Allicdata Part #: | BD8132FV-E2-ND |
Manufacturer Part#: |
BD8132FV-E2 |
Price: | $ 7.71 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | ROHM Semiconductor |
Short Description: | IC PWR SUP CORRECTION SSOP-B40 |
More Detail: | Gamma Correction PMIC 40-SSOPB |
DataSheet: | BD8132FV-E2 Datasheet/PDF |
Quantity: | 1000 |
2000 +: | $ 7.00308 |
Series: | -- |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
Applications: | Gamma Correction |
Current - Supply: | -- |
Voltage - Supply: | 2.3 V ~ 4 V, 6 V ~ 18 V |
Operating Temperature: | -30°C ~ 85°C |
Mounting Type: | Surface Mount |
Package / Case: | 40-SSOP (0.213", 5.40mm Width) |
Supplier Device Package: | 40-SSOPB |
Base Part Number: | BD8132 |
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For any type of device to function correctly, it needs power to run, and this is the domain of power management ICs (PMICs). The BD8132FV-E2 is a particularly specialized PMIC which is designed to provide a highly efficient level of power stability and safety for many types of electronic devices. This article will discuss the application field for the BD8132FV-E2 as well as the working principle behind it.
Application Field for the BD8132FV-E2
The BD8132FV-E2 is designed to provide a power source for a range of electronic and electrical devices, from automotive electronic components to consumer products. The main feature of the BD8132FV-E2 is its ability to provide power stability and protection which ensure that the device being powered by the BD8132FV-E2 is always receiving a clean, steady power supply and will not suffer from any damages due to power surges. In addition, the BD8132FV-E2 is designed to provide power protection for devices which are subject to extremely harsh environments, such as automotive components.
The BD8132FV-E2 also comes with a number of features which make it ideal for a range of applications. For example, the BD8132FV-E2 has a low standby power consumption, making it ideal for products which have limited power available. In addition, the BD8132FV-E2 comes with built-in safety features, such as over-current and over-voltage protection, which provide an added level of protection for the device which it is powering. Finally, the BD8132FV-E2 has a very high efficiency rating, making it ideal for products which require a reliable and clean power source with minimal power loss.
Working Principle of BD8132FV-E2
The working principle of the BD8132FV-E2 is based on the use of three main components: the power chip, the controller, and the external components. The power chip is responsible for converting the incoming power signal into a steady, clean power source. This is accomplished by the use of a number of sophisticated power conversion techniques as well as various protection functions. The controller is then responsible for controlling the flow of power from the external components to the device being powered. The external components, such as resistors and capacitors, are then used to help regulate the flow of power. It is important to note that the external components must be chosen to match the device being powered, in order to ensure that the device is receiving the correct amount of power.
Additionally, the BD8132FV-E2 contains a number of other features which help improve the reliability and safety of the device. For example, it contains a number of safeguards which will prevent the device from drawing too much power, as well as protection against over-voltage and over-current. Moreover, the BD8132FV-E2 contains a number of thermal protection features, which will help protect the device from damage due to excessive heat.
In summary, the BD8132FV-E2 is a specialized PMIC which is designed to provide a highly efficient and reliable level of power stability and safety for many kinds of electronic devices. The BD8132FV-E2 is used in a variety of applications, from automotive components to consumer electronics, and it is designed to provide clean, steady power and protection from power surges and other dangerous conditions. Finally, the working principle of the BD8132FV-E2 is based on the use of a power chip, controller, and external components which are chosen to match the device being powered.
The specific data is subject to PDF, and the above content is for reference
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