TDK Lambda INSTRUCTION MANUAL. TDK Lambda C A 1/35
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1 C A 1/35
2 INDEX PAGE 1. Evaluation Method 1 1. 測定回路 Measurement Circuits 4 (1) 静特性 出力リップル ノイズ波形 Steady state characteristics and Output ripple noise waveform (2) 過渡応答 過電圧保護機能 その他 Dynamic characteristics, over voltage protection and other characteristics (3) EMI 特性 Electro Magnetic Interference characteristics 1 2. 使用測定機器 List of equipments used 6 2. Characteristics 2 1. 静特性 Steady state characteristics (1) 入力 負荷 温度変動 Regulation line and load, Temperature drift 7 (2) 効率対出力電流 Efficiency vs. Output current 8 (3) 入力電流 効率対入力電圧 Input current and Efficiency vs. Input voltage 9 (4) 待機電流 電力特性 Standby current and power characteristics (5) 入力電流 力率対出力電流 Input current and Power factor vs. Output current 11 (6) 起動 停止電圧特性 Start and Stop voltage characteristics 通電ドリフト特性 Warm up voltage drift characteristics 過電流保護特性 Over current protection (OCP) characteristics 過電圧保護特性 Over voltage protection (OVP) characteristics 出力立ち上がり 立ち下がり特性 Output rise and fall characteristics 出力立ち上がり 立ち下がり特性 (ON/OFFコントロール時) Output rise and fall characteristics with ON/OFF CONTROL 出力電圧保持時間特性 Hold up time characteristics 過渡応答 ( 入力急変 ) 特性 Dynamic line response characteristics 過渡応答 ( 負荷急変 ) 特性 Dynamic load response characteristics 入力電圧瞬停特性 Response to brownout characteristics 入力サージ電流 ( 突入電流 ) 特性 Inrush current characteristics at brownout 瞬停突入電流特性 Inrush current characteristics 入力電流波形 Input current waveform 高調波成分 Input current harmonics リーク電流特性 Leakage current characteristics 出力リップル ノイズ波形 Output ripple and noise waveform EMI 特性 Electro Magnetic Interference characteristics 34 2/35
3 使用記号 Terminology used 定義 Definition Vin 入力電圧 Input voltage Vo 出力電圧 Output voltage Vonoff +ON/OFF 電圧 +ON/OFF voltage Iin 入力電流 Input current Io 出力電流 Output current Tbp ベースプレート温度 Base plate temperature Ta 周囲温度 Ambient temperature f 周波数 Frequency 当社測定条件における結果であり 参考値としてお考え願います Test results are reference data based on our measurement condition. 3/35
4 1. Evaluation Method 1 1. 測定回路 Measurement Circuits (1) 静特性 出力リップル ノイズ波形 Steady state characteristics and output ripple noise waveform Digital powermeter ~ A W V ~ F1 15A C1 L1 C2 C3 C4 L2 R1 C5 C6 AC(L) C8 C9 +S +V C7 AC(N) V S TRIM AUX IOG PC ENA +ON/OFF BASE PLATE ON/OFF COM R +BC BC Controlled temp. chamber C12 V - C13 C15 C14 *1 C16 *1 C17 V - LOAD Osciloscope Bandwidth : MHz 1.5m 5Ω Cable R2 C18 TFR1 C C11 (2) 過渡応答 過電圧保護機能 その他 Dynamic characteristics, over voltage protection and other characteristics V - F1 15A C1 L1 C2 C3 C4 L2 R1 C5 C6 C7 AC(L) AC(N) BASE PLATE R +S +V V S TRIM AUX IOG PC ENA +ON/OFF ON/OFF COM +BC BC V - C13 C14 C15 *1 C16 *1 C17 LOAD Current probe C8 C9 C12 TFR1 C C11 AC 2V Inrush current characteristics Slide Reg. Dynamic DIP Simulator Application Circuit (Input filter) P.S. AC 2V Leakage current characteristics Slide Reg. Application Circuit (Input filter) Current Probe Leakage Current tester FG C1, C4, C5: 1uF Film Capacitor C15, C17: uf Electrolytic Capacitor C2, C3, C6, C7, C12: 22pF Ceramic Capacitor 47uF Electrolytic Capacitor C8, C9: 1uF Film Capacitor 22uF Electrolytic Capacitor C, C11: 39uF Electrolytic Capacitor R1:.5W 47kΩ C13, C14:.33uF Film Capacitor R2: 5Ω C16: 2.2uF Ceramic Capacitor L1, L2: 6mH C18: 47pF Ceramic Capacitor : 5mm TFR1: Ω more 139 C ==== Note ==== *1. If the ambient temperature is less than 2 C, use twice of the recommended capacitor above. 4/35
5 (3) EMI 特性 Electro Magnetic Interference characteristics (a) 雑音端子電圧 ( 帰還ノイズ ) Conducted Emission Noise Spectrum Analyzer EMI Test Receiver RF Relay Matrix 擬似電源回路網 LISN 5Ω/5uH D = 8cm 電源コード AC Cord 供試機器 ( 接地 ) D.U.T.(Earth) アルミ板 Aluminum Plate 台 Stand H = 8cm 接地 Earth 金属大地面 Metal Ground Plain フィルタ Filter 入力電源 Input Line (b) 雑音電界強度 ( 輻射ノイズ ) Radiated Emission Noise Spectrum Analyzer EMI Test Receiver RF Relay Matrix D = 3m バイコニカルアンテナ Biconical Antenna 供試機器 ( 接地 ) D.U.T.(Earth) アルミ板 Aluminum Plate 台 Stand H = 8cm ターンテーブル Turn Table 接地 Earth 金属大地面 Metal Ground Plain フィルタ Filter * Shielded cable used to input and output cable. VCCI class A 対応アプリケーションシステム VCCI class A application system 入力電源 Input Line F1 L1 C2 L2 AC(L) +S +V C1 C3 C4 R1 C5 C6 C7 AC(N) BASE PLATE R V S TRIM AUX IOG PC ENA +ON/OFF ON/OFF COM +BC BC C13 C14 C15 *1 C16 *1 C17 LOAD C8 C9 C12 TFR1 C C11 C1, C4, C5: 1uF Film Capacitor C15, C17: uf Electrolytic Capacitor C2, C3, C6, C7, C12: 22pF Ceramic Capacitor 47uF Electrolytic Capacitor C8, C9: 1uF Film Capacitor 22uF Electrolytic Capacitor C, C11: 39uF Electrolytic Capacitor R1:.5W 47kΩ C13, C14:.33uF Film Capacitor L1, L2: 6mH C16: 2.2uF Ceramic Capacitor TFR1: Ω more 139 C 5/35
6 1 2. 使用測定機器 List of equipment used EQUIPMENT USED MANUFACTURER MODEL NO. 1 DIGITAL PHOSPHOR OSCILLOSCOPE TEKTRONIX TDS312 2 DIGITAL STORAGE OSCILLOSCOPE IWATSU LECROY LT364L 3 DIGITAL POWER METER YOKOGAWA ELECT. WT1 4 DATA ACQUISITION / SWITCH UNIT AGILENT 3497A 5 CURRENT PROBE AMPLIFIER TEKTRONIX TM52A 6 CURRENT PROBE TEKTRONIX A633 7 SHUNT RESISTER YOKOGAWA ELECT CONTROLLED TEMP. CHAMBER ESPEC CORP. SU SPECTRUM ANALYZER ROHDE & SCHWARZ FSA EMI TEST RECEIVER ROHDE & SCHWARZ ESHS 11 EMI TEST RECEIVER ROHDE & SCHWARZ ESVS 12 RF RELAY MATRIX ROHDE & SCHWARZ PSU 13 AMN KYORITU DENSHI KNW ANTENNA(BICONICAL ANTENNA) SCHWARZBECK BBA96 15 DYNAMIC DUMMY LOAD TAKASAGO FK L 16 AC POWER SUPPLY TAKASAGO AA 2XG 6/35
7 2. Characteristics 2 1. 静特性 Steady state characteristics (1) 入力 負荷 温度変動 Regulation line and load, Temperature drift 1. Regulation line and load condition Tbp : 25 Iout \ Vin 85VAC VAC 2VAC 265VAC line regulation % V V V V mv.% 5% V V V V mv.% % V V V V mv.% load 4mV 4mV 4mV 4mV regulation.33%.33%.33%.33% 2. Temperature drift conditions Vin : VAC Iout : % Ta temperature stability Vout V V 12.85V 166mV 1.382% 1. Regulation line and load condition Tbp : 25 Iout \ Vin 85VAC VAC 2VAC 265VAC line regulation % 28.44V 28.43V 28.44V 28.45V 2mV.7% 5% 28.44V 28.42V 28.43V 28.44V 2mV.7% % 28.45V 28.42V 28.42V 28.43V 3mV.11% load 1mV 1mV 2mV 2mV regulation.4%.4%.7%.7% 2. Temperature drift conditions Vin : VAC Iout : % Ta temperature stability Vout V 28.42V 28.99V 233mV.832% 1. Regulation line and load condition Tbp : 25 Iout \ Vin 85VAC VAC 2VAC 265VAC line regulation % V V V V 2mV.4% 5% V V V V 2mV.4% % V V V V 2mV.4% load 1mV 1mV 1mV 1mV regulation.2%.2%.2%.2% 2. Temperature drift conditions Vin : VAC Iout : % Ta temperature stability Vout 47.58V V 48.2V 522mV 1.87% 7/35
8 (2) 効率対出力電流 Efficiency vs. Output current 9 Efficiency Conditions Vin : 85VAC : VAC : 2VAC : 265VAC Efficiency (%) Output current (%) (42A) 9 Efficiency Efficiency (%) Output current (%) (18A) 9 Efficiency Efficiency (%) Output current (%) (.5A) 8/35
9 (3) 入力電流 効率対入力電圧 Input current and Efficiency vs. Input voltage Conditions Io : 5% : % 2 16 Efficiency 9 Input current (A) Iin Efficiency (%) Input voltage (VAC) 2 16 Efficiency 9 Input current (A) Iin Efficiency (%) Input voltage (VAC) 2 16 Efficiency 9 Input current (A) Iin Efficiency (%) Input voltage (VAC) 9/35
10 (4) 待機電流 電力特性 Standby current and power characteristics Conditions Tbp No load Control OFF : 25 o C Standby current (A) Pin Iin Standby power (W) Input voltage (VAC) Standby current (A) Pin Iin Standby power (W) Input voltage (VAC) Standby current (A) Pin Iin Standby power (W) Input voltage (VAC) /35
11 (5) 入力電流 力率対出力電流 Input current and Power factor vs. Output current 16 Conditions Vin : 85VAC : VAC : 2VAC : 265VAC 1. Input current (A) Power factor Iin Power factor (42A) Output current (%) Input current (A) Power factor Iin Power factor Output current (%) (18A) Input current (A) Power factor Iin Power factor Output current (%) (.5A) 11/35
12 (6) 起動 停止電圧特性 Start and Stop voltage characteristics Conditions Io : % Conditions Io : % Output voltage (V) Output voltage (V) Input voltage (VAC) Input voltage (VAC) Output voltage (V) Input voltage (VAC) Output voltage (V) Input voltage (VAC) Output voltage (V) 3 2 Output voltage (V) Input voltage (VAC) Input voltage (VAC) 12/35
13 2 2. 通電ドリフト特性 Warm up voltage drift characteristics 1. Conditions Vin : VAC Io : % Output voltage drift (%) Time (hrs) 1. Output voltage drift (%) Time (hrs) 1. Output voltage drift (%) Time (hrs) 13/35
14 2 3. 過電流保護特性 Over current protection (OCP) characteristics Conditions Vin : VAC Conditions Vin : VAC 2VAC Tbp : 4 C 25 o C 85 C() C(,) Output voltage (V) Output voltage (V) Output current (%) Output current (%) Output voltage (V) Output voltage (V) Output current (%) Output current (%) Output voltage (V) 3 2 Output voltage (V) Output current (%) Output current (%) 14/35
15 2 4. 過電圧保護特性 Over voltage protection (OVP) characteristics Conditions Vin : VAC Io : % OVP point GND Vo:5V/DIV 2s/DIV OVP point GND Vo:V/DIV 2s/DIV OVP point GND Vo:2V/DIV 2s/DIV 15/35
16 2 5. 出力立ち上がり 立ち下がり特性 Output rise and fall characteristics Conditions Vin : VAC Io : % Vin:2V/DIV Vo:5V/DIV Vin:2V/DIV Vo:5V/DIV 2ms/DIV s/div Vin:2V/DIV Vo:V/DIV Vin:2V/DIV Vo:V/DIV 2ms/DIV s/div Vin:2V/DIV Vo:2V/DIV Vin:2V/DIV Vo:2/DIV 2ms/DIV s/div 16/35
17 2 5. 出力立ち上がり 立ち下がり特性 Output rise and fall characteristics Conditions Vin : VAC Io : % Vin:2V/DIV Vo:5V/DIV Vin:2V/DIV Vo:5V/DIV 2ms/DIV 2ms/DIV Vin:2V/DIV Vo:V/DIV Vin:2V/DIV Vo:V/DIV 2ms/DIV 2ms/DIV Vin:2V/DIV Vo:2V/DIV Vin:2V/DIV Vo:2V/DIV 2ms/DIV 2ms/DIV 17/35
18 2 5. 出力立ち上がり 立ち下がり特性 Output rise and fall characteristics Conditions Vin : 2VAC Io : % Vin:2V/DIV Vo:5V/DIV Vin:2V/DIV Vo:5V/DIV 2ms/DIV s/div Vin:2V/DIV Vo:V/DIV Vin:2V/DIV Vo:V/DIV 2ms/DIV s/div Vin:2V/DIV Vo:2V/DIV Vin:2V/DIV Vo:2V/DIV 2ms/DIV s/div 18/35
19 2 5. 出力立ち上がり 立ち下がり特性 Output rise and fall characteristics Conditions Vin : 2VAC Io : % Vin:2V/DIV Vo:5V/DIV Vin:2V/DIV Vo:5V/DIV 2ms/DIV 2ms/DIV Vin:2V/DIV Vo:V/DIV Vin:2V/DIV Vo:V/DIV 2ms/DIV 2ms/DIV Vin:2V/DIV Vo:2V/DIV Vin:2V/DIV Vo:2V/DIV 2ms/DIV 2ms/DIV 19/35
20 2 6. 出力立ち上がり 立ち下り特性 (ON/OFF コントロール時 ) Output rise and fall characteristics with ON/OFF CONTROL Conditions Vin : VAC Io : % Vonoff Vcnt:V/DIV Vo:5V/DIV Vcnt:V/DIV Vo:5V/DIV 5ms/DIV s/div Vonoff Vcnt:V/DIV Vo:V/DIV Vcnt:V/DIV Vo:V/DIV 5ms/DIV s/div Vonoff Vcnt:V/DIV Vo:2V/DIV Vcnt:V/DIV Vo:2V/DIV 5ms/DIV s/div Note : 2VAC is same as characteristics of VAC 2/35
21 2 6. 出力立ち上がり 立ち下り特性 (ON/OFF コントロール時 ) Output rise and fall characteristics with ON/OFF CONTROL Conditions Vin : VAC Io : % Vonoff Vcnt:V/DIV Vo:5V/DIV Vcnt:V/DIV Vo:5V/DIV 5ms/DIV 5μs/DIV Vonoff Vcnt:V/DIV Vo:V/DIV Vcnt:V/DIV Vo:V/DIV 5ms/DIV 5μs/DIV Vonoff Vcnt:V/DIV Vo:2V/DIV Vcnt:V/DIV Vo:2/DIV 5ms/DIV 5μs/DIV Note : 2VAC is same as characteristics of VAC 21/35
22 2 7. 出力電圧保持時間特性 Hold up time characteristics Conditions Vin : VAC 2VAC Hold up time (ms) Output current (%) (42A) Hold up time (ms) (18A) Output current (%) Hold up time (ms) (.5A) Output current (%) 22/35
23 2 8. 過渡応答 ( 入力急変 ) 特性 Dynamic line response characteristics Conditions Io : % Tbp : 25 o C Vin:85VAC 13VAC Vin:17VAC 265VAC Vin:2V/DIV Vo:5mV/DIV Vin:2V/DIV Vo:5mV/DIV 5ms/DIV 5ms/DIV Vin:2V/DIV Vo:5mV/DIV Vin:2V/DIV Vo:5mV/DIV 5ms/DIV 5ms/DIV Vin:2V/DIV Vo:5mV/DIV Vin:2V/DIV Vo:5mV/DIV 5ms/DIV 5ms/DIV 23/35
24 2 8. 過渡応答 ( 入力急変 ) 特性 Dynamic line response characteristics Conditions Io : % Vin:VAC 2VAC Tbp : 25 o C Vin:2V/DIV Vo:5mV/DIV ms/div Vin:2V/DIV Vo:mV/DIV ms/div Vin:2V/DIV Vo:mV/DIV ms/div Note : This test follows SEMI F /35
25 2 9. 過渡応答 ( 負荷急変 ) 特性 Dynamic load response characteristics Conditions Vin : VAC Tbp : 25 o C Load current tr = tf= μs Iout 5% % f=1khz Io Io GND Io:2A/DIV Vo:mV/DIV 2μs/DIV Load current tr = tf= μs Iout 5% % f=1khz Io Io GND Io:A/DIV Vo:mV/DIV 2μs/DIV Load current tr = tf= μs Iout 5% % f=1khz Io Io GND Io:5A/DIV Vo:mV/DIV 2μs/DIV 25/35
26 2. 入力電圧瞬停特性 Response to brownout characteristics Conditions Io : % 瞬停時間 Interruption time A : 出力電圧が低下なし Output voltage does not drop. B : 出力電圧の低下がVまでいかない output voltage drop down not reaching V. C : 出力電圧がVまで低下 Output voltage drops until V. Vin:VAC Vin:2VAC B A C B A C Vin:2V/DIV Vo:5V/DIV 5ms/DIV A:39ms B:55ms C:56ms Vin:2V/DIV Vo:5V/DIV 5ms/DIV A:39ms B:56ms C:57ms B A C B A C Vin:2V/DIV Vo:V/DIV Vin:2V/DIV Vo:mV/DIV 5ms/DIV 5ms/DIV A:36ms B:56ms C:57ms A:36ms B:56ms C:57ms B A C B A C Vin:2V/DIV Vo:2V/DIV Vin:2V/DIV Vo:2V/DIV 5ms/DIV 5ms/DIV A:37ms B:58ms C:59ms A:37ms B:58ms C:59ms 26/35
27 2 11. 入力サージ電流 ( 突入電流 ) 特性 Inrush current characteristics Conditions Vin : VAC Io : % Switch on phase angle of input AC voltage φ= Switch on phase angle of input AC voltage φ=9 Iin Vin:2V/DIV Iin:2A/DIV Vin:2V/DIV Iin:2A/DIV 2ms/DIV 2ms/DIV Iin Vin:2V/DIV Iin:2A/DIV Vin:2V/DIV Iin:2A/DIV 2ms/DIV 2ms/DIV Note : is same as characteristics of 27/35
28 2 11. 入力サージ電流 ( 突入電流 ) 特性 Inrush current characteristics Conditions Vin : 2VAC Io : % Switch on phase angle of input AC voltage φ= Switch on phase angle of input AC voltage φ=9 Iin Vin:2V/DIV Iin:2A/DIV Vin:2V/DIV Iin:2A/DIV 2ms/DIV 2ms/DIV Iin Vin:2V/DIV Iin:2A/DIV Vin:2V/DIV Iin:2A/DIV 2ms/DIV 2ms/DIV Note : is same as characteristics of 28/35
29 2 12. 瞬停突入電流特性 Inrush current characteristics Conditions Io : 5% % Vin:VAC Vin:2VAC Inrush current (A) 3 2 Inrush current (A) Brown out time (sec) Brown out time (sec) Inrush current (A) 3 2 Inrush current (A) Brown out time (sec) Brown out time (sec) Note : Above data includes secondary inrush current. : is same as characteristics of 29/35
30 2 13. 入力電流波形 Input current waveform Conditions Io : % Tbp : 25 o C Vin:AC Vin:2AC Iin Vin:2V/DIV Iin:A/DIV Vin:2V/DIV Iin:A/DIV 5ms/DIV 5ms/DIV Iin Vin:2V/DIV Iin:A/DIV Vin:2V/DIV Iin:A/DIV 5ms/DIV 5ms/DIV Note : is same as characteristics of 3/35
31 2 14. 高調波成分 Input current harmonics Conditions Io : % Tbp : 25 o C Vin:VAC Vin:23VAC Vin:VAC Vin:23VAC Harmonic current (A) Harmonic current (A) Harmonic current (A) Harmonic current (A) IEC6 3 2 Limit (class A) Harmonic Number IEC6 3 2 Limit (class A) Harmonic Number IEC6 3 2 Limit (class A) Harmonic Number IEC6 3 2 Limit (class A) Harmonic Number Note : is same as characteristics of 31/35
32 2 15. リーク電流特性 Leakage current characteristics Conditions Io : % % f : 5Hz 1. Leakage current (ma) Input voltage (VAC) 1..8 Leakage current (ma) Input voltage (VAC) Note : is same as characteristics of 32/35
33 2 16. 出力リップル ノイズ波形 Output ripple and noise waveform Conditions Vin : VAC Io : % 5mV/DIV 1μs/DIV 5mV/DIV 1μs/DIV mv/div 1μs/DIV 33/35
34 2 17. EMI 特性 Electro Magnetic Interference characteristics (a) 雑音端子電圧 ( 帰還ノイズ ) Conducted Emission Noise Conditions Vin : VAC Io : % Phase:N Phase:L VCCI ClassA QP Limit VCCI ClassA QP Limit VCCI ClassA AV Limit VCCI ClassA AV Limit VCCI ClassA QP Limit VCCI ClassA QP Limit VCCI ClassA AV Limit VCCI ClassA AV Limit VCCI ClassA QP Limit VCCI ClassA QP Limit VCCI ClassA AV Limit VCCI ClassA AV Limit 34/35
35 2 17. EMI 特性 Electro Magnetic Interference characteristics (b) 雑音電界強度 ( 輻射ノイズ ) Radiated Emission Noise Conditions Vin : VAC Io : % HORIZONTAL VERTICAL VCCI ClassA QP Limit VCCI ClassA QP Limit VCCI ClassA QP Limit VCCI ClassA QP Limit VCCI ClassA QP Limit VCCI ClassA QP Limit 35/35
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