Technical Documents
Specifications
Brand
Allegro MicrosystemsSensor Type
Hall Effect Sensors
Product Type
Hall Effect Sensor
Technology
BiCMOS
Mount Type
Surface
Magnetic Type
Linear
Maximum Frequency Response
10kHz
Minimum Supply Voltage
2.5V
Maximum Supply Voltage
3.5V
Package Type
MLP
Sensitivity
10mV/g
Minimum Operating Temperature
-20°C
Maximum Operating Temperature
85°C
Pin Count
6
Standards/Approvals
RoHS, Pb (lead) Free
Width
3mm
Series
A139x
Height
670μm
Length
2mm
Automotive Standard
No
Response Time
40μs
Supply Current
3.2mA
Product Details
The A1391/2/3/5 family of linear Hall effect sensors provides a voltage output that is directly proportional to an applied magnetic field.
The A139x minimise current consumption to less than 25 μA through the addition of a user-selectable sleep mode, perfect for battery-operated applications. You can control the current consumption by applying a logic level signal to the SLEEP pin. The outputs of the devices are not valid (high-impedance mode) during sleep mode.
Stock information temporarily unavailable.
€ 4.42
€ 0.884 Each (In a Pack of 5) (ex VAT)
Standard
5
€ 4.42
€ 0.884 Each (In a Pack of 5) (ex VAT)
Stock information temporarily unavailable.
Standard
5
Technical Documents
Specifications
Brand
Allegro MicrosystemsSensor Type
Hall Effect Sensors
Product Type
Hall Effect Sensor
Technology
BiCMOS
Mount Type
Surface
Magnetic Type
Linear
Maximum Frequency Response
10kHz
Minimum Supply Voltage
2.5V
Maximum Supply Voltage
3.5V
Package Type
MLP
Sensitivity
10mV/g
Minimum Operating Temperature
-20°C
Maximum Operating Temperature
85°C
Pin Count
6
Standards/Approvals
RoHS, Pb (lead) Free
Width
3mm
Series
A139x
Height
670μm
Length
2mm
Automotive Standard
No
Response Time
40μs
Supply Current
3.2mA
Product Details
The A1391/2/3/5 family of linear Hall effect sensors provides a voltage output that is directly proportional to an applied magnetic field.
The A139x minimise current consumption to less than 25 μA through the addition of a user-selectable sleep mode, perfect for battery-operated applications. You can control the current consumption by applying a logic level signal to the SLEEP pin. The outputs of the devices are not valid (high-impedance mode) during sleep mode.