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TLP560J

Toshiba Semiconductor

Photocoupler - Toshiba Semiconductor


TLP560J
TLP560J

PDF File TLP560J PDF File



Description
TOSHIBA Photocoupler IRED & Photo-Triac TLP560J Triac Driver Programmable Controllers AC-Output Module Solid State Relay TLP560J Unit: mm The TOSHIBA TLP560J consists of a photo-triac optically coupled to an infrared emitting diode in a six lead plastic DIP package.
• Peak off-state voltage: 600 V (min) • On-state current: 100 mA (max) • Isolation voltage: 2500 Vrms (min) • UL-recognized: UL 1577, File No.
E67349 • cUL-recognized: CSA Component Acceptance Service No.
5A File No.
E67349 • VDE-approved: EN 60747-5-5 (Note 1) Note 1: When a VDE approved type is needed, please designate the Option(D4).
Classification (Note 2) (IFT7) Standard Trigger LED Current (mA) VT=6V, Ta=25°C Min Max ― 7 ― 10 Marking of Classification T7 T7, blank TOSHIBA 11-7A9S Weight: 0.
39 g (typ.
) Note 2: Ex.
(IFT7); TLP560J(IFT7) Note: Application type name for certification test, please use standard product type name, i.
e.
TLP560J(IFT7): TLP560J Note: According to VDE0110, table 4.
Pin Configuration (top view) 1 6 2 3 4 1: Anode 2: Cathode 3: N.
C.
4: Triac Terminal 6: Triac Terminal © 2019 1 Toshiba Electronic Devices & Storage Corporation Start of commercial production 1986-05 2019-06-24 Absolute Maximum Ratings (Ta = 25°C) TLP560J Characteristic Symbol Rating Unit Forward current Forward current derating (Ta ≥ 53°C) Peak forward current (100μs pulse, 100pps) LE D Reverse voltage Diode power dissipation Diode power dissipation derating (Ta ≥ 53°C) Junction temperature Off-state output terminal voltage On−state RMS current Ta=25°C Ta=70°C On-state current derating(Ta ≥ 25°C) Detector Peak on-state current (100μs pulse, 120pps) Peak non-repetitive surge current (Pw=10ms) Output power dissipation Output power dissipation derating (Ta ≥ 25°C) Junction temperature Storage temperature range Operating temperature range Lead soldering temperature (10 s) Isolation voltage (AC, 60 s, R.
H.
≤ 60 %) IF ΔIF / °C IFP VR PD △PD /°C Tj VDRM IT(RMS) ΔIT / °...



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