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| Catalog Datasheet Results | Type | Document Tags |
| Abstract: : FRACTIONS DECHALS ANCLES ±1/32 XX t M t 1/2° .XXX . .005 SEE NOTE 1 NONE â-¡0 NOT SCALE DRAWING CONTRACT NO. 10/13/94 SCALE WESTCORwCOT Corp. INDUCTOR, 1 MH TOROID B 2/1 36-00030 FLENAME: B600B0CDWG B600B0CDWG 1 OF 1 , , 1. MATERIALS: UL RECOGNIZED 94V-2 FLAMMABILITY RATING CLASS B , 0.9-2mH AT 30% @ 1 KHz. 2.2 DCR - 35 mOHMS MAX CONSTRUCTION: 3.1 WIND 3.2 TIN LEADS CLOSE TO CORE AS ... | OCR Scan |
1 pages, |
ZJ-41005-TC 13MH magnet core inductor 1 mH datasheet abstract |
| Abstract: , L2 Discrete inductor 1 mH or printed microstrip inductor D1 Z diode 5.6 V (type BZW 22 C5 V , Ordering Code (tape and reel) Package1) CGY 50 G2 Q68000-A8370 Q68000-A8370 P-SOT143-4-1 P-SOT143-4-1 1 , 82 °C)2) Ptot 400 mW 1) 2) See application circuit. TS is measured on the source 1 , Channel-soldering point1) RthChS < 170 K/W 1) TS is measured on the source 1 lead at the soldering point to the PCB. Data Book 1 03.00 CGY 50 Note Exceeding any of the max. ratings may ... | Original |
6 pages, |
smd marking code vd Q68000-A8370 P-SOT143-4-1 P-SOT-143-4-1 GPS05559 NF marking TRANSISTOR SMD c4 marking code C3 SMD Transistor smd TRANSISTOR code marking 013 datasheet abstract |
| Abstract: turned on, the PFC inductor (1 mH) is connected between the rectified line input (+) and (-) causing the , saves 1 component and a secondary winding in the PFC inductor) 4) Saves a multiplier to sense the , .1 II. Test Results .1 III. Electrical Circuit , high power factor, but the classical solution using an additional PFC inductor, an additional MOSFET ... | Original |
11 pages, |
0-15V 10uF 450v 4148 ZENER AN-1075 cfl complete circuit DF10S IR2520D application IRF730 PFC inductor ZENER 4148 ZENER 4148 DATASHEET IR2520D main disadvantages of mosfet zener diode ST 4148 AN-1075 abstract |
| Abstract: wire, AWG #22 L1 Inductor, 1 mH (see Application Note U-134 U-134) Q1 Channel MOSFET, 500 V, 0.25 , . System Power MAN 1 Description The UC3854A UC3854A and UC3854B UC3854B power factor correction (PFC , with minimal design effort. 2 Specification Differences Table 1. Specification Differences , 1 MHz typ 5 MHz typ 5 MHz typ Current amplifier offset 4 mV, -4 mV max 0 mV, -4 mV , 1994 Â Revised December 2005 UC3854B UC3854B DN-44 DN-44 1 www.ti.com Application Information 3 ... | Original |
5 pages, |
UC3854B APT5025 U-134 1N5820 uc3854 Application Note UC3854 datasheet UC3854 for PFC UC3854A/UC3854B UC3854 datasheet for PFC UC3854 DN-39D uc3854 Application UC3854A inductor 1 mH SLUA177A UC3854A SLUA177A abstract |
| Abstract: Inductor, 1 mH, 5%* D1 Diode, 100 V, 100 mA, 4 ns* U3 Dual transient suppressor D2, D3, D6 , device* KR, KT Relay, 2C contacts, 1500 V rating L Inductor, 1 mH, 5% D1 Diode, 100 V , contacts, 1500 V rating L Inductor, 1 mH, 5% D1 Diode, 100 V, 100 mA, 4 ns U3 Dual , typical two-wire interface (see Figure 1) consists of two current mode line-driver amplifiers , ) current. The two-wire currents are: I AX = K 1 ( I LI + I MI ) and I BX = K 1 ( I LI Â I MI ) Where: K1 ... | Original |
28 pages, |
RTD Dual SENSING CIRCUIT 2N7000 0.47 polyester capacitor rm datasheet abstract |
| Abstract: Relay, 2C contacts, 1500 V rating L Inductor, 1 mH, 5%* D1 Diode, 100 V, 100 mA, 4 ns , , 1500 V rating L Inductor, 1 mH, 5% D1 Diode, 100 V, 100 mA, 4 ns U3 Dual transient , , 1 mH, 5% D1 Diode, 100 V, 100 mA, 4ns U3 Dual transient suppressor D6 Diode 100 V , telephone transmitter. The typical two-wire interface (see Figure 1) consists of two current mode , (differential) current. The two-wire currents are: I AX = K 1 ( I LI + I MI ) and I BX = K 1 ( ILI Â I MI ... | Original |
28 pages, |
Linecard Products AMD SLIC am795 2N7000 datasheet abstract |
| Abstract: L Inductor, 1 mH, 5%* D1 Diode, 100 V, 100 mA, 4 ns* U3 Dual transient suppressor , rating L Inductor, 1 mH, 5% D1 Diode, 100 V, 100 mA, 4ns U3 Dual transient suppressor , , 1 mH, 5% D1 Diode, 100 V, 100 mA, 4 ns U3 Dual transient suppressor D6 Diode 100 V , interface (see Figure 1) consists of two current mode line-driver amplifiers, line-voltage sensing , |ISENSE A| + RHP Shorting Circuit 2 GTX VACMET Â HPA + Absolute Value 1 ... | Original |
26 pages, |
data sheet transistor 2n7002 dc voltage regulator using scr energy meter circuit diagram HER506A RTD SENSING CIRCUIT single in line resistor package series RESISTOR capacitor NETWORK VOLTAGE DEPENDENT RESISTOR schematic diagram ac voltage regulator resistor-FUSE crt monitor circuit diagram datasheet abstract |
| Abstract: operation temperature range. (See Page 4, Fig. 3 & Fig. 4) Inductor Selection (L1) Use a 1 mH/0.15 A , Coils Electronics Co., Ltd. Part# CRCH664 CRCH664� 102K�831015 Inductor: 1 mH / 0.15 A (852)�2341�5539 , ELECTRICAL CHARACTERISTICS (VDD = 2.65 V, TA = 25�C, Lamp Capacitance = 2.2 nF, Coil = 1 mH unless TA �20 , frequency. Measurement below is recorded with the condition: coil = 1 mH, EL lamp = 2.2 nF and at room , 300 VDD = 2.65 V Coil = 1 mH EL lamp = 2.2 nF VDD = 2.65 V Coil = 1 mH EL lamp = 2.2 nF 600 ... | Original |
12 pages, |
MC33441DTBR2 MC33441 el inverter Schematic DC-AC Power Inverter schematic 50 hz Oscillator inverter dc ac schematic diagram dc-ac inverter nf33 MC33441 abstract |
| Abstract: range. (See Page 4, Fig. 3 & Fig. 4) Inductor Selection (L1) Use a 1 mH/0.15 A inductor for , 102K-831015 102K-831015 Inductor: 1 mH / 0.15 A (852)-2341-5539 http://onsemi.com 7 MC33441 MC33441 Figure 11. , Capacitance = 2.2 nF, Coil = 1 mH unless Operating Ambient Temperature TA -20 to +70 �C Storage , condition: coil = 1 mH, EL lamp = 2.2 nF and at room temperature. System designer will base on the , 2.65 V Coil = 1 mH EL lamp = 2.2 nF 200 VDD = 2.65 V Coil = 1 mH EL lamp = 2.2 nF 600 ... | Original |
9 pages, |
MC33441DTBR2 MC33441 dc-ac inverter schematic diagram h-bridge inverter circuits DC-AC Power Inverter schematic schematic diagram dc-ac inverter MC33441 abstract |
| Abstract: required. Resistor Selection (R1) Use a 1 mH/0.15 A inductor for MC33441 MC33441. Higher inductor values can be , : 14.5 mm x 47 mm Color: Yellow�Green Inductor: 1 mH / 0.15 A (886)�2�22692827 (852)�2341�5539 Part# , ELECTRICAL CHARACTERISTICS (VDD = 2.65 V, TA = 25�C, Lamp Capacitance = 2.2 nF, Coil = 1 mH unless , : coil = 1 mH, EL lamp = 2.2 nF and at room temperature. By substitute the equation of FOSC from , OPERATING CHARACTERISTICS 300 250 OSC, FREQ (KHz) 200 150 100 50 0 50K VDD = 2.65 V Coil = 1 mH EL lamp = ... | Original |
12 pages, |
DC-AC Power Inverter schematic MC33441 MC33441 abstract |
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| % N1: 1.7mH % N1: 2.7mH % N1: 1.4mH % N1: 4.0mH % N1+N2: 16mH www.datasheetarchive.com/files/delta-electronics/product/networking/magnetic_switching.htm |
Delta Electronics | 06/07/2004 | 116.09 Kb | HTM | magnetic_switching.htm |
| - - 2500V 1.64:1 ±25% PRI: 1.48mH Inductor . RF . Inductor/X'fmr . Networking Components - - 1500V 1:2 ±2 - - 2050V 4:1 ±2 www.datasheetarchive.com/files/delta-electronics/product/networking/magnetic_xdsl_sdsl.htm |
Delta Electronics | 06/07/2004 | 19.88 Kb | HTM | magnetic_xdsl_sdsl.htm |
| 1.5:1 ±1% PRI: 3.24mH 1.5:1 ±1% PRI: 3.24mH 2:1 ±1% PRI: 1.0mH 2:1 ±1% PRI: 3.0mH 2:1 ±1% PRI: 3.0mH www.datasheetarchive.com/files/delta-electronics/product/networking/magnetic_xdsl_hdsl.htm |
Delta Electronics | 06/07/2004 | 76.27 Kb | HTM | magnetic_xdsl_hdsl.htm |
| -CON 2802S-02-G1 18 1 J1 Shunt, .079" center COMM CON CCIJ2MM-138G CCIJ2MM-138G CCIJ2MM-138G CCIJ2MM-138G 19 0 L1 (Option 3) Inductor, 68uH COOPER ELECTRONICS UP2-680 UP2-680 UP2-680 UP2-680 20 1 L1 Inductor, 33uH SUMIDA CDRH125-330MC CDRH125-330MC CDRH125-330MC CDRH125-330MC 21 0 L1 (Option 2) Inductor, 47 IGN 30 4 MH1-MH4 STAND-OFF, NYLON HEX #4-40x1/4" MICRO PLASTICS #14HTSP101 14HTSP101 14HTSP101 14HTSP101 31 4 MH1-MH4 SCREW, #4 /16/2005 Rev. 2 Item Qty Reference Part Description Manufacture / Part # 1 1 C1 Capacitor, X7R 220pF 50V 10% AVX 08055A221KAT 08055A221KAT 08055A221KAT 08055A221KAT 2 1 C3 Capacitor, chip 4.7uF 100V MARCON THCR70E2A475ZT THCR70E2A475ZT THCR70E2A475ZT THCR70E2A475ZT 3 0 C3 (Option2) Capacitor www.datasheetarchive.com/download/78789508-365094ZC/326b.zip (326B_BOM.pdf) |
Linear | 22/09/2009 | 557.07 Kb | ZIP | 326b.zip |
| Inductor and Transformer Inductor . RF . Inductor/X'fmr . Networking Components - PFC Chokes - SMT Power Inductor Transformers & Inductors - Solenoid Series Picture Inductance (mH www.datasheetarchive.com/files/delta-electronics/product/inductor/line.htm |
Delta Electronics | 16/07/2004 | 25.4 Kb | HTM | line.htm |
| 2.4 29 0.75 Li-Ion, Li-Polymer, NiCd, NiMH, SLA 1 to 6 (Li LT1510 LT1510 LT1510 LT1510 7 29 1 Li-Ion, Li-Polymer, NiCd, NiMH, SLA 2 Li-Ion, Li-Polymer, NiCd, NiMH, SLA 1 to 4 (Li), 1 to 12 (Ni LTC1980 LTC1980 LTC1980 LTC1980 4.1 12 2 Li-Ion, Li-Polymer, NiCd, NiMH 7 29 3 Li-Ion, Li-Polymer, NiCd, NiMH, SLA 1 to 4 (Li), 1 to www.datasheetarchive.com/files/linear/c1003/c1037/c1078/c1089/c1089-allcolumnstypical-v1.html |
Linear | 21/11/2005 | 25.22 Kb | HTML | c1089-allcolumnstypical-v1.html |
| synthetic inductor's Q is affected by its series resistance. (Comparable 1.25mH inductors also have an inductor (L SYN) with one end connected to ground. Figure 1. This single-port network simulates substituting the simulated inductor of Figure 1 in the ladder filter of Figure 2. The filter has a 3.2k Application Note: Third-Order Highpass Filter Has Synthetic Inductor Third-Order Highpass Filter Has Synthetic Inductor Inductors have a bad www.datasheetarchive.com/files/maxim/0003/appno069.htm |
Maxim | 04/04/2001 | 9.37 Kb | HTM | appno069.htm |
| /W Coil/Inductor (L1) = mH CFL1 = pF PD in Inductors, total = Watts ' TF' = C/W Capacitor (CBYP) = mF CF (L1) = 50.0 mH parameters calculated to the left. Vee - Full Load = 20.0 Volts Ipeak in Load = A = 25.0 C Calculated Inductor and Capacitor Size RFL1 = 620.0 kW Efficiency of Class D = % Heat Sink Sheet1 Sheet2 Sheet3 Print_Area Note: All calculations on this spreadsheet are approximate calculations. Performance should be verified using the evaluation board. Rev 1.1 Last Update: 36753.0 Best www.datasheetarchive.com/download/32979357-551447ZC/nsc07833.xls |
National | 28/06/2001 | 78.5 Kb | XLS | nsc07833.xls |
| COMM-CON 2802S-02-G1 18 1 J1 Shunt, .079" center COMM CON CCIJ2MM-138G CCIJ2MM-138G CCIJ2MM-138G CCIJ2MM-138G 19 0 L1 (Option 3) Inductor, 68uH COOPER ELECTRONICS UP2-680 UP2-680 UP2-680 UP2-680 20 1 L1 Inductor, 33uH SUMIDA CDRH125-330MC CDRH125-330MC CDRH125-330MC CDRH125-330MC 21 0 L1 (Option 2) Inductor, 47uH COOPER ELECTRONICS UP2-470 UP2-470 UP2-470 UP2-470 22 0 Q1 (Option) Xstr, NPN, SOT23 23 1 R2 Resistor, Chip 15.4K EGN or LT1766IGN LT1766IGN LT1766IGN LT1766IGN 30 4 MH1-MH4 STAND-OFF, NYLON HEX #4-40x1/4" MICRO PLASTICS #14HTSP101 14HTSP101 14HTSP101 14HTSP101 31 4 MH1-MH4 /21/01 Rev. 2 Item Qty Reference Part Description Manufacture / Part # 1 1 C1 Capacitor, X7R 220p www.datasheetarchive.com/download/78789508-365094ZC/326b.zip (326b_BOM.pdf) |
Linear | 22/09/2009 | 557.07 Kb | ZIP | 326b.zip |
| 19.0 0.0 L1 (Option 3) Inductor, 68uH COOPER ELECTRONICS UP2-680 UP2-680 UP2-680 UP2-680 20.0 1.0 L1 Inductor, 33uH SUMIDA CDRH125-330MC CDRH125-330MC CDRH125-330MC CDRH125-330MC 21.0 0.0 L1 (Option 2) Inductor, 47uH COOPER ELECTRONICS UP2-470 UP2-470 UP2-470 UP2-470 22.0 0.0 Q1 %, 1/8W AAC CR10-222JM CR10-222JM CR10-222JM CR10-222JM 29.0 1.0 U1 I.C. LT1766 LT1766 LT1766 LT1766 LINEAR TECHNOLOGY LT1766EGN LT1766EGN LT1766EGN LT1766EGN or LT1766IGN LT1766IGN LT1766IGN LT1766IGN 30.0 4.0 MH1-MH4 STAND-OFF, NYLON HEX #4-40x1/4" MICRO PLASTICS #14HTSP101 14HTSP101 14HTSP101 14HTSP101 31.0 4.0 MH1-MH4 SCREW, #4-40 x 1 Sheet1 Print_Titles &L&"Arial,Bold Italic"&14Linear Technology Corporation&"Arial,Bold"&16 www.datasheetarchive.com/download/78789508-365094ZC/326b.zip (326Br2_BOM.xls) |
Linear | 22/09/2009 | 557.07 Kb | ZIP | 326b.zip |