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pico-datasheet_1_.pdf
-25 25 85 #1 84.8 83.4 87.3 90.9 87.8 93.1 #2 87.5 89.9 89.8 93.4 94.1 94.0 #3 84.4 86.2 86.9 90.6 92.9 91.3 Mean 85.6 86.5 88.0 91.6 91.6 92.8 NOTE Includes current consumed by VGA board (e.g. I2S DAC) in addition to the Raspberry Pi Pico. For more information on the VGA board see the Hardware design
in „Raspberry Pi Pico PIO (JESUS)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mt6_06.pdf
Angelboot Header SL1-2 S1 Audio stereo connector Reichelt EBS35A U1 Trizeps SODIMM 144 X9 Display LM8V31 MOLEX 53261-1590 (optional) X10 Display LM8V31 MOLEX 53261-1490 (optional) X14 Touch LM8V31 JST 04FE-ST-VK-N (optional) MT6N (MT606) 22 von 49 Keith & Koep GmbH Functional specification FIGURE 6.
in „CAN-Bus Ansteuerung über C# - Compact Framework“ · Softwareentwicklung ·
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PDF
AD8307.pdf
Low Cost, DC to 500 MHz, 92 dB Logarithmic Amplifier AD8307 FEATURES FUNCTIONAL BLOCK DIAGRAM Completemultistagelogarithmicamplifier AD8307 92dB dynamic range:–75 dBmto +17 dBm BAND GAP REFERENCE VPS 7 7.5mA AND BIASING 6 ENB to
in „logarithmic detector“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3dstep_doku.pdf
.3,C6..C8,C10..13,C15,C17..C20 3 100µF/63V D10mm ELKO C4,C9,C14 1 220µ/25V E3,5-8 ELKO C5 7 BC548 TO92/ TRANSISTOR Q[1..6],Q9(auchBC547oderähnliche) 1 BD135 TO126AS TRANSISTOR Q8 24 BYV27/200 D-15 DIODE D[1..24] 6 0,47R/2Watt! L<=18mm RESISTOR R1,R2,R6,R7,R11,R12 1 CD4073 DIL14 40XX IC7(CMOS-Reihe) 1 CD4572 DIL16 45XX IC8(CMOS-Reihe) 1 74573 DIL20 74XX IC9(74HC,74HCT,74LS,...nachbelieben) 1 LM324N DIL14 LINEAR U1 3 L297 DIL-20 STEP-IC IC1,IC3,IC5 3 L298 MTIWATT STEP-IC IC2,IC4,IC6 6 KLEMM2 RM5.08 SCHRAUBKLEMME KL[1..6] 1 KLEMM3 RM5.08 SCHRAUBKLEMME KL7 2 DISTANZHÜLSEN8mmfürM3 4 SchraubeM3x6
in „IC für Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3dstep_doku_1_.pdf
.3,C6..C8,C10..13,C15,C17..C20 3 100µF/63V D10mm ELKO C4,C9,C14 1 220µ/25V E3,5-8 ELKO C5 7 BC548 TO92/ TRANSISTOR Q[1..6],Q9(auchBC547oderähnliche) 1 BD135 TO126AS TRANSISTOR Q8 24 BYV27/200 D-15 DIODE D[1..24] 6 0,47R/2Watt! L<=18mm RESISTOR R1,R2,R6,R7,R11,R12 1 CD4073 DIL14 40XX IC7(CMOS-Reihe) 1 CD4572 DIL16 45XX IC8(CMOS-Reihe) 1 74573 DIL20 74XX IC9(74HC,74HCT,74LS,...nachbelieben) 1 LM324N DIL14 LINEAR U1 3 L297 DIL-20 STEP-IC IC1,IC3,IC5 3 L298 MTIWATT STEP-IC IC2,IC4,IC6 6 KLEMM2 RM5.08 SCHRAUBKLEMME KL[1..6] 1 KLEMM3 RM5.08 SCHRAUBKLEMME KL7 2 DISTANZHÜLSEN8mmfürM3 4 SchraubeM3x6
in „Drehmoment des Schrittmotors zu niedrig“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADC0804_NSC.pdf
voltage level specifications A converters that use a differentialpotentiometric n Works with 2.5V (LM336) voltage reference D ladder— similar to the 256R products. These converters arechip clock generator C designed to allow operation with the NSC800 and INS8080AV to 5V analog input voltage range with
in „Probleme Verständnis ADC 0804-1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADC0801_05.pdf
voltage level specifications A converters that use a differentialpotentiometric n Works with 2.5V (LM336) voltage reference D ladder— similar to the 256R products. These converters arechip clock generator C designed to allow operation with the NSC800 and INS8080AV to 5V analog input voltage range with
in „Verständnisfrage zum ADC080x (VIN-MIN/DC-Offset)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
apc_smart-ups_1000_1400_sch.pdf
14IC9 . 2 1 5 + 8 R K 1 5 R 5 5 6 0 430-0029 1N4148 V+ 7 1 . C , 2 1 K 120V 6 V- 1 N 1 1 7 74C14 - 4 LM393 2 . 0.01UF,50V,20% SEE NOTE 1 1 0 3 -9V 2 , 3 +12V R75 IC9 +5V IN-RECT C F 1 2 2 1 3 14 4 0 C 100K,1%,1/4W (Sh. 2) 2 1 I 4 R76 1 7 74C14 4 2 R61 10 IC8 2 1 1 1 1 2 + V+ 8 2 2N7000 , 9 1.00M,1%,1/4W
in „Wechselrichter bauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tl431.pdf
of 1000 TL431CPK 43 Bulk of 1000 TL431CLP Ammo of 2000 TL431CLPM TL431C Reel of 2000 TL431CLPR TO-92 (LP) Bulk of 1000 TL431ACLP Ammo of 2000 TL431ACLPM TL431AC Reel of 2000 TL431ACLPR TL431IP TL431IP PDIP (P) Tube of 50 TL431AIP TL431AIP Tube of 75 TL431ID TL431I Reel of 2500 TL431IDR SOIC (D) Tube
in „Spannungsteiler hohe oder niedrige Widerstände besser?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STM32-P207-P407_rev_D.pdf
OUT_B n 1 1 1 25 INT/PHYAD0 T K GND2 12 F k NA 0 _ C 1 n 1 k OTG_HS_VBUS R111 0R 0R(NA) RM4G2 33k LM3526-L(SO-8) 1 USB_OTG R59 2k 2 M MI F 6-0 1 RM4G1 33k I 3 / R/ 3 2 1 0 N / R C 2 1 R R R R 3.3V 3.3V 3.3V D D S L D D D D E C E D B ( USB_OTG 640x480 [VGA] CAMERA UEXT V G C C T T T T T T T VD F m 9
in „Mit STM32F4 einen Laser ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
materials-11-00817-1.pdf
obvious deviation between the predicted lifetime and the expected lifetime, i.e., 91.9% for S4 and 92.1% for S5. ComparedwithS3, S4hashigherjunctiontemperatureandlowerdrivingcurrent, buttheexpected lifetime in S4 is much smaller than that in S3, thus it can be deduced that the degradation mechanism were
in „kleinsmöglicher LED-Vorwiderstand“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STM_DEV.pdf
C0OCK2 A 240R P0 CCK2K2 2CORK54 Stiftleiste 2pol P0CEC100n P0 K1 P1CEC100n 240R 1 UA1A K0 1 1 GND LM317 390R GND GND K1 GNDGND ADL2L SS16 SS11 KLED 1206 GRUEN 2 1 GND 2 1 VCC fixed for 3.3V GND VVAR can be anything you want for... S20 PIUAI03J OPIUA202 1I0VVAR (Backlights example) Stiftleiste P2olC0 A KRK343P2 C0 Stiftleiste 2pol CK292 240R CK282 P1CEC100n P1 K1 P1CEC100n C LM317 KRK35 C GND GND 390R GNDGND K1 GND D D TitPower SizeA4 Numb1.: Revi1.0n: Date: 24.01Time: 18:3Sheet 1 of 7 FileC:\Projekte\ALTIUM\STM-DEV\Power.SchDoc 1 2 3 4 1 2 3 4 VCC UC1C R0 PA0A PIUC1023 PIUC1015
in „STM32 Development Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ledanzeigen1986_s.pdf
München 7900 Ulm 1 FAX 1030】3939 2630 'z',02") 399-0. •• 8581301 官il'OdO) 282 1丞2匂5S8�・0 ',1:(89) 92?1・口 "il10;31 1499-1 Tlx 308190一副czno rAX (021・l 3992506 FAX ,040】282-22'.0 '.' :l5?9421 19 γ.:712自 61 FAX (�891 �2ヨ1・<1390 FAX (0731) 4992- 67 Slemcn� AG Slemens AC Rbdelt>9lmer Landstraße� 9 S,err‘e
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PS9530_KM_G_071030.pdf
R k R 0 I 4 C 45 C22 1N4148 1 4k7 2 1 C 65 + A C 67 C 68 Lu tf + 3 2 100u 100n - R 86 63V ker 100p LM 358 10p 47p A + 1 560 ker Stromreler kr ker 3 R36 + C34 10k LM 358 R56 REG+ D32 C36 IC 4 12k ST15 270p I 10 D31 L4 R124 R54 100 6 D33 1n 6 10uH - 24k - T11 D41 1N4148 7 + B + 7 B 5 2x1N4148 U -O LL R53 5 + 10k + T D42 3 C 66 LM 358 C69 C70 C14 TS 2 LM358 M S 7 7 1 M 8 k 9 k 5 4 k P 7 2N3019 A Spann ungsregler R 4 R 1 R 1 R 2 9 R 5 1 R 1 M ti D43 B 100p 22p 22p 1n 1 A K uhltrn ker kr ker S Temperatur-Uberwachun Luftersteueru
in „ELV Netzteil "PS 9530" 0-30V/0-10A - Erfahrungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
arm.pdf
10n L2L 3.3V power supply 733-334 4 C0 DR127-470-R 3A max. 8IGND4 1 PIGND8 SW PIN101 PIL2PIL202 VCC LM2676S-ADJ 2 0 0K V2V C1 C2C 32 C3 I2 C4C4 R1R1 R2R2 TGL34-33A 10u 100n 100n 4k7 56 0A C0 31 VKV3V3 I1 0 1 30BQ040 P1 C5C5 C1 C6 VA P2 330u C2 330u 2 R3R3 2 V4V4 2k7 KP-2012SGC 1 1 GND GND GND GND GND
in „ARM Board Layout“ · Platinen ·
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PDF
Nexys4_DDR_schematic.pdf
A4 + - 46 R89 LED16_G 3 CG S I4 Q3BBR911 AN00 75 Green 41IQ40P02 81 DPP R922 100 PIDISPDP3 7 I035 92 I0 VS NRD8 2.2K I10091 KW4-281ASB 2.2K P0CR27 7CO27 R1OR7 R272 R273 R274 VU5V0 P0 .2K 72.2K R2 .2K GND CA R933 VCC3V3 PIR9I12 R966 100 01 LD17 CB PIR9912 C207 R94 100 R99 074.7uF I1 R977 PIRPIR94PILD
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6ff78f.pdf
1 K 1 G K RR 0 B R R 1 1 C R R 5 RR 2 CC C C 6 RR 81 9 RR RR C C 0 R R R Q Q Q R R R R K 5 5 3 K 2 92 K 2 1 0 1 81 22 1 2 2 K 22 65 1 91 41 2 2 n 8 8 7 3 6 2 2 4 1 0 9 6 1 3 1 9 K 08 8 7 8 0 43 26 3 3 7 8 41 0 20 54 2 6 2 7 1 5 6 0B 7 8 3 K 5 9 6 1 1 6 C 8 8 B 0 C 5 6 R 1 3 2 C K K A 1 2 3 3 3 R n 4
in „Mischpult "Alesis Multimix 8" (Knallen auf allen Ausgängen)“ · Analoge Elektronik und Schaltungstechnik ·
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nacrt_main_board_rev10a_coulomb.pdf
1N4148 +340V DC +340V DC +340V DC +340V DC U20 GND 1N4148 CH + TX9 R264 -12V-P R270 R272 R30 22R 2 LM7912 3 750R 750R EARTH +12V 1M R231 12 D70 IN OUT 1N4007S R241 2 TX6 UF202 1 R82 1M0 3 K C94 15k 2 C115 GND R120 GND GND C71 C73 n 1K0 R 5 5W 1 12 D62 D58 680p C116 1 C132 10k 2,2nF p WHERE D18 C69 1kV
in „SUCHE Transistor KGF75N65KDF“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Hewlett_Packard_Operating_and_Service_Manuals_for_HP361XA_30W_Bench_Series_DC_Power_Supplies.pdf
SPANISH PAGE 5-1 ITALIAN PAGE 6-1 JAPANESE PAGE 7-1 CHINESE PAGE 8-1 SERVICE PAGE A-1 Whnt HEWLETT %L'tLM PACKARD HP E361XA 30W BENCH SERIES DC POWER SUPPLIES OPERATING AND SERVICE MANUAL FOR MODELS: HP E3610A, Serials KR20600101 and above HP E3611A, Serials KR20600101 and above HP E3612A, Serials KR20600l01
in „Gebrauchtes Labornetzteil HP Agilent“ · Mechanik, Gehäuse, Werkzeug ·
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elv.pdf
OC0A AIN0 PD6 10 SEG11 94 7 SEG11 8 PB7 OSC2 XTAL2 PCINT7 PCINT23 AIN1 PD7 11 SEG12 93 8 SEG12 1 3 92 9 3 GND 30 P3.0/TCLO0 SEG13 91 10 SEG13 5 31 P3.1/TCLO0 SEG14 90 11 SEG14 21 GND 32 P3.2/TCL0 SEG15 89 SEG15 GND 33 SEG16 12 SEG16 2 8 MHz P3.3/TCL1 SEG17 88 13 SEG17 Haupt- +5V R205 SEG18 87 14 SEG18
in „Problem mit ELV Netzteil Bausatz PPS 5630“ · Mikrocontroller und Digitale Elektronik ·
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SW027_125kHz_tag_DS.pdf
combinations, D60 D61 D62 D63 P6 are electrically prog. D70 D71 D72 D73 P7 D80 D81 D82 D83 P8 D90 D91 D92 D93 P9 PC0 PC1 PC2 PC3 C ° 4 column- even parity i bits, NO row parity bit. C=0 as a stop bit 3 / 3 Version 3.2 SW027 The header is composed of 9 bits (sent first), which are programmed to 111111111.
in „Kontaklose Chipkarten????“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R-78AAxx-0.5_SMD.pdf
● VeryLowShutdownCurrent 0.5AMP ● SeeInnolineApplicationNotesforuseasan SMD inverter(alternativetoLM79xxLinear) SingleOutput Description The R-78AAxx-0.5SMD series are manufactured without lead and meet the requirements for RoHS 6/6 as well as the increased reflow soldering temperatures associated with
in „Recom DC/DC Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRG4BC20U_INR.pdf
Collector Current 13 C @ TC= 100°C Continuous Collector Current 6.5 A CM Pulsed Collector Current 52 LM Clamped Inductive Load Current 52 VGE Gate-to-Emitter Voltage ± 20 V EARV Reverse Voltage Avalanche Energy 5.0 mJ PD@ T C 25°C Maximum Power Dissipation 60 PD@ T C 100°C Maximum Power Dissipation 24
in „LED Stripe über IGBT schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STM32H7-Disco_full.PDF
ESP_IO0 PI81PR9 R190 NUSB-RT PU0RTS USB- PI7 USB-D- PJ0 DATA- PU01 nc Vss PU01 FID2 PG14_ESP_IO2 0R PR1PI92USB-CTS PU0CTS USB+ PI7 USB-D+ PJ0 DATA+ D D S70FL01GSAGMFI011 PID Fiducial 0R PU0ACT GndPI7 USB-ID PJ0 ID H H GND 1 CH340E +3V3 PJ0 GND S S Fiducial 1mm/3mm P0 D46 1 GND FID3 R184 PD0IO-1 Vcc P45 PR
in „STM32H7-Disco erster Test“ · Mikrocontroller und Digitale Elektronik ·
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Schematics.pdf
BAP50 C82 u BAP50 BAP50 - 100n 10µ 100n 100n + C98 100n 100n 1.2p 30p 30p 18p 100n V - C86 C89 + C92 C96 10µ C100 GND GND GND GND GND GND GND GND GND C GND GND GND GND GND GND L18 R11 R14 L29 R21 BW2-IN BW2-OUT GAIN-CTRL-OUT 10µ 4.7k 5 n 7 kHz 0 n 4.7k 10µ t 2.2k C 4 L22 QF3 L25 C 4 u C95 - 3.3µ 4.7µ
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PDF
doc7627.pdf
R15+R18)/R19) R19 124k 1% D6 U5 J8 VBAT 1 3 2 IN OUT 1 220nF 2 100nF LL4148 -C16 C17 GND C18 4.7uF LM340 MTA Ext power supply 2-6 AT90USBKey Hardware User Guide 7627A–AVR–04/06 Using the AT90USBKey 2.2.2 VBUS Generator When using the AT90USB microcontroller in USB host mode, the AT90USBKey should provide
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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Datei
NRF24_SendRcvMIesp.ino
[PV][7]=FCODE; } PMI=TotalP[0]; LIMIT=(uint16_t)Limit; sprintf(cStr,"CH:%2i PV%1i MI:%4iW Grd:%4iW Lm:%4iW %4sW %4sV %3sA %4iWh %4sACV %3sHz %3sC S:%i ", RcvCH,PV,(int)PMI,(int)P_DTSU,Limit,String(P_DC,1),String(U_DC,1),String(I_DC,1), (int)Q_DC, String(U_AC,1), String(F_AC,1), String(TEMP,1), STAT);
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FAN7621-36163.pdf
www.fairchildsemi.com F A N 7 Application Circuit Diagram 6 2 D1 1 Cr — P L F lk Np Ns VO M V CC C LVcc Lm o HV n CC Ns t RT o 1 l 2 HO e 7 r CON N D2 C F R F o CDL A CTR r V F H IN KA431 LO l CS - B r SG PG d g e R Rsense e s o Figure 1. Typical Application Circuit (LLC Resonant Half-Bridge Converter) n
in „Verbindung einer Leuchtdiode mit einem Fototransistor erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BE-412-B-MONITOR-HEIDENHAIN-MANUAL.pdf
203 t t t t 244 t t t t 245 t t t t 206 t t t. t t t t t t t t t Punktion abhAngiv gonUY2 Bit 9 IP92Bit 9=4: AktivierenvonPLC- Hakro-Befehlen _____________ - ___- -- - -----.--.--.- -.--.---------------------- Y92 Bit 9=1: AnzahlderYerkzeugu eit Platznumer I_--- AktivierungvonPLC-Kakro-Befehlen (Setzender
in „CRT Monitor gegen VGA Monitor tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
WT11_Data_Sheet.pdf
can be found from iWRAP User Guide which can be downloaded from www.bluegiga.com. 6.2 HCI Stack HCI LM LC 48kB RAM Baseband MCU USB UART Host Host I/O I/O Radio PCM PCM I/O Figure 25: WRAP THOR HCI Stack In the implementation shown in figure 25 the internal processor runs the Bluetooth stack up to the
in „WT11 von Bluegiga, Registrierung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
17PW20-1.PDF
R872 D855 +12V BC858B A_DIM 2 4 n 0 Q841 C 1 5 2 10k 0 u V D_DIM R874 C 1 1 3 VCC1 TCET110G 47R 27k LM 317T R873 C849 A/D_DIM _SEL 4 I IC828 V 7 5 A VCC2 1 2 C _ 3 VIN VOUT2 10R 1 D819 2n2 R876 5 F ADJ R968 R953 00 8 C847 TL431SAM F2 50V 30k V 8 7 BC848B 1 1k 51 C +24V ST_BY 6 R 4 Q835 7 9 7 k ON/OFF
in „LCD-TV und Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
310J---FIDamp.pdf
Mersrdrul.tt3 020,62 U.S.A. and reliable.owever, no responsibilitpatentsmedby Analog Devices Telex: 92tf491 CaHar:ANALOGNORWOODMASS partieswtrichmay fresult from its use. No licenisgrantedighimplica-rd tion or otherwiseunder any patent or patent rightof Analog Devices. SPECIFICATI(|IIS (typicar @ +2b"c
in „DC-Messverstärker (Chopper) mit Kapazitätsdioden (diskret)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
65013-8_LP_Lernpaket_Experimente_mit_USB.pdf
C1 100n C-EU025–024X044 C2 100n C-EU025–024X044 C3 100 F CPOL-EUE2.5–7 C4 0,47 F CPOL-EUE2.5–5 IC1 LM358N DIL08 JP1 1X02 Pinhead + Jumper P1 100K Linear R1 100k R-EU_0204/7 R2 39K R-EU_0204/7 R4 10K R-EU_0204/7 R5 10K R-EU_0204/7 S1 20Pin, DIL20 gedrehter Sockel T1 BC557 A TO92 T2 BS170 TO USB 2X05 181
in „Buderus EMS-"Gateway" mit PIC18F / Sammelbestellung“ · Haus & Smart Home ·
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OURDSO_V2.pdf
31S_D10 IO, LVDS28n 181 S_D9 330u 104 22u 104 104 47u S_A13 26 A13 I/O11 32S_D11 IO, LVDS28p 182 S_D5 LM2596S-3.3 1 S_A14 27 A14 I/O12 35S_D12 IO, LVDS26p, DQ1T0/DQ1T9 185 S_D10 D1 S_A15 42 A15 I/O13 36S_D13 IO, LVDS25n 187 S_D4 GND GND S_A16 43 A16 S S E E I/O14 37S_D14 IO, LVDS25p, DQ1T1/DQ1T10 188 S_D11
in „Oszilloskop aus STM32 und FPGA“ · Mikrocontroller und Digitale Elektronik ·
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HY-LandTiger_SCH.pdf
P0.3 2 3 TMS UART0_TX P0.2 98 P0.2/TXD0/AD0.7 P1.4/ENET_TX_EN 93 P1.4 ENET_TX_EN P0.2 3 4 GND P0.3 99 92 P1.8 GND 4 5 TCK UART0_RX P0.4 81 P0.3/RXD0/AD0.6 P1.8/ENET_CRS 91 P1.9 ENET_CRS 3V3 5 6 P0.26 CAN2_RX P0.5 80 P0.4/I2SRX_CLK/RD2/CAP2.0 P1.9/ENET_RXD0 90 P1.10 ENET_RXD0 P1.0 6 7 P0.25 CAN2_TX P0.6
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PDF
HCPL7800.pdf
1.19 (0.047) MAX. 4.70 (0.185) MAX. PIN DIAGRAM 1 VDD1 VDD2 8 PIN ONE 0.51 (0.020) MIN. 2 V V 7 2.92 (0.115) MIN. IN+ OUT+ 3 VIN– VOUT– 6 0.76 (0.030) 0.65 (0.025) MAX. 1.24 (0.049) 4 GND1 GND2 5 2.28 (0.090) 2.80 (0.110) DIMENSIONS IN MILLIMETERS AND (INCHES). * TYPE NUMBER FOR: HCPL-7800 = 7800 HCPL
in „Galvanisch getrennten 1-10V Ausgang regeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCPL7800.pdf
1.19 (0.047) MAX. 4.70 (0.185) MAX. PIN DIAGRAM 1 VDD1 VDD2 8 PIN ONE 0.51 (0.020) MIN. 2 V V 7 2.92 (0.115) MIN. IN+ OUT+ 3 VIN– VOUT– 6 0.76 (0.030) 0.65 (0.025) MAX. 1.24 (0.049) 4 GND1 GND2 5 2.28 (0.090) 2.80 (0.110) DIMENSIONS IN MILLIMETERS AND (INCHES). * TYPE NUMBER FOR: HCPL-7800 = 7800 HCPL
in „8fach Trennverstärker 0..10V - wie realisieren?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
display.c
0x00, 0x00, 0x00 }, // 34 " { 0x28, 0x28, 0xfe, 0x28, 0xfe, 0x28, 0x28, 0x00 }, // 35 # { 0x7c, 0x92, 0x90, 0x7c, 0x12, 0x92, 0x7c, 0x00 }, // 36 $ { 0xe2, 0xa4, 0xe8, 0x10, 0x2e, 0x4a, 0x8e, 0x00 }, // 37 % { 0x30, 0x48, 0x30, 0x70, 0x8a, 0x84, 0x7a, 0x00 }, // 38 & { 0x38, 0x38, 0x10, 0x20, 0x00,
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SC17_GENERAL_MAG_98_1.pdf
5.6 k LM324N 4 Ua+ 390 LM324N COMP COMP 5 100 100 R21 100 k R25 100 k k C1 k R17 Ua− 4066 4066 20 k IC4A 7 470 nF IC1A IC1B VCC GND IC3C IC3D 2 KMZ51 3 LM324N LM324N IC2B R8 6 100 k Vref Ua+ LM324N 5 V (generated R14 10 k on the board) R18 R12 C3 10 kD1 BST62 10 k LM324N V 47 k TR2 IC4C DD 4066 4066 R2 10 nF BA5321 C6 IC1D IC1C 390 IC3B BA5321 FLIP IC3A IC1P IC2 IC3 10 nF 1 F C2 LM324N D2 TR1 R23 C7 VSS 22 nF C4 R19 BST52 FLIP 10 k 4.7 F 2.2 F R15 10 k 10 k IC5C
in „OPV umschaltbar zwischen Invertieren/Nichtinvertieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SC17_GENERAL_MAG_98_1.pdf
5.6 k LM324N 4 Ua+ 390 LM324N COMP COMP 5 100 100 R21 100 k R25 100 k k C1 k R17 Ua− 4066 4066 20 k IC4A 7 470 nF IC1A IC1B VCC GND IC3C IC3D 2 KMZ51 3 LM324N LM324N IC2B R8 6 100 k Vref Ua+ LM324N 5 V (generated R14 10 k on the board) R18 R12 C3 10 kD1 BST62 10 k LM324N V 47 k TR2 IC4C DD 4066 4066 R2 10 nF BA5321 C6 IC1D IC1C 390 IC3B BA5321 FLIP IC3A IC1P IC2 IC3 10 nF 1 F C2 LM324N D2 TR1 R23 C7 VSS 22 nF C4 R19 BST52 FLIP 10 k 4.7 F 2.2 F R15 10 k 10 k IC5C
in „Typical Application Circuit - Kondensatoren wechselbar?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_MAG_98_1.pdf
5.6 k LM324N 4 Ua+ 390 LM324N COMP COMP 5 100 100 R21 100 k R25 100 k k C1 k R17 Ua− 4066 4066 20 k IC4A 7 470 nF IC1A IC1B VCC GND IC3C IC3D 2 KMZ51 3 LM324N LM324N IC2B R8 6 100 k Vref Ua+ LM324N 5 V (generated R14 10 k on the board) R18 R12 C3 10 kD1 BST62 10 k LM324N V 47 k TR2 IC4C DD 4066 4066 R2 10 nF BA5321 C6 IC1D IC1C 390 IC3B BA5321 FLIP IC3A IC1P IC2 IC3 10 nF 1 F C2 LM324N D2 TR1 R23 C7 VSS 22 nF C4 R19 BST52 FLIP 10 k 4.7 F 2.2 F R15 10 k 10 k IC5C
in „Suche einen Magnetfeldsensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
kmz11b1.pdf
5.6 k LM324N 4 Ua+ 390 LM324N COMP COMP 5 100 100 R21 100 k R25 100 k k C1 k R17 Ua− 4066 4066 20 k IC4A 7 470 nF IC1A IC1B VCC GND IC3C IC3D 2 KMZ51 3 LM324N LM324N IC2B R8 6 100 k Vref Ua+ LM324N 5 V (generated R14 10 k on the board) R18 R12 C3 10 kD1 BST62 10 k LM324N V 47 k TR2 IC4C DD 4066 4066 R2 10 nF BA5321 C6 IC1D IC1C 390 IC3B BA5321 FLIP IC3A IC1P IC2 IC3 10 nF 1 F C2 LM324N D2 TR1 R23 C7 VSS 22 nF C4 R19 BST52 FLIP 10 k 4.7 F 2.2 F R15 10 k 10 k IC5C
in „Strom-Messung + PIC16C76“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_MAG_98_1.pdf
5.6 k LM324N 4 Ua+ 390 LM324N COMP COMP 5 100 100 R21 100 k R25 100 k k C1 k R17 Ua− 4066 4066 20 k IC4A 7 470 nF IC1A IC1B VCC GND IC3C IC3D 2 KMZ51 3 LM324N LM324N IC2B R8 6 100 k Vref Ua+ LM324N 5 V (generated R14 10 k on the board) R18 R12 C3 10 kD1 BST62 10 k LM324N V 47 k TR2 IC4C DD 4066 4066 R2 10 nF BA5321 C6 IC1D IC1C 390 IC3B BA5321 FLIP IC3A IC1P IC2 IC3 10 nF 1 F C2 LM324N D2 TR1 R23 C7 VSS 22 nF C4 R19 BST52 FLIP 10 k 4.7 F 2.2 F R15 10 k 10 k IC5C
in „Magnet und Hallsensor als Türkontakt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_MAG_98_1.pdf
5.6 k LM324N 4 Ua+ 390 LM324N COMP COMP 5 100 100 R21 100 k R25 100 k k C1 k R17 Ua− 4066 4066 20 k IC4A 7 470 nF IC1A IC1B VCC GND IC3C IC3D 2 KMZ51 3 LM324N LM324N IC2B R8 6 100 k Vref Ua+ LM324N 5 V (generated R14 10 k on the board) R18 R12 C3 10 kD1 BST62 10 k LM324N V 47 k TR2 IC4C DD 4066 4066 R2 10 nF BA5321 C6 IC1D IC1C 390 IC3B BA5321 FLIP IC3A IC1P IC2 IC3 10 nF 1 F C2 LM324N D2 TR1 R23 C7 VSS 22 nF C4 R19 BST52 FLIP 10 k 4.7 F 2.2 F R15 10 k 10 k IC5C
in „Magnetfeldsensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_MAG_98_1.pdf
5.6 k LM324N 4 Ua+ 390 LM324N COMP COMP 5 100 100 R21 100 k R25 100 k k C1 k R17 Ua− 4066 4066 20 k IC4A 7 470 nF IC1A IC1B VCC GND IC3C IC3D 2 KMZ51 3 LM324N LM324N IC2B R8 6 100 k Vref Ua+ LM324N 5 V (generated R14 10 k on the board) R18 R12 C3 10 kD1 BST62 10 k LM324N V 47 k TR2 IC4C DD 4066 4066 R2 10 nF BA5321 C6 IC1D IC1C 390 IC3B BA5321 FLIP IC3A IC1P IC2 IC3 10 nF 1 F C2 LM324N D2 TR1 R23 C7 VSS 22 nF C4 R19 BST52 FLIP 10 k 4.7 F 2.2 F R15 10 k 10 k IC5C
in „KMZ51 Sensor - Reset frequenz“ · Analoge Elektronik und Schaltungstechnik ·
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SPS9540_KM_G_011017.pdf
7805 3 /I_REF C209 4 I- C208 L201 2 8 8 5 +U 10uH 1 220u 100n C210 I205 IC204 i 6 UGRO B 16V I 7 UFEI LM358 LM 358 8 IR OB C219 C220 22u 4 4 9 IEIN 16V 10 +UREF 22u 100n 11 /I_REF 16V ker 12 U_RE GLER Kaste1 /IRef 13 I_ EGLER R 239 DatabaseAnschlss 14 I- 100k fuerI 204 15 /I_REF U-Reglr R 220 C2 12 U-Reglr
in „*Netzteil die ZWEITE*“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Roland_G-70_Service_Notes_.pdf
14/18 CIRCUIT DIAGRAM (HARMONY 2/2) 90 WIRINGDIAGRAM 20 CIRCUIT BOARD & CIRCUIT DIAGRAM (INVERTER) 92 INFORMATIONUPDATINGMUSICALDATA/OPERATIVESYSTEM 22 CIRCUIT BOARD (MIDI) 92 UPDATINGOFMUSICALDATA 23 CIRCUIT DIAGRAM (MIDI) 94 FACTORYRESET 25 CIRCUIT BOARD & CIRCUIT DIAGRAM (LCD CONTROL) 96 UPDATINGOFTHEOPERATIVESYSTEM
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Roland-G-70-Service-Manual.pdf
14/18 CIRCUIT DIAGRAM (HARMONY 2/2) 90 WIRINGDIAGRAM 20 CIRCUIT BOARD & CIRCUIT DIAGRAM (INVERTER) 92 INFORMATIONUPDATINGMUSICALDATA/OPERATIVESYSTEM 22 CIRCUIT BOARD (MIDI) 92 UPDATINGOFMUSICALDATA 23 CIRCUIT DIAGRAM (MIDI) 94 FACTORYRESET 25 CIRCUIT BOARD & CIRCUIT DIAGRAM (LCD CONTROL) 96 UPDATINGOFTHEOPERATIVESYSTEM
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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SAK-C167CR-LM_HA.pdf
product. Table 1 C167CR Derivative Synopsis Derivative) Program Memory XRAM CAN Interface SAK-C167SR-LM --- 2 KByte --- SAB-C167SR-LM SAK-C167SR-L33M SAB-C167SR-L33M SAK-C167CR-LM --- 2 KByte CAN1 SAF-C167CR-LM SAB-C167CR-LM SAK-C167CR-L33M SAB-C167CR-L33M SAK-C167CR-4RM 32 KByte ROM 2 KByte CAN1 SAB-C167CR
in „Problem mit Infinion C167CR mit AM29F200B-70SE“ · Mikrocontroller und Digitale Elektronik ·
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VFD_Clock_Assembly_Manual_rev_3.pdf
headers K1 ... K3 (2x5p), K8 (1x4p) and MOD1 (ESP32-devkitC, 2 x 1x20p). Mount the transistors with TO92 case T1 (BC574B) and T3 ... T9 (2N7000). Mount them so the top of their casings is flush with the top of the socket headers. This makes mounting easier. Finally mount the larger components. Start with
in „ESP32 DevKit-C“ · Mikrocontroller und Digitale Elektronik ·