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Toshiba Photocoupler GaAℓAs LED & Photo-Ic TLP116 Owner's Manual & User Guide

Summary

The TLP116 is an advanced optocoupler containing a GaAlAs LED and a high-speed photodetector, designed for reliable electrical signal isolation in various electronic applications. This technical manual provides comprehensive details for engineers and designers, covering absolute maximum ratings, recommended operating conditions, and detailed electrical characteristics. It ensures proper integration into systems ranging from factory automation (FA) to general computing equipment by specifying performance aspects like logic levels, switching speeds (up to 20MBd), and robust isolation voltages.

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TLP116

TOSHIBA PHOTOCOUPLER Ga AℓAs LED & PHOTO-IC

TLP116

PDP(Plasma Display Panel) Unit in mm High Speed Interface FA(Factory Automation)

The Toshiba TLP116 consists of a Ga AℓAs light-emitting diode and an integrated high-gain, high-speed photodetector.

Inverter logic (totempole output)

Package type : MFSOP6

Guaranteed performance over temperature : -40~100°C

Power supply voltage : 4.5~5.5V Input thresholds current : IFHL=5m A(Max.)

Propagation delay time (tp HL/tp LH) : 60ns(Max.)

Switching speed : 20MBd(TYP.) TOSHIBA 11-4C2

Common mode transient immunity : 10k V/us

Weight: 0.09 g(Typ.)

Isolation voltage : 3750Vrms

UL Recognized : UL1577,File No.E67349

Truth Table Pin Configuration (Top View) Input LED Tr1 Tr2 Output

H ON OFF ON L 6 VCC 1:ANODE

L OFF ON OFF H 3:CATHODE

4:GND 5:VO

6:VCC

SHIELD

Schematic

3- Tr2

GND 4SHIELD

0.1u F bypass capacitor must be connected between pins 6 and 4

Page Summary Contents For Toshiba Photocoupler GaAℓAs LED & Photo-Ic TLP116 Owner's Manual & User Guide

Page 1 TLP116 TOSHIBA PHOTOCOUPLER Ga AℓAs LED & PHOTO-IC TLP116 PDP(Plasma Display Panel) Unit in mm High Speed Interface FA(Factory Automation) The Toshiba TLP116 consists of a Ga AℓAs light-emitting d...
Page 2 TLP116 Absolute Maximum Ratings (Ta=25°C) TE TO Characteristic Symbol Rating Unit Forward current IF 20 m A Forward current derating (Ta≥85°C) ΔIF/ΔTa -0.5 m A/°C Peak transient forward current (Note1...
Page 3 TLP116 Electrical Characteristics (Unless otherwise specified, Ta=-40 to 100°C,VCC=4.5~5.5V ) Characteristic Symbol Circuit Conditions Min. Typ. Max. Unit Input forward voltage VF — IF=10m A ,Ta=25°C ...
Page 4 TLP116 Switching Characteristics (Unless otherwise specified, Ta=-40 to 100°C,VCC=4.5~5.5V) Characteristic Symbol Circuit Conditions Min. Typ. Max. Unit Propagation delay time tp HL IF=0→12m A — — 60 ...
Page 5 TLP116 TEST CIRCUIT 5 : tp HL , tp LH IF=12m A(P.G) (f=5MHz , duty=50%) INPUT Vo tf tr MONITORING MONITORING NODE NODE VCC VOH GND CL=15p F SHIELD CL=15p F RIN=100Ω 1.5V tp HL tp LH CL is capacitance ...
Page 6 TLP116 Lo gi lo up pl cu rr en Lo gi Lo ut pu t V ol ta ge (V rw rd rr (m ∆VF/∆Ta- IF Forward Cur ren IF (m A) Vo tage VF(V) Forward VOL-Ta VOH-Ta Lo gi ig up pl ur re nt (m Lo gi ig ut pu t V ol ta g...
Page 7 TLP116 itc hi ng im is pe rs io ro pa ga tio de la tim LH , t ns ro pa ga tio de la tim LH , t ns be tw ee nd FF (n s) p HL tp LH-Ta t p HL tp LH-Ta tp HL tp HL tp LH tp LH Test Circuit 5 Test Circuit...
Page 8 TLP116 RESTRICTIONS ON PRODUCT USE 20070701-EN • The information contained herein is subject to change without notice. • TOSHIBA is continually working to improve the quality and reliability of its pr...

Manual Details

Brand Toshiba
Pages 8
File Size 288.53 KB
Published June 05, 2026
27 views

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Frequently Asked Questions

What is the required supply voltage for stable detector operation?

The detector requires a power supply voltage (VCC) between 4.5V and 5.5V for stable output.

What is the typical maximum signal switching speed?

The specified switching speed is typically rated at 20MBd.

Are there special handling warnings for this product?

Since it uses GaAs, ensure you do not break, cut, crush, or dissolve the component chemically, as dust/vapor is harmful.

What must be considered when designing a system using this device?

Always review the Toshiba Handbook and individual reliability data to determine appropriate design derating methods for extended use.