This Technical Report will provide a methodology that will facilitate the implementation of ISO/TS 21547 in all organizations that have the responsibility to securely archive electronic health records for the long term
The recommendations in this Part of BS 7254 do not apply to the care and handling of orthopaedic or other surgical instruments
cable nutation -15-5 -8 test 15e 15f Effectiveness of connector coupling devices -15-6 -8 test 15f 15g Robustness of protective cover attachment -15-7 -8 test 15g 15h Contact retention system resistance to tool application -15-8 none Part 16: Mechanical tests on contacts and terminations 16a Probe damage -16-1 -8 test 16a 16b Restricted entry -16-2 -8 test 16b 16c Contact-bending strength -16-3 -8 test 16c 16d Tensile strength (crimped connections) -16-4 -8 test 16d 16e Gauge retention force (resilient contacts) -16-5 -8 test 16e 16f Robustness of terminations -16-6 -8 test 16f 16g Measurement of contact deformation after crimping -16-7 -8 test 16g 16h Insulation grip effectiveness (crimped connections) -16-8 -8 test 16h 16i Grounding contact spring holding force -16-9 -8 test 16i 16j (Vacant) 16k Stripping force
liquid and paste forms intended for use with soft solders
This International Standard supersedes BS 4168-3:1994 which is withdrawn
Applications of statistical and related methods to new technology and product development process. Robust parameter design (RPD) Ingestion-build-47553 This Technical Report will provide1 Scope This International Standard gives guidelines for applying the optimization method of robust parameter design, also called as parameter design, an effective methodology for optimization based on Taguchi Methods, to achieve robust products. This International Standard prescribes signal to noise ratio (hereafter SN ratio) as a measure of robustness, and the procedures of parameter design to design robust products utilizing this measure. The word