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4 Pins 20mA Axial Leaded LDR Output Analog Linear Optocoupler WDYJ-65 With Isolation Voltage 2KV For Audio Amplifier

1000 Pieces
MOQ
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Price
4 Pins 20mA Axial Leaded LDR Output Analog Linear Optocoupler WDYJ-65 With Isolation Voltage 2KV For Audio Amplifier
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Features
Specifications
Product Name: Photocell LDR Output Analog Linear Optocoupler
No. Of Pins: 4 Pins
Product Range: WDYJ-65 Series
Optocoupler Case Style:: Axial
Isolation Voltage: 2KV
Forward Current If MaxForward Current If Max: 20mA
Dimension: 6*6.5*4mm
Soldering Temperature: 260C (<5Sec)
Operating / Storage Temperature: -40 To 75C
Forward Voltage: 1.9-2.5V
Reverse Current: 4 μA
Maximum Cell Voltage: 60V
Power Dissipation: 50mW
Cell Temp Coefficient: 0.7%/C
Rise Time(TR): 3.5msec
Fall Time(TF): 500msec
Highlight:

flame detector sensor

,

surface mount resettable fuse

Basic Infomation
Brand Name: Ao littel
Model Number: WDYJ-65 Series
Payment & Shipping Terms
Packaging Details: Bulk
Delivery Time: 10 Workdays
Payment Terms: Western Union, T/T
Supply Ability: 100,000,000 Pieces Per Month
Product Description

 
4 Pins 20mA Axial Leaded LDR Output Analog Linear Optocoupler WDYJ-65 With Isolation Voltage 2KV For Audio Amplifier
 
 
Applications
 
Audio amplifier protection and control
Audio volume limiting
Electric shielded isolation coupling
Communication transmission and Automatic control
Lights adjustment and Motor speed control
Industrial, Motor Drive & Control

______________________________________________________________________________4 Pins 20mA Axial Leaded LDR Output Analog Linear Optocoupler WDYJ-65 With Isolation Voltage 2KV For Audio Amplifier 0 Download________

 

 
Structure Diagram:(unit:mm)
 
4 Pins 20mA Axial Leaded LDR Output Analog Linear Optocoupler WDYJ-65 With Isolation Voltage 2KV For Audio Amplifier 1
 
 
ABSOLUTE MAXIMUM RATINGS @ 25°C

 

Parameter Rating Unit
Isolation Voltage(peak) 2000 V
Soldering Temperature 260<5S
Operating Temperature -40 to 75
Storage Temperature -40 to 75

 
 
ELECTRO-OPTICAL CHARCTERISTICS @ 25°C
 
LED

Parameter Symbol Test Conditions Min. Typ.. Max. Unit
Forward Current IF     20   mA
Forward Voltage VF IF=20mA 1.9 2.0 2.5 V
Reverse Current IR VR=4V     10 μA

CELL

Parameter Symbol Test Conditions Min. Typ.. Max. Unit
Maximum Cell Voltage VC (Peak AC or DC)     60 V
Power Dissipation PD Derate linearly to 0 at 75°C     50 mW

COUPLED

Parameter Test Conditions On Resistance (RON) / KΩ Off Resistance (ROFF)※2 /
Min. Typ. Max.
WDYJ-65RA IF=1mA※1     0.7 1
WDYJ-65RB IF=1mA※1 0.65   1.1 1
WDYJ-65RC IF=1mA※1 1.05   1.56 1
WDYJ-65RC1 IF=1mA※1 0.8   1.5 200
WDYJ-65RD IF=1mA※1 1.48   2.6 1
WDYJ-65RD1 IF=1mA※1 1.48   2.5 200
WDYJ-65RE IF=1mA※1 2.5   5 2
WDYJ-65RG IF=1mA※1 5   10 2
WDYJ-65RH IF=1mA※1 10   20 30
WDYJ-65RI IF=1mA※1 20   40 10
Rise Time(TR) Time to 63% of final conductance @ IF= 20mA   3.5   msec
Fall Time(TF) Time to 100K after removal of IF = 20mA   500   msec
Cell Temp Coefficient IF > 5 mA   0.7   %/°C

 
※1 measured after a dark history of one week
※2 10 sec after IF=0.5V dc on cell

 

 
Description
 
The WDYJ-65 is a 1-channel Axial Vactrol features a very low "on" resistance, fast response time, with a smaller temperature coefficient.

 

Linear Optocoupler is an optoelectronic devices , to control resistance change by input current change, made of CdS and LED semiconductors after rigorous selection ,aging and testing. 
4 Pins 20mA Axial Leaded LDR Output Analog Linear Optocoupler WDYJ-65 With Isolation Voltage 2KV For Audio Amplifier 2

 

 
Features
 
High Input-to-output Voltage Isolation
True Resistance Element Output
Suitable for AC or DC Use
Low Drive Current
Low On Resistance, High Off Resistance
Complete Solid-state Construction
 
 
Main characteristic curve


4 Pins 20mA Axial Leaded LDR Output Analog Linear Optocoupler WDYJ-65 With Isolation Voltage 2KV For Audio Amplifier 3
4 Pins 20mA Axial Leaded LDR Output Analog Linear Optocoupler WDYJ-65 With Isolation Voltage 2KV For Audio Amplifier 4
 
Attention : Soldering pin recommended away from the bottom of optocoupler, soldering time should be as short as possible.

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