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Berkeley Design Automation Launches Analog FastSPICE(TM) and RF FastSPICE(TM); Tools Deliver Full-SPICE Accuracy at 5X-10X Performance without Tuning.


SANTA CLARA, Calif. -- Berkeley Design Automation Inc., provider of Precision Circuit Analysis(TM) technology for advanced analog and RF integrated circuits, today launched two products that establish a new category of advanced circuit verification tools. Analog FastSPICE and RF FastSPICE deliver full-SPICE accuracy at 5X to 10X performance with no block-level tuning. Shattering the limits of traditional SPICE, RF, and digital FastSPICE simulators, Analog FastSPICE and RF FastSPICE provide up to an order of magnitude A change in quantity or volume as measured by the decimal point. For example, from tens to hundreds is one order of magnitude. Tens to thousands is two orders of magnitude; tens to millions is three orders of magnitude, etc.  more verification bandwidth for GHz circuits in nanometer-scale silicon technology. These products are silicon proven in wireless, networking, storage, and high-speed I/O (Input/Output) The transfer of data between the CPU and a peripheral device. Every transfer is an output from one device and an input to another. See PC input/output.

I/O - Input/Output
 applications.

Analog/RF circuits are both the biggest differentiator and the most difficult design challenge in today's integrated circuits (ICs). Running at GHz frequencies and implemented in nanometer-scale CMOS (Complementary Metal Oxide Semiconductor) Pronounced "c-moss." The most widely used integrated circuit design. It is found in almost every electronic product from handheld devices to mainframes.  silicon processes, these circuits introduce a new class of verification problems that SPICE, RF, and digital FastSPICE simulators simply cannot address. Existing tools are too slow, are not accurate enough, or require days or weeks of experimentation with options. The solution is a new category of tools called precision FastSPICE - tools that provide transient and periodic analysis with full accuracy, 5X to 10X performance, and require no tuning.

Berkeley Design Automation's (BDA's) Analog FastSPICE and RF FastSPICE are the industry's first precision FastSPICE products. Combining innovative applied mathematics with advanced numerical optimization techniques, the company developed the underlying Precision Circuit Analysis technology from the bottom up, never compromising accuracy, and verifying it against silicon every step of the way. Unparalleled accuracy and performance make Analog FastSPICE and RF FastSPICE ideal for the most difficult verification tasks including large circuits that cannot converge, post-layout circuits, and extensive corner/configuration analysis.

Analog FastSPICE: Industry's First Multi-Rate Transient Engine

Analog FastSPICE utilizes the industry's first multi-rate transient engine to deliver extremely robust DC convergence, full-SPICE accuracy, and 5X to 10X performance - all without block-level tuning. The target application is any transient simulation that requires full-SPICE accuracy and would take from multiple hours to multiple weeks to run in traditional SPICE simulators. Analog FastSPICE is proven on a wide range of production circuits including full 802.11 a/b/g transceivers, sigma-delta ADCs, DTV (Digital TeleVision) Transmitting TV using digital signals. The major DTV standards are ATSC (North America), DVB (Europe) and ISDB (Japan). All three use MPEG-2 video compression and Dolby Digital audio compression. DVB and ISDB also include MPEG audio compression.  tuner automatic gain control with bandgap and bias, high-speed I/O, and post-layout multi-GHz PLLs.

"Traditional SPICE simulators are too slow for accurate functional verification of the large analog circuits in our high speed interface IC designs," said Jun-ichi Okamura, Director Business Unit I, THine Electronics, Inc. "We've tried FastSPICE tools, but it is a big challenge to find acceptable high accuracy and performance settings when running these tools. BDA's Analog FastSPICE provides us with both the accuracy of SPICE and the performance of FastSPICE, without the need to experiment with accuracy options."

RF FastSPICE: Unified Time/Frequency Analysis

RF FastSPICE adds unified time/frequency, harmonic balance, and stochastic non-linear engines to the Analog FastSPICE functionality. The result is extremely robust periodic convergence, full-SPICE accuracy, 5X to 10X performance, and VCO (1) (Voltage Controlled Oscillator) An oscillator that can be tuned over a wide range of frequencies by applying a voltage (tuning voltage) to it. Used in many applications such as radio tuners, VCOs are less costly than crystal oscillators, but not as stable.  phase noise proven within 1db relative silicon accuracy. Target applications for RF FastSPICE include any complex RF blocks (for example, multi-frequency, highly nonlinear blocks) that cannot converge in traditional RF simulators or that have greater than one hour runtime. RF FastSPICE is proven on a wide range of production circuits including 65nm PLLs, 90nm LC-tank and ring oscillator VCOs (including bandgap and bias), 130nm low-noise amplifiers (LNAs) + mixer circuits, power amplifiers, and crystal oscillators.

"At Fujitsu, our innovative product engineering teams design some of the world's most complex high-speed analog/RF and mixed-signal circuits," said Shoji shoji

In Japanese architecture, sliding partition doors and windows made of a latticework wooden frame and covered with a tough, translucent white paper. When closed, they softly diffuse light throughout the house.
 Ichino, General Manager, Technology Development Division, Electronic Devices Business Group, Fujitsu Limited. "Many of these circuits are highly nonlinear and difficult to analyze with traditional RF analysis tools. BDA's RF FastSPICE allows us to quickly and accurately analyze our toughest VCOs and PLLs, enabling our engineers to confidently tape-out their designs much faster."

Immediate Availability and Easy Integration

Analog FastSPICE and RF FastSPICE are available immediately and integrate into existing flows without modification. Both tools include full Cadence Virtuoso ADE integration, full Synopsys HSPICE and Cadence Spectre netlist compatibility, and support standard models, such as BSIM BSIM Big Sur International Marathon (California)
BSIM Berkeley Short-Channel IGFET Model
BSIM Bachelor of Science in Industrial Management
3, BSIM4, Verilog-A, and s-parameter.

"The analog and RF design community has been working with and around simulation tool limitations far too long," said Ravi Subramanian, CEO (1) (Chief Executive Officer) The highest individual in command of an organization. Typically the president of the company, the CEO reports to the Chairman of the Board.  at Berkeley Design Automation. "Analog FastSPICE and RF FastSPICE will enable design teams to deliver better silicon significantly faster and with much lower risk. Our aim is to enable significant advancements in the state-of-the-art of circuit design. That's exactly what these tools do."

About Berkeley Design Automation

Berkeley Design Automation Inc. is the recognized leader in advanced analog/RF verification. Its Precision Circuit Analysis technology combines the accuracy, performance, and robustness needed to verify GHz designs in nanometer-scale silicon. Berkeley Design Automation is the recipient of the 2006 Red Herring 100 North America Award, making it the first EDA (1) (Electronic Design Automation) Using the computer to design, lay out, verify and simulate the performance of electronic circuits on a chip or printed circuit board.  company to earn such a distinction in 5 years. Founded in 2003, the company is funded by Woodside Fund, Bessemer Venture Partners Bessemer Venture Partners is a private venture capital firm with offices in Silicon Valley, New York, Massachusetts, China, and India. It has backed such companies as Ciena, Flarion, Parametric Technologies, Skype, Staples, VeriSign and Veritas. , and Matsushita Electric Industrial. For more information, see http://www.berkeley-da.com.

PLL PLL - phase-locked loop  Noise Analyzer, Stochastic Nonlinear Engine, and Precision Circuit Analysis are trademarks of Berkeley Design Automation, Inc. Berkeley Design is a registered trademark of Berkeley Design Automation, Inc.

HSPICE is a registered trademark of Synopsys Inc. (NASDAQ NASDAQ
 in full National Association of Securities Dealers Automated Quotations

U.S. market for over-the-counter securities. Established in 1971 by the National Association of Securities Dealers (NASD), NASDAQ is an automated quotation system that reports on
:SNPS SNPS Space Nuclear Power System ). Spectre is a registered trademark of Cadence Design Systems (company) Cadence Design Systems - A company that sells electronic design automation software and services.

http://cadence.com/.

See also Verilog.
 Inc. (NASDAQ:CDNS CDNS Cadence Design Systems, Inc (stock symbol)
CDNS Climatological Data National Summary
CDNS Command Data Network System
CDNS Customer and Data Network Services (Sprint) 
).
COPYRIGHT 2006 Business Wire
No portion of this article can be reproduced without the express written permission from the copyright holder.
Copyright 2006, Gale Group. All rights reserved. Gale Group is a Thomson Corporation Company.

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Publication:Business Wire
Date:Jul 24, 2006
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