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HC-QL381x 40Gb/s QSFP+ LR4 80km Transceiver

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Features


Up to 11.3Gb/s data rate per channel

Supports 44.6Gb/s aggregate bit rate

Transmitter: cooled 4x10Gb/s LAN WDM EML TOSA (1295.56, 1300.05, 1304.58, 1309.14nm)

Receiver: 4x10Gb/s PIN receiver with SOA

Up to 80km reach for G.652 SMF

Duplex LC optical receptacle

4x10G electrical interface (OIF CEI-28G-VSR)

RoHS-10 compliant and lead-free

Single +3.3V power supply

Maximum power consumption 4.5W

Case operating temperature Commercial: 0 ~ +70 oC, Extended: -10 ~ +80 Oc  , Industrial:-40 ~ +85 oC

 

      Applications

40G Ethernet

Data Center

InfiniBand QDR

 

      Absolute Maximum Ratings

It has to be noted that the operation in excess of any individual absolute maximum ratings might cause permanent damage to this module.


  Parameter

   Symbol

  Min

    Max

  Unit

Notes

Storage Temperature

   TS

  -40

     85

    oC


Power Supply Voltage

   VCC

  -0.3

    4.0

      V


Relative Humidity (non-condensation)

   RH

     0

    85

     %


Damage Threshold

   THd

   -3.0


   dBm


 

      Recommended Operating Conditions

 

Parameter

  Symbol

    Min

   Typical

   Max

    Unit

     Notes

Operating Case Temperature

 

TOP

        0


     70

      oC

  commercial

    -40


     85

      oC

   Industrial

Power Supply Voltage

     VCC

   3.135

      3.3

  3.465

         V


Data Rate, each Lane



10.3125


    Gb/s


Control Input Voltage High


        2


    Vcc

         V


Control Input Voltage Low


        0


    0.8

        V


Link Distance (SMF)

        D



    80

     km

               1

Notes:

1.   Depending on actual fiber loss/km (link distance specified is for fiber insertion loss of 0.35dB/km)

 

      Pin Assignment and Pin Description

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Figure1. QSFP+ Transceiver Electrical Pad Layout

 

 

Pin

Symbol

Name/Description

Notes

1

GND

Transmitter Ground (Common with Receiver Ground)

     1

2

Tx2n

Transmitter Inverted Data Input


3

Tx2p

Transmitter Non-Inverted Data output


4

GND

Transmitter Ground (Common with Receiver Ground)

     1

5

Tx4n

Transmitter Inverted Data Input


6

Tx4p

Transmitter Non-Inverted Data output


7

GND

Transmitter Ground (Common with Receiver Ground)

     1

8

ModSelL

Module Select


9

ResetL

Module Reset


10

VccRx

3.3V Power Supply Receiver

     2

11

SCL

2-Wire serial Interface Clock


12

SDA

2-Wire serial Interface Data


13

GND

Transmitter Ground (Common with Receiver Ground)


14

Rx3p

Receiver Non-Inverted Data Output


15

Rx3n

Receiver Inverted Data Output


16

GND

Transmitter Ground (Common with Receiver Ground)

     1

17

Rx1p

Receiver Non-Inverted Data Output


18

Rx1n

Receiver Inverted Data Output


19

GND

Transmitter Ground (Common with Receiver Ground)

     1

20

GND

Transmitter Ground (Common with Receiver Ground)

     1

21

Rx2n

Receiver Inverted Data Output


22

Rx2p

Receiver Non-Inverted Data Output


23

GND

Transmitter Ground (Common with Receiver Ground)

     1 

24

Rx4n

Receiver Inverted Data Output

     1

25

Rx4p

Receiver Non-Inverted Data Output


26

GND

Transmitter Ground (Common with Receiver Ground)

     1

27

ModPrsl

Module Present


28

IntL

Interrupt


29

VccTx

3.3V power supply transmitter

     2

30

Vcc1

3.3V power   supply

     2

31

LPMode

Low Power Mode


32

GND

Transmitter Ground (Common with Receiver Ground)

     1

33

Tx3p

Transmitter Non-Inverted Data Input


34

Tx3n

Transmitter Inverted Data Output


35

GND

Transmitter Ground (Common with Receiver Ground)

     1

36

Tx1p

Transmitter Non-Inverted Data Input


37

Tx1n

Transmitter Inverted Data Output


38

GND

Transmitter Ground (Common with Receiver Ground)

     1





 

1      GND is the symbol for signal and supply (power) common for QSFP28 modules. All are common within the QSFP28 module and all module voltages are referenced to this potential unless otherwise noted. Connect these directly to the host board signal common ground plane.

1.  VccRx, Vcc1 and VccTx are the receiving and transmission power suppliers and shall be applied concurrently. Recommended host board power supply filtering is shown below. Vcc Rx, Vcc1 and Vcc Tx may be internally connected within the QSFP28 transceiver module in any combination. The connector pins are each rated for a maximum current of 1000mA.

 

Optical Characteristics

The following optical characteristics are defined over the Recommended Operating Environment unless otherwise specified.

Parameter

    Symbol

Min.

   Typical

     Max

   Unit

Notes

Transmitter

 

 

 

Lane wavelengthrange

    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

  1310.09

   nm


Signaling rate, each lane



10.3125


   Gb/s


Side-mode suppression ratio

    SMSR

     30





Total launch power

    Pt



     12

   dBm


Average launch power, each lane

 

    Pavg

 

      1


 

        6

 

   dBm

 

     1

OMA, each Lane

    POMA

     1


        6

   dBm

     2

Extinction Ratio

    ER

   8.2



   dB


Difference in Launch Power between any Two Lanes (OMA)

 

   Ptx,diff



 

     3.6

 

   dB


Transmitter and Dispersion

Penalty, each lane

 

    TDP



 

     3.2

 

   dB


 

OMA minus TDP, each lane

OMA-TD

P

 

-0.65



 

   dBm


Average launch power of OFF transmitter, each lane

 

    Poff



 

     -30

 

   dBm


Transmitter reflectance

    RT



     -12

   dB


 

RIN20OMA

 

    RIN



 

    -130

dB/   Hz


Optical Return Loss

Tolerance

 

    TOL



 

    20

 

   dB


Transmitter eye mask {X1,

X2,X3, Y1, Y2, Y3}


{0.25, 0.4, 0.45, 0.25, 0.28,

0.4}



Receiver

Signaling rate, each lane



10.3125


GBd


Average Receive Power,

each   Lane


 

    -23


 

   - 4.9

 

dBm


Receiver Sensitivity, each Lane




 

    -25

 

dBm

 

3

Input Saturation Power

(overload)

 

       Psat

 

    -8



 

dBm


Receiver reflectance




    -26

dB


Difference in Receive Power between any Two   Lanes (Average and OMA)

 

       Ptx,diff



 

    3.6

 

dB


LOS Assert

       LOSA

    -35



dBm


LOS Deassert

       LOSD



    -26

dBm


LOS Hysteresis

      LOSH

    0.5



dB


Receiver Electrical 3 dB   upper

 

      Fc



 

    31

 

GHz


Notes:

2. The minimum average launch power spec is based on ER not exceeding 9.5dB and transmitter OMA higher than 0.1dBm.

3. Even if the TDP < 0.75 dB, the OMA min must exceed the minimum value specified here.

4. Measured with a PRBS=2³¹-1 test pattern @40Gbps, ER=8.2dB, BER≤1E-12.

 

Digital Diagnostic Functions

The following digital diagnostic characteristics are defined over the Recommended Operating Environment unless otherwise specified.

 

  Parameter

   Symbol

   Min.

   Max

  Unit

 Notes

Temperature monitor absolute

error

DMI_ Temp

      -3

      3

 

   oC

Over operating

temp

Supply voltage monitor absolute

error

DMI _VCC

       -3

      3

    %

Full operating

range

RX power monitor absolute error

DMI_RX

      -3

       3

   dB


Bias current monitor error

DMI_ bias

     -10

     10

     %


TX power monitor absolute error

DMI_TX

      -3

      3

    dB








 

Mechanical Dimensions

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Figure2. Mechanical Outline

 


       Ordering Information

 

 

     Part Number

Data Rate (Gb/s)

Wavelength   (nm)

Transmission   Distance(km)

Temperature (oC(Operating Case)

 

     H-QL381C

 

       40

1295.56, 1300.05,

1304.58, 1309.14

 

      80km SMF

 

   0~70 commercial

 

     H-QL381E

 

       40

1295.56, 1300.05,

1304.58, 1309.14

 

     80km SMF

 

   -10~80 Extended

 

     H-QL381I

 

     40

1295.56, 1300.05,

1304.58, 1309.14

 

    80km SMF

 

    -40~85 Industrial



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