A multi-class, three-axis precision rate table designed to simulate vibration and precise slow motion while maintaining high pointing accuracy. It is frequently utilized as a Flight Motion Simulator (FMS) in Hardware-In-The-Loop (HWIL) simulation environments.
Inner roll, middle pitch, and outer yaw axes with continuous angular freedom.
Frequently utilized as a Flight Motion Simulator in Hardware-In-The-Loop environments.
Inner-axis acceleration reaches ±10,000°/s²; middle and outer axes reach ±1,500°/s² and ±500°/s².
ACCUDYNA controller with GUI, RS232/RS422 interfaces, and UDP via LAN up to 1 kHz as an option.
The FDA-332-STD is intended for development, production, in-process testing, calibration, and final inspection of inertial components and instruments. The catalog specifically lists high-precision MEMS sensors at FOG performance level, medium and large INSs, IMUs and IRUs belonging to the FOGs class, as well as stabilized optical sights and star trackers.
The product is designed around three axes and three degrees of freedom. The middle-axis gimbal uses a U-shaped design to provide unobstructed optical access to the tabletop, while the middle and outer axes use stow locks to facilitate safe loading and unloading of the UUT. Precision pre-loaded angular contact ball bearings permit load capacities of up to 25 kg. All systems are supplied with the necessary interconnecting cables and mating connectors for customer interface. Using T-Nut levelers, the rate table can be aligned in two directions.
The drive system combines direct-drive brushless torque motors, absolute optical encoders, precision pre-loaded angular contact ball bearings, a precision-machined tabletop, precision-bored bodies, and slip-ring assemblies.
Inner roll, middle pitch, and outer yaw provide three continuous degrees of freedom.
The catalog specifies direct-drive brushless torque motors as part of the high-reliability servo architecture.
Absolute optical encoders are directly mounted to the axes to provide high-precision positioning performance.
Slip rings with power rings and shielded signal rings provide electrical access to the UUT and support continuous-rotation simulation.
Independent axis capabilities from the FDA-332-STD standard parameter sheet.
50 Hz bandwidth · ±10,000°/s² acceleration · 42 N·m torque
20 Hz bandwidth · ±1,500°/s² acceleration · 115 N·m torque
10 Hz bandwidth · ±500°/s² acceleration · 637 N·m torque
Control and readout functions are managed by the ACCUDYNA controller and can be configured around the customer's application. Position, rate, and acceleration may be controlled manually through the GUI or remotely through RS232/RS422 computer interfaces.
The catalog positions FDA-332-STD as a three-axis precision test system for development, production, in-process testing, calibration, and final inspection.
Frequently utilized as an FMS in Hardware-In-The-Loop simulation environments.
Designed for development and production activities involving precision inertial components.
In-process testing is explicitly listed among the intended uses for inertial components and instruments.
Precision position and rate capability for calibration of inertial components and instruments.
Used for final inspection of inertial components and instruments.
Catalog-listed UUTs include FOG-level MEMS, INSs, IMUs, IRUs, stabilized optical sights, and star trackers.
Values below are transcribed from the FDA-332-STD Version F parameter sheet.
Open the official two-page ACCUDYNA catalog for the product overview, system architecture, options, and complete parameter sheet.
The FDA-332-STD catalog lists customer-configurable options around communications, the UUT interface, and tabletop configuration.
UDP via LAN up to 1 kHz
Special slip ring configurations
Custom-designed tabletops
Wide variety of slip ring capsule designs and wiring schematics
Answers are limited to information supported by the catalog.
Contact ACCUDYNA to discuss application-specific rate, positioning, loading, interface, and tabletop requirements.
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