Orient OR 6N137 Photocoupler Providing Robust Common Mode Rejection and High Speed Data Transmission

Key Attributes
Model Number: OR-6N137
Product Custom Attributes
Rise Time:
100ns
Fall Time:
6.6ns
Output Current:
50mA
Vce Saturation(VCE(sat)):
100mV@1mA,20mA
Operating Temperature:
-55℃~+110℃
Load Voltage:
80V
Reverse Voltage:
6V
Load Type:
Phototransistor
Forward Current(If):
20mA
Input Type:
DC
Isolation Voltage(Vrms):
5kV
Number Of Channels:
1
Mfr. Part #:
OR-6N137
Package:
DIP-8
Product Description

Product Overview

The ORPC-6N137 is a high-speed photocoupler designed for efficient AC and DC isolation between input and output. It features a low-power consumption, a high-speed data rate of 15MBd (typical), and robust common-mode rejection (CMR) of 10 kV/s. This device operates reliably across a wide temperature range of -40 to +85, making it suitable for various demanding applications.

Product Attributes

  • Brand: Orient Technology
  • Model: ORPC-6N137
  • Origin: Shenzhen, China
  • Copyright Year: 2018

Technical Specifications

Parameter Symbol Condition Min Typ Max Unit
Absolute Maximum Ratings (Ta=25)
Input Average Forward Input Current IF 20 mA
Reverse Input Voltage VR 5 V
Power Dissipation PI 40 mV
Enable Input Voltage VE VCC+0.5 V
Enable Input current IE 5 mA
Output Collector Current IO 50 mA
Output Collector Voltage VO 7 V
Output Collector Power Dissipation PO 85 mW
Supply Voltage VCC 7 V
Insulation Voltage Viso 5000 Vrms
Working Temperature Topr -40 +85
Storage Temperature Tstg -55 +125
Soldering Temperature Tsol 260 *2
Recommended Operating Conditions
Operating Temperature TA -40 85
Supply Voltage VCC 2.7 3.6 V
VCC 4.5 5.5 V
Low Level Input Current IFL 0 250 A
High Level Input Current IFH 5 15 mA
Low Level Enable Voltage VEL 0 0.8 V
High Level Enable Voltage VEH 2 VCC V
Output Pull-up Resistor RL 330 4k
Fan Out (at RL=1k per channel) N 5 TTL Loads
Opto-electronic Characteristics (Recommended temperature range (TA= -40+85,2.7VVCC3.6 V),IF= 7.5mA)
Input Forward voltage VF IF= 10mA 1.38 1.7 V
Temperature Coefficient OF Forward Voltage VF/ T IF= 10mA -1.5 mV/
Reverse Voltage BVR IR = 10A 5 V
Input Threshold Current ITH VE=2V,VCC=3.3V VO=0.6V IOL (sinking) =13mA 1.5 5 mA
Input Capacitance CIN f = 1MHz, VF = 0V 34 pF
Detector High Level Supply Current ICCH VE= 0.5V, VCC=3.3V,IF=0mA 3.8 10 A
Low Level Supply Current ICCL VE= 0.5V, VCC= 3.3V,IF=10mA 5.8 13 mA
High Level Enable Current IEH VCC= 3.3V,VE=2V -0.19 -1.6 mA
Low Level Enable Current IEL VCC= 3.3V,VE=0.5V -0.41 -1.6 mA
High Level Enable Voltage VEH 2 V
Low Level Enable Voltage VEL 0.8 V
High Level Output Current IOH VE=2V, VCC=3.3V VO=3.2V,IF=250A 5 100 A
Low Level Output Voltage VOL VE=2V, VCC=3.3V IF=5mA, IOL (sinking) = 13mA 0.3 0.6 V
Opto-electronic Characteristics (Recommended temperature range(TA= -40+85,4.5VVCC5.5V),IF= 7.5mA)
Input Forward voltage VF IF= 10mA 1.38 1.7 V
Temperature Coefficient OF Forward Voltage VF/ T IF= 10mA -1.5 mV/
Reverse Voltage BVR IR = 10A 5 V
Input Threshold Current ITH VCC=5.5V,VO=0.6V IOL>13mA 1.35 5 mA
Input Capacitance CIN f = 1MHz, VF = 0V 34 pF
Detector High Level Supply Current ICCH VE= 0.5V, VCC=5.5V,IF=0mA 6.1 10 A
Low Level Supply Current ICCL VE= 0.5V, VCC= 5.5V,IF=10mA 8.3 13 mA
High Level Enable Current IEH VCC= 5.5V,VE=2V -0.6 -1.6 mA
Low Level Enable Current IEL VCC= 5.5V,VE=0.5V -0.9 -1.6 mA
High Level Enable Voltage VEH 2 V
Low Level Enable Voltage VEL 0.8 V
High Level Output Current IOH VE=2V, VCC=5.5V VO=5.5V,IF=250A 0.9 100 A
Low Level Output Voltage VOL VE=2V, VCC=5.5V IF=5mA, IOL (sinking) = 13mA 0.3 0.6 V
Switching Characteristics (Recommended temperature range (TA= -40+85,2.7VVCC3.6 V),IF= 7.5mA)
Propagation delay time to output High level tPLH RL=350 CL=15pF 25 40 75 ns
Propagation delay time to output Low level tPHL RL=350 CL=15pF 25 32 75 ns
Pulse Width Distortion |tPLH-tPHL| RL=350 CL=15pF 8 ns
Output Rise Time (10 to 90%) tr 22 ns
Output Fall Time (90 to 10%) tf 6.9 ns
Propagation Delay Time of Enable from VEH to VEL tELH RL=350 CL=15pF VEL=0V VEH=3V 28 ns
Propagation Delay Time of Enable from VEL to VEH tEHL CL=15pF VEL=0V VEH=3V 12 ns
Common Mode Transient Immunity
Logic High Common Mode Transient Immunity |CMH| VCC=3.3V,VCM=1000V,RL=350 IF=0mA,TA=25 10 15 kV/s
Logic High Common Mode Transient Immunity |CMH| VCC=5V,VCM=1000V,RL=350 IF=0mA,TA=25 10 15 kV/s
Logic Low Common Mode Transient Immunity |CML| VCC=3.3V,VCM=1000V,RL=350 IF=10mA,TA=25 10 15 kV/s
Logic Low Common Mode Transient Immunity |CML| VCC=5V,VCM=1000V,RL=350 IF=10mA,TA=25 10 15 kV/s
Isolation Characteristics
Input-Output Insulation Leakage Current II-O 45% RH,t=5s, VI-O = 3kV DC,TA =25 C 1 A
Withstand Insulation Test Voltage VISO RH 50%, t =1min,TA=25 5000 VRMS
Input-Output Resistance RI-O VI-O = 500V DC 1012
Input-Output Capacitance CI-O f = 1MHz, TA = 25 C 1 pF

Application Range

  • Line receiver isolation
  • A/D, D/A converted digital signal isolation
  • Eliminate noise from the ground loop
  • Switching power supply
  • Alternative pulse transformers
  • Motor control system
  • Interface of microprocessor system, computer and peripheral equipment

Features

  • 3.3V / 5V supply voltage
  • Low power consumption
  • High speed: 15MBd (typical)
  • VCM=1000V, and the lowest common mode inhibition (CMR) is 10 kV/s
  • AC and DC performance at -40~ +85 temperature

2410122002_Orient-OR-6N137_C282486.pdf

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