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Lonten Tech
Custom 10pcs 49E Sensor S49E Hall Element SS49E High Sensitivity Linear Hall OH49E Electric Car Turn
Custom 10pcs 49E Sensor S49E Hall Element SS49E High Sensitivity Linear Hall OH49E Electric Car Turn
Regular price
$1.11 USD
Regular price
$2.00 USD
Sale price
$1.11 USD
Unit price
/
per
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- Product introduction -
The 0H49E is a small, versatile linear hall,
The input is the magnetic induction intensity, and the output is the voltage proportional to the input. The integrated circuit has a low noise output, which makes it unnecessary to use external filtering. It also includes precision resistors to provide more temperature stability and accuracy.
- Product parameters -
argument
Symbol type and quantity value
Unit maximum working voltage Vcc 9V
Operating temperature TA-40 ^ 85°C
Storage temperature TS-65 ~ 150
°C
Dimensions ↓↓↓
● Magnetic reader
● Current detection
● Motor control
● Location detection
● Liquid level sensing
● Weight sensing
● Vibration sensor
● Black metal detector
● Electric bicycle governor
● Other magnetic field detection applications
The 0H49E is a small, versatile linear hall,
The input is the magnetic induction intensity, and the output is the voltage proportional to the input. The integrated circuit has a low noise output, which makes it unnecessary to use external filtering. It also includes precision resistors to provide more temperature stability and accuracy.
- Product parameters -
argument
Symbol type and quantity value
Unit maximum working voltage Vcc 9V
Operating temperature TA-40 ^ 85°C
Storage temperature TS-65 ~ 150
°C
Dimensions ↓↓↓
Product application.
● Magnetic reader
● Current detection
● Motor control
● Location detection
● Liquid level sensing
● Weight sensing
● Vibration sensor
● Black metal detector
● Electric bicycle governor
● Other magnetic field detection applications
- Product Description
1, installation to minimize the mechanical stress applied to the circuit shell or lead
2, the welding temperature should be lower than 260°C, the time is less than 5 seconds.
3. If the N pole approaches the Hall circuit from the back, the output voltage decreases, and the S pole approaches from the back, the output increases; If approached from the front, the output state is the opposite of approaching from the back.
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