What is BS EN IEC 60749-43 - Guidelines for IC reliability qualification plans of semiconductor devices about?
BS EN IEC 60749 is an international standard covering guidelines for IC reliability qualification of semiconductor devices ensuring adherence to quality standards in semiconductor devices.
BS EN 60749-43 is the 43rd part in the multi-series. BS EN 60749-43 gives guidelines for reliability qualification plans of semiconductor integrated circuit products (ICs).
NOTE 1: BS EN IEC 60749-43 is not intended for military and space-related applications.
NOTE 2: The manufacturer can use flexible sample sizes to reduce cost and maintain reasonable reliability by this guideline adaptation based on EDR-4708, AEC Q100, JESD47 or another relevant document can also be applicable if it is specified.
NOTE 3: The Weibull distribution method used in BS EN IEC 60749-43 is one of several methods to calculate the appropriate sample size and test conditions of a given reliability project.
Who is BS EN 60749-43 - Guidelines for IC reliability qualification plans of semiconductor devices for?
BS EN 60749-43 on guidelines for IC reliability qualification plans is relevant to:
- Semiconductor device manufacturers
- Manufacturer of electronic devices
- Product design engineers
- Automobile industry
- Electrical engineers
- Fabricators
Why should you use BS EN 60749-43 - Guidelines for IC reliability qualification plans of semiconductor devices?
Qualification test plans enable the determination of appropriate reliability test conditions based on the quality standards demanded in use conditions for each application of semiconductor integrated circuits. Categories are set for automotive applications and for general applications as a target of reliability for semiconductor devices.
BS EN 60749-43 provides users guidelines on semiconductor IC vendors, assisting users in the preparation of detailed reliability test plans for device qualification.
The guidance in BS EN 60749-43, enables users to create reliable test conditions to verify the required quality standards, ensuring grading, quality, performance and stability in semiconductor devices and applications.