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TCA785P Integrated Circuit Chip new & original Phase Control IC

Anterwell Technology Ltd.
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Anterwell Technology Ltd.

TCA785P Integrated Circuit Chip new & original Phase Control IC

Country/Region china
City & Province shenzhen guangdong
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Product Details

 

Phase Control IC TCA 785

 

Features

● Reliable recognition of zero passage

● Large application scope

● May be used as zero point switch

● LSL compatible

● Three-phase operation possible (3 ICs)

● Output current 250 mA

● Large ramp current range

● Wide temperature range

 

This phase control IC is intended to control thyristors, triacs, and transistors. The trigger pulses can be shifted within a phase angle between 0 ˚ and 180 ˚. Typical applications include converter circuits, AC controllers and three-phase current controllers.

This IC replaces the previous types TCA 780 and TCA 780 D.

 

Absolute Maximum Ratings

ParameterSymbolLimit ValuesUnit
min.max.
Supply voltageVS– 0.518V
Output current at pin 14, 15IQ-10400mA

Inhibit voltage

Control voltage

Voltage short-pulse circuit

V6

V11

V13

– 0.5

– 0.5

– 0.5

VS

VS

VS

V

V

V

Synchronization input currentV5-200± 200µA
Output voltage at pin 14, 15VQ VSV
Output current at pin 2, 3, 4, 7IQ 10mA
Output voltage at pin 2, 3, 4, 7VQ VSV

Junction temperature

Storage temperature

Tj

Tstg

 

– 55

150

125

˚C

˚C

Thermal resistance

system - air

Rth SA 80K/W
Operating Range
Supply voltageVS818V
Operating frequencyf10500Hz
Ambient temperatureTA– 2585˚C

 

Functional Description

The synchronization signal is obtained via a high-ohmic resistance from the line voltage (voltage V5). A zero voltage detector evaluates the zero passages and transfers them to the synchronization register.

This synchronization register controls a ramp generator, the capacitor C10 of which is charged by a constant current (determined by R9). If the ramp voltage V10 exceeds the control voltage V11 (triggering angle ϕ), a signal is processed to the logic. Dependent on the magnitude of the control voltage V11, the triggering angle ϕ can be shifted within a phase angle of 0˚ to 180˚.

For every half wave, a positive pulse of approx. 30 µs duration appears at the outputs Q 1 and Q 2. The pulse duration can be prolonged up to 180˚ via a capacitor C12. If pin 12 is connected to ground, pulses with a duration between ϕ and 180˚ will result.

Outputs and supply the inverse signals of Q 1 and Q 2.

A signal of ϕ +180˚ which can be used for controlling an external logic,is available at pin 3.

A signal which corresponds to the NOR link of Q 1 and Q 2 is available at output Q Z (pin 7).

The inhibit input can be used to disable outputs Q1, Q2 and , .

Pin 13 can be used to extend the outputs and to full pulse length (180˚ – ϕ).

Block Diagram

 

Pulse Diagram

 

 

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