Other Electronic Prediction Method Programs
ARP-1.0 (Automotive Reliability Prediction Program) (Powertronic Systems)
ARP implements the prediction models defined by the Society of Automotive
Engineer's Technical Paper 870050. These models are based on empirical
data analysis performed by IIT Research Institute on automotive data collected
by the SAE Reliability Standards Committee. The models that ARP implements
include duty cycles for operating, dormant, and non-operating failures
as well as factors for evaluation of system level infant mortality corrections.
This program addresses the reliability needs of the automotive design engineer.
Bellcore ARPP (Bellcore Technology Licensing)
Automated Bellcore method of reliability part stress prediction.
Belstress (Mitchell & Gothier)
Reliability prediction to Bellcore method, features: error checking, default
values, hierarchical structure, accepts hybrids. Parts/subsystems need
only to be entered once, automatic part entry from libraries and databases,
full help facilities, accepts nonstandard parts, instant display of failure
rates, notepad facilities, easy to use menus and forms, trade-off studies,
"Non servicing affecting", exclusions, repair category designations, a
wide variety of output options.
The MTBF prediction module is one of the basic modules that are required
to construct the CARE® integrated design environment.
The tool provides capabilities to construct hierarchical project trees
that include functional blocks and components data. Project tree of 1000
components can be put together in less then an hour.
MTBF predictions are then performed, using a full set of reliability
methods and environments. The CARE® tool includes a library of components
with full reliability data.
The CARE® tool provides a very flexible environment for reliability
prediction.
Predict Failure Rates of components in accordance with the well known
standard: Bellcore.
The MTBF prediction module is one of the basic modules that are required
to construct the CARE® integrated design environment.
The tool provides capabilities to construct hierarchical project trees
that include functional blocks and components data. Project tree of 1000
components can be put together in less then an hour.
MTBF predictions are then performed, using a full set of reliability
methods and environments. The CARE® tool includes a library of components
with full reliability data.
The CARE® tool provides a very flexible environment for reliability
prediction.
Predict Failure Rates of components in accordance with the well known
standard: HRD5.
The MTBF prediction module is one of the basic modules that are required
to construct the CARE® integrated design environment.
The tool provides capabilities to construct hierarchical project trees
that include functional blocks and components data. Project tree of 1000
components can be put together in less then an hour.
MTBF predictions are then performed, using a full set of reliability
methods and environments. The CARE® tool includes a library of components
with full reliability data.
The CARE® tool provides a very flexible environment for reliability
prediction.
Predict Failure Rates of components in accordance with the well
known standard: CNET.
FNPRD-3 (Nonelectronic Parts Reliability Data) (Reliability Analysis Center)
This program allows searches to be conducted on various data fields with
the results of searches either displayed or printed. Files are stored in
a dBase III format. The use of dBase III allows the user to modify the
database if necessary.
Hardstress (Mitchell & Gothier)
Reliability prediction in accordance with HRD4.
MDR-21A Data (Reliability Analysis Center)
This program contains electronic field experience data. Database allows
user to conduct custom searches on selected fields and either display or
print the results. Files are in dBase III format.
NPRD-95 (Reliability Analysis Center)
Extensive collection of reliability data on mechanical, electromechanical
and electronic part types and assemblies. Contains failure rate data on
over 25,000 individual parts. Includes part summaries, part details, data
sources, part number/mil number index, national stock number index with
federal stock class prefix, national stock number index without federal
stock class prefix, and part description index. Is a complement to MIL-HDBK-217
in performing reliability analyses of system designs.
PC COMMERCIAL (Management Sciences)
Bellcore reliability prediction. Features menu-driven data loader, interactive
component failure rate generation, graphic front-end and database manager,
extensive standard PC electronic parts database, equipment failure rate
for infant mortality and steady state periods, sensitivity analysis, user-defined
burn-in and test evaluation. Outputs steady state and first year estimates
for parts, % contribution to failure rate totals, excluded and nonapplicable
parts lists.
R1 (includes R1-Lite, R1-Engine, R1-Professional and WinR1) (Systems Exchange)
R1 provides both parts count and full stress prediction methods according
to virtually any reliability standard or model including MIL-HDBK-217E
and F, Bellcore, DTRC-90/010 (mechanical reliability) and the AT&T
model. R1 can also generate reliability reports on parts, assemblies and
systems. R1 is supported by a complete parts catalog manager. R1 includes
data on nearly 100,000 piece-parts. In addition to reliability prediction,
R1 provides a sophisticated range of reliability model options, including
K of N redundancy with standby or active state and with or without repair
of failed components.
RAM Commander - Bellcore 6, CNET, BT (ALD)
RAM Commander is the world pioneering software providing everything
for reliability prediction based on any one of the prediction models for
electronic (MIL-HDBK-217, Bellcore, British Telecom, French Telecom,
ItalTel, etc.), as well as mechanical and electro-mechanical equipment
. RAM Commander performs additional tasks related to reliability analysis
and evaluation: Reliability Allocation, Pareto Analysis, Reliability Growth,
Temperature curve, Mission Profile, RBD with Monte Carlo Simulation, Spare
Parts Optimization, Maintainability Prediction, comprehensive parts libraries,
user-friendly interface and easy to use Import/ Export (including to/from
FMECA and FMEA).
RBC (Industrial Reliability Prediction Program) (Powertronic Systems)
Implementation of the Bellcore reliability prediction method for parts,
units, sub-units, and systems. Features include provisions for system structure
input and editing, component data input and editing, defaults for component
reliability calculations, part/assembly/system failure rate calculation,
generation of predefined reports for part/assembly/system reliability,
utilities for computer system management.
Relex Bellcore provides reliability calculations per the latest versions
of the Bellcore/Telcordia reliability prediction procedure in a user-friendly
environment. Highly acclaimed by both reliability experts and novices,
Relex Bellcore provides the necessary tools for performing your analyses.
Capabilities include a user friendly interface, powerful CAD Import/ExportWizard,
comprehensive parts libraries containing tens of thousands of parts, scientific
graphs, visual report designer, spelling checker, trade studies, VBA macros,
and much more. Relex is the industry leading R&M software package and
incorporates MIL-HDBK-217, Bellcore, and Mechanical Reliability Predictions,
graphical Reliability Block Diagrams, FMEAs, FMECAs, Maintainability Predictions,
RCM and Life Cycle Cost analyses, and Fault Tree analyses in one completely
integrated tool.
Electronic reliability analysis based upon prediction models from the French
Centre National D'Etudes Des Telecommunications standard. Uses simplified
reliability analysis with average data values.
Performs reliability analyses on electronic systems per the French document
"Recueil de donnees de fiabilite du CNET". It provides a state-of-the-art
user interface with extensive hypertext help, bar, pie, and line scientific
graphics, large parts libraries, CAD interface, defaults and derating analysis,
system modeling and redundancy capabilities.
VPRED (VHSIC Reliability Prediction Software) (Reliability Analysis Center)
Reliability prediction tool addressing VHSIC and VHSIC-like large-scale
CMOS devices. VPRED is based on models presented in RADC-TR-89-177, "VHSIC
/ VHSIC-like Reliability Prediction Modeling".
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