400G QSFPDD SR8 Optical Transceiver

8 independent parallel optical channels
Each channel data rate up to 26.56GBaud with CDR
Hot Pluggable
Up to 100m link on OM4 Multi-mode
850nm VCSEL/PD Array Technology
CML Compatible electrical I/O
QSFP-DD MSA Compliance
Optical connectivity via industry standard MPO/MTPterminated fiber ribbon
MPO-16APCOpticalReceptacleType
CMIS 4.0 Compliance
Monitors for VCSEL bias, transmitted, received power , module temperature, and module supply RoHS II Compliance
Case Operating Temperature:Commercial: 0 to 70oC

Applications

Highperformancecomputinginterconnect Datacenter

Description

QDD-MM85QG-SR8C is a QSFP-DD Optical transceiver for 8 x 26.56GBaud optical links. It is compliant with the QSFP-DD MSA specifications. It operates at 26.56GBaud up to 100m over OM4 Multi- mode fiber.

Parameter

Symbol

Min

Max

Units

Notes

Storage Ambient Temperature

Tstg

-40

+85

oC

Exceeding the Absolute Maximum Ratings may cause irreversible damage to the device. The device is not intended to be operated under the condition of sim- ultaneous Absolute Maximum Ratings, a condition which may cause irreversible

damage to the device. RH is Non- condensing condition.

Relative Humidity - Storage

RHS

0

95

%

Relative Humidity - Operating

RHO

0

85

%

Module Supply Voltage

VCC

-0.5

3.6

V

Recommended Operating Conditions

Parameter

Symbol

Min

Typ

Max

Units

Notes

Case Operating Temperature

Tcase

0

+25

+70

oC

Temperature Range = C

Module Supply Voltage

VCC

3.14

3.3

3.46

V

Power Consumption

P

10

W

Signaling Speed PerChannel

S

26.56

GBd

Transmitter Electrical Interfaces

Parameter

Symbol

Min

Typ

Max

Units

Notes

Tx_Data Differential Input Voltage

VIN

900

mV

Tx_Data Differential Input Impedance

ZIN

100

Q

Rx_Data Differential Output Voltage

VOUT

900

mV

Rx_Data Differential Output Impedance

ZOUT

100

Q

 


Average Launch Power ,each lane

POUT

-6.5

4

dBm

Average Optical Out-put

Outer Optical Modulation Amplitude each lane

OMAouter

-4.5

3

dBm

Optical Output with Tx OFF

POFF

-30

dBm

Extinction ratio

ER

3

dB

RMS Spectral Width

Δλ

0.6

nm

Transmitter and dispersion eye closure (TDECQ) each lane

TDECQ

4.5

dB

Launch power in OMAouter minus TDECQ, each lane (min)

-5.9

dB

TDECQ – 10log10(Ceq), each lane (max)

4.5

dB

RIN12 OMA

RIN12 OMA

-128

dB/Hz

Optical return loss tolerance (Max)

ORLT

12

dB

Receiver Optical Characteristics

Parameter

Symbol

Min

Typ

Max

Units

Notes

Center Wavelength

λ

840

850

860

nm

Signaling rate, each lane

SR

26.56

GBd

Signaling Speed Accuracy

-100

100

ppm

Modulation format

PAM4

Average power at receive input, eachlane

PIN

-8.4

4

dBm

Note1

Receive power (OMAouter), eachlane (max)

3

dBm

Receiver sensitivity (OMAouter) eachlane

Sen

max(–6.6, SECQ – 8)

dBm

Note2

Rx_LOS of Signal - Assert

PA

-24.6

dBm

Rx_LOS of Signal - Deassert

PD

-7

dBm

Rx_LOS of Signal - Hysteresis

PHy

0.5

dB

Note 1: Average received power where the BER = 2.4E-4 measured with a PRBS 31Q test pattern@26.56GBaud Note 2: Sensitivity where the BER = 2.4E-4 measured with a PRBS 31Q test pattern@26.56GBaud


Pin Description

Pin

Symbol

Description

Notes

1

GND

Ground

2

Tx2n

Transmitter Inverted Data Input

3

Tx2p

Transmitter Non Inverted Data Input

4

GND

Ground

5

Tx4n

Transmitter Inverted Data Input

6

Tx4p

Transmitter Non Inverted Data Input

7

GND

Ground

8

ModselL

Module Select

9

ResetL

Module Reset

10

VCC Rx

Receiver +3.3V DC Power Supply

11

SCL

I2C Serial Clock

12

SDA

I2C Serial Data

13

GND

Ground

14

Rx3p

Receiver Non Inverted Differential Output

15

Rx3n

Receiver Inverted Differential Output

16

GND

Ground

17

Rx1p

Receiver Non Inverted Differential Output

18

Rx1n

Receiver Inverted Differential Output

19

GND

Ground

20

GND

Ground

21

Rx2n

Receiver Inverted Differential Output

22

Rx2p

Receiver Non Inverted Differential Output

23

GND

Ground

24

Rx4n

Receiver Inverted Differential Output

25

Rx4p

Receiver Non Inverted Differential Output

26

GND

Ground

27

ModPrsL

Module Present

28

IntL

Interrupt

29

VCC Tx

Transmitter +3.3V DC Power Supply

30

VCC 1

+3.3V DC Power Supply

31

Init Mode

Initialization Mode

32

GND

Ground

33

Tx3p

Transmitter Non Inverted Data Input

34

Tx3n

Transmitter Inverted Data Input

35

GND

Ground

36

Tx1p

Transmitter Non Inverted Data Input

37

Tx1n

Transmitter Inverted Data Input

38

GND

Ground

39

GND

Ground

40

Tx6n

Transmitter Inverted Data Input

41

Tx6p

Transmitter Non Inverted Data Input

42

GND

Ground

43

Tx8n

Transmitter Inverted Data Input

44

Tx8p

Transmitter Non Inverted Data Input

45

GND

Ground

46

Reserved

No connect

47

NC

No connect

48

VCC Rx1

+3.3V DC Power Supply

49

NC

No connect

50

NC

No connect

51

GND

Ground

52

Rx7p

Receiver Non Inverted Differential Output

53

Rx7n

Receiver Inverted Differential Output

54

GND

Ground

55

Rx5p

Receiver Non Inverted Differential Output

56

Rx5n

Receiver Inverted Differential Output

57

GND

Ground

58

GND

Ground

59

Rx6n

Receiver Inverted Differential Output

60

Rx6p

Receiver Non Inverted Differential Output

61

GND

Ground

62

Rx8n

Receiver Inverted Differential Output

63

Rx8p

Receiver Non Inverted Differential Output

64

GND

Ground

65

NC

No Connect

66

Reserved

No Connect

67

VCCTx1

+3.3V DC Power Supply

68

VCC2

+3.3V DC Power Supply

69

Reserved

No Connect

70

GND

Ground

71

Tx7p

Transmitter Non Inverted Data Input

72

Tx7n

Transmitter Inverted Data Input

73

GND

Ground

74

Tx5p

Transmitter Non Inverted Data Input

75

Tx5n

Transmitter Inverted Data Input

76

GND

Ground




400G QSFP-DD SR8

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