MEMS -> Advances, pitfalls seen with MEMS solutions
Advances, pitfalls seen with MEMS solutions
By Gail Robinson And Margaret Quan, EE Times
July 12, 2001 (7:05 p.m. EST)
URL: http://www.eetimes.com/story/OEG20010712S0072
Viewed purely as a technological solution, micro-electromechanical systems (MEMS) are clearly an important component in advanced systems design, since they often pick up where purely electronic components fall short. This week's Focus section takes a look at how MEMS are becoming a pivotal technology in communications designs. As both optical and radio-frequency components, MEMS offer advantages over optoelectronic components. For example, MEMS RF switches provide lower insertion loss, higher isolation, better linearity and lower power than solid-state switches. In optical networks, MEMS have speed-performance benefits . Despite the inherent advantages, however, there are problems. Asked what telecom OEMs think about the difficulty of working with MEMS devices, Marlene Bourne, senior analyst for MEMS at Cahner's InStat Group (Scottsdale, Ariz.), said, "We hear different things, from fabrication processes not being workable to the concern that these OEMs might have difficulty working with mechanical technologies. The truth is that now, it's still a bit of a wait-and-see." Problems and all, this week's contributors are betting on a bright future with MEMS in high-speed networks: Engineers at LightConnect Inc. (Newark, Calif.) are applying the company's diffractive MEMS in a fast variable optical attenuator designed for long-haul dense wave-division multiplexing. Solus Micro Technologies Inc. (Westlake Village, Calif.) touts the advantages of compliant polymeric materials while Integrated Micromachines Inc. (Monrovia, Calif.) has created extremely low-loss inductive torsional engine (Elite) MEMS with single-crystal silicon. See page 49 for an in-depth report on the reality behind using optical MEMS .
Related Semiconductor IP
- USB 4.0 V2 PHY - 4TX/2RX, TSMC N3P , North/South Poly Orientation
- FH-OFDM Modem
- NFC wireless interface supporting ISO14443 A and B with EEPROM on SMIC 180nm
- PQC CRYSTALS core for accelerating NIST FIPS 202 FIPS 203 and FIPS 204
- USB Full Speed Transceiver
Related White Papers
- MEMS market to grow 75-87% over five-year period, says report
- MEMS -> MEMS switch uses magnetic actuation
- MEMS -> Defects present hurdle to volume production
- MEMS -> Optical, structural roles shared on die
Latest White Papers
- FastPath: A Hybrid Approach for Efficient Hardware Security Verification
- Automotive IP-Cores: Evolution and Future Perspectives
- TROJAN-GUARD: Hardware Trojans Detection Using GNN in RTL Designs
- How a Standardized Approach Can Accelerate Development of Safety and Security in Automotive Imaging Systems
- SV-LLM: An Agentic Approach for SoC Security Verification using Large Language Models