MAX1300 (3)

The MAX1300 is available from Analog Devices at Xecor. Designed for high-precision analog-to-digital conversion, the MAX1300 offers software-programmable input ranges, ±16.5V overvoltage-tolerant inputs, and a maximum sample rate of 115ksps. Available in a 24-TSSOP package, it is ideal for avionics, data acquisition systems, industrial control systems, and robotics. Whether used in automotive, telecommunications, or industrial automation, this series ensures exceptional performance, flexibility, and efficiency for demanding applications. Xecor is an authorized distributor for Analog Devices. Please view our extensive selection of the MAX1300 series below.

Part Number Description Package Inventory Add To Bom
MAX1300AEUG+ Eight-channel inputs TSSOP-24 8,074
MAX1300BEUG+T Accurate and reliable signal processing for demanding industrial measurement tasks TSSOP-24 5,525
MAX1300BEUG+ MAX1300BEUG+ offers high-end performance in a compact package, ideal for a variety of applications TSSOP-24 3,638

Key Featrues

Software-Programmable Input Range: The MAX1300/MAX1301 allows users to program the input range for each channel, enabling flexibility in handling various signal levels. This feature enhances performance by optimizing the ADC's dynamic range for different applications, such as industrial control systems or robotics, where input signals can vary significantly.
±16.5V Overvoltage Tolerant Inputs: The ADC's ability to tolerate overvoltages up to ±16.5V on its inputs ensures robust operation in harsh environments. This feature improves reliability and reduces the risk of damage, making it suitable for avionics and industrial control systems where voltage spikes are common.
Single +5V Power Supply Operation: The device operates from a single +5V power supply, simplifying power management and reducing system complexity. This feature enhances efficiency and makes the ADC ideal for portable or space-constrained applications like data acquisition systems.
115ksps Maximum Sample Rate: With a high sampling rate of 115ksps, the MAX1300/MAX1301 can accurately capture fast-changing signals. This feature is critical for applications like robotics and avionics, where real-time data acquisition and processing are essential for performance.
Internal or External Reference Option: The ADC supports both internal and external voltage references, providing flexibility in design and improving accuracy. This feature allows users to tailor the reference voltage to their specific needs, enhancing precision in applications like industrial control systems and data acquisition.

Applications

Avionics Sensor Interface: The MAX1300/MAX1301 is ideal for directly digitizing signals from high-impedance sensors used in avionics systems, such as temperature, pressure, or vibration sensors. Its multirange input capability and ±16.5V overvoltage tolerance ensure accurate measurements in harsh environments, making it suitable for precision sensor applications in aerospace and defense systems.
Industrial Control System Digitizer: The MAX1300/MAX1301 is perfect for directly digitizing signals from sensors in industrial control systems, such as load cells, flow meters, or position sensors. Its software-programmable input ranges and differential input capability enable precise measurements, making it ideal for automation and process control applications.
Robotics Sensor Interface: The MAX1300/MAX1301 is well-suited for directly digitizing signals from sensors in robotics, such as force sensors, encoders, or proximity sensors. Its high-speed sampling rate of 115ksps and single +5V power supply ensure real-time data acquisition, making it ideal for advanced robotic control and feedback systems.
Data Acquisition System Digitizer: The MAX1300/MAX1301 is excellent for directly digitizing signals from sensors in data acquisition systems, such as accelerometers, thermistors, or photodiodes. Its internal or external reference options and SPI-compatible interface provide flexibility and accuracy, making it suitable for high-precision measurement and monitoring applications in research and development.