| Allicdata Part #: | MAX17502ETEVKIT#-ND |
| Manufacturer Part#: |
MAX17502ETEVKIT# |
| Price: | $ 31.31 |
| Product Category: | Development Boards, Kits, Programmers |
| Manufacturer: | Maxim Integrated |
| Short Description: | KIT EVAL FOR MAX17502ET |
| More Detail: | MAX17502E Himalaya DC/DC, Step Down 1, Non-Isolate... |
| DataSheet: | MAX17502ETEVKIT# Datasheet/PDF |
| Quantity: | 4 |
| 1 +: | $ 28.17990 |
| Series: | Himalaya |
| Part Status: | Active |
| Main Purpose: | DC/DC, Step Down |
| Outputs and Type: | 1, Non-Isolated |
| Voltage - Output: | 3.3V |
| Current - Output: | 1A |
| Voltage - Input: | 4.5 V ~ 60 V |
| Regulator Topology: | Buck |
| Frequency - Switching: | 600kHz |
| Board Type: | Fully Populated |
| Supplied Contents: | Board(s) |
| Utilized IC / Part: | MAX17502E |
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The MAX17502ETEVKIT# Evaluation Board and the MAX17500# family of energy-friendly power controllers are useful for power designers’ needs when creating high-efficiency, low-noise, low-EMI, space-constrained systems. These boards feature very low-profile packaging options for both AC-DC (off-line) switch-mode power supplies (SMPS) and DC-DC converters. When used in applications such as portable consumer electronics and industrial/commercial automotive products, the MAX17502ETEVKIT# evaluation boards provide the utmost flexibility, low component count, and superior performance.
The MAX17502ETEVKIT# provides a test platform for studying the performance of the MAX175xx series of power controllers. This board can be used as an evaluation platform for verifying the performance of the MAX175xx series of power controllers, as well as for experimenting with the design aspects of the AC-DC and DC-DC converters. On the MAX17502ETEVKIT#, the MAX175xx devices can control the power conversion process of half-bridge, flyback, and push-pull DC-DC converters, as well as full-bridge, half-bridge, and flyback AC-DC power supplies. The MAX17502ETEVKIT# evaluation boards provide designers with a professional testing solution for performing accurate power control tests.
The MAX17502ETEVKIT# evaluation boards use a MAX17502G high-voltage power controller and a MAX17500Z high-voltage power converter. These devices are designed to provide low-noise and low-EMI performance while maintaining a high level of efficiency. The MAX17502G is a high-current power controller designed for a wide range of applications, including full-bridge and half-bridge DC-DC converters, and full-bridge and half-bridge AC-DC power supplies. The MAX17500Z is a high-voltage, low-power, low-side driver designed to provide low-noise and low-EMI performance. The MAX17500Z includes a low-input current, low-EMI driver, as well as a low-power, low-saturation FET driver.
The MAX17502ETEVKIT# boards are designed for both AC-DC and DC-DC applications. The AC-DC boards utilize a MAX17500Z FET driver and a MAX17502G high-voltage power controller. The DC-DC boards also utilize the MAX17500Z FET driver, while the MAX17502G is replaced by a MAX17500Y low-noise, low-EMI PWM controller. These controllers are connected to an external controller, such as a microcontroller, to provide wide-ranging control over the power conversion process.
The MAX17502ETEVKIT# can be used to study the performance of the MAX175xx series of power controllers as well as the design aspects of AC-DC and DC-DC converters. The MAX17500Z provides low-noise and low-EMI performance, while the MAX17502G provides high-efficiency performance. The MAX17502ETEVKIT# also allows power designers to experiment with the design aspects of the power conversion process in order to optimize efficiency, noise, and EMI performance while minimizing the component count and footprint size.
The MAX17502ETEVKIT# evaluation boards provide power designers with a flexible and easy-to-use platform for exploring the performance characteristics of the MAX175xx series of power controllers. Through the use of an external controller, the MAX17502ETEVKIT# boards can be used to study the design aspects of the power conversion process in order to optimize efficiency, noise, and EMI performance while minimizing the component count and footprint size. This makes the MAX17502ETEVKIT# boards ideal for designing high-efficiency, low-noise, low-EMI, space-constrained AC-DC and DC-DC (off-line) SMPS.
The specific data is subject to PDF, and the above content is for reference
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MAX17502ETEVKIT# Datasheet/PDF