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800G OSFP DR8 MPO-12 Optical Transceiver 1310nm

800G OSFP DR8 MPO-12 Optical Transceiver 1310nm

800G OSFP DR8 MPO Optical Transceiver
The 800G OSFP DR8, with Hot-pluggable OSFP800, is a high-performance, cost-effective transceiver designed for use in 800 gigabit Ethernet links above 500 m. The module is highly scalable and can easily interconnect between the modules, ensuring efficient and reliable data transmission.
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Description
Technical Parameters
Product Features

 

● Form Factor: Hot-pluggable OSFP800 form factor
● Data Rate: Aggregate data rate of 850Gb/s and Breakout data rate of 106.25Gb/s
● Optical Interface: Compliant to 2×400GBASE-DR4 and 8x100GBASE-DR
● Electrical Interface: Compliant to 2×400GAUI-4 and 8x100GAUI-1
● Management Interface: I2C management interface
● Reach: Up to 500m over MPO/APC single mode fiber
●Power consumption: 16W max
●Operating case temperature: 0 ~ 70 ℃
●Power Supply: Single 3.3V power supply

 

 

Compliance

 

● Form Factor: OSFP MSA Rev 5.0
●Optical: IEEE802.3cd /IEEE802.3bs
●Electrical: IEEE802.3ck
●Firmware: CMIS 5.2
●Environment: RoHS

● Stability: GR-468-CORE

 
 
Applications


● 800Gb/s Ethernet
●Data center

 

 

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Absolute Maximum Ratings

 

Parameter

Symbol

Min

Typical

Max

Unit

Storage Temperature

Ts

-40

 

85

.C

Relative Humidity (non-condensation)

RH

15

 

85

%

Supply Voltage

Vcc

-0.5

 

3.6

V

Optical Input Power, per Lane

PIN

   

5.0

dBm

 

 

Recommended Operating Conditions 

 

Parameter

Symbol

Min

 

Max

Unit

Operating Case Temperature

TC

0

 

70

.C

Signaling Rate, each lane

   

53.125

 

GBd

Data Rate Accuracy

 

-100

 

100

ppm

Power Supply Voltage

VCC

3.135

3.3

3.465

V

Pre-FEC Bit Error Ratio

     

2.4E-4

 

Transmission Distance

     

500

m

 

 

Transmitter optical characteristics

 

Parameter

Symbol

Min

Typical

Max

Unit

Signaling rate, each lane

SR

53.125+/-100ppm

GBd

Modulation format

 

PAM4

 

Lane wavelength

λ

1304.5

1311.0

1317.5

nm

Side-mode suppression ratio

SMSR

30

   

dB

Average launch power, each lanea

AOPTX

-2.9

 

4.0

dBm

Outer Optical Modulation

Amplitude (OMAouter), each laneb

OMATX

-0.8

   

dBm

Launch power in OMAouter minus TDECQ, each lane

 

-2.2

   

dBm

Transmitter and dispersion eye closure for PAM4, each lane

TDECQ

   

3.4

dB

Average launch power of OFF transmitter, each lane

AOPOFF

   

-15

dBm

Extinction ratio, each lane

ER

3.5

   

dB

RIN21.4OMA

     

- 136

dB/Hz

Optical return loss tolerance

RLTol

   

21.4

dB

Transmitter reflectancec

Reflectance_ Tx

   

-26

dB

 

Note:

a. The average launch power per lane (minimum) serves as informative data rather than a primary measure of signal strength. A transmitter failing to meet this minimum launch power threshold is non-compliant, but exceeding it does not guarantee compliance.
b. Even if the TDECQ (Time Domain Equalized Carrier Quality) is less than 1.4 dB, the outer modulation amplitude (OMAouter, minimum) must still surpass the specified values.
c. Transmitter reflectance is defined as the reflectance measured when looking into the transmitter.

 

 

Receiver optical characteristics

 

Parameter

Symbol

Min

Typical

Max

Unit

Signaling rate, each lane

SR

53.125+/-100ppm

GBd

Modulation format

 

PAM4

-

Lane wavelengths

λ

1304.5

1311.0

1317.5

nm

Damage threshold, each lanea

DThd

5

   

dBm

Average receive power, each laneb

AOPRX

-5.9

 

4

dBm

Receiver reflectance

Reflectance_ Rx

   

-26

dB

Receiver sensitivity (OMAouter), each lanec

RxSens

   

-4.4

dBm

Stressed receiver sensitivity (OMAouter), each laned

SRS

   

-1.9

dBm

Conditions of stressed receiver sensitivity test:e

Stressed eye closure for PAM4 (SECQ), lane under test

   

3.4

 

dB

OMAouter of each aggressor lane

   

4.2

 

dBm

Rx LOS

LOS Assert

LOSA

-15

 

-7.9

dBm

LOS De-assert

LOSD

   

-7.4

dBm

LOS Hysteresis

LOSH

0.5

 

5

dB

 

Notes:

a. The receivershall be able to tolerate, without damage, continuous exposure to an optical input signal having this average power level. The receiver does not have to operate correctly at this input power.

b. Average receive power, each lane (min) is informative and not the principal indicator of signal strength. A received power below this value cannot be compliant; however, a value above this does not ensure compliance.

c. Receiver sensitivity (OMAouter), each lane (max) is informative and is defined for a transmitter with SECQ of 0.9 dB.

d. Measured with conformance test signal at TP3 for the BER = 2.4E-4.

e. These test conditions are for measuring stressed receiver sensitivity. They are not characteristics of the receiver.

 

 

Electrical Specifications

 

(Table 4.1 Module input characteristics)

Parameter

Test

Point

Min

Typical

Max

Unit

Signaling rate, each lane

TP1

53.125 ±100 ppm

GBd

Differential pk-pk voltage tolerance

TP1a

750

   

mV

Peak-to-peak AC common-mode voltage

tolerance

Low-frequency, VCMLF

Full-band, VCMFB

TP1a

32

80

   

mV

Differential-mode to common-mode return loss, RLcd

TP1

Equation   (120G-2)

   

dB

Effective return loss, ERL

TP1

8.5

   

dB

Differential termination mismatch

TP1

   

10

%

Module stressed input tolerance

TP1a

See 120G.3.4.3

-

Single-ended voltage tolerance range

TP1a

-0.4

 

3.3

V

DC common-mode voltage tolerance

TP1

-0.35

 

2.85

V

 

(Table 4.2 Module output characteristics at TP4)

 

Parameter

Test

Point

Min

Typical

Max

Unit

Signaling rate, each lane

TP4

53.125 ±100 ppm

GBd

Peak-to-peak AC common-mode voltage Low-frequency, VCMLF

Full-band, VCMFB

TP4

   

32

80

mV

Differential peak-to-peak output voltage Short mode

Long mode

TP4

   

600

845

mV

Eye height

TP4

15

   

mV

Vertical eye closure, VEC

TP4

   

12

dB

Common-mode to differential-mode return loss, RLdc

TP4

Equation   (120G- 1)

   

dB

Effective return loss, ERL

TP4

8.5

   

dB

Differential termination mismatch

TP4

   

10

%

Transition time

TP4

8.5

   

ps

DC common-mode voltage tolerance

TP4

-0.35

 

2.85

V

 

 

 

Ordering Information

Part Number

Description

OSFP-800G-DR8  

 800G OSFP800 DR8,MPO,500m,SMF,0 to 70

 

 

FAQ

 

 

Q: Can the OSFP DR8 module be used in a 5G network?

A: Of course, the OSFP DR8 module can be used in a 5G network to support high-speed data transmission.

Q: How many lanes does the 800GOSFP DR8 module support?

A: D-NET's 800G OSFP DR8 module supports 8 lanes for high-speed data transmission.

Q: Is the OSFP DR8 module compliant with industry standards?

A: Yes, the OSFP DR8 module is compliant with industry standards such as the IEEE 802.3 Industry Standard.