PXLS60333AESR2 Allicdata Electronics
Allicdata Part #:

PXLS60333AESR2-ND

Manufacturer Part#:

PXLS60333AESR2

Price: $ 8.58
Product Category:

Sensors, Transducers

Manufacturer: NXP USA Inc
Short Description: XTRINSIC 2 AXIS HIGH/HIGH XY ACC
More Detail: Accelerometer Axis
DataSheet: PXLS60333AESR2 datasheetPXLS60333AESR2 Datasheet/PDF
Quantity: 1000
1 +: $ 7.79310
Stock 1000Can Ship Immediately
$ 8.58
Specifications
Series: --
Part Status: Active
Description

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Motion sensors are becoming increasingly important for a variety of applications, such as automotive, medical, consumer electronics and robotics, among many others. Accelerometers are a type of motion sensor that measures the acceleration along one or more axes. They are commonly used for monitoring vibration, shock and tilt angles. The PXLS60333AESR2 is an axial accelerometer designed for automotive safety systems, such as airbag control systems and pre-collision systems. In this article, we will discuss the application field and working principle of the PXLS60333AESR2.

The PXLS60333AESR2 is a single-axis accelerometer designed for medium- and high-precision automotive applications. It is capable of measuring acceleration up to ±8 g, with an excellent non-linearity performance of 0.3 % FS. The accelerometer has a wide operating temperature range of -40 °C to 125 °C, and its low power consumption makes it suitable for battery-powered applications. In addition, the device is also equipped with multiple selectable output ranges and full-scale ranges.

The PXLS60333AESR2 is typically used in airbag systems and pre-collision systems, for measuring the wearer\'s deceleration during an accident. This is possible due to the accelerometer\'s high precision and accuracy, as well as its ability to measure acceleration from two axes. In addition to airbags, the accelerometer can also be used in other automotive system applications, such as electronic stability control (ESC).

The working principle of an accelerometer is based on Newton\'s Second Law of Motion, which states that every action has an equal and opposite reaction. An accelerometer consists of two components: the seismic mass and the fixed capacitive plates. When the accelerometer is exposed to acceleration, the mass moves relative to the fixed plates. This results in a change in the output capacitance, which is proportional to the acceleration.

The PXLS60333AESR2, like other accelerometers, consists of a seismic mass, a proof mass suspension system, an integrally-mounted piezo-resistive strain gage, and a signal conditioning circuit. The piezo-resistive strain gage is a sensitive transducer that is mounted on the seismic mass, along with the proof mass. As the mass is exposed to an acceleration, the strain gage measures the resulting strain, which is converted into a corresponding capacitance change. This capacitance change is then converted into an electrical signal, which is amplified and conditioned by the signal conditioning circuit.

In summary, the PXLS60333AESR2 is a single-axis accelerometer designed for medium- and high-precision automotive applications. It is used primarily in airbag systems and pre-collision systems, and it is capable of measuring acceleration up to ±8 g, with an excellent non-linearity performance of 0.3 % FS. The working principle of the accelerometer is based on Newton\'s Second Law of Motion, and it consists of two components: a seismic mass and fixed capacitive plates. When the accelerometer is exposed to an acceleration, the seismic mass moves relative to the fixed plates, which results in a change in the output capacitance, proportional to the acceleration.

The specific data is subject to PDF, and the above content is for reference

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