optocoupler TOSHIBA TLP358HF featuring 5 milliamp threshold input current for precise gate drive control

Key Attributes
Model Number: TLP358H(F)
Product Custom Attributes
Mfr. Part #:
TLP358H(F)
Package:
DIP-8
Product Description

TLP358HF Photocoupler

The TLP358HF is a photocoupler in a DIP8 package featuring a GaAAs infrared LED optically coupled to an integrated high-gain, high-speed photodetector IC chip. It includes an internal Faraday shield for guaranteed common-mode transient immunity of 20 kV/s, making it ideal for IGBT and power MOSFET gate drive applications. The TLP358HF satisfies 8 mm PC board spacing requirements.

Applications

  • Transistor Inverters
  • MOSFET Gate Drivers
  • IGBT Gate Drivers
  • Induction Cooktop and Home Appliances

Features

  • Buffer logic type (totem pole output)
  • Output peak current: 6.0 A (max)
  • Operating temperature: -40 to 125
  • Supply current: 2 mA (max)
  • Supply voltage: 15 to 30 V
  • Threshold input current: 5 mA (max)
  • Propagation delay time: tpHL/tpLH = 500 ns (max)
  • Common-mode transient immunity: 20 kV/s (min)
  • Isolation voltage: 3750 Vrms (min)

Certifications

  • UL-approved: UL1577 File No.E67349
  • cUL-approved: CSA Component Acceptance Service No.5A, File No.E67349
  • VDE-approved: Option (D4) EN60747-5-5

Technical Specifications

Characteristic Symbol Test Condition Min Typ. Max Unit
Absolute Maximum Ratings
Input forward current IF (Note 1) 20 mA
Peak transient input forward current IFPT (Note 2) 1 A
Input reverse voltage VR 5 V
Input power dissipation PD (Note 3) 40 mW
Peak high-level output current IOPH -6.0 A
Peak low-level output current IOPL +6.0 A
Supply voltage VCC 35 V
Output power dissipation PO (Note 4) 650 mW
Operating temperature Topr -40 125
Storage temperature Tstg -55 150
Lead soldering temperature Tsol (10 s) 260
Isolation voltage BVS AC, 60 s, R.H. 60 %, Ta = 25 3750 Vrms
Recommended Operating Conditions
Input on-state current IF(ON) 6.5 15 mA
Input off-state voltage VF(OFF) 0 0.8 V
Supply voltage VCC 15 30 V
Peak high-level output current IOPH (Note 3) -5.5 A
Peak low-level output current IOPL (Note 3) +5.5 A
Operating frequency f (Note 3) 50 kHz
Electrical Characteristics
Input forward voltage VF IF = 10 mA, Ta = 25 1.45 1.57 1.75 V
Input forward voltage temperature coefficient VF/Ta IF = 10 mA -2.0 mV/
Input reverse current IR VR = 5 V, Ta = 25 10 A
Input capacitance Ct V = 0 V, f = 1 MHz, Ta = 25 100 pF
Peak high-level output current IOPH IF = 5 mA, VCC = 30 V, V8-7 = -3.5 V -5.0 A
Peak low-level output current IOPL IF = 5 mA, VCC = 15 V, V8-7 = -5.5 V 5.0 A
High-level output voltage VOH IF = 0 mA, VCC = 30 V, V7-5 = 2.5 V 13.7 V
Low-level output voltage VOL IF = 0 mA, VCC = 15 V, V7-5 = 5.5 V -14.9 V
High-level supply current ICCH IF = 5 mA, RL = 100 , VCC1 = 15 V, VEE1 = -15 V 1.3 2.0 mA
Low-level supply current ICCL VF = 0.8 V, RL = 100 , VCC1 = 15 V, VEE1 = -15 V 1.3 2.0 mA
Threshold input current (L/H) IFLH IF = 5 mA, VCC = 30 V, VO = Open 1.8 5 mA
Threshold input voltage (H/L) VFHL IF = 0 mA, VCC = 30 V, VO = Open 5 V
Supply voltage UVLO threshold voltage VCC VUVLO+ 12.5 V
Supply voltage UVLO hysteresis VUVLOHYS 1.5 V
Isolation Characteristics
Total capacitance (input to output) CS VS = 0 V, f = 1 MHz 1.0 pF
Isolation resistance RS VS = 500 V, R.H. 60 % 11012 1014
Isolation voltage BVS AC, 60 s 3750 Vrms
Switching Characteristics
Propagation delay time (L/H) tpLH IF = 0 5 mA, VCC = 30 V, Rg = 10 , Cg = 10 nF 50 230 500 ns
Propagation delay time (H/L) tpHL IF = 5 0 mA, VCC = 30 V, Rg = 10 , Cg = 10 nF 50 230 ns
Pulse width distortion |tpHL-tpLH| IF = 0 5 mA, VCC = 30 V, Rg = 10 , Cg = 10 nF 50 ns
Rise time tr IF = 0 5 mA, VCC = 30 V, Rg = 10 , Cg = 10 nF 17 ns
Fall time tf IF = 5 0 mA, VCC = 30 V, Rg = 10 , Cg = 10 nF 17 ns
Common-mode transient immunity at output high CMH VCM = 1000 Vp-p, IF = 5 mA, VCC = 30 V, Ta = 25 , VO(min) = 26 V 20 25 kV/s
Common-mode transient immunity at output low CML VCM = 1000 Vp-p, IF = 0 mA, VCC = 30 V, Ta = 25 , VO(max) = 1 V 20 25 kV/s

2412061726_TOSHIBA-TLP358H-F_C20247643.pdf

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