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Bild
Datenblatt eines Handfunksprechgeräts SR-C 146 A
STANDARD Handfunksprechgerät SR-C 146 A Technische Daten Frequenzbereiche: 144 - 146 MHz, 5 Kanäle Betriebsart: FM, Doppelsuper HF-Ausgangsleistung: 2 Watt Quarzfrequenzen: TX 12 MHz, RX 11,7 MHz Stromaufnahme: RX ca. 15 mA / TX ca.
in „Sommercamp TS- 146 DX“ · HF, Funk und Felder · · Screenshots
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PDF
MAX146-MAX147.pdf
Ordering Information (continued) Pin Configuration PART TEMP RANGE PIN-PACKAGE INL (LSB) TOP VIEW MAX146AEPP -40°C to +85°C 20 Plastic DIP ±1/2 CH0 1 20 VDD MAX146BEPP -40°C to +85°C 20 Plastic DIP ±1 CH1 2 19 SCLK MAX146AEAP -40°C to +85°C 20 SSOP ±1/2 CH2 3 18 CS MAX146BEAP -40°C to +85°C 20 SSOP ±1 MAX146 MAX146AMJP -55°C to +125°C 20 CERDIP** ±1/2 CH3 4 17 DIN CH4 5 MAX147 16 SSTRB MAX146BMJP -55°C to +125°C 20 CERDIP** ±1 MAX147ACPP 0°C to +70°C 20 Plastic DIP ±1/2 CH5 6 15 DOUT MAX147BCPP 0°C to +
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX146-MAX147.pdf
Ordering Information (continued) Pin Configuration PART TEMP RANGE PIN-PACKAGE INL (LSB) TOP VIEW MAX146AEPP -40°C to +85°C 20 Plastic DIP ±1/2 CH0 1 20 VDD MAX146BEPP -40°C to +85°C 20 Plastic DIP ±1 CH1 2 19 SCLK MAX146AEAP -40°C to +85°C 20 SSOP ±1/2 CH2 3 18 CS MAX146BEAP -40°C to +85°C 20 SSOP ±1 MAX146 MAX146AMJP -55°C to +125°C 20 CERDIP** ±1/2 CH3 4 17 DIN CH4 5 MAX147 16 SSTRB MAX146BMJP -55°C to +125°C 20 CERDIP** ±1 MAX147ACPP 0°C to +70°C 20 Plastic DIP ±1/2 CH5 6 15 DOUT MAX147BCPP 0°C to +
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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Datei
output.txt
(): Listening on port 4444 for telnet connections Debug: 77 4 command.c:146 script_debug(): command - init Debug: 79 4 command.c:146 script_debug(): command - target init Debug: 81 4 command.c:146 script_debug(): command - target names Debug: 82 4 command.c:146 script_debug
in „NRF51 firmware flash mit ST-Link und openocd“ · Mikrocontroller und Digitale Elektronik ·
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PDF
scs140--scs146_service_manual.pdf
000-00043 Hooker Silver Color 402-000-01836 PAP Gift Box for SCS140 402-000-01838 PAPGift Box for SCS146 406-000-00969 PAP O/M for SCS140-SCS146-DSC1000 406-000-00969 PAP O/M for SCS140-SCS146-DSC1000 k a l b c m d h n e o g p q r f k o p q c r l m h n k a l b c m d h n e o g p q r f k o p q c r l m h
in „Verständnisfrage HiFi-Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
laufschr.asm
lesen mov i2c_ack_in,c clr scl nop clr sda pop 3 ret i2c_read: ; 1 Datenbyte ueber I2C empfangen (Akku) push 3 mov r3,#8 clr a setb sda i2c_rloop: call i2c_wait setb scl nop mov c,sda rlc a nop clr scl djnz r3,i2c_rloop
in „Anstuerung MAX6952 an einen 89C2051 oder einen PIC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CEPT-Laenderliste_2014.pdf
www.bakom.admin.ch/themen/ frequenzen/01576/01578/index.html?lang=de&download=NHzLpZeg7t,lnp6I0N 144–146; 430–440 MHz; 1,24–1,3; 2,3–2,45; 5,65–5,85; 10–10,5; 24–24,25; 47–47,2; 76–81,5; 122,25–123; 134–141; 241–250 GHz TU042l2Z6ln1acy4Zn4Z2qZpnO2Yuq2Z6gpJCDdXx3g2ym162epYbg2c_JjKbNoKS Leistung: 100 W (
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Datei
pa-transformer-pcb.kicad_pcb.txt
87.249) (size 8) (drill 6.2) (layers "F.Cu" "B.Cu") (remove_unused_layers) (free) (net 0) (tstamp d75b146d-a8ff-4542-b306-59d100644589)) (via (at 49.1236 87.1982) (size 8) (drill 6.2) (layers "F.Cu" "B.Cu") (remove_unused_layers) (free) (net 0) (tstamp d9c33881-edd7-4236-bb1c-bcb9f3d927df)) (via (at 108.0008
in „Upload to AISLER from KiCAD Problem - no drills found.“ · Platinen ·
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Datei
tft_data.c
0x4, 0xd1, 0x3e, 0x7a, 0x1f, 0x9d, 0x2d, 0x99, 0xb6, 0x54, 0x16, 0x7e, 0x50, 0xb3, 0xd7, 0x9f, 0x9c, 0x44, 0xe5, 0xab, 0x5, 0x2d, 0xf0, 0x3c, 0x37, 0xe3, 0x34, 0xaf, 0x31, 0xc3, 0xf7, 0xcb, 0x46, 0xcf, 0x32, 0xe2, 0x65, 0x33, 0x2c, 0xbf, 0x13, 0x2b, 0xd6, 0xa3, 0x18, 0x68, 0x56, 0x5c, 0x3c, 0xc3, 0x88
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PDF
panasonic_tx-50dx800e_tx-50dxw804_chassis_la67.pdf
C4084 F1G1C104A146 C 0.1UF, , 16V 1 PAVCCZ C4085 F1G1C104A146 C 0.1UF, , 16V 1 PAVCCZ C4086 F1G1C104A146 C 0.1UF, , 16V 1 PAVCCZ C4087 F1G1C104A146 C 0.1UF, , 16V 1 PAVCCZ C4088 F1G1C104A146 C 0.1UF, ,
in „Schaltregler SMD Marking“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Grillen_Fuchs_Beschreibung_V1_0.pdf
24, 221, 91, 91, 199, 67, 135, 164, 74, 155, 135, 93, 159, 115, 115, 146, 111, 129, 131, 122, 128, 124, 133, 116, 129, 135, 109, 144, 122, 113, 153, 104, 133, 142, 98, 155, 113, 120, 148, 100, 146, 122, 118, 146, 107, 140, 128, 115, 146, 111, 133, 135, 109, 146, 116, 126
in „ATTINY 433MHz Fuchssender mit akustischem Grillen-Sound“ · Projekte & Code ·
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PDF
Grillen_Fuchs_Beschreibung_V1_1.pdf
24, 221, 91, 91, 199, 67, 135, 164, 74, 155, 135, 93, 159, 115, 115, 146, 111, 129, 131, 122, 128, 124, 133, 116, 129, 135, 109, 144, 122, 113, 153, 104, 133, 142, 98, 155, 113, 120, 148, 100, 146, 122, 118, 146, 107, 140, 128, 115, 146, 111, 133, 135, 109, 146, 116, 126
in „ATTINY 433MHz Fuchssender mit akustischem Grillen-Sound“ · Projekte & Code ·
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PDF
Seite141.pdf
0 0 R1043 R R 1 C 4 2 0 0 - 3 0 1 . 2 9 68K 1 . 1 N CAPACITOR G EUROPE 1/2P1.0K 1P33K 4 1 4 R P 1 K 1 7 W W S s38 C3906KT146(R,S) C3906KT146(R,S) 1 P 1 2 3 1 8 1 . R1183 REMARKS PARTS NAME L SINGAPORE 2 C 0 6 1 P R R
in „Welcher Kondensator ist das? Womit kann ich ihn ersetzten?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
telefonadapter.c
125,126,127,128,129,131,132,133,134,135,136,137,137,138,139,140, 140,141,142,142,143,143,144,144,145,145,145,145,146,146,146,146, 146,146,146,146,146,145,145,145,145,144,144,143,143,142,142,141, 140,140,139,138,137,137,136,135,134,133,132,131,129,128,127,126, 125,123,122,121,119,118,116,115,114,112,111,109,107,106,104,103
in „HEX-File passt nicht in Attiny 25“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.c
120,121,122,123,124,125,126,127,128,129,130,131,132,133,134,135,136,137,138,139,140,141,142,143,144,145,146, 121,122,123,124,125,126,127,128,129,130,131,132,133,134,135,136,137,138,139,140,141,142,143,144,145,146,147, 122,123,124,125,126,127,128,129,130,131,132,133,134,135,136,137,138,139,140,141,142,143,144,145,146,147,148, 123,124,125,126,127,128,129,130,131,132,133,134,135,136,137,138,139,140,141,142,143,144,145,146,147,148,149, 124,125,126,127,128,129,130,131,132,133,134,135,136,137,138,139,140,141,142,143,144,145,146,147,148,149,150, 125,126,127,128,129,130,131,132,133,134,135,136,137,138,139,140,141,142,143,144,145,146,147,148,149,150,151
in „Programm startet neu bei Zugriff auf array“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OZW67_en__ProductRelease_V3.pdf
/109 LMS15.001/100 RVA43.223/130 RVA63.242/144 RVS21.826/109 RVS61.843/131 LMS15.063/109 RVA43.223/146 RVA63.242/146 RVS21.827/127 RVS61.843/147 RVL469 LMS15.191/109 RVA43.223/160 RVA63.242/160 RVS21.828/127 RVS61.843/160 RVL470 LMS15.191/209 RVA43.223/173 RVA63.242/260 RVS21.829/130 RVS61.843/169 RVL471
in „Brötje ISR Plus Kommunikation / LPB“ · Haus & Smart Home ·
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PDF
2331212.pdf
146 CTI www.vishay.com Vishay BCcomponents Aluminum Electrolytic Capacitors SMD (Chip), High Temperature, Low Impedance FEATURES • Extended useful life: up to 6000 h at 125 °C • Polarized aluminum electrolytic
in „[V] 80St. Aluminium-Elektrolytkondensatoren, SMD, Becher, radial - SMD, 100 µF, 50 V, Baureihe 146 C“ · Markt ·
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PDF
K2000-schematics.pdf
-20V 79M25 VIN G VOUT 3 -15V J1016 U124 C232 3 CR103 104 1 VIN N VOUT 3 +5V 5V G AGND 2 - + 1 2 7805 R280 49.9R1% C + C146 104 C223 C VM18 2200uF 16V C151 4 VM18 104 TP102 AGND 1 104 C233 AGND AGND AGND TP106 1 DGND +5VD U144 1 2 BLM32A07 L101
in „Kalibrierung Keithley 2000 Multimeter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
146_IPS-146_rev_2_V1_0.pdf
Characteristics Parameter Symbol Min. Typ. Max. Units Comment Oscillator transmit frequencies fIPS-146 24.050 24.125 24.250 GHz delivery condition fIPS-146_UK 24.150 24.210 24.250 GHz IPS-146_F 24.075 24.135 24.175 GHz temperature drift (frequency) Δf-20°C...+60°C 0.420 MHz/°C -20°C...+60°C output power
in „AUFTRAG Doppler Radar Mündungsgeschwindigkeit“ · Markt ·
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Datei
PC_DIMMER_AT90S2313.asm
0c6c5c4c3c2c1c0 -0b6b5b4b3b2b1-0 b0a6a5a4a3a2a1a0 C=0 lsl FADE_1 ;-0c6c5c4c3c2c1c0 b6b5b4b3b2b1-0-0 b0a6a5a4a3a2a1a0 C=0 lsr FADE_2 ;-0-0c6c5c4c3c2c1 b6b5b4b3b2b1-0-0 b0a6a5a4a3a2a1a0 C=c0 ror FADE_1 ;-0-0c6c5c4c3c2c1 c0b6b5b4b3b2b1-0 b0a6a5a4a3a2a1a0 C=0 lsr FADE_2 ;-0-0-0c6c5c4c3c2 c0b6b5b4b3b2b1-0 b0a6a5a4a3a2a1a0 C=c1 ror FADE_1 ;-0-0-0c6c5c4c3c2 c1c0b6b5b4b3b2b1 b0a6a5a4a3a2a1a0 C=0 ldi Z_L,loc_rs232
in „AT90S2313 Code für ATtiny2313 angleichen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PC_DIMMER_AT90S2313.asm
0c6c5c4c3c2c1c0 -0b6b5b4b3b2b1-0 b0a6a5a4a3a2a1a0 C=0 lsl FADE_1 ;-0c6c5c4c3c2c1c0 b6b5b4b3b2b1-0-0 b0a6a5a4a3a2a1a0 C=0 lsr FADE_2 ;-0-0c6c5c4c3c2c1 b6b5b4b3b2b1-0-0 b0a6a5a4a3a2a1a0 C=c0 ror FADE_1 ;-0-0c6c5c4c3c2c1 c0b6b5b4b3b2b1-0 b0a6a5a4a3a2a1a0 C=0 lsr FADE_2 ;-0-0-0c6c5c4c3c2 c0b6b5b4b3b2b1-0 b0a6a5a4a3a2a1a0 C=c1 ror FADE_1 ;-0-0-0c6c5c4c3c2 c1c0b6b5b4b3b2b1 b0a6a5a4a3a2a1a0 C=0 ldi Z_L,loc_rs232
in „PWM-Signal durch 3-Phasen-AC gestört?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Jesper_1x1536x8_9.txt
equ TW_ST_DATA_ACK = 0xB8; xB8 10111000 (TWDR was tranfered; ACK received .equ TW_ST_DATA_NACK = 0xC0; xC0 11000000 (TWDR was tranfered; ACK NOT received .equ TW_ST_LAST_DATA = 0xC8; xC8 11001000 (last data byte LDS TWDR was tranfered (TWEA = "0"); Ack received .equ TW_NO_INFO = 0xF8; xF8 11111000 (
in „DDS normal ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6291174.pdf
2SB1204-T-TL C686 403 194 4609 ELECT 470U M 16V Q65B 405 014 4509 TR 2SC2412K T146 R C69Z 403 164 0204 CERAMIC 0.1U Z 25V C691 403 206 9004 ELECT 1000U M 6.3V Q65C 405 014 4509 TR 2SC2412K T146 R Q651 405 014 4509 TR 2SC2412K T146 R C692 403 206 9004 ELECT 1000U M 6.3V Q66A 405 014 4509 TR 2SC2412K T146 R C693 403 206 9004 ELECT 1000U M 6.3V Q661 405 138 1309 TR 2SB1565-E C694 403 206 9004 ELECT 1000U M 6.3V C695 403 280 0805
in „Sanyo LCD Beamer PLC- XU30 defekt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Baustelle.txt
ACK returned) .equ TW_ST_DATA_ACK = 0xB8;(TWDR was tranfered; ACK received .equ TW_ST_DATA_NACK = 0xC0;(TWDR was tranfered; ACK NOT received .equ TW_ST_LAST_DATA = 0xC8;(last data byte LDS TWDR was tranfered (TWEA = "0");Ack received .equ TW_NO_INFO = 0xF8;(no relevant state; TWINT = "0" no TWDR activity
in „DDS normal ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
88DDS.txt
TWSI_END l26: cpi ADDRESS,0x1a ; r26 ? brne l27 mov r26,DATA ; yes, set rjmp TWSI_END l27: cpi ADDRESS,0x1c ; r27 ? brne l29 mov DUTY,DATA ; yes, set rjmp TWSI_END l28: cpi ADDRESS,0x1c ; r28 ? brne l29 mov r28,DATA ; yes, set rjmp TWSI_END l29: cpi ADDRESS,0x1d ; r29 ? brne l30 mov r29,DATA ; yes, set rjmp
in „DDS Sinus erzeugung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MS9585b_EFD20_ub.DB.pdf
Voltatex 4001 - RoHS konform Elektrische Übersetzung: 34 : 2424 Daten: Max. Umgebungstemperatur: +70°C Isolierstoffklasse: B ( 130°C ) Spannungsfestigkeit (50Hz/2s): 1,25 kV: W1, W2, W3, W4 untereinander Eingang: Primäranschluss: 2 - 1 Primärinduktivität @ 10kHz/100mV: 260,0 – 390,0µH Ausgang: Sekundäranschluss: 5 – 6 7 – 8 9 – 10 Induktivität @ 10kHz/100mV: 146 – 220mH 146 – 220mH 146 – 220mH Abbildung: Datum: 06.02.20 Ausgabe 1 Erstellt: koe File: MS9585b.DB
in „Trafo Vermessen Sättigungsstrom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OD1238_REVERSIBLE-3135286.pdf
Reversible Flow Series (4.7” x 4.7” x 1.5”) Frame PBT, UL94 V-0 Plastic Operating Temperature -15°C ~ +65°C Impeller PBT, UL94 V-0 Plastic Storage Temperature Connection 4x Lead Wires, 24 AWG -25°C ~ +80°C Life Expectancy Brushless DC, Auto Cutoff, Auto 70,000 Hours (L10 at 40°C) Motor Restart, Polarity
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PDF
29504_204_0300.pdf
39 84 C40022 R 60 BR133 29 116 6 1 B 1 BR165 H BR134 31 105 C40041 209 26 R40474 34 50 1 8 7 1 1 C C40042 231 26 R40476 30 41 D40031 B R 1 0 0 1 R I BR135 40 146 C40052 190 44 R40478 37 38 B IC40090 4 R40139
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PDF
Mikrofon_4165.pdf
Individually calibrated Specifications and Ordering Information Type 4160 The data below are valid at 23°C, 101.3kPa and 3% DISTORTION LIMIT (UPPER): INFLUENCE OF HUMIDITY: 50%RH unless otherwise specified >146dB re.20 Pa at 100 Hz 0.0025dB/100%RH (due to variation in air stiff- See also separate Product
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PDF
rm21706.pdf
BZ w▯&YQPTFE▯▯▯▯Y▯▯▯▯▯z ▯▯Y▯▯▯▯z ▯▯▯Y▯▯▯▯z▯)PU▯TXBQ▯ 3.▯▯▯▯▯ ▯ #BDLQMBOF ▯▯)▯▯▯▯▯▯▯▯▯▯ ▯Y▯▯▯1PSU▯▯(C▯T▯4"5" ▯X▯.PVOUJOH▯#SBDLFU ▯▯▯*OUFSOBM▯▯▯▯Y▯▯▯▯z ▯▯)▯▯▯▯▯▯▯▯▯▯ ▯Y▯▯▯1PSU▯▯(C▯T▯NJOJ▯4"4 ▯X▯.PVOUJOH▯#SBDLFU 146▯'PSN▯'BDUPS w▯▯6▯4JOHMF▯PS▯▯▯▯▯3FEVOEBOU $BCMF ▯▯)▯▯▯▯▯▯▯▯▯▯ 4''▯▯▯▯▯▯UP▯4''▯▯▯▯▯ ▯▯▯▯NN
in „Mainboardbefestigungen in einem Server-Rack-Gehäuse“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
BREMI_BRS-36-Schematics.pdf
A B2 6 REF CS 3 MOUT 1 amps pot P 6 M_LO - + M_CTRL+ 4.7k 5 +IN -IN 4 M_CR 2 C = after Rshunt S R9 7 V- CMP 13 M2NE 3 D = common 4 5 C W02 W 0 1 7k E = before Rshunt MASTER_CTRL A +C13 C14 / R L146CB R 4 +C15 CDE . R13 220u/63V 100n 5 470 S 4.7u M- M- E A M_VRLO JP5 R12 1 v/a meter
in „Schaltplan für Labornetzgerät BREMI BRS 33 gesucht / Strombegrenzung defekt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
gamer.txt
ACK returned) .equ TW_ST_DATA_ACK = 0xB8;(TWDR was tranfered; ACK received .equ TW_ST_DATA_NACK = 0xC0;(TWDR was tranfered; ACK NOT received .equ TW_ST_LAST_DATA = 0xC8;(last data Byte LDS TWDR was tranfered (TWEA = "0");Ack received .equ TW_NO_INFO = 0xF8;(no relevant state; TWINT = "0" no TWDR activity
in „DDS normal ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CIII_Schematic.pdf
C8 C10 C29 C30 C31 C32 B 20 IO Power Pin EP3C16Q240C8N 170 VCCIO6 GND GND EP3C16Q240C8N 0.1u 0.1u 0.1u 0.1u 0.1u 0.1u VCCIO6 85 IO Power Pin EP3C16Q240C8N 192 VCCIO7 86 IO Power Pin 206 VCCIO7 GND GND
in „fragen zu User/KOnfigurationsmodus von Cyclon“ · FPGA, VHDL & Co. ·
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Datei
sinustab.txt
80,83,86,89,8C,8F,92,95,98,9B,9E,A2,A5,A7,AA,AD, B0,B3,B6,B9,BC,BE,C1,C4,C6,C9,CB,CE,D0,D3,D5,D7, DA,DC,DE,E0,E2,E4,E6,E8,EA,EB,ED,EE,F0,F1,F3,F4, F5,F6,F8,F9,FA,FA,FB,FC,FD,FD,FE,FE,FE,FF,FF,FF, FF,FF,FF,FF,FE,FE,
in „DDS normal ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sensata-1nt_series-fixed_temperature_thermostats-datasheet.pdf
Profile Construction Low Profile Construction Manual Reset Construction Options shown: 90° – 1/4” Q.C. terminals with 4 Post Options shown: 45°– 1/4” Q.C. terminals Options shown: Flat 1/4” Q.C. terminals with Surface mount flange with 4 post and flat Al cup Airstream mount cup ø3.72 (.147) Ref. 30.0
in „Thermoschalter Thermomix 3300 Temperatur?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sensata-1nt_series-fixed_temperature_thermostats-datasheet.pdf
Profile Construction Low Profile Construction Manual Reset Construction Options shown: 90° – 1/4” Q.C. terminals with 4 Post Options shown: 45°– 1/4” Q.C. terminals Options shown: Flat 1/4” Q.C. terminals with Surface mount flange with 4 post and flat Al cup Airstream mount cup ø3.72 (.147) Ref. 30.0
in „Was ist das für ein Bauteil? Kaffeemaschine“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Bemerkungen.txt
avrdude -C "D:\Dude\avrdude.conf" -u -c arduino -p m2560 -P COM11 -b 19200 -U flash:r:"D:\Dude\Georg-Versuche\Georg-AVRdude-Arduino.bin":r avrdude.exe: AVR device initialized and ready to accept instructions Reading
in „Arduino Mega 2560 Pro Mini - Arduino des Grauens!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
36ddedx.pdf
2.250 (36.9 x 57.2) to 3.078 x 8.750 (78.2 x 222.3) Ø D x L in inches (mm) Operating temperature -40 °C to +85 °C (36DX) -40 °C to +95 °C (36DE) Rated capacitance range, C R 190 μF to 50 000 μF Tolerance on C R +75 %, -10 % (10 WV DC to 100 WV DC) +50 %, -10 % (200 WV DC to 450 WV DC) Rated voltage range
in „Unterschied Bauform "kleiner Elko" "großer Elko"“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
App_Gauges.c
/***************************************************************************** * Copyright (c) Bridgetek Pte Ltd. * Software License Agreement * * This code is provided as an example only and is not guaranteed by Bridgetek. * BRIDGETEK accept no responsibility for any issues resulting from its
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Datei
schaltplan.html
h -0.2419" id="path127" /> <path d="m 147.0988,88.3872 -0.1209,-0.0604" id="path128" /> <path d="m 146.9779,88.3268 -0.121,-0.121" id="path129" /> <path d="m 146.8569,88.2058 -0.0604,-0.2419" id="path130" /> <path d="M 146.7965,87.9639 V 87.5406" id="path131" /> <path d="m 146.7965,87.5406 0.0604,-0.2419" id="path132" /> <path d="m 146.8569,87.2987 0.121,-0.121" id="path133" /> <path d="m 146.9779,87.1777 0.1209,-0.0605" id="path134" /> <path d="m 148.7317,87.5406 v 0.8466" id="path135" /> <path d="m 148.1874,87.5406 v 0.6652" id=
in „Benutzt hier jemand "Circuit Diagram"?“ · PC Hard- und Software ·
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PDF
sensata_1nt_series_fixed_temperature_thermostats_d-1760342.pdf
Profile Construction Low Profile Construction Manual Reset Construction Options shown: 90° – 1/4” Q.C. terminals with 4 Post Options shown: 45°– 1/4” Q.C. terminals Options shown: Flat 1/4” Q.C. terminals with Surface mount flange with 4 post and flat Al cup Airstream mount cup ø3.72 (.147) Ref. 30.0
in „Thermoschalter Thermomix 3300 Temperatur?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
alf.c
currentPointerForISR; currentPointerForISR = currentPointerForMAIN; currentPointerForMAIN = tempPointer; } } tmpC = PINC; tmpA = PINA; if (loopCounter == currentPointerForISR[0]) { tmpC &= ~(1<<3); } if (loopCounter == currentPointerForISR[1]) { tmpC &= ~(1<<6); } if (loopCounter == currentPointerForISR[2]) { tmpA &= ~(1<<4); } if (loopCounter == currentPointerForISR[3]) { tmpC &= ~(1<<2); } if (loopCounter == currentPointerForISR[4]) { tmpC &= ~(1<<5); } if (loopCounter == currentPointerForISR[5]) { tmpA &= ~(1<<5); } if (loopCounter == currentPointerForISR[6]) { tmpC &= ~
in „12bit, 9-Kanal Soft-PWM für LEDs auf Mega16“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PWM.c
currentPointerForISR; currentPointerForISR = currentPointerForMAIN; currentPointerForMAIN = tempPointer; } } tmpC = PORTC; tmpA = PORTA; if (loopCounter == currentPointerForISR[0]) { tmpC &= ~(1<<3); } if (loopCounter == currentPointerForISR[1]) { tmpC &= ~(1<<6); } if (loopCounter == currentPointerForISR[2]) { tmpA &= ~(1<<4); } if (loopCounter == currentPointerForISR[3]) { tmpC &= ~(1<<2); } if (loopCounter == currentPointerForISR[4]) { tmpC &= ~(1<<5); } if (loopCounter == currentPointerForISR[5]) { tmpA &= ~(1<<5); } if (loopCounter == currentPointerForISR[6]) { tmpC &= ~
in „12bit, 9-Kanal Soft-PWM für LEDs auf Mega16“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MD001.TXT
2256 129 144 168 197 220 209 :2257 130 145 170 199 222 211 :2258 131 145 170 199 222 211 :2259 131 146 171 200 223 213 \ \\_ gege c4 Æ 4Æ Æ , Æ 4 Æ ] 4Æ 4Æ Y Æ dy= \E V_ _ :2260 130 142 168 199 225 216 g 4 4 ÆãÆ fF = \ +Y^ gege c4Æ Æ * Æ 4Æ Æ , Æ Æ Æ ] Æ 4Æ Æ 3g e ,5dgy= :2261 135 146 172 202 226 216
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PDF
t1.pdf
Ultra-Isolator Noise Suppressors 125VA to 7.5kVA Single Phase Common-mode noise reduction characteristic of 146 dB Normal-mode noise reduction (65 dB) Complies with IEEE 587- A and B IEEE C62-41 Ultra-Isolator Noise Suppressors These products can reduce a protect sensitive electronic 6,000 volt spike to an insignificant
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Bild
Nahaufnahme einer bestückten Leiterplatte
330, 330, PC36, C127, C146, R420, R9120, C102, C60, C61, C53, C8, PC33, PR34, PR35, R51, R60, C120, C106, C124, T27, C127, R195, C152, C146, C139, U4, R10, C102, C60, C61, C53, C8, PC33, PR34, PR35, R51, R60, C120, C106, C124, T27
in „Unbekanntes Bauteil“ · Mikrocontroller und Digitale Elektronik · · Platinenfotos
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Bild
Nahaufnahme einer Leiterplatte mit Bauteilen
R172 R174 C140 C139 R146 R148 C152 C146 C161 C145 R153 R154 C155 C138 C137 R144 R145 R168 R167 Q100 R135 C130 C106
in „Hilti Radio RC4/36“ · Mikrocontroller und Digitale Elektronik · · Platinenfotos
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Datei
Pluggit_Drucksensorboard_V4.ino
GND dann eine SDP1000L05-Platine (Null=1V) nachbilden } void loop() { multiplexer(0); // Schalte I2C-Multiplexer PCA9540B auf Kanal0 (Sensor1) Druck1=(Druck1+SDP810lesen())/2.0; // Drucksensor1 lesen und Dämpfung multiplexer(1); // Schalte I2C-Multiplexer PCA9540B auf Kanal1 (Sensor2) Druck2=(Druck2
in „Eigenentwicklung Ersatzplatine Drucksensorboard für Pluggit“ · Haus & Smart Home ·
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Bild
Schaltplan eines Schaltnetzteils
AC-INPUT, R102, C103, L2W, R101, R103, R104, C104, R105, C105, R106, C106, R107, C107, R108, C108, R109, C109, R110, C110, R111, C111, R112, C112, R113, C113, R114, C114, R115, C115, R116, C116, R117, C117, R118, C118
in „Suche Zeilentrafo für Photoplay Automat“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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Schaltplan einer elektronischen Schaltung
Q101, R100, C101, R102, Q102, C102, R103, Q103, R104, C103, R105, C104, R106, C105, R107, C106, R108, C107, R109, C108, R110, C109, R111, C110, R112, C111, R113, C112, R114, C113, R115, C114, R116, C115, R117, C116
in „Grundig MV 60 (Millivoltmeter analog) Geringe Genauigkeit“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne