Pentad Design
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Pentad Design
Pentad Design was founded in 2003 by a team of enterprising and innovative engineers with more than 25 years in medical, consumer, commercial and industrial embedded systems design. We have applied our wide-ranging experience in embedded systems design to create and implement cutting edge technology for our customers.

Pentad Design has implemented an impressive body of work. Our numerous patents and steady stream of repeat clients and referrals testifies to the quality of our engineering skills. Many of our clients have been acquired by larger corporations due in part to their successes from the work we have performed for them.
Services
Working closely with our customer's engineering team, Pentad Design co-developed a creative embedded hardware and software solution for a new and novel method to record vibration and crash test data in extreme environments. These miniature stackable modules can be added together for different channel count and sensor input needs.
Working closely with our client's mechanical and industrial design teams, Pentad Design developed the hardware and firmware for an obturation device used by endodontists during root canal procedures. The Dental Device synthesizes complex stimulus output waveforms, synchronously alt tagreads back the response waveform then rapidly executes customized algorithms to present a real-time display.
Pentad developed the hardware and software and unique form factor PCBA for a TENS, (Transcutaneous Electrical Nerve Stimulation) device. This hand-held device is used to provide electrical impulses that block or reduce pain signals going to the spinal cord or brain. The battery operated device contains outputs for the leads that house the electrodes.
Pentad designed, fabricated and installed a portable test fixture for use in a medical device laboratory. A PLC and touchscreen enable the user to control the system. The device measures flow rate and pressure of a Device Under Test (DUT) and under a wide range of test conditions. Pentad designed and fabricated custom machined parts and along with off the shelf components assembled and tested the system.
We designed the electronics and firmware for a nerve-stimulation device that enables control of a clinically obese patient's eating habits. We designed a Class III prototype unit with a titanium enclosure and stimulation leads. The device is implantable and the stimulation leads attach to the vagus nerve which prompts the user to control their eating and drinking behavior.
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