PCIe 5.0 Controller supporting Endpoint, Root Port, Switch, Bridge and advanced features
eMemory announces industry's first and only Green High Density OTP solution
Hsinchu, Taiwan -- July 07, 2010 -- eMemory, a world leading NVM IP vendor, today announces the industry’s first and only 0.18um/3.3V Green High Density OTP solution as an enthusiastic and immediate response to the semiconductor industry’s recent call for green energy and environmental protection. By its supreme device development ability, eMemory has invented this unique technology to help customer reduce nearly 30% manufacturing cost and a large amount of energy consumption. The Green High Density OTP is particularly suitable for high density required applications, often in consumer electronics products, such as speech/voice ICs, remote control ICs, MCU and touch panel etc. eMemory’s Green High Density OTP solution is now available in Taiwan and China’s world class foundries, and going to extend rapidly to all process nodes, offering customers more and flexible capacity planning options.
The latest technology breakthrough brought by Green High Density OTP is a delightful outcome of eMemory’s market research, which discerns that most control ICs in consumer electronic products do not really require 1.8V device that has been a standard yet redundant built-in one. Following such market insight, eMemory’s Green High Density OTP is designed without 1.8V but only with 3.3V, helping customers simplify the overall design process and reduce mask layers from 27, as typically required, down to less than 15 mask layers. Not only could it largely cut down manufacturing cost by nearly 30%, but also reduce energy consumption, in response to the Semiconductor industry’s recent advocate of Green Energy and Environmental Protection. Moreover, Green High Density OTP’s cell size is 50% smaller than the original 0.18um OTP and can provide much higher density memory block, up to 10 Mbits, to increase customers’ wafer production efficiency as well as enhance customers’ product features with a much bigger storage to stay competitive in the market.
The Green High Density OTP builds on the expertise that eMemory gained with its core technology Neobit – the industry’s most proven and reliable embedded NVM OTP IP. Its cell structure is as simple and easy to port, and has been successfully introduced into more than 30 product designs at a very high and stable yield. In addition to creating the best cost benefit for the customer, eMemory is highly concerned with the global environmental issues. Being part of the electronics and semiconductor industries, eMemory, together with fellow industry members, will keep making contribution to energy saving and carbon emission reduction with honor and humanity.
|
||||||
Related News
- eMemory's Security-Enhanced OTP Qualifies on TSMC N5A Process Specializing in High-Performance Automotive Chips
- eMemory's Security-Enhanced OTP Qualifies on TSMC N4P Process, Pushing Forward in High-Performance Leading Technology
- eMemory's Security-enhanced OTP Qualifies on TSMC N5 Process and Continues to Tackle Automotive Solutions
- eMemory's Security-Enhanced OTP IP Qualified on TSMC N6 Process
- Mentor's High Density Advanced Packaging solution certified for Samsung Foundry's most advanced packaging process
Breaking News
- RISC-V International Promotes Andrea Gallo to CEO
- See the 2025 Best Edge AI Processor IP at the Embedded Vision Summit
- Andes Technology Showcases RISC-V AI Leadership at RISC-V Summit Europe 2025
- RISC-V Royalty-Driven Revenue to Exceed License Revenue by 2027
- Keysom Unveils Keysom Core Explorer V1.0
Most Popular
- RISC-V International Promotes Andrea Gallo to CEO
- See the 2025 Best Edge AI Processor IP at the Embedded Vision Summit
- Andes Technology Showcases RISC-V AI Leadership at RISC-V Summit Europe 2025
- Ceva, Inc. Announces First Quarter 2025 Financial Results
- Cadence Unveils Millennium M2000 Supercomputer with NVIDIA Blackwell Systems to Transform AI-Driven Silicon, Systems and Drug Design
|
|
E-mail This Article |
|
Printer-Friendly Page |











