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NPL Report MATC(A) 164 Finał polishing of the samples was carried out by hand using a gamma aluminid
NPL Report MATC(A) 164 Figurę 5. Central scctioning point shows the microstructurc, but not dcvclopi
NPL Report MATC(A) 164 Cracked area Figurę 6. Crack in a SnAgCu soldcr joint after thcrmal cycling.
NPL Report MATC(A) 164 6. Mechanical Tests Mechanical tests were used to investigate the time-depend
NPL Report MATC(A) 164 The following steps were carried out: • The substratc was c
NPL Report MATC(A) 164A
NPL Report MATC(A) 164 Figurę 12. Test arrangements of resistor specimen. Figurę 13. Predicted major
NPL Report MATC(A) 164 0
NPL Report MATC(A) 164 6.3. 3-Point Bend Test In the 3-point bend test the force was applied to the
NPL Report MATC(A) 164 regime used, the solder becomes accommodating and. irreversible plastic defor
NPL Report MATC(A) 164 curves coincide for displacements less than ~125 pm. For higher levels of dis
NPL Report MATC(A) 164Crack Detection Methods for Lead-free Solder Joints Milos Duśek and Christophe
NPL Report MATC(A) 1641. Introduction In electronics assemblies components and substrates are mechan
NPL Report MATC(A) 164 simulate this “worst case” scenario, 2512-type chip resistors and FR4 substra
NPL Report MATC(A) 164 Table 1: Tested temperaturę cycling regimes within ± 4°C of the set
AC3006 International Financial Reporting Standards 2 Credit Weighting: 10 Teaching Period(s): Semest
AC4407 Financial Reporting 1 Credit Weighting: 5, Teaching Period(s): Semester 1. Pre-reąuisite(s):
108 RIKEN Accel. Próg. Rep. 24 (1990)111-5-12. Status Report of the RIKEN Swinger-Magnetic Analyzer
C. Kato et al. 117 cyclotron have already been reported,*,3) we need to measure characteristics usin
RIKEN Accelerator Progress Report mib¥mxmtaXU*xmi!i $&24# (1990) 6P ®l ¥j3c3^ (1991) 3H2O0 16 ff
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