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Datei
main.c
-. ADC2 Pin25o-----o---|___|------>| | 2.2K |+ | | === 1uF '-' /-\ | | | | | '-------GND_AVR--' 100nF Stützelkos nicht vergessen VCC12V VCC12V + + | .-----o->|--o TLP250 | | | | 1K __ | 33 ||-+ | | ___ -o|| |o-' ___ ||<- | | o--|___|---o|V ->----|___|----||-+ o o PB3 PIN17 .---o|- |o- | MoToR | -o||_|o----------------o (M) | | | | | | === === GND_AVR GND (created by AACircuit v1.28.6 beta 04/19/05 www.tech-chat.de) */ // OS headers #include <avr/sleep.h> #include <avr/pgmspace.h> #include <avr/interrupt.h> #define WatchdogReset() asm("wdr") // Macro substitution to kick the dog #
in „1Q Endstufe für Inenn=30A“ · Mikrocontroller und Digitale Elektronik ·
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m202ld08a.pdf
...5‐4 Cleaning the Display......................................................................5‐6 0-6 Chapter 1: Introduction Revision Record Issue Date Remarks A Feb 97 First issue B Nov 98 Update to include 5972‐1100 C Mar 99 Added 5963 Integrated Display Mount D Jan 03 Removed 5972‐2x00 model.
in „Hat schon jemand was mit dem FUJITSU VF60 Display gemacht?“ · Mikrocontroller und Digitale Elektronik ·
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M7_Kondensatormotor_Spaltpolmotor_V5.pdf
und U an dHr Hilfswicklung. Beim Bemessungsschlupf s = N % bzw. n/n syn= 0,94 verschwindet U 2 Bild 1.5-7: Wie Bild 1.5-6, jedoch Mit- und Gegensystem-Strom I und I 1 Beim B2messungsschlupf s = 6 % bzw. N n/n syn= 0,94 verschwindet I2. Bild 1.5-8: Wie Bild 1.5-6, jedoch Strom A im Arbeitstrang und I Hm Hilfsstrang. Beim Bemessungsschlupf s = 6N% bzw. n/n syn= 0,94 istA = H s M7 Der Kondensatormotor 20 Bild 1.5-9: Wie Bild 1.5-6, jedoch Drehmoment des Mit- und
in „Kondensatormotor zu großer Kondensator: Phasenverschiebung über 90°?“ · Analoge Elektronik und Schaltungstechnik ·
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DometicColdMachine50-54-55-84-85-86-94-95-96-CS-NC15_IOM_4445100001_EMEA16_20xx-xx-xx.book.pdf
Botóndeltermostato 3 Clavijadeconexióndelventiladordecorrientecontinua 4 Termostato 5 Cablede conexión N.ºenfig.9, página6 Explicación 1 Cablede conexión N.ºenfig.0, Explicación página6 1 Cablede conexión 92 ES enlapartesuperior(fig.b,página 6). 3 Ventilador 4 Conmutadorfig. i ocontroladorTECfig. j ¡AVISO
in „Schaltsymbol“ · Fahrzeugelektronik ·
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PDF
wr2_rcm_revb.pdf
expression. The followingmnemonics arerecognized: LT3XX-RCM-E Rev B ISSUED: January2002 9 P A R T O N E : A B O U T R E M O T E C O N T R O L M UL T IPL IE R EXP . NOT E. S UFFIX M UL T IPL IE REXP . NOT E. S UFFIX EX 1E18 Exa- PE 1E15 Peta- T 1E12 Tera- G 1E9 Giga- MA 1E6 Mega- K 1E3 kilo- M 1E−3 milli- U 1E−6 micro- N 1E−9 nano- PI 1E−12 pico- F 1E−15 femto- A 1E−18 atto- STRING DATA This datatypeenables youtotransfer a(long)stringof characters as asingleparameter. Simplyencloseany sequenceof ASCII characters
in „Oszi einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ritto_System_Handbuch_2011_online.pdf
Inbetriebnahme a b EDED Va Vb 1 7865 ED a b EDED Va Vb 1 7865 ED a b EDED Va Vb 1 7865 ED max.30 L N + Va Vb 1 6481 a b Va Vb Va Vb Va Vb Va Vb VaVa Vb Va Vb 1 4814 1 4 5 6 2 3 L N 1 2 3 4 11 21 a1 b a2 b a3 b 1 7573 L N 1 2 3 1 6477 1 2 Va Vb 80 1 8787 n i 1 8759/ a LT 1 2 3 4 l 1 8760 t s I 1 8753
in „Ritto Twinbus“ · Haus & Smart Home ·
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PDF
B400_NTC-02_Serie.pdf
2.97 214.9 322.4 429.8 75 0.1847 0.85 −2.89 184.8 277.1 369.5 80 0.1593 0.92 −2.81 159.3 238.9 318.6 85 0.1377 0.99 −2.73 137.7 206.6 275.5 90 0.11942 1.06 −2.66 119.4 179.1 238.9 95 0.10380 1.13 −2.59 103.8 155.7 207.6 100 0.09045 1.19 −2.53 90.46 135.7 180.9 105 0.07900 1.25 −2.46 79.00 118.5 158.0
in „Temperatur Messung mit Mega8 und NTC-Widerstand 4,7k“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
B400_NTC-02_Serie.pdf
2.97 214.9 322.4 429.8 75 0.1847 0.85 −2.89 184.8 277.1 369.5 80 0.1593 0.92 −2.81 159.3 238.9 318.6 85 0.1377 0.99 −2.73 137.7 206.6 275.5 90 0.11942 1.06 −2.66 119.4 179.1 238.9 95 0.10380 1.13 −2.59 103.8 155.7 207.6 100 0.09045 1.19 −2.53 90.46 135.7 180.9 105 0.07900 1.25 −2.46 79.00 118.5 158.0
in „NTC Berechnung nach Steinhart and Hart, 2. Gleichung geht nicht!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
01_Sicherungsautomaten.pdf
Bemessungsschaltvermögen [kA] Bezugsnorm Pole U [V] e IEC 23-3 / EN 60898 cn 230/400 10 4,5 / 1,5 IEC/EN 60947-2 cu 1, 1P+N 133 10 6 14 6 Wechselstrom 230 6 4,5 20 4,5 2, 3, 4 230 10 6 25 6 400 6 4,5 20 4,5 1, 1P+N 400 1,5 2, 3, 4 690 1,5 cs 1, 1P+N 133 7,5 6 230 6 4,5 10 2, 3, 4 230 7,5 6 12,5 400 6 4,5 10 1, 1P+N 400 2,
in „Kurzschlussstrom“ · Offtopic ·
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PDF
Computer_Kontakt_1986-08_09_-_21.pdf
1689,1533,0796 Computer KontaktS- COMMODORE "Aril 6 V* E9 C6 FB 18 ]«"aa 7 <b^F sir ie fb bd ca as FB^ 66 *B ,4B,M1.C9.BB,BB,16, St£3 B,4C,4£,6A,AD,Cfl,BE,eO,16,ai ,E£,D0,nD,CC,BE,8D, 3465 3,Ce,4C,42,Bfl,n9,D7,BD,I6,[)0,flD E34B B,B3,CErB8, 2,BD.06,02
in „ZX Spectrum => Upgrade von 16 auf 48 KB RAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Star10_Part3.pdf
and the inter-assembly interfaces during the QEX – May/June 2008 43 Figure 34 —The well- equipped KG6NK laboratory was used to complete the final wiring and testing of the Star-10 transceiver.KG6NK’s indisputable troubleshooting skills proved invaluable in the design,assembly,testing and especially in
in „Projekt Kurzwellenempfänger Doppelsuper welcher VCO?“ · HF, Funk und Felder ·
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PDF
ulp_de.pdf
das erste Array als Pointer verwendet wird: numeric string Nets[], Parts[], Instances[], Pins[]; int n = 0; int index[]; schematic(S) { S.nets(N) N.pinrefs(P) { Nets[n] = N.name; Parts[n] = P.part.name; Instances[n] = P.instance.name; Pins[n] = P.pin.name; ++n; } sort(n, index, Nets, Parts, Instances,
in „EAGLE 7.7 Problem Export SVG mit eagle2svg-1_4_1.ulp“ · Platinen ·
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PDF
SSD1906R1_1.pdf
7 6 5 4 3 2 1 0 Addr. n C(15,0) C(15,1) C(15,2) C(15,3) Addr. n + 1 C(15,4) C(15,5) C(15,6) C(15,7) Addr. n + 2 C(14,0) C(14,1) C(14,2) C(14,3) Addr. n + 3 C(14,4) C(14,5) C(14,6) C(14,7) . . . Addr. n +
in „Grafikcontroller S1D13706“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schematics.pdf
SCKE SCAS CAS CKE SCKE 18 38 18 38 SRAS RAS CLK SCLK SRAS RAS CLK SCLK D5 1 U22 RESET 4 H7 2 BYTE SW6 SN74LVC1G08 U49 C4 39 39 11 N 8 SOT23-5 1 RY/BY~ ABE0 DQM 1 2 3 4 5 6 7 DQM 1 2 3 4 5 6 7 AMS0 4 H2 ABE1 N N N N N N N N N N N N N N AMS1 22 7 2 CE G G G G G G G G G G G G G G U39 SN74LVC1G08 J2OE MT48LC32M8A2 6 1 2 4 4 5 5 MT48LC32M8A2 6 1 2 4 4 5 5 AMS2 33 6 1 SOT23-5 TSOP54 TSOP54 4 C5WE AMS3 44 5 2 SN74AHC1G00 D4VPP/WP~ D D SWT018 SOT23-5 N N DIP4 2 7 G M29W320DB K K FLASH Enable Switch U48 TFBGA63_80 1
in „Versorgung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
MLX90640-Datasheet-Melexis.pdf
accessible through which the device performance can be customized: B15 B14 B13 B12 B11 B10 B9 B8 B7 B6 B5 B4 B3 B2 B1 B0 M e 1 R a 6 e i i b 9 e r l s L e v l e M s o v u b Status register - 0x8000 x b a a e e n a m o M E d s n e L c N 0 0 0 Measurement of subpage 0 has been measured 0 0 1 Measurement
in „MLX90640 IR-Array 32x24 pixel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MLX90640-Datasheet-Melexis.pdf
accessible through which the device performance can be customized: B15 B14 B13 B12 B11 B10 B9 B8 B7 B6 B5 B4 B3 B2 B1 B0 M e 1 R a 6 e i i b 9 e r l s L e v l e M s o v u b Status register - 0x8000 x b a a e e n a m o M E d s n e L c N 0 0 0 Measurement of subpage 0 has been measured 0 0 1 Measurement
in „Wärmebildkamera mit dem MLX90640 und Arduino Due“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DYPTH01B-SPI_Datasheet.pdf
and go to 2) 5) After the last byte is treated, the result in CRC register is the calculated. Figure 6 CRC generator state machine 6.1.1 Example for bitwise Example 1: 0x05-0x09-0x31 CRC calculate example Comment Input bit’s bit7 … bit0 0x dec 0000’0000 Start value 0 0000’0000 00 0 1 bit of command 0
in „Luftfeuchtigkeitssensor an Arduino UNO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7735S.pdf
4] PK2N[3] PK2N[2] PK2N[1] PK2N[0] th 6 Parameter 1 ↑ 1 - - - PK3N[5] PK3N[4] PK3N[3] PK3N[2] PK3N[1] PK3N[0] th 1 ↑ 1 - - - PK4N[5] PK4N[4] PK4N[3] PK4N[2] PK4N[1] PK4N[0] 7 Parameter 8 Parameter 1 ↑ 1 - - - PK5N[5] PK5N[4] PK5N[3] PK5N[2] PK5N[1] PK5N[0] th 9 Parameter 1 ↑ 1 - - - PK6N[5] PK6N[4] PK6N[3] PK6N[2] PK6N[1] PK6N[0] th 1 ↑ 1 - - - PK7N[5] PK7N[4] PK7N[3] PK7N[2] PK7N[1] PK7N[0] 10 Parameter 11 Parameter
in „[STM32/HAL] Treiber für ST7735 160 x 80 TFT“ · Projekte & Code ·
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PDF
17484.pdf
Sensed Current I –50 – 50 A P Supply Voltage V CC 4.5 5.0 5.5 V Supply Current I V = 5.0 V, output open 6.5 8 10 mA CC CC Output Resistance ROUT OUT = 1.2 mA – 1 2 Ω Output Capacitance Load C VOUT to GND – – 10 nF LOAD Output Resistive Load R LOAD VOUT to GND 4.7 – – kΩ Primary Conductor Resistance R I =
in „Strommessung mit ACS754LCB-50-PFF Sensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
current-sensor_ACS754.pdf
Sensed Current I –50 – 50 A P Supply Voltage V CC 4.5 5.0 5.5 V Supply Current I V = 5.0 V, output open 6.5 8 10 mA CC CC Output Resistance ROUT OUT = 1.2 mA – 1 2 Ω Output Capacitance Load C VOUT to GND – – 10 nF LOAD Output Resistive Load R LOAD VOUT to GND 4.7 – – kΩ Primary Conductor Resistance R I =
in „Motorsteuerung AVR Atmega per ISP flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM317_NatS-01.pdf
no capacitors are needed unless the device is n Guaranteed 1% output voltage tolerance (LM317A) s situated more than 6 inches from the input filter capacitors inanteed max. 0.01%/V line regulation (LM317A) a which case an input bypass is needed. An optional output n Guaranteed max. 0.3% load regulation (LM117) b capacitor can be added to improve transient response. Then Guaranteed 1.5A output current e adjustment terminal can be bypassed to achieve very high n Adjustable
in „Spannungsregler - Die-Bilder“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
02-ETEK-Modular-Distribution-Electric-2024.pdf
RCD placed downstream. www.etek-china.com 16 ETEK RCCB Main Technical Parameters Circuit Diagram 1 N 1 3 5 N EKL1-63(H) EKL11-63 T EKL1-80(H) EKL21-63M EKL1-125(H) EKL21-63S 2 N 2 4 6 N 1P+N 3P+N EKL1-63B 1P+N 3P+N EKL6-100(H) 1P+N 3P+N EKL6-100B EKL6-63EV 6mA 1P+N 3P+N 1P+N 3P+N 17 www.etek-china.com
in „Balkonkraftwerk an alter E-Installation“ · Haus & Smart Home ·
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PDF
magnetic.pdf
. the resulting system of equations is complex. The weak form of the gauged A,V − A formulation (3.137)–(3.138) in the frequency domain can be summarized as ν (∇ × W) ∇ × A + ν∇ W ∇ A dΩ Ωc∪Ω n (6.9) +jω W σA + σv dΩ = W J dΩ 0 W KdΓ, Ωc Ωn ΓHn jω ∇N σ A + σv dΩ = 0. (6.10) Ωc 200 7. APPLICATION OF THE
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PDF
20110806094947526.pdf
C 1 82 N 83 VCI VCC 84 VCI V 85 VCI G 1 C 86 VCILVL L V 0 GND 87 GND . 88 GND D U F U0. 1/ V52C 89 AGND 2 F 6 VGL 90 AGND C 91 VGL 2 F U0. 1/ V52C 92 VGL P 7 VGH 93 VGL 94 VGH F U0. 1/ V01 95 VGH N C 8 96 VGH
in „Handydummy (Attrappe)mit richtigem Display - Sony Ericsson Vivaz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tn22.pdf
Lead-free packages Recommended torque: 0.4 to 0.6 N·m In order to meet environmental requirements, ST offers these devices in different grades of ECOPACK packages, depending on their level of environmental compliance. ECOPACK ® specifications, grade
in „Schnellstarter für Leuchtstofföhren - welche taugen was?“ · Haus & Smart Home ·
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PDF
LM94022.pdf
all other limitA T =JT = 25°C. M Symbol Parameter Conditions Typical Units 9 Limits (Note 7) 4 (Note 6) (Limit) 0 2 Sensor Gain GS1 = 0, GS0 = 0 -5.5 mV/°C Q GS1 = 0, GS1 = 1 -8.2 mV/°C GS1 = 1, GS0 = 0 -10.9 mV/°C GS1 = 1, GS0 = 1 -13.6 mV/°C Load Regulation Source ≤ 50 μA, -0.22 -1 mV (max) (Note 10
in „Suche nach einem Temperatursensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PMT_handbook_v4E.pdf
) 17) G.W. Gobeli and F.G.Allen: Phys. Rev., 137, 245A (1965) 18) D.G. Fisher, R.E. Enstrom, J.S. Escher, H.F. Gossenberger: IEEE Trans. Elect. Devices, Vol ED-21, No.10, 641(1974) 19) C.A. Sanford and N.C. Macdonald: J.Vac. Sci. Technol. B8(6), Nov
in „Suche nach geeignetem OpAmp als Impedanzwandler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCD8544_1.pdf
VOLTAGES BIAS VOLTAGE FOR 18BIAS V1 VLCD VLCD 7 V2 (n + 3)/(n + 4) 8× VLCD V3 (n + 2)/(n + 4) 6 × V 8 LCD V4 2/(n + 4) 2 8× VLCD 1 V5 1/(n + 4) 8× VLCD V6 V V SS SS 8.9 Set V value OP The operation voltage LCD can be set by software. The values are dependent
in „(Dieser Beitrag wurde geloescht)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcd8544.pdf
VOLTAGES BIAS VOLTAGE FOR 18BIAS V1 VLCD VLCD 7 V2 (n + 3)/(n + 4) 8× VLCD V3 (n + 2)/(n + 4) 6 × V 8 LCD V4 2/(n + 4) 2 8× VLCD 1 V5 1/(n + 4) 8× VLCD V6 V V SS SS 8.9 Set V value OP The operation voltage LCD can be set by software. The values are dependent
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PDF
PCD8544_1.pdf
VOLTAGES BIAS VOLTAGE FOR 18BIAS V1 VLCD VLCD 7 V2 (n + 3)/(n + 4) 8× VLCD V3 (n + 2)/(n + 4) 6 × V 8 LCD V4 2/(n + 4) 2 8× VLCD 1 V5 1/(n + 4) 8× VLCD V6 V V SS SS 8.9 Set V value OP The operation voltage LCD can be set by software. The values are dependent
in „MSP430F2013 steuert Nokia-3310-Display an“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD8544_-_3310_Display_Controler.pdf
VOLTAGES BIAS VOLTAGE FOR 18BIAS V1 VLCD VLCD 7 V2 (n + 3)/(n + 4) 8× VLCD V3 (n + 2)/(n + 4) 6 × V 8 LCD V4 2/(n + 4) 2 8× VLCD 1 V5 1/(n + 4) 8× VLCD V6 V V SS SS 8.9 Set V value OP The operation voltage LCD can be set by software. The values are dependent
in „Atmega8 Nokia 3310 Display und AVR-Studio“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5510LCD_datasheet.pdf
VOLTAGES BIAS VOLTAGE FOR 18BIAS V1 VLCD VLCD 7 V2 (n + 3)/(n + 4) 8× VLCD V3 (n + 2)/(n + 4) 6 × V 8 LCD V4 2/(n + 4) 2 8× VLCD 1 V5 1/(n + 4) 8× VLCD V6 V V SS SS 8.9 Set V value OP The operation voltage LCD can be set by software. The values are dependent
in „Probleme mit Taktversorgung auf Steckbrett“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5510LCD_datasheet.pdf
VOLTAGES BIAS VOLTAGE FOR 18BIAS V1 VLCD VLCD 7 V2 (n + 3)/(n + 4) 8× VLCD V3 (n + 2)/(n + 4) 6 × V 8 LCD V4 2/(n + 4) 2 8× VLCD 1 V5 1/(n + 4) 8× VLCD V6 V V SS SS 8.9 Set V value OP The operation voltage LCD can be set by software. The values are dependent
in „[PIC]Probleme bei SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD8544_-_3310_Display_Controler.pdf
VOLTAGES BIAS VOLTAGE FOR 18BIAS V1 VLCD VLCD 7 V2 (n + 3)/(n + 4) 8× VLCD V3 (n + 2)/(n + 4) 6 × V 8 LCD V4 2/(n + 4) 2 8× VLCD 1 V5 1/(n + 4) 8× VLCD V6 V V SS SS 8.9 Set V value OP The operation voltage LCD can be set by software. The values are dependent
in „Display Nokia 5110“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5110.pdf
VOLTAGES BIAS VOLTAGE FOR 18BIAS V1 VLCD VLCD 7 V2 (n + 3)/(n + 4) 8× VLCD V3 (n + 2)/(n + 4) 6 × V 8 LCD V4 2/(n + 4) 2 8× VLCD 1 V5 1/(n + 4) 8× VLCD V6 V V SS SS 8.9 Set V value OP The operation voltage LCD can be set by software. The values are dependent
in „Nokia 5110 ansteuern für newbie“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1623.pdf
/DC Block Diagram Solomon Systech Nov 2007 P 6/44 Rev 0.10 SSD1623 16x Configurations VCI X2 X2 X2 X2 C4P C4N C3AP C3AN C2P C2N C1P C1N VCP4 VCP3 VCP2 VCP1 12x Configurations VCI X2 X3 X2 By pass C3BP C3BN C4P C4N C3AP C3AN C2P C2N VCP4 VCP3 VCP1 8x Configurations VCI X2 X2 X2 By pass C4P C4N C2P C2N VCP4 C3AP C3AN VCP3 VCP1 6x Configurations VCI X2 X3 By pass By pass C3BP C3BN C4P C4N C3AP C3AN VCP4 VCP1 4x Configurations VCI X2 X2 By pass By pass C4P C4N VCP4 C3AP C3AN VCP1 SSD1623 Rev
in „E-Ink Display im Blutzuckermeßgerät“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7735_128x160_SPI_Display.pdf
132 C11P 2100 -231 33 DUMMY -3150 -231 83 CSX -430 -231 133 C11P 2150 -231 34 VDDIO -3100 -231 84 D6 -370 -231 134 C11N 2200 -231 35 GM2 -3050 -231 85 D4 -310 -231 135 C11N 2250 -231 36 DGNDO -3000 -231 86 D2 -250 -231 136 C11N 2300 -231 37 GM1 -2950 -231 87 IM2 -190 -231 137 C11N 2350 -231 38 VDDIO
in „ST7735 an MCU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
7805.pdf
o = 5 to 1500 mA Tj= 25 C 100 mV I = 250 to 750mA T = 25 C 25 mV o j Id Quiescent Current Tj= 25 C 6 mA d Quiescent Current Change o = 5 to 1000 mA 0.5 mA d Quiescent Current Change Vi= 8 to25 V 0.8 mA o V o OutputVoltageDrift o = 5 mA 0.6 mV/ C T o eN OutputNoise Voltage B = 10Hzto 100KHz T j= 25 C
in „Pic schaltung mit Netzteil versorgen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
179205-da-01-en-Festspannungsregler_78XX.pdf
Io= 5 to 1500 mA Tj=25 Co 100 mV I = 250 to 750mA T =25 Co 25 mV o j Id Quiescent Current T j 25 C 6 mA d Quiescent Current Change Io= 5 to 1000 mA 0.5 mA d Quiescent Current Change V i 8 to 25 V 0.8 mA o V o OutputVoltage Drift Io= 5mA 0.6 mV/ C T o eN OutputNoise Voltage B = 10Hz to100KHz T j= 25
in „Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SDA5252-2_Siemens.pdf
47 46 45 44 43 42 41 P0.5 61 40 D5 P0.6 62 39 D0 P0.7 63 38 D6 P2.3 64 37 A0 P2.2 65 36 D7 P2.1 66 35 A1 P2.0 67 34 A2 V SSA 68 33 A10 FIL3 69 32 A3 N.C. 70 31 A4 SDA5250M-2 N.C. 71 30 A11 VDDA 72 29 A5 I 73 28 A9 REF CVBS 74 27 A6 P3.7 75
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM317.pdf
no capacitors are needed unless the device is n Guaranteed 1% output voltage tolerance (LM317A) s situated more than 6 inches from the input filter capacitors inanteed max. 0.01%/V line regulation (LM317A) a which case an input bypass is needed. An optional output n Guaranteed max. 0.3% load regulation (LM117) b capacitor can be added to improve transient response. Then Guaranteed 1.5A output current e adjustment terminal can be bypassed to achieve very high n Adjustable
in „LM317 für 70V DC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM117.pdf
no capacitors are needed unless the device is n Guaranteed 1% output voltage tolerance (LM317A) s situated more than 6 inches from the input filter capacitors inanteed max. 0.01%/V line regulation (LM317A) a which case an input bypass is needed. An optional output n Guaranteed max. 0.3% load regulation (LM117) b capacitor can be added to improve transient response. Then Guaranteed 1.5A output current e adjustment terminal can be bypassed to achieve very high n Adjustable
in „Stromquelle für LED“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM317.pdf
no capacitors are needed unless the device is n Guaranteed 1% output voltage tolerance (LM317A) s situated more than 6 inches from the input filter capacitors inanteed max. 0.01%/V line regulation (LM317A) a which case an input bypass is needed. An optional output n Guaranteed max. 0.3% load regulation (LM117) b capacitor can be added to improve transient response. Then Guaranteed 1.5A output current e adjustment terminal can be bypassed to achieve very high n Adjustable
in „LM317T nicht gleich LM317T?!?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet.hk_mon35w82_8390983.pdf
to 2 Sets of Fan Speed - 3 Thermal Inputs From Remote Monitoring and Controlling. Thermistors or 2N3904 NPN-type - Issues nSMI, nOVT and nGPO Signals Transistors or Pentium TM II to Activate System Protection - Warning Signal Pop-Up in Application (Deschutes) thermal diode output - 6 Voltage Inputs
in „[V] 45St.Fan Steuerungs ChipI2C SMSC MON35W82“ · Markt ·
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PDF
Datasheet.hk_mon35w82_8390983.pdf
to 2 Sets of Fan Speed - 3 Thermal Inputs From Remote Monitoring and Controlling. Thermistors or 2N3904 NPN-type - Issues nSMI, nOVT and nGPO Signals Transistors or Pentium TM II to Activate System Protection - Warning Signal Pop-Up in Application (Deschutes) thermal diode output - 6 Voltage Inputs
in „[V] 45St.Fan Steuerungs ChipI2C SMSC MON35W82“ · Markt ·
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samsung_242mp_chassis_po24fs.pdf
24C16,2Kx8,SOP,8P,5x4mm,2.7/5.5V,-40to+85C 1 SA IC901 1105-001336 IC-DRAM -,512K*32*4Bit,TSOP,86P,400MIL,6nS,3.3V,10%,-,0to70C,2mA,-,TP 1 SA IC902 1105-001336 IC-DRAM -,512K*32*4Bit,TSOP,86P,400MIL,6nS,3.3V,10%,-,0to70C,2mA,-,TP 1 SA IC3000 1105-001484 IC-DRAM EM6AA320BI-4,4x2Mx32Bit,FBGA,144P,12x12mm,4nS
in „Defekt an Samsung 242MP TV/Monitor“ · Mikrocontroller und Digitale Elektronik ·
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CUPP_RELAYS.pdf
- 50 - - 10 Watts Life Expectancy Signal Level 1.0 V 10mA - - 300 - - 2000 - - 500 - x106 Ops (1) 6 Rated Loads x10 Ops Static Contact Resistance 50mV, 10mA CR - - 100 - - 40 - - 200 mΩ Contact Material - - Hg - - Hg - - Ru - - Hg Content - - 16 - - 40 - - N/A - mgrams Relay Specifications Insulation
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eGC.pdf
GND GND Capacitor Capacitor Capacitor Capacitor Capacitor D 02100 nF C2100 nF 62100 nF P2100 nF 20100 nF D Title GND Size Number Revision A3 File: C:\Users\..\ARM_PWR.SchDoc Drawn By: 1 2 3 4 5 6 7 8 1 2 3 4 D[0..15] A IC1JJ A COIC2 COIC6A gpmc_d0 PIIC10AA7 IC2E IC6A
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
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T.E._GPS_Firmware_DR_A1029___A1030_V3.0.pdf
the first (default) NMEA – if you did not change the settings so far: $GPGGA,235951.038,0000.0000,N,00000.0000,E,6,00,99.0,0082.0,M,18.0,M,,*5A $GPRMC,235951.038,V,0000.0000,N,00000.0000,E,0.0,0.0,130399,0.0,W,E*07 $GPGSA,A,1,,,,,,,,,,,,,99.0,99.0,99.0*00 The NMEA sentences are explain in detail later
in „Dead Reckoning GPS“ · Mikrocontroller und Digitale Elektronik ·
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Datasheet_ILI9225DS_V022.pdf
DB DB DB DB DB Input Data 7 6 5 4 3 2 15 14 13 12 11 10 7 6 5 4 3 2 GRAM Data & 80-system RGB Mapping R5 R4 R3 R2 R1 R0 G5 G4 G3 G2 G1 G0 B5 B4 B3 B2 B1 B0 16-bit S(3n+4) S(3n+5) S(3n+6) st nd 1 Transfer 2 Transfer DB DB DB DB DB
in „STM32F103 TFT SPI ILI9225“ · Mikrocontroller und Digitale Elektronik ·