ACS110-7SN STMicroelectronics, ACS110-7SN Datasheet - Page 4

IC AC LINE SWITCH SOT-223

ACS110-7SN

Manufacturer Part Number
ACS110-7SN
Description
IC AC LINE SWITCH SOT-223
Manufacturer
STMicroelectronics
Series
ASD™r
Datasheet

Specifications of ACS110-7SN

Triac Type
Logic - Sensitive Gate
Mounting Type
Surface Mount
Configuration
Single
Current - Hold (ih) (max)
45mA
Voltage - Off State
700V
Current - Gate Trigger (igt) (max)
10mA
Current - Non Rep. Surge 50, 60hz (itsm)
8A, 11A
Current - On State (it (rms)) (max)
1A
Voltage - Gate Trigger (vgt) (max)
1V
Package / Case
TO-261-4, TO-261AA
Current - On State (it (rms) (max)
1A
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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ACS110-7SN/SB2
4/10
AC LINE SWITCH BASIC APPLICATION
The ACS110 device is well adapted to Washing machine, dishwasher, tumble drier, refrigerator, water
heaters,air-conditioning systems, microwave ovens and other cookware. It has been designed especially
to switch on & off low power loads such as solenoid, valve, relay, dispenser, micro-motor, pump, fan and
defrost heaters.
Pin COM: Common drive reference to connect to the power line neutral
Pin G: Switch Gate input to connect to the digital controller
Pin OUT: Switch Output to connect to the load
This ACS™ switch is triggered with a negative gate current flowing out of the gate pin G. It can be driven di-
rectly by the digital controller through a resistor as shown on the typical application diagram.
Several ACS110 devices can be connected on the same cooling PCB pad, which is the COM pin.
Thanks to its thermal and turn off commutation performances, the ACS110 switch is able to drive with no
turn off additional snubber an inductive load up to 1 A.
TYPICAL APPLICATION DIAGRAM
HIGH INDUCTIVE SWITCH-OFF OPERATION
At the end of the last conduction half-cycle, the load current reaches the holding current level I
ACS™ switch turns off. Because of the inductance L of the load, the current flows then through the ava-
lanche diode D and decreases linearly to zero. During this time, the voltage across the switch is limited to
the clamping voltage V
The energy stored in the inductance of the load depends on the holding current I
to 10 H); it can reach about 10 mJ and is dissipated in the clamping diode section. The ACS switch sustains
the turn off energy because its clamping section is designed for that purpose.
CL
.
MAINS
L
AC
N
- Vcc
COM
D
S
OUT
ON
LOAD
R
L
ACS110
G
ST72 MCU
M
H
and the inductance (up
H
, and the

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