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100G QSFP28 1310nm 20km Transceiver Fiber Optic Transceiver Module

100G QSFP28 1310nm 20km Transceiver Fiber Optic Transceiver Module

Наименование марки: Optowix
Номер модели: MK1Q-13TC
МОК: 1
Условия оплаты: T/T
Способность к поставкам: 10Kpcs
Подробная информация
Место происхождения:
Китай
Optowix PN:
MK1Q-13TC
Наименование продукта:
Передатчик QSFP28 100 Гбит/с, однорежимный, 20 км, модуль
SpeedRate:
100 г
Distrance:
20 км
Интерфейс:
Двухкомнатный LC
Длина волны:
1310 нм
Экология:
0oC ~ 70oC
Упаковывая детали:
Случай ESD пластиковый
Поставка способности:
10Kpcs
Описание продукта

100Gbps QSFP28 Transceiver, Single Mode, 20km Reach
 

Features
  • Compliant to 100G Lambda MSA 100G LR1-20
  •  Full-duplex transceiver module
  • 4x25.78125Gbps NRZ electrical interface(CAUI-4)
  • 106.25Gbps PAM4 based on a cooled EML TOSA transmitter
  • 106.25Gbps PAM4 PIN Receiver
  • 4W maximum power dissipation
  • Hot-pluggable QSFP28 form factor
  • Maximum link length of 20km on G.652 SMF with KP-FEC
  • Duplex LC receptacles
  • Built-in digital diagnostic functions
  • Operating case temperature range: 0 to 70°C
  • Single 3.3V power supply
  • RoHS compliant (lead free)​

Applications

  • 100G Lambda 100G LR1-20
Standards
  • QSFP28 MSA
Ordering Information
 
Part Number Product Description
MK1Q-13TC 100G QSFP28  1310nm  20km, 0°C~+70°C

 
Description

  • The 100G LR1-20km QSFP28 optical transceiver, 100G QSFP28 LR1-20 is designed for using in 100-Gigabit Ethernet links up to 20km over Single-Mode Fiber (SMF). It is compliant with the QSFP28 MSA ,100G Lambda 100G LR1-20 and CAUI-4(no FEC)1. Digital diagnostics functions are available via the I2C interface, as specified by the QSFP28 MSA.
  • The module incorporates 1 channel optical signal, on 1311nm center wavelength, operating at 100Gbps data rate. This module can convert 4 channels of 25Gbps (NRZ) electrical input data to 1 channel of 100Gbps (PAM4) optical signal, and also can convert 1 channel of 100Gbps (PAM4) optical signal to 4 channels of 25Gbps (NRZ) electrical output data. The electrical interface uses a 38-contact edge type connector. The optical interface uses a Duplex LC connector. The high performance cooled EML transmitter and high sensitivity PIN receiver provide superior performance for 100Gigabit Ethernet applications up to 20km links.
     
Absolute Maximum Ratings
 
Parameter Symbol Min Max Unit
Supply Voltage Vcc -0.3 3.6 V
Input Voltage Vin -0.3 Vcc+0.3 V
Storage Temperature Ts -20 85 ºC
Case Operating Temperature Tc 0 70 ºC
Humidity (non-condensing) Rh 5 85 %

 

Recommended Operating Conditions
 
Parameter Symbol Min Typical Max Unit
Supply Voltage Vcc 3.13 3.3 3.47 V
Operating Case temperature Tc 0   70 ºC
Data Rate Per Lane fd   106.25   Gb/s
Humidity Rh 5   85 %
Power Dissipation Pm     4 W
Link Distance with G.652 D     20 km

 

Electrical Characteristics
 
   Parameter Symbol Min Typical Max Unit
   Differential Input Impedance Zin 90 100 110 ohm
   Differential Output Impedance Zout 90 100 110 ohm
   Differential Input Voltage Amplitude1 ΔVin     1600 mVp-p
   Differential Output Voltage Amplitude2 ΔVout     900 mVp-p
   Note:
   1. Differential input voltage amplitude is measured between TxnP and TxnN.
   2. Differential output voltage amplitude is measured between RxnP and RxnN.
 
Optical Characteristics
 
   Parameter Symbol Min Typical Max Unit Notes
   Transmitter
   Centre Wavelength λc 1304.5   1317.5 nm  
   Side-mode suppression ratio SMSR 30     dB  
   Average launch power Pout -0.2   6.6 dBm  
   Optical Modulation Amplitude(OMA outer) OMA 2.8   6.8 dBm  
   Transmitter and dispersion eye closure(TDECQ) TDECQ     3.6 dB  
   Extinction Ratio ER 3.5     dB  
   Average launch power of OFF transmitter       -30 dB  
   Receiver
   Centre Wavelength λc 1304.5   1317.5 nm  
   Receiver Sensitivity in OMA outer RXsen     -7.6 dBm 1
   Average receive power Pin -10   6.6 dBm  
   Receiver Reflectance       -26 dB  
   LOS Assert     -13   dBm  
   LOS De-Assert – OMA     -11   dBm  
   LOS Hysteresis   0.5     dB  
   Note:
   1. Measured with conformance test signal at TP3 for BER = 2.4E-4 Pre-FECs