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6G SFP+ Transceiver 1310nm 40Km

Manufacturer/Supplier: SOPTO

 

The models: SSPT-P136G-40

 

Price: Request for quotation from customer services

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6G SFP+ Transceiver 1310nm 40Km                                                                                                               

Product description
SPT-136G-ER is a high performance, cost effective modules, which is supporting Multi Rate 1.25-6.25Gbps and transmission distance up to 40km on SM fiber. The transceiver consists of two sections: The transmitter section incorporates a 1310nm DFB driver and re-timer. The receiver

 

Features

Metal enclosure for lower EMI

Single 3.3V power supply

Power dissipation <1W

Compliant with FC-PI-4 800-Mx-SN-I, SFF-8431 , SFF-8432 and SFF-8472

Operating case temperature: Standard: -5 to +70℃

Support Multi Rate up to 6.25Gbps

CPRI/OBSAI Compatible Optical Interface

Hot Pluggable SFP+ footprint

1310nm DFB transmitter, PIN photo-detector

Transmission distance up to 40km on 9/125μm SMF

Digital Status monitoring Interface

Duplex LC connector

RoHS compliant and Lead Free

 

Primary Competitive Advantages:

1. Compatible with Cisco, HUAWEI, ZTE, Ericsson, Juniper, 3COM, Nortel, H3C, HP, Alcatel, D-link, Ruijie, Linksys……..

2. Green Product

3. Reasonable Price

4. Good Service

5. High Product Performance

6. 3 Years Warranty

7. High quality CE, FCC RoHS certificate

8. Good logistics

9. OEM and ODM are available

product desoription

SPT-136G-ER is a high performance, cost effective modules, which is supporting Multi Rate 1.25-6.25Gbps and transmission distance up to 40km on SM fiber. The transceiver consists of two sections: The transmitter section incorporates a 1310nm DFB driver and re-timer. The receiver section consists of a PIN photodiode integrated with a Trans impedance preamplifier (TIA). The module is hot pluggable into the 20-pin connector. The high-speed electrical interface is based on low voltage logic, with nominal 100 Ohms differential impedance and AC coupled in the module.

 

Parameter

Symbol

Min.

Typical

Max

Unit

Notes

Transmitter

Center Wavelength

λt

1284

1310

1345

nm

Note1

RMS spectral width

Pm

-

-

1

nm

 

Average Optical Power

Pavg

-1

-

+4

dBm

Note1

Laser OffPower

Poff

 

-

-30

dBm

 

Extinction Ratio

ER

3.5

   

dB

 

Relative Intensity Noise

Rin

   

-128

dB/Hz

 

Optical Eye Mask

Compliant with IEEE 802.3ae

Single Ended Output Voltage

Tolerance

 

-0.3

 

4

V

 

Common Mode Voltage Tolerance

 

15

   

mV

 

Tx Input Diff Voltage

VI

180

 

700

mV

 

Data Dependent Input Jitter

DDJ

   

0.1

UI

 

Data Input Total Jitter

TJ

   

0.28

UI

 

Receiver

Center Wavelength

λr

1260

-

1360

nm

 

Receiver Sensitivity

Psens

-

-

-15

dBm

 

LOS Assert

Los

-30

-

 

dBm

 

LOS De-assert

LosD

   

-16

dBm

 

Los Hysteresis

LosH

0.5

   

dBm

 

Overload

Pin

0.5-

-

 

dBm

 

Stressed Eye Jitter

 

-0.3

-

 

UIp-p

 

Receiver electrical 3dB upper

cutoff frequency

     

12.3

GHz

 

Vertical Eye Closure Penalty

 

2.2

   

Db

 

Single Ended Output Voltage

Tolerance

 

-0.3

 

4

v

 

Rx Output Diff Voltage

Vo

450

 

850

Mv

 

Rx Output Rise and Fall Time

Tr/Tf

30

   

PS

 

Total Jitter

TJ

   

0.7

UI

 

Deterministic Jitter

DJ

   

0.42

UI

 

Stressed Receiver Sensitivity in

OMA

     

-10.3

dBm

 

Receiver Reflectance

     

-12

dB

Note3

 

Digital Diagnostic Functions

The following digital diagnostic characteristics are defined over the Recommended Operating Environment unless otherwise specified. It is compliant to SFF8472 Rev9.2 with internal calibration mode.

 

Notes:

[1] Average optical power shall be measured using the methods specified in TIA/EIA-455-95.

[2] Vertical eye closure penalty and stressed eye jitter are the test conditions for measuring stressed receiver sensitivity. They are not the required characteristic of the receiver.

 

Absolute Maximum Ratings

These values represent the damage threshold of the module. Stress in excess of any of the individual Absolute Maximum Ratings can cause immediate catastrophic damage to the module even if all other Parameters are within Recommended Operating Conditions.

 

Shipment:

*FedEx

*DHL

*TNT

*UPS

 

FAQ: Payment Method        Logistics costs      Guarantee     Return Policies

 

Same Class Products:

 

6G 850nm 300m SFP+ Transceiver

6G 1310nm 10Km SFP+ Transceiver

6G 1310nm 2Km SFP+ Transceiver

 

Q&A

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Q: Which three basic functional modules included by the fiber optic transceiver?

 

A: Fiber optic transceiver includes three basic functional modules: the photoelectric media conversion chip, optical signal interface (optical transceiver module) electrical signal interface (RJ45), if equipped with a network management functions include network management information processing unit.

 

 

Q: The fiber optic transceivers play what role in the data dissemination process?

 

A: Fiber optic transceivers, a short distance twisted pair electrical signals and optical signals over long distances swap the Ethernet transmission media conversion unit, also called the Fiber Converter in many places. The general application can not be covered in the Ethernet cable, you must use optical fiber to extend the transmission distance of the actual network environment, and is usually located in the broadband metropolitan area network access layer application; At same time help last mile fiber line is connected to the city area network and the outer layer of the network has also played a huge role.

 

 

Q: LAN connected to the same fiber optic backbone?

 

A: This requires different ports, different linear, different fiber conversion and to ensure that the link quality. The emergence of fiber optic transceivers, twisted-pair electrical signals and optical signals are converted to ensure that the data packets in the smooth distance limit extended to more than 100km from the copper wire 100 meters (single-mode fiber).

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