MAX1724EVKIT Allicdata Electronics
Allicdata Part #:

MAX1724EVKIT-ND

Manufacturer Part#:

MAX1724EVKIT

Price: $ 0.00
Product Category:

Development Boards, Kits, Programmers

Manufacturer: Maxim Integrated
Short Description: EVAL KIT STEP-UP MAX1722-MAX1724
More Detail: MAX1722, MAX1723, MAX1724 - DC/DC, Step Up 2, Non-...
DataSheet: MAX1724EVKIT datasheetMAX1724EVKIT Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Part Status: Obsolete
Main Purpose: DC/DC, Step Up
Outputs and Type: 2, Non-Isolated
Voltage - Output: 3.3V, 3.6V
Current - Output: 100mA
Voltage - Input: 0.91 V ~ 3.3 V
Regulator Topology: Boost
Frequency - Switching: --
Board Type: Fully Populated
Supplied Contents: Board(s)
Utilized IC / Part: MAX1722, MAX1723, MAX1724
Description

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The MAX1724EVKIT Evaluation Board is an innovative direct-current to direct-current and alternating-current to direct-current off-line switch mode power supply for a wide range of applications. Since it only requires two external components, the board can be easily configured and can be used for a variety of applications, such as powering portable electronic devices, cellular phones, and PDA devices. The MAX1724EVKIT Evaluation Board is a comprehensive electro-mechanical system, and it can be used to study the working principles of the power supply, to evaluate the board’s performance, and to understand the components, architecture, and design. This allows the user to design and develop their own devices faster and with less cost and complexity.

The MAX1724EVKIT Evaluation Board power supply can be configured for either step-down or step-up operation, providing a wide range of input and output voltage levels. It can be powered by any regulated or unregulated DC power supply with an output voltage in the range of 4.5V to 100V. The output voltage and current ranges are 0.54V to 4.08V and 0 to 50A, respectively. The board can also be configured for either PWM or PFM mode operation, allowing it to be used in a variety of applications.

The MAX1724EVKIT Evaluation Board works using a switching architecture. In switching mode power supplies, the output voltage is derived from the input voltage, but the current drawn from the output is constant. To achieve this, the power supply uses a switch, typically a transistor, to alternately connect the input to the output and then disconnect it again. This switching action is controlled by a pulse-width modulation (PWM) or pulse-frequency modulation (PFM) circuit, which determines the duty cycle, or ratio, of the switching interval.

The MAX1724EVKIT Evaluation Board can be configured for either PWM or PFM mode operation, and the duty cycle of the switching interval is programmed using a digitally programmable potentiometer. This allows the user to optimally control the power supply’s efficiency and dynamic response, as well as the output voltage and current levels. The board also includes protection circuitry to safeguard the power supply against over temperature, over current and overload conditions.

The board also includes a number of connectors for interconnection with other systems and devices. It also provides the necessary interconnection for the power supply’s output and input. The board supports up to four different output voltage lines and provides the necessary bus bars, wires, and other components to connect to other systems. The board also provides external programming, monitoring, and diagnostic functions, allowing easy access to the board’s configuration, monitoring, and diagnostic functions. All of these features make the MAX1724EVKIT Evaluation Board an ideal choice for the evaluation and development of power supplies.

The MAX1724EVKIT Evaluation Board is designed to provide an excellent performance in a wide range of applications. It is ideal for powering portable electronic devices, such as cellular phones and PDA devices. The board’s compact size, low power consumption, and wide input and output voltage and current ranges make it suitable for a variety of applications. Furthermore, its switching architecture and programmable duty cycle make it an ideal solution for designing power supplies for many applications.

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

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