Design and Verification (Altera)
Control logic for object detection image sensor system
Design and Simulation/Verification (Altera)
Stepper motor simulators for space satellite development
Design and Verification (Xilinx)
Custom control system for TI micromirror MEMS device
Data control and interface for MEMS SVGA display system
Control logic for DNA analysis MEMS device development fixture
Control logic for multi-laser driver system in telecom optical switch
Timing logic for optical metrology camera system
Control logic for secure timestamp system
Control logic for video transformation in home entertainment system
Design and Full Simulation/Verification (Xilinx)
SDRAM controller for DSP-based medical instrument
Design and Full Simulation/Verification (Actel)
Space satellite subsystem communication interface, servo motor controller, multi-axis stepper motor controllers (many), image processor, thermal monitoring system, thermal control system, actuator control system
Design and Verification (Lattice)
Timing control system for custom display device I/F and test system
Data synchronization system for mutli-DSP based laser writer
Timing control system for space satellite data processor simulator
Control logic for medical research signal conditioning system
Design and Verification (Philips)
Power management and system control for Traffic monitoring unit
In addition to the sampling of projects conducted at Rochester MicroSystems listed above, our team brings extensive experience from prior employment opportunities. A sampling of this expertise is summarized below:
Conversion and Full Simulation/Verification. (Altera)
ASIC to FPGA conversion
High speed image processors (several)
Imaging data path controllers (several)
Field Application Engineer (Altera)
Design assistance to many projects
Training Instructor (Altera)
Advanced VHDL and Verilog training
Design and Full Simulation/Verification (Xilinx)
Programmable System Architecture VLIW DSP processor
Gigabit Ethernet MAC
PCI system controller
Design and Verification (Lattice)
CCD controller and interface for medical diagnostic instrument
It is our hope that these examples demonstrate our understanding of the issues involved in logic development, and our ability to successfully address these issues in appropriate design solutions. |