MAX5352ACPA+

MAX5352ACPA+

Manufacturer No:

MAX5352ACPA+

Description:

IC DAC 12BIT V-OUT 8DIP

Datasheet:

Datasheet

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MAX5352ACPA+ Specifications

  • Type
    Parameter
  • Operating Temperature
    0°C ~ 70°C
  • Architecture
    R-2R
  • INL/DNL (LSB)
    ±0.5 (Max), ±1 (Max)
  • Voltage - Supply, Digital
    5V
  • Voltage - Supply, Analog
    5V
  • Reference Type
    External
  • Data Interface
    SPI
  • Differential Output
    No
  • Output Type
    Voltage - Buffered
  • Settling Time
    14µs (Typ)
  • Number of D/A Converters
    1
  • Number of Bits
    12
  • Mounting Type
    Through Hole
  • Supplier Device Package
    8-PDIP
  • Package / Case
    8-DIP (0.300", 7.62mm)
  • DigiKey Programmable
    Not Verified
  • Packaging
    Tube
  • Packaging
    Bulk
  • Product Status
    Obsolete
  • Series
    -
The TLC34076-135FN is a specific model of integrated circuit (IC) chip manufactured by Texas Instruments. It is a 16-bit, 135 MSPS (Mega Samples Per Second) digital-to-analog converter (DAC) chip. Here are some advantages and application scenarios of the TLC34076-135FN IC chip:Advantages: 1. High-speed conversion: The TLC34076-135FN chip offers a high sampling rate of 135 MSPS, allowing for fast and accurate conversion of digital signals to analog signals. 2. High resolution: With a 16-bit resolution, the chip provides precise and detailed analog output. 3. Low power consumption: The chip is designed to operate with low power consumption, making it suitable for battery-powered devices or applications where power efficiency is crucial. 4. Small form factor: The IC chip is available in a compact package, enabling it to be easily integrated into various electronic systems and devices. 5. Wide operating temperature range: The TLC34076-135FN chip can operate reliably across a wide temperature range, making it suitable for use in harsh environments.Application scenarios: 1. Communications systems: The high-speed and high-resolution capabilities of the TLC34076-135FN chip make it suitable for applications in communication systems, such as digital radio transmitters, software-defined radios, or high-speed data transmission systems. 2. Test and measurement equipment: The chip's fast conversion rate and high resolution make it useful in test and measurement equipment, such as oscilloscopes, signal generators, or data acquisition systems, where accurate analog signal generation is required. 3. Medical imaging: The chip's high-speed and high-resolution DAC capabilities can be utilized in medical imaging systems, such as ultrasound machines or digital X-ray systems, to convert digital image data into analog signals for display or further processing. 4. Industrial automation: The chip's low power consumption and small form factor make it suitable for use in industrial automation systems, such as programmable logic controllers (PLCs) or motor control systems, where space constraints and power efficiency are important factors. 5. Audio equipment: The high-resolution DAC capabilities of the chip can be utilized in audio equipment, such as digital audio players, audio interfaces, or professional audio systems, to convert digital audio signals into high-quality analog audio output.It is important to note that the specific advantages and application scenarios may vary depending on the requirements and specifications of the overall system design.