Liquid Instruments - PID Controller
Description
The Moku PID Controller features two fully configurable PID controllers with an output sampling rate of 10MHz, enabling them to be used in applications requiring both low and extremely high feedback bandwidths including temperature and laser frequency stabilization. The Moku PID Controller can be used as a lead-lag compensator by saturating the integral and differential controllers with independent gain settings.
Liquid Instruments - PID Controller
Specifications |
|
---|---|
Number Of Channels: | 2 |
Input Impedance: | 50 Ohm, 1 MOhm |
Maximum Bandwidth: | 100 KHz |
Input/Output Offset Range: | -1-1V |
Offset Precision: | 100 microV |
Features
2 channels with optional blending for MIMO systems
760 ns input-output latency
± 60 dB gain range
50 Ω / 1 MΩ input impedance
25 MHz update rate
Independently adjustable input and output offsets
Design your control system's frequency response using the interactive Bode plot
Block diagram view of the digital signal processing with built-in probe points for signal monitoring
2 input channels, 2 output channels with control matrix for blending inputs
Includes single or double integrators and differentiators with low- and high-frequency gain saturation
Applications
For pricing, technical or any other questions please contact the supplier
- No registration required
- No markups, no fees
- Direct contact with supplier
-
Ships from:
United States
-
Sold by:
-
On FindLight:
since 2018
Frequently Asked Questions
The Moku PID Controller has an output sampling rate of 10MHz.
The Moku PID Controller can be used in applications such as temperature and laser frequency stabilization, signal control, electronics, thermal, laser optics, and other applications.
The Moku PID Controller features 2 channels with optional blending for MIMO systems.
The Moku PID Controller has a 760 ns input-output latency.
Yes, the Moku PID Controller can be used as a lead-lag compensator by saturating the integral and differential controllers with independent gain settings.