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Home > products > Flash Memory IC Chip > IL300-EF Integrated Circuit Chip Linear Optocoupler, High Gain Stability, Wide Bandwidth

IL300-EF Integrated Circuit Chip Linear Optocoupler, High Gain Stability, Wide Bandwidth

manufacturer:
Manufacturer
Description:
Optoisolator Photovoltaic, Linearized Output 5300Vrms 1 Channel 8-DIP
Category:
Flash Memory IC Chip
Price:
Negotiate
Payment Method:
T/T, Western Union, Paypal
Specifications
Forward Voltage:
1.25 V
VF Temperature Coefficient:
- 2.2 MV/°C
Reverse Current:
1.0 µA
Junction Capacitance:
15 PF
Dynamic Resistance:
6.0 Ω
Open Circuit Voltage:
500 MV
Highlight:

small scale integrated circuits

,

integrated components

Introduction

 

Linear Optocoupler, High Gain Stability, Wide Bandwidth

 

Features

• Couples AC and DC signals

• 0.01 % Servo Linearity

• Wide Bandwidth, > 200 kHz

• High Gain Stability, ± 0.05 %/ °C

• Low Input-Output Capacitance

• Low Power Consumption, < 15 mW

• Isolation Test Voltage, 5300 VRMS, 1.0 sec.

• Internal Insulation Distance, > 0.4 mm for VDE

• Component in accordance to RoHS 2002/95/EC and WEEE 2002/96/EC

 

Agency Approvals

• UL File #E52744

• DIN EN 60747-5-2 (VDE0884)

  DIN EN 60747-5-5 pending

  Available with Option 1, Add -X001 Suffix

 

Applications

Power Supply Feedback Voltage/Current

Medical Sensor Isolation

Audio Signal Interfacing

Isolated Process Control Transducers

Digital Telephone Isolation

 

Description

The IL300 Linear Optocoupler consists of an AlGaAs IRLED irradiating an isolated feedback and an output PIN photodiode in a bifurcated arrangement. The feedback photodiode captures a percentage of the LED’s flux and generates a control signal (IP1) that can be used to servo the LED drive current. This technique compensates for the LED’s non-linear, time, and temperature characteristics. The output PIN photodiode produces an output signal (IP2) that is linearly related to the servo optical flux created by the LED. The time and temperature stability of the input-output coupler gain (K3) is insured by using matched PIN photodiodes that accurately track the output flux of the LED.

 

Absolute Maximum Ratings

Tamb = 25 °C, unless otherwise specified Stresses in excess of the absolute Maximum Ratings can cause permanent damage to the device. Functional operation of the device is not implied at these or any other conditions in excess of those given in the operational sections of this document. Exposure to absolute Maximum Rating for extended periods of the time can adversely affect reliability.

 

Input
Parameter Test condition Symbol Value Unit
Power dissipation   Pdiss 160 mW
Derate linearly from 25 °C     2.13 mW/°C
Forward current   IF 60 mA
Surge current (pulse width < 10 µs)   IPK 250 mA
Reverse voltage   VR 5.0 V
Thermal resistance   Rth 470 K/W
Junction temperature   Tj 100 °C
Output
Power dissipation   Pdiss 50 mA
Derate linearly from 25 °C     0.65 mW/°C
Reverse voltage   VR 50 V
Junction temperature   Tj 100 °C
Thermal resistance   Rth 1500 K/W
Coupler
Total package dissipation at 25 °C   Ptot 210 mW
Derate linearly from 25 °C     2.8 mW/°C
Storage temperature   Tstg - 55 to + 150 °C
Operating temperature   Tamb - 55 to + 100 °C
Isolation test voltage     > 5300 VRMS
Isolation resistance VIO = 500 V, Tamb = 25 °C RIO > 1012
VIO = 500 V, Tamb = 100 °C RIO > 1011

 

 

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