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TLP2066

Toshiba Semiconductor
Part Number TLP2066
Manufacturer Toshiba Semiconductor
Description Photocoupler
Published Mar 16, 2010
Detailed Description TLP2066 TOSHIBA PHOTOCOUPLER GaAℓAs IRED & PHOTO-IC www.DataSheet4U.com Preliminary FA (Factory Automation) High Speed ...
Datasheet PDF File TLP2066 PDF File

TLP2066
TLP2066


Overview
TLP2066 TOSHIBA PHOTOCOUPLER GaAℓAs IRED & PHOTO-IC www.
DataSheet4U.
com Preliminary FA (Factory Automation) High Speed Interface 3.
3V Supply Voltage TLP2066 Unit in mm The Toshiba TLP2066 consists of a GaAℓAs light-emitting diode and an integrated high-gain, high-speed photodetector.
TLP2066 operates with 3.
3 V supply voltage.
Toshiba provides the TLP116 for supply voltage 5V type.
z z z z z z z z z z Inverter logic (totempole output) Package type : MFSOP6 Guaranteed performance over temperature : -40~100°C Power supply voltage : 3.
0~3.
6V Input thresholds current: IFHL=5mA (Max.
) Propagation delay time (tpHL/tpLH): 60ns (Max.
) Switching speed : 20MBd(TYP.
)(NRZ) Common mode transient immunity : 15kV/us Isolation voltage : 3750Vrms UL recognition: UL1577 under application TOSHIBA Weight: 0.
09 g(Typ.
) 11-4C2 Pin Configuration (Top View) 1 VCC 6 5 1: ANODE 3: CATHODE 4: GND 5: VO 6: VCC Truth Table Input H L LED ON OFF Tr1 OFF ON Tr2 ON OFF Output L H 3 GND SHIELD 4 Schematic ICC 6 Tr1 IO Tr2 VO 5 VCC IF 1+ VF 3- SHIELD 4 GND 0.
1uF bypass capacitor must be connected between pins 6 and 4 1 2007-11-20 TLP2066 Absolute Maximum Ratings (Ta=25°C) Characteristic Forward current LED Forward current derating (Ta≥85°C) (Note1) Symbol IF ΔIF/ΔTa IFPT VR IO VO VCC PO Topr Tstg Tsol (Note2) BVs Rating 25 -0.
7 1 6 10 6 6 40 -40~100 -55~125 260 3750 Unit mA mA/°C A V mA V V mW °C °C °C Vrms www.
DataSheet4U.
com Peak transient forward current Reverse voltage DETECTOR Output current Output voltage Supply voltage Output power dissipation Operating temperature range Storage temperature range Lead solder temperature(10s) Isolation voltage (AC,1min.
,R.
H.
≤60%,Ta=25°C) 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.
operating temperature/current/voltage, etc.
) are...



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