ACS709LLFTR-10BB-T Allicdata Electronics
Allicdata Part #:

ACS709LLFTR-10BB-T-ND

Manufacturer Part#:

ACS709LLFTR-10BB-T

Price: $ 1.17
Product Category:

Sensors, Transducers

Manufacturer: Allegro MicroSystems, LLC
Short Description: SENSOR CURRENT 10A
More Detail: Current Sensor 10A 1 Channel Hall Effect, Open Loo...
DataSheet: ACS709LLFTR-10BB-T datasheetACS709LLFTR-10BB-T Datasheet/PDF
Quantity: 7500
1 +: $ 1.17000
10 +: $ 1.13490
100 +: $ 1.11150
1000 +: $ 1.08810
10000 +: $ 1.05300
Stock 7500Can Ship Immediately
$ 1.17
Specifications
Frequency: DC ~ 120kHz
Package / Case: 24-QSOP
Mounting Type: Surface Mount
Polarization: Bidirectional
Operating Temperature: -40°C ~ 150°C
Current - Supply (Max): 14.5mA
Response Time: 4µs
Voltage - Supply: 4 V ~ 5.5 V
Accuracy: ±2%
Linearity: ±0.25%
Series: --
Sensitivity: 85mV/A
Output: Ratiometric, Voltage
Number of Channels: 1
Current - Sensing: 10A
Sensor Type: Hall Effect, Open Loop
For Measuring: AC/DC
Part Status: Not For New Designs
Packaging: Tape & Reel (TR) 
Description

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Current transducers are electronic devices that measure the magnitude of an AC or DC current signal. They are used as transducers, either for direct measurement or for the indirect measurement of current. One of these current transducers is the ACS709LLFTR-10BB-T, which has been designed to integrate current sensing and voltage transformers into one integrated system. This article will discuss the application field and working principle of the ACS709LLFTR-10BB-T in detail.

The application of the ACS709LLFTR-10BB-T includes electric current monitoring in electric power systems, distortion monitoring for motors, transformers and motors with varying loads, motor control and power electronics. This current transducer can be used in critical applications such as electric motor control, photovoltaic inverter control, current fault detection, phase monitoring, battery management, neural network sensor applications and regenerative drives. In addition, it can also be used for DC to AC rectification, controlling inrush current, and overcurrent protection.

The ACS709LLFTR-10BB-T has been designed to work with a wide range of input currents, from below 4mV/A to well above 2000A. It has a maximum rated primary current of 10A rms, and a secondary output of 4-20mA, 0-5V, 0-10V or 4-20V. The transducer can be used in both linear and non-linear conditions, and can measure currents as low as -100mA. The output from the transducer is extremely linear, and can be trusted to produce accurate results even in highly dynamic conditions.

The working principle of the ACS709LLFTR-10BB-T is based on the Hall effect principle. When a current is applied to the input of the transducer, a magnetic field is created in the sensing element. This field causes a voltage to be generated in the Hall element, which is then converted to a proportional current that is proportional to the input current. The output from the transducer is proportional to the input current, and is provided in either a 4-20mA analog output, or a 0-5V, 0-10V or 4-20V digital output.

The ACS709LLFTR-10BB-T transducer is designed to be refrigerated and to provide low maintenance. It is designed to operate in a very wide temperature range, and is very sensitive to environmental factors such as vibration and EMI. The transducer is also self-powered and does not require an external power source. The transducer has been designed to provide high accuracy and output linearity, making it an excellent choice for critical applications such as electric motor control and power electronics.

In conclusion, the ACS709LLFTR-10BB-T is an excellent choice for applications that require current sensing and voltage measurement. The transducer is designed to provide high accuracy and accuracy, even in highly dynamic conditions. The output from the transducer is very linear, making it a reliable choice for critical applications. The transducer is also self-powered, and does not require an external power source, making it a cost-effective solution.

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

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