EBK-GN1412B-ELEC00 Allicdata Electronics
Allicdata Part #:

EBK-GN1412B-ELEC00-ND

Manufacturer Part#:

EBK-GN1412B-ELEC00

Price: $ 0.00
Product Category:

Development Boards, Kits, Programmers

Manufacturer: Semtech Corporation
Short Description: EVAL BOARD ELECT GN1412B
More Detail: GN1412B Laser Driver Power Management Evaluation B...
DataSheet: EBK-GN1412B-ELEC00 datasheetEBK-GN1412B-ELEC00 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Part Status: Active
Type: Power Management
Function: Laser Driver
Embedded: --
Utilized IC / Part: GN1412B
Primary Attributes: --
Supplied Contents: Board(s)
Secondary Attributes: --
Description

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EBK-GN1412B-ELEC00 evaluation and demonstration boards and kits are widely applied in electronic engineering, especially for low-power existing voltage and existing current signal measurement. This device utilizes a sensor interface consisting of excitation, detection, and the associated signal processing features that combine low noise and improved performance in a small package. It is typically used for transient signal measurements, wide dynamic range measurements, inverter output and frequency measurements as well as LED lighting design.

The working principle of the EBK-GN1412B-ELEC00 evaluation and demonstration boards and kits is based on an electromechanical system. The core of the system is the excitation voltage D1 and the corresponding detection current I1. The excitation voltage D1 is continuously generated by a transformer. The detection current I1 on the excitation voltage is proportional to the voltage. The signal is further processed by the amplifier system. The differential amplifier amplifies the detection current I1 into different levels into the A/D converter. After the A/D converter, the signal is ready for further processing or for display.

The EBK-GN1412B-ELEC00 evaluation and demonstration boards and kits are mainly used in development such as power system design, comparison of EL (electroluminescence) display performance, component performance evaluation, and power optimization in application. For example, this board can be used to measure the current output from an inverter feedback system to compare the transducer performance and detect potential problems in the power system. It can also be used in angle sensor design to detect the absolute angle of rotation for precision control. Furthermore, it can be used to detect and analyze the modulation index of LED lighting, as well as the electrical characteristics of optoelectronic components.

The EBK-GN1412B-ELEC00 evaluation and demonstration boards and kits are also suitable for analyzing the static performance of AC/DC power supplies and converter circuits. The board can be used to assess the power efficiency, load characteristics, current, and voltage ratings of power systems and power supply circuits. Furthermore, the device can measure the static and dynamic parameters of an AC/DC power supply to evaluate its noise performance and ripple voltage.

In addition, the EBK-GN1412B-ELEC00 evaluation and demonstration boards and kits can be used to simulate different load conditions. It can be used to measure the load voltage and current, as well as the corresponding power parameters, such as power factor and efficiency. The board can also be used to test the current capacity of a power supply, or to measure the EMC performance of a power supply circuit.

The working principle of the EBK-GN1412B-ELEC00 evaluation and demonstration boards and kits can be summarized as follows: The excitation voltage D1 is provided by a transformer and the corresponding detection current I1 flows through it. The transmitted signal is amplified by the amplifier system and finally converted to a digital signal with an A/D converter. This signal can then be analyzed to evaluate the performance of a power system or analyze the electrical characteristics of optoelectronic components. The EBK-GN1412B-ELEC00 evaluation and demonstration boards and kits are widely used to evaluate the performance of power systems as well as the efficiency of power supplies and converter circuits.

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

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