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深圳恒通未来科技有限公司

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深圳恒通未来技术有限公司专注光纤通信以及信息网络领域产品的研发、生产和销售,致力于技术的优化与整合,以创新、优质为研发、生产的理念,提供优质的产品和先进的解决方案。实力雄厚的研发团队,根据市场的发展需求,推出的CWDM粗波分复用器、DWDM密集波分复用器、10GOEO+WDM大数据传输设备、光纤收发......

供应40Gb/s QSFP+ LR4 10KM 光模块

产品编号:7054017                    更新时间:2016-12-08
价格: ¥18928411596.00
深圳恒通未来科技有限公司

深圳恒通未来科技有限公司

  • 主营业务:CWDM波分,DWDM波分,波分复用器,光纤收发器,光模块,...
  • 公司官网:www.htfuture.com
  • 公司地址:

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产品详情

 

40Gb/s QSFP+ LR4 Transceiver

Product Features  

4 CWDM lanes Mux/Demux design

l  Up to 11.1Gbps Data rate per wavelength

l  Up to 10km transmission on SMF

l  Electrically hot-pluggable

l  Digital Diagnostics Monitoring Interface

l  Compliant with QSFP+ MSA with LC connector

l  Case operating temperature range:0°C to 70°C 

l  Power dissipation < 3.5 W

 

Applications

40G Ethernet

l  Data Center and LAN

 

Standard

l  Compliant to IEEE 802.3ba

l  Compliant to SFF-8436

l  RoHS Compliant.

 

General Description

HTFuture’s QSFP+ LR4 is designed to operate over single-mode fiber system using 4X10 CWDM channel in 1310 band and links up to 10km. The module converts 4 inputs channel of 10Gb/s electrical data to 4 CWDM optical signals, and multiplexes them into a single channel for 40Gb/s optical transmission. Reversely, on the receiver side, the module optically de-multiplexes a 40Gb/s input into 4 CWDM channels signals, and converts them to 4 channel output electrical data.

The central wavelengths of the 4 CWDM channels are 1271, 1291, 1311 and 1331 nm. It contains a duplex LC connector for the optical interface and a 38-pin connector for the electrical interface. Single-mode fiber (SMF) is applied in this module. This product converts the 4-channel 10Gb/s electrical input data into CWDM optical signals (light), by a 4-wavelength Distributed Feedback Laser (DFB) array. The 4 wavelengths are multiplexed into a single 40Gb/s data, propagating out of the transmitter module via the SMF. The receiver module accepts the 40Gb/s optical signals input, and de-multiplexes it into 4 CWDM 10Gb/s channels. Each wavelength light is collected by a discrete photo diode, and then outputted as electric data after amplified by a TIA.

The product is designed with form factor, optical/electrical connection and digital diagnostic interface according to the QSFP+ Multi-Source Agreement (MSA) and compliant to 40G QSFP+ LR4 of IEEE 802.3ba.

 

Absolute Maximum Ratings  

Parameter

Symbol

Min.

Typ.

Max.

Unit

Note

Storage Temperature

Ts

-40

-

85

ºC

 

Storage Ambient Humidity

HA

5

-

95

%

 

Operating Relative Humidity

RH

-

-

85

%

 

Power Supply Voltage

VCC

-0.3

-

4

V

 

Signal Input Voltage

 

Vcc-0.3

-

Vcc+0.3

V

 

 

Recommended Operating Conditions

Parameter

Symbol

Min.

Typ.

Max.

Unit

Note

Case Operating Temperature

Tcase

0

-

70

ºC

Without air flow

Power Supply Voltage

VCC

3.14

3.3

3.47

V

 

Power Supply Current

ICC

-

 

800

mA

 

Data Rate

BR

 

10.3125

 

Gbps

Each channel

Transmission Distance

TD

 

-

10

km

 

Coupled fiber

Single mode fiber

9/125um SMF

 

Optical Characteristics

Parameter

Symbol

Min

Typ

Max

Unit

NOTE

Transmitter

 

 

 

 

 

 

Wavelength Assignment

λ0

1264.5

1271

1277.5

nm

 

λ1

1284.5

1291

1297.5

nm

 

λ2

1304.5

1311

1317.5

nm

 

λ3

1324.5

1331

1337.5

nm

 

Total Output. Power

POUT

 

 

8.3

dBm

 

Average Launch Power Per lane

 

-7

 

2.3

dBm

 

Spectral Width (-20dB)

σ

 

 

1

nm

 

SMSR

 

30

 

 

dB

 

Optical Extinction Ratio

ER

3.5

 

 

dB

 

Average launch Power off per lane

Poff

 

 

-30

dBm

 

Transmitter and Dispersion Peanlty

TDP

 

 

2.3

dB

 

RIN

RIN

 

 

-128

dB/Hz

 

Output Eye Mask

Compliant with IEEE 802.3ba

 

Receiver

 

 

 

 

 

 

Rx Sensitivity per lane(OMA)

RSENS

 

 

-11.5

dBm

1

Input Saturation Power (Overload)

Psat

3.3

 

 

dBm

 

Receiver Reflectance

Rr

 

 

-26

dB

 

 

Notes:  

  1. Measured with a PRBS 231-1 test pattern, @10.325Gb/s, BER<10-12 . 

Electrical Characteristics

Parameter

Symbol

Min

Typ

Max

Unit

NOTE

Supply Voltage

Vcc

3.14

3.3

3.46

V

 

Supply Current

Icc

 

 

760

mA

 

Transmitter

 

 

 

 

 

 

Input differential impedance

Rin

 

100

 

Ω

1

 Differential data input swing

Vin,pp

180

 

1000

mV

 

Transmit Disable Voltage

VD

Vcc–1.3

 

Vcc

V

 

Transmit Enable Voltage

VEN

Vee

 

Vee+ 0.8

V

2

Transmit Disable Assert Time

 

 

 

10

us

 

Receiver

 

 

 

 

 

 

Differential data output swing

Vout,pp

300

 

850

mV

3

Data output rise time

tr

28

 

 

ps

4

Data output fall time

tf

28

 

 

ps

4

LOS Fault

VLOS fault

Vcc–1.3

 

VccHOST

V

5

LOS Normal

VLOS norm

Vee

 

Vee+0.8

V

5

Power Supply Rejection

PSR

100

 

 

mVpp

6

 

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