Cadence Spectre 19 10 063

Cadence Spectre 19.10.063
Cadence Spectre 19.10.063 | 2.7 Gb

Cadence Design Systems, Inc. , the leader in global electronic design innovation, has unveiled Spectre 19.10.063 is an advanced circuit simulator that simulates analog and digital circuits at the differential equation level.

The simulator uses improved algorithms that offer increased simulation speed and greatly improved convergence characteristics over SPICE. Besides the basic capabilities, the Spectre circuit simulator provides significant additional capabilities over SPICE. Verilog-A uses functional description text files (modules) to model the behavior of electrical circuits and other systems. Spectre RF Simulation option adds several new analyses that support the efficient calculation of the operating point, transfer function, noise, and distortion of common RF and communication circuits, such as mixers, oscillators, sample holds, and switched-capacitor filters.

Featured Enhancements
Here is a listing of some of the important updates made in the SPECTRE 19.1 release:

– Spectre X Simulator
– Dynamic Floating Node Statistical Check
– Printing Net Capacitance Value
– Printing MOSFET Terminal Capacitance Value
– Custom Fault, Random Sampling, and Distributed Processing Support in Spectre Fault Analysis

The Cadence Spectre Simulation Platform, built on an advanced infrastructure, combines industry-leading simulation engines to deliver a complete design and verification solution. It meets the changing simulation needs of designers by preserving results and IP as they progress through the design cycle—from architectural exploration, to analog and RF block-level development with flexible and reliable abstraction, including memory design, to final analog and mixed-signal full-chip verification for increased productivity and throughput.

As the industry’s leading solution for balancing high-per-formance and capacity needs with analog accuracy, the Cadence Spectre Simulation Platform encompasses multiple solvers that allow a designer to move easily and seamlessly between circuit-, block-, and system-level simulation and verification tasks. The foundation of the platform is a unified set of technologies shared by all of the simulators—the parser, device models, Verilog-A behavioral modeling, input data formats, output data formats, etc.—thereby guaranteeing consistent and accurate evaluation methods regardless of the simulator selected. In addition to the individual solvers, the Spectre simulation technology is well integrated into other

Cadence technology platforms, including Xcelium Logic Simulation, Liberate Trio Characterization Suite, Legato Reliability Solution, Virtuoso ADE Product Suite, Voltus-Fi Custom Power Integrity Solution, and the Virtuoso RF Solution, to provide the industry’s most comprehensive cross-domain simulation solutionThe Spectre Simulation Platform delivers an indus-try-leading set of technologies for a comprehensive design and verification solution that provides SPICE, radio frequency (RF), FastSPICE, and mixed-signal simulators in a unique shared licensing package. This unified solution delivers scalable performance and capacity, thus providing robust verification of analog, RF, memory, custom digital, and mixed-signal silicon realization.

This video demonstrates a new feature in AWR Design Environment V13 that provides the ability to co-simulate with Cadence Spectre designs.
Cadence enables global electronic design innovation and plays an essential role in the creation of today’s integrated circuits and electronics. Customers use Cadence software, hardware, IP and services to design and verify advanced semiconductors, consumer electronics, networking and telecommunications equipment, and computer systems. The company is headquartered in San Jose, Calif., with sales offices, design centers and research facilities around the world to serve the global electronics industry.

Product: Cadence Spectre
Version: 19.10.063 Base release
Supported Architectures: x86
Website Home Page :
Languages Supported: english
System Requirements: RHEL 6 (lnx86)
Size: 2.7 Gb







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