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Stk200_schematic.pdf
Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11 22 CE 74HC00 Programming Interface A12 27 OE WE R2 L.E.D +5 62256RAM 82K MOSI R1 1 2 P-RESET 3 4 2K Y1 SCK 5 6 7 8 MISO 9 10 +5V 4Mhz HEADER 5X2 VCC ALL
in „Kanda AVR Starterboard und noch keine Ahnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Labornetzteil-BOM-final.pdf
RECTIFIER 1 L7809 78XXS 78XXS IC103 VOLTAGE REGULATOR 1 L7909 79XXS 79XXS IC104 VOLTAGE REGULATOR 2 LM317 LM317TS 317TS IC101, IC102 VOLTAGE REGULATOR 1 PWR-CTRL 22-23-2031 22-23-2031 X106 .100" (2.54mm) Center Header - 3 Pin 1 PWR-REG 22-23-2031 22-23-2031 X107 .100" (2.54mm) Center Header - 3 Pin 1
in „Labornetzteil mit getakteter Vorregelung - Überschwinger“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Stk200_schematic.pdf
Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11 22 CE 74HC00 Programming Interface A12 27 OE WE R2 L.E.D +5 62256RAM 82K MOSI R1 1 2 P-RESET 3 4 2K Y1 SCK 5 6 7 8 MISO 9 10 +5V 4Mhz HEADER 5X2 VCC ALL
in „Schaltplan STK200 und STK500 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200_schematic.pdf
Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11 22 CE 74HC00 Programming Interface A12 27 OE WE R2 L.E.D +5 62256RAM 82K MOSI R1 1 2 P-RESET 3 4 2K Y1 SCK 5 6 7 8 MISO 9 10 +5V 4Mhz HEADER 5X2 VCC ALL
in „Wer kennt dieses AVR-Board?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LoopController.pdf
R8 RX U3D VPP 10k Wahl Wahl Iprop TSV524xIQ4T 3 1 1 3 + 12 R25 C29 2 U1 2 PD2-Anteil 14 470k PD L1 LM5165 13 Summe L GNDD C14 C17 3 2 1 0 9 8 7 6 5 - 1 SW VIN 2 4µ7 4µ7 3 3 3 3 2 2 2 2 2 R20 7 C15 GNDA TBD 1 M EN 1 I 4µ7 D . . 3.4 . 6.7.0 . . n 470k R 1 C5 8 FB Control H V VAA G P P P P P P P P o 1µ
in „Reglermodul für mechatronische Systeme“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PMOD_ADC_isolated_Rev_A_old.pdf
1 2 3 4 5 6 7 8 -2.44V TP3 U$4 U$29 TP4 5V L26 1 VIN 4 L4 1*2 IN 11*2 L5 -1.8V_A C214 6 EN VVFB 5 R113 C216 C14 3 EN/UVOUTST 10 C13 C233 8 C1+ CPOUT 3 100k 4.7u C207 C1- GND 2*2 C215 2 0 2.2u 4.7u PGFB 5 4.7u 10u_elko R 0 4 PG ILIM 6 A GND 1u LM27761
in „PMOD dual 16 Bit 4 MSample/s isolated ADC“ · Projekte & Code ·
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schematic-T962.pdf
3.3V V2 2 k 58 P0.23 P0.5/MISO0/MAT0.1/AD0.7 29 BCP68 R 4 P0.6/MOSI0/CAP0.2/AD1.0 30 B R28 10 11 B P0.26/AD0.5 P0.27/AD0.0/CAP0.1/MAT0.1 15 1k C15 P0.30/AD0.3/EINT3/CAP0.0 32 5.0V 62 P1.24/TRACECLK 28 2 7 1 7 U3 AT24C02C XTAL1 P1.25/EXTIN0 24 R 4 R 4 P1.26/RTCK 64 LCD GND Z1 11.0592MHz P1.27/TDO 5 SDA VCC
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hitachi_55hk6t64u_55293dlb_48hk6t64u_48293dlb_chassis_17mb100-r1_17ips20-r9_sm.pdf
LM317. The LM1117 is available in an adjustable version, which can set the output voltage from 1.25V to 13.8V with only two external resistors. In addition, it is also available in five fixed voltages,
in „Vestel Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ppt_schematic.pdf
470k 3 L1 F1 Battery 33uH 10A D2 1 2 C2 + R3 - 4.7k 2 D1 470uF J3 1 3 C8 Q3 R2 1uF IRFZ44 .005 R4 C26 R19 5v 1k C1 1uF 10k .1uF D4 C3 R25 R5 +V 1uF 470k +V 10k 4.7k U6A 5v LM358 U2 R21 R10 LT1158 R13 1k 2+ 8 C14 C17 1BDr Bst16 + 1k 3 1 10uF .01uF 2V+ TGDr15 1 8 2 1k 4 3Bias TGFb14 3 R6 R11 C23 5En Tsrc12 C24 U1A 4 1k C13 .1uF 6/Flt Sns+11 D3 .1uF LM358 R14 1k .1uF C27 R20 7In Sns-10 C25 .1uF 10k 8BGFb BGDr9 R22 .1uF 10k J2 21 3 Debug PIC16F873 4 RJ11 1 28 C16 5 Port 2MCLR RB7 27 .1uF 6 3RA0 RB626 4RA2 RB425 5RA3 RB324 R7 6RA4 RB223 47k 8RA5 RB121
in „solar laderegler“ · Platinen ·
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PDF
board.pdf
124148 K K K K V 1 . 1CNY17 CNY17 OCNY17 O CNY17 O CNY17 O / D150µH r R 1 1,2k O 4 µ2 e C16 1 08 _ R26 C 15 V C1µ/35V_cer C18 C23 1 1 SL2 µ 1 C4 C2 5 0 0 1 0 K C 1 F Q20pF 20pF 10µ/35V_Cer L110µ/25V_Cer 10µ/25V_Cer C25 10MHz R1 K MEGA128-A K 100µH_SDR1005-101KL e 2 10µ/25V_Cer 8 7 6 5 4 3 2 1 c C V u C k 32K 2.2K 0R R9 1 R 10 9 u 5 AD7524AQ µ IC6 LCD16X2 C 1 I 1R4 R10 R8 8.2K 1 J1 O LM317R37 R36 u P 1 I A I 12V to 10V C 1 J K 100 700 2 P 3 I R21 R F 0 F 2 A 1 21 0 2 0 4 k 2 J - RC 1 C 1 R 10 V 2 2.03 2 1 T1 S 1 . 3 R 1 BC337 I D 5 m Z , 5 2 A17,5mm A17,5mm 13 k 1 Q U 1 1 2 LM307N I2
in „Finde Packages von Eagle nicht beim Bestellen“ · Platinen ·
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board.pdf
124148 K K K K V 1 . 1CNY17 CNY17 OCNY17 O CNY17 O CNY17 O / D150µH r R 1 1,2k O 4 µ2 e C16 1 08 _ R26 C 15 V C1µ/35V_cer C18 C23 1 1 SL2 µ 1 C4 C2 5 0 0 1 0 K C 1 F Q20pF 20pF 10µ/35V_Cer L110µ/25V_Cer 10µ/25V_Cer C25 10MHz R1 K MEGA128-A K 100µH_SDR1005-101KL e 2 10µ/25V_Cer 8 7 6 5 4 3 2 1 c C V u C k 32K 2.2K 0R R9 1 R 10 9 u 5 AD7524AQ µ IC6 LCD16X2 C 1 I 1R4 R10 R8 8.2K 1 J1 O LM317R37 R36 u P 1 I A I 12V to 10V C 1 J K 100 700 2 P 3 I R21 R F 0 F 2 A 1 21 0 2 0 4 k 2 J - RC 1 C 1 R 10 V 2 2.03 2 1 T1 S 1 . 3 R 1 BC337 I D 5 m Z , 5 2 A17,5mm A17,5mm 13 k 1 Q U 1 1 2 LM307N I2
in „Schematic + Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ONJU_Schematic.pdf
IO0) DNP CR6 GND PIM03 P73CI GND SPIQ PIU03 SPIQ GPIO38 PIU04MUTE SPIQ PIU302DO(IO1) GND P2 SPH0645LM4H-B 0 Ohms SPIDLN 35 51 SPIWP 3 PI SPH0645LM4H-B PIU03 SPID GPIO45 PI525 SPIHD PI7303/WP(IO2) GND GND GPIO46 IP 50 PIU307/HOLD/RESET(IO3) GND GND GND IP750 GND PIU304 GND GND ESP32-S3R8 W25Q128JVSIQ GND GND Microphones QSPI NOR Flash GND ESP32-S3 U2OC 5V 7 P VDD 8 702UIP CO26 SCK 16 VDD 802UIP 220 pF J44JOC 6BCLKIP WS PI2014LRCLK OUTN PU200 MA _SPK_NPS P SPK_N PIJ01 1 3V3 R28 NSO PIU21 DIN OUTP PI209 NL XSK0_P NSP0P PIJ02 2 5V IP PI210 PIU 20GAIN_SLOT P P NLSK0NN R2OC 4 27C
in „Bitte um Review meiner erweiterten ONYU-Schaltpläne (Bluetooth-Erweiterung mit CSR8635)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PAN_Profile_V10.pdf
Classwave Wireless Inc. Conrad Maxwell Conexant Systems Mark Rison CSR Allan Bogeskov Telefonaktiebolaget LM Ericsson Theo Borst Telefonaktiebolaget LM Ericsson Per Johansson Telefonaktiebolaget LM Ericsson Tero Kauppinen Telefonaktiebolaget LM Ericsson Martin Kitchen Telefonaktiebolaget LM Ericsson Jesper Krogh Telefonaktiebolaget LM Ericsson Tony Larsson Telefonaktiebolaget LM Ericsson Johan Sorensen Telefonaktiebolaget LM Ericsson Dave Suvak Extended Systems Inc. Jean Tourrilhes Hewlett Packard Corporation Toru Aihara International
in „Bluetooth Gateway ins Internet“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM3409__LM3409HV.pdf
L M LM3409 June 12, 20094 0 LM3409HV 9 / M PFET Buck Controller for High Power LED Drives General Description Features 4 The LM3409/09HV are P-channel MosFET (PFET)■c2Ω, 1A Peak MosFET Gate Drive 0 trollers
in „High Power LED Stroboskop“ · Mikrocontroller und Digitale Elektronik ·
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Schematic_ED2109-015-A.pdf
8 7 GND W GND SW BOOT U 3 2 R13 R14 c FREQ EN 300k h 6 4 100k i VDD FB N B 5 SGND PGND 1 B R16 GND LM2623MM/NOPB GND 100k M3 GND MISO 2 7 T7 MOSI 3 MISO DIO5 12 BC847C SCK 4 MOSI DIO4 11 C11 CS 5 SCK DIO3 16 DIO2 100nF R17 SHDN DMG3415 RST 6 NSS DIO2 15 DIO1 +3.3V Q3 RESET DIO1 14 DIO0 10k DIO0 2 3 13
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an75f_Low_Power-Design.pdf
ACCELERATION/NOISE FILTER, 1.2V INTERNAL ** POTENTIOMETER WITH PENDULOUS REFERENCE WEIGHT ATTACHED AN75 F26 Figure 26. Tip-Acceleration Detector for Shipping Containers Retains Output If Triggered. Sensitivity Is Adjustable Via Amplifier Feedback Values. Capacitor Sets Acceleration Response Bandwidth AN75-
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PDF
Schaltplan.pdf
+12V +5V +12V IC3 8 1 - VIN VO LM2931-5.0 + + 0 0 0 + 0 X1 3 7 1 0 GND 2 0 4 0 330 1 2 GND C 4 C 1 2 3 6 7 C 1 C 1 330 3 4 LED_LS 5 6 LED_FM R6 R7 SV2 GND GND 1 2 T_MINUTE_UP T_MINUTE_DOWN +5V 3 4 LED_LS SUMMER T_SECOND_UP 5 6 1 1 2
in „DOGM081 Display Fehlersuche *HILFE*“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schaltplan.pdf
8 91 1 1 1 1 1 1 N 1 3 MEGA8-P G A 1 23 M 1 . 1 . PC6(/RESET) PC0(ADC0) + V R 2 R 2 PC1(ADC1) 24 - 26V R8 K 22 GND PC2(ADC2) 25 1 R 1 100nF 21 AREF PC3(ADC3) 26 0 + R 5 20 AVCC PC4(ADC4/SDA) 27 0 - R16 2 C5 PC5(ADC5/SCL) 28 0 1 5K 1 3 1 + 3 1 4 9 - 1 0 SIGNAL P$2 AD_ODER_DC1 12V PB6(XTAL1/TOSC1) 2 R9
in „Displaytech 162 und 162A geht nicht“ · Mikrocontroller und Digitale Elektronik ·
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st25r3916_schematic.pdf
0 0 G 10nF 24 AGDC VDD_RF 9 C2 C8 0 C14 25 8 C4 0 7 GND D GND 26 CSI VDD 7 L2 R2 ▯B 7 +5V V G GND IRQ GND_A VDD_A GND N ▯B 6 6 5 27 IRQ GND_D 6 G 5 MISO_SDA + 1uF 28 MCU_CLK 5 5 4 MOSI BSS 29 XTI 4 ANT_13.56M 4 3 SCLK_SCL SCLK_SCL 30 BSS XTO 3 VDD_D C32 3 SCLK/SCL
in „ST25R3916 - NFC-V Emulation (ISO15693)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
imgres.htm
a,b){if(a)var c=a.id;else{do c=Math.random();while(google.y[c])}google.y[c]=[a,b];return!1};google.lm=[];google.plm=function(a){google.lm.push.apply(google.lm,a)};google.lq=[];google.load=function(a,b,c){google.lq.push([[a],b,c])};google.loadAll=function(a,b){google.lq.push([a,b])};}).call(this);google.f
in „Anschlussplan Thermoschalter / Electrolux Herd Thermo-Schalter 387207902“ · Haus & Smart Home ·
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PDF
Support-Schematic.PDF
GND Ial22323 24 Ial224 GND R16 PC0I40 PIPISO101O6 P6 PIPISO1015 PIP401313 14 PIP4014 GND Ioue05 25 26 Ioue061-26 GND Ial22525 26 Ial226 GND SN74AHC132 10K + PISO- UTUT PIPISO103O7 P7 PIPISO101 PIP401515 16 PIP4016 I0 I2 220u GND R100 HEF4021B S0 P S1 P 31 P 01 P I1 P I1 P R1 P S1 Header 8X2 3.3V 10K
in „Zufällige Ausgangsspannungen bei TXB0108PWR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan.pdf
GES DFF R 6 71 31R K001 06 3 GES WFF 42 K1 45R 81 21R K001 16 2 GES 2 DNAB 32 K1 35R 0 91 11R K001 26 1 GES DNG 22 TL R 68 02 01R K001 36 12 12 9R K001 46 0 GES0 1 2 3 T T T D DFERV 02 5 F F 1 2 22 8R 0 M M M M T H D S U S I O T N D N C 0 F F C 2 32 7R 0 O O O O D C S I D S O I E T T S A N A 1 2 42 6R
in „LCD Anzeige-Inhalt speichern.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EG8010_datasheet.pdf
0.1uF 10uF/16V 0.1uF 1000P 0.1uF R24 P1 康铜丝 0.1Ω R27 不贴 -备用 C30 8 7 6 5 R5 不贴 备用 - 10K + U4 +0.65V LM393 - EG8010.IR2110 正弦波逆变器( EG03 ) R6 C20 R4 1 2 3 4 1.5K 0.01uF 10K R26 驱动电路原理图(单极性调制方式) C19 不贴 备用 100K www.EGmicro.com Figure 6‐2. EG8010+IR2110S+cross‐conduction prevention logic sinusoid inverter(
in „Inverter DC/AC mit EGS002 China DEV-Board“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
rf__0_4_schem.pdf
File: C:\Projects\mcHF\pcb\rf\Schematics\rf_bpf.SchDoc 1 2 3 4 1 2 3 4 R13 15K P1P1 Power supply U3U LM2941CT VCC_12V PIR130PIR1302 ADC1 GND PIP101 40 I0 IN_Q Exciter Q in PIP102 J1J1 1 T F R141 C31 OUT_Q Demod Q outn PIP103 PIJ301 J / D T 3.9K I2 10nF OUT_I Demod I out PIP104 PIJ102 D N N N U 42 GND PIP106
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MSV30245_Schematic_RevB.pdf
A B C D E VCC R26 VCC 2 1 VCC Debugger/Programmer Interface 100K ICC R14 R25 1 100K J3 0 2 1 + + 2 BUSY CE S5-5 SCLK1 3 + + 4 RxD1 I2S Bus JP3 CE 5 6 VSelect Not 5 8 GND 7 + + 8 RESET Populated 9 + + 10 TxD1 + + 1 2 3
in „m16C on Chip Programmierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schild_2.pdf
+24 V KFZ Batterie IC3 Imax = 200mA Hfe min = 250 LM317LZ 1 F1 D1 3 2 R8 R23 1 X2-1 1N4004 VI VO X4-1 400mA ADJ 330 R10 400 2 IC1 7 1 2 R X4-2 78L05Z 3 2 +C3 R12 330 3 C4 3 1 +15V 2 C X4-3 VI VO Q B 1u 330 R13 4 0,33u GND + C1 X4-4 2 R14 330 C2 5 X4-5
in „Schaltung passt so ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Anemometer.pdf
+8V LM78L05 +5V R9 R10 +5V 0 0 1 1 BT1 +5V C7 C1 8 JP1 JP2 12V C5 IC1 R7 25V 16V 4 100n NMEA ETAL 1 D2 D3 T1 R8 10k 2x 1N4148 +5V BC547 +5V P1 C4 50k IC5 R4 100n UGN3503U 5k6 6 1 IC1.B 7 C6 5 20 R6 +5V k 1µ 1 RC0 11 1 3 16V P2 MCLR RC1 12 R11 IC2 13 K4 k RC2 14 K3 IC1 = LM358 1 RC3 K2 2 H1 4k7 RC4 15 RS H1 2 RA0/AN0 RC5 16 R/W +5V H2 3 17 EN H2 P4 RA1/AN1 RC6/TX 4 RA2/AN2 RC7/RX 18 1 5 RA3/VREF K5 50k 6 2 x 16 R5 2 7 RA4/T0 21 D7 5k6 RA5/AN4 RB0/INT 3 IC1.A 1 RB1 22 D6
in „Kleiner leichter Wind(richtungs)messer gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
d045050.pdf
+8V LM78L05 +5V R9 R10 +5V 0 0 1 1 BT1 +5V C7 C1 8 JP1 JP2 12V C5 IC1 R7 25V 16V 4 100n NMEA ETAL 1 D2 D3 T1 R8 10k 2x 1N4148 +5V BC547 +5V P1 C4 50k IC5 R4 100n UGN3503U 5k6 6 1 IC1.B 7 C6 5 20 R6 +5V k 1µ 1 RC0 11 1 3 16V P2 MCLR RC1 12 R11 IC2 13 K4 k RC2 14 K3 IC1 = LM358 1 RC3 K2 2 H1 4k7 RC4 15 RS H1 2 RA0/AN0 RC5 16 R/W +5V H2 3 17 EN H2 P4 RA1/AN1 RC6/TX 4 RA2/AN2 RC7/RX 18 1 5 RA3/VREF K5 50k 6 2 x 16 R5 2 7 RA4/T0 21 D7 5k6 RA5/AN4 RB0/INT 3 IC1.A 1 RB1 22 D6
in „windrichtung / windgeschwindigkeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dvm45_Rev2.2.pdf
L1 (R22, R23, P2, R24) +5V R15 150 2k7 1k 1 1µ/35V 2 Q1 3 100µH X3-2 2 P1 2 4k7 BC327 5k 3 3 T5 R22 LM336-2,5 3 +C8 C2 IC4 +12V 2 BC337 180k (ICL8069) IC6 8 20 GND A 3 (LT1004-1,2) 7 REFCAP+ D1 19 3 1 A X3-3 R13 1µ/63 REFCAP- D2 18 2 T4 JP1 5k6 23 D3 17 3 BC337 0...200 Volt R23 POL D4 T3 1 180k 1 2 2
in „Projekt DVM 4,5 Digit aus Standardbauteilen mit automatischer Bereichsumschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LED-Thermometer_Rev_C.pdf
5V-Netzteil Betriebsanzeige C für Tiny26 MUN2111 besitzt interne 10k-Widerstände (5V ok!) +VCC D1 5 V V V IN OUT + d + + + V e 2 1N4148 F GND F 1 a D ü Q1 Q2 Q3 Q4 0 IC2 0 6 + F t L g 3 4x7-Segment-Anzeige (blau/ große Ziffern) MUN2111 MUN2111
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Datei
lm358.txt
INPUT * 2 NON-INVERTING INPUT * 3 OUTPUT * 4 POSITIVE POWER SUPPLY * 5 NEGATIVE POWER SUPPLY .SUBCKT LM358 1 2 3 4 5 *************************** .MODEL MDTH D IS=1E-8 KF=3.104131E-15 CJO=10F * INPUT STAGE CIP 2 5 1.000000E-12 CIN 1 5 1.000000E-12 EIP 10 5 2 5 1 EIN 16 5 1 5 1 RIP 10 11 2.600000E+01 RIN
in „Simulation LM358 funktioniert nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1995_02_15_ps72.pdf
............ IC1, IC2obere Nut werden nun jeweils 3 Mut- 150Ω......................................LM358....................................... IC3 zur Befestigung der Halbleiter einge- schoben. 220Ω......................................7905...........................................Zur elektrischen Isolation sind die Lei- 470Ω................................R68 - LM324....................................... IC5 680Ω................................. R59,ICL7107 ............................ IC6, IC7tungs-Darlington-TransistorenmitGlim- 1kΩ......................R2,
in „ELV Labornetzgerät PS7220 defekt, Spannung konstant 60V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1006.pdf
. such as the LM124, LM158, OP-20, OP-21, OP-220, In dual supply operations, the output stage is crossover OP-221, OP-420: distortion free. a)Whentheinputismorethanadiodedropbelowground, Sincetheoutputcannotgoexactlytoground
in „Probleme mit Peakdetector“ · Mikrocontroller und Digitale Elektronik ·
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PDF
snosc51c.pdf
Single-Supply Applications + (V = 5.0 VDC Additional single-supply applications ideas can be found in the LM358 datasheet. The LMC662 is pin-for-pin compatible with the LM358 and offers greater bandwidth and input resistance over the LM358. These features will improve the performance of many existing single-supply applications. Note, however, that the supply voltage range of the LM662 is smaller than that of the LM358. Figure 26. Low-Leakage Sample-and-Hold 12 Submit Documentation Feedback Copyright © 1998–2013, Texas Instruments Incorporated Product Folder Links: LMC662 LMC662
in „Transimpedanzverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OPB350.pdf
only. Schematic for OCB100 PCBoard D3 D2 0.1µf Blue 5.6 V R10 R17 J1 - Pin 1 R11 C4 R1 1 R2 3 VDD 4 LM324 D5 GP4/AN3 GP3/MCLR J1 - Pin 4 U1 Green 5 7 Optical Device GP2/ANU2 GP0/AN0 J1 - Pin 3 2 GP5/T1CKI GP1/AN1 J1 - Pin 5 R13 R14 Vss R6 8 R12 U3 C1 D4 D1 LM324 R3 Green Red U1 0.1µf J1 - Pin 2 J2 J1 R5 1 2 3 1 Vcc C2 LM324 Q1 2 Logic Out A R4 U1 R8 R16 R15 C3 0.1µf R9 3 Logic Out B 0.1µf 4 Calibrate 5 Analog Out R7 6 Ground J1 - Pin 6 J1 = JST connector S6B-ZR(LF)(SN) OCB100-MC24 OPTEK reserves the right to make changes
in „IR- Lichtschranken (Photomicrosensor) Omron“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
I20MA.pdf
P0R24022501 P0R2502 P0U6A01 P0R401 P0RP0R2101 P0R2102 P0U6B07 D10 P 4 P0U303 1M 14 1M 1M 1 1M 1M 7 LL4148 R26 LM385D-2.5 0 Z1 P013D013 P0U2A02 P0U6B06 A P 0 1,5K 12VGND 6P0U306 0 0 D 1 INH P0U3016 C C 1 P 6 P0U3011 16 P C11 P C13 1 0 PWM 0 P0U3010 A VCC 0 0 U 4 2 B 1 1 P 0 0 P0U309 0 150p 0 150p 2 PR28 C P0U308
in „Schaltung für Stromausgang 0-20mA - benötige mal bitteHilfe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
control-panel.pdf
.. * range: 0 A .. 5.1 A (+) PWM_U: U8A U8B TP1 R19 * 0.1 V step: 0.28% R16 1k * 1.0 V step: 2.94% LM358 LM358 8 C6 PWM_U 1k 100u/10V * min. duty cycle: 0% (off) R15 3 + 5 + V 1 * max. duty cycle: 90.82% 3 100k 1 ADC_U 7 U8C C7 SW5 2 U_SET SW1 LM358 10u/25V 1k 2 2 - 6 - V 3 s 1k C1 n 1 4 100u/10V B S
in „Labornetzteil: Tasten ohne Funktion“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
project__2_.pdf
1K R3 33uF Diode GND Res2 2 EN Vin Rf2 500 6 VDD PGND 1 100K C6 3 5 GND Cap FREQ SGND GND 100nF Rfq LM2621MM BT1 300K GND Battery R4 C7 GND GND Res2 100K 0402, NPO, +/- 0.25pF 2.2nF GND C8 0402, X7R, +/- 10% 4.7pF 5 % / GND / r 50 Ohm RF Antenna + t F 3 n t H u C9 0 F 1 L . cu 4 9 i 1.5pF 1 5 0 U1 2 n
in „LCD + nRF24L01 = EMV/HF Probleme?“ · HF, Funk und Felder ·
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PDF
Boris_Voyager.sch.pdf
PC4 23 S3 K 2 A1 E r Z3 Z 31 24 t 1 E A S16 S17 S18 S19 S20 Z7 30 PA6 PC5 25 S4 p A0 GND Z8 PA7 PC6 26 S5 S 4 3 1 3 1 3 1 3 1 3 1 PC7 CS_DISPLAY 40 PB0 4 2 4 2 4 2 4 2 4 2 RS_DISPLAY 41 PB1 Z4 B 42 S21 S22 S23 S24 S25 B CS_SD 43 PB2 8K x 8 F-RAM PB3 44 PB4 3 1 3 1 3 1 3 1 3 1 MOSI/2.5B 1 PB5 4 2 4 2 4 2 4 2 4 2 MISO/2.5A 2 PB6 Z5 3 S41 S26 S27 S28 S29 S30 SCK/2.5A PB7 2 4 RESET/2.4A 6 GND_2 3 1 3 1 3 1 3 1 3 1 18 GND_3 4 2 4 2 4 2 4 2 4 2 28 2 1 Z6 39 GND_4 D 1 3 D S31 S32 S33 S34 S35 GND G G 3 1 3 1 3 1 3 1 3 1 4 2 4 2 4 2 4 2 4 2 Z7
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Boris_Voyager.sch.pdf
PC4 23 S3 K 2 A1 E r Z3 Z 31 24 t 1 E A S16 S17 S18 S19 S20 Z7 30 PA6 PC5 25 S4 p A0 GND Z8 PA7 PC6 26 S5 S 4 3 4 3 4 3 4 3 4 3 4 PC7 1 2 1 2 1 2 1 2 1 2 CS_DISPLAY 40 PB0 RS_DISPLAY 41 PB1 Z4 B 42 S21 S22 S23 S24 S25 B DM_DISPLAY 43 PB2 8K x 8 F-RAM CS_SD PB3 44 PB4 1 3 42 1 3 4 2 13 4 2 13 42 1 3 4 2 MOSI/2.5B 1 PB5 MISO/2.5A 2 PB6 +3V3 Z5 3 S26 S27 S28 S29 S30 SCK/2.5A PB7 6 k R 1 S41 6 GND_2 1 3 42 1 3 4 2 13 4 2 13 42 1 3 4 2 18 GND_3 RESET/2.4A 2 4 28 C7 Z6 39 GND_4 GND 0 S31 S32 S33 S34 S35 D 1 D N 1 3 N 3 4 3 4 3 4 3 4 3 4 CPU Reset G
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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Schaltplan.pdf
VCC k k 1 2 IN OUT 3 2 X2SQW/OUT 7 INT4 2 , 3 , INT5 SENSOR-1 D3 3 LL4148 + C9 C7 C8 V R 3 R 3 2 4 LM340S + 3 VBAT SCL 6 SCL k MBRS320T3 DCJ0202 4.7µF 220nF 100nF 1 0 4 GND SDA 5 SDA R 1 +C10 C11 C16 4 m 5 m R 1 R 1 BQ3200 1mF 100nF 100nF GND GND GND 3 C21 R 4 100nF +C23 +C24 C25 3,3V Spannung Power-LED
in „Datenlogger mit AT90USB“ · Mikrocontroller und Digitale Elektronik ·
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Schematic_ED2109-015.pdf
VDD FB 4 2 3 13 VCC N 1 GND X1 5 SGND PGND 1 +3.3V R18 8 GND ANT 9 1 ANT R16 100k 1 10 GND 2 GND GND LM2623MM/NOPB GND 100k IC1A 3 GND 10 18 R22 RFSolutions RFM95W-868S2 P1 +3.3V RST 11 PA0-WKUP PB0 19 NP TE Connectivity 1909763-1 GND 1 TX2 12 PA1 PB1 20 GND T7 1 2 SWDIO RX2 13 PA2 PB2 39 GND BC847C 2
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TQM167-Modul.pdf
....................................................................5 2.1 Microcontroller SAB-C167-LM / SAB-167CR-LM...............................................................................................................5 2.2 Memory..............................................................
in „C167-Controller-Modul“ · Markt ·
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IL300app.pdf
-07 12K 100µA 3 + + 100µA Current 3 6 100µA Current Source 100µA Source OP-07 2 12K – GAIN = R2 K3 LM313 R1 Vcc – 1.2V FS = ± 1 V + 2N4340 3 6 OP-07 2 0.01µF – LM313 Vcc – 1.2V 2N4340 0.01µF Figure 21. Differential prebiased photovoltaic isolation amplifier 3 + 6 2N3906 OP-07 R1 1 IL300 8 R2 2 – 100pF
in „Grüne LED leuchtet schon bei ca 10 uA?“ · Analoge Elektronik und Schaltungstechnik ·
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lcd_manual.pdf
# # :9L;0 L5;6 ;K0 # ,;, :9L;0 o OOHARP LCD UNIT L_ * # # :9L;0 L5;6 ;K0 # ,;, :9L;0 oooOLCD UNIT LM171_ L:73,\ X9:69 $KL1; oooOLCD UNIT LM171 $KL1; ;K0 .X9:69 ;6 ;K0 301; L:73,\ X9:69 $KL1; oooOLCD UNIT LM171 $KL1; ;K0 .X9:69 ;6 ;K0 301; * # # :9L;0 ▯ L5;6 ;K0 # ,;, :9L;0 oooOLCD UNIT LM161 ▯ L:73,
in „Fehler bei 4Bit LCD Init?“ · Mikrocontroller und Digitale Elektronik ·
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lcd-spec.pdf
# # :9L;0 L5;6 ;K0 # ,;, :9L;0 o OOHARP LCD UNIT L_ * # # :9L;0 L5;6 ;K0 # ,;, :9L;0 oooOLCD UNIT LM171_ L:73,\ X9:69 $KL1; oooOLCD UNIT LM171 $KL1; ;K0 .X9:69 ;6 ;K0 301; L:73,\ X9:69 $KL1; oooOLCD UNIT LM171 $KL1; ;K0 .X9:69 ;6 ;K0 301; * # # :9L;0 ▯ L5;6 ;K0 # ,;, :9L;0 oooOLCD UNIT LM161 ▯ L:73,
in „LCD Tutorial“ · Mikrocontroller und Digitale Elektronik ·
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lcd_manual.pdf
# # :9L;0 L5;6 ;K0 # ,;, :9L;0 o OOHARP LCD UNIT L_ * # # :9L;0 L5;6 ;K0 # ,;, :9L;0 oooOLCD UNIT LM171_ L:73,\ X9:69 $KL1; oooOLCD UNIT LM171 $KL1; ;K0 .X9:69 ;6 ;K0 301; L:73,\ X9:69 $KL1; oooOLCD UNIT LM171 $KL1; ;K0 .X9:69 ;6 ;K0 301; * # # :9L;0 ▯ L5;6 ;K0 # ,;, :9L;0 oooOLCD UNIT LM161 ▯ L:73,
in „LCD will nicht“ · Mikrocontroller und Digitale Elektronik ·
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HY-LandTiger_SCH.pdf
LCD_RD P0.25 7 P0.25/AD0.2/I2SRX_SDA/TXD3 P1.30/VBUS/AD0.4 21 P1.30 VBUS P0.7 23 24 P0.28 AOUT P0.26 6 P0.26/AD0.3/AOUT/RXD3 P1.31/SCK1/AD0.5 20 P1.31 ADC_IN P0.8 24 25 P0.27 P0.27 25 P0.9 25 26 P3.26 SDA P0.28 24 P0.27/SDA0/USB_SDA 75 P2.0 P2.0 26 27 P3.25 SCL P0.29 29 P0.28/SCL0/USB_SCL P2.0/PWM1.1
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Protel_Schematic2.pdf
C1 470R D1 R4 100uF, 6V D VCC POWER 10K D 0 U1A 1 C7 C8 V+ 27 D 28 100uF, 50V 100uF, 50V R3 SLEEP- 26 -SLEEP D VBB1 15 10K VCC EN 17 -ENABLE V VBB2 22 C2 TVS1 TP1 TP2 RES- -RESET VCP 35V STOP 0u22 PFD R2 PFD DIR 3 DIR SRF1 R1 STEP 19 STEP OUT1A 4 3A 10K HOME 2 HOME OUT1B 25 Motor Current Limit C9 10K
in „Protel: Rechteck in den Hintergrund machen“ · PC Hard- und Software ·
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copter1-2.pdf
6 7 8 + 8 3 1 1 1 1 1 2 3 + 2 3 4 5 6 JP2 2 2 2 2 2 D 2 1 1 29 AIN1/P1.0 / / / / / V TX/CTSN/P0.0 26 R R T 2 30 M M M M M 25 A 3 31 RX/AIN2/P1.2 W W W W W SPISS/RX/RTSN/P0.1 24 BK_CSN U 4 32 TX/AIN3/P1.3 P P P P / SPISS/PWM5/P0.4 23 BK_MOS 1 CPN0/AIN4/P1.4 O MOSI/P0.5 22 CPP0/AIN5/P1.5 P MISO/P0.6 BK_MIS
in „ATTiny85 Drohne“ · Mikrocontroller und Digitale Elektronik ·