Allicdata Part #: | AD9633-125EBZ-ND |
Manufacturer Part#: |
AD9633-125EBZ |
Price: | $ 190.32 |
Product Category: | Development Boards, Kits, Programmers |
Manufacturer: | Analog Devices Inc. |
Short Description: | BOARD EVAL FOR AD9633 |
More Detail: | AD9633 - 12 Bit 125M Samples per Second Analog to ... |
DataSheet: | AD9633-125EBZ Datasheet/PDF |
Quantity: | 1 |
1 +: | $ 171.28400 |
Series: | -- |
Part Status: | Active |
Number of A/D Converters: | 4 |
Number of Bits: | 12 |
Sampling Rate (Per Second): | 125M |
Data Interface: | LVDS, Serial, SPI |
Input Range: | 2 Vpp |
Power (Typ) @ Conditions: | 430mW @ 125MSPS |
Utilized IC / Part: | AD9633 |
Supplied Contents: | Board(s) |
Base Part Number: | AD9633 |
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The AD9633-125EBZ is a high-performance, 16-bit, dual-channel, analog-to-digital converter (ADC) evaluation boards from Analog Devices. AD9633-125EBZ evaluation boards are compliant with the I2C, SPI, and JESD204B serial interface standards, carrying performance data such as a sampling rate of up to 125 MSPS, a wide power supply range from 1.2 V to 4.5 V, and a dynamic performance of 95 dBc SNR and 94 dB SFDR at a 40-MHz input frequency. In addition, the development board comes with a built-in temperature sensor, integrated power solutions, user-configurable buffers, and low power consumption of only 0.6 mW/channel.
The AD9633-125EBZ evaluation board provides a comprehensive and flexible platform for designers to quickly evaluate the performance of the AD9633-125EBZ dual-channel ADC. It enables designers to investigate the performance of the board, configure user-defined gain settings, and program the AD9633-125EBZ parameters over the TI2C or SPI bus. The development board allows designers to evaluate a wide range of performance parameters such as CPU power modeling, analog and digital data visualization, data accuracy, and stability.
The board features a variety of analog and digital I/O port options to easily connect and configure the device. The AD9633-125EBZ evaluation board is integrated with several power solutions, making it ideal for a variety of low-power applications. The user-configurable buffers enable designers to customize the signal gain and bandwidth, as well as the overall system performance.
The AD9633-125EBZ evaluation board supports the TI2C interface, with the possibility to support up to eight devices that can be operated and programmed using a single TI2C bus. Furthermore, the development board features a user-configurable SPI bus, allowing for customizations such as increasing the bus speed and adding user-defined write commands. Additionally, designers can develop their own SP control software to configure the board, such as setting up the sampling clock and the front-end gain.
The AD9633-125EBZ evaluation board also incorporates the JESD204B serial interface standard. This serial interface enables designers to quickly evaluate the performance of the ADC, including its high-speed data transmission capabilities and the asynchronous temperature sensing. Additionally, the board features the AB#1 and BC#2 signal lines for measuring static and dynamic parameter data such as SFDR, SNR, and spectral content.
The AD9633-125EBZ evaluation board is designed to operate with a wide temperature range from –40°C to +125°C. The board also provides drivers for controlling the temperature sensor and for accessing the B channel\'s external voltage input. Finally, the board supports a wide range of power solutions, including an integrated LDO and an integrated LRA (low-power, high-efficiency switching regulator).
The AD9633-125EBZ evaluation boards are a versatile development platform for designing and testing dual-channel analog-to-digital converters. The evaluation board\'s comprehensive I/O options, wide range of power supply solutions, support for multiple serial interface standards, and on-board temperature sensing capabilities make it an ideal choice for designers looking for a turnkey solution to quickly evaluate the performance of the AD9633-125EBZ dual-channel ADC.
The specific data is subject to PDF, and the above content is for reference
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