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100uF

Catalog Datasheet MFG & Type PDF Document Tags
Abstract: DMb VIN TIP 100nF + A 100uF GND 100nF 600R PSTN Interface VOUT + RING SW1 100uF LSC LC 24ma ~ 20 Hz RS F/R GND Test Circuit 1 ANX-TEST_PSTN-1v1.0 GND TRANSMIT GAIN TEST (2W TO 4W) -48V 24mA + TIP VIN 100uF 100nF GND ~ PSTN Interface 100nF + RING VOUT 100uF 24mA Test Circuit 2 Transmit Gain = 20 , 24mA TIP VIN VR ~ + 100uF 100nF 600R PSTN Interface GND RING VOUT + Silver Telecom
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PSTN DAA hybrid pstn 100nf CMESS 100nf sic 24ma
Abstract: 5 25 55 20 3 470uF 4V NONE 100pF 12 30 60 25 3 1 × 100uF 6.3V 470uF 2.5V NONE 100pF 12 25 54 20 3 150uF 35V 2 × 100uF 6.3V 330uF 6.3V NONE 100pF 12 25 50 20 3 2× 10uF 25V 150uF 35V 4 × 100uF 6.3V NONE , NONE 100pF 5 25 50 25 3 1.5 2× 10uF 25V 150uF 35V 1 × 100uF 6.3V 470uF 2.5V NONE 100pF 5 25 54 20 3 1.5 2× 10uF 25V 150uF 35V 2 × 100uF 6.3V Linear Technology
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LTM4602EV 35MV150WXV C4532X5R0J107MZ JMK432BJ107MU-T CRCE060310K0JNEA JMK432BJ107 100uF 35V capacitor 16v 100uf 470uF 25V DC1084A-A 4602EV LTM4602 C3216X5R1E106MT
Abstract: 2.8 6V/ 4 PO W 4. 4. 1 IN1 470uF 100uF 100uF 0.22uF + + RL 0.15uF + 10 9 11 12 14 13 15 16 Vcc + 100uF 8 6 7 4 3 2 1 470uF + 100uF 5 + + + 100uF 100uF RL 0.15uF IN2 0.22uF 4. 2 BTL Vcc + 100uF IN 100uF + 0.22uF 100uF 0.15uF + 10 9 11 12 13 14 15 16 RL 8 100uF 7 + 5 6 4 + 100uF 3 2 1 + China Hua Jing Electronics Group
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CD2025HCP CD2025CP HDIP14 CD2025 DIP16/HDIP14
Abstract: LTM4608A 100ÂuF 4.87k ITHM PLLLPF PGOOD TRACK 90 VIN = 5V 85 80 PGOOD MGN , , Total Variation with Line and Load CONDITIONS MIN l CIN = 10ÂuF × 1, COUT = 100ÂuF Ceramic, 100ÂuF POSCAP RFB = 6.65k, MODE = 0V , VIN = 2.7V to 5.5V, IOUT = IOUT(DC)MIN to IOUT(DC)MAX (Note 3 , (START) IOUT = 0A, COUT = 100ÂuF X5R Ceramic, VIN = 5V, VOUT = 1.5V 1.5 1.75 MHz 2.25 0.75 COUT = 100ÂuF VOUT = 1.5V, IOUT = 0A , VIN = 3.3V VIN = 5V mVP-P MHz 10 10 mV mV Linear Technology
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LTM4601-1/LTM4601A-1 LTM4600 LTM4618 LTM4604A LTM4605 LTM8020
Abstract: ) 100uF 100nF VIN TIP + 0.5V rms (600R) 10H GND SLIC 470R 100uF 100nF , (VIN TO 2W) TRANSHYBRID LOSS 100uF 100nF VIN 0.5V rms TIP + 10H GND SLIC 100nF 600R 470R 100uF VOUT RING + Test Circuit 4 Receive Gain = 20 log ( VT-R / VIN ) Trans Hybrid Loss = 20 log ( VOUT / VIN ) 2-WIRE RETURN LOSS 100uF 100nF TIP VIN 600R + SW1 300R 10H GND V SLIC 100nF VOUT 470R SW1 100uF RING + Silver Telecom
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SLIC and TIP and RING 470R SLIC SLIC DIAGRAM 600R 680R
Abstract: NEAR U2 R30 18 19 GPIO0B 20 0 R10 30 1W J4 C C47 100uF 1210 C43 100uF 1210 C46 100uF 1210 C45 100uF 1210 C44 100uF R11 R21 R12 R62 0 OPT 0 , 37 36 L2 35 0.16uH 34 33 32 R27 825 C31 100uF 1210 C36 1uF C32 100uF 1210 C33 100uF 1210 C34 100uF 1210 C35 100uF 1210 C49 100uF 1210 R25 825 C51 100uF 1210 C52 100uF 1210 C50 100uF 1210 C48 100uF 1210 B 31 C37 0.22uF VDD25 Linear Technology
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FDMF6823A LTC3880EUJ
Abstract: 1.8V VOUT SVIN FB SW ITH RUN LTM4608 100uF 4.87k ITHM PLLLPF PGOOD , Voltage VOUT(DC) Output Voltage CONDITIONS MIN l CIN = 10uF × 1, COUT = 100uF Ceramic, 100uF POSCAP, RFB = 6.65k, MODE = 0V VIN = 2.7V to 5.5V, VOUT = 1.5V, IOUT = 0A l 1.475 1.468 , = 100uF/X5R/Ceramic, VIN = 5V, VOUT = 1.5V fS Switching Frequency IOUT = 8A, VIN = 5V, VOUT = 1.5V fSYNC SYNC Capture Range VOUT(START) Turn-On Overshoot COUT = 100uF, VOUT = Linear Technology
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MOSFET a5gnd 10CE100FH LTC460 LTM4608EV LTM4608V F10VOUT G10VOUT A11GND B11GND C11VOUT D11VOUT
Abstract: VOUT 1.8V VOUT LTM4608A ITH 100uF 4.87k ITHM PLLLPF PGOOD TRACK MGN , Line and Load CONDITIONS MIN l CIN = 10uF × 1, COUT = 100uF Ceramic, 100uF POSCAP RFB = , IOUT = 0A, COUT = 100uF X5R Ceramic, VIN = 5V, VOUT = 1.5V fS Switching Frequency IOUT = 8A , 100uF VOUT = 1.5V, IOUT = 0A , VIN = 3.3V VIN = 5V tSTART Turn-On Time COUT = 100uF VOUT = , % to 50% to 0% of Full Load, COUT = 100uF Ceramic, 100uF POSCAP , VIN = 5V, VOUT = 1.5V 15 mV Linear Technology
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Fuse N75 LTM4608AV LTM4607 LTM8021 LTM8022 LTM8023
Abstract: to 1.8V Output DC/DC uModule® Regulator CLKIN VIN 2.7V TO 5.5V 10uF CLKIN VOUT 1.8V 100uF 4.87k , , Total Variation with Line and Load CIN = 10uF × 1, COUT = 100uF Ceramic, 100uF POSCAP , RFB = 6.65k , Voltage Switching Frequency SYNC Capture Range Turn-On Overshoot COUT = 100uF , VOUT = 1.5V, IOUT = 0A VIN = 3.3V VIN = 5V COUT = 100uF , VOUT = 1.5V, VIN = 5V, IOUT = 1A Resistive Load, Track = VIN, Load , = 0A, COUT = 100uF X5R Ceramic, VIN = 5V, VOUT = 1.5V IOUT = 8A, VIN = 5V, VOUT = 1.5V 1.25 0.75 10 Linear Technology
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Abstract: +Vcc C3 10uF 2 R1 10K 100uF 8 + C4 470uF 1 _ C1 IN (R) R3 4.7 6 R2 10K C6 5 + RL C5 470uF 3 _ C7 100uF 0.1uF 7 C2 R4 4.7 4 , _ 100uF 10K 100uF 0.1uF IN (L) 32/16 HEADPHONE 4.7 6 10K + 5 100uF 3 100uF _ 4 0.1uF IN (R) 4.7 2. Application circuit for portable radio receivers +Vcc=6V 47 0.47uF 100uF 220uF LED 47nF 0.22uF 13 15 47K 6 14 4 2 33uF 7 Shaoxing Silicore Technology
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D2822 TDA7211 chmc D2822 Chmc d2822 AUDIO amplifier 100uF capacitor TEA1330 TDA7220
Abstract: - RS4B 0.016 4 R4H 20 I4S C4H 470pF V- 2 C4B 100uF D4F SBR10U200P5 G1S V- OPT C5T 2.2uF 5 6 7 8 8 7 6 5 C4A 100uF 1210 100V Q1B SiS892DN 3 OPT C4C 100uF 2 3 1210 100V OPT D5A DFLS260 PLACE RC CLOSE TO LTC3300 C4 C1R 2.2uF , T1 C5E R5A R5C OPT D5C BOT6_TS OPT C1C 100uF 1210 6.3V G5P PLACE RC CLOSE TO LTC3300 C1 C1B 100uF 1210 6.3V G2S C2H 470pF BOT6_TS G6S OPT R5B T5 Linear Technology
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balancer battery DFLS1100 S892DN R882DP WURTH-750312504 MM74HC00 LTC6803IG-2
Abstract: 25 BG0 7 8 C11 100uF 1210 C12 100uF 1210 C13 100uF 1210 C30 100uF 1210 , FREQ_CFG_0 L2 0.3uH R18 2.61K R19 2.61K C32 100uF 1210 C33 100uF 1210 C34 100uF 1210 C35 100uF 1210 C71 100uF 1210 E5 VDD33_0 0.1uF 13 12 34 41 21 20 19 C36 1uF C31 100uF 1210 VDD33_0 C37 18 C 9 4 ISNS1FREQ_CFG R20 , TG1 4 RUN0 BOOST1 23 VDD33_0 C10 100uF 1210 36 ITH1 RUN R16 OPT 5 Linear Technology
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FDMS3620S RJK0305DPB LTC6992-1 LTC3883EUH
Abstract: 2.21k 100uF ITHM1 VIN2 VOUT2 2.5V/8A VOUT2 FB2 10uF 3.09k 100uF 5VIN 3.3VOUT , , COUT = 100uF Ceramic, 100uF POSCAP RFB = 6.65k, MODE = 0V , VIN = 2.7V to 5.5V, IOUT = IOUT(DC)MIN , Voltage IOUT = 0A, COUT = 100uF X5R Ceramic, VIN = 5V, VOUT = 1.5V fS1, fS2 Switching Frequency , ) Turn-On Overshoot COUT = 100uF, VOUT = 1.5V, IOUT = 0A VIN = 3.3V VIN = 5V 10 10 mV mV tSTART1, tSTART2 Turn-On Time COUT = 100uF, VOUT = 1.5V, VIN = 5V, IOUT = 1A Resistive Load, Track Linear Technology
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LTM4616 LTM4616IV BE 4616 LTM4616EV LTM4616V LTC6908-2 TSOT-23 LTM4600HVMP LTM4601/ LTM4601A
Abstract: CIRCUITS Vcc Vcc 100uF 100uF 0.22uF 16 10 Vin 100uF 10 100uF 7 RL 100uF 0.15uF 3 100uF RL 5 470uF 2 0.15uF 8 4,5,9,12,13 100uF Fig. 5 Bridge Application OUT1 100uF 7 0.15uF 1 470uF 15 11 Vin 2 2 8 14 0.22uF 100uF 3 100uF 16 Vin 1 0.15uF 5 100uF 0.22uF 14 15 11 100uF OUT2 RL Youw ANG Electronics
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UTC2025 power amplifier circuit diagram DIP-16
Abstract: CLKIN VOUT 1.8V VOUT SVIN FB SW ITH RUN LTM4608 100ÂuF 4.87k ITHM , 1.468 2.05 1.85 TYP 2.7 CIN = 10ÂuF × 1, COUT = 100ÂuF Ceramic, 100ÂuF POSCAP, RFB = 6.65k , ) Output Ripple Voltage fS Switching Frequency IOUT = 0A, COUT = 100ÂuF/X5R/Ceramic, VIN = 5V , 50% to 0% of Full Load, COUT = 100ÂuF Ceramic, 100ÂuF POSCAP, VIN = 5V, VOUT = 1.5V tSETTLE , 100ÂuF IOUT(PK) Output Current Limit 1.3 COUT = 100ÂuF VIN = 2.7V, VOUT = 1.5V VIN = 3.3V Linear Technology
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LTC2923 LT3825/LT3837 LTM4628
Abstract: Efficiency vs Load Current VOUT 1.8V 100uF 4.87k VIN = 3.3V 90 VIN = 5V 85 80 75 70 VOUT = 1.8V 0 2 4 6 , ) PARAMETER Input DC Voltage Output Voltage CIN = 10uF × 1, COUT = 100uF Ceramic, 100uF POSCAP, RFB = 6.65k , 1.5V VIN = 3.3V, 5.5V, ILOAD = 0A to 8A VIN = 2.7V, ILOAD = 0A to 5A IOUT = 0A, COUT = 100uF/X5R/Ceramic, VIN = 5V, VOUT = 1.5V IOUT = 8A, VIN = 5V, VOUT = 1.5V COUT = 100uF, VOUT = 1.5V, IOUT = 0A VIN = 3.3V VIN = 5V COUT = 100uF, VOUT = 1.5V, VIN = 5V IOUT =1A Resistive Load, Track = VIN 1.3 0.75 10 10 Linear Technology
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4608 LTC2900
Abstract: (dB) APPLICATION CIRCUITS Vcc Vcc 1000uF 100uF 0.22uF 8 12 Vin 100uF 8 100uF RL 6 100uF 0.15uF 3 100uF Fin and 5, 7 4 Fig. 5 Bridge Application RL 470uF 2 0.15uF 6 100uF OUT1 100uF 5 0.15uF 1 470uF 11 9 Vin 2 2 10 0.22uF 100uF 3 100uF 12 Vin 1 0.15uF 4 100uF 0.22uF 10 11 9 1000uF Youw Ang Electronics
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UTC2206B HDIP-12 UTC2206 HDIP12 stereo to 5.1 circuits variable resistor 47
Abstract: SDCOUT 2k 75 75 100k + VOUT 100uF 75 1uF 75 75 PS1 V+4 0.1uF V+1 + VSAG 22uF 0.1uF NC + SYOUT 100uF 75 GND1 75 + SYSAG 22uF SYIN + GND4 LPFSW 50 YOUT 0.1uF 75 + 100uF 75 50 YIN + 75 + YSAG 22uF 0.1uF 75 V+2 V+3 50 + 100uF 0.1uF 0.1uF PBIN PBOUT + 100uF 75 1uF 75 GND2 PBSAG + 75 + 22uF 50 75 + PRIN GND3 1uF PS2 -
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NJM2583A SSOP32 NJM2583AV 75DRV 100KH
Abstract: surface of 5cm 2 TEST CIRCUIT 10 9 100uF 100uF 0.22uF Vin1 11 0.15uF 1. Dual Mode Circuit 12 13 14 15 2 RL Vcc 100uF 16 3 470uF 1 5 4 100uF 6 0.22uF 7 100uF 8 100uF 0.15uF D2025 RL 470uF Vin2 10 9 11 12 13 14 15 Vcc 100uF 100uF 100uF 0.22uF Vin 0.15uF 2. BTL Mode Circuit 16 D2025 5 4 3 2 1 100uF 0.15uF 6 100uF 7 100uF 8 RL Shaoxing Silicore Technology
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chmc d2025 d2025 Stereo Audio Amplifier STEREO AUDIO AMPLIFIER D2025 d2025 datasheet d2025 circuit Transistor D2025
Abstract: Output DC/DC uModule® Regulator CLKIN VIN 2.7V TO 5.5V 10uF CLKIN VOUT 1.8V 100uF 4.87k PGOOD VOUT , = 10uF × 1, COUT = 100uF Ceramic, 100uF POSCAP , RFB = 6.65k, MODE = 0V VIN = 2.7V to 5.5V, IOUT = , Capture Range Turn-On Overshoot COUT = 100uF , VOUT = 1.5V, IOUT = 0A VIN = 3.3V VIN = 5V COUT = 100uF , (Note 3) VIN = 3.3V, 5.5V, ILOAD = 0A to 8A VIN = 2.7V, ILOAD = 0A to 5A IOUT = 0A, COUT = 100uF X5R , Load Load: 0% to 50% to 0% of Full Load, COUT = 100uF Ceramic, 100uF POSCAP , VIN = 5V, VOUT = 1.5V Linear Technology
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Abstract: LTM4616 2.21k 100ÂuF ITHM1 VIN2 3.3V TO 5V VIN2 VOUT2 2.5V/8A VOUT2 90 EFFICIENCY (%) VIN1 5V 5VIN 2.5VOUT 85 80 FB2 10ÂuF 3.09k 100ÂuF 75 ITHM2 GND1 , with Line and Load CONDITIONS MIN l CIN = 10ÂuF × 1, COUT = 100ÂuF Ceramic, 100ÂuF POSCAP , ) Output Ripple Voltage IOUT = 0A, COUT = 100ÂuF X5R Ceramic, VIN = 5V, VOUT = 1.5V fS1, fS2 , ), Î"VOUT2(LS) Peak Deviation for Dynamic Load Load: 0% to 50% to 0% of Full Load, COUT = 100ÂuF Ceramic Linear Technology
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LTM4616MPV LTM4603 LTM4603-1 LTM4601 LTM8022/LTM8023 36VIN
Abstract: C3 100uF D2 VIN D1 VIN C3* 100uF + VSW LT1070 GND VC 12V 1A + C3 , 130k 6 7 ­ 4 + 300 + 100uF ­ 5.6k 0.1uF 5.6k AN30 F07 L1 = , /2 LT1018 100uF 2000pF 22uF 100k ­ 110k R1* 910k *DALE TE-5/Q3/400mH , 2N3906 ­15VOUT 100uF 1000pF + 5 L1 145uH 74C90 ÷ 10 10k 5V 1 12 4.7k Q2 2N3904 + 100 2k 5V 10k Q2 2N3507 300 15VOUT 100uF 137k* + C1B 1/2 LT1018 Linear Technology
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CM55-T13 eprom 92112 SPRAGUE 11Z-2003 AN3030 MALLORY CAPACITOR CATALOG hp5082-2810 STANCOR 11Z-2003 LTC1044 PE-52645 AN30-43 AN30-44 LT1004-2
Abstract: CIN=4.7uF,CL=10.0uF,L=4.7uH(CDRH4D28C) with SD(XB01SB04A2BR) CIN=4.7uF,CL=10.0uF,L=4.7uH(CDRH4D28C , /DC:1.8V,600kHz DC/DC:1.8V,600kHz CIN=4.7uF,CL=10.0uF,L=10.0uH(CDRH5D28) with SD(XB01SB04A2BR) CIN=4.7uF,CL=10.0uF,L=10.0uH(CDRH5D28) 90 80 80 Efficiency : EFFI (%) 100 90 , DC/DC:2.2V,300kHz CIN=4.7uF,CL=10.0uF,L=22.0uH(CDRH6D38) with SD(XB01SB04A2BR) CIN=4.7uF,CL=10.0uF , ) (2)OUTPUT VOLTAGE vs. OUTPUT CURRENT DC/DC:1.8V,1.2MHz CIN=4.7uF,CL=10.0uF,L=4.7uH(CDRH4D28C Torex Semiconductor
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XC9509 MSOP-10 USP-10 DC000007
Abstract: increase the output swing. The suggested value for the bootstrap capacitors (100uF) avoids a reduction of , R1 1 Rf +R2+ JWC1 With Rf=0,C1=100uF, the gain results 46dB with pole at f=32Hz The purpose of , ) Rf +R2+ JWC1 R2+R4+ JWC1 and with the suggested values (C1=C2=100uF,Rf=0)means: Gv=52dB Figure , 100uF Ripple Rejection C4,C5 C6,C7 C8,C9 C10,C11 100uF 470uF 0.15uF 100uF Bootstrap , 100 uF 0 .22 uF IN 12 IN.1 18 13 100 uF 8 TEA 2025 D 100uF 1 10 0 .15 Unisonic Technologies
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TEA2025D TEA2025D-S20-R TEA2025DL-S20-R TEA2025D-S20-T UTC 2025 stereo audio amplifier TEA 2025 L ic tea 2025 UTC 2025 TEA 2025 equivalent 100uf 9V capacitor TEA2025DL TEA2025DL-S20-T
Abstract: 5VIN 2.5VOUT 85 100uF VIN2 3.3V TO 5V 10uF VIN2 VOUT2 FB2 3.09k ITHM2 VOUT2 2.5V/8A 100uF 80 75 GND1 GND2 4616 TA01a 70 0 2 4 6 LOAD CURRENT (A) 8 4616 TA01b , 100uF Ceramic, 100uF POSCAP, RFB = 6.65k, MODE = 0V VIN = 2.7V to 5.5V, IOUT = IOUT(DC)MIN to IOUT(DC , VIN = 2.7V, ILOAD = 0A to 5A IOUT = 0A, COUT = 100uF X5R Ceramic, VIN = 5V, VOUT = 1.5V IOUT = 8A, VIN = 5V, VOUT = 1.5V COUT = 100uF, VOUT = 1.5V, IOUT = 0A VIN = 3.3V VIN = 5V COUT = 100uF, VOUT = Linear Technology
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SAC 1630 L LTM4616Y LTM4616MPY marking H5 DFN 6-pin
Abstract: 5VIN 2.5VOUT 85 100uF VIN2 3.3V TO 5V 10uF VIN2 VOUT2 FB2 3.09k ITHM2 VOUT2 2.5V/8A 100uF 80 75 GND1 GND2 4616 TA01a 70 0 2 4 6 LOAD CURRENT (A) 8 4616 TA01b , ) PARAMETER Input DC Voltage CIN = 10uF × 1, COUT = 100uF Ceramic, 100uF POSCAP, RFB = 6.65k, MODE = 0V VIN = , 3.3V, 5.5V, ILOAD = 0A to 8A VIN = 2.7V, ILOAD = 0A to 5A IOUT = 0A, COUT = 100uF X5R Ceramic, VIN = 5V, VOUT = 1.5V IOUT = 8A, VIN = 5V, VOUT = 1.5V COUT = 100uF, VOUT = 1.5V, IOUT = 0A VIN = 3.3V Linear Technology
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12v step-down transformer files CCCV 12V .7A Charger Circuit diagram LTM4616MPV#PBF marking G5 MOSFET
Abstract: COMP VOUT TRACK/SS VOUT_LCL RUN DIFF_OUT LTM4637 fSET 100ÂuF* + 6.3V à , — 3 Variation with Line and Load COUT = 100ÂuF Ceramic, 470ÂuF POSCAP RFB = 40.2k, MODE_PLLIN = GND , 20 0 A l 0.02 0.06 %/V l 0.2 0.45 % IOUT = 0A, COUT = 100ÂuF Ceramic, 470ÂuF POSCAP VIN = 12V, VOUT = 1.5V COUT = 100ÂuF Ceramic, 470ÂuF POSCAP, VOUT = 1.5V, IOUT = 0A, VIN = 12V COUT = 100ÂuF Ceramic, 470ÂuF POSCAP, No Load, TRACK/SS = 0.001ÂuF, VIN = 12V Load: 0% to Linear Technology
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LTM4620
Abstract: 100uF Vcc=42V A 16 Icc 11 0.01uF 100uF B+ 3 Vin=0.1V 1 + ­ B­ 13 9 4 12 6 5pF 5 15 Measure sink current to 11pin and 16pin 2. Offset voltage(Voff) 0.01uF 100uF Vcc=42V 0.01uF 100uF , circuit (continued) 5. Output low voltage, Output high voltage (VOL, VOH) 0.01uF 100uF Vcc=42V 0.01uF 100uF 16 11 10K B+ Vin=0.0V(VOL) Vin=3.0V(VOH) 3 + ­ B­ 1 13 9 V 4 12 6 5pF 5 15 , 3pin. 6. Slew rate (SR) 0.01u F 100uF Vcc=42V 0.01uF 100uF 16 11 B+ 3 Vin=2VPP f=1KHz 1 + Mitsubishi
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M62580P M62580 M6258 op amp measurement
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