Allicdata Part #: | ZLR88721H-ND |
Manufacturer Part#: |
ZLR88721H |
Price: | $ 132.57 |
Product Category: | Development Boards, Kits, Programmers |
Manufacturer: | Microsemi Corporation |
Short Description: | REFERENCE DESIGN ZL88721H |
More Detail: | Evaluation Board |
DataSheet: | ZLR88721H Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 119.30900 |
Series: | -- |
Part Status: | Active |
Type: | -- |
Function: | -- |
Embedded: | -- |
Utilized IC / Part: | -- |
Primary Attributes: | -- |
Supplied Contents: | Board(s) |
Secondary Attributes: | -- |
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Evaluation and Demonstration boards and kits are an important way of showcasing the capabilities of a specific technology or product, and the ZLR88721H application field and working principle are no exception. The ZLR88721H application field provides a platform for users to evaluate and demonstrate products through an application-specific hardware implementation. This evaluation board is based on the STM32F100RCT6 microcontroller from ST Microelectronics. The board is equipped with an STM32RGB LCD module, a 1.3-inch smart TFT display, and a touch screen panel. It also includes an advance digital microphone and two push buttons. These features allow for complete evaluation and demonstration of various applications.
The ZLR88721H application field utilizes a synchronous rectifier buck/DC-DC converter integrated circuit (IC). This IC is based on the ZLR88721H from STMicroelectronics and is embedded in the design along with an push-pull driver to provide fast and precise control of output voltages. The ZLR88721H application employs a low-dropout (LDO) regulator to ensure static stability even in low-load conditions. This ensures a smooth and precise power delivery to various components in the device.
The ZLR88721H application also incorporates an innovative sensing technology to control the output voltage of the like-buck regulator. The sensing scheme allows for varying the output voltage according to the drain current and the power requirements of the application. The sensing is based on the STM32F100RCT6 microcontroller, which allows for high precision control of the output voltage. This ensures optimal power delivery to the various components of the device.
The UI interface of the ZLR88721H application is based on a touch screen panel, and includes an audio driver. The audio driver allows for improved audio delivery quality, and also allows for a more interactive experience. The control unit works in conjunction with the microphone and push buttons to produce the desired sound effects. This audio interface can be used with a variety of applications, such as gaming, product demos, and multimedia.
The LCD display of the ZLR88721H application provides an application-specific interface, and is used to display relevant information such as output voltage, current, and power consumption. This allows the user to monitor and adjust the settings of the device as needed. Furthermore, the user may utilize the LCD display to check status messages, and verify configuration settings.
The ZLR88721H application implements a fast current limit setting, which prevents the device from drawing too much current. This feature helps to protect the device from potential damage caused by over-current. It also reduces the amount of power consumed by the device, resulting in an improved device efficiency.
The ZLR88721H application also implements advanced temperature protection to ensure optimal performance and reliable operation. This includes temperature-sensing features which can detect temperature levels and adjust output voltage settings to prevent damage from overheating. Moreover, the ZLR88721H application also integrates a fault detection and protection circuit to improve reliability and reduce the risk of potential failure.
The ZLR88721H application is a perfect device to demonstrate and evaluate all kinds of applications. It incorporates a wide range of features which allows for an efficient and reliable operation. The user can take advantage of advanced sensing technology to adjust the power levels to suit the application requirements. It also implements a fast current-limit setting which helps to protect the device from potential damage, and improve the overall efficiency.
The specific data is subject to PDF, and the above content is for reference
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