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ADS5463HFG/EM Texas Instruments Cap,Ceramic,20pF,100VDC,.1pF -Tol,.1pF +Tol,NP0 TC Code,-30,30ppm TC ri Buy
MSP430F5131IYFFR Texas Instruments Cap,Ceramic,2.8pF,100VDC,.25pF -Tol,.25pF +Tol,NP0 TC Code,-30,30ppm TC ri Buy
MSP430F5151IYFFR Texas Instruments Cap,Ceramic,5.9pF,100VDC,.25pF -Tol,.25pF +Tol,NP0 TC Code,-30,30ppm TC ri Buy

capacitor 1000uF 16V description

Catalog Datasheet Results Type PDF Document Tags
Abstract: 3.Print Wiring Board Assembly Print wiring Phenolic 94Y-0 94Y-0,105°C 1 Board Diode 50V 1A 2 Capacitor 1000uf 16V 85°C 1 Ceramic *uf y Capacitor Resistor * Q W 4.Output Cord AWG# 24 6 ft min 1 ... OCR Scan
datasheet

3 pages,
299.07 Kb

EI-35 DPD090020-P1 "silicon steel" valox 420 seo material specification Transformer EI-35 capacitor 1000uf capacitor 1000uF 16V DV-035-0028 DV-035-0028 abstract
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Abstract: Capacitor 1000uf 16V 85°C 1 Ceramic y Capacitor Resistor *& W 1 4. Output Cord AWG# 24 6 ft min 1 5 , ) Core Film: SPLIT Core : EI- 41 Testing Circuit: 1000UF/16V Output Plug Drawing: PLUG:3.5nim V Output ... OCR Scan
datasheet

3 pages,
280.37 Kb

capacitor 1000uf capacitor 1000uF 16V DPD090050-P1 DPD090050-P1 abstract
datasheet frame
Abstract: SIZE DATE: 08/05/09 SCALE: NTS Suresh APPROVED BY: Farnell Capacitor 1000µF - 16V A , : 08/05/09 SCALE: NTS Suresh APPROVED BY: Farnell Capacitor 1000µF - 16V A DWG NO. , Number Table Description Part Number Capacitor, 1000µF, 16V HT102M1CB-1021 HT102M1CB-1021(E) http , Capacitor 1000µF - 16V A DWG NO. M10002100 M10002100 U.O.M.: mm ELECTRONIC FILE 77123_DWG SHEET: 3 , ±20% (120Hz, 20°C) Capacitance 1000µF Rated Voltage 16V dc Surge Voltage 20V dc I ... Original
datasheet

3 pages,
106.91 Kb

HT102M1CB-1021 electronic capacitor 1000uF 77123 on capacitor 1000uF 16V capacitor 1000uF 16V capacitor 1000uf datasheet abstract
datasheet frame
Abstract: Fairchild FAN5091M FAN5091M 5 3 6 2 2 Optional 2 2 2 3 1 1 4 1 Description 100nF, 50V Capacitor 1000µF, 16V , Description 100nF, 50V Capacitor 1000µF, 16V Electrolytic 1500µF, 6.3V Electrolytic 0.5A, 20V Schottky Diode , Description 100nF, 50V Capacitor 1000µF, 16V Electrolytic 1500µF, 6.3V Electrolytic 0.5A, 20V Schottky Diode , capacitor to AGND. Analog Ground. Return path for low power analog circuitry. This pin should be connected , Internal IC supply. Connect to system 12V supply, and decouple with a 0.1µF ceramic capacitor. Power Good ... Original
datasheet

20 pages,
114.64 Kb

schottky diode 16a pc 817 mosfet gate drive ECU-V1H104ZFX capacitor 1000uF 16V 2028 mosfet driver FAN5091 FAN5091 abstract
datasheet frame
Abstract: 100nF, 50V Capacitor 1µF, 25V Capacitor 1000µF, 16V Electrolytic 1500µF, 6.3V Electrolytic 8A, 35V , 2 3 Optional 2 2 4 1 1 1 1 1 6 1 Description 100nF, 50V Capacitor 1µF, 25V Capacitor 1000µF, 16V , 100nF, 50V Capacitor 1µF, 25V Capacitor 1000µF, 16V Electrolytic 1500µF, 6.3V Electrolytic 16A, 35V , , refer to Applications Bulletin AB-16 AB-16. 1.3 µH +12V Vin 1000µF, 16V Electrolytic A typical value for , capacitor to AGND. Analog Ground. Return path for low power analog circuitry. This pin should be connected ... Original
datasheet

21 pages,
193.99 Kb

capacitor 1uF 25V capacitor 1000uF 16V FAN5093 FAN5093 abstract
datasheet frame
Abstract: , 25V Capacitor 1000µF, 16V Electrolytic 1500µF, 6.3V Electrolytic 15A, 45V Schottky Diode 1A, 30V , 4 1 1 1 1 1 4 1 Description 100nF, 50V Capacitor 1µF, 25V Capacitor 1000µF, 16V Electrolytic 1500µF , 4 1 3 6 2 3 Optional 2 2 2 1 1 1 1 1 4 1 Description 100nF, 50V Capacitor 1µF, 25V Capacitor 1000µF , , refer to Applications Bulletin AB-16 AB-16. 1.3 µH +12V Vin 1000µF, 16V Electrolytic A typical value for , controller. 5V Rail. Bypass this pin with a 1µF ceramic capacitor to AGND. Analog Ground. Return path for low ... Original
datasheet

21 pages,
243.26 Kb

capacitor 1000uF 16V FAN5093 FAN5093 abstract
datasheet frame
Abstract: 2 6 1 1 1 1 4 1 Description 100nF, 50V Capacitor 1µF, 25V Capacitor 1000µF, 16V Electrolytic 1500µF , 100nF, 50V Capacitor 1µF, 25V Capacitor 1000µF, 16V Electrolytic 1500µF, 6.3V Electrolytic 16A, 35V , 1 5 8 2 3 1 Optional 2 4 4 6 1 1 1 1 8 1 Description 100nF, 50V Capacitor 1µF, 25V Capacitor 1000µF , 1.3 µH +12V Vin 1000µF, 16V Electrolytic A typical value for the inductor is 1.3µH at an oscillator , Table 1. 5V Rail. Bypass this pin with a 1µF ceramic capacitor to AGND. Analog Ground. Return path for ... Original
datasheet

21 pages,
270.17 Kb

capacitor 1uF 25V 2N2222 capacitance capacitor 1000uF 16V FAN5093 FAN5093 abstract
datasheet frame
Abstract: 2 Optional 2 2 2 1 1 1 1 1 4 1 Description 100nF, 50V Capacitor 1µF, 25V Capacitor 1000µF, 16V , 100nF, 50V Capacitor 1µF, 25V Capacitor 1000µF, 16V Electrolytic 1500µF, 6.3V Electrolytic 16A, 35V , 4 1 5 8 2 2 Optional 2 2 4 1 1 1 1 1 6 1 Description 100nF, 50V Capacitor 1µF, 25V Capacitor 1000µF , , refer to Applications Bulletin AB-16 AB-16. 1.3 µH +12V Vin 1000µF, 16V Electrolytic A typical value for , controller. 5V Rail. Bypass this pin with a 1µF ceramic capacitor to AGND. Analog Ground. Return path for low ... Original
datasheet

21 pages,
192.09 Kb

FAN5093 FAN5093 abstract
datasheet frame
Abstract: Description 100nF, 50V Capacitor 1000µF, 16V Electrolytic 1500µF, 6.3V Electrolytic 8A, 35V Schottky Diode , Optional 2 2 4 1 1 1 1 1 6 1 Description 100nF, 50V Capacitor 1000µF, 16V Electrolytic 1500µF, 6.3V , , 50V Capacitor 1000µF, 16V Electrolytic 1500µF, 6.3V Electrolytic 16A, 35V Schottky Diode 1.3µH, 14A , 1.3 µH +5V Vin 1000µF, 16V Electrolytic Schottky Diode Selection The application circuits of , controller. 5V Rail. Bypass this pin with a 1µF ceramic capacitor to AGND. Analog Ground. Return path for low ... Original
datasheet

24 pages,
221.47 Kb

5091mt capacitor 1000uF 16V ECU-V1H104ZFX 5091m 5091MTC FAN5091 FAN5091 abstract
datasheet frame
Abstract: Description 100nF, 50V Capacitor 1000µF, 16V Electrolytic 1500µF, 6.3V Electrolytic 8A, 35V Schottky Diode , Optional 2 2 4 1 1 1 1 1 6 1 Description 100nF, 50V Capacitor 1000µF, 16V Electrolytic 1500µF, 6.3V , , 50V Capacitor 1000µF, 16V Electrolytic 1500µF, 6.3V Electrolytic 16A, 35V Schottky Diode 1.3µH, 14A , 1.3 µH +5V Vin 1000µF, 16V Electrolytic Schottky Diode Selection The application circuits of , controller. 5V Rail. Bypass this pin with a 1µF ceramic capacitor to AGND. Analog Ground. Return path for low ... Original
datasheet

24 pages,
222.3 Kb

diode ab24 5091MTC capacitor 1000uF 16V FAN5091 FAN5091 abstract
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Datasheet Content (non pdf)

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35V 5 VH46A VH46A VH46A VH46A 470µF 35V 2 VH47B VH47B VH47B VH47B 1000µF 16V 2 VH50E VH50E VH50E VH50E 1000µF 100V 2 VH53H VH53H VH53H VH53H Product Details Electrolytic Capacitor Pack
www.datasheetarchive.com/files/maplin/products/12/7/17prodd.htm
Maplin 28/02/2002 9.51 Kb HTM 17prodd.htm
pin 10. With 2.2 m F/16V capacitor on pin 10, 400msec turn on delay is achieved. e) The power 33 1000UF/10V 2 58 10 MOHM 1 34 3300UF/10 3300UF/10 3300UF/10 3300UF/10 1 59 4.7K 5 35 470UF/16V 2 60 68K 1 36 2.2NF 2 61 CC = 16V, T amb = 0 o C to 70 o C (typical values given for 25 o C) Symbol main SMPS is operational. Trem 8 program. analog input Connected to external capacitor to input Connected to external capacitor for Power-on-reset timing. Cpor = 2.2 m F UV 11 analog
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/6412-v3.htm
STMicroelectronics 23/06/2000 26.09 Kb HTM 6412-v3.htm
adjusting the value of the charging capaci- tor on pin 10. With 2.2 m F/16V capacitor on pin 10, 400msec V CC = 16V, T amb = 0 o C to 70 o C (typical values given for 25 o C) Symbol Parameter Connected to external capacitor to determine Trem (remote control delay) timing. Trem (on to off) is 8ms Tpor 10 program. analog input Connected to external capacitor for Power-on-reset timing. Cpor = 2.2 input pin the Vcc must be > 16V. A COMPLETE PC SMPS SECONDARY SUPERVISOR TSM111 TSM111 TSM111 TSM111 9/18 f) Two
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/6412.htm
STMicroelectronics 20/10/2000 27.48 Kb HTM 6412.htm
adjusting the value of the charging capaci- tor on pin 10. With 2.2 m F/16V capacitor on pin 10, 400msec ELECTRICAL CHARACTERISTICS V CC = 16V, T amb = 0 o C to 70 o C (typical values given for 25 o C) Symbol the main SMPS is operational. Trem 8 program. analog input Connected to external capacitor to capacitor for Power-on-reset timing. Cpor = 2.2 m F UV 11 analog input Undervoltage detection, control and pin the Vcc must be > 16V. A COMPLETE PC SMPS SECONDARY SUPERVISOR TSM111 TSM111 TSM111 TSM111 9/18 f) Two internal high
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/6412-v2.htm
STMicroelectronics 14/06/1999 24.25 Kb HTM 6412-v2.htm
capacitor with a high working voltage and a small impedence (i.e. big capacity) in order to have enough characteristic. The bigger the capacitor value is, the higher the current possible to supply will be. The zener use a negative voltage regulator as shown in fig. 4. 1 2 220Volt R1 56 Q1 BDX54S BDX54S BDX54S BDX54S C2 220uF 16V C3 220uF 16V D3 6.2V C4 470uF 25V R2 120 -1.2V GND D1 D2 C1 2.2uF 400VDC 400VDC 400VDC 400VDC Figure 3. Power Supply Circuit BURST than a big capacitor because the diode block a half wave of the mains voltage. 3.1 ZERO CROSSING In
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/6434-v2.htm
STMicroelectronics 14/06/1999 13.87 Kb HTM 6434-v2.htm
3 displays the circuit: The mains voltage drops principally across C1 then we chose a capacitor characteristic. The bigger the capacitor value is, the higher the current possible to supply will be. The BDX54S BDX54S BDX54S BDX54S C2 220uF 16V C3 220uF 16V D3 6.2V C4 470uF 25V R2 120 -1.2V GND D1 ST52x301 3/13 In this case it is necessary to use a power resistor rather than a big capacitor because problem of the flicker standard (European Standard EN60555 EN60555 EN60555 EN60555, Part 3) 100uF 16V Vdd GND IN 2
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/6434-v3.htm
STMicroelectronics 25/05/2000 15.71 Kb HTM 6434-v3.htm
capacitor with a high working voltage and a small impedence (i.e. big capacity) in order to have enough characteristic. The bigger the capacitor value is, the higher the current possible to supply will be. The zener use a negative voltage regulator as shown in fig. 4. 1 2 220Volt R1 56 Q1 BDX54S BDX54S BDX54S BDX54S C2 220uF 16V C3 220uF 16V D3 6.2V C4 470uF 25V R2 120 -1.2V GND D1 D2 C1 2.2uF 400VDC 400VDC 400VDC 400VDC Figure 3. Power Supply Circuit BURST than a big capacitor because the diode block a half wave of the mains voltage. 3.1 ZERO CROSSING In
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/6434-v1.htm
STMicroelectronics 02/04/1999 13.91 Kb HTM 6434-v1.htm
) 100uF 16V Vdd GND IN 2 OUT 3 1 LM7905 LM7905 LM7905 LM7905 1 2 220V 1N5347 1N5347 1N5347 1N5347 1K 11W 1000uF 25V BYT11 BYT11 BYT11 BYT11 600 circuit: The mains voltage drops principally across C1 then we chose a capacitor with a high working capacitor value is, the higher the current possible to supply will be. The zener diode provides -6.2V (as negative voltage regulator as shown in fig. 4. 1 2 220Volt R1 56 Q1 BDX54S BDX54S BDX54S BDX54S C2 220uF 16V C3 220uF 16V D3 6.2V C4 470uF 25V R2 120 -1.2V GND D1 D2 C1 2.2uF 400VDC 400VDC 400VDC 400VDC Figure 3. Power
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/6434.htm
STMicroelectronics 20/10/2000 16.23 Kb HTM 6434.htm
VDD - + 1 2 3 5 4 IC1 VIPer20 R1 5.1k C1 3.9nF C2 0.47uF R2 5.1k D2 1N4148 1N4148 1N4148 1N4148 R9 10 C3 47uF 16V R3 8.2k T1 ZD P6KE200 P6KE200 P6KE200 P6KE200 D3 STPS140 STPS140 STPS140 STPS140 L1 6.8uH C4 1000uF 10V C5 2200uF 6.3V R7 120 R4 47 ohms R8 1.2k R5 4.7k C6 Standard input capacitor 82 m F Oscillator R2 value 5.03 kohm Oscillator C4 value 3.9 nF Standard C7 capacitor 1000 m F Standard C8 capacitor 1000 m F Reflected output voltage 106.29 V Zener clamp voltage 210
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/6082-v1.htm
STMicroelectronics 02/04/1999 7.34 Kb HTM 6082-v1.htm
5.1k C1 3.9nF C2 0.47uF R2 5.1k D2 1N4148 1N4148 1N4148 1N4148 R9 10 C3 47uF 16V R3 8.2k T1 ZD P6KE200 P6KE200 P6KE200 P6KE200 D3 STPS140 STPS140 STPS140 STPS140 L1 6.8uH C4 1000uF 10V C5 2200uF 6.3V R7 120 R4 47 ohms R8 1.2k R5 4.7k C6 470nF capacitor 82 m F Oscillator R2 value 5.03 kohm Oscillator C4 value 3.9 nF Standard C7 capacitor 1000 m F Standard C8 capacitor 1000 m F Reflected output voltage 106.29 V Zener clamp voltage
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/6082.htm
STMicroelectronics 20/10/2000 9.53 Kb HTM 6082.htm