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SS39

SS39 Hall Effect Sensor

Product Overview

SS39 is a Hall effect sensor belonging to the category of magnetic field sensors. It is commonly used for detecting the presence of a magnetic field and converting it into an electrical signal. The sensor is known for its small size, low power consumption, and high sensitivity. It is typically packaged in a small, durable housing and is available in various packaging options such as surface mount or through-hole. The sensor is often used in applications requiring precise and reliable detection of magnetic fields.

Characteristics

  • Small size
  • Low power consumption
  • High sensitivity
  • Durable packaging
  • Available in various package types and quantities

Specifications

  • Operating Voltage: 2.4V to 3.5V
  • Output Current: 8mA
  • Operating Temperature Range: -40°C to 125°C
  • Package Type: SOT-23

Detailed Pin Configuration

The SS39 Hall effect sensor typically has three pins: 1. VCC (Power supply) 2. GND (Ground) 3. OUT (Output signal)

Functional Features

  • Non-contact magnetic field detection
  • Digital output signal
  • Wide operating temperature range
  • Low voltage operation

Advantages

  • Small form factor
  • Low power consumption
  • High sensitivity
  • Reliable performance in harsh environments

Disadvantages

  • Limited operating temperature range
  • Susceptible to electromagnetic interference

Working Principles

The SS39 Hall effect sensor operates based on the Hall effect, which is the production of a voltage difference across an electrical conductor when a magnetic field is applied perpendicular to the current flow. When a magnetic field is detected, the sensor generates a digital output signal, making it suitable for various applications.

Detailed Application Field Plans

The SS39 Hall effect sensor finds applications in diverse fields, including: - Proximity sensing in consumer electronics - Speed and position sensing in automotive systems - Flow rate sensing in industrial equipment - Brushless DC motor control in robotics

Detailed and Complete Alternative Models

Some alternative models to the SS39 Hall effect sensor include: - A1324 from Allegro Microsystems - OH090U from TT Electronics - US5881 from Melexis

In conclusion, the SS39 Hall effect sensor offers a compact and efficient solution for magnetic field detection in various applications, despite its limitations in extreme temperature and susceptibility to electromagnetic interference.

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技術ソリューションにおける SS39 の適用に関連する 10 件の一般的な質問と回答をリストします。

  1. What is SS39?

    • SS39 is a type of Hall effect sensor that detects the presence of a magnetic field.
  2. How does SS39 work?

    • SS39 works by measuring the voltage generated across its output terminals in response to a magnetic field.
  3. What are the typical applications of SS39?

    • SS39 is commonly used in applications such as position sensing, speed detection, and current sensing in various technical solutions.
  4. What is the operating voltage range for SS39?

    • The operating voltage range for SS39 is typically between 4.5V and 24V.
  5. What is the output signal of SS39?

    • The output signal of SS39 is an analog voltage that varies with the strength of the magnetic field.
  6. What is the sensitivity of SS39?

    • The sensitivity of SS39 is typically specified in millivolts per gauss (mV/G).
  7. Can SS39 be used in harsh environments?

    • Yes, SS39 is often designed to withstand harsh environmental conditions, including temperature extremes and vibration.
  8. What is the temperature range for SS39?

    • The temperature range for SS39 is usually between -40°C to 125°C.
  9. How can SS39 be interfaced with microcontrollers or other digital systems?

    • SS39's output can be interfaced with microcontrollers or digital systems using analog-to-digital converters (ADCs) or signal conditioning circuits.
  10. Are there any precautions to consider when using SS39 in a technical solution?

    • It's important to avoid exposing SS39 to strong external magnetic fields and to ensure proper decoupling and filtering of its power supply to minimize noise interference.