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The future of measurement technology is integrated!


Traditional measurement systems are increasingly reaching their limits in modern measurement environments. Our solution: the ADCstamp measurement channel module


Traditional, bulky measuring instruments are increasingly reaching their limits in modern development and test environments. Whether it’s the electrification of drives, highly dynamic control loops, or power electronics: Today, signals must be acquired directly at the source with high precision, immunity to interference, and in real time.

With the ADCstamp, we’re introducing an extremely compact System-on-Module (SoM) that can be integrated directly into your hardware designs as precise analog front-end electronics.

Why the ADCstamp sets new standards:

  • High-end performance in a compact format: 24-bit resolution, up to 4 MHz sampling rate, and a bandwidth from DC to 1.7 MHz.
  • Maximum safety in high-voltage environments: 5 kV galvanic isolation with minimal parasitic capacitance—ideal for e-mobility and power electronics.
  • Flexible measurement range: Inputs from ±1 V to ±1500 V, expandable with IEPE power supply or strain gauge amplifiers.
  • Real-time measurements: Direct FPGA connection, deterministic timing, and synchronous multichannel setups for highly dynamic motor control and robotics.
  • Seamless integration: Compact dimensions (68 × 25.4 × 12 mm) and 1.8–3.3 V logic. Ready-to-use Verilog and VHDL code examples are included.

Your added value for system development & procurement:

  1. Reduced development risk & time:
    • There is no need for time-consuming in-house development of isolated analog front-ends.
  2. Optimized system architecture:
    • Decentralized measurement nodes improve signal quality and save space in the system.
  3. Scalable and flexible:
    • Perfectly suited for use in test benches, production equipment, or research projects.

Let’s discuss how the ADCstamp can support you in your measurement tasks!

Simply call us at +49 931 359 610, or fill out the contact form.

Learn more about the ADCstamp now: