|
|
1 INPUT / OUTPUT MEASUREMENTS [( g; R, g8 _; \0 r- R9 {
2 MAXIMUM INPUT TEST) B6 U6 L. `+ x! M
3 MAXIMUM OUTPUT VOLTAGE TEST6 _ W+ o6 W3 b
4 OUTPUT CURRENT AND POWER MEASUREMENTS (5 S):
2 W% H) [4 { H! Z3 @# g5 FULL-LOAD OUTPUT CURRENT9 \ D* b9 H' {# F$ j8 E
6 HUMIDITY CONDITIONING& j& c, X/ I& p0 P" X& o2 G
7 ENCLOSURE LEAKAGE CURRENT TEST
' A5 U3 @. |# q- _/ S0 p8 NORMAL TEMPERATURE TEST
; b8 S1 {( z$ \2 g/ Q+ {+ w9 DIELECTRIC VOLTAGE-WITHSTAND TEST* O+ ]" F/ k4 ]. V6 u7 A, j5 Z
- ABNORMAL TESTS - GENERAL
' O/ f. z0 X9 P% N7 q' h, r) C6 C3 t10 ABNORMAL TESTS - COMPONENT FAILURE TESTS
3 ]3 N5 C2 L3 I2 g& B. h11 DIELECTRIC VOLTAGE WITHSTAND AFTER COMPONENT FAILURE TESTS
" |6 \1 s8 T* V, f; u) e$ ?5 ~12 ABNORMAL TESTS - OUTPUT LOADING( ]) E! k9 u& [. X4 n* @
13 DIELECTRIC VOLTAGE WITHSTAND AFTER OUTPUT LOADING: {9 @7 ^! A Q
14 TRANSFORMER BURNOUT TEST (SWITCH MODE DESIGN)5 r$ B% O8 s7 a' P& e. ^1 E
15 DIELECTRIC VOLTAGE WITHSTAND AFTER TRANSFORMER BURNOUT TEST (SWITCH MODE DESIGN)6 _4 }" b( A/ @$ I. l
16 TRANSFORMER INSULATING MATERIALS
6 c* [ m, R4 \) ]17 CAPACITOR DISCHARGE ENERGY
: H# }6 K4 \( D# l* X- e18 BARE PWB DVW TEST5 B0 v/ C& S. F/ E" r
19 MOLD STRESS-RELIEF CONDITIONING5 {& E- D9 y- w- p/ }; k; M' F
20 IMPACT TEST (BALL) |
|