Technical Documents
Specifications
Brand
MelexisProduct Type
Hall Effect Sensor
Sensor Type
Hall Effect Sensors
Number of Axis
1
Technology
Hall Effect
Mount Type
Through Hole
Magnetic Type
Unipolar
Minimum Supply Voltage
3.5V
Package Type
UA
Maximum Supply Voltage
24V
Minimum Operating Temperature
-40°C
Pin Count
3
Maximum Operating Temperature
150°C
Standards/Approvals
RoHS, EN 60749-20
Series
MLX90217
Supply Current
3mA
Automotive Standard
No
Country of Origin
Taiwan, Province Of China
Product Details
The Melexis hall effect gear tooth sensor is a self adjusting digital output rotary position gear tooth sensor designed for use in automotive camshaft sensing as well as other speed sensing applications. It is designed to be used with a bias magnet south facing the back side of the IC. The device has an open collector output which is short circuit protected.
Stock information temporarily unavailable.
€ 1,950.00
€ 1.95 Each (In a Bag of 1000) (Exc. Vat)
€ 2,359.50
€ 2.36 Each (In a Bag of 1000) (inc. VAT)
1000

€ 1,950.00
€ 1.95 Each (In a Bag of 1000) (Exc. Vat)
€ 2,359.50
€ 2.36 Each (In a Bag of 1000) (inc. VAT)
Stock information temporarily unavailable.
1000

Technical Documents
Specifications
Brand
MelexisProduct Type
Hall Effect Sensor
Sensor Type
Hall Effect Sensors
Number of Axis
1
Technology
Hall Effect
Mount Type
Through Hole
Magnetic Type
Unipolar
Minimum Supply Voltage
3.5V
Package Type
UA
Maximum Supply Voltage
24V
Minimum Operating Temperature
-40°C
Pin Count
3
Maximum Operating Temperature
150°C
Standards/Approvals
RoHS, EN 60749-20
Series
MLX90217
Supply Current
3mA
Automotive Standard
No
Country of Origin
Taiwan, Province Of China
Product Details
The Melexis hall effect gear tooth sensor is a self adjusting digital output rotary position gear tooth sensor designed for use in automotive camshaft sensing as well as other speed sensing applications. It is designed to be used with a bias magnet south facing the back side of the IC. The device has an open collector output which is short circuit protected.