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Abstract: Common Mode Inductors Horizontal PCB CEP4737 CEP4737 CEP4737 CEP4737 is a Common Mode Inductor for Switch Mode Power Supplies. · · · · · Inductance range: 0.33 to 82 mH. Rated current range: 10 to 0.8 , * 11 * 12 * 13 * 14 * 15 Part No. CEP4737 CEP4737 - Ind. (mH) Min. DCR Ohms Max. Rated , 3.3 3.9 4.7 0.063 0.086 0.095 4.0 3.4 3.2 * 28 * 29 * 30 56 68 82 1.05 1.46 , 11 5 11 Dimensions, Inches P/N CEP4737 CEP4737 L 1.36 W 1.20 H 1.12 A 0.60 C D ... Original
datasheet

1 pages,
46.58 Kb

CEP4737 E100878 CEP4737 abstract
datasheet frame
Abstract: OR Inductance Code Description: SMD (shielded) power inductor Applications: Back light of LCD , Power Inductors - Shielded CTDS1608BLF CTDS1608BLF Series ctparts.com SPECIFICATIONS Parts are , 100 100 100 100 .95 1.4 1.7 2.2 3.8 4.9 >10 >10 >10 >10 >10 >10 12 10 8 6 5 , 20 CTDS1608BLF-106 CTDS1608BLF-106 Not shown at actual size. L Test Freq. (kHz) CTDS1608BLF-105 CTDS1608BLF-155 CTDS1608BLF-155 CTDS1608BLF-225 CTDS1608BLF-225 CTDS1608BLF-335 CTDS1608BLF-335 CTDS1608BLF-475 CTDS1608BLF-475 CTDS1608BLF-685 CTDS1608BLF-685 From .10 mH to 10 mH ... Original
datasheet

1 pages,
211.16 Kb

CTDS1608BLF CTDS1608BLF-104 CTDS1608BLF-105 CTDS1608BLF-154 CTDS1608BLF-155 CTDS1608BLF-224 CTDS1608BLF-225 CTDS1608BLF-334 CTDS1608BLF-335 CTDS1608BLF-474 CTDS1608BLF-684 SMD code marking 292 SMD INDUCTOR marking code 224 CTDS1608BLF abstract
datasheet frame
Abstract: Over current protection lL(max) Max. inductor current 1.05 1.2 1.35 A UVLO SECTION Start , CHARACTERISTICS (These characteristic graphs are normalized at Ta=25°C) 1.2 1.15 1.1 1.05 Fose 0.95 0.9 0.85 , . 1.05 If k i *-- 0.95 0.9 0.85 0.8 > >5 0 25 50 75 100 125 150 Temperature[Í J Figure 2. Feedback Source Current lo p 1.2 1.15 1.1 1.05 1 0.95 0.9 0.85 0.8 -25 0 25 50 75 , 1.1 1.05 0.95 0.9 0.85 -25 0 25 50 75 100 125 150 Te m pe ratu re [ I f Figure 10. Shutdown ... OCR Scan
datasheet

8 pages,
359.45 Kb

KA1M0265R KA1M0265 KA1M0265R abstract
datasheet frame
Abstract: current 1.05 1.2 1.35 A UVLO SECTION Start threshold voltage Vth(H) - 14 15 16 V Minimum , normalized at Ta=25°C) 1.2 1.15 1.1 1.05 Fose 0.95 0.9 0.85 0.8 -25 0 25 50 75 100 125 150 Tempe rature [I J Figure 1. Operating Frequency 1.2 1.15 . 1.05 If k i *-- 0.95 0.9 0.85 0.8 , 1.05 1 0.95 0.9 0.85 0.8 -25 0 25 50 75 1 00 1 25 150 Tempe rature [ i f Figure 3. Operating Current , Figure 9. Vcc Zener Voltage Vsd 1.15 1.1 1.05 0.95 0.9 0.85 -25 0 25 50 75 100 125 150 Te m pe ratu ... OCR Scan
datasheet

8 pages,
359.27 Kb

KA1H0280R fairchild flyback design KA1H0280R abstract
datasheet frame
Abstract: current 1.05 1.2 1.35 A UVLO SECTION Start threshold voltage Vth(H) - 14 15 16 V Minimum , Ta=25°C) 1.2 1.15 1.1 1.05 Fose 0.95 0.9 0.85 0.8 -25 0 25 50 75 100 125 150 Tempe rature [I J Figure 1. Operating Frequency 1.2 1.15 . 1.05 If k i *-- 0.95 0.9 0.85 0.8 , 1.05 1 0.95 0.9 0.85 0.8 -25 0 25 50 75 1 00 1 25 150 Tempe rature [ i f Figure 3. Operating Current , Figure 9. Vcc Zener Voltage Vsd 1.15 1.1 1.05 0.95 0.9 0.85 -25 0 25 50 75 100 125 150 Te m pe ratu ... OCR Scan
datasheet

8 pages,
359.1 Kb

KA1M0280R KA1M0280R abstract
datasheet frame
Abstract: possible, therefore, it is recommended that one uses a ceramic capacitor. The inductor must be 6.8 mH. The , for Current Mode PWM Converter 1.05, 1.35, 1.57, 1.8 Fixed Output Voltages Shutdown Current , into the Pulse Mode. Connection from Power MOSFETs to the Inductor. MAXIMUM RATINGS (Note 1 , Threshold Vo - 3.0 - % Feedback Voltage Accuracy, Vout Set = 1.05 V CB0 = L, CB1 = L , Output Overvoltage Threshold Vo - 3.0 - % Feedback Voltage Accuracy, Vout Set = 1.05 V ... Original
datasheet

16 pages,
204.18 Kb

NCP1509MNR2G NCP1509MNR2 NCP1509 LLF4017 GRM21BR60J106 C2012X5R0J106 NCP1509 abstract
datasheet frame
Abstract: Hy 750 mH 500 mH 200 mH 100 mH 1840 1380 920 368 185 47 54 66 105 148 5.7 6.6 , nearest standard inductor. 62000 Series Larger Size Schematic "62000" SERIES Part Number , 62332 62352 62372 62392 298 248 196 150 100 2.8 2.3 1.8 1.4 1.2 3.8 4.2 4.75 5.5 , 63000 64000 65000 Max. Height .325 (7.87) .360 (8.89) .480 (12.19) A. Max Dia. .430 , ) 67.66 65.30 61.51 61.51 61.51 63220 63240 63260 63280 63300 75 mH 50 mH 30 mH 20 mH 15 ... Original
datasheet

6 pages,
583.67 Kb

202E 62132 62212 107D 64134 inductor 250 mh HY 400 62352 500 mh inductor datasheet abstract
datasheet frame
Abstract: mA 22 mH Of course, from a practical stand point, the inductor must be sized to cope with the , Figure 5. Maximum Output Power as a Function of the Battery Supply Voltage Figure 6. Typical Inductor , Inductor 22 mH CoilCraft Power Wafer LPQ4812-223KXC LPQ4812-223KXC Inductor 22 mH WURTH Power Choke 744031220 Inductor 22 mH TDK Power Inductor VLP4614T-220MR40 VLP4614T-220MR40 http://onsemi.com 19 , Description 1 Vout POWER This pin is the power side of the external inductor and must be connected ... Original
datasheet

22 pages,
276.96 Kb

NCP9003SNT1G A114 A115 JESD22 JESD78 LWT67C MBR0530 NCP9003 223KXC LPQ4812-223KXC grm42-6x7r NCP9003 abstract
datasheet frame
Abstract: power switch is turned on, current drawn from the input begins to flow through the inductor and the , and a power source to pin +VAUX to realize the PWM dimming function. When the dimming signal exceeds , currents. Figure 5 illustrates this point clearly as at low VIN and low inductor value (47 mH), the , the board, high power LEDs with a typical Vf = 3.42 V @ 350 mA were connected in several series , across a broad input voltage range. The output current is dependent on the peak current, inductor value ... Original
datasheet

6 pages,
753.6 Kb

U301 Cree c306 TRANSISTOR OSRAM 12Vac halogen lamp OSRAM halogen light Q301 TRANSISTOR r315 transistor j307 100mh inductor r315 TRANSISTOR transistor c307 D304 TRANSISTOR transistor D304 AND8289 NCP/V3063 AND8289 abstract
datasheet frame
Abstract: PROTECTION SECTION Over current protection lL(max) Max. inductor current 1.89 2.15 2.41 A UVLO , 1.05 Fose 0.95 0.9 0.85 0.8 -25 0 25 50 75 100 125 150 Tempe rature [I J Figure 1. Operating Frequency 1.2 1.15 . 1.05 If k i *-- 0.95 0.9 0.85 0.8 > >5 0 25 50 75 100 125 150 Temperature[Í J Figure 2. Feedback Source Current lo p 1.2 1.15 1.1 1.05 1 0.95 0.9 , Zener Voltage Vsd 1.15 1.1 1.05 0.95 0.9 0.85 -25 0 25 50 75 100 125 150 Te m pe ratu re [ I f ... OCR Scan
datasheet

8 pages,
359.01 Kb

KA1H0380R KA1H0380R abstract
datasheet frame

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&"Arial,Bold"&12NCP1562 12NCP1562 12NCP1562 12NCP1562 Design Tool &L&A&C&"Arial,Bold"&12Provided by ON Semiconductor&R&D Step 2: Power Stage Output Stage Primary Side Inductor Ripple Current % 15.0 % Magnetizing Inductance 120.0 mH Suggested Output Inductor mH High Line Ipri(pk1) A Selected Output Inductor 1.5 mH High Line Ipri(rms1) A Max Inductor Ripple Current A Low Line Ipri(pk2) A Min Inductor Ripple Current A Low Line Ipri(rms2) A Low Line .0 0.95*DCmax DCmax 1.05*DCmax Switch VDS Rating Vin, Input Voltage(V) VDS, Drain Voltage(V) Drain
www.datasheetarchive.com/download/42307848-608898ZC/ncp1562 worksheet.xls
On Semiconductor 29/08/2007 623 Kb XLS ncp1562 worksheet.xls
nF INPUT2 C5 330nF C6 1nF -V CC -V CC D98AU978A 7 9 14 2 4 6 10 12 13 = 8 no LC filter 70 120 mA V OS Output Offset Voltage -150 +150 mV P O Output Power AU1091 AU1091 AU1091 AU1091 Figure 7. Frequency Response 0 2 4 6 8 10 12 14 16 18 20 22 24 26 Output Power (W .40 0.055 D 0.75 0.90 1.05 0.029 0.035 0.041 E 0.37 0.39 0.42 0.014 0.015 0.016 F (1) 0.57 0 .169 M1 3.60 4.00 4.40 0.142 0.157 0.173 N 2.20 0.086 O 2 0.079 R 1.70 0.067 R1 0.5 0.02 R2 0
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/6871-v1.htm
STMicroelectronics 25/05/2000 11.36 Kb HTM 6871-v1.htm
CC D98AU978A 7 9 14 2 4 6 10 12 13 16 1 25 18 19 17 20 24 22 21 23 15 8 11 3 5 ; f=1KHz Figure 4. Distortion vs. Output Power 0 2 4 6 16 18 20 22 24 8 10 12 14 P O (W) 0 .00 0.070 0.074 0.079 C 1.40 0.055 D 0.75 0.90 1.05 0.029 0.035 0.041 E 0.37 0.39 0.42 0.014 0.015 0 .169 M1 3.60 4.00 4.40 0.142 0.157 0.173 N 2.20 0.086 O 2 0.079 R 1.70 0.067 R1 0.5 0.02 R2 0.3 0 PRODUCT PREVIEW 25W + 25W OUTPUT POWER: R L = 8 W /4 W; THD = 10% HIGH EFFICIENCY WIDE SUPPLY
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STMicroelectronics 20/10/2000 12.26 Kb HTM 6871.htm
&R&D Step 2: Power Stage Output Stage Primary Side Inductor Ripple Current % 15.0 % Magnetizing Inductance 2000.0 mH Suggested Output Inductor mH High Line Ipri(pk1) A Selected Output Inductor 22.0 mH High Line Ipri(rms1) A Max Inductor Ripple Current A Low Line Ipri(pk2) A Min Inductor Ripple Current A Low Line W Input Inductance 0.0 mH Inductor Series Resistance 13.0 mW Capacitor Ripple Current A Average Inductor .367346938775512 1200.0 0.95*DCmax DCmax 1.05*DCmax Switch VDS Rating Vin, Input Voltage(V) VDS, Drain Voltage
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On Semiconductor 29/08/2007 260.13 Kb ZIP ncp1282 design tool.zip
(400 V / 6 A). Typical applications cover off line power supplies with a secondary power , Pulse Width Limited by T J max, d stray inductance, and allowing a snubberless operation for low output power. SOURCE PIN voltage is going below 0.5V, the shut-down of the circuit occurs, with a zero duty cycle for the power Output Low Level I COMP = -400 m A V DD = 14 V 0.2 V V COMPHI Output High Level I
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/6910.htm
STMicroelectronics 20/10/2000 32.09 Kb HTM 6910.htm
(400 V / 6 A). Typical applications cover off line power supplies with a secondary power C, Pulse Width Limited by T J max, d allowing a snubberless operation for low output power. SOURCE PIN: Power MOSFET source pin voltage is going below 0.5V, the shut-down of the circuit occurs, with a zero duty cycle for the power m A V DD = 14 V 0.2 V V COMPHI Output High Level I COMP = 400 m A
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/6910-v1.htm
STMicroelectronics 25/05/2000 30.29 Kb HTM 6910-v1.htm
0 < V i < V S -1 1 m A V i = -7V -1 -0.5 -0.1 mA H ys2 Input Comparators Hysteresis See Analog Input Comparators Reference Voltage Reference pin Floating 1.05 1.25 1.35 V I ref Sink/Source Current on -Pull Mode Request -0.2 0.8 V 3-State Mode Request 2 5.5 V I in Input Current V i = 0V 10 25 m A I dlkg 14 case). R th j-amb2 If the power dissipating pins (the four central ones), as well as the others, have a L6374 L6374 L6374 L6374 INDUSTRIAL QUAD LINE DRIVER ADVANCE DATA FOUR INDEPENDENT LINE DRIVERS WITH 100 mA UP TO 35V
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STMicroelectronics 14/06/1999 16.69 Kb HTM 1578-v2.htm
0 < V i < V S -1 1 m A V i = -7V -1 -0.5 -0.1 mA H ys2 Input Comparators Hysteresis See Analog Input Comparators Reference Voltage Reference pin Floating 1.05 1.25 1.35 V I ref Sink/Source Current on -Pull Mode Request -0.2 0.8 V 3-State Mode Request 2 5.5 V I in Input Current V i = 0V 10 25 m A I dlkg 14 case). R th j-amb2 If the power dissipating pins (the four central ones), as well as the others, have a L6374 L6374 L6374 L6374 INDUSTRIAL QUAD LINE DRIVER ADVANCE DATA FOUR INDEPENDENT LINE DRIVERS WITH 100 mA UP TO 35V
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1578-v1.htm
STMicroelectronics 02/04/1999 16.72 Kb HTM 1578-v1.htm
1 m A V i = -7V -1 -0.5 -0.1 mA H ys2 Input Comparators Hysteresis See Analog Inputs Setting pin forced current + 1 mA V set Setting pin forced voltage -0.3 to 5 V V diag 14 Reference pin Floating 1.05 1.25 1.35 V I ref Sink/Source Current on Reference Pin V ref = 0V A I dlkg 14 Diagnostic Output Leakage Diagnostic Off; V diag = 24V 5 m A V diag to the supply voltage as long as possible. If an output load made of an inductor and a resis
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STMicroelectronics 25/05/2000 18.51 Kb HTM 1578-v3.htm
A V i = -7V -1 -0.5 -0.1 mA H ys2 Input Comparators Hysteresis See Analog Inputs Sections 100 pin forced current + 1 mA V set Setting pin forced voltage -0.3 to 5 V V diag 14 External 11 Input Comparators Reference Voltage Reference pin Floating 1.05 1.25 1.35 V I ref Sink Current V i = 0V 10 25 m A I dlkg 14 Diagnostic Output Leakage Diagnostic Off; V diag = 24V 5 m linger close to the supply voltage as long as possible. If an output load made of an inductor and a
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1578.htm
STMicroelectronics 20/10/2000 19.33 Kb HTM 1578.htm