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10G SFP+SR Optical Transceiver,LC connector, 850nm for up to 300m over MMF

10G SFP+SR Optical Transceiver,LC connector, 850nm for up to 300m over MMF

10Gbps LC Fiber Transceiver

SFP+ LC Fiber Transceiver

850nm LC Fiber Transceiver

Place of Origin:

Wuhan China

Brand Name:

Springtek

Certification:

ISO9001 RoHS FCC CE

Model Number:

S-FP1085L03-CD

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Product Details
Data Rate:
SFP+ 10G
Wavelength:
850nm
Compatibility::
Cisco,Juniper,HP,Arista,Alcatel,Avaya,Nokia,etc.
Connector:
LC Simplex
Distance:
300M
Fiber Type:
MMF
Temperature:
0~70 °C
Warranty:
3 Years
Payment & Shipping Terms
Minimum Order Quantity
1pc
Price
Get Latest Price
Packaging Details
Individual package Or 10pcs/pallet Or 20pcs/pallet
Delivery Time
3~5working days
Payment Terms
T/T
Supply Ability
150-300k per month
Product Description

10G SFP+SR Optical Transceiver,LC connector, 850nm for up to 300m over MMF

S-FP1085L03-xD 221109.pdf

 

Ordering information

Part Number Product Description
S-FP1085L03-CD SFP+, 10.3125Gbps, 850nm, SM, 300m, 0ºC~+70ºC, With DDM
S-FP1085L03-ID SFP+, 10.3125Gbps, 850nm, SM, 300m, -40ºC~+85ºC, With DDM

 

 

Description

Springtek 850nm SFP+ transceiver is designed to transmit and receive optical data over multimode fiber for 10G ethernet.

The module electrical interface is compliant to SFI electrical specifications. The transmitter input and receiver output impedance is 100 Ohms differential. Data lines are internally AC coupled. The module provides differential termination and reduce differential to common mode conversion for quality signal termination and low EMI.

 

Features

  • Up to 10.3125Gbps data rate
  • 850nm VCSEL Laser and PIN photo detector

  • Duplex LC receptacle optical interface complian

  • Single +3.3V power supply

  • Hot-pluggabl

  • AC coupling of CML signals

  • International Class1 laser safety certified

  • Operating temperature range:

  • DDMI function available with internally calibrated mode

  • Commercial: 0℃~+70℃

  • RoHS compliant (lead free)

 

Applications

  • 10G BASE-SR
  • Fiber Channel

 

Absolute Maximum Ratings

Parameter Symbol Min Typ Max Unit
Power Supply Voltage Vcc -0.5   4 V
Storage Temperature Range Ts -40   85 °C
Relative Humidity - Storage RHS 0   95 %
Relative Humidity - Operating RHO 0   85 %

 

Recommended Operating Conditions

Parameter Symbol Min Typ Max Unit
Case Operating Temperature Range Tc 0 - 70 °C
-40 - 85
Power Supply Voltage Vcc 3.14 3.3 3.47 V
Supply Current Icc - - 300 mA
Data Rate BR - 10.3125 - Gbps

 

Electrical Characteristics

Transmitter Electrical Characteristics
Parameter Symbol Min Typ Max Unit
Differential Input Voltage Swing VIN 180 - 700 mV
Tx Differential Input Impendence ZIN - 100 - Ω
Transmitter Disable Voltage VDIS 2.0 - VCC+0.3 V
Transmitter Enable Voltage VEN -0.3 - 0.8 V
TFAULT Logic High VTFH 2.4 - VCC+0.3 V
TFAULT Logic Low VTFL -0.3 - +0.4 V
Receiver Electrical Characteristics
Parameter Symbol Min Typ Max Unit
Differential output Voltage Swing VOUT 300 - 850 mV
Rx Differential Output Impendence ZOUT - 100 - Ω
LOS Assert Voltage VLOSA 2.4 - VCC+0.3 V
LOS De-assert Voltage VLOSD -0.3 - +0.4 V

 

 

Optical Characteristics

Parameter Symbol Min Typ Max Unit Notes
Transmitter Characteristics
Laser Type   FP    
Center Wavelength Range λ 840 850 860 nm  
Spectral Width RMS Δλ - - 0.45 nm  
Average Launch power of OFF transmitter POFF - - -30 dBm  
Launch Optical Power Pout -5 - -1 dBm 1
Extinction Ratio ER 3.5 - - dB  
Relative Intensity Noise RIN - - -128 dB/Hz  
Optical Return Loss Tolerance   - - 12 dB  
Transmitter and Dispersion Penalty TDP - - 3.9 dB  
Eye Diagram Complies with IEEE802.3ae eye masks when filtered
Receiver Characteristics
Receiver Type   PIN    
Operating Central Wavelength λ 840 - 860 nm  
Receiver Sensitivity Sen - - -10 dBm 2
Receiver Overload PSAT 0.5 - - dBm  
Receiver Reflectance RFL - - -12 dB  
LOS Assert LOSA -30 -  - dBm  
LOS De-Assert LOSD - -  -17 dBm  
LOS Hysteresis LOSH 0.5 3 5 dB  
Notes
  • The supply current is SFP+ module’s working current.
  • For the measurements, the device was driven with 231-1 PRBS pattern
  • Optical transition time is the time interval required for the rising or falling edge of an optical pulse to transition between the 20% and 80% amplitudes relative to the logical 1 and 0 levels.
  • Measured with a PRBS 231-1 test pattern, @10.3125Gbps, ER=4dB, BER<10-12
  • The LOS Hysteresis minimizes ‘chatter’ on the output line. In principle, Hysteresis alone does not guarantee chatter-free operation.

 

 

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