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A3213ELHLT-T

产品描述IC switch hall effect sot23w
产品类别传感器   
文件大小328KB,共11页
制造商All Sensors
标准  
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A3213ELHLT-T概述

IC switch hall effect sot23w

A3213ELHLT-T规格参数

参数名称属性值
Datasheets
A3213-14
Product Photos
SOT-23-3
Product Training Modules
Current Sens
Standard Package3,000
CategorySensors, Transducers
FamilyMagnetic Sensors - Hall Effect, Digital Switch, Linear, Compass (ICs)
系列
Packaging
Tape & Reel (TR)
Sensing Range±70G Trip, ±10G Release
类型
Type
Omnipolar Switch
Voltage - Supply2.4 V ~ 5.5 V
Current - Supply2mA
Current - Output (Max)1mA
输出类型
Output Type
Digital, Open Collec
FeaturesUltra Sensitive
Operating Temperature-40°C ~ 85°C
封装 / 箱体
Package / Case
SOT-23W
Supplier Device PackageSOT-23W
Dynamic CatalogA321x
Other Names620-1041-2A3213ELHLTT

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A3213 and A3214
Micropower Ultra-Sensitive Hall-Effect Switches
Features and Benefits
Micropower operation
Operate with north or south pole
2.4 to 5.5 V battery operation
Chopper stabilized
Superior temperature stability
Extremely low switchpoint drift
Insensitive to physical stress
High ESD protection
Solid state reliability
Small size
Easily assembly into applications due to magnetic pole
independence
Description
The A3213 and A3214 integrated circuits are ultra-sensitive,
pole independent Hall-effect switches with a latched digital
output. They are especially suited for operation in battery-
operated, hand-held equipment such as cell and cordless
telephones and palmtop computers. A 2.4 to 5.5 V operation
and a unique clocking scheme reduce the average operating
power requirements: the A3213 to 825
μW,
the A3214 to 14
μW
(typical, at 2.75 V). Except for operating duty cycle and average
operating current, the A3213 and A3214 are identical.
Unlike other Hall-effect switches, either a north or south pole
of sufficient strength will turn the output on; in the absence of
a magnetic field, the output is off. The polarity independence
and minimal power requirement allows these devices to easily
replace reed switches for superior reliability and ease of
manufacturing, while eliminating the requirement for signal
conditioning.
Improved stability is made possible through chopper
stabilization (dynamic offset cancellation), which reduces the
residual offset voltage normally caused by device overmolding,
temperature dependencies, and thermal stress.
These devices include, on a single silicon chip, a Hall-voltage
Continued on the next page…
Packages
3 lead ultramini SIP
(suffix UA)
Not to scale
3 pin surface mount
SOT23-W (suffix LH)
Functional Block Diagram
SUPPLY
SWITCH
TIMING
LOGIC
DYNAMIC
OFFSET CANCELLATION
OUTPUT
SAMPLE
& HOLD
LATCH
X
GROUND
Dwg. FH-020-5
27622.62-DS Rev. Y

 
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