Saber 

Saber Accelerates Robust Design 

Focus: Manage mechatronic complexity by accelerating Robust Design via simulation
  • Automotive (mid-class car) -- 50+ microprocessors, 100+ sensors, 30+ electrical subsystems
  • Aerospace (A380) -- 530km of wires, 100,000 cable sections, 40,300 connectors

Results for OEMs and supply chain:
  • Optimize system for performance, reliability, and cost
  • Reduce effects of variation
  • Bound worst case behavior
  • Repeatable processes – create 10,000s of virtual prototypes

 
  • Industries & Applications
  • Featuring the automotive and aerospace markets 

Automotive
Robust Design solutions for vehicle power networks, in-vehicle networks (IVN) such as FlexRay, powertrain systems, and wire harness design & simulation.
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Aerospace
Advanced capabilities for Robust Design and worst-case analysis (WCA) for power systems, avionics, flight controls, and wire harness design & simulation.
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  • Methodologies
  • Advanced simulation methods for improved design reliability 

Robust Design / DFSS
Saber advances the proven development philosophy of Robust Design which is focused on achieving target reliability.
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Wire Harness Design & Simulation
Saber Harness provides proven design and verification capabilities in conjunction with the Saber Simulator to create correct-by-design wire harnesses.
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Mechatronic Design & Simulation
Virtually all design systems depend on the integration of electrical, mechanical, and software technologies to control or replace mechanical operations.

  • Capabilities
  • Advanced methods for design reliability 

VHDL-AMS
Saber provides extensive coverage of IEEE standard modeling language VHDL-AMS and leadership on the Steering Committee of the VHDL-AMS Working Group.


Modeling
Accurate models and modeling tools are critical for system simulation. Saber’s VHDL-AMS & MAST model libraries and modeling tools provide tremendous value.


Simulation & Analysis
Engineering teams achieve stringent performance and reliability goals by applying systematic modeling, design, simulation, and analysis methods.


Design Entry
Saber Sketch provides the efficiency of a rich symbol library and lookup utility with advanced schematics design.

  • Increase reliability for mechatronic systems, PCBs & wire harnesses
  • Implement Robust Design analyses such as stress, sensitivity, Monte Carlo, etc.
  • Quickly create a virtual system design
  • Reduce the need for physical prototypes
  • Increase model portability with language standards VHDL-AMS & MAST
  • Ensure accuracy by accessing a library of 30,000+ models
  • Create models quickly with model characterization tools
  • Protect intellectual property with model encryption
  • Integrate with popular 3D CAD tools (Catia V5, Siemens(UGS), Pro/E)
  • Verify hardware/software interaction with co-simulation
  • Integrate: MATLAB/Simulink, Zuken, Mentor Graphics, Cadence, Synopsys VCS
  • Use grid computing to minimize time for compute intensive statistical analyses

By using Saber to implement a Robust Design methodology, design project teams achieve target reliability, while optimizing the design for performance and cost. The reliability and cost problems associated with over/under-design are avoided and the project schedule is shortened because hardware prototype iterations are reduced or eliminated.

Saber Automotive Applications Solutions
  • In-vehicle Networks (FlexRay, CAN, LIN)
  • Power Networks
  • Powertrain & Electric / Hybrid-Electric Vehicle (EV / HEV)
  • Wire Harness

Saber Aerospace Applications Solutions
  • Avionics Networks
  • Power Networks & Power Conversion
  • Flight Control Systems
  • Wire Harness

Synopsys Automotive Industry Solutions
  • IC
  • IC Manufacturing
  • Embedded Software
  • FPGA
  • PCB
  • Systems
Benefits of Robust Design Methodology
  • Improve ROI
    • Reduce need for physical prototypes (time and $$)
  • Reduce time to market
    • Eliminate design problems early (no ECOs on production line)
  • Improve Product Quality
    • Reduce product recalls and field failures
  • Manage supply chain using same principles
    • Recursive benefits based in modeling methodology

Saber Advantages
  • Efficient implementation of all Robust Design analyses
  • Fast virtual system design supported by 30,000+ models
  • Compute intensive statistical analyses performed with grid computing
  • Accurate model creation with model characterization tools
  • Increased model portability with standards MAST & VHDL-AMS
  • Intellectual property protected with model encryption

Article: Improving System Reliability Using the Saber Simulator in a Robust Design Flow

WebEx (55 min): Using Simulation to Implement a Robust Design Flow

SAE Paper:
Designing Automotive Subsystems Using Virtual Manufacturing and Distributed Computing (GM)

Model Language Standards and Encryption: MAST and VHDL-AMS
VHDL-AMS and MAST provide for comprehensive simulation and portability to other design teams or companies in the development cycle. The ability to encrypt these models is crucial for protecting intellectual property.

Saber Models: Analog/Mixed-Signal, Multi-Level, and Multi-Domain
Comprehensive simulation requires the flexibility to model a wide range of component types at various levels of abstraction. Abstraction levels range from high-level architectural models to detailed behavioral models that mimic the physical attributes of the actual device. Model domains include electrical, mechanical, hydraulic, pneumatic, control, magnetic, thermal, optical, and more.

Saber Model Libraries
Access to existing, proven models is one of the most valuable advantages to a design team applying system simulation. Saber users have access to 30,000+ characterized models and model templates for mechatronic, semiconductor, power electronics, in-vehicle networks, and a wide range of component types. Saber Modeling Tools

Easy to use graphical model creation tools allow for fast turn-around even for those with no experience with modeling languages. Saber modeling tool categories include:


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