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SFF 2x10单/双光纤灵活输出数字光收发器模块

来源:芯瑞科技 | 产品分类:SFF 光模块

产品特性:
单通道、单光纤、双向、SC光接口; 单模模块,可选传输距离为10千米至120千米; 信号输入/输出CML电平; 极低的EMI和出色的ESD保护
应用场景:
以太网交换机和路由器; 其他光链路

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产品详情

The SFF 2x10 series of optical transceivers is a high-performance optical communication product launched by Chengdu Gigac Technology. Available in both single-fiber bidirectional (SC interface) and dual-fiber bidirectional (LC interface) versions, they offer speeds of 155Mbps, 622Mbps, 1.25Gbps, and 2.5Gbps. Transmission distances range from 300m/2km in multimode to 10km-160km in single-mode, meeting diverse application requirements.


This series utilizes the SFF 2x10 package, operates from a single 3.3V power supply, utilizes CML signal input and output levels, and includes digital diagnostics, low electromagnetic interference, and excellent ESD protection. They are available in military industrial grade (J, -40°C/-45°C to +85°C) and military extended industrial grade (M, -55°C to +85°C), suitable for harsh environments.


Optically, the device boasts an extinction ratio ≥8.2dB, a transmit cutoff optical power ≤-40dBm, and a receive sensitivity of -19 to -34dBm. Electrically, the transmitter differential input amplitude ranges from 200 to 2000mVpp with an impedance of 90 to 110ohms, while the receiver differential output amplitude ranges from 300 to 1200mVpp with the same impedance, ensuring stable performance.


Compliant with Class I laser safety standards and ROHS 2.0, it is widely used in Ethernet networks, fiber optic switches, and other applications, providing a reliable optical transmission solution for communication networks.


Product Features:


SFF2x10 form factor

Single-channel, single-fiber, bidirectional, SC optical interface

Supports 155Mbps, 622Mbps, 1.25Gbps, and 2.5Gbps transmission rates

Single-mode module with optional transmission distance of 10km to 120km

Single 3.3V power supply

Signal input/output CML levels

Extremely low EMI and excellent ESD protection


Applications:


Ethernet switches and routers

Other optical links


Product grades:


Military grade (J): -40°C/-45°C to +85°C

Military extended grade (M): -55°C to +85°C


Implementation standards


Compliant with Class I laser safety standard IEC-60825

ROHS 2.0


Ordering Information

Part NumberData RateWavelength Distance  Fiber DDM Interface  Temp note1
DTACH44-RRLD*note11622Mbps850nm500mMMLYesLCJ/M
DTACH45-RRLM*note11622Mbps1310nm1kmMMLYesLCJ/M
DTACH45-RRLL*note11622Mbps1310nm10KmSMLYesLCJ/M
DTACH45-RRLG*note11622Mbps1310nm20KmSMLYesLCJ/M
DTACH45-RRLE*note11622Mbps1310nm40KmSMLYesLCJ/M
DTACH46-RRLE*note11622Mbps1550nm40KmSMLYesLCJ/M
DTACH46-RRLZ*note11622Mbps1550nm80KmSMLYesLCJ/M
DTACH46-RRLQ*note11622Mbps1550nm120KmSMLYesLCJ/M
DTACH44-KKLF*note11155Mbps850nm2kmMMLYesLCJ/M
DTACH45-KKLF*note11155Mbps1310nm2kmMMLYesLCJ/M
DTACH45-KKLL*note11155Mbps1310nm10KmSMLYesLCJ/M
DTACH45-KKLG*note11155Mbps1310nm20KmSMLYesLCJ/M
DTACH45-KKLE*note11155Mbps1310nm40KmSMLYesLCJ/M
DTACH46-KKLE*note11155Mbps1550nm40KmSMLYesLCJ/M
DTACH46-KKLZ*note11155Mbps1550nm80KmSMLYesLCJ/M
DTACH46-KKLQ*note11155Mbps1550nm120KmSMLYesLCJ/M
DTACH46-KKLB*note11155Mbps1550nm160KmSMLYesLCJ/M
DTABHP9-KKSL*note11155MbpsT1310nm/R1550nm10KmSMLYesSCJ/M
DTABHQ2-KKSL*note11155MbpsT1550nm/R1310nm10KmSMLYesSCJ/M
DTABHP9-KKSG*note11155MbpsT1310nm/R1550nm20KmSMLYesSCJ/M
DTABHQ2-KKSG*note11155MbpsT1550nm/R1310nm20KmSMLYesSCJ/M
DTABHP9-KKSE*note11155MbpsT1310nm/R1550nm40KmSMLYesSCJ/M
DTABHQ2-KKSE*note1155MbpsT1550nm/R1310nm40KmSMLYesSCJ/M
DTABHQ8-KKSZ*note11155MbpsT1490nm/R1550nm80KmSMLYesSCJ/M
DTABHQ9-KKSZ*note11155MbpsT1550nm/R1490nm80KmSMLYesSCJ/M
DTABHQ8-KKSQ*note11155MbpsT1490nm/R1550nm120KmSMLYesSCJ/M
DTABHQ9-KKSQ*note11155MbpsT1550nm/R1490nm120KmSMLYesSCJ/M
DTACH44-11LD*note111.25Gbps850nm500mMMLYesLCJ/M
DTACH45-11LD*note111.25Gbps1310nm500mMMLYesLCJ/M
DTACH45-11LL*note111.25Gbps1310nm10KmSMLYesLCJ/M
DTACH45-11LG*note111.25Gbps1310nm20KmSMLYesLCJ/M
DTACH45-11LE*note111.25Gbps1310nm40KmSMLYesLCJ/M
DTACH46-11LE*note111.25Gbps1550nm40KmSMLYesLCJ/M
DTACH46-11LZ*note111.25Gbps1550nm80KmSMLYesLCJ/M
DTACH46-11LQ*note111.25Gbps1550nm120KmSMLYesLCJ/M
DTABFP9-22SL*note112.5GbpsT1310nm/R1550nm10KmSMLYesSCJ/M
DTABFQ2-22SL*note112.5GbpsT1550nm/R1310nm10KmSMLYesSCJ/M
DTABFP9-22SG*note112.5GbpsT1310nm/R1550nm20KmSMLYesSCJ/M
DTABFQ2-22SG*note112.5GbpsT1550nm/R1310nm20KmSMLYesSCJ/M
DTABFP9-22SE*note112.5GbpsT1310nm/R1550nm40KmSMLYesSCJ/M
DTABFQ2-22SE*note12.5GbpsT1550nm/R1310nm40KmSMLYesSCJ/M
DTABFQ8-22SZ*note112.5GbpsT1490nm/R1550nm80KmSMLYesSCJ/M
DTABFQ9-22SZ*note112.5GbpsT1550nm/R1490nm80KmSMLYesSCJ/M
DTACH44-22LS*note112.5Gbps850nm300mMMLYesLCJ/M
DTACH45-22LS*note112.5Gbps1310nm300mMMLYesLCJ/M
DTACH45-22LL*note112.5Gbps1310nm10KmSMLYesLCJ/M
DTACH45-22LG*note112.5Gbps1310nm20KmSMLYesLCJ/M
DTACH45-22LE*note112.5Gbps1310nm40KmSMLYesLCJ/M
DTACH46-22LE*note112.5Gbps1550nm40KmSMLYesLCJ/M
DTACH46-22LZ*note112.5Gbps1550nm80KmSMLYesLCJ/M
DTACH46-22LQ*note112.5Gbps1550nm120KmSMLYesLCJ/M
DTABFP9-RRSL*note11622MbpsT1310nm/R1550nm10KmSMLYesSCJ/M
DTABFQ2-RRSL*note11622MbpsT1550nm/R1310nm10KmSMLYesSCJ/M
DTABFP9-RRSG*note11622MbpsT1310nm/R1550nm20KmSMLYesSCJ/M
DTABFQ2-RRSG*note11622MbpsT1550nm/R1310nm20KmSMLYesSCJ/M
DTABFP9-RRSE*note11622MbpsT1310nm/R1550nm40KmSMLYesSCJ/M
DTABFQ2-RRSE*note1622MbpsT1550nm/R1310nm40KmSMLYesSCJ/M
DTABFQ8-RRSZ*note11622MbpsT1490nm/R1550nm80KmSMLYesSCJ/M
DTABFQ9-RRSZ*note11622MbpsT1550nm/R1490nm80KmSMLYesSCJ/M
DTABFQ8-RRSQ*note11622MbpsT1490nm/R1550nm120KmSMLYesSCJ/M
DTABFQ9-RRSQ*note11622MbpsT1550nm/R1490nm120KmSMLYesSCJ/M
DTABFP9-11SL*note111.25GbpsT1310nm/R1550nm10KmSMLYesSCJ/M
DTABFQ2-11SL*note111.25GbpsT1550nm/R1310nm10KmSMLYesSCJ/M
DTABFP9-11SG*note111.25GbpsT1310nm/R1550nm20KmSMLYesSCJ/M
DTABFQ2-11SG*note111.25GbpsT1550nm/R1310nm20KmSMLYesSCJ/M
DTABFP9-11SE*note111.25GbpsT1310nm/R1550nm40KmSMLYesSCJ/M
DTABFQ2-11SE*note11.25GbpsT1550nm/R1310nm40KmSMLYesSCJ/M
DTABFQ8-11SZ*note111.25GbpsT1490nm/R1550nm80KmSMLYesSCJ/M
DTABFQ9-11SZ*note111.25GbpsT1550nm/R1490nm80KmSMLYesSCJ/M
DTABFQ8-11SQ*note111.25GbpsT1490nm/R1550nm120KmSMLYesSCJ/M
DTABFQ9-11SQ*note111.25GbpsT1550nm/R1490nm120KmSMLYesSCJ/M

Note 1: Case temperature, "*" = J means the module operating temperature is -40℃/-45℃~85℃, "*" = M means the module operating temperature is -55℃~85℃.


Pin Definition:

Pin Definition

Pinout

Symbol

Description

Notes

1

NC

Floating, not connected

-

2

NC

Floating, not connected

-

3

NC

Floating, not connected

-

4

NC

Floating, not connected

-

5

NC

Floating, not connected

-

6

VeeR

Receiving location

-

7

VccR

Receiving power

-

8

SD

Receive signal detection output (LVTTL), the signal is normal and outputs high level

1

9

RD-

Reverse data output of receiving part (CML, internal AC coupling)

-

10

RD+

Receiver forward data output (CML, internal AC coupling)

-

11

VccT

Transmitter power supply


12

VeeT

Transmitting location


13

TXDIS

Transmitter part shut down (LVTTL), internal pull-up 10K resistor

2

14

TD+

Transmitter positive data input (CML, internal AC coupling)


15

TD-

Transmitter reverse data input (CML, internal AC coupling)


16

VeeT

Transmitting location


17

SCL

I2C clock signal line (LVTTL)

3

18

SDA

I2C data signal line (LVTTL)

3

19

TX_FAULT

Transmitter status indicator, LVTTL, internal pull-up 10K resistor


20

NC

Floating, not connected


Note 1: This pin is internally pulled up to VCCT via a 10kΩ resistor.


Note 2: This pin is internally pulled up to VCC via a 10kΩ resistor. TXDIS is active high when shut down. If the TX_DISABLE function is not used, the TXDIS pin should be pulled down to a low level and not left floating. Doing so may cause the module to malfunction. This pin should be set low when the module is operating normally. Note 3: This pin is connected to VCC via a 10kΩ resistor on the motherboard.


Module dimensions are in millimeters. Unmarked dimensions have a tolerance of ±0.1mm.

1752227428808627[1]


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