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10Gbps 1310nm XFP Optical Transceiver for 40KM Transmission Distance in Slow or Fast Axis

Categories Optical Transceiver Module
Brand Name: TAKFLY
Model Number: XFP-TK1392-LC40
Certification: CE,ROHS,REACH,ISO9001,ISO14001
Place of Origin: Guangdong, SHENZHEN
MOQ: 1 Pices
Price: US$0.01 ~ US$1200/PC
Payment Terms: L/C, D/A, D/P, T/T, Western Union, MoneyGram
Delivery Time: 3-7working days
Ratio: 50/50
Center Wavelength: 1450nm
Insertion Loss: ≤0.3dB
Package Weight: 10g
Package Type: Bare Fiber, 900um Loose Tube, 2mm Cable
Wavelegth: 1310nm
Axis Alignment: Slow axis or Fast axis
Wavelength Range: 1310nm, 1550nm
Application: Optical Communication Systems
Splitter Ratio: 98/2
Storage Temperature: -40~+85℃
Port Number: 1x2
Fiber Length: 1m
Fiber: PM Corning 980nm fiber
Power Handling Capacity: High Power
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10Gbps 1310nm XFP Optical Transceiver for 40KM Transmission Distance in Slow or Fast Axis

Description
  • TAKFLY XFP-TK1392-LC40 Small Form Factor 10G (XFP) transceivers are compliant with the current XFP Multi-Source Agreement (MSA) Specification1.They comply with 10-Gigabit Ethernet10GBASE-LR/LW per IEEE 802.3ae and 10G Fiber Channel. Digital diagnostics functions are available via a 2-wire serial interface, as specified in the XFP MSA. The transceiver is RoHS compliant and lead-free per Directive 2002/95/EC3.

Features

  • Hot-pluggable XFP footprint
  • Supports 9.95Gb/s to 11.3Gb/s bit rates
  • XFI Loopback Mode
  • RoHS-6 Compliant (lead-free)
  • Power dissipation <1.5W
  • Case temperature range: -5°C to 70°C
  • Maximum link length of 20km
  • Uncooled 1310nm DFB laser
  • Full Duplex LC connector
  • No Reference Clock required
  • Built-in digital diagnostic functions
  • Standard bail release mechanism

Applications

  1. 10GBASE-LR/LW 10G Ethernet
  2. 10G Fiber Channel
  3. SONET OC-192 SR-1 SDH STM I-64.

Absolute Maximum Ratings

ParameterSymbolMinTypMaxUnit
Maximum Supply VoltageVcc3-0.54.0V
Storage TemperatureTS-4085°C
Case Operating TemperatureTcase-570°C

Electrical Characteristics(TOP = -5 to 70 °C, VCC3 = 3.13 to 3.45 Volts)

ParameterSymbolMinTypMaxUnitRef.
Supply Voltage #2Vcc33.133.45V
Supply Current – Vcc3 supplyIcc3450mA

Module total power

P

1.5W1
Transmitter
Input differential impedanceRin100Ω2

Differential data input swing

Vin,pp120820mV
Transmit Disable VoltageVD2.0VccV3
Transmit Enable VoltageVEN

GND

GND + 0.8

V
Transmit Disable Assert Time10us
Receiver

Differential data output swing

Vout,pp340650850mV4
Data output rise timetr38ps5
Data output fall timetf38ps5
LOS FaultVLOS faultVcc–0.5VccHOSTV6
LOS NormalVLOS norm

GND

GND+0.5

V6
Power Supply RejectionPSR7

Notes:

  1. Maximum total power value is specified across the full temperature and voltage range.
  2. After internal AC coupling.
  3. Or open circuit.
  4. Into 100 ohms differential termination.
  5. These are unfiltered 20-80% values
  6. Loss of Signal is open collector to be pulled up with a 4.7k – 10kohm resistor to 3.15 – 3.6V. Logic 0 indicates normal operation; logic 1 indicates no signal detected.
  7. Per Section 2.7.1. in the XFP MSA Specification1.

Optical Characteristics (TOP = -5 to 70 °C, VCC3 = 3.13 to 3.45 Volts)

Transmitter
ParameterSymbolMin.TypMax.UnitRef.

Average Optical Power

P

0

3

dBm

Optical Wavelength

λ

129013101330

nm

Sidemode Suppression ratio

SSRmin

30

dB

Optical Extinction Ratio

ER

4

dB

Transmitter and Dispersion Penalty

TDP

2

dB

Average Launch power of transmitter

P

-30

dBm

Tx Jitter

Tx

Per 802.3ae requirements

Relative Intensity Noise

RIN

-130

dB/Hz

Receiver
ParameterSymbolMin.TypMax.UnitNote

Receiver Sensitivity

RSENS

-16dBm1

Input Saturation Power (Overload)

Psat

-6dBm

Wavelength Range

λC

12701610nm

Receiver Reflectance

Rrx

-27dB

LOS De-Assert

LOS

-18dBm
LOS Assert

LOS

-25dBm

LOS Hysteresis

0.54dB

Notes:

Measured with worst ER; BER<10-12@ 10.3Gbps, 231 – 1 PRBS.

Pin Assignment



General Specifications

Digital Diagnostic Functions

As defined by the XFP MSA1, The XFP transceivers provide digital diagnostic functions via a 2-wire serial interface, which allows real-time access to the following operating parameters:

  1. Transceiver temperature
  2. Laser bias current
  3. Transmitted optical power
  4. Received optical power
  5. Transceiver supply voltage

It also provides a sophisticated system of alarm and warning flags, which may be used to alert end-users when particular operating parameters are outside of a factory-set normal range.


The operating and diagnostics information is monitored and reported by a Digital Diagnostics Transceiver Controller (DDTC) inside the transceiver, which is accessed through the 2-wire serial interface. When the serial protocol is activated, the serial clock signal (SCL pin) is generated by the host. The positive edge clocks data into the XFP transceiver into those segments of its memory map that are not write-protected. The negative edge clocks data from the XFP transceiver. The serial data signal (SDA pin) is bi-directional for serial data transfer. The host uses SDA in conjunction with SCL to mark the start and end of serial protocol activation. The memories are organized as a series of 8-bit data words that can be addressed individually or sequentially. The 2-wire serial interface provides sequential or random access to the 8 bit parameters, addressed from 000h to the maximum address of the memory.


Mechanical Specifications

TAKFLY XFP transceivers are compliant with the dimensions defined by the XFP Multi-Sourcing Agreement (MSA).

XFP Transceiver (dimensions are in mm)


PCB Layout and Bezel Recommendations


XFP Host Board Mechanical Layout (dimensions are in mm)


XFP Detail Host Board Mechanical Layout (dimensions are in mm)


Regulatory Compliance

Quality 10Gbps 1310nm XFP Optical Transceiver for 40KM Transmission Distance in Slow or Fast Axis for sale
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