AD9625BBPZ-2.5

AD9625BBPZ-2.5

Manufacturer No:

AD9625BBPZ-2.5

Manufacturer:

Analog Devices Inc.

Description:

IC ADC 12BIT 196BGA

Datasheet:

Datasheet

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AD9625BBPZ-2.5 Specifications

  • Type
    Parameter
  • Mounting Type
    Surface Mount
  • Supplier Device Package
    196-BGA-ED (12x12)
  • Package / Case
    196-LFBGA Exposed Pad
  • Operating Temperature
    -40°C ~ 85°C
  • Features
    -
  • Voltage - Supply, Digital
    1.26V ~ 1.32V, 2.4V ~ 2.6V
  • Voltage - Supply, Analog
    1.26V ~ 1.32V, 2.4V ~ 2.6V
  • Reference Type
    Internal
  • Architecture
    Pipelined
  • Number of A/D Converters
    1
  • Ratio - S/H:ADC
    0:1
  • Configuration
    ADC
  • Data Interface
    JESD204B, SPI
  • Input Type
    Differential
  • Number of Inputs
    1
  • Sampling Rate (Per Second)
    2.5G
  • Number of Bits
    12
  • Packaging
    Tray
  • Product Status
    Active
  • Series
    -
The AD9625BBPZ-2.5 is a high-speed, low-power, 12-bit analog-to-digital converter (ADC) integrated circuit chip. Some of its advantages and application scenarios include:1. High-speed performance: The AD9625BBPZ-2.5 can sample analog signals at a very high rate, up to 2.5 gigasamples per second (GSPS). This makes it suitable for applications that require high-speed data acquisition, such as radar systems, software-defined radios, and high-frequency signal analysis.2. Low power consumption: The chip is designed to operate with low power consumption, making it suitable for portable and battery-powered applications. It has a power-down mode that further reduces power consumption when the ADC is not actively sampling.3. Wide input bandwidth: The AD9625BBPZ-2.5 has a wide input bandwidth, up to 9 GHz, which allows it to capture a broad range of analog signals accurately. This makes it suitable for applications that require wideband signal processing, such as communications systems and spectrum analyzers.4. High dynamic range: The ADC has a high dynamic range, which means it can accurately capture both small and large amplitude signals. This is important in applications where the input signal may vary significantly in amplitude, such as in wireless communication systems or medical imaging.5. Flexible interface options: The chip supports various interface options, including a JESD204B serial interface, which simplifies the integration with digital signal processing systems. It also has a programmable clock input, allowing synchronization with external timing references.Some application scenarios where the AD9625BBPZ-2.5 can be used include:1. Radar systems: The high-speed and wide input bandwidth capabilities of the ADC make it suitable for radar systems that require accurate and fast signal acquisition for target detection and tracking.2. Communications systems: The ADC can be used in high-speed data communication systems, such as wireless base stations or satellite communication systems, where it can convert analog signals into digital format for further processing and transmission.3. Test and measurement equipment: The high-speed and high-resolution capabilities of the ADC make it suitable for use in oscilloscopes, spectrum analyzers, and other test and measurement equipment that require accurate signal capture and analysis.4. Medical imaging: The ADC can be used in medical imaging systems, such as computed tomography (CT) scanners or magnetic resonance imaging (MRI) machines, where it can convert analog signals from sensors or detectors into digital format for image reconstruction and analysis.5. Software-defined radios: The ADC can be used in software-defined radios (SDRs) to digitize analog signals for further processing and modulation/demodulation in software. Its high-speed and low-power characteristics make it suitable for portable and battery-powered SDR applications.Overall, the AD9625BBPZ-2.5 integrated circuit chip offers high-speed, low-power, and high-resolution analog-to-digital conversion capabilities, making it suitable for a wide range of applications that require fast and accurate signal acquisition and processing.