DHR 100 C10 Allicdata Electronics

DHR 100 C10 Sensors, Transducers

Allicdata Part #:

398-1086-ND

Manufacturer Part#:

DHR 100 C10

Price: $ 160.43
Product Category:

Sensors, Transducers

Manufacturer: LEM USA Inc.
Short Description: SENSOR CURRENT HALL 100A AC/DC
More Detail: Current Sensor 100A 1 Channel Hall Effect, Open Lo...
DataSheet: DHR 100 C10 datasheetDHR 100 C10 Datasheet/PDF
Quantity: 64
1 +: $ 145.83900
5 +: $ 136.72300
10 +: $ 132.16500
25 +: $ 127.60800
50 +: $ 125.32900
Stock 64Can Ship Immediately
$ 160.43
Specifications
Frequency: DC ~ 6kHz
Package / Case: Module
Mounting Type: Panel Mount
Polarization: Bidirectional
Operating Temperature: -40°C ~ 70°C
Current - Supply (Max): 30mA
Response Time: 150ms
Voltage - Supply: 20 V ~ 50 V
Accuracy: ±1%
Linearity: ±1%
Series: DHR
Sensitivity: --
Output: Ratiometric, 0 V ~ 10 V
Number of Channels: 1
Current - Sensing: 100A
Sensor Type: Hall Effect, Open Loop
For Measuring: AC/DC
Part Status: Active
Packaging: Bulk 
Description

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Current Transducers

A current transducer is an electronic device that is used to measure an electric current through a conductor. DHR 100 C10 transducers, in particular, are designed to measure DC currents up to 100 A and provide a direct current output signal proportional to the measured current. The transducers are also suitable for AC current measurement of 1 A to 100 A. This article will discuss the application fields and working principles of DHR 100 C10 current transducers.

Application Fields

DHR 100 C10 transducers have a wide variety of applications in various industries such as power engineering, metrology, and constant monitoring. In power engineering, the transducers are mainly used for measuring, measuring and monitoring currents and voltages of electrical energy sources. In metrology, the transducers can be used for precise measurements of the electrical current fed to devices such as motors and lights, where accuracy and repeatability are key requirements.

In constant monitoring, the transducers can be used to measure and detect currents or other electrical parameters. For example, they can be used to detect abnormal increases in current or voltage, which could indicate potential problems with the electrical system. Additionally, the transducers can be used for disturbance and overload detection, as well as for protection of the electrical system.

The transducers are also used in the automotive industry, for example to monitor the electrical current and voltage of a vehicle\'s battery and alternator. They are also used in many industrial processes such as those involving welding, electroplating, and smelting.

Working Principle

DHR 100 C10 transducers work on the principle of magnetic induction. The transducer consists of two components: a magnetic core and a coil. The coil is wound around the core, and when current passes through the coil, it generates a magnetic field. This magnetic field can be used to measure the current in the conductor.

The transducer measures the current in the conductor by inducing a voltage in the coil. The voltage is proportional to the current passing through the coil, and this voltage is then converted to a direct current (DC) output. This output can then be fed to an amplifier or a Digital Signal Processor (DSP) to be further processed or monitored. The output signal is also filtered to remove any residual noise that may have been generated by the coil and the core.

The main advantage of using DHR 100 C10 transducers is their accuracy and repeatability. Their output accuracy is typically within 2%. Additionally, the transducers are highly immune to interference due to their low electromagnetic interference (EMI) levels. They are also able to withstand temperatures up to 70 degrees Celsius without being damaged.

Overall, DHR 100 C10 current transducers are a reliable and accurate solution for high-precision current measurement. They have a wide range of applications in various industries and can be used to measure current up to 100 A. Additionally, their accuracy, repeatability, and EMI immunity make them a viable option for current measurement applications.

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

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