper Cut off Frequency,
each Lane

 

 

 

12.3

GHz

 

RSSI Accuracy

 

-2

 

2

dB

 

Receiver Reflectance

Rrx

 

 

-26

dB

 

Receiver Power (OMA), each Lane

 

-4

dBm

 

Receive Electrical 3 dB upper Cutoff Frequency, each
Lane

 

 

 

12.3

GHz

 

LOS De-Assert

LOSD

 

 

-25

dBm

 

LOS Assert

LOSA

-35

 

 

dBm

 

LOS Hysteresis

LOSH

0.5

 

 

dB

 

 

Note  1  12dB Reflection

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