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OSFP 400G(4x100G) 1310nm 500m DR4 MPO 8/12 Transceiver
OSFP 400G Transceiver
Model:JFTSM-OSFP-400(4x100)-13-05(DR4)-MPO8/12
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Product Specification
Data Sheets

Product model
JFTSM-OSFP-400(4x100)-13-05(DR4)-MPO8/12
Manufacturer brand
JFOPT
Package type
OSFP
Optical connector
MPO 8C/12C
Max data rate
400Gbps
Channel data rate
53.125Gbps
Effective transmission distance
500m
Wavelength
1310nm
Operating voltage
3.3V
Fiber type
SMF
Core size
9/125
Transmitter type
DFB
Receiver type
PIN
TX power
-2.9~4.0dBm
Receiver sensitivity
-4.4dBm
Digital optical monitoring(DDM)
YES
Receiver overload
4dBm
Power consumption
<12W
Protocols
IEEE802.3bs and OSFP MSA
CMlS 4.0 12C interface
4x100G DR4 applications
Data center
Operating temperature(Commercial)
0℃~+70℃
Storage temperature(Commercial)
-40℃~+85℃


 

PRODUCTION LINE INTRODUCTION
 
 

JFOPT continues to invest in optical transceiver production, covering a full range of optical transceiver such as 1*9, SFP, 10G, 25G, 100G, 200G, 400G, 800G GPON/EPON/XG/XGSPON OLT transceiver. At the same time, our company provides TOSA, ROSA, BOSA semi-finished device solutions for the downstream peer. JFOPT's production line has a daily production capacity of 10,000 optical transceivers and 20,000 optical devices. In addition, JFOPT's optical transceiver have industry-leading high temperature resistance and anti-interference capability, and are widely used in computing centers, operators, traffic security, power facilities and other industries.





PRODUCT PRESENTATION
 
 

The JFOPT OSFP 400G (4x100G) 1310nm 500m DR4 MPO 8/12 Transceiver is a high-performance optical module designed for 500m optical communication applications. It converts 8 channels of 50Gb/s (PAM4) electrical input into 4 parallel optical signals, each supporting 100Gb/s, for a total data rate of 400Gb/s. On the receiver side, it reverses the process, converting 4 parallel optical signals of 100Gb/s back into 8 channels of 50Gb/s (PAM4) electrical output.The module features an MPO-12 connector for optical connections, with guide pins inside the receptacle ensuring proper alignment. To maintain accurate channel-to-channel connectivity, the cable should not be twisted. Electrical connections are achieved via an OSFP MSA-compliant edge-type connector.Designed according to the OSFP Multi-Source Agreement (MSA) Type 2, the transceiver integrates a compact form factor, robust optical/electrical connections, and a digital diagnostic interface. It is engineered to withstand harsh external conditions, including extreme temperatures, high humidity, and EMI interference, ensuring reliable performance in demanding environments.





TRANSCEIVER SERIES PRODUCTS
 
 





PRODUCTION & TESTING EQUIPMENT
 
 





FEATURES
 
 
Hot-pluggable OSFP form factor MPO-12connector
Four parallel 1310nm optical lanes Data rate 106.25Gbps PAM4 per lane
8x53.125GBd (PAM4)electrical interface Up to 500m transmission on single mode fiber(SMF)with FEC
Digital diagnostics functions are available via the I2C interface Single 3.3V power supply and power dissipation<12W
Operating case temperature:0℃~+70℃  




APPLICATION
 
 
4x100G DR4 applications Data center




STANDARD COMPLIANCE
 
 

 


ABSOLUTE MAXIMUM RATINGS
 
 
Parameter Symbol Min. Max. Unit
Power supply voltage VCC -0.5  +3.6  V
Storage temperature TC -40  +85 
Relative humidity RH 85  %

These values represent the damage threshold of the module.Stress in excess of any of the individual absolute maximum ratingscan cause immediate catastrophic damage to the module even if all other parameters are within recommended operating conditions.






RECOMMENDED OPERATING ENVIRONMENT
 
 
Parameter Symbol Min Typical Max Unit
Power supply voltage VCC 3.15 3.30 3.45 V
Operating case temperature Tca 0 - 70


Recommended operating environment specifies parameters for which the electrical and optical characteristics hold unless otherwise noted.

 




ELECTRICAL CHARACTERISTICS
 
 
Parameter Symbol Min Typical Max Unit Notes
Data rate per lane DR - 53.125 - Gbps -

Transmitter
 
Input differential impedance Rin 90 100 110 Ω -
Differential input voltage swing Vin 900 - 1100 mVp-p -

Receiver
 
Differential output swing Vout - - 900 mVp-p -
Output differential impedance Rout 90 100 110 Ω -

The following electrical characteristics are defined over the recommended operating environment unless otherwise specified.






OPTICAL CHARACTERISTICS
 
 
Parameter Symbol Min Typical Max Unit Notes

Transmitter
 
Center wavelength λ 1304.5 1310 1317.5 nm -
Data rate,each lane - 53.125±100ppm GBd -
Side-mode suppression ratio SMSR 30 - - dB -
Average optical power,per lane Po -2.9 - 4 dBm 1
Extinction ratio ER 3.5 - - dBm -
Outer optical modulation amplitude OMAouter -0.8 - 4.2 dBm -
Transmitterand dispersion eye TDECQ - - 3.4 dB -
Optical return loss tolerance ORL - - 21.4 dB -

Receiver
 
Center wavelength λ 1304.5 1310 1317.5 nm -
Data rate,each lane - 53.125±100ppm GBd -
Average receive power,each lane - -5.9 - 4 dBm -
Receive power(OMAouter),each lane - - - 4.2 dBm -
Receiver sensitivity(OMAouter), - - - -4.4 dBm 2
LOS asserted Lsa -15 - - dBm -
LOS de-asserted Lda - - -8.9 dBm -
LOS hysteresis Lh 0.5 - - dB -

Note:
[1]Averagelaunch  power,each  lane(min)is  informative  and  notthe  principal  indicator  of  signal  strength.
[2]Atransmitter  with  launch  power  below  this  value  cannot  be  compliant;however,a  value  abovethis  does  not  ensure  compliance.
[3]Receiver sensitivity  (OMAouter),each  lane(max)is  informative  and  is  defined  for  a  transmitter  with  SECQ  of  0.9dB.
 

The following optical characteristics are defined over the recommended operating environment unless otherwise specified.






OSFP TRANSCEIVER ELECTRICAL PAD LAYOUT
 
 






PIN DEFINITIONS
 
 
Pin Symbol Name/Description
1 GND Ground
2 TX2p Transmitter data non-inverted
3 TX2n Transmitter dataInverted
4 GND Ground
5 Tx4p Transmitter data non-inverted
6 TX4n Transmitter data inverted
7 GND Ground
8 TX6p Transmitter data non-inverted
9 TX6n Transmitter data inverted
10 GND Ground
11 TX8p Transmitter data non-inverted
12 TX8n Transmitter data inverted
13 GND Ground
14 SCL 2-wire serial interface clock
15 VCC +3.3V power
16 VCC +3.3V power
17 LPWn/PRSn Low-power mode/module present
18 GND Ground
19 RX7n Receiver data inverted
20 RX7p Receiver data non-inverted
21 GND Ground
22 RX5n Receiver data inverted
23 RX5p Receiver data non-inverted
24 GND Ground
25 RX3n Receiver data inverted
26 RX3p Receiver data non-inverted
27 GND Ground
28 RX1n Receiver data inverted
29 RX1p Receiver data non-inverted
30 GND Ground
31 GND Ground
32 RX2p Receiver data non-inverted
33 RX2n Receiver data inverted
34 GND Ground
35 RX4p Receiver data non-inverted
36 RX4n Receiver data inverted
37 GND Ground
38 RX6p Receiver data non-inverted
39 RX6n Receiver data inverted
40 GND Ground
41 RX8p Receiver data non-inverted
42 RX8n Receiver data inverted
43 GND Ground
44 INT/RSTn Module interrupt/module reset
45 VCC +3.3V power
46 VCC +3.3V power
47 SDA 2-wire serial interface data
48 GND Ground
49 TX7n Transmitter data inverted
50 TX7p Transmitter data non-inverted
51 GND Ground
52 TX5n Transmitter data inverted
53 TX5p Transmitter data non-inverted
54 GND Ground
55 TX3n Transmitter data inverted
56 TX3p Transmitter data non-inverted
57 GND Ground
58 TX1n Transmitter data inverted
59 TX1p Transmitter data non-inverted
60 GND Ground





PRODUCT PACKAGING
 
 




PRODUCT CERTIFICATION
 
 





QUALITY ADVANTAGE
 
 







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