TDK-Lambda EFE300 EVALUATION DATA. Issue : Mod : Release Date : Initials : KM VP AC

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1 TDK-Lambda EVALUATION DATA Issue : Mod : Release Date : Initials : KM VP AC Drawn : KM-MIS

2 INDEX 1. Evaluation Method PAGE 1.1 Circuit used for determination T-1~2 (1) Steady state data (2) Warm up voltage drift characteristics (3) Over current protection (OCP) characteristics (4) Over voltage protection (OVP) characteristics (5) Output rise characteristics (6) Output fall characteristics (7) Dynamic line response characteristics (8) Dynamic load response characteristics (9) Inrush current characteristics (10) Leakage current characteristics (11) Output ripple and noise characteristics (12) Stand-by current (13) Electro-Magnetic Interference characteristics 1.2 List of equipment used T-3 2. Characteristics 2.1 Steady state data (1) Regulation - line and load, Temperature drift/start up voltage and Drop out voltage T-4 (2) Output voltage and Ripple noise voltage vs. Input voltage T-5 (3) Efficiency vs. Output current T-6 (4) Power factor and Input current vs. Output current T-7 (5) Input current vs. Output current T Warm up voltage drift characteristics T Over current protection (OCP) characteristics T Over voltage protection (OVP) characteristics T Output rise characteristics T Output fall characteristics T-11 TDK-Lambda

3 TDK-Lambda 2.7 Hold up time characteristics T Dynamic line response characteristics T Dynamic load response characteristics T-14~ Response to brown out characteristics T Inrush current waveform T Inrush current characteristics T Input current waveform T Leakage current characteristics T Input current harmonics T Output ripple and noise waveform T Stand-by current T Electro-Magnetic Interference characteristics T-23~24 Terminology used Vin Vout Iin Iout Ta f Definition Input voltage Output voltage Input current Output current Ambient temperature Frequency

4 1. Evaluation Method 1.1 Circuit used for determination Circuit 1 Steady state data Over current protection (OCP) characteristics Over voltage protection (OVP) characteristics Output rise characteristics Output fall characteristics Hold up time characteristics Dynamic line response characteristics Response to brown out characteristics Stand-by current Digital power meter SW1 A W AC +V AC POWER SUPPLY V P.S. V V Load AC - V Shunt Res. Controlled temp. chamber Circuit 2 Dynamic load response characteristics Digital power meter SW1 A W AC +V Dynamic dummy load AC POWER SUPPLY V P.S. V V Load Load 1 2 AC - V Shunt Res. Output current waveform Iout Min <==> 100% Output current waveform Iout 50% <==> 100% 100% 95% 100% 95% tr tf 5% Min tr tf 55% 50% Min Circuit 3 Inrush current characteristics Digital power meter Slide Reg. A W AC +V Dynamic Dip Simulator V P.S. V V Load Current probe AC - V Shunt Res. TDK-Lambda T-1

5 Circuit 4 Leakage current characteristics Digital power meter Slide Reg. A W AC +V Circuit 5 Isolation Trans Output ripple and noise waveform Leakage current meter Normal Mode (JEITA Standard RC-9131A) V AC P.S. - V Shunt Res. FG NOTE : Leakage current measured through the 1k ohm resistor Range used --- AC(For HIOKI MODEL 3156) V V Load Digital power meter SW1 A W AC +V 1.5m 50Ω Cable AC POWER SUPPLY V P.S C1 + C2 Load R C3 AC - V Osilloscope Bandwidth : 100MHz Configuration Electro-Magnetic Interference characteristics Conducted Emission Noise 150mm R : 50Ω C1 : 0.1uF Film Cap. C2 : 100uF Elec Cap. C3 : 4700pF Film Cap. D.U.T.(Earthed) Spectrum Analyzer EMI Test Receiver RF Relay matrix AMN 50Ω/50uH D=80cm Aluminum Plate AC Cord Stand H=80cm Earth Metal Ground Plate Filter Input Line Radiated Emission Noise D=10m D.U.T.(Earthed) Spectrum Analyzer EMI Test Receiver RF Relay matrix Biconical Antenna Aluminum Plate Turn Table Stand H=80cm Input Line Earth Metal Ground Plate Filter TDK-Lambda T-2

6 TDK-Lambda T List of equipment used No. EQUIPMENT USED MANUFACTURER MODEL NO. 1 DIGITAL STORAGE OSCILLOSCOPE TEKTRONIX TDS540A/TDS DIGITAL STORAGE OSCILLOSCOPE YOKOGAWA ELECT. DL DIGITAL MULTIMETER AGILENT TECHNOLOGY 34970A 4 DIGITAL MULTIMETER YOKOGAWA ELECT DIGITAL POWER METER YOKOGAWA ELECT. WT210/WT110 6 CLAMP ON AC/DC HITESTER HIOKI SHUNT RESISTOR YOKOGAWA ELECT CURRENT PROBE/AMPLIFIER TEKTRONIX A6303/TM502A 9 ELECTRONIC DC LOAD TAKASAGO FK-400L/FK-600L 10 GP-IB/RS-232C PROGRAMMER TAKASAGO TC-911B 11 CVCF KIKUSUI PCR2000L 12 SINGLE-PHASE MASTER NF ELECT LEAKAGE CURRENT HITESTER HIOKI DYNAMIC DIP SIMULATOR TAKAMISAWA PSA TEMPERATURE CHAMBER PU-4K ESPEC PSL-4KPH-A 16 HARMONIC/FLICKER ANALYZER KIKUSUI KHA PULS LIMITER Rohde&Schwarz ESH3-Z2 18 EMI TEST RECEIVER Rohde&Schwarz ESPI 3 19 AMN Rohde&Schwarz ESH2-Z5 20 AMN Rohde&Schwarz ESH3-Z5 21 EMI TEST RECEIVER Rohde&Schwarz ESPC + B2 22 ANTENNA(BI-LOG ANTENNA) Chase CBL SOFTWARE Rohde&Schwarz EMC32 24 PRE AMOLIFIER Rohde&Schwarz ESV-Z3

7 TDK-Lambda T-4 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 Ta : 25 Iout \ Vin 90VAC 100VAC 230VAC 265VAC line regulation 0% V V V V 27mV 0.225% 50% V V V V 34mV 0.283% 100% V V V V 47mV 0.392% load 113mV 112mV 98mV 93mV regulation 0.942% 0.933% 0.817% 0.775% 2. Temperature drift Conditions Vin : 100VAC Iout : 100% Ta temperature stability Vout V V V 182mV 1.517% 3. Start up voltage and Drop out voltage Conditions Ta : 25 Iout : 100% Start up voltage (Vin) 76VAC Drop out voltage (Vin) 62VAC 1. Regulation - line and load Condition Ta : 25 Iout \ Vin 90VAC 100VAC 230VAC 265VAC line regulation 0% V V V V 57mV 0.238% 50% V V V V 81mV 0.337% 100% V V V V 117mV 0.488% load 157mV 143mV 107mV 97mV regulation 0.654% 0.596% 0.446% 0.404% 2. Temperature drift Conditions Vin : 100VAC Iout : 100% Ta temperature stability Vout V V V 346mV 1.442% 3. Start up voltage and Drop out voltage Conditions Ta : 25 Iout : 100% Start up voltage (Vin) 76VAC Drop out voltage (Vin) 63VAC

8 TDK-Lambda T-5 (2) Output voltage and Ripple noise voltage vs. Input voltage Conditions Iout : 100 % Ta : Output voltage 250 Output voltage (V) Ripple noise voltage Ripple noise voltage (mv) Input voltage(vac) Output voltage 250 Output voltage (V) Ripple noise voltage Ripple noise voltage (mv) Input voltage (VAC) 0

9 TDK-Lambda T-6 (3) Efficiency vs. Output current Conditions Vin : 90 VAC : 100 VAC : 230 VAC : 265 VAC 90 ) ( % y 80 c n ie fic E Output current (%) 90 ) ( % 80 y c n ie fic E Output current (%)

10 TDK-Lambda T-7 (4) Power factor and Input current vs. Output current Conditions Vin : 90 VAC : 100 VAC : 230 VAC : 265 VAC 8.0 Power factor 1.0 Input current (A) Iin Power facter Output current (%) 8.0 Power factor 1.0 Input current (A) Iin Power factor Output current (%)

11 TDK-Lambda T-8 (5) Input power vs. Output current Conditions Vin : 90 VAC : 100 VAC : 230 VAC : 265 VAC Conditions Iout : 0% Vin Input power 90VAC 10.1W 100VAC 10.1W 230VAC 10.1W 265VAC 10.1W Input power (W) Output current (%) Conditions Iout : 0% Vin Input power 90VAC 11.4W 100VAC 11.2W 230VAC 11.3W 265VAC 10.9W Input power (W) Output current (%)

12 2.2 Warm up voltage drift characteristics Conditions Vin : 100 VAC Iout : 100 % Output voltage drift (%) Time (hrs) Output voltage drift (%) Time (hrs) TDK-Lambda T-9

13 2.3 Over current protection (OCP) characteristics 2.4 Over voltage protection (OVP) characteristics Conditions Vin : 90 VAC Conditions Vin : 230 VAC 100 VAC Iout : 0 % 230 VAC 265 VAC Steady Limit Peak Limit 12.0 Output voltage (V) OVP Point Vout 0V Output current (%) 5V/DIV 10ms/DIV Steady Limit Peak Limit 24.0 Output voltage (V) OVP Point Vout 0V Output current (%) 10V/DIV 10ms/DIV TDK-Lambda T-10

14 TDK-Lambda T Output rise characteristics 2.6 Output fall characteristics Conditions Vin : 90 VAC (A) 100 VAC (B) 230 VAC (C) 265 VAC (D) Iout : 100 % D C B A ABCD 0V 0V 5V/DIV 200ms/DIV 5V/DIV 100ms/DIV D C B A ABCD 0V 0V 10V/DIV 200ms/DIV 10V/DIV 100ms/DIV

15 TDK-Lambda T Hold up time characteristics Conditions Vin : 100 VAC 200 VAC 1000 Hold up time (ms) Output current (%) 1000 Hold up time (ms) Output current (%)

16 TDK-Lambda T Dynamic line response characteristics Conditions Vin : 90 VAC 132VAC (A) 170 VAC 265VAC (B) Iout : 100 % (A) (B) 200mV/DIV 500ms/DIV (A) (B) 200mV/DIV 500ms/DIV

17 TDK-Lambda T Dynamic load response characteristics Conditions Vin : 100 VAC f=100hz Load current tr = tf = 50us Load current tr = tf = 50us Iout 50% 100% Iout 0% 100% Iout Iout 500mV/DIV 2ms/DIV 2V/DIV 2ms/DIV +3.25% -3.17% +5.75% -7.33% f=1khz Load current tr = tf = 50us Load current tr = tf = 50us Iout 50% 100% Iout 0% 100% Iout Iout 500mV/DIV 200µs/DIV 2V/DIV 200µs/DIV +2.83% -2.75% +5.17% -7.08%

18 TDK-Lambda T Dynamic load response characteristics Conditions Vin : 100 VAC f=100hz Load current tr = tf = 50us Load current tr = tf = 50us Iout 50% 100% Iout 0% 100% Iout Iout 500mV/DIV 2ms/DIV 2V/DIV 2ms/DIV +1.58% -1.54% +3.29% -3.42% f=1khz Load current tr = tf = 50us Load current tr = tf = 50us Iout 50% 100% Iout 0% 100% Iout Iout 500mV/DIV 200µs/DIV 500mV/DIV 200µs/DIV +1.58% -1.38% +2.96% -2.58%

19 2.10 Response to brown out characteristics Conditions Vin : 100 VAC Conditions Vin : 200 VAC Iout : 100 % Iout : 100 % A = 5ms A = 5ms B = 13ms B = 13ms C = 14ms C = 14ms A B C A B C 0V 0V 5V/DIV 200ms/DIV 5V/DIV 200ms/DIV Conditions Vin : 100 VAC Conditions Vin : 200 VAC Iout : 100 % Iout : 100 % A = 6ms A = 6ms B = 14ms B = 14ms C = 15ms C = 15ms A B C A B C 0V 0V 10V/DIV 200ms/DIV 10V/DIV 200ms/DIV TDK-Lambda T-16

20 2.11 Inrush current waveform Conditions Vin : 100 VAC Iout : 100 % Switch on phase angle Switch on phase angle of input AC voltage of input AC voltage φ=0 φ=90 Iin Iin 10A/DIV 200ms/DIV 10A/DIV 200ms/DIV Conditions Vin : 200 VAC Iout : 100 % Switch on phase angle Switch on phase angle of input AC voltage of input AC voltage φ=0 φ=90 Iin Iin 10A/DIV 200ms/DIV 10A/DIV 200ms/DIV TDK-Lambda T-17

21 2.12 Inrush current characteristics Conditions Iout : 0 % 50 % 100 % Vin : 100 VAC Inrush current (A) Brown out time(sec) Vin : 200 VAC Inrush current (A) Brown out time(sec) * Above data includes secondary inrush current. TDK-Lambda T-18

22 2.13 Input current waveform Conditions Vin : 100 VAC Conditions Vin : 200 VAC Iout : 100 Iout : 100 Ta : 25 Ta : 25 Iin Iin 2A/DIV 5ms/DIV 2A/DIV 5ms/DIV 2.14 Leakage current characteristics Conditions Iout : 0 % 100 % f : 50 Hz Equipment used : 3156 (HIOKI) 1.0 Leakage current (ma) Input voltage (VAC) TDK-Lambda T-19

23 2.15 Input current harmonics Conditions Vin : 100VAC Iout : 100% Ta : Harmonic current (A) IEC Limit (class A) Harmonic number Conditions Vin : 230VAC Iout : 100% Ta : Harmonic current (A) IEC Limit (class A) Harmonic number TDK-Lambda T-20

24 TDK-Lambda T Output ripple and noise waveform NORMAL MODE Conditions Vin : 100 VAC Iout : 100 % 50mV/DIV 2μs/DIV 50mV/DIV 2μs/DIV

25 TDK-Lambda T Stand-by current Condition Iout : 0 % Input current (A) Input voltage (VAC) Input current (A) Input voltage (VAC)

26 TDK-Lambda T Electro-Magnetic Interference characteristics Conditions Vin : 230VAC Iout : 100% Conducted Emission Point A,B (198kHz,250kHz) Ref. Limit Measure Data (dbuv) (dbuv) A (AV) B (QP) C VCCI Class B QP Limit QP AV VCCI Class B AV Limit Point C (25MHz) Ref. Limit Measure Data (dbuv) (dbuv) QP AV Phase : L & N ( Peak value of each phase ) Point D (202kHz) Ref. Limit Measure Data (dbuv) (dbuv) D E VCCI Class B QP Limit QP AV VCCI Class B AV Limit Point E (22MHz) Ref. Limit Measure Data (dbuv) (dbuv) QP AV Phase : L & N ( Peak value of each phase ) Limit of EN55011-B,EN55022-B are same as its VCCI class B. The above is wave measured by the peak detection mode.

27 2.18 Electro-Magnetic Interference characteristics Conditions Vin : 230VAC Iout : 100% Radiated Emission HORIZONTAL VCCI Class A QP Limit VERTICAL VCCI Class A QP Limit Limit of EN55011-A,EN55022-A are same as its VCCI class A. The above is wave measured by the peak detection mode. TDK-Lambda T-24

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