Part | RoHS | Manufacturer | Sensors or Transducers Type | Mounting Feature | No. of Terminals | Output Type | Package Shape or Style | Output Range | Package Body Material | Minimum Range Of Magnetic Field | Maximum Supply Voltage | Maximum Output Current | Technology | Screening Level | Input Mode | Maximum Magnetic Field Range | Hysteresis | Body Length/Diameter | Body Width | Power Supplies (V) | Output Circuit Type | Resistance | Package Equivalence Code | No. of Axes | Sub-Category | Linearity (%) | Body Height | Minimum Supply Voltage | Maximum Operating Temperature | Response Time | Minimum Operating Temperature | Sensitivity (mV/G) | Terminal Finish | Termination Type | Output Interface Type | Output (V) | Maximum Operating Current | Output Polarity | Additional Features | Maximum Measurement Range (mm) | Housing | JESD-609 Code | Operating Frequency | Minimum Measurement Range (mm) |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Allegro MicroSystems |
MAGNETIC FIELD SENSOR,HALL EFFECT |
THROUGH HOLE MOUNT |
3 |
DIGITAL VOLTAGE |
RECTANGULAR |
0.20-4.80V |
PLASTIC/EPOXY |
BIPOLAR |
35 mT |
4.1 mm |
1.52 inch |
5 |
SINGLE-ENDED |
2.5 ohm |
SIP3,.03,50 |
Other Sensors |
100 |
3.03 mm |
85 Cel |
-40 Cel |
2.5 mV/G |
Tin/Lead (Sn/Pb) |
SOLDER |
SINGLE-ENDED |
10 mA |
RATIOMETRIC OUTPUT, RAIL-TO-RAIL OUTPUT |
PLASTIC |
e0 |
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|
Littelfuse |
MAGNETIC FIELD SENSOR,HALL EFFECT |
FLANGE MOUNT |
ANALOG VOLTAGE |
RECTANGULAR |
0.20-4.80V |
5.5 V |
1 A |
5 |
Other Sensors/Transducers |
4.5 V |
100 Cel |
-40 Cel |
CABLE |
10 mA |
OVER VOLTAGE PROTECTION, REVERSE VOLTAGE PROTECTION |
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|
Littelfuse |
MAGNETIC FIELD SENSOR,HALL EFFECT |
FLANGE MOUNT |
ANALOG VOLTAGE |
RECTANGULAR |
0.20-4.80V |
5.5 V |
1 A |
5 |
Other Sensors/Transducers |
4.5 V |
100 Cel |
-40 Cel |
CABLE |
10 mA |
OVER VOLTAGE PROTECTION, REVERSE VOLTAGE PROTECTION |
Magnetic field sensors are electronic devices that measure the strength and direction of magnetic fields and convert them into a measurable electrical signal. They are commonly used in a variety of applications, such as navigation, automotive, industrial, and medical.
Magnetic field sensors work by detecting the change in magnetic field strength or direction as a magnetic field interacts with a sensing element. The sensing element is typically a small piece of magnetic material, such as a magnetoresistive or Hall-effect sensor, which generates a measurable electrical signal proportional to the strength and direction of the magnetic field.
There are several types of magnetic field sensors, including Hall-effect sensors, magnetoresistive sensors, and fluxgate sensors. Hall-effect sensors work by measuring the change in voltage across a thin strip of semiconductor material as it is exposed to a magnetic field. Magnetoresistive sensors work by measuring the change in resistance of a thin film of magnetic material as it is exposed to a magnetic field. Fluxgate sensors work by using a coil to detect the magnetic field and a feedback circuit to measure the strength and direction of the field.