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33uF

Catalog Datasheet MFG & Type PDF Document Tags

MIC2951

Abstract: LP2951-03BM Information 470 k 5V 3.3µF · · · · · (inch) 3-187 Application Hint 7 Micrel , . The Shutdown Input may be left floating if it is not used. + 3.3µF 8 +VIN SHUTDOWN INPUT 3 VOUT (+2.85V) VOUT 1 SD MIC2951 0V + ON 100pF GND 4 FB 7 3.3µF , + 3.3µF 8 +VIN SHUTDOWN INPUT 3 +VIN VOUT (+3.0V) VOUT 1 SD 3.3µF 8 SHUTDOWN INPUT MIC2951 0V 100pF GND 4 FB 7 3.3µF 143k 1% VOUT (+3.3V) VOUT 1
Micrel Semiconductor
Original
LP2951-02BM LP2951-03BM MIC2951-02BM MIC2951-03BM 2N2222 3.3uF

CAPACITOR TANTALUM 22uf 16v

Abstract: TANTALUM capacitor, .10uF 35V /3.3UF A 16V/3.3UF A 16V/3.3UF A 4V/4.7UF A 4V/4.7UF A 10V/4.7UF A 10V/4.7UF A 10V/4.7UF A 10V , 4V/22UF A 4V/22UF A 4V/22UF A 6.3V/22UF A 4V/33UF A 4V/33UF B 35V/1UF B 20V/4.7UF B 35V/4.7UF , B 10V/10UF B 10V/10UF B 16V/10UF B 16V/10UF B 16V/10UF B 20V/10UF B 10V/22UF B 2.5V/33UF B 10V/33UF B 16V/33UF B 4V/47UF B 4V/47UF B 4V/47UF C 50V/1UF C 50V/1UF C 35V/1.5UF C 50V/2.2UF C 25V/3.3UF C 16V/4.7UF C 20V/4.7UF C 20V/4.7UF 98000 288000 202000 20000 28000 31000
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NRA475K10R8 NRA106K10R8 CAPACITOR TANTALUM 22uf 16v TANTALUM capacitor, .10uF 35V CAPACITOR TANTALUM 4.7UF 35V 470uf 16V tantalum 10uF CAPACITOR 35V tantalum 10uF 16V tantalum capacitor NRA104K20R8 NRA154K35R8 NRA224K35R8 293D224X9035A2T NRA684K20R8 NRA105K10R8

CD7630GP

Abstract: 47uF 12 2 11 3.3uF 10uF 2 8 15 10k 4.7uF 120k 7 16 CD7630GP 4.7uF 9 , SW3 SW2 1.2k 1 3 3.3uF 1 3 2 5.1k 5.1k 0.12uF 3 1 5.1k 4700pF , 100k + 5 1 3.3uF 2 100k 2 3.3uF 15 + 1 16 3.3F 10k 2 4700pF , 3.3uF 15 11 2 1.5k 10k + 2 6 3.3uF 5 7 8 9 + 10 + + 1 1.2k×3 + 1.5k 47uF 1 + + 3.3uF CD7630GP 3.3uF 4.7uF×4 2 + + 47uF
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47uF CD76 3SW11 DIP16
Abstract: , RL = Open 35 35 30 Supply Current (uA)1 CIN = 33uF Supply Current (uA) 2 , CIN = 33uF, COUT = 33uF 30 25 20 15 10 5 0 0 2 2.5 3 3.5 4 4.5 5 , CIN = 33uF, COUT= 33uF CIN = 33uF, COUT= 33uF 0.2 S2 = On, S3 = Off, RL = 1Ω S2 = On, S3 = , . Temperature 160 160 CIN = COUT = 33uF 140 VIN = 5V 140 IOUT = 1.1A On-Resistance (mΩ) On-Resistance (mΩ) 3.5 Input Voltage (V) 120 100 80 60 CIN = COUT = 33uF 120 IOUT = 1.1A RichTek Technology
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RT9702/A RT9702 RT9702A TSOT-23-5 DS9702/A-08

CD8189CP

Abstract: CH11 54 dB 40 54 dB 4. 4.1 3.3uF Pre out ch2 10k 21 6.8k 300k 180k , 3.3uF Rec IN ch2 24 14 23 13 2.2k 10000pF 1M CD8189CP 1 12 2 1k Pre IN ch1/A ch2 47uF 150 3.3uF 47uF 9.1k 180k 22 Rec out 10k 0.018uF 100k 11 47uF 3.3uF Rec IN ch1 3 4 5 6 7 47uF 0.018uF 100 Pre out ch1 9.1k 6.8k 180k 10k 8 9 180k 10 47uF 3.3uF 2.2k 1000pF 300k 10k 3.3uF Rec out 10k
China Hua Jing Electronics Group
Original
SDIP24 CH11
Abstract: NJM2571A Power Save 1 Vout 2 33µF Vsag 3 33µF 75 output 75 -3- NJM2571A Q APPLICATION CIRCUIT , input 0.1µF 10µF 6 V+ 5 GND 75 4 Vin 0.1µF NJM2571A Power Save 1 C1 Vout 2 33µF Vsag 3 33µF 1 , capacitor values. The capacitor of C1 (33µF) is recommended for the portable application. However, the 33µF , : Vout1signal Csag=10uF Csag=22uF Csag=33uF Cout=330uF Cout=220uF Cout=100uF Cout=47uF Cout=33uF , : input signal, green: Vout signal, purple: Vout1signal Csag=10uF Csag=22uF Csag=33uF Cout New Japan Radio
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NJM2571AF1
Abstract: , RL = Open 35 35 30 Supply Current (uA)1 CIN = 33uF Supply Current (uA) 2 , CIN = 33uF, COUT = 33uF 30 25 20 15 10 5 0 0 2 2.5 3 3.5 4 4.5 5 , CIN = 33uF, COUT= 33uF CIN = 33uF, COUT= 33uF 0.2 S2 = On, S3 = Off, RL = 1Ω S2 = On, S3 = , . Temperature 160 160 CIN = COUT = 33uF 140 VIN = 5V 140 IOUT = 1.1A On-Resistance (mΩ) On-Resistance (mΩ) 3.5 Input Voltage (V) 120 100 80 60 CIN = COUT = 33uF 120 IOUT = 1.1A RichTek Technology
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DS9702/A-09

Tantalum Capacitor

Abstract: 33uF 5×10 8 90 100uF 100 F 5×14 5 14 15 60 47uF 47 F 5×14 5 14 10 , 5×10 4.6 300 33uF 5×10 10 125 10uF 5×10 4.6 220 47uF 5×10 10 , 5×14 12 80 33uF 5×14 9 110 100uF 5×14 12 60 47uF 5×14 9 80 , 6.3V 10uF 68uF 10V 150 47uF 4V 6 33uF 6.3V 5×10 10×30 80 10 , 5×10 4.5 45 350 3.3uF 3 3uF 5×10 4.5 45 700 8.0uF 300 4.0uF 5×10
Pluspark Electronics
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Tantalum Capacitor CA351 QZJ840628 QJ/PWV131 QJ/PWV131-2002 125VDC 0008CRUR

op627

Abstract: 2C266 2.94K R1 +14V R4 .47uF C4 33uF C3 1K + R5 1 PN4250 2 17.8K R2 C2 .47uF , -14V Q2 11 15K 2.8K 33uF + C11 100 .47uF .47uF 1uF 1A 1B 1C 2A 2B 2C 3A 3B 3C 4A , 1N758A C7 R9 6 20k 1uF -15_FE .47uF 100 1uF_P C8 + 33uF R11 3 + V- 8 U2 2 , +15_FE 1uF 8 -15_FE -14V R24 T2 4 V- + -15_FE R23 +14V 2.43K 3 5.9K 2 33uF C21 6 Y T1 U4 V+ - 33uF 6 2.43K C17 Y 1 C20 2 R19 -15FE .3A 33uF QI_DRAIN QI_FDBAK
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op627 2C266 opa27gp ad840 MPSA18 AD840J OP627GP OPA27GP REF102
Abstract: 35 30 Supply Current (uA)1 CIN = 33uF Supply Current (uA) 2 Supply Current vs. Temperature 2 Supply Curent vs. Input Voltage RL = Open 25 20 15 10 5 CIN = 33uF, COUT = 33uF 30 25 20 15 10 5 0 0 2 2.5 3 3.5 4 4.5 5 5.5 -40 -20 , ) Current Limit (A) 1.8 1.6 1.4 1.2 1 0.8 0.6 0.4 1.2 CIN = 33uF, COUT= 33uF CIN = 33uF, COUT= 33uF 0.2 S2 = On, S3 = Off, RL = 1Ω S2 = On, S3 = Off, RL = 1Ω 0 1.0 2 RichTek Technology
Original
DS9702/A-12

semikron+skiip+20+nab+12+I+T+38

Abstract: : 0 4/7 KIA6268P TEST CIRCUIT S2 4700pF 10kâ"¦ 3.3uF 10kâ"¦ 3.3uF S9 OFF OFF 1.8kâ"¦ 5 4 3 15 - P re 3.3uF - + 8 ALC S11 ON + 47uF S10 2 DET 100uF OFF CH2 10 - Pre 3.3uF - Rec 1000pF + 9 12 10kâ"¦ 3.3uF 1994. 10. 29 36kâ"¦ 47uF GV CH1 S 4-2 NAB TO 5 PIN 18kâ , "¦ Rec OUT TO S8 18pF 1000pF CH1 S7 4700pF 36kâ"¦ 3.3uF CH2 1.6kâ"¦ S4
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semikron+skiip+20+nab+12+I+T+38 DIP-16

electrolytic ELITE

Abstract: USB-212-T transient droop, while the 33µF bulk capacitors (C3, C5, C7, and C9) on each port supply peak current to , 1998 FB1 GND C1 4.7µF C2 0.1µF C13 3.3µF FLAG BIAS U2 5203-3.3BM4 IN OUT GND 3.3V C14 3.3µF INDIVIDUAL FB2 J1 5V FLAG COMMON 1 16 FL C 8 FL D 9 , F VBUS J4 D+ C10 0.1µF C9 11 12 VBUS D+ 33µF U1 MIC2527-xBWM FL B , Evaluation Board May 1998 J1 USB Port B D­ 33µF GND 4 R5 FB6 R6 E LOW 3
Micrel Semiconductor
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MIC2527 MIC2527-1BN electrolytic ELITE USB-212-T fld pcb USB-112-T MLCC AVX

NJM2573V

Abstract: GF-81 BIAS CLAMP CLAMP NOTE -3- NJM2573 Q TEST CIRCUIT (SSOP14) V+ 0.1µF + 10µF 33µF + 1 Vsag1 Vout1 14 33µF + 75 75 OUT1-1 OUT1-2 2 V+1 Vin1 V+2 13 0.1µF IN1 75 4 + 3 NJM2573V 33µF Vsag2 12 + 33µF Power Save Vout2 11 GND2 10 + , 33µF + V+ 0.1µF + 10µF 1 Vsag1 Vout1 14 33µF + 75 OUT1 1 Vsag1 , IN1 75 4 3 NJM2573V 33µF 0.1µF IN1 75 3 Vsag2 12 + NJM2573V Vsag2 12 470µF 75
New Japan Radio
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GF-81 NJM2573SE4 PCSP16

ic 7805

Abstract: IC 7805 pin diagram 6 + C 39 3.3µF J6 J5 J4 J3 J2 J1 C40 0.1µF +VDD DGND +VDD ­VCC C32 , ­5V 16 REF DC SERV DC GND GND PCM1702 5 6 ­5V LE C44 3.3µF + C42 3.3µF 4 , SERV DC GND GND PCM1702 5 ­5V 6 LE + C 43 3.3µF 4 GND + C 41 3.3µF 1 DATA 2 SCK 3 +5V + C 48 3.3µF C52 100µF +VCC + C 54 100µF C50 100µF + C46 3.3µF C51 100µF +VCC + C 53 100µF C49 100µF C45 3.3µF + C 47 3.3µF +
Burr-Brown
Original
DEM-PCM1702 ic 7805 IC 7805 pin diagram ic 7905 7805 and 7905 combined circuit diagram 7905 and 7805 circuit diagram 7905 and 7805 circuit diagram diagram 20-BIT PCM-1702 PCM1702P DEM-PCM1760 PCM1760

33uf

Abstract: 3. 2 Tamb= 25 ICCQ ICCQ VCC = 3V VCC = 4.5V RNF=0 CNF=33uF CNF=33uF , CLPF=1000pF 2 3 Vcc Rg=600 2 4 33uF dB 5 CD7331CS 2 mA mV 300 , 220uF 4 470uF 1000pF 8.6k 10k 10uF 4.7uF 3 0.22uF 2 33uF 1 9 33uF RL C NF Vcc 5. 2 BTL CD7331CS 4 5 7 8 9 150 0.22uF 47k 220uF RL 8 100k 10uF 6 100 1000pF 1uF 3 33uF 2 1k 1 Vcc 10k
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33uf

polyswitch 500ma

Abstract: Approved-E219878 CIN = 33uF Supply Current (uA) 2 Supply Current vs. Temperature 2 Supply Curent vs. Input Voltage RL = Open 25 20 15 10 5 CIN = 33uF, COUT = 33uF 30 25 20 15 10 5 0 , 1.6 1.4 1.2 1 0.8 0.6 0.4 1.2 CIN = 33uF, COUT= 33uF CIN = 33uF, COUT= 33uF 0.2 , 5 5.5 3 On-Resistance vs. Temperature 160 160 CIN = COUT = 33uF 140 VIN = 5V , 80 60 CIN = COUT = 33uF 120 IOUT = 1.1A 100 80 60 40 40 20 20 0 0 2
RichTek Technology
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polyswitch 500ma Approved-E219878 IEC60950-1 DS9702 sot-23-5 DS9702/A-11

SI2301DS* equivalent

Abstract: 2N3904 mold + LTC1517-3.3 VIN VIN 2V TO 4.4V 3.3µF GND VOUT 1 2 3 6.8µF VOUT = 3.3V ± 4 , and Military grade parts. ELECTRICAL CHARACTERISTICS VIN = 2V to 4.4V, C1 = 0.1µF, CIN = 3.3µF , °C 80 TA = 70°C 3.30 TA = 0°C TA = 25°C 60 3.25 IOUT = 8mA C1 = 0.1µF CIN = 3.3µF TA , vs Input Voltage Efficiency vs Input Voltage 3.40 40 COUT = 3.3µF 100 COUT = 6.8µF 50 , between 2V and 4.4V. VIN should be bypassed with a 3.3µF low ESR capacitor as close as possible to the
Linear Technology
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LTC1515 SI2301DS* equivalent 2N3904 mold Step-up DC/DC Converter marking sot-23 TA05 single LOAD CELL LT1521-3 BAT54 2301DS LTC1540 LTC1514-X

15173fs

Abstract: LTC1540 + LTC1517-3.3 VIN VIN 2V TO 4.4V 3.3µF GND VOUT 1 2 3 6.8µF VOUT = 3.3V ± 4 , CHARACTERISTICS VIN = 2V to 4.4V, C1 = 0.1µF, CIN = 3.3µF, COUT = 6.8µF, TMIN to TMAX, unless otherwise noted , Voltage 200 100 IOUT = 8mA COUT = 6.8µF IOUT = 8mA C1 = 0.1µF CIN = 3.3µF TA = 25°C IOUT , 60 3.25 COUT = 3.3µF 100 COUT = 6.8µF 50 40 COUT = 10µF 3.20 2.0 2.5 3.5 4.0 , 3.3µF low ESR capacitor as close as possible to the pin for best performance. C1 + (Pin 4): Charge
Linear Technology
Original
15173fs sn15173 2N3904 LTC1516 LTC1517-5 LTC1522
Abstract: VOUT GND + Chip Enable IP Fault Flag RSET C2 33uF Peripheral Functional Pin , 10uF COUT = 33uF RL = Open RSET = 100kΩ 40 35 VEN = 0V CIN = 10uF COUT = 33uF RL = Open , 10uF COUT = 33uF RL = Open RSET = 100kΩ 40 35 1.5 Supply Current (uA) A 45 Supply , , VEN = 0V CIN = 10uF COUT = 33uF RL = Open RSET = 100kΩ 0 -0.5 -1 -1.5 15 -2 10 , Current Limit vs. Temperature 2.1 2.1 CIN = 10uF COUT = 33uF RL = 0.5Ω RSET = 100kΩ S2 = ON RichTek Technology
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RT9704 DS9704-06
Abstract: VIN = VEN = 5V VIN = VEN = 5V, RL = Open 35 35 30 Supply Current (uA)1 CIN = 33uF , = Open 25 20 15 10 5 CIN = 33uF, COUT = 33uF 30 25 20 15 10 5 0 0 2 , 1.4 1.2 1 0.8 0.6 0.4 1.2 CIN = 33uF, COUT= 33uF CIN = 33uF, COUT= 33uF 0.2 S2 = , 5 5.5 3 On-Resistance vs. Temperature 160 160 CIN = COUT = 33uF 140 VIN = 5V , 100 80 60 CIN = COUT = 33uF 120 IOUT = 1.1A 100 80 60 40 40 20 20 0 0 RichTek Technology
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DS9702/A-07

PM94s

Abstract: 100 mkt ,8 0,82µF 1,1 0,39µF 0,8 0,33µF 1,2 10,7 6 10,7 1 1 µF 1,8 0,47µF 1 10,7 8 10,7 1,3 3 , ,2 µF 2 15,5 10 11,5 2,6 2,2µF 1,7 1 µF 1 0,68µF 1,1 1,2 µF 1,2 0,82µF 1,3 0,33µF 1 , 0,8 1 1,2 1,4 0,22µF 0,27µF 0,33µF 0,39µF 0,47µF 0,56µF 1,8 2,3 2,8 3,3 4 4,8 0 , 1,2 2,1 0,12 µF 1,4 0,33µF 0,39µF 0,22µF 0,27µF 0,33µF 0,39µF 2,6 3 0,7 0,9 1,1 1,2 , 2,2 0,56µF 1,9 0,22µF 0,27µF 0,33µF 0,39µF 0,9 1,2 1,4 1,7 2,5 1,8 3,1 2,2 3,6 2,7
Eurofarad
Original
PM94s 100 mkt EUROFARAD smd ceramic capacitor EUROFARAD 100mkt smd marquage
Abstract: 0,6 0,8 1 1,2 1,4 0,22µF 0,27µF 0,33µF 0,39µF 0,47µF 0,56µF 1,8 2,3 2,8 3,3 , 0,27µF 1 0,33µF 1,3 0,39µF 1,6 0,47µF 1,9 0,56µF 2,3 0,68µF 0,82µF 2,9 1 µF 0,6 0 , ,7 0,1 µF 1,2 2,1 0,12 µF 1,4 0,33µF 0,39µF 0,22µF 0,27µF 0,33µF 0,39µF 2,6 3 0 , ,2 1,5 1,8 0,47µF 1,5 2,2 0,56µF 1,9 0,22µF 0,27µF 0,33µF 0,39µF 0,9 1,2 1,4 1,7 , Tolerances on dimensions PM 06 IRA 0,47µF 0,6 0,27µF 0,6 0,12 µF 0,5 68 nF 0,56µF 0,7 0,33µF 0 Eurofarad
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Abstract: /3.3UF A 16V/3.3UF A 16V/3.3UF A 4V/4.7UF A 4V/4.7UF A 10V/4.7UF A 10V/4.7UF A 10V/4.7UF A 10V , 4V/22UF A 4V/22UF A 4V/22UF A 6.3V/22UF A 4V/33UF A 4V/33UF B 35V/1UF B 20V/4.7UF B 35V/4.7UF , B 10V/10UF B 10V/10UF B 16V/10UF B 16V/10UF B 16V/10UF B 20V/10UF B 10V/22UF B 2.5V/33UF B 10V/33UF B 16V/33UF B 4V/47UF B 4V/47UF B 4V/47UF C 50V/1UF C 50V/1UF C 35V/1.5UF C 50V/2.2UF C 25V/3.3UF C 16V/4.7UF C 20V/4.7UF C 20V/4.7UF 98000 288000 202000 20000 28000 31000 Eurofarad
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POLYESTER CAPACITORS

Abstract: CCTU Information 470 k 5V 3.3µF · · · · · (inch) 3-187 Application Hint 7 Micrel , . The Shutdown Input may be left floating if it is not used. + 3.3µF 8 +VIN SHUTDOWN INPUT 3 VOUT (+2.85V) VOUT 1 SD MIC2951 0V + ON 100pF GND 4 FB 7 3.3µF , + 3.3µF 8 +VIN SHUTDOWN INPUT 3 +VIN VOUT (+3.0V) VOUT 1 SD 3.3µF 8 SHUTDOWN INPUT MIC2951 0V 100pF GND 4 FB 7 3.3µF 143k 1% VOUT (+3.3V) VOUT 1
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POLYESTER CAPACITORS CCTU CPM52 CPM51 ha64s CPM-50
Abstract: , RL = Open 35 35 30 Supply Current (uA)1 CIN = 33uF Supply Current (uA) 2 , CIN = 33uF, COUT = 33uF 30 25 20 15 10 5 0 0 2 2.5 3 3.5 4 4.5 5 , CIN = 33uF, COUT= 33uF CIN = 33uF, COUT= 33uF 0.2 S2 = On, S3 = Off, RL = 1Ω S2 = On, S3 = , . Temperature 160 160 CIN = COUT = 33uF 140 VIN = 5V 140 IOUT = 1.1A On-Resistance (mΩ) On-Resistance (mΩ) 3.5 Input Voltage (V) 120 100 80 60 CIN = COUT = 33uF 120 IOUT = 1.1A Eurofarad
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Abstract: ) MITSUBISHI ELECTRIC + ( 12 / OUTPUT PORT 3.3µF 3.3µF VOLUME Cch,SWch,SLch,SRch (0dB ~ -dB , TLEBLE 3.3µF VOLUME Lch,Rch (0dB ~ -dB) + DVDD(=5V) 0.33µF 1.5K BASS + 0.015µF , m 3.3µF 3.3µF 3.3µF BYPASS SYSTEM DIAGRAM n. e. A Rl Yecificattioo chang t p , OUT2 OUTPUT PORT MCU volume I/F 22K 39 38 3.3µF DGND volume 6 SWin MCU 40 5 AVDD=7V 1K 41 4 OUT1 DVDD=5V 42 AGND 37 3.3µF 1K SRin 1K Eurofarad
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Abstract: 33uF 5×10 8 90 100uF 100 F 5×14 5 14 15 60 47uF 47 F 5×14 5 14 10 , 5×10 4.6 300 33uF 5×10 10 125 10uF 5×10 4.6 220 47uF 5×10 10 , 5×14 12 80 33uF 5×14 9 110 100uF 5×14 12 60 47uF 5×14 9 80 , 6.3V 10uF 68uF 10V 150 47uF 4V 6 33uF 6.3V 5×10 10×30 80 10 , 5×10 4.5 45 350 3.3uF 3 3uF 5×10 4.5 45 700 8.0uF 300 4.0uF 5×10 Eurofarad
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Abstract: 5V, RL = Open 35 CIN = 33uF CIN = 33uF, COUT = 33uF 30 RL = Open 25 25 20 , 2.20 CIN = COUT = 33uF 2.00 1.80 S2 = On,S3 = Off 1.80 1.60 1.60 1.40 1.20 1.40 1.00 CIN = 33uF, COUT= 33uF 0.80 S2 = On, S3 = Off, RL = 1 1.20 0.60 0.40 , 80 160 CIN = COUT = 33uF 140 VIN = 5V 140 IOUT = 1.1A (m) (m) 40 Temperature (° C) 120 CIN = COUT = 33uF 120 100 100 80 80 60 60 40 40 20 Eurofarad
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tone control digital

Abstract: M62446FP 2,1 0,68µF 1 0,33 µF 0,6 0,27 µF 1 0,22 µF 0,8 0,1 µF 0,8 0,82µF 1,1 0,39µF 0,8 0,33µF , 0,33µF 1,2 8,2µF 2,5 4,7µF 2,8 2,7µF 2,1 1,5 µF 1,5 1 µF 1,6 0,39µF 1,4 0,47µF 1,7
Mitsubishi
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M62446FP tone control digital TONE CONTROL parametric 10D41 d92 02 M62446 42P2R
Abstract: ,39µF 0,8 0,33µF 1,2 10,7 6 10,7 1 1 µF 1,8 0,47µF 1 10,7 8 10,7 1,3 3,9µF 2,3 2,2µF 2 , ,1 1,2 µF 1,2 0,82µF 1,3 0,33µF 1,2 2,7µF 2,1 1,5 µF 1,5 1 µF 1,6 0,39µF 1,4 0,47µF 1 Eurofarad
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