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Part : MCMT18N4R7C100CT Supplier : SPC Multicomp Manufacturer : element14 Asia-Pacific Stock : 5,595 Best Price : - Price Each : $0.0130
Part : MCMT18N4R7C100CT Supplier : SPC Multicomp Manufacturer : element14 Asia-Pacific Stock : 5,595 Best Price : - Price Each : $0.0130
Part : MCMT18N4R7C100CT Supplier : SPC Multicomp Manufacturer : element14 Asia-Pacific Stock : 4,000 Best Price : - Price Each : $0.0110
Part : MCMT18N4R7C101CT Supplier : SPC Multicomp Manufacturer : element14 Asia-Pacific Stock : 4,778 Best Price : $0.01 Price Each : $0.0250
Part : MCMT18N4R7C101CT Supplier : SPC Multicomp Manufacturer : element14 Asia-Pacific Stock : 4,778 Best Price : $0.01 Price Each : $0.0250
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Part : MC0805N2R7C101A2.54MM Supplier : SPC Multicomp Manufacturer : Farnell element14 Stock : 11,049 Best Price : £0.0724 Price Each : £0.2420
Part : MC0805N4R7C101A2.54MM Supplier : SPC Multicomp Manufacturer : Farnell element14 Stock : 13,256 Best Price : £0.0691 Price Each : £0.2310
Part : MC1206N4R7C102CT Supplier : SPC Multicomp Manufacturer : Farnell element14 Stock : 12,000 Best Price : £0.0228 Price Each : £0.0312
Part : MCMT18N4R7C100CT Supplier : SPC Multicomp Manufacturer : Farnell element14 Stock : 5,715 Best Price : £0.0079 Price Each : £0.0320
Part : MCMT18N4R7C101CT Supplier : SPC Multicomp Manufacturer : Farnell element14 Stock : 4,778 Best Price : £0.0166 Price Each : £0.0755
Part : MCMT21N4R7C100CT Supplier : SPC Multicomp Manufacturer : Farnell element14 Stock : - Best Price : £0.0140 Price Each : £0.0636
Part : MCMT21N4R7C101CT Supplier : SPC Multicomp Manufacturer : Farnell element14 Stock : 10,700 Best Price : £0.0158 Price Each : £0.0707
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R7/C10

Catalog Datasheet MFG & Type PDF Document Tags

capacitor 470uf 25v

Abstract: capacitor 470uF C9 D1 R8 R7 C10 Figure 1: 10-20Vin, 1.05V/4.5A out (100KHz) Typical components for , , 4.7uF, 6.3V, X5R Ceramic. Taiyo Yuden: JMK212BJ475MG C7, C10 2 Capacitor, 0.1uF, 10V, X7R , % R4 1 Resistor, 20k, 5% R5, R7 2 Resistor, 6.98k, 1% R6 1 Resistor, 30, 5
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MAX8576 C0603C103M8RAC C3225X5R1E106M GMK316BJ105ML C0603C104M8RAC C0603C104M3RAC capacitor 470uf 25v capacitor 470uF resistor 1K capacitor 470uf 35v 2R5TPE470MF 10-20V 100KH

resistencia 1k

Abstract: potenziometri R7 C10 +V 100n GND IC1A C5 1 GND C11 100p R12 1K GND GND MICL GND 50K , / rojo / encarnado / rosso +V C11,C12 : 100pF (100, 101) LD1 : + 5 3mm C10 , , Oro) -(Gris, Rojo, Dourado) -(Cinzento, Encarnado, Oro) -(Grigio, Rosso, Guld) R7,R8 : 8E2 R
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MK136 resistencia 1k potenziometri PHONEJACK STEREO SW RV1A potentiometer 220k l BRAUN R4 NE5532
Abstract: (MABA007159) RF OUT C8 R4 R3 ASL912 R5 C6 RF IN R7 C14 R2 C12 C9 L2 C10 , C2 L4 R6 C6 T2 (MABA007159) RF OUT R4 R3 ASL912 R5 C5 RF IN R7 C10 C7 , L3 C2 L4 R6 C6 T2 (MABA007159) RF OUT R4 R3 ASL912 R5 C5 RF IN R7 C10 C7 R2 L2 C8 Vdevice = +10 V GND ASB Inc. http://www.asb.co.kr PCB Information , 10 F 0805 Decoupling capacitor Murata C9, C10 1.8 pF 0402 Matching capacitor Advanced Semiconductor Business
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QAM256 TSSOP24 00REF

PA87

Abstract: EQUIVALENT SCHEMATIC C1 C2 ­ IN GND R2 R3 R7 C10 +IN C7 C11 ­V R11 C6 R4 1 R8 2 6 5 8 10 9 7 R5 R6 Out C3 C5 , 's needs and imagination. 2.5" 63.5mm 1 + C5 R4 C2 ­IN R2 C3 R3 R8 C12 C6 R7 GND +IN R11 C10 C1 R5 R1 , OUT R10 R5 R1 C12 C1 R7 GND +IN C6 R3 + C7 R2 C3 ­IN R11 C10 EK42­2 REV A COMP. SIDE EK42 REV , ). R5 Current limit (see amplifier data sheet). R7 Most often used as input bias current return for
Apex Microtechnology
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PA87 SIP10 546-APEX EK42U

ASL920

Abstract: (MABA007159) RF OUT C6 R4 R3 ASL920 R5 C5 RF IN R7 C12 C7 R2 C10 L2 L6 , C2 L4 R6 C6 T2 (MABA007159) RF OUT R4 R3 ASL920 R5 C5 RF IN R7 C10 C7 , L3 C2 L4 R6 C6 T2 (MABA007159) RF OUT R4 R3 ASL920 R5 C5 RF IN R7 C10 C7 R2 L2 C8 Vdevice = +10 V GND ASB Inc. http://www.asb.co.kr PCB Information , 10 F 0805 Decoupling capacitor Murata C9, C10 1.8 pF 0402 Matching capacitor
Advanced Semiconductor Business
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RPBR8CM12A

Abstract: VR24V R7 C10 R36 R35 C9 R34 R4 R2 V C3 J5 U2 U5 C11 R21 R59 R60 R57 R56 C24
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RPBR8CM12A VR24V d009 r58 transistor r8 u4 R129 D009902 R0K502M12C000BE

BAS16ZX

Abstract: TL5001EVM-089 C11 U2 R13 TPS2812D R12 L1 R7 C10 J1 Q2 R5 CR3 C6 CR1 J2 C14 , 1uF CR2 BAS16ZX R11 30K R12 10K CR3 BAS16ZX C10 100uF C11 0,47uF R13 10K , C14 0.1uF R5 10K C6 1000pF R7 3.3 C12 100uF L1 27 uH C7 C13 100uF 10uF J2
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TL5001EVM-089 IRF7201 TPS2812 IRF7406 TL5001 SLVP089 30BQ015 TL5001CD

T12C6

Abstract: EVAL-AD815EB 1 7 1 R6 1 4 1 R8 U1 T1 2 C6 R7 C10 0.1F R14 9 6
Analog Devices
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AD815 EVAL-AD815EB AD815-EB T12C6 C132-10 9R11 C03279

SPRC205

Abstract: U1? R7 C10 3.9M 100P R10 2.2K 1 2 3 4 5 6 7 C14 0.1u R8 3.9M 9 VSS , R4 1k ANT 1 C11 100u C3 20P C2 68P Q1 DATA 2 R11 200K 3 R7 C10 , L3 100u 100K R3 L2 270K 3 C1 10P 2.4V R100 R10 2.2K R7 C10 3.9M 100P , 3 C6, C7, C14 0.1u 7 1 C8 8 3 L3, C9, C11 9 1 C10 10 1 C12 , 1K 1 R3 270K 3 R5, R9, R10 2.2K 2 R8, R7 3.9M 1 R11 200K 2
Sunplus Technology
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SPRC205 SPRC2062A

zener cr9

Abstract: L2C20 LEVEL SHUTDOWN 7 C4 J3 C7 C8 R5 C9 C1 R1 8 CR4 CR6 CR8 1 2 3 R11 R7 C10 R10 R13 R8 CR3 CR5 , R7 R8 R9 R10 R11 R12 R13 R14 C1 C4 C5 C7 C8 C9 C10 C11 C12 C13 C14 C16 C17 CR2 CR3-8 CR9 CR11 , KIT FOR PA04 PIN-OUT EK04 FIGURE 3. 6 R4 R5 E B B 7 R6 R1 C 2 R7 C10 R10 C1 R8 , . +VS C4 C9 C5 CR2 J1 NC R 2 R7 V IN R8 CR3 CR5 CR7 CR4 CR6 CR8 8 9 1 DUT 2 3 R14 4 12 , 6 LOGIC LEVEL SHUTDOWN 7 C4 R5 R6 Q3 2 R7 R8 CR3 CR5 CR7 CR4 CR6 CR8 8 1 9 12
Apex Microtechnology
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zener cr9 L2C20 max636 EK04U

ek42u

Abstract: â'" IN CR1 R2 GND R3 R4 1 C6 R7 C10 R8 2 R11 10 6 5 9 8 , C3 â'"V â'"V C6 R10 C1 R7 R1 R11 C10 EK42â'"2 REV A COMP. SIDE R3 R6 , limit (see amplifier data sheet). R7 Most often used as input bias current return for +input in , C3 CR2 CR2 R6 R8 R2 CR1 CR1 R3 GND +IN +V C5 R1 GND +V R7 R11 GND +IN C10 EK42 REV A NOTE: Illustration only, not to exact scale
Apex Microtechnology
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PA15FL PA241DW

TDK pc40

Abstract: stra6151 2.2 C6 35V22uF Y1 2200pF R4 33K 8 7 6 5 1 2 3 4 R6 220 R7 C10 1K 1
Allegro MicroSystems
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STR-A6151 EI-22 BE22-118CP TDK pc40 stra6151 28103.20 PC40 EI22 si 220 mh 400V47 10V2200 1A250V 35V22

HOLE19

Abstract: quanta battery 5 4 3 2 1 LED (UIF) WLAN/WiMax (Orange) 3G (Green) D +3V LED4 3 2 1 WLAN_LED R1 R2 330_4 330_4 3G_MINI_LED# WLAN_LED# R8 *0_4 3G_MINI2_LED# D ADD 0ohm FOR ZH8 LED3 BT (Blue) +3VPCU 1 3 BT_LED LED1 R5 330_4 BT_LED 3 2 1 BATT_LED R3 R4 330_4 330_4 PWRLED# SUSLED# LED2 Orange Flash 3 +3VPCU HOLE18 H-C236D87P2 HOLE19 h-c197d87p2 Battery (Green/Orange) C BATLED1# BATLED0# R6 R7 C10 330_4 330_4 1 2
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quanta battery HOLE20 HOLE21

sanyo 1500uF 50V capacitor

Abstract: sanyo 1500uF 35v capacitor ceramic capacitor (0603) TDK C1608X7R1H682K R7 C10 R8 1 3 ±5% resistor (0603) R9 1 , circuit uses two feedback resistors, R1 and R2, to set the output voltage. C10, C11, and R4 provide a , VCC 4 C12 1µF 5 VL VIN BST 10 D1 R7 0 VIN 10V TO 24V BST 6 5 DH , FB 7 R1 8.66k 1% 2 COMP/EN 1 C11 OPEN R2 4.02k 1% R4 68k D2 3 Q1 C10
Maxim Integrated Products
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MAX8546 MAX8545 MAX8548 MAX8546EVKIT 35MV470AX sanyo 1500uF 50V capacitor sanyo 1500uF 35v capacitor sanyo 35mv470ax 6MV1500AX C1608X7R1H104K MAX8545/MAX8546/MAX8548 C1608X5R1A105K

3M9039

Abstract: ECJ0EC1H470J R7 C10 C11 R4 L7 R6 C12 L8 C13 X2 R8 C17 L9 L10 C18 R12 C14 R9 C19 C20 , 700-1000 MHz Dual LNA Application Circuit ­ TQP3M9039-PCB J4 J5 J3 C9 R4 C21 C8 R2 C7 R1 R7 C10 C11 L3 C3 L7 C1 L2 C6 C12 C17 L8 C13 X1 C6 U1 C15 R10 R12 C22 , Reference Des. U1 X1 X2 R1, R9 R8, R15 R6, R14 R4, R12 R7, R16 R2, R10 C1, C4 C3, C6 C7, C14 C8, C15, C21, C22, C11, C19 C9, C16 C10, C20 C12, C13, C17, C18 L2, L4 L3, L6 L7, L9 L8, L10 Notes: Value n/a n
TriQuint Semiconductor
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3M9039 ECJ0EC1H470J Thin Quad flat package mo-220 68 TQP3M9039

MARKING CODE 106 QFN

Abstract: 3M9040 MHz Dual LNA Application Circuit ­ TQP3M9040-PCB J4 J5 J3 C9 R4 C21 C8 R2 C7 R1 R7 C10 , X2 R1, R9 R8, R15 R6, R14 R4, R12 R7, R16 R2, R10 C1, C4 C3, C6 C7, C14 C8, C15, C21, C22, C11, C19 C9, C16 C10, C20 C12, C13, C17, C18 L2, L4 L3, L6, L7, L9 L8, L10 n/a n/a n/a 100 51 12 2.7K 6.8 , Circuit ­ TQP3M9040-PCB J4 J3 C9 R2 C21 C8 C7 C1 L2 C3 X1 R14 R15 C4 L4 C6 L6 R9 L3 R1 R7 C10 C11 L7 R6 C12 L8 C13 X2 R8 C17 L9 L10 R4 C18 R12 C14 C19 C20 C15 R10 C16
TriQuint Semiconductor
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MARKING CODE 106 QFN 3M9040 04023J0R5BBSTR TQP3M9040

9ROM

Abstract: 6605 SP . 15. 14. 13) 22 24 1 Vpp 31 (I) A18 2 (I) A16 D1 C9 C10 Vdd D2 R1 VR 1 C8 SP+ SP­ C1, C7, C10 = 0.1 µF C2 = 0.01 µF C3 = 47 nF C4, C5 = 30 pF C6 = 10 µF C8 = 4.7 µF C9 = 220 µF C10 = 0.02 µF GND SEL 4 8 STBY POWER.SW. 7 6 SP 3 SP 2 Ain R1 = 5.1k R2 = 500 R3, R4 = 100k R5 = 1k R6, RS = 100k R7 = 10 X1: 4.096 MHz Q1: PNP-Transistor D1: 10DT GND +5V C3 R7 C10 MSM9831 R6 28 1 CNT INT Q1 97, 87
OKI Electric Industry
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FJBL9831-01 HCU04 MSC1157 M9831 MSC1157RS 9ROM 6605 SP 10DT FC20A2MS 096MH
Abstract: DIAC 7 2 D6 R18 R7 C10 R8 C11 R9 D4 T2 1 PART LIST RESISTOR R1 1.8M R2 10K R3 100K R4 3.3 R5 22K R7 2.2K R8 2.2M R9 150K R10 330 R11 0.75 R12 5.1K , C4 4700pF C5 0.1μF C6 0.01μF C7 100μF C8 0.1μF C9 3300pF C10 47μF/450V C11 0.1ΠUnisonic Technologies
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UA7524 UA7524L-D08-T UA7524G-D08-T UA7524L-S08-R UA7524G-S08-R UA7524L-S08-T

schematic diagram 48V solar controller

Abstract: WSL2010R0100F regulation comparator. The required ripple is generated by R7 and C10, and supplied to the FB pin via C9 , R7, C9, and C10, allowing the ripple at VOUT to be kept to a minimum, as described in option A below , VOUT by using components R7, C9 and C10. The ripple voltage required by the FB pin is generated by R7 , . The values for R7 and C10 are chosen to generate a 25-40 mVp-p triangle waveform at their junction , calculate values for R7, C9 and C10: 1) Calculate the voltage VA: (1) With R5 = 10 m and R3 = 1.91 k
National Semiconductor
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LM5085 AN-1878 schematic diagram 48V solar controller WSL2010R0100F si7465 4.5v to 100v input regulator C2012X7R1C474K LM5085EVAL

8*8 led dot MATRIX Driver i2c

Abstract: SN3730 Controller 3 C6 SDA SCL SN3730 SHUTDOWN C7 C8 R8/C9 100k R7/C10 Audio In 4 , Micro Controller 3 C6 SDA SCL SN3730 SHUTDOWN C7 C8 R8/C9 100k R7/C10 Audio , 11 VDD I Power supply 13~15 R6/C11, R7/C10, R8/C9 - Row/column control 16~19
SI-EN Technology
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8*8 led dot MATRIX Driver i2c QFN-24

Si7465

Abstract: LM25085 voltage at the R7/C10 junction, and is used in the next equation. 2) Calculate the R7xC10 product , on-time (3479 ns), VIN is the minimum input voltage, and V is the desired ripple amplitude at the R7/C10
National Semiconductor
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LM25085 AN-1905 C2012X7R2A102K KTS101B475M43N0T00 KTS101B685M55N0T00 P6137 LM25085EVAL

9ROM

Abstract: M9831 C3 R7 C10 MSM9831 R6 28 1 CNT INT Q1 97, 87, 57, 89, 88, 59, 64, 60
OKI Electric Industry
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c5 rom 14M512K MSM9831-EVA 1999OKIELECTRICINDUSTRYCO

WSL2010R0100F

Abstract: CRCW08054872F is the approximate DC voltage at the R7/C10 junction, and is used in the next equation. 2 , amplitude at the R7/C10 junction, 30 mVp-p for this example. VA = VOUT - (VSW x (1 - (VOUT/VIN(min
National Semiconductor
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AN-1933 CRCW08054872F GMK325BJ106KN 24v mosfet for audio 5.1 circuit Si7465DP 4.5V TO 100V INPUT REGULATORS LM25085AEVAL LM25085A

AN214

Abstract: AN272 .9 , Cu : £»»01» R7 : C10 : U C9 : C12 : fSfiÃgjLJB c 13, Rio : r- u f 7 7 71 30 Po,Dtot -V, 0.5
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OCR Scan
AN374 AN214 AN272 AN-214 IC AN214 AN27-2 ICAN214 13V4Q T10T11
Abstract: . This is the approximate DC voltage at the R7/C10 junction, and is used in the next equation. 2 , (â‰1209 ns), VIN is the minimum input voltage, and Î"V is the desired ripple amplitude at the R7/C10 junction, 30 mVp-p for this example. R7 x C10 = (4.5V ± 0.49V) x 1209 ns -5 = 16.2 x 10 Texas Instruments
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SNVA384B ISO/TS16949
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