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Hall-Effect Latches And Bipolar Switch
Hall-Effect Latches And Bipolar Switch

Hall-Effect Latches And Bipolar Switch

MOQ : 100 Pieces

Hall-Effect Latches And Bipolar Switch Specification

  • Voltage
  • 3V to 24V DC
  • Poles Number
  • 2
  • Rated Frequency
  • -
  • Ambient Temperature
  • -40C to +150C
  • Noise Level
  • Low
  • Torque
  • -
  • Cooling Method
  • Air Cooled
  • Power Rating
  • -
  • Sealed Type
  • Encapsulated
  • Horse Power
  • -
  • Efficacy
  • High
  • Features
  • Reverse Polarity Protection, High Sensitivity, RoHS Compliant
  • Motor Type
  • -
  • Rated Voltage
  • 5V (typical)
  • Current Type
  • DC
  • Pressure
  • -
  • Bearing Type
  • -
  • Starting Type
  • Direct
  • Product Type
  • Hall-Effect Latch and Bipolar Switch
  • Output Power
  • -
  • Frequency (MHz)
  • -
  • Protect Feature
  • Over-current Protection
  • Phase
  • Single Phase
  • Speed
  • High Switching Speed
  • Power
  • Low Power Consumption
  • Color
  • Silver
  • Dimension (L*W*H)
  • 3 x 4 x 1 mm (typical)
  • Weight
  • Approx. 0.5 g
  • Warranty
  • Yes
  • Shaft Diameter
  • -
  • Mounting Type
  • Through Hole / SMD
  • IP Rating
  • IP40
  • Operating Life
  • Long Life - Solid State Reliability
  • Package Type
  • SOT-23, TO-92, SIP-3
  • Application
  • Position sensing, Brushless DC Motor Commutation, Speed Sensing, Current Sensing, Proximity Detection
  • Sensing Type
  • Magnetic Non-contact
  • Response Time
  • <1 µs
  • Output Type
  • Digital (Latch, Switch)
  • ESD Protection
  • >4 kV
 

Hall-Effect Latches And Bipolar Switch Trade Information

  • Minimum Order Quantity
  • 100 Pieces
  • Supply Ability
  • 10000 Pieces Per Month
  • Delivery Time
  • 7 Days
  • Main Export Market(s)
  • Asia, Australia, Central America, North America, South America, Eastern Europe, Western Europe, Middle East, Africa
 

About Hall-Effect Latches And Bipolar Switch

Technical details

Product Description


SDK Part No

ST8513U

Product Description

Hall effect sensor ST8513U for High temperature operation

Type

Unipolar Hall Efffect Latch

Feature

High output current capability -50 mA absolute maximum

Quad-Hall design virtually eliminates mechanical stress effects

Temperature compensated magnetic

Digital current sinking output

SIP-3 pin in-line PCB terminals

Typical Application

Speed and RPM (revolutions per minute) sensing

Motor and fan controlFlow-rate sensing

Brushless dc motor commutation

Auto-motive transmission position

Robotics controls

Absolute Maximum Ratings

Parameter

Minimum

Typical

Maximum

Supply voltage

-50

-

50

Applied output voltage

-0.5

-

28

Output current

-

-

50

magnetic

-

-

no limit





High-Speed Non-contact Sensing

Featuring magnetic non-contact sensing, these devices respond in under one microsecond, making them ideal for fast and accurate position sensing, brushless DC motor commutation, and speed monitoring. Their digital latch and switch outputs ensure reliable operation in critical environments requiring swift action.


Wide Application Versatility

These Hall-effect devices are engineered for a spectrum of usesposition detection, current and speed sensing, as well as proximity detection. Their robust design and extended operating temperature range (-40C to +150C) make them suitable for industrial, automotive, and consumer electronics applications.


Robust, Reliable, and Easy to Integrate

With solid-state reliability, over-current and reverse polarity protection, and high ESD resistance (>4 kV), these sensors are designed for long-term, maintenance-free operation. Their compact size, multiple package options, and encapsulation simplify integration into various mounting schemes.

FAQs of Hall-Effect Latches And Bipolar Switch:


Q: How does the Hall-Effect latch or bipolar switch detect magnetic fields non-contact?

A: These devices use magnetic non-contact sensing to respond to changes in the magnetic environment, enabling position or proximity detection without physical contact. This enhances reliability and minimizes wear.

Q: What applications are best suited for these Hall-Effect sensors?

A: They are ideal for position sensing, brushless DC motor commutation, speed and current monitoring, and proximity detection in automotive, industrial, and consumer electronic systems.

Q: When should I choose a digital (latch or switch) Hall-Effect sensor over analog?

A: Digital output sensors offer fast response and precise, noise-immune switching actions, making them preferable in applications requiring consistent logical signals and high-speed operation.

Q: Where can these Hall-Effect sensors be mounted?

A: The versatile package types (SOT-23, TO-92, SIP-3) allow for both surface-mount and through-hole configurations, facilitating easy integration onto PCBs or direct placement within assemblies across various environments.

Q: What is the process for integrating these sensors into an existing system?

A: Integration involves mounting the sensor on a PCB or chassis, supplying 324V DC, and aligning with the target magnetic source. Built-in features like reverse polarity protection and over-current safeguarding simplify implementation.

Q: How does solid-state reliability benefit users?

A: Solid-state construction eliminates moving parts, leading to minimal maintenance, extended lifespan, and consistent performance even under harsh conditions or frequent switching cycles.

Q: What advantage does high ESD protection offer in industrial settings?

A: With ESD protection above 4 kV, these sensors effectively resist electrostatic discharge, reducing the risk of damage in electrically noisy environments and ensuring dependable operation.

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