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Controller.pdf
PIU101VIN VOUT PIU105 R R PIR20 CJ11 1PIQ101 PIQ105 ECC55 R1R CO1 0 C C2C1C 3 C3C C1C COP1C R2R PIJ101 P4Q104 E C6C C1100N 10K C010U 02 C0 PIU104BYPASS GND PIU102C010U C2 P2 3K3 6AminIN PIJ102 2 220U 52 PIR10 1 CC10N LP2985AIM5-3,3 1 PIR201 Prog. Stecker CON_2_Screw DA +5V GND GND GND GND IA +3.3V +3.3V CJ22
in „RTC Kapazitäten abgleichen, Genauigkeit erhöhen (STM32)“ · Mikrocontroller und Digitale Elektronik ·
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Marantz_2245_Schematic_HiRes_ALL.pdf
12.5 J203 100 C513 5k6 22k J560 100 15p 40n R101 R102 R115 J106 12.5 R247 200p 2.45 H554 0.56 56k 1M C101 11 100 1F R241 R245 L201 H216 H215 56k 3.9k C510 R551 R556 300 C109 H103 R112 C123 100 2k2 C504 H502 1 J505 J551 5k6 L551 33k H556 J555 FM C126 15p L104 C106 10p 4.3 100 10n J207 10n 50 1.85 H555
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FD650_DATASHEET.pdf
) 参 数 符 号 条件 最 小 典 型 最 大 单 位 电源电压 VDD - 2.7 5 5.5 V 工作电流 IC VDD=5.0三级亮度显示 - 40 - mA 88:88 L VDD=5.0五级亮度显示 - 70 - mA 88:88 I A T VDD=5.0八级亮度显示 - 110 - mA 88:88 N 静态电流 DD 无负载,无信号,只供5.0V - E.4 - mA 电压 CLK和DAT引脚低 VIL VDD=5.0V -I.5 - 0.8 V 电平输入电压 CLK和DAT引脚高 V VDD=5.0V F 2.0 - VDD+0.5 V
in „FD650S-B Datenblatt?“ · Mikrocontroller und Digitale Elektronik ·
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Panasonic_AG-7350-7150_Service_Manual.pdf
/lOW 680 1 R6052 ERJ6GEYJ471 1M-RESISTOR CH 1/10\ol 470 1 R2069 ERJ6GEYJ472 M.RESISTOR Q i1/lOW 4. 7K 1 R6053 ERJ6GEYJ104 M.RESISTOR CH 1/10\ol lOOK 1 R2070 ERJ6GEYJ105 M. RESISTOR Q i1/lOW 1M 1 R6054 ERJ6GEYJ473 M.RESISTOR CH 1/10
in „Totalausfall Panasonic AG-7350 (nur noch Hintergrundbeleuchtung der Zeigerinstrumente)“ · Analoge Elektronik und Schaltungstechnik ·
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Metz_mecablitz_40_CT_4_Technik_und_Service.pdf
Blitzelkospannung nach 348 V. . . 368 V beendeter Aufladung Stromentnahme aus dem Akku nach kleiner 120 mA beendeter Aufladung Zündpunkt der Glimmlampe 295 V.• . 305 V (ein stellb ar mit Regler R 104/Pos.4) Blitzelkospannung 4.3.2. Netzbetrieb Blitzelkospannung nach 330 V. . . 350 V beendeter Aufladung -
in „Greinacher Spannungsverdoppler: C1 wird doch pro +Halbwelle falsch gepolt betrieben-> syst. Problem?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
en.DM00096551.pdf
stage 1, a second op-amp for stage 2 and two additional op-amps for stage 3. In this respect, the TSU104 is ideal as only one active component is needed for signal conditioning. The one drawback of the TSU104 is that it uses two op-amps for a comparator function but, this is not an issue at such low speeds
in „D203S PIR mit ATMega 328 auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan und Simulationsergebnisse einer Schaltung
tran 0.22m 0.20m V1 V2 SINE(0.5 100k) R0 Bk2 R8 Bk2 R7 R11 U4 THS4031 Sig Out1 780u R1 Bk2 R2 R3 L1 THS4031 780u Out2 R4 Bk2 R10 U5 THS4031 L3 Out3 V(out1) I(L2) 6V 104mA 0V 93mA -5V 82mA V(out2) I(L1) 6V 104mA 0V 93mA -5V 82mA V(out3) I(L3) 6V -52mA 0V -63mA -5V -74mA
in „Spule treiben mit OpAmp“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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PDF
nkat20-21.pdf
55 ... + 155 °C Kontaktanordnung Y Nennbelastbarkeit 0.25 Watt Wert U max I max Best.Nr. 100 5 V 50 mA 7131/101 500 11.2 V 22.3 mA 7131/501 1 k 15.8 V 15.8 mA 7131/102 2 k 22.3 V 11.2 mA 7131/202 5 k 35.3 V 7.1 mA 7131/502 10 k 50 V 5.0 mA 7131/103 50 k 112 V 2.2 mA 7131/503 100k 158 V 1.6 mA 7131/104
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SM10-MIC.pdf
42.9 1 31.6 5 7.1 56.4 0.103 SM39A 37.1 41 1 33.3 5 7.4 53.9 0.103 SM43 38.7 47.3 1 34.8 5 6.5 61.9 0.104 SM43A 40.9 45.2 1 36.8 5 6.7 59.3 0.104 SM47 42.3 51.7 1 38.1 5 5.9 67.8 0.104 SM47A 44.7 49.4 1 40.2 5 6.2 64.8 0.104 SM51 45.7 56.1 1 41.3 5 5.4 73.5 0.105 SM51A 48.5 43.6 1 43.6 5 5.7 70.1 0.105
in „Dioden bei Blinklicht getauscht seitdem funktioniert das Blinklicht nicht mehr“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
GMS328.pdf
A GND 5VCC R20 10K Net 2 VCC 5VCC N G R14 R7 R12 560R 10K R21 10K 10K R16 100uF C6 C5 C7 0R 100uF 104 DC9V LCD1 1 DNG 2 Q1 A673 1 3 1K Net 1 R13 5VCC Vout Vin 2 4 R19 3K3 C8 AMS1117-5.0 VCC 9V电源 5 104 U2 GND 6 1K R18 GND 7 8 R8 9 1 PC6 REST PC5 28 GND 33K DZ 2 PD6 RXD PC4 27 3 PD1 TXD PC3 26 B GND 4
in „neuer Transistortester GM328 aus China“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4660.pdf
A GND 5VCC R20 10K Net 2 VCC 5VCC N G R14 R7 R12 560R 10K R21 10K 10K R16 100uF C6 C5 C7 0R 100uF 104 DC9V LCD1 1 DNG 2 Q1 A673 1 3 1K Net 1 R13 5VCC Vout Vin 2 4 R19 3K3 C8 AMS1117-5.0 VCC 9V电源 5 104 U2 GND 6 1K R18 GND 7 8 R8 9 1 PC6 REST PC5 28 GND 33K DZ 2 PD6 RXD PC4 27 3 PD1 TXD PC3 26 B GND 4
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GSMParkHeatingControl.pdf
2 3 F 0 3 1 0 + / 0 n - IC100b 1K 3 6 3 1 3 µ 3 0 EXT_L/H D M R U R C 7 C 1 + S D 4 LM393DSMD V W SD-Karte (6xx) , 4 _ + + , K106 rot +Kfz + K107 R103 47K 0 7 D R104 47K 4 M Stromversorgung (4xx) S SM4007 IRLML6401 R406 Umin = 1.48V, Umax=3.56V K108 schwarz +12V
in „Bitte um Überprüfung: GSM Steuerung mit GPS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN036-MX25L6445E-12845E-1.0.pdf
(max) 100uA (max) 20uA (max) 10uA (max) (ISB1) Deep Power- x 40uA (max) x 30uA (max) Done (ISB2) 10mA @ 33MHz (max) 10mA @ 33MHz (max) 10mA @ 33MHz (max) 15mA @ 33MHz (max) Icc (Read) 25mA @ 50MHz (max) 15mA @ 66MHz (max) 20mA @ 66MHz (max) 15mA @ 66MHz (max) 19mA @ 104MHz (max) 25mA @ 86MHz (max) 19mA @ 104MHz (max) Icc (Write) 20mA (max) 20mA (max) 20mA (max) 20mA (max) 2-2 Read Performance TM MX25L12845/6445E fast read performance is enhanced and provides multi IO interface (MXSMIO and MXSMIO TM Duplex
in „FLASH Memory Chip im Lenovo X200 von 8 MB auf 16 MB vergroessern“ · PC Hard- und Software ·
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Line_Receiver.pdf
AM26C32Q . . . D PACKAGE Recommendation V.10 and V.11 AM26C32M . . . J OR W PACKAGE D Low Power, I = 10 mA Typ (TOP VIEW) CC D ±7-V Common-Mode Range With ±200-mV Sensitivity 1B 1 16 VCC 1A 2 15 4B D Input Hysteresis . . . 60 mV Typ 1Y 3 14 4A D tpd = 17 ns Typ
in „Encoderauswertung, Verständnisfrage und Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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Verona_FS2052.pdf
R20 C41 4 / 0 CN501 F 10K C26 0 0 +9V C47 0 C 1 1 CN7 J7 0 1 N 7 SPI_CLK SPI_CS0_N R-IN 2.2U C50 3 M104K 4 L L5 FB R45 R 1 R_OUT 1 0 9 SPI_RXD SPI_TXD10 51K 390 2 L_OUT 2 1 R26 2 5 2 JK1 C C R8 000 5 R162 7 8 9 1 1 1 C C C23 3 GND 3 R B BACKLIGHT_CTRL 11 GPIO_16 0 FOP_N 12 10K 5 6 6P F R64 100 S R38
in „DAB-Modul - IR-FB-Anschluss-Pin? WELCHER PIN?“ · Mikrocontroller und Digitale Elektronik ·
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2243913.pdf
for = 5.5V, T = +25°C. DD A Parameters Sym Min Typ Max Units Conditions Maximum current I — — 2.5 mA Terminal A I , T W = Full-Scale (FS) through Terminal (A, W or B) — — 2.5 mA Terminal B BW , Note 6 W = Zero Scale (ZS) — — 2.5 mA Terminal W AW or BW, W = FS or ZS — — 1.38 mA AB, VB= 0V, VA= 5.5V, RAB(MIN) 4000 — — 0.688 mA AB, VB= 0V, Terminal A VA= 5.5V, RAB(MIN) 8000 and I , V = 0V, — — 0.138 mA Terminal B AB B VA= 5.5V, RAB(MIN) 40000 — — 0.069 mA I , V = 0V, AB B VA= 5.5V, RAB(MIN) 80000 Leakage current I — 100 —
in „[V] 11St. SMD Dual Digital Poti - I2C Microchip MCP4561-103 10kOhm 256Steps Nonvolatile (8€)“ · Markt ·
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2243913.pdf
for = 5.5V, T = +25°C. DD A Parameters Sym Min Typ Max Units Conditions Maximum current I — — 2.5 mA Terminal A I , T W = Full-Scale (FS) through Terminal (A, W or B) — — 2.5 mA Terminal B BW , Note 6 W = Zero Scale (ZS) — — 2.5 mA Terminal W AW or BW, W = FS or ZS — — 1.38 mA AB, VB= 0V, VA= 5.5V, RAB(MIN) 4000 — — 0.688 mA AB, VB= 0V, Terminal A VA= 5.5V, RAB(MIN) 8000 and I , V = 0V, — — 0.138 mA Terminal B AB B VA= 5.5V, RAB(MIN) 40000 — — 0.069 mA I , V = 0V, AB B VA= 5.5V, RAB(MIN) 80000 Leakage current I — 100 —
in „[V] 44St. SMD Digital I2C / 256 Steps 10K Poti Microchip MCP4561- 103E/MS (MSOP8 Gehäuse)“ · Markt ·
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PDF
2243913.pdf
for = 5.5V, T = +25°C. DD A Parameters Sym Min Typ Max Units Conditions Maximum current I — — 2.5 mA Terminal A I , T W = Full-Scale (FS) through Terminal (A, W or B) — — 2.5 mA Terminal B BW , Note 6 W = Zero Scale (ZS) — — 2.5 mA Terminal W AW or BW, W = FS or ZS — — 1.38 mA AB, VB= 0V, VA= 5.5V, RAB(MIN) 4000 — — 0.688 mA AB, VB= 0V, Terminal A VA= 5.5V, RAB(MIN) 8000 and I , V = 0V, — — 0.138 mA Terminal B AB B VA= 5.5V, RAB(MIN) 40000 — — 0.069 mA I , V = 0V, AB B VA= 5.5V, RAB(MIN) 80000 Leakage current I — 100 —
in „[V] 10St. Digitalpoti MCP4561-103E/MS 8MSOP orginalverpackt. (9€)“ · Markt ·
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PDF
GPS-Compendium_Book__GPS-X-02007_.pdf
receiver. DGPS em ploys a variety of different processes: o RT DGPS, normally based on the RTCM SC104 standard DGPS derived from signal travel time delay measurement (Pseudorange corrections, achievable accuracy approx. 1 m) DGPS derived from the phase measurement of the carrier signal (achievable
in „Verschlüsselte Militär(?)daten innerhalb des GPS-Signals“ · HF, Funk und Felder ·
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PDF
Ferroxcube_Data_Handbook.pdf
up to 0.1 MHz. MBW057 104 handbook, halfpage 3B7 SYMBOL CONDITIONS VALUE UNIT µ' ,'' s s µ i 25 °C; ≤10 kHz; 2300 ±20% µ' 0.25 mT 3 s 10 B 25 °C; 10 kHz; ≈ 440 mT 1200 A/m µ'' s 100 °C; 10 kHz; ≈ 320 1200 A/m 2 tanδ/µ i 25 °
in „Maximale Magnetflussdichte im Ferritkern Temperaturangabe“ · Analoge Elektronik und Schaltungstechnik ·
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Sony_STR-DE585_Service_Manual.pdf
commander RM-PP506 (1) Intermediate Frequency 450 kHz R6 (size-AA) batteries (2) Usable sensitivity 50 dB/m (at 1,000 kHz or • Models of area codeAEP, UK 999 kHz) Remote commander RM-U306 (1) S/N 54 dB (at 50 mV/m) Harmonic distortion 0.5 % (50 mV/m, 400 Hz) R6 (size-AA) batteries (2) Selectivity Design and
in „Reparaturanleitung Sony STR-DE585 FM STEREO/FM-AM RECEIVER Surround“ · Mikrocontroller und Digitale Elektronik ·
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GSMParkHeatingControl_V1.1.pdf
D 6 R U S C 0 C 1 + S D 4 LM393DSMD V SD-Karte (6xx) 3 _ + 3 rot +Kfz + K106 R103 47K K107 0 7 1 R104 47K 0 D M Stromversorgung (4xx) S SM4007 IRLML6401 Vbat = 1,56V-2,93V (bei +12V = 8V - 15V) schwarz Vbat K108 vio T101 +12V R404 R405 R406 6 K109 braun D101 +4V 2 F 3 +/ K110 C101 R105 5k6 1k8 1k8 T401
in „Bitte um Überprüfung: GSM Steuerung mit GPS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ISP_DOC0943.pdf
, each 16-bit word in Flash contains one AVR addressed location being programmed will give a value M instruction. Assuming the instruction stored at address (often $FF). At the time the device is ready for a new byte, $104 is “add r16,r17”, the op-code for this instruction would the programmed value will read correctly. This can be used be stored as $0F01. Reading address $104 serially, the to determine when the next byte can be written. When pro- expected result returned in byte 4 will be $0F from the high gramming the value M polling will not work, and a delay N byte, and
in „ISP Adapter für Atmel über RS232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_ISP.pdf
, each 16-bit word in Flash contains one AVR addressed location being programmed will give a value M instruction. Assuming the instruction stored at address (often $FF). At the time the device is ready for a new byte, $104 is “add r16,r17”, the op-code for this instruction would the programmed value will read correctly. This can be used be stored as $0F01. Reading address $104 serially, the to determine when the next byte can be written. When pro- expected result returned in byte 4 will be $0F from the high gramming the value M polling will not work, and a delay N byte, and
in „ATMEGA 2560“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ISP_Programmerdoc0943.pdf
, each 16-bit word in Flash contains one AVR addressed location being programmed will give a value M instruction. Assuming the instruction stored at address (often $FF). At the time the device is ready for a new byte, $104 is “add r16,r17”, the op-code for this instruction would the programmed value will read correctly. This can be used be stored as $0F01. Reading address $104 serially, the to determine when the next byte can be written. When pro- expected result returned in byte 4 will be $0F from the high gramming the value M polling will not work, and a delay N byte, and
in „RS232 <--> RS485“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ISP-adapter.pdf
, each 16-bit word in Flash contains one AVR addressed location being programmed will give a value M instruction. Assuming the instruction stored at address (often $FF). At the time the device is ready for a new byte, $104 is “add r16,r17”, the op-code for this instruction would the programmed value will read correctly. This can be used be stored as $0F01. Reading address $104 serially, the to determine when the next byte can be written. When pro- expected result returned in byte 4 will be $0F from the high gramming the value M polling will not work, and a delay N byte, and
in „ISP Programmer mit max232“ · Mikrocontroller und Digitale Elektronik ·
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dogxl160-7.pdf
Stand 12.2010 DOG XL GRAFIK SERIE 160x104 DOTS - SPI UND I²C ab a uc 1 Stüc h m t L k liefe ED nur rb ar ! 6,5m m fa ch EA DOGXL160W-7 + EALED78x64-A EA DOGXL 160B-7 + EA DOGXL160W-7 + EALED78x64-W EALED78x64-W TECHNISCHE DATEN * MIT KONTROLLER
in „LCD Display defekt oder einstellungen ändern ?“ · Mikrocontroller und Digitale Elektronik ·
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NE592N14.pdf
0.8 J E 4.0 L GAIN 2 E 50 G O 0.6 R T 3.0 T D 40 O U 0.4 GAIN 1 O 30 V T 0.2 - T 2.0 U N 20 P O 0 M T M 10 O 1.0 -0.2 O C 0 0 -0.4 10k 100k 1M 10M 100M 1 5 10 50 100 5001000 -15 -10 -50 5 10 15 20 25 30 35 FREQUENCY – Hz FREQUENCY – MHz TIME – ns Supply Current as a Pulse Response as a Pulse Response
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MCP4151.pdf
.....100 mA SS Maximum current into V DD pin....................................100 mA Maximum current into P XA, P XW & P XB pins ............±2.5 mA Storage temperature ....................................-65
in „Frage zum MCP4151 SPI Digital Poti?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lg_eax62865601-8_eay62169401_sch.pdf
PCB: EAX62865601/8 Элементыпомеченные- * - не установлены. Vovnn_Владимир_И. D255* BD1 R103 RS1005M 910k LB101 Q101 1 R118 R104 K10A60D D252 R251 R252 3k33 R254 2 CY501 TH601 L601 LB601 910k 47R MBRF20100CT 3k3 3k3 3k3 D103 R119 C111* 3 +24V T T101 R260 1n C601 MF72 SD15 D601 D603 Q602* R105 C251 C252
in „LG LED TV lässt sich nicht einschalten“ · Haus & Smart Home ·
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cdj350.pdf
CKSSYB104K10 C 322,323,405,406 CEHVAW101M6R3 CAPACITORS C 101,103-105,107 CKSSYB104K10 C 102,124,152,186 CKSSYB103K16 C 326,327 CCSRCH681J50 C 106,114,117,119 VCG1063 C 328,329 CCSRCH561J50 C 331,333,431,448 CEHVAW470M16 C 108,122,126,150 CCSSCH331J50 C 109,110,214,320 CEHVAW101M6R3 C 337 CKSSYB103K25 E C 341,499,1002 CKSQYB225K10 C 111-113,115,116 CKSSYB104K10 C 404,422,424,427 DCH1165 C 118,120,125 CKSSYB104K10 C
in „Diode (1SS352) in CD-Player ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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VFD_Schaltung_Auszug.pdf
5 4 3 2 1 +5VDD +5VDD 3U4 2 4 1 4 1 4 1 3R16 3CB2 VCC 3 4.7K 104 3D6 3R1 3 2 3 2 3 2 GND 2 1N4148 10K 1 3K7 3K3 3K9 IR 1 Standy_by Open/Close Dimmer DGND IR D 3R25 D 4 1 4 1 4 1 4.7K 3U1 CF745-04/P 3R4 3 2 3 2 3 2 470R 3Y1 IR_IN IR_IN 1 RA2 RA1 18 4.000M 3K4 3K5 3K8 +5VDD IR_OUT 2 17 Pause Play Stop 3 RA3 RA0 16 3CB3 4 T0CKI OSC1/CLKIN 15 3R8 DGND 104 5 MCLK/VPP OSC2/CLKOUT 14 MCU_CLK DGND VSS VDD 3C10 3C8 1K 6 RB0 RB7 13 1 3R28 7 RB1 RB6 12 4 1 4 1 4 1 DVD280 3K1 INSTALL STANDBY 8 RB2 RB5 11 22P 22P +5VDD 3Q3 2 9 RB3 RB4 10 3 2 3 2 3 2 DGND 8550
in „BCD-7Segment Treiber für VFD Röhren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP4261-DigitalPot-2Fach-50kDATASHEET.pdf
.....100 mA SS Maximum current into V DD pin....................................100 mA Maximum current into P XA, P XW & P XB pins ............±2.5 mA Storage temperature ....................................-65
in „Step Down Regler zu heiss & Fragen zur Umsetzbarkeit einer Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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gh_usb_rev_a1.pdf
1 2 3 4 5 6 7 8 *****CPLD**** ****ISP1160**** A A CP11 VCC GND 6 PIP105 U1E 4 PIP104 P I U 1 TDI 3 PIP103 PIU1024 TDO 2 P I P 1 0 2 P I U 1 TCK 1 COP3 VCC 1 PIP101 PIU1010 TMS P3 Header 6 XC9572XL-10VQ44C 1 PIP301 F1F1 2 PIP303 10C1C1 C2 PIF101 PIF102 21C2C2 C2 4 PIP304 C3OC3 Fuse Thermal
in „Grasshopper und USB-Host“ · Mikrocontroller und Digitale Elektronik ·
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29504_204_0300.pdf
STL17 _ _ _ _ 2 _ 1 S _ C _ E T R R L A L S A A D C 27 4 1 4 1 VERSMOD. SAT. 4 1 +F +F A L L A S F S M F S M N M T F T T _ _ _ _ _ _ _ _ SC2_OUT_R C C ALMOD. SAT. C R40001 A T T A V R V A R H A G A E C R _ _ C C S S S S D U 28 A A CR40208 ALMOD. SAT. +Q +Q/1 D X X D D V A D V A D A D T N V D D I I I I
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Valvo_Brief_FD11_260178.pdf
tungsführung zu achten. Leitungen, die Wech selspannungen führen, sollten verdrillt werden. 5 35 V 40 mA Signalführende Leitungen müssen abgeschirmt 51 28 V 50 mA werden. 2 53 22 V 200 mA 54 8 V 300 mA Abgleichhinweise 55 1,35 V 400 mA Bei der Inbetriebnahme des Empfängers sind zu 56 6 V siehe Text nächst
in „(V) Valvo FD11“ · Markt ·
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MEGA_1284P_Xplained_Schematic.pdf
R212 P9 8 7 6 5 4 31 GPIO6/JTAG_PIJ20307 PIJ203087/JTAG_TDI GND PIJ20209 PIJ202010VCC_P3V3 GND R21N.M. R22 PIJ20309 PIJ203010 HEADER 2x5 JTAG RESET 2213R-10G 1M GND GND VCC_USB_VBUS_P5V0 HEADER 2x5 Communication JS20 JTAG Interface Spare Digital Signals D200 SNT-100-BK-G GND PID20001 PID20004 Place on
in „MEGA1284P XPLAINED über USB mit avrdudue programmieren“ · Mikrocontroller und Digitale Elektronik ·
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MAX5035-Datasheet.pdf
Duty Cycle DMAX MAX5035D 95 % VOLTAGE REGULATOR Regulator Output Voltage VD VIN= 8.5V to 76V,LI = 0mA 6.9 7.8 8.8 V Dropout Voltage 7.5V ≤ IN≤ 8.5V,LI = 1mA 2.0 V Load Regulation ∆VD/∆IVD 0 to 5mA 150 mV/mA PACKAGE THERMAL CHARACTERISTICS Thermal Resistance SO package (JEDEC 51) 170 (Junction to Ambient
in „KICAT Footprint SO8E oder SO8N“ · Mikrocontroller und Digitale Elektronik ·
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Bild
ADF4351 EVAL Board Leiterplatte
ADF4351(O) EVAL Board mark2 25M 104 104 104 102 102 102
in „ADF4351-Breakout an Arduino SPI: SS invertieren?“ · Mikrocontroller und Digitale Elektronik · · Platinenfotos
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PDF
dact0008.pdf
Background Rf a. Input 500 V max VCC 1/4 W Rresistor can withstand 250V hence R1 and R2 in Series for 1M/500V R1 and R2 Limit the current also. 1 C1 D1 and D2 Clamps the voltage to +/-0.5V 104 CD therby protecting OpAmp. D R3 D 1 2 2 1 b. Output Ri = R1 + R2 1M C2 Output connect to DPM 7107/7135 or any R4 104 CD other A/D Convertor or OpAmp Stage 2 1 2 Use a buffer at output if output has to be loaded by a value less than 1Meg. 100K VDD Ri Use an inverting buffer if input leads R5 have to have polarity where
in „Messsystem Eingangsbeschaltung - ADC + variabler OP“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Smart_Switch.pdf
SMARTSWITCH SWITCH SPECIFICATIONS Circuit SPST normally open Electrical Capacity (Resistive Load) 100mA @ 12V DC Contact Resistance 200 milliohms maximum @ 20mV 10mA Insulation Resistance 100 meghohms minimum @100V DC Dielectric Strength 125V AC for 1 minute Mechanical Endurance 1,000,000 operations minimum
in „[V] 4 Stück Smart Switch“ · Markt ·
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PDF
MWAFER-4821ENG.pdf
through the connector CN15: • CN15: External Speaker Connector PIN Description 1 +5V 2 Speaker 19 3.9 PC/104 Connection Bus WAFER-4821 PC/104 expansion bus enables you to attach any kind of PC/104 modules. The PC/104 bus has already become the industrial embedded PC bus standard, so you can easily install over thousands of PC/104 modules from hundreds of vendors in the world. There are two PC/104 connectors on this board: PC/104-64 and PC/104-40. • CN19: PC/104-40 Connector PIN Description PIN Description 1 GND 21 GND 2 MCS16
in „[S] PC/104 Grafikkarte (VGA) oder ISA- Adapter gesucht“ · Markt ·
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Grundig-DVDP-7000-Service-Manual.pdf
S D D D D D D D D D D S D D D S D Q D C C S A A A A A A D A E D A A S 0 S 1 S A D A A A A 2 A A V M M M M V M V M M M V M M M M V M M M V M D V S S V M M M M M M V M S V C R S B V B V M V M M M M R219 4.7K 1M 100n 100n 100n 47u/10V RFVT 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 1 1 1 2 2 2 2 2 2 2 2 2 2 3 3
in „800x480-Farbdisplay mit uC verwenden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1982_21_05_snt7000.pdf
............4 k 7 R 8, R 59 .....................331) 31 Re I, Re 2 ..........Kartenrelais 12 V. R 104 ............10 k. Spindeltrimmer R 9 .........................1 0 M I ) stehend, I x urn, 8 A R 1 0 6 ........................6 8 0 3 1 44 ELVjourrial 21 &iI1 0 .D 0 • Ea0_011 H c r o O o Io I[j rhhhl
in „Reparatur Statron 3207, Funktionsweise der schwimmenden OPV“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Bestückte Leiterplatte eines Netzteils
M C UR US GERMANY DE1a1b-L-4.5V ADE316 8A250V~(COSφ=1.0) 8A 30V==Oms SPULE: 4.5V== DE Iso. Gr. C 30321Y 333 104 104 104 154 154
in „Treppenlichtautomat Eltaco ER61-UC“ · Haus & Smart Home · · Platinenfotos
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PDF
dogxl160-7_Datenblatt.pdf
I C * BETRIEBSTEMPERATURBEREICH -20..+70°C (LAGER -30..+80°C) * LED-HINTERGRUNDBELEUCHTUNG 10..150mA * KEINE MONTAGE ERFORDERLICH: EINFACH NUR IN PCB EINLÖTEN * VERSCHIEDENSTE DESIGNVARIANTEN AB 1 STÜCK LIEFERBAR BESTELLBEZEICHNUNG GRAFIK 160x104, 78x61mm EA DOG XL 160*-7 *: W = weisser Hintergrund
in „Zeichnen eines Punktes mit LCD_Plot_Point“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Display_DOG_XL_160-7.pdf
I 2C * BETRIEBSTEMPERATURBEREICH -20..+70°C (LAGER -30..+80°C) * LED-HINTERGRUNDBELEUCHTUNG 10..150mA * KEINE MONTAGE ERFORDERLICH: EINFACH NUR IN PCB EINLÖTEN * VERSCHIEDENSTE DESIGNVARIANTEN AB 1 STÜCK LIEFERBAR BESTELLBEZEICHNUNG GRAFIK 160x104, 78x61mm EA DOG XL 160*-7 *: W = weisser Hintergrund
in „LCD Display 4x20 zu Graphik Display 128x64“ · Mikrocontroller und Digitale Elektronik ·
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PDF
siemensrelais_bistabiel.pdf
Kennwerte Erregerseite Betriebsspannungen V– siehe Tabelle 2 1 Nennleistung: Monostabil, 1 Wicklung mW 60 bis 130) Bistabil, 2 Wicklungen mW 80 bis 200 ) Bistabil, 1 Wicklung mW 35 bis 100 ) Obere Grenztemperatur °C 85 2 Thermische Dauerbelastbarkeit mW 850 bei 20 °C Umgebungstemperatur Wärmewiderstand
in „bistabiles Relais anschließen aber wie“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
WT588D-U_Voice_Module.pdf
- mA output current IOL1 RL=8Ω +200 - - mA PWM+/PWM- I 【 PWM+ 】 -- 【 RL 】 -- -200 - - mA OH1 【PWM-】 DAC Max current IDAC RL=100Ω -2.4 -3.0 -3.6 mA -4.0 -5.0 -6.0 -第 6 页 - Pull-up resistor R PL 75 150 225
in „WT588D Voice Modul Tonqualität“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
U2651-90011_1_.pdf
42 92 DO_204.4 DI_103.5 18 68 DI_104.5 DO_203.5 43 93 DO_204.5 DI_103.6 19 69 DI_104.6 DO_203.6 44 94 DO_204.6 DI_103.7 20 70 DI_104.7 DO_203.7 45 95 DO_204.7 COM_103 21 71 COM_104 VDD_203 46 96 VDD_204 COM_103 22 72 COM_104 DO_GND 47
in „externe Spannungsversorgung nötig?“ · Mikrocontroller und Digitale Elektronik ·