LESR 6-NP Allicdata Electronics
Allicdata Part #:

398-1197-ND

Manufacturer Part#:

LESR 6-NP

Price: $ 10.61
Product Category:

Sensors, Transducers

Manufacturer: LEM USA Inc.
Short Description: SENSOR CURRENT HALL 6A UNIPOLAR
More Detail: Current Sensor 6A 1 Channel Hall Effect, Closed Lo...
DataSheet: LESR 6-NP datasheetLESR 6-NP Datasheet/PDF
Quantity: 1000
1 +: $ 9.64530
5 +: $ 9.45000
10 +: $ 7.87500
25 +: $ 7.28434
50 +: $ 7.08750
100 +: $ 6.10313
500 +: $ 5.70937
1000 +: $ 5.41407
Stock 1000Can Ship Immediately
$ 10.61
Specifications
Linearity: ±0.1%
Package / Case: Module
Mounting Type: Through Hole
Polarization: Bidirectional
Operating Temperature: -40°C ~ 105°C (TA)
Current - Supply (Max): 23mA
Response Time: 400ns
Voltage - Supply: 4.75 V ~ 5.25 V
Accuracy: ±1.25%
Series: LESR
Frequency: 300kHz
Sensitivity: 104.2mV/A
Output: Ratiometric, Voltage
Number of Channels: 1
Current - Sensing: 6A
Sensor Type: Hall Effect, Closed Loop
For Measuring: AC/DC
Part Status: Active
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

Current transducers are a common type of instrument used in the measurement and control of electrical processes. They are designed to accurately measure the amount of current flowing through a given system or component in an efficient and accurate manner. This article provides an overview of the different types of current transducers and their associated working principles.

The first type of current transducer is the Linear Variable Differential Transformer (LVDT). This type of transducer is typically used in position sensing applications as they are extremely sensitive and can detect very small changes in current. The LVDT operates by using a movable core to induce an electrical signal when it is subjected to a changing magnetic field. The signal is then directly proportional to the variation of the current outside the transformer. The advantage of this type of transducer is that due to the low power consumption it is very efficient and cost-effective.

The second type of current transducer is the Rogowski Coil. This type of transducer is typically used in high power electrical systems as it is designed to detect large changes in the amount of current flowing. The Rogowski coil operates by using an insulated coil to detect a changing current. The advantage of this type of transducer is that it is highly accurate, low noise, and provides a wide range of measurements.

The third type of current transducer is the Hall Effect transducer. This type of transducer is typically used in processes where a highly accurate measurement of current is required. The Hall Effect transducer operates by using an electromagnetic field to detect a changing current. The advantage of this type of transducer is that it is highly accurate, low noise, and provides a wide range of measurements.

The fourth type of current transducer is the Linear Variable Displacement Transformer (LVDT). This type of transducer is typically used in position sensing applications as they are extremely sensitive and can detect very small changes in current. The LVDT operates by using a movable core to induce an electrical signal when it is subjected to a changing magnetic field. The signal is then directly proportional to the variation of the current outside the transformer. The advantage of this type of transducer is that due to the low power consumption it is very efficient and cost-effective.

The fifth type of current transducer is the Strain Gauge. This type of transducer is typically used in processes where a highly accurate measurement of current is required. The strain gauge operates by using a strain gauge mounted on a flexible diaphragm to detect changes in the current. The advantage of this type of transducer is that it is highly accurate, low noise, and provides a wide range of measurements.

The sixth and final type of current transducer is the Linear Electric Subscriber-Network Protocol (LESR). This type of transducer is typically used in current measurement applications in domestic and industrial situations. LESR 6-NP works by using a set of power line communication nodes to measure the amount of current flowing through a system. The advantage of this type of transducer is that it is extremely cost-effective and can provide highly accurate readings in a short time.

In conclusion, it is important to understand the various types of current transducers and their associated working principles in order to be able to make an informed decision when selecting a particular instrument for any electrical process measurement or control application.

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

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