SINGLEPHSPOL-RD Allicdata Electronics
Allicdata Part #:

336-1332-ND

Manufacturer Part#:

SINGLEPHSPOL-RD

Price: $ 0.00
Product Category:

Development Boards, Kits, Programmers

Manufacturer: Silicon Labs
Short Description: REFERENCE DESIGN FOR SI825X
More Detail: Si8252 - DC/DC, Step Down 1, Non-Isolated Outputs ...
DataSheet: SINGLEPHSPOL-RD datasheetSINGLEPHSPOL-RD Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Part Status: Discontinued at Digi-Key
Main Purpose: DC/DC, Step Down
Outputs and Type: 1, Non-Isolated
Voltage - Output: 3.3V
Current - Output: 20A
Voltage - Input: 10 V ~ 15 V
Regulator Topology: Buck
Frequency - Switching: 391kHz
Board Type: Fully Populated
Supplied Contents: Board(s), Cable(s), Accessories
Utilized IC / Part: Si8252
Description

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Single-phase power-conversion offers some of the greatest practical opportunities for most modern power applications. This is due to its simplicity, affordability and ease of use. The single-phase power-conversion design typically includes a DC/DC or AC/DC power supply, allowing the user to interface, store and control a simple electrical power source with an output voltage, current and frequency.

The DC/DC and AC/DC Single-phase Power Supply (SPS) broadly referred to as the SINGLEPHPSPOL-RD consists of a variety of components and technologies, including a high-efficiency boost converter, a Zero-Voltage Switching (ZVS) buck-boost converter, an inverter, a rectifier and a power transformer. To assess the performance of a SINGLEPHPSPOL-RD system employed in an electrical grid or industrial environment, several tests must be performed to evaluate its characteristics. The performance test includes the measurements of the efficiency, total harmonic distortion (THD), power factor, line regulation, output regulation, line transfer function, input impedance, and overtemperature limit.

The DC/DC and AC/DC SPS are typically configured for Power Factor Correction (PFC) and other special purposes. In order to ensure the efficiency and stability of the system, proper tests have to be conducted on the test equipment to check the parameters. Usually, a power-factor test is performed to measure the power factor of a DC/DC or AC/DC system. A measure of power-factor performance is obtained by measuring the voltage-to-current ratio in power supply.

A DC/DC or AC/DC SPS consists of several subcomponents, each of which requires a particular operating environment. Many of these components are designed with a specific temperature, humidity, and pressure range. Therefore, the environmental conditions must be managed in order to ensure proper system operation. Tests must be performed to determine the characteristics of a DC/DC or AC/DC system under various ambient conditions, such as temperature, humidity, and pressure.

The DC/DC and AC/DC SPS are designed to optimize the efficiency of the system. The Efficiency Evaluation Test (EET) is a process used to calculate the total efficiency of a system, which helps to determine its suitability for a given application. This evaluation can be performed on the basis of the following parameters:

  • Input Power
  • Output Voltage
  • Load Variation
  • Short Circuit Requirement
  • Overload Test
  • Switching Frequency

The switching frequency is an important factor to consider when choosing a SINGLEPHPSPOL-RD system. A higher switching frequency often results in a higher efficiency of the system. Moreover, high switching frequencies allow smaller components to be used in the power system, thus reducing cost.

To ensure the safe use of the SINGLEPHPSPOL-RD system, safety tests such as inrush current, standby power, overload protection, and surge protection have to be conducted. The safety tests help to determine the secure operation of the system and guarantee reliable performance.

Another important aspect of the SINGLEPHPSPOL-RD system is the protection against external interference and electrical noise. Tests that measure the electrical noise emitted from the system must be performed to confirm the system\'s performance. The tests involve determining the EMI levels, the radiated electromagnetic emissions, and the susceptibility of the system to external disturbances.

Finally, it is also important to consider the reliability of the DC/DC and AC/DC SPS. In order to guarantee the life of the equipment, longevity tests need to be completed. These tests, which measure the ability of the system to remain functional after multiple cycles of operation, can be performed on the equipment or on the software.

In conclusion, the DC/DC and AC/DC SPS has many advantages, including the ability to interface, store and control a simple electrical power source with an output voltage, current and frequency. Proper tests have to be conducted in order to assess the effects of environmental conditions on the performance of the system, to evaluate its efficiency, safety, electrical noise, and reliability.

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

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