HWS150A EVALUATION DATA

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1 EALUATION DATA TDK-Lambda A A

2 INDEX 1. Evaluation Method PAGE 1.1 Circuit used for determination 1 Circuit 1 used for determination... T-1 Steady state data Warm up voltage drift characteristics Hold up time characteristics Output rise characteristics Output fall characteristics Over current protection (OCP) characteristics Over voltage protection (OP) characteristics Dynamic line response characteristics Response to brown out characteristics Input current waveform 2 Circuit 2 used for determination... T-1 Dynamic load response characteristics 3 Circuit 3 used for determination... T-2 Inrush current waveform 4 Circuit 4 used for determination... T-2 Leakage current characteristics 5 Circuit 5 used for determination... T-2 ON/OFF Output rise, fall characteristics with ON/OFF Control 6 Circuit 6 used for determination... T-3 Output ripple and noise waveform Configuration used for determination... T-3 EMI Electro-Magnetic Interference characteristics (a) ( Conducted Emission (b) ( Radiated Emission 1.2 List of equipment used... T-4 TDK-Lambda

3 2. Characteristics 2.1 Steady state data (1) Regulation - line and load, Temperature drift / Start up voltage and Drop out voltage... T-5 (2) Ripple noise voltage vs. Input voltage... T-6 (3) Efficiency and Power factor vs. Output current... T-7 (4) Input power vs. Output current... T-8 (5) Input current vs. Output current... T Warm up voltage drift characteristics... T Hold up time characteristics... T Output rise characteristics.... T Output fall characteristics... T ON/OFF * Output rise, fall characteristics with ON/OFF Control... T Over current protection (OCP) characteristics... T Over voltage protection (OP) characteristics... T Dynamic line response characteristics... T Dynamic load response characteristics... T Response to brown out characteristics... T Inrush current waveform... T Input current harmonics... T Input current waveform... T Leakage current characteristics... T Output ripple and noise waveform... T OFF * Input power and Input current vs. Input voltage with Remote control OFF... T EMI Electro-Magnetic Interference characteristics... T * -*/R For alternative standard model -*/R Terminology used Definition... Input voltage out... Output voltage Iin... Input current Iout... Output current Ta... Ambient temperature f... Frequency TDK-Lambda

4 1. Evaluation Method 1.1 Circuit used for determination 1 Circuit 1 used for determination Steady state data Warm up voltage drift characteristics Hold up time characteristics Output rise characteristics Output fall characteristics Over current protection (OCP) characteristics Over voltage protection (OP) characteristics Dynamic line response characteristics Response to brown out characteristics Input current waveform Digital power meter Power supply SW1 A W P.S. + Load Current probe - Controlled temp. chamber Shunt res. 2 Circuit 2 used for determination Dynamic load response characteristics SW1 Digital power meter A W + Dynamic dummy load Load 1 Power supply P.S. Load 2 Output current waveform Iout 50% <==> 100% - 100% 95% 55% 50% Min Shunt res. tr tf TDK-Lambda T-1

5 3 Circuit 3 used for determination Inrush current waveform Digital power meter Slide Reg. Dynamic dip simulator A W P.S. + Load - Current probe Shunt res. 4 Circuit 4 used for determination Leakage current characteristics Digital power meter Power supply Isolation trans Leakage current meter A W P.S. + Load FG - Shunt res. FG FG 5 Circuit 5 used for determination ON/OFF Output rise, fall characteristics with ON/OFF Control -*/R For alternative standard model -*/R Digital power meter SW1 A W + Power P.S. Load - -R +R Shunt res. SW2 TDK-Lambda T-2

6 6 Circuit 5 used for determination Output ripple and noise waveform Digital power meter SW1 A W + Oscilloscope Bandwith : 100MHz Power supply P.S. Load - Coaxial Cable 1.5m 50 R R : 50 C1 : 4700pF Ceramic cap. Configuration used for determination EMI Electro-Magnetic Interference characteristics (a) ( Conducted Emission EMI Test receiver spectrum analyzer AMN 50 /50uH D.U.T.(Earthed) D=80cm Aluminum plate D=40cm (2m 2m) ertical ground reference plane Power cable Stand H=80cm Horizontal ground plane Power supply (b) ( Radiated Emission D=3m EMI Test receiver spectrum analyzer pre amp. D.U.T.(Earthed) Aluminum plate Antenna Turn table Stand H=80cm Horizontal ground plane Power supply TDK-Lambda T-3

7 1.2 List of equipment used EQUIPMENT USED MANUFTURER MODEL NO. 1 DIGITAL STORAGE OSCILLOSCOPE YOKOGAWA ELECT. DL9040L / DLM DIGITAL MULTIMETER AGILENT 34970A 3 DIGITAL POWER METER HIOKI DIGITAL POWER METER YOKOGAWA ELECT. WT110 / WT210 5 CURRENT PROBE YOKOGAWA ELECT / DYNAMIC DUMMY LOAD TAKASAGO FK-400L / FK-600L 7 DYNAMIC DUMMY LOAD KIKUSUI PLZ1004W / PLZ150U 8 DUMMY LOAD PCN PHF250 SERIES 9 ISOLATION TRANS MATSUNAGA 3WTC-50K 10 CCF TAKASAGO AA2000XG 11 CCF KIKUSUI PCR4000L 12 CCF NF ES10000S 13 LEAKAGE CURRENT METER HIOKI DYNAMIC DIP SIMULATOR TAKAMISAWA PSA CONTROLLED TEMP. CHAMBER ESPEC SU-261 / SH EMI TEST RECEIER / SPECTRUM ANALYZER ROHDE & SCHWARZ ESCI 17 PRE AMP. SONOMA 310N 18 AMN SCHWARZBECK NNLK ANTENNA SCHWARZBECK CBL6111D 20 HARMONIC / FLICKER ANALYZER KIKUSUI KHA SINGLE-PHASE MASTER NF REFERENCE IMPEDANCE NETWORK 20A NF MULTI OUTLET UNIT KIKUSUI OT01-KHA TDK-Lambda T-4

8 2. Characteristics 2.1 Steady state data (1) Regulation - line and load, Temperature drift / Start up voltage and Drop out voltage 1. Regulation - line and load Condition Iout \ line regulation 0% m 0.000% 50% m 0.000% 100% m 0.000% load regulation 6m 6m 6m 6m 0.120% 0.120% 0.120% 0.120% 2. Temperature drift Conditions : 100 Ta temperature stability out m 0.100% 3. Start up voltage and Drop out voltage Conditions Start up voltage () 76 Drop out voltage () Regulation - line and load Condition Iout \ line regulation 0% m 0.008% 50% m 0.008% 100% m 0.000% load regulation 1m 1m 1m 0m 0.008% 0.008% 0.008% 0.000% 2. Temperature drift Conditions : 100 Ta temperature stability out m 0.125% 3. Start up voltage and Drop out voltage Conditions Start up voltage () 7 Drop out voltage () Regulation - line and load Condition Iout \ line regulation 0% m 0.004% 50% m 0.000% 100% m 0.004% load regulation 5m 6m 6m 6m 0.021% 0.025% 0.025% 0.025% 2. Temperature drift Conditions : 100 Ta temperature stability out m 0.358% 3. Start up voltage and Drop out voltage Conditions Start up voltage () 76 Drop out voltage () 57 TDK-Lambda T-5

9 (2) Ripple noise voltage vs. Input voltage Conditions Iout: 100 % Ta : Input voltage () Input voltage () Input voltage () TDK-Lambda T-6

10 (3) Efficiency and Power factor vs. Output current Conditions : TDK-Lambda T-7

11 (4) Input power vs. Output current Conditions : Input power Iout : 0% 8 4.5W W W W 12 Input power Iout : 0% 8 1.6W W W W 24 Input power Iout : 0% 8 1.8W W W W TDK-Lambda T-8

12 (5) Input current vs. Output current Conditions : Input current Iout : 0% A A A A 12 Input current Iout : 0% A A A A 24 Input current Iout : 0% A A A A TDK-Lambda T-9

13 Warm up voltage drift characteristics Hold up time characteristics 0.4 Conditions : 100 Conditions : Time (hours) Time (hours) Time (hours) 10 TDK-Lambda T-10

14 2.4 出力立ち上がり特性 Output rise characteristics Conditions : 85 (A) 100 (B) 200 (C) 265 (D) Iout : 0% Iout : 100% DC BA DC BA out 0 2/DI 200ms/DI 2/DI 200ms/DI 12 DC BA Iout : 0% Iout : 100% DC BA out 0 /DI 200ms/DI /DI 200ms/DI 24 DC BA Iout : 0% Iout : 100% DC BA out 0 10/DI 200ms/DI 10/DI 200ms/DI TDK-Lambda T-11

15 2.5 Output fall characteristics Conditions : 85 (A) 100 (B) 200 (C) 265 (D) Iout : 0% Iout : 100% ABCD ABCD out 0 2/DI 5s/DI 2/DI 20ms/DI 12 ABCD Iout : 0% Iout : 100% ABCD out 0 /DI 10s/DI /DI 20ms/DI 24 ABCD Iout : 0% Iout : 100% ABCD out 0 10/DI 10s/DI 10/DI 20ms/DI TDK-Lambda T-12

16 2.6 ON/OFF Output rise, fall characteristics with ON/OFF Control Conditions : 100 -*/R For alternative standard model -*/R out 0 ON/OFF Control 2/DI 20ms/DI 2/DI 10ms/DI 12 out 0 ON/OFF Control /DI 20ms/DI /DI 10ms/DI 24 out 0 ON/OFF Control 10/DI 20ms/DI 10/DI 10ms/DI TDK-Lambda T-13

17 Over current protection (OCP) characteristics Over voltage protection (OP) characteristics 6 Conditions : 100 Conditions : 100 Ta : -10 Iout : 0 % OP Point out /DI 5s/DI OP Point out /DI 10s/DI OP Point out /DI 10s/DI TDK-Lambda T-14

18 2.9 Dynamic line response characteristics Conditions : (A) (B) out (A) out (B) 12 50m/DI 500ms/DI out (A) out (B) 24 50m/DI 500ms/DI out (A) out (B) 50m/DI 500ms/DI TDK-Lambda T-15

19 2.10 Dynamic load response characteristics Conditions : 100 Iout : 50 % 100 % (tr = tf = 50us) f = 100Hz f = 1kHz out Iout Iout:0% 100m/DI 2ms/DI +1.67% -1.89% 100m/DI 200 s/di +1.69% -1.82% 12 f = 100Hz f = 1kHz out Iout Iout:0% 100m/DI 2ms/DI +0.30% -0.32% 100m/DI 200 s/di +0.28% -0.30% 24 f = 100Hz f = 1kHz out Iout Iout:0% 100m/DI 2ms/DI +0.16% -0.21% 100m/DI 200 s/di +0.16% -0.21% TDK-Lambda T-16

20 2.11 Response to brown out characteristics Conditions Interruption time A : Output voltage does not drop. B : 0 Output voltage drop down not reaching 0. C : 0 Output voltage drops until 0. : 100 A = 31ms B = 37ms C = 38ms A B C out : 200 A = 32ms B = 38ms C = 40ms A B C 0 2/DI 50ms/DI 2/DI 50ms/DI 12 : 100 A = 33ms C = 34ms A C out : 200 A = 34ms C = 35ms A C 0 /DI 50ms/DI /DI 50ms/DI 24 : 100 : 200 A = 31ms B = 38ms C = 39ms A = 32ms B = 43ms C = 44ms A B C A B C out 0 10/DI 50ms/DI 10/DI 50ms/DI TDK-Lambda T-17

21 2.12 Inrush current waveform Switch on phase angle of input voltage = 0 Conditions : 100 Switch on phase angle of input voltage = 90 Iin 5A/DI 100ms/DI 5A/DI 100ms/DI Switch on phase angle of input voltage = 0 Conditions : 200 Switch on phase angle of input voltage = 90 Iin 10A/DI 100ms/DI 10A/DI 100ms/DI TDK-Lambda T-18

22 2.13 Input current harmonics Conditions : IEC Limit (class A) Harmonic order : IEC Limit (class A) Harmonic order 2.14 Input current waveform Conditions : 100 : 200 Iin 2A/DI 5ms/DI 2A/DI 5ms/DI TDK-Lambda T-19

23 2.15 Leakage current characteristics Conditions Iout : 0 % 100 % Equipment used : 3156 (HIOKI) f : 50 Hz Input voltage () f : 60 Hz Input voltage () TDK-Lambda T-20

24 2.16 Output ripple and noise waveform Conditions : m/DI 2 s/di 24 50m/DI 2 s/di 50m/DI 2 s/di TDK-Lambda T-21

25 2.17 OFF Input power and Input current vs. Input voltage with Remote control OFF -*/R For alternative standard model -*/R Condition Input voltage () Input voltage () TDK-Lambda T-22

26 2.18 Electro-Magnetic Interference characteristics Conditions : 230 Conducted Emission Phase : N A CCI Class B QP Limit Point A (191kHz) Ref. Limit Measure Data (db) (db) QP CCI Class B A Limit A Phase : L B CCI Class B QP Limit Point B (190kHz) Ref. Limit Measure Data (db) (db) QP CCI Class B A Limit A EN55011-B,EN55022-B,FCC-B CCI class B Limit of EN55011-B,EN55022-B,FCC-B are same as its CCI class B. TDK-Lambda T-23

27 2.18 Electro-Magnetic Interference characteristics Conditions : 230 Conducted Emission 12 Phase : N A CCI Class B QP Limit Point A (194kHz) Ref. Limit Measure Data (db) (db) QP CCI Class B A Limit A Phase : L B CCI Class B QP Limit Point B (197kHz) Ref. Limit Measure Data (db) (db) QP CCI Class B A Limit A EN55011-B,EN55022-B,FCC-B CCI class B Limit of EN55011-B,EN55022-B,FCC-B are same as its CCI class B. TDK-Lambda T-24

28 2.18 Electro-Magnetic Interference characteristics Conditions : 230 Conducted Emission 24 Phase : N A CCI Class B QP Limit Point A (236kHz) Ref. Limit Measure Data (db) (db) QP CCI Class B A Limit A Phase : L B CCI Class B QP Limit Point B (235kHz) Ref. Limit Measure Data (db) (db) QP CCI Class B A Limit A EN55011-B,EN55022-B,FCC-B CCI class B Limit of EN55011-B,EN55022-B,FCC-B are same as its CCI class B. TDK-Lambda T-25

29 2.18 Electro-Magnetic Interference characteristics Conditions : 230 Radiated Emission HORIZONTAL ERTICAL QP QP 12 HORIZONTAL ERTICAL QP QP 24 HORIZONTAL ERTICAL QP QP EN55011-B,EN55022-B CCI class B Limit of EN55011-B,EN55022-B are same as its CCI class B. Indication is peak values. TDK-Lambda T-26

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