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LC-324 Texas Instruments LC-324 CCD camera, single board with lens

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1000uf electrolytic capacitor

Catalog Datasheet MFG & Type PDF Document Tags
Abstract: . Y.KIHANA C1 C4, C5: C2, C3: 1uF×2 Film Capacitor 1uF Film Capacitor PFE-S - 4700pF Ceramic Capacitor PFE-F - 2200pF Ceramic Capacitor C6, C7 PFE-S - 1000pF Ceramic Capacitor PFE-F - 2200pF Ceramic Capacitor C8, C9: 1uF Film Capacitor C10, C11: 390uF Electrolytic Capacitor C12 470pF C13, C14: C16: C15, C17: R1: TFR1: 0.033uF Film Capacitor 2.2uF Ceramic Capacitor 12V - 1000uF Electrolytic Capacitor 28V - 470uF Electrolytic Capacitor 48V - 220uF Electrolytic Capacitor 2W 470k 10 -
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SC-10-30J 5-R6166-X608 capacitor ceramic capacitor, .1uF NEC/TOKIN capacitor 1000uf capacitor capacitor 1000uf capacitor c12
Abstract: FUSE (FAST BLOW TYPE) FOR EACH UNIT. *2 : RECOMMENDED INPUT CAPACITOR C1 -20 °C ~ +100°C : 33uF ELECTROLYTIC OR CERAMIC TYPE CAPACITOR. -40 °C ~ +100°C : 33uF CERAMIC TYPE CAPACITOR OR EQUIVALENT SUCH AS 5 PARALLEL 6.8uF CERAMIC TYPE CAPACITOR. *3 : RECOMMENDED OUTPUT CAPACITOR C3 -20 °C ~ +100°C : 12V & 15V - 1000uF (ELECTROLYTIC CAPACITOR) 24V & 28V - 470uF (ELECTROLYTIC CAPACITOR) -40 °C ~ +100°C : FOR THIS , 470uF (ELECTROLYTIC CAPACITOR) OUTPUT DERATING CURVE: 120 LOAD (%) 100 80 60 40 20 0 -40 -
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RC-9141 470uf, 24v electrolytic capacitor PAH200S48 PA554-01-01B PAH200S48-5/P PA554-01-02B 100MH
Abstract: capacitor; For -12V output, use 1000uF electrolytic capacitor & 22uF/10V ceramic at the input. Note , Tantalum Capacitor & 0.1uF ceramic Capacitor (Vo=-5V) or 47uF/25V tantalum capacitor & 0.1uF ceramic Capacitor (Vo=12V). Line Regulation Load Regulation Regulation Over Temperature (-40°C to +85 °C , Cap & 0.1uF ceramic capacitor (Vo=-5V) or 47uF/25V tantalum capacitor & 0.1uF ceramic Capacitor (Vo , 220uF/10V Tantalum Cap & 0.1uF ceramic Capacitor (Vo=-5V) or 47uF/25V tantalum Cap & 0.1uF ceramic Bel Fuse
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S7AH-01F50N S7AH-01FX2N V7AH-01F50N V7AH-01FX2N 0.1uf ceramic capacitor TR-332 S7AH-01FxxN 7AH-01F
Abstract: ) Z11 150 x 2404 mils (W X L) 1000uF Electrolytic Capacitor PCB RG6006 r=6.15, 50 mils, 1 oz All Z , Part Description 270 pF chip capacitor (ATC 100B) L1 5 turns 18AWG IDIA 0.2 in 3.3 pF chip capacitor (ATC 100B) L3 6 turns 18AWG IDIA 0.2 in 15 pF chip capacitor (ATC 100B) L2, L4 Ferrite Coil inductor 4.7 pF chip capacitor (ATC 100B) Z1 70 x 296 mils (W X L) 22 pF chip capacitor (ATC 100B) Z2 70 x 1160 mils (W X L) 33 pF chip capacitor (ATC 100B) Z3 200 x 1085 mils (W X L) 470 pF chip capacitor (ATC 100B Microsemi
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33 J 250 capacitor capacitor 60 pF j130 fet silicon carbide Static Induction Transistor SIT 0405SC-1000M 1000W
Abstract: ceramic capacitor or with added 1000uF electrolytic capacitor. This report includes data in figures 1 to Sipex
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SP6652 SP6652ER CRCW06031001F CRCW06032001F CRCW06032491F MSOP-10 capacitor 100nf 0603 LOW ESR 10uF CAPACITOR 100NF 25V/0603 TM 1628 10uf esr GRM188R71E104K GRM21BR61A106K GRM188R61A105K
Abstract: ) Z11 150 x 2404 mils (W X L) 1000uF Electrolytic Capacitor PCB RG6006 r=6.15, 50 mils, 1 oz All Z , Part Description 270 pF chip capacitor (ATC 100B) L1 5 turns 18AWG IDIA 0.2 in 3.3 pF chip capacitor (ATC 100B) L3 6 turns 18AWG IDIA 0.2 in 15 pF chip capacitor (ATC 100B) L2, L4 Ferrite Coil inductor 4.7 pF chip capacitor (ATC 100B) Z1 70 x 296 mils (W X L) 22 pF chip capacitor (ATC 100B) Z2 70 x 1160 mils (W X L) 33 pF chip capacitor (ATC 100B) Z3 200 x 1085 mils (W X L) 470 pF chip capacitor (ATC 100B Microsemi
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transistor 1000W transistor 406 specification xl33
Abstract: (ATC 920C) Z11 150 x 2404 mils (W X L) 1000uF Electrolytic Capacitor PCB RG6006 r=6.15, 50 mils, 1 , capacitor (ATC 100B) L1 5 turns 18AWG IDIA 0.2 in 3.3 pF chip capacitor (ATC 100B) L3 6 turns 18AWG IDIA 0.2 in 15 pF chip capacitor (ATC 100B) L2, L4 Ferrite Coil inductor 4.7 pF chip capacitor (ATC 100B) Z1 70 x 296 mils (W X L) 22 pF chip capacitor (ATC 100B) Z2 70 x 1160 mils (W X L) 33 pF chip capacitor (ATC 100B) Z3 200 x 1085 mils (W X L) 470 pF chip capacitor (ATC 100B) Z4 397 x 390 Microsemi
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SIT Static Induction Transistor transistor sit static induction transistor sit transistor 1000UF 20V CAPACITOR
Abstract: input, and 5×10uF/10V ceramic capacitors and a 1000uF electrolytic capacitor at the output. 10mV 8mV 5mV , at the input, and 5×10uF/10V ceramic capacitors and a 1000uF/16V electrolytic capacitor at the output , /dt = 0.1A/uS; Vin = 12V; with 5×10uF ceramic capacitors and a 1000uF/16V electrolytic at the output Bel Fuse
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V7PF-15A1AC
Abstract: 5x10 uF/10 V and 0.1 uF/25 V ceramic capacitor, 1000uF electrolytic capacitor at the output, and Ta , maximum line/load. Tested at 0-20 MHz BW with 1000 uF electrolytic capacitor & five 10 uF/10 V TDK C3216X5R1A106K capacitors and 0.1 uF ceramic capacitor at the output 2 Output Capacitance VO=3.3 V VO , uS Test conditions: di/dt = 0.1 A/uS; Vin = 5 V; with 1000 uF electrolytic capacitor and five , V ceramic capacitor and an 1000 uF electrolytic capacitor at the output, and Ta=25 deg C. Bel Fuse Bel Fuse
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VRPF-15B1AC SR-332 2002/95/EC
Abstract: 5x10 uF/10 V and 0.1 uF/25 V ceramic capacitor, 1000uF electrolytic capacitor at the output, and Ta , maximum line/load. Tested at 0-20 MHz BW with 1000 uF electrolytic capacitor & five 10 uF/10 V TDK C3216X5R1A106K capacitors and 0.1 uF ceramic capacitor at the output 2 Output Capacitance VO=3.3 V VO , uS Test conditions: di/dt = 0.1 A/uS; Vin = 5 V; with 1000 uF electrolytic capacitor and five , V ceramic capacitor and an 1000 uF electrolytic capacitor at the output, and Ta=25 deg C. Bel Fuse Bel Fuse
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RPF-15B1AC 0RPF-15B1AC
Abstract: 2 C25, C26 1000uF Electrolytic Capacitor, 25V Radial Panasonic ECA-1EHG102 1 C27 2200uF Electrolytic Capacitor, 25V Radial Panasonic EEU-FC1E222 2 C102, C114 , , 50V SM0805 Panasonic ECJ-2VB1H472K 2 C13, C14 100uF Electrolytic Capacitor, 35V , , C124 C2, C4, C5, C6 Value Description Package 1uF Ceramic Capacitor, X5R, 16V SM0805 Panasonic ECJ-2FB1C105K NS Not Stuffed 2 C9, C19 390pF Ceramic Capacitor Monolithic Power Systems
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MP7720DS MP7720 12v class d amplifier 20W mono 24v 6A variable power supply diagram ceramic resistor 12v amplifier 20W 12v class d amplifier 20W EV0030
Abstract: ceramic capacitors, and one 1000uF electrolytic capacitor across the output terminals Recovery Time , =25°C. Measured across one 0.1uF, one 1.0 uF, and one 47uF ceramic capacitors, and one 1000uF electrolytic capacitor located 2 inches away ­ see input/output ripple measurement figure; BW = 20MHz di/dt = 0.1A , . The capacitor C1 across the input shall be at least one 220uF/100V electrolytic capacitor along with , pin. A small 0.01uF capacitor between the power module's trim pin and Sense (-) pin may help to TDK Innoveta
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200LFM 1500V IEC950 EN60950
Abstract: across one 0.1uF, one 1.0 uF, and one 47uF ceramic capacitors, and one 1000uF electrolytic capacitor , capacitors, and one 1000uF electrolytic capacitor across the output terminals Recovery Time to 10% of , least one 220uF/100V electrolytic capacitor along with two 1uF to 2.2uF/100V ceramic capacitors. Two , pin. A small 0.01uF capacitor between the power module's trim pin and Sense (-) pin may help to , /DC converter. To minimize the interaction, one or more 100uF to 220uF/100V input electrolytic TDK Innoveta
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tdk mtbf
Abstract: ceramic capacitors, and one 1000uF electrolytic capacitor across the output terminals Recovery Time , =25°C. Measured across one 0.1uF, one 1.0 uF, and one 47uF ceramic capacitors, and one 1000uF electrolytic capacitor located 2 inches away ­ see input/output ripple measurement figure; BW = 20MHz di/dt = 0.1A , input voltage pins. The capacitor C1 across the input shall be at least one 220uF/100V electrolytic capacitor along with two 1uF to 2.2uF/100V ceramic capacitors. Two 220uF/100V electrolytic capacitors and TDK Innoveta
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25 v 1000uF capacitor tdk HS00101 NW35 TDK ce series converter
Abstract: one 0.1uF, one 1.0 uF, and one 47uF ceramic capacitors, and one 1000uF electrolytic capacitor , 1.0 uF, one 47uF ceramic capacitors, and one 1000uF electrolytic capacitor across the output , . The capacitor C1 across the input shall be at least one 220uF/100V electrolytic capacitor along with , capacitor between the power module's trim pin and Sense (-) pin may help to avoid this. Circuit to , to 470uF/100V input electrolytic capacitors should be present if the source inductance is greater TDK Innoveta
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Abstract: , one 1.0 uF, and one 47uF ceramic capacitors, and one 1000uF electrolytic capacitor located 2 inches , , one 47uF ceramic capacitors, and one 1000uF electrolytic capacitor across the output terminals , . The capacitor C1 across the input shall be at least one 220uF/100V electrolytic capacitor along with , capacitor between the power module's trim pin and Sense (-) pin may help to avoid this. Circuit to , interaction, one or more 220uF to 470uF/100V input electrolytic capacitors should be present if the source TDK Innoveta
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Abstract: least one 1.0 uF, one 47uF ceramic capacitors, and one 1000uF electrolytic capacitor across the output , =25°C. Measured across one 0.1uF, one 1.0 uF, and one 47uF ceramic capacitors, and one 1000uF electrolytic capacitor located 2 inches away ­ see input/output ripple measurement figure; BW = 20MHz Vin 38V for , input voltage pins. The capacitor C1 across the input shall be at least one 220uF/100V electrolytic capacitor along with two 1uF to 2.2uF/100V ceramic capacitors. Two 220uF/100V electrolytic capacitors and TDK Innoveta
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Abstract: across one 0.1uF, one 1.0 uF, and one 47uF ceramic capacitors, and one 1000uF electrolytic capacitor , 1.0 uF, one 47uF ceramic capacitors, and one 1000uF electrolytic capacitor across the output , input voltage pins. The capacitor C1 across the input shall be at least one 220uF/100V electrolytic capacitor along with two 1uF to 2.2uF/100V ceramic capacitors. Two 220uF/100V electrolytic capacitors and , taken to avoid injecting noise into the module's trim pin. A small 0.01uF capacitor between the power TDK Innoveta
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3256K DC converter 50A 100V
Abstract: transient response, typical value of 1000uF electrolytic capacitor with 10uF ceramic capacitors are , CIN an CCNTL is used as power decoupling capacitor. COUT is composed of 10uF ceramic plus 1000uF , load transient. A large and low ESR capacitor is recommended to use that should be placed as close as , with at least 1uF capacitor from this pin to GND. An important note is that VIN should be kept lower , RDUMMY R1 = R2 = 100K, RTT = 50 / 33 / 25 COUT(MIN) = 10uF (Ceramic) + 1000uF under the worst case Analog Microelectronics
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AT9173 at9173eg SOP OF electrolyte TEST AT9173A AT9173AG marking code C06 25VTT AT9173A-SOP ATT-DS9173-C
Abstract: transient response, typical value of 1000uF electrolytic capacitor with 10uF ceramic capacitors are , C IN an C CNTL is used as power decoupling capacitor. COUT is composed of 10uF ceramic plus 1000uF , load transient. A large and low ESR capacitor is recommended to use that should be placed as close as , with at least 1uF capacitor from this pin to GND. An important note is that VIN should be kept lower , = 100KO, RTT = 50O / 33O / 25O C OUT(MIN) = 10uF (Ceramic) + 1000uF under the worst case testing Analog Microelectronics
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