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eXpress
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eXpress
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Assess a System’s Ability to Meet Testability & Diagnostic Requirements
Calculation of Standard Testability Metrics
Address All Levels of the Design Architecture
Incorporate Multiple Technologies into a Single System Assessment
Improve the Diagnostic Capability of a System or Design
Address the Four Main Goals of Diagnostic Engineering
Influence the Design for DFT
Influence the IVHM Design for Enhanced Sustainment Capabilities
Reduce or Eliminate Diagnostic-based NFF’s, CND’s and RTOK’s
Reduce False Alarms / System Aborts
Balance Diagnostic Design to Optimize Sustainment Alternatives
Integrate Diagnostic Engineering into Overall Product Development Process
Influence Design with ISDD
Integrate Test and Diagnostic Tools via ATML
Determine the Impact of Diagnostics upon Reliability, Maintenance & Safety
Diagnostic-Informed FMECA Assessments
Diagnostic-Informed FTA Assessments
Risk Associated with Sub-Optimal Diagnostics
Evaluate PHM as an Integrated System Capability
Evaluate PHM as an Integrated System Capability
Data Interoperability Throughout Design Development
Data Interoperability Targeting Sustainment Implementations
Generate Diagnostics for Run-Time / Maintenance
Guided Troubleshooting – Assess, Optimize and Leverage Knowledge
Deploy Diagnostics for Troubleshooting
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Systems Engineering
General
Universal Approach to MBSA
STAGE – Operational Simulation and Support Analysis Tool
When Money Not Spent is Money Not Saved
Independent Systems Engineering vs. Programmatic Systems Engineering
Selecting a Systems Diagnostic Engineering Tool
Early Functional Analysis and Allocation in the System Engineering Process
COTS – The Jagged Little Pill
Diagnostics, Prognostics and Testability
Concepts
Assumptions Inherent to PdM, CBM or RCM
Model-based Diagnostics
Pervasive Prognostics Computing
Is there Life for Prognostics after SBIRs?
A Design Environment for Legacy Test Strategies
Trade Studies, Risk Management, Simulation, Oh My!
Diagnostic Optimization of Large-Scale Systems
Putting Sensors in their Place
DFT is So Beautiful
History
Design for Testability – Origin and Evolution
The Pioneering of Testability and DFT
Testing and ATE
Ten Tips for Developing and Using Avionics Test Sets
Demonstrations
Are You Ready for EDDIE, the Embedded Diagnostic and IVHM Demonstrator?
IVHM / IPHM
Diagnostics Digital Thread using
eXpress
Test Result Correlation vs. Diagnostic Reasoning
ROI on PHM…Is it Realistic?
“PhM Disturbia”
Real-Time Fault Isolation Reasoning Impact Technologies’ ReasonPro Integrated with DSI’s
eXpress
A Prognostics Sensor Victory on the Joint Strike Fighter (JSF)
IVHM Design Using
eXpress
Diagnostics “After” Prognostics
eXpress
Software
General
Optimizing Test Strategies with
eXpress
Cost Savings by Using a Tool that Supports Hybrid Modeling
New Capabilities
Full Systems Diagnostics Design and Support Integration
Interoperability
ADSI’s New Electronic Design Automation (EDA) Import Mode
Tips and Tricks
Boundary Scan modeling in
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New Documentation: Quick Start Guide and Online Help
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Home
About Us
▼
About Company
Innovations and Milestones
Our History
Success Stories
Users Around the World
News and Events
Products
▼
ISDD Tool Suite
▼
What’s New in the ISDD Tool Suite
eXpress
▼
FMECA Plus
Prognostics Module
Maintenance Module
Fault Tree Analysis Module
Sneak Path Analysis Module
eXpressML Module
Dynamic Diagnostics Module
ISDD Module
STAGE
Run-Time Authoring Tool
▼
ATML Test Results Module
PDEL Test Results Module
Dependency Matrix Module
DSI Workbench
▼
History and Feedback Module
Database Administrator
▼
Database Report Viewer
Diagnostic Reasoners
▼
eXpress
Embedded Reasoner
Dynamic Reasoner
DSI Workbench API
Ancillary Tools
▼
eXpress
Design Viewer
Redline Publisher
TestDRIVE
ATML Pad
Solutions
▼
Assess a System’s Ability to Meet Testability & Diagnostic Requirements
▼
Calculation of Standard Testability Metrics
Address All Levels of the Design Architecture
Incorporate Multiple Technologies into a Single System Assessment
Improve the Diagnostic Capability of a System or Design
▼
Address the Four Main Goals of Diagnostic Engineering
Influence the Design for DFT
Influence the IVHM Design for Enhanced Sustainment Capabilities
Reduce or Eliminate Diagnostic-based NFF’s, CND’s and RTOK’s
Reduce False Alarms / System Aborts
Balance Diagnostic Design to Optimize Sustainment Alternatives
Integrate Diagnostic Engineering into Overall Product Development Process
▼
Influence Design with ISDD
Integrate Test and Diagnostic Tools via ATML
Determine the Impact of Diagnostics upon Reliability, Maintenance & Safety
▼
Diagnostic-Informed FMECA Assessments
Diagnostic-Informed FTA Assessments
Risk Associated with Sub-Optimal Diagnostics
Evaluate PHM as an Integrated System Capability
Evaluate PHM as an Integrated System Capability
Data Interoperability Throughout Design Development
Data Interoperability Targeting Sustainment Implementations
Generate Diagnostics for Run-Time / Maintenance
▼
Guided Troubleshooting – Assess, Optimize and Leverage Knowledge
Deploy Diagnostics for Troubleshooting
Training
▼
Standard Courses
Upcoming Classes
Support
▼
Frequently Asked Questions
Product License Configuration
On-Line Help
▼
DiagML Schema Documentation
Using the
eXpress
Design Viewer
eXpress On-Line Help
Videos
▼
Capability Overviews
Basic Skills
Advanced Skills
Process How-To’s
First Steps
Live Demos
Publications
▼
Product Literature
Newsletters
Published Articles
History of Testability
Presentations
Industry Papers
Guides & Standards
Maintenance Support
▼
eXpress
Spectrum Maintenance (20 hrs + Updates)
Basic Time Block Consulting (40 hrs LOE – Discounted Rate)
Enhanced Time Block Consulting (120 hrs LOE – Discounted Rate)
Raise A Ticket
Product Inquiries
Hardware Requirements
Contact Us