KD-5600

Digital differential measuring system family for COTS precision applications

  • Digital eddy current differential measurement for COTS applications
  • Available as KD-5656 (digital), KD-5640 (analog), and KD-5690 (front-end / FE) configurations
  • Two matched sensors per channel for optimum operation
  • Digital filtering as part of signal conditioning to reduce noise
  • 8× oversampling — signal resolution eight times better than Nyquist-rate sampling
  • Serial Peripheral Interface (SPI) bus for fast data transfers, no firmware
  • Single power supply, 8-28 V via a 9D connector
  • High resolution, bandwidth, and linearity; SWaP-C scaled
Specifications
Configurations KD-5656 (digital), KD-5640 (analog), KD-5690 (front-end / FE)
Power Single supply, 8-28 VDC via 9D connector
Sampling 8× oversampling (resolution 8× better than Nyquist-rate sampling)
Interface Serial Peripheral Interface (SPI) bus, no firmware
Sensors Two matched sensors per channel
Sensors
Downloads
Certifications

COTS-oriented design. Declaration of Conformity available on request.

Options

Configurations — KD-5656 full digital system, KD-5640 analog system, and KD-5690 front-end (FE) system, each with custom sensors, signal processing, ADC, and custom calibration.

Accessories

Matched sensor pairs and cables are available. Contact an applications engineer for configuration.

Frequently Asked Questions

What configurations does the KD-5600 family offer?

The KD-5656 (full digital system), KD-5640 (analog system), and KD-5690 (front-end / FE system) — each equipped with custom sensors, signal processing, an analog-to-digital converter, and a custom calibration system.

How does oversampling improve resolution?

The KD-5600 samples at eight times the standard data rate; oversampling at high volume yields signal resolution roughly eight times better than a system sampling at the Nyquist rate.

What applications is the KD-5600 used for?

COTS applications including fast steering mirrors, magnetic bearing active control, shaft vibration, image stabilization, and adaptive optics — across small-satellite, semiconductor, military/aerospace, and UAV sectors.