59150-1-T-02-A Allicdata Electronics
Allicdata Part #:

59150-1-T-02-A-ND

Manufacturer Part#:

59150-1-T-02-A

Price: $ 0.00
Product Category:

Sensors, Transducers

Manufacturer: Littelfuse Inc.
Short Description: SENSOR REED SW SPST-NO W LEADS
More Detail: Magnetic Reed Switch Magnet SPST-NO Wire Leads Fla...
DataSheet: 59150-1-T-02-A datasheet59150-1-T-02-A Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: 59150
Part Status: Active
Output Type: SPST-NO
Type: Reed Switch
Actuator Material: Magnet
Termination Style: Wire Leads
Voltage - Supply: --
Must Operate: 17 ~ 23AT
Must Release: --
Operating Temperature: -40°C ~ 105°C (TA)
Package / Case: Flange Mount
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Magnetic sensors are components that are used to detect and measure variations in the local magnetic field. The 591501T02A is a magnetic field sensor designed for sensing and measuring the field strength of target objects in the application fields of positioning, proximity, and speed measurement. This sensor utilizes a Hall effect-based, integrated, low-power analog output device. It is also a suitable choice for applications requiring a high degree of precision and accuracy.

The 591501T02A is designed so that it can accurately measure the strength of the magnetic field in a wide range of application fields and can be used to monitor and control the position, speed, and proximity of objects. It consists of two parts: a Hall-effect transducer and an integrated signal-processing circuitry. When the Hall-effect transducer is placed in a magnetic field, a charge is produced that is proportional to the strength of the magnetic field. The signal-processing circuitry of the 591501T02A is designed to process the output signal from the Hall-effect transducer and convert it into a proportional analog signal. The output signal of the sensor can then be used to control the position, speed, and/or proximity of the target object.

The 591501T02A is capable of sensing magnetic fields with a minimum adopted threshold up to 14 A/m with a resolution of 0.1 A/m and with a linearity of 0.3%. This makes the 591501T02A suitable for measuring a wide range of target objects in applications such as position sensors, proximity sensors, speed sensors, and other positioning and motion detection devices. The sensor also features a wide range of supply voltage inputs of between 2.7V and 10V, meaning that it is capable of withstanding strong magnetic fields and working in extreme environmental conditions and temperatures.

The 591501T02A is also designed to provide a high level of sensitivity and accuracy. It is capable of digitizing analog magnetic fields up to 150kHz with a linearity of 0.3%, meaning that it can accurately detect the strength of a magnetic field. Additionally, the sensor contains temperature compensation circuitry, which ensures that the output of the sensor remains constant regardless of any changes to the temperature. This makes the 591501T02A highly reliable and accurate for applications requiring precise measurements.

The 591501T02A is also a low-powered device that can be powered by either a 2.7V to 10V power source. Its low-power consumption ensures that it is suitable for both short-term and long-term usage in low-power applications. Furthermore, the 591501T02A also features a high level of electromagnetic immunity, meaning that it can accurately detect magnetic fields in high-EMI environments such as near motors and power supplies.

In conclusion, the 591501T02A is a high-precision, low-power magnetic field sensor that is well suited for a wide range of applications in fields of position, proximity, and speed measurement. It features a wide range of power inputs, high sensitivity, and good linearity and temperature compensation, making it a highly reliable and accurate sensor. Additionally, its low-power consumption also makes it suitable for short-term and long-term usage in low-power applications.

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

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