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LT8646S_single.pdf
23.5V 1 7.5k 30 VC 2 RV1 D D D D D D 200k GND GND C6 CSS1 N N N N N N T C C C C 3 R11 0.47µ/100V 10n/25V C7 G G G G G G R N N N N 0R opt. opt. 330p/50V 3 3 3 3 3 3 2 3 7 2 2 GND U2 GND GND VBUS GND GND RT1 GND LM317_3PinPackage BIAS = 10.56V 100k f_sw = 440kHz 3 2 VI NP VO BIAS J A R12 1 7.5k C GND C R13
in „LT8645 / LT8646 brennt durch.“ · Analoge Elektronik und Schaltungstechnik ·
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SCH.pdf
SD_DIN 104 DB3 10 77 LCD_Data_4 LCD_Data_15 20 GND DI DB4 11 D3 LD4 76 LCD_Data_5 LCD_Data_0 21 G7 SST25VF016 DB5 116 D4 LD5 72 LCD_Data_6 LCD_Data_1 22 B0 DB6 115 D5 LD6 71 LCD_Data_7 LCD_Data_2 23 B1 DB7 114 D6 LD7 70 LCD_Data_8 LCD_Data_3 24 B2 D7 LD8 B3 DB8 113 D8 LD9 69 LCD_Data_9 LCD_Data_4 25 B4
in „Open407I-C (Board für STM32) mit OV9655 (Kameramodul) auf 5"-Touchdisplay“ · Mikrocontroller und Digitale Elektronik ·
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IC-MP.pdf
V(), 0.7 V VDD = 5V ±5%, Tj = 10...40°C 406 Vtu()hys Upper hysteresis Vtu()hys = Vtu()hi − Vtu()lo 25 150 mV ry iC-MP in a re lm 8-BIT HALL ANGLE ENCODER p Rev A1, Page 5/12 ELECTRICAL CHARACTERISTICS Operating conditions: VDD = 5V ±10% , Tj = -40...125°C, unless otherwise noted Item Symbol Parameter
in „Analogen Zeigerstand elektronisch ablesen“ · Analoge Elektronik und Schaltungstechnik ·
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2m_ReceiverFUNKAMATEUR_DRA818V.pdf
R17 GND S 4 5 6 7 R15 R E D D D D 10k IC2 1 23 D4 +5V RESET PC6(/RESET) PC0(ADC0) 24 D5 PC1(ADC1) 25 D6 B C18 PC2(ADC2) 26 D7 B 470n PC3(ADC3) 27 RS PC4(ADC4/SDA) 28 E 3,6864MHz GND 9 PC5(ADC5/SCL) PB6(XTAL1/TOSC1) Q1 10 PB7(XTAL2/TOSC2) 2 C21 C22 PD0(RXD) J5-1TxD PD1(TXD) 3 J5-2RxD 22p 22p PD2(INT0
in „2m-Receiver mit DRA818 nach FUNKAMATEUR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2m_ReceiverFUNKAMATEUR_DRA818V.pdf
R17 GND S 4 5 6 7 R15 R E D D D D 10k IC2 1 23 D4 +5V RESET PC6(/RESET) PC0(ADC0) 24 D5 PC1(ADC1) 25 D6 B C18 PC2(ADC2) 26 D7 B 470n PC3(ADC3) 27 RS PC4(ADC4/SDA) 28 E 3,6864MHz GND 9 PC5(ADC5/SCL) PB6(XTAL1/TOSC1) Q1 10 PB7(XTAL2/TOSC2) 2 C21 C22 PD0(RXD) J5-1TxD PD1(TXD) 3 J5-2RxD 22p 22p PD2(INT0
in „JR 78 von DF5FC Schaltbild gesucht“ · HF, Funk und Felder ·
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iW3689_CN_to_EN.pdf
frequency ( For details, see 25 page) . in case Ton + Treset> Tp , IC It will automatically increase Tp In order to avoid entering CCM . However, application design suitable switching frequency should be selected to minimize this happens
in „Nicht dimmbare LED Spots nachrüsten“ · Mikrocontroller und Digitale Elektronik ·
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ZFreceiver.pdf
EGP10D 22k R3 4 2 8 EGP10D Rsc N D5 9 P6KE30CA 5 OnDly G 10 P6KE30CA D6 C4 L6377 1 CON10 1n VS VCC U2 LM2940 U3 3 VS 6 Diag V 3 1 8 RST out nin 2 1 0 R4 g 1 1 1 9 8 7 7 in+ OUT 2 C5 C6 C7 C18 22k R5 2 2 J2 4 D 100nF 100nF 100n 100n 5 Rsc N D7 C AFZE-1005 OnDly G P6KE30CA C C8 VCC 1 2 3 4 5 6 L6377 1 1n
in „[V] ZF Evaluierungskit, für Drahtlose Schaltanwendungen“ · Markt ·
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AEG_Power_Supply_V3.pdf
1 2 3 4 Q1 2N3055 R2 5V REG Gl1 TBD C3 B250C5600 D 100u, 25V D R1 GND TBD C2 C1 4700uF, 63V PINS DUPLICATED SHOWN WITH JUNCTION 4700uF, 63V J1A GND 16 GND TR1 15 +15V SPECIAL U1 7 6 14 +5V OUT 1 VC Vout 13 20V D2 12 5 CL 10 K1 11 24VAC GND CS 1 10 8 V+ 1N4148
in „Netzteilkarte von 1990 defekt. LM723CH“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AEG_Power_Supply_V3b.pdf
1 2 3 4 Q1 2N3055 R2 5V REG Gl1 TBD C3 B250C5600 D 100u, 25V D R1 GND TBD C2 4700uF, 63V PINS DUPLICATED SHOWN WITH JUNCTION C1 J1A GND 16 GND TR1 15 +15V SPECIAL U1 4700uF, 63V 7 6 14 +5V OUT 1 VC Vout 13 20V D2 12 5 CL 10 K1 11 24VAC GND CS 1 10 8 V+ 1N4148
in „Netzteilkarte von 1990 defekt. LM723CH“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AEG_Power_Supply_V3i.pdf
~= 1.75A 2N3055 R2 20V 5V REG Gl1 0R47 B250C5600 C1 C2 C3 D 4700uF, 50V 4700uF, 50V (0.4Ohm) 100u, 25V D R1 2R7 PINS DUPLICATED SHOWN WITH JUNCTION J1A 16 GND TR1 GND U1 15 +15V 14 +5V OUT AEG PRINT TR. 7 VC Vout 6 13 37V 4 6 12 C4 10 3 47u CL 1 D2 11 24VAC 8 CS 1N4148 10 7 V+ K1 9 PE C Gl2 8 C 8 B125C800
in „Netzteilkarte von 1990 defekt. LM723CH“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schaltplan_Durchflussregler_V2.pdf
IR_VERSORGUNG _ 2 I 6 5 r I s o R M 4 0 5 k 7 k E R 3 R 1 R 1 4 - 8 - 3 IC3A G 1 1 IR_SIGNAL C3 1 2 2 3 3 LM393D 100n R3 3 e 4 r n e f n p A S 4 E 3 4 2 C6 GND H H 2 F 3F DS DS 100n GND +3V3 JP1 RESET 1 2 3 4 R 8A R 9 A R 1 A 5 6 6 Rm 6 R m 6 R m +3V3 5 , 5 , 5 , ICSP GND N N N 2E 3 E 4 E ER E R E R L G L G
in „Redesign Platine“ · Platinen ·
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PDF
BK8000L_-_ElectroDragon.pdf
Interface Serial (TTL), connected to the PC need MAX232 SBC decoding audio performance Module size 25x13.5x1.8mm Adapter plate size 31x25mm Pin definitions, Dimension Name Number IO IO IO Description 1 GND ground antenna _GND 2 ANT antenna (default built-in antenna, external disconnect) 3 GND ground antenna
in „bluetooth Modul BK8000L AT commands“ · Mikrocontroller und Digitale Elektronik ·
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LoopController-V3.pdf
reset the analog I-part drive Soll, till PID = Sum = Null. 3) The output of araound 38 V can source LM6165 or DRV8876 directly 3 EFM8BB3 22 nCS JP1 VDD P1.3 U2B Reset 4 RSTB_/_C2CK P1.4 21 Fault Use case via I2C as an common ADC/DAC R49 TSV912IQ2T 2.8 - 3.5 V for VDD: (5:1) 5 * 0,036 MOhm = 180k 1 Boot
in „Reglermodul für mechatronische Systeme“ · Analoge Elektronik und Schaltungstechnik ·
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TL431.pdf
NCV431B, TL431BV −40 to +125 Storage Temperature Range Tstg −65 to +150 °C Total Power Dissipation @ TA= 25°C PD W Derate above 25°C Ambient Temperature D, LP Suffix Plastic Package 0.70 P Suffix Plastic Package 1.10 DM Suffix Plastic Package 0.52 Total Power Dissipation @ TC= 25°C PD W Derate above 25°C Case
in „Linenarregeler“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
NEW_MAP.txt
// can prove useful in future. 31, 32, 33, 35, 34, 36, 37, // starts from 1...think 0 21, 22, 23, 25, 24, 26, 27, // should be reserved for 11, 12, 13, 15, 14, 16, 17, // future use 1, 2, 3, 5, 4, 6, 7, 28, 18, 19, 0, 0, 29, 46 }; const char serialMap[4][49] = { // CHARACTER MAPPING MATRIX for "pure
in „Chatpad PIC16F883“ · Mikrocontroller und Digitale Elektronik ·
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ITT-TAR.pdf
um reverse voltage 0,5 volts V ibration severity 5 to 5000 Hz O ,75m m or 98 in/s2 A cceleratio n 98lm /s2 200 N/m2 Low air pressure (m ean altitude 130000ft) B obustness of term inations T ensile lkg B ending +kg 2 bends through 9o° Solderab i I ity Solder globule m ethod 2 s w ithout ageing 3 s with
in „ITT 8340 16v. 3 M“ · Mikrocontroller und Digitale Elektronik ·
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Fragen_und_Antworten_zur_fachlichen_Pruefung_fuer_Funkamateure_BAPT_1988.pdf
Meßbereich zwischen 10 Volt und im Volt. 2.5.18 Um kleiner 5 Volt und Vollausschlag zwischen 10 Volt und lm Volt`. Der lnnenwiderstand ist g`ößer 1 kohm. 2.5.19 R± kleiner 10 Ohm, Im kleiner 20 mA, und 1 soll zwischen 50 mA und 1 A gewählt werden. 2.5.20 Innenwiderstand kleiner 10 0hm, Im kleiner lm LiA und
in „Neuer Fragenkatalog für die Amateurfunkprüfung“ · HF, Funk und Felder ·
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Forum.PDF
Pouol1 A SDA PImtol3GPIO0 GPIO24 PIpede1 R10_ PImede3HDMI_D2_P HDMI_CK_P Pouol1 SCL PIm9ol5GPIO1 GPIO25 PIp87e3 P100k 1% 1206 PImtol8HDMI_HPD_N_1V8 I2C PI11ol9GPIO2 GPIO26 PIp89e7 (for OTG_ID) 1473149-4(CM3) I2Cs.I2C1.SDA IPtde5GPIO3 GPIO27 PIpede8PI101_ PI10 R2_0 SDA I2Cs.I2C1.SCL IPtde7GPIO4 GPIO28 PIpede0
in „Raspberry Pi Compute Module 3 (Carrier Board)“ · Mikrocontroller und Digitale Elektronik ·
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AN-1148.pdf
unique requirements for a o voltage regulator that cannot be met by the industry stan- s dards like the LM340 or the LM317. These regulators use an : NPN Darlington pass transistor (Figure 1), and will be re- T ferred to in this document as NPN regulators. The demand e for higher performance is being met
in „PIC, Platine, geht das so?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN-1148.pdf
unique requirements for a o voltage regulator that cannot be met by the industry stan- s dards like the LM340 or the LM317. These regulators use an : NPN Darlington pass transistor (Figure 1), and will be re- T ferred to in this document as NPN regulators. The demand e for higher performance is being met
in „AC-Störung auf +15Vdc“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lmc7660.pdf
LMC7660 www.ti.com SNOSBZ9C –APRIL 1997–REVISED APRIL 2013 LM C 7660Sw itchedC apacitorVoltageC onverter Check for Samples: LMC7660 FEATURES DESCRIPTION • Operation Over Full Temperature and Voltage The LMC7660 is a CMOS voltage converter capable of converting
in „LM7660 mit 4,7µF statt 10µF geht das auch?“ · Mikrocontroller und Digitale Elektronik ·
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multimec-5-series-switches.pdf
=25⁰C) Ratings Power mW 105 70 60 120 60 120 100 120 60 130 120 Current forward mA 30 20 20 25 20 25 30 25 25 40 50 Forward peak current mA 200 60** 60** 100 60** 150 120 150 60 500 200 Voltage reverse V 5 3 3 5 3 5 5 5 5 12 5 Operating temperature ⁰C -25/+85 -40/+85 -25/+85 -40/+85 -55/+100 -
in „[S] Beleuchtete Navimec Navigationskreistaster für Prototypenherstellung“ · Markt ·
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PDF
CONOX.pdf
description of the standard product range 35 to 540 V - Operating voltage rms - Installation diameter 7 to 25 mm - Exponent >25 - Surge currents up to 4000 A - Energy absorption up to 200 J - Continuous power dissipation up to 0.8 W - Response time ;;;;;5ns - Operating temperature at zero load -25 to +115°C - Operating temperature at full load -25 to + 70°C - Temperature coefficient at 1 mA between +25° and +85°C -0.05 %/K - Capacitance 80 to 3000 pF - Standard range 90 types E c E .- N!)E The varistor types are listed in the following tables
in „Bauteilidentifikation (siehe Bild)“ · Analoge Elektronik und Schaltungstechnik ·
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tl431.pdf
= 2495 mV ‡ r 3 r u f e e 2480 c – r e 2460 f 2 V e 2440 Vref= 2440 mV‡ – e I 1 2420 2400 –75 –50 –25 0 25 50 75 100 125 0 TA– Free-Air Temperature – °C –75 –50 –25 0 25 50 75 100 125 ‡Data is for devices having the indicated vaat Iof= 10 mA, ref KA TA– Free-Air Temperature – °C TA= 25°C. Figure 5 Figure
in „Spannungsteiler hohe oder niedrige Widerstände besser?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
dissassembly.txt
Microchip Technology Omniscient Code Generator (Lite mode) build 54009" 2: 3: opt pagewidth 120 4: 5: opt lm 6: 7: processor 16F876 8: clrc macro 9: bcf 3,0 10: endm 11: clrz macro 12: bcf 3,2 13: endm 14: setc macro 15: bsf 3,0 16: endm 17: setz macro 18: bsf 3,2 19: endm 20: skipc macro 21: btfss 3,0 22: endm 23: skipz macro 24: btfss 3,2 25: endm 26: skipnc macro 27: btfsc 3,0 28: endm 29: skipnz macro 30: btfsc 3,2 31: endm 32: indf equ 0 33: indf0 equ 0 34: pc equ 2 35: pcl equ 2 36: status equ 3 37: fsr equ 4 38: fsr0 equ 4 39: c equ
in „[C] XC8 verschwendet Speicher“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan.pdf
1 2 3 4 X5 schwarz 1 rot 2 gelb C14 3 100n JST B3B-EH_A X2 X6 GND 1 A +24V 2 A D3 LM2576 +12V...6V 2 L1 C15 3 1 OUT 100n JST B3B-EH_A +24V Vin 4 V3 150µH C9 C10 R9 X7 C8 Feedback 1N5818 470u 470u 18k 100u GND ON/OFF 1 2 3 5 3 D4 TPS5420D L2 100n +24V 7 Vin PH 8 +5V R8 JST B3B-EH_A 33µH 2,43k X8 C13 2 NC BOOT 1 C11 V1 C12 R6 10u 0,01u 1N5818 100u 6,8k R10 1 50V 3 NC 25V 2 D S2 10k C17 3 5 ENA NVSENSE 4 R11 100n JST B3B-EH_A G SW-CLOSER +5V 300R C20 6 R7 22u C5 C3 2,2k 16V B 1µF 1µF B D2 1µF C1 1 16 3 C1+ VCC 2 X4 4 C1- V+ 6 1 2 C2 5 C2+ V- 15 RxD<-PC 3 4 +5V C2- GND
in „ATtiny2313 ungewollter Reset?“ · Mikrocontroller und Digitale Elektronik ·
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LME49830_1_.pdf
Fuse+ 47uF/100V Vcc+ C4 C5 C6 C7 +45V C1 +V +60V +Vcc 0 0 Fuse + C2 470uF U1 LM49830 2SK1530 2SK1530 2SK1530 1 1 C3 104 8 VR1顺时针旋转,静态电流变小。 F D1 Ose T2 T3 D4 4 T4 7 5V 22K R1 15 +VCC R32 2SK2013 1 4 C4=C5=C6 14 R 5V R2 2 Source 12 100 33K Mute Biasp 3 3 3 AUDIO IN 5 T10 3 3 2 3 4
in „Verständnisfrage Mosfet Amp LME49830 "Sense-Schaltung"“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
R451R1 R3137II R3 33 R32K1K52 13228 5321222 ZV V1 1C3227B ECB58c N 12V. “ 4+--¶ 515/R _-GVO †§¬ HM25 1 10 ]C3221R m 2 R3ZZR1 1 2.12 Tl2B2CD 12vı 53155 3 ]C3882 R38BK25 R3244 2 C3217 4 1C3886C 2 1K22 IC3887 53112 5 HM25 K01 RNH-MODE 1 0 HM25 R3225 5 51R1 V1-INV I_I CR3245 5J5/1C3s22.15 3 122K P32882
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ICL7660.pdf
VOLTAGE LOGIC REGULATOR NETWORK Typical Performance Curves (Test Circuit of Figure 11) 10 10K o ) TA= 25 C ( 8 C V SUPPLY VOLTAGE RANGE N ( (NO DIODE REQUIRED) T1000 G I T 6 E L R V C Y 4 R P U U S 100 S T 2 P T O 0 10 -55 -25 0 25 50 100 125 0 1 2 3 4 5 6 7 8 TEMPERATURE (oC) SUPPLY VOLTAGE (V+) FIGURE
in „LCD Kaputt?“ · Mikrocontroller und Digitale Elektronik ·
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nixie_uhr_mit_8_ziffern_3_neue_Version_-_Otto.pdf
MPSA92 R10 MPSA92 R12 MPSA92 R14 MPSA92 1K _LIN C14 C 47k 47k 47k 47k Key = A 50% 47pF 5 CON GND C16 1 LM555CM 2.2nF Q12 D5 C1 Q5 R37 R15 470 D 22nF Pin1: GND D Pin2: MCLR 33k MPSA42 Pin3: RB7 HDR1X5 MPSA42 BZX79-C5V6 Pin4: RB6/DCF J1 Pin5: +5V Q6 HDR1X5 R16 E J4 E J8 33k GND A1 A2 A3 A4 R26 R2 R3 R4 R5
in „Hilfe - PIC 16F768 Resetet sich sändig - Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
zf-amp.pdf
ZF01 AMP 25dB (243.95MHz) AVcc5 +5V 2 2C1141 0 k 8 1$plname 0 4 0 IRLML6402 220pF NP0 50V DNM s 1 2 s0603 R V1003 EN_ZFA01 ZF01_+5V 3 1C1142 220pF NP0 50V DNM s0603 s0603 220pF NP0 50V DNM 0 1 5 0 3 1 2 30 28 72
in „Gegentakt vs. Eintaktvorverstärker“ · HF, Funk und Felder ·
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Datei
Bauteilliste.txt
fuse (26.67 35.56) R180 H1 M3 3,2-PAD holes (48.26 33.02) R0 H2 M3 3,2-PAD holes (5.08 33.02) R0 IC1 LM317 317TL v-reg (16.51 33.02) R90 IC2 L272M DIL08 linear (10.16 21.59) R0 IC3 L272M DIL08 linear (43.18 21.59) R0 JP1 JP1 jumper (26.67 39.37) R270 L1 10uH BC12 inductors (40.64 39.37) R0 LED1 grün CHIPLED
in „Puffer für DCC-Dekoder mit Superkondensatoren“ · Projekte & Code ·
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PDF
L-KISS_Schema_v01.pdf
8x1k 10 Din2 Rin2 8 GND WidNet Vcc GND GND 1 X5 1 PORTC Vcc 22 GND GND 2 X1 U4 PC0 23 3 B Power Jack LM2940T-5.0 PC1 24 4 B 1 IN DVOUT 3 PC2 25 5 N PC3 6 C8 G C9 PC4 26 7 22u 22u PC5 27 8 PC6 28 9 2 PC7 29 10 R1 17 GND PD3 D D 1K 3 1 3 1 3 1 3 1 3 1 3 1 3 1 3 1 P P T19 T17 T15 T13 T11 T9 T7 T5 2 2 T18
in „ATMEGA644 programmieren“ · Mikrocontroller und Digitale Elektronik ·
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BLSD1510.pdf
100nF GND TSOP321xx IC3 8 1 DRC SWC GND 7 IPK SWE 2 R2 5 COMP- TCAP 3 0.68R C5 6 4 330pF X1 +9V IC2 LM1117-5.0 +5V IC4 PWMR VCC GND 2 3 2 6 19 MC34063ADR 2 1 IN OUT 4 4 VCC ADC6 22 +9V GND 1 C4 TAB C6 C7 VCC ADC7 GND 22uF 100nF 0 2ptsHeader 10uF 18 AVCC PC0 (ADC0/PCINT8) 23 1 1 PC1 (ADC1/PCINT9) 24 +5V C8 R D4 GND GND 20 AREF PC2 (ADC2/PCINT10) 25 10uF B B GND C9 PC3 (ADC3/PCINT11) 26 L3 M B GND F PC4 (ADC4/SDA/PCINT12) 27 R5 GND D5 0 28 4.7k C10 G MSS1038-334KLB 1 PC5 (ADC5/SCL/PCINT13) 29 RST GND PC6 (RESET/PCINT14) GND 30 100nF IC5 PD0 (RXD
in „[V] RGB Steuerung“ · Markt ·
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PDF
PIR_D203s_manual.pdf
Circuit Page 2 of 6 PIR SENSOR CO.,LTD. SENSOR MANUAL Test Method Test conditions ♦ Ambient temperature 25ºC ♦ Black-body temperature 420K(147˚C) ♦ Modulating frequency 1 Hz, 0.3-3.5Hz△ f, ♦ 72.5 dBAmplifier The sensitivity balance of dual element sensor is calculated through testing the sensitivity (single
in „Ultimative Alarmanlage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
330600005.pdf
Circuit Page 2 of 6 PIR SENSOR CO.,LTD. SENSOR MANUAL Test Method Test conditions ♦ Ambient temperature 25ºC ♦ Black-body temperature 420K(147˚C) ♦ Modulating frequency 1 Hz, 0.3-3.5Hz△ f, ♦ 72.5 dBAmplifier The sensitivity balance of dual element sensor is calculated through testing the sensitivity (single
in „PIR Sensor auswerten .“ · Analoge Elektronik und Schaltungstechnik ·
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Seite_4.pdf
D- nee 3 nee# eTee 26 1fk C27 C28 nen3 fIfn 0eBPIn4 Cfifeene Cfifeene 0eBPIn1 1 CB0e 4 CCCII ADnD 25 4F7nc 1ffnc n36 5 24 0eBcCnnnecenn eDD fIfn nDD nC nen3 6 23 nI# CB0ef C29 Cfifeene 7 DnD CB0e1 22 DnD DnD 1fnc IC4 8 nC DnD 21 1 InP0e nC 8 9 2f Den# CCC 2 7 1f 19 C3f nC nC DCD# nTeTe# Cfifeene 3 6
in „ATMEGA169 Programmierung DAC7718 varibale Ausgangsspannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
High_Voltage_amplifier.pdf
trace). p-p (bottom trace). 1000V excellent stability of offsets and gain over time and temperature. R25 R26 Q1 The ac gain of the LM356 stage, 10k 3M whichR ,R ,R ,andR determine, R15 3 4 7 9 3M is approximately 100. R24 Q 82k R27 Q Thehigh-voltageMTP2P50Ep- R14 11 3M 2 channel MOSFET has maximum 3M drain-to-source
in „Verstärker 800V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
High_Voltage_amplifier.pdf
trace). p-p (bottom trace). 1000V excellent stability of offsets and gain over time and temperature. R25 R26 Q1 The ac gain of the LM356 stage, 10k 3M whichR ,R ,R ,andR determine, R15 3 4 7 9 3M is approximately 100. R24 Q 82k R27 Q Thehigh-voltageMTP2P50Ep- R14 11 3M 2 channel MOSFET has maximum 3M drain-to-source
in „Hochspannungs OPV Fehler/Vorschlag?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
P6201_x10_900MHz_FET_Probe.pdf
FXD,CER DI:470PF,10%,100V 04222 10051A471KATMC C150 283-5138-00 B082466 CAP,FXD,CERAMIC:MLC;470PF,2%,25V,NPO, 29454 250R15N471JV4P- 0.08X0.05 C155 283-0320-00 B010100 B082465 CAP,FXD,CER DI:1PF,0.25%,50V 54583 C2012C0G1H010C- C160 283-0310-00 B010100 B076839 CAP,FXD,CER DI:2.5PF,+/-0.25PF,100V 04222 08051A2R5CATBE
in „Eigenbautastköpfe“ · Analoge Elektronik und Schaltungstechnik ·
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Elektronische_Last.pdf
GND 10k 7 R124 R126 10k 7 R135 R137 10k 7 R146 R148 10k 7 R157 R159 R101 IC101 100n 6 6 6 6 100n 2k4 LM317 C102 C103 R119 IC105B 1k 0R18 R130 IC106B 1k 0R18 R141 IC107B 1k 0R18 R152 IC108B 1k 0R18 100n TLC272P TLC272P TLC272P TLC272P GND D 1k R125 1k R136 1k R147 1k R158 GND GND GND GND G GND GND GND GND
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elektronische_Last_3.pdf
10k 5 R145 GND C101 R101 ADJ GND 7 7 7 7 2k4 IC101 100n R119 6 1k R126 6 1k R133 6 1k R140 6 1k 100n LM317 C102 C103 IC104B X105-2 IC105B X107-2 IC106B X109-2 IC107B X111-2 100n D 1k TLC2723k3 R125 TLC273k3 R132 TLC2723k3 R139 TLC272P3k3 R146 GND N IC103A 3 I1 GND GND GND GND G 100R IC103D 12 1 R115 R121
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elektronische_Last_4.pdf
R140 GND C101 R101 ADJ GND 7 7 7 7 3k3 IC101 100n R108 R114 6 1k R124 6 1k R130 6 1k R136 6 1k 100n LM317 C102 C103 3k3 IC104B X105-2 IC105B X107-2 IC106B X109-2 IC107B X111-2 100n D 1k TLC2723k3 R123 TLC273k3 R129 TLC2723k3 R135 TLC272P3k3 R141 GND N IC103A 3 I1 GND GND GND GND G 100R IC103D 12 1 R115
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Support-Schematic.PDF
TL431 R13 1u 1u 1 C 10K Power output GND GND A P I V R 1REF3 G3 M N R2 GND Ioruu1 1 2 Poruu2V S 40 A LM1086CT-3.3 Ioruu3 3 4 Poruu4V R14 Ioruu5 5 6 Poruu6.3V 100K Ioruu7 7 8 Poruu8.3V SCR-IC-ONON 42 12 I 3 SCR-LIGHT-ON0ON Header 4X2 SIPO-IN PIIC3014 PIIC3015 B INK-DISABLEBLE P I I C 3 0 8 A P I I C 3 0
in „Zufällige Ausgangsspannungen bei TXB0108PWR“ · Mikrocontroller und Digitale Elektronik ·
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Lora_MainboardOutputJob.PDF
R12 COX CXPI2 CC1 20 NC 16 X3 X P PIX07 SBU1 PIX02 PII208 DSR# PIC21 PR1 PI PIX301 _ PIX09 RX2- PIX25 D+ PII209 DCD# PIC22 1K 1K SDA PIX302 1 c PI200 RX2+ PIX01 PII210 CTS# PIC22 SCL 2 i PI203 PIX26 PII211 PII20 NTXX PIX303 3 1 2 S TX2+ 18 D- CBUS4 0 NRX PIX304 4 I I _ PI204 TX2- PIX01 PII212 CBUS2 PII25
in „Bootloader über Arduino auf Atmega328“ · Mikrocontroller und Digitale Elektronik ·
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AD_Frontend8.pdf
: 7 LRCK DOUT 8 AD / COM 1.0 CHECKED: G. Raich 10uF 10uF 10uF 10uF + + + + C9 C10 C21 C22 C23 C24 C25 C26 PROJECT: Sheet: 8CH AD-FRONTEND DWG-NAME: C46 C43 C42 C41 0,1uF 0,1uF 0,1uF 0,1uF 0,1uF 0,1uF 0,1uF 0,1uF FILENAME: 6 5 4 3 2 1 +12V I(12V) = 250mA +12VA 6 1 Zwischenstromkreis C13 1n2 5 R12 R 0
in „ADC Vref auf Ground“ · Mikrocontroller und Digitale Elektronik ·
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Soldering_Iron_schematics.pdf
OUTPUT 4 ▯A 6 GND FB 33uH SS32 C1 C2 5 GND D2 C4 C5 470uF 10uF C3 ON_OFF SS32 470uF 10uF C6 100nF 100nF LM2596S-5.0 GND USBC-Data USBC-PD Trigger logic 5V-3.3V Voltage Regulator DATA1 VBUS A4 B6 DP 20V A9 VBUS D+ A6 DP POWER1 ▯B VBUS D+ A7 DM A4 B6 DP_P ▯B A1 D-B7 DM A9 VBUS D+ A6 DP_P A12 GND D-A5 VBUS D
in „ESP gesteuerter JBC T245 Lötkolben mit USB-C PD - Schematic review“ · Mikrocontroller und Digitale Elektronik ·
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Intersil_ICL8052_ICL8068_ICL71C03.pdf
DIGIT BLANKING ON OVERRANGE 16 ICL8052A/ICL71C03, ICL8068A/ICL71C03 +5V 16kΩ 1kΩ 56kΩ 2 + 8 7 0.22µF LM311 - 1 30kΩ 3 4 R fOSC = 0.45/RC 16kΩ 37.5kΩ 390pF C 100pF FIGURE 12. CMOS OSCILLATOR FIGURE 13. LM311 OSCILLATOR D S 2N5461 D S 2N5458 0.22µF +15V -15V 100K -BUF IN BUF OUT -INT IN INT OUT REF OUT 6
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EC20-9822_SK9822-2020__LED_Datasheet.pdf
10110 22/31 12.782 5.229 mA, and the current 24 10111 23/31 13.363 regulation level of 11-31 is not 25 11000 24/31 13.944 recommended. 26 11001 25/31 14.525 27 11010 26/31 15.106 28 11011 27/31 15.687 29 11100 28/31 16.268 30 11101 29/31 16.849 31 11110 30/31 17.43 32 11111 31/31 18 Note: 1. Suggested
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Hardware.pdf
23 BSL_RX D R R D AVCC P2.3 PWM1 N J11-3 2 0 3 0 742792641 N 62 AVSS P2.4 24 ICL G R 1 R 1 G P2.5 25 ACP 7 VREF+ P2.6 26 FAULT 10 VEREF+ P2.7 27 FLAG 11 VREF-/VEREF- R4 T1 C1 C2 C3 C4 C5 C6 P3.0 28 BSS138 RST 58 /RST P3.1 29 100R 100nF 10µF 100nF 10µF 100nF 100nF 30 T2 TDI 55 P3.2 31 R5 BSS138 TCK 57
in „74HCT595 + ULN2003 an 5V und 12V problem“ · Mikrocontroller und Digitale Elektronik ·