Services

One of our great advantages in designing what our clients require is that we can select or blend a variety of disciplines, including mechanical and electronic, software and hardware, sometimes combining multiple generations and iterations.

To create new products for our clients, we examine all possible ramifications from preferences and precedents to manufacturing efficiency to safety, environmental, proprietary protection, and legal considerations.

To improve or enhance an existing product, we utilize forensics and reverse engineer toward a solution.

Zenon employs the following methodologies among others:

  • Software/firmware design: 4, 8, 16, and 32 bit microprocessors, using assembly, C, Visual Basic, PERL, Java, and other standard and Zenon custom-designed programming languages.
  • Electrical Design: analog, digital, microprocessor, sensor, motion, wireless (Bluetooth, 27Mz, 2.4GHz, Zigbee, RFID, others, micro-battery powered to extreme power (up to 1.6MW energy levels) and many other technologies.
  • Industrial Design Coordination
  • Mechanical Design: If required, we have the capability to design in 2-D and 3-D CAD as well as doing intricate mechanical engineering.
  • Compliance Testing and Certification: Zenon designs to meet the applicable compliance requirements, regional, national and international — from electrical(such as CE, FCC, UL, PSE, etc.), recycling (WEEE, RoHS, plastic marking, packaging materials), government certifications (NSA, FDA for lasers, IATA for air shipping) to shipping (such as battery certifications).
  • Manufacturing and Product Sourcing: We currently work with vendors in the USA, China, Taiwan, Singapore, Indonesia, Malaysia and elsewhere. Because of our many years of experience and contacts in the Far East we can build high volume production (exceeding 1M units per year), medium volume production (1000 to 10,000 units per year, and even low volume (less than 500 units per year). We typically work with our customers and vendors during tooling, production start-up, initial production, the design and construction of production test equipment, and in some cases, over the entire product life to help make the project flow smoothly.