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TLP592A

Toshiba Semiconductor
Part Number TLP592A
Manufacturer Toshiba Semiconductor
Description Photocoupler Photorelay
Published Sep 28, 2005
Detailed Description TOSHIBA Photocoupler Photorelay TLP592A Telecommunications Measurement and Control Equipment Data Acquisition System Mea...
Datasheet PDF File TLP592A PDF File

TLP592A
TLP592A


Overview
TOSHIBA Photocoupler Photorelay TLP592A Telecommunications Measurement and Control Equipment Data Acquisition System Measurement Equipment TLP592A Unit: mm The Toshiba TLP592A consists of an infrared emitting diode optically coupled to a photo-MOSFET in a 6-pin DIP package.
This photorelay has higher output current rating than phototransistor-type photocoupler; hence, it is suitable for use as On/Off control for high current.
• Normally open (1-form-A) device • Peak off-state voltage: 60 V (min) • Trigger LED current: 3 mA (max) • On-state current: 500 mA (max) • On-state resistance: 2 Ω (max) • Isolation voltage: 2500 Vrms (min) • UL-recognized: UL 1557, File No.
E67349 Pin Configuration (top view) 1 6 1: Anode 2 5 2: Cathode 4: Drain D1 5: Source 3 4 6: Drain D2 JEDEC ― JEITA ― TOSHIBA 11-7A8S Weight: 0.
4 g (typ.
) Schematic 1 6 2 5 4 © 2019 1 Toshiba Electronic Devices & Storage Corporation Start of commercial production 2002-03 2019-06-24 Absolute Maximum Ratings (Ta = 25°C) TLP592A Characteristics Symbol Rating Unit Forward current Forward current derating (Ta ≥ 25°C) LED Peak forward current (100 µs pulse, 100 pps) Reverse voltage Junction temperature Off-state output terminal voltage On-state current Detector A connection B connection C connection Forward A connection current derating B connection (Ta ≥ 25°C) C connection Junction temperature Storage temperature Operating temperature Lead soldering temperature (10 s) Isolation voltage (AC, 60 s, R.
H.
≤ 60 %) (Note 1) IF ∆IF/°C IFP VR Tj VOFF ION ∆ION/°C Tj Tstg Topr Tsol BVS 50 −0.
5 1 5 125 60 500 500 1000 −5.
0 −5.
0 −10.
0 125 −55 to 125 −40 to 85 260 2500 mA mA/°C A V °C V mA mA/°C °C °C °C °C Vrms Note: Using continuously under heavy loads (e.
g.
the application of high temperature/current/voltage and the significant change in temperature, etc.
) may cause this product to decrease in the reliability significantly even if the operating conditions (i.
e.
ope...



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