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PDF
3265fa.pdf
50kHz RT TO 12 500kHz OSC – + ADJ+ EN+ 16 13 CHARGE BYP+ – PUMP 15 4 EN AND LOGIC 1.2V MODE INPUT REF 14 –1.2V INVERTING CHARGE PUMP REF – V BYP 5 11 IN_N ADJ– 6 S5 – + CINV+ 10 S7 – 9 CINV S6 S8 – – VOUT LDO 8 7 GND 19 3265 BD 3265fa 10 Formoreinformationwww.linear.com/LTC3265 LTC3265 OPERATION (Refer
in „einfache, kostengünstige Erzeugung einer symmetrischen Spannungsversorgung bei geringer Leistung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MIC2951.pdf
-4.8 (±1%), 100µA ≤LI ≤ 150mA, Note 10 0.10 0.20 % 0.30 % Dropout Voltage MIC295x-02/-03/-05/-06L I = 100µA, Note 12 40 80 mV 140 mV MIC295x-02/-03/-05/-06L I = 100mA, Note 12 250 300 mV MIC295x-02/-03/-05/-06L I = 150mA, Note 12 300 450 mV 600 mV MIC2951-3.3 (±1%),LI = 100µA, Note 12
in „Highside-Switch gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRF8736.pdf
144 PD@T A 25°C Power Dissipation 2.5 W Power Dissipation PD@T A 70°C 1.6 Linear Derating Factor 0.02 W/°C TJ Operating Junction and -55 to + 150 °C TSTG Storage Temperature Range Thermal Resistance Parameter Typ. Max. Units RθJL Junction-to-Drain Lead ––– 20 °C/W RθJA Junction-to-Ambient ––– 50 Notes
in „IRF8736 - Was haltet Ihr davon?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
versuch1.c
konfigurieren //Prescalerkonfiguration TCCR0 |= (1<<CS01)|(1<<CS00); // Prescaler 64 TCCR0 &= ~(1<<CS02); // " //CTC Modus aktivieren TCCR0 &= ~(1<<WGM00); TCCR0 |= (1<<WGM01); //Output Compare Interrupt erlauben TIMSK |= (1<<OCIE0); //Timer vorladen OCR0 = 0x3d; //Hauptschleife lcd_init(); ADMUX = (0<<REFS1) | (1<<REFS0) ; //Ref auswählen. AVCC ADCSRA = (1<<ADPS2) | (0<<ADPS1) | (1<<ADPS0); //Prescaler ADCSRA |= (1<<ADEN); //Dummy-Start while (ADCSRA & (1<<ADSC) ) {} //Auf ad warten adergebnis = ADCL;
in „Atmega32 AD-Wandlung Ref-Spannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OpAmp_MC3407x_KapazitiveLast.pdf
Differential Input Capacitance Cin − 2.5 − − 2.5 − pF VCM = 0 V Total Harmonic Distortion THD − 0.02 − − 0.02 − % AV= +10, RL= 2.0 kW, 2.0pp≤ VO≤ 20 Vpp f = 10 kHz Channel Separation (f = 10 kHz) − − 120 − − 120 − dB Open Loop Output Impedance (f = 1.0 MHz) |ZO| − 30 − − 30 − W Single Supply Split Supplies
in „Push/Pull in spannungsgeregelter Stromquelle / Frage zur Auslegung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ug1091-carrier-card-design.pdf
VCCO_HPA 2 GND HPA05_CC_N GND VCCO_HPA 3 HPA06_P GND HPA00_CC_P GND 4 HPA06_N HPA04_P HPA00_CC_N HPA02_P 5 GND HPA04_N GND HPA02_N 6 HPA_CLK0_P GND HPA03_P GND 7 HPA_CLK0_N HPA07_P HPA03_N HPA01_P 8 GND HPA07_N GND HPA01_N 9 HPA12_P GND HPA08_P GND 10 HPA12_N HPA11_P HPA08_N HPA09_P 11 GND HPA11_N GND
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PDF
DCL10_ds593.pdf
capacitance on the target system. DS593 (v1.2.1) March 17, 2011 www.xilinx.com 19 Platform Cable USB II X-Ref Target - Figure 19 DS593_19_021408 Figure 19: V Current vs. V Voltage REF REF X-Ref Target - Figure 20 V REF_CLAMP k FPGA V 2 NC7SZ126 REF_CLAMP 2-mm Connector Output 30.1Ω I/O Pin High-Z Control BAT54
in „USBprog CPLD Starterkit Wie bauen?“ · FPGA, VHDL & Co. ·
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PDF
ST7735_128x160_SPI_Display.pdf
B163 B162 B161 B160 ------ 113 | | | Not used B315 B314 B313 B312 B311 B310 ------ 128 V2.1 76 2010-02-01 ST7735 10 Command 10.1 System function Command List and Description Table 10.1.1 System Function command List (1) Instruction Refer D/CXWRXRDXD17-8D7 D6 D5 D4 D3 D2 D1 D0 Hex Function NOP 10.1.10
in „ST7735 an MCU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ForumLNG_V102.pdf
+12 R25 GROB 10K 10K R5 2K7 R18 R20 C20 +REF 3K9 D6 6K8 6K8 B R13 4148 U3 7 D7 D8 B 741 4148 4148 D5 4700uF, 63V 680R R6 3 6V2 MAX VOLTAGE OUT ADJ R11 6 5K 3K9 2 R19 Q4 C6 MINIMUM VOUT ??? 6K8 E3 BC301 5 1 4 GRN SNS+ AC3 Gl1 -12V ??? D9 R14 680R
in „puff Peng und Magic smoke, Labornetzteil.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
s216s02.pdf
diagram S112S01 / S112S02 S112S01/S116S01 S112S02/S116S02 S212S01/S216S01 S212S02/S216S02 S116S01 / S116S02 7. Approved by CSA, No. 63705 Zero-cross circuit S112S01 / S112S02 S116S01 / S116S02 1 2 3 4 1 2 3 4 ( ) ( ) 1 Output
in „"Knallen" in den Boxen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
at91rm9200-ek.pdf
TM 1 1 TP18 Z5 TM Z1 1 Z3 TM TP1 A A Wednesday, February 23, 2005 R227 TP5 0R B 101-3-05-10ELX 23/02/05 JPG 23/02/05 A INIT EDIT MDZ 04/01/05 JPG 06/01/05 REV MODIF. DES. DATE VER. DATE AT91RM9200-EK SCALE 1/1 REV. SHEET 1 NORMALLY CLOSED POWER SUPPLY 63SC042261 A01 9 This agreement is our property.
in „SD-RAM aus PC für AT91RM9200 (ARM9)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GL9540_ServiceManual.pdf
Filter 3-7 4-1 PRT Copper Holding Bìock 4-3 4-2 cLK t, cLK 2, CLK 3, CLK 4. 4-11 PARTS LISTS L9L??.01.02 GENERAL ASSEMBLY 18108.01.02 MAIN PCB 18115 .0L.02 DISPLAY PCB 181 25.01.01 CASE ASSEMBLY L8r27.01 .01 RACK ADAPTOR 18123 .01 .01 FRONT PANEL ASSEMBLY 18124.01.01 BACK PANEL ASSEMBLY DRAI.JNGS 18115.01
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
This material publishing data is a standard measurement example and not a guaranteed value. Please refer as a reference value. There is no previous notice and the design and the specification might be changed. This document is VINATech's proprietary material, and the distribution and the presentation
in „Lithium-Ionen-Kondensator Haltbarkeit?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
This material publishing data is a standard measurement example and not a guaranteed value. Please refer as a reference value. There is no previous notice and the design and the specification might be changed. This document is VINATech's proprietary material, and the distribution and the presentation
in „ESP8266 verhalten bei Unterspannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
This material publishing data is a standard measurement example and not a guaranteed value. Please refer as a reference value. There is no previous notice and the design and the specification might be changed. This document is VINATech's proprietary material, and the distribution and the presentation
in „Eigenartiges Verhalten von Li-Batterien“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
This material publishing data is a standard measurement example and not a guaranteed value. Please refer as a reference value. There is no previous notice and the design and the specification might be changed. This document is VINATech's proprietary material, and the distribution and the presentation
in „Vergleich Alkali mit LiClO2 AA Primärzellen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
This material publishing data is a standard measurement example and not a guaranteed value. Please refer as a reference value. There is no previous notice and the design and the specification might be changed. This document is VINATech's proprietary material, and the distribution and the presentation
in „Vollständige Abschaltung ESP8266-12“ · Mikrocontroller und Digitale Elektronik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
This material publishing data is a standard measurement example and not a guaranteed value. Please refer as a reference value. There is no previous notice and the design and the specification might be changed. This document is VINATech's proprietary material, and the distribution and the presentation
in „Austausch von Lithium-Thionyl-Chlorid Batterien im Betrieb“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
This material publishing data is a standard measurement example and not a guaranteed value. Please refer as a reference value. There is no previous notice and the design and the specification might be changed. This document is VINATech's proprietary material, and the distribution and the presentation
in „Elko oder anderen Kondesnsator“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
This material publishing data is a standard measurement example and not a guaranteed value. Please refer as a reference value. There is no previous notice and the design and the specification might be changed. This document is VINATech's proprietary material, and the distribution and the presentation
in „Bauteilsuche? Stepup um 1,5V Batterien leer zu lutschen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
This material publishing data is a standard measurement example and not a guaranteed value. Please refer as a reference value. There is no previous notice and the design and the specification might be changed. This document is VINATech's proprietary material, and the distribution and the presentation
in „Eigenschaften Alkali Batterien (Innenwiderstand)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
THT_SUPER-KONDENSATOR_3_8V_20F_30X10MM.pdf
This material publishing data is a standard measurement example and not a guaranteed value. Please refer as a reference value. There is no previous notice and the design and the specification might be changed. This document is VINATech's proprietary material, and the distribution and the presentation
in „ESP8266 verhalten bei Unterspannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADD9910_Design.pdf
V_IN_24VPI?01 PI?02 GND PI GND PC Cap 33k P? IPL?1 PIF?02CC_24V_DEV 4.7µF 4.7µF PI1 Fuse 1 P0 1 10?PIP D?DOC 2 20?PIP SMBJ24CA IPL?3 PIF?04 GND GND Header2 BNX024H01L GND NLVC0240NEG P0 VC _24V_NEG VCC_1V8_DVDD IC? LT3042HDD
in „PCB -Frequenzrampe 100khz-360 MHz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MBM29LV800.pdf
A" MAX 0.15(.006) 0.25(.010) 24 25 20.00±0.20 *12.00±0.20 (.787±.008) (.472±.008) *18.40±0.20 11.50REF +0.10 (.724±.008) (.460) 1.10−0.05 .043−.002 (Mounting height) 0.10(.004) 0.50(.0197) 0.05(0.02)MIN TYP STAND OFF 0.15±0.05 0.20±0.10 (.006±.002) 0.10(.004) M (.008±.004) 19.00±0.20 0.50±0.10 (.748±
in „650Stk. Flashbausteine 29LV800 1Mx8 / 512k x16, 3,3V“ · Markt ·
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PDF
Schaltplan.pdf
PIU101052 A5V0L10101 5V0 TP P O V D I T0 TP COTP151 PIU10PG2 (ALE) AVCC PIU101064 PIL10101 PIL10102 02 COR104 TP COTP152 AREF PIU101062 10uH 4u7 01 100n02 COR106 5V0 PIR10PIR10402 TP153 50 P1U10RESET 22ND I0 5V0 PIR10PIR10601 2 C10606 4k7 CTP1544OTP1P0 TP PIU10PEN GND P5310102TP15555 COC105 0 02 C n.b
in „V: Leiterplatten aus Überproduktion abzugeben“ · Markt ·
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PDF
NECCS04393-1.pdf
Parameter Symbol Conditions MIN. TYP. MAX. Unit Resolution 8 8 8 bit Overall errorote 1 2.7 V ≤ AV REF≤ 5.5 V ±0.6 %FSR 2.2 V ≤ AV REF< 2.7 V ±1.4 %FSR Conversion time tCONV 2.7 V ≤ AV REF≤ 5.5 V 19.1 200 µs 2.2 V ≤ AV REF< 2.7 V 38.2 200 µs Sampling time tSAMP 24/XX µs Analog input voltage VIAN AV SS AV REF V Reference voltage AV REF 2.2 V DD V AV REF-AVSS resistance RAIREF When A/D conversion not operating 4 14 kΩ Note 2 AV REF current AIREF When A/D conversion operating 2.5 5.0 mA Note 3 When A/D conversion
in „Anschlussbelegung uP D78P0308GF gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XTR115_-_4-20mA_Stromquelle.pdf
tion over the extended industrial temperature range, power external circuitry. A precision on-chip V REF –40°C to +85°C. (2.5V for XTR115 and 4.096V for XTR116) can be XTR115 XTR116 V +5V REG +5V V+ 8 Regulator 7 V XTR115: 2.5V REF Voltage XTR116: 4.096V 1 Reference VLOOP R B IN IN 6 2 A1 R L + VIN E 5
in „Fehlersuche XTR116“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC6802-1.pdf
10 20 30 40 50 60 TEMPERATURE (°C) SUPPLY VOLTAGE (V) SUPPLY VOLTAGE (V) 68021 G04 68021 G01 68021 G02 Internal Die Temperature External Temperature Measurement vs Ambient Measurement Total Unadjusted V REF Output Voltage vs E Temperature Error vs Input Temperature R C T ( 5 V = 43.2V 10 3.070 R R S T
in „SPI: kein SCK bei Receive - Warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sle4432424041.pdf
M3 SLE 4441 C on request Chip 1)Values are temperature dependent, for further information please refer to your Siemens Sales Office. Semiconductor Group 4 Data Sheet Extension 09.98 SLE 4432 SLE 4442 SLE 4440 SLE 4441 Introduction This document describes changes and extensions of the Data Sheet 07.95
in „[V] 90St. blanko Chipkarten Kontaktbehaftet Siemens SLE4442 (18€)“ · Markt ·
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PDF
Boonton_Measurements_Corp_Model_59_Army.pdf
to 30 m c _ 2E Refer to step 2D _ 7.5 mc ±2% _ Refer to step 2D. Refer to step 2D _ 10 mc ±2% _ Refer to step 2D. 2F Refer to step 2D _ 2G 10 mc ± 2 % ------------------7 - 10-22 mc coil defective. 2H Refer to step 2D
in „Was ist das für ein Röhren- Dipper ?“ · HF, Funk und Felder ·
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PDF
Transistortester093k.pdf
8MHz Mega88 @8MHz Mega168 @8MHz PeakTech 3315 Kenn. 1E 93 07 Kenn. 1E 93 0A Kenn. 1E 94 06 WITH_AUTO_REF WITH_AUTO_REF WITH_AUTO_REF AUTOSCALE_ADC AUTOSCALE_ADC REF_KORR=17 56pF 58pF 58pF 0% 59pF 2% 57pF 2% 110pF 114pF 114pF 0% 119pF 4% 118pF 4% 220pF 225pF 225pF 0% 232pF 3% 231pF 3% 1000pF 1034pF 990pF
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Datei
msp430f149.h
Enable */ #define CAEX (0x80) /* Comp. A Exchange Inputs */ #define CAREF_0 (0x00) /* Comp. A Int. Ref. Select 0 : Off */ #define CAREF_1 (0x10) /* Comp. A Int. Ref. Select 1 : 0.25*Vcc */ #define CAREF_2 (0x20) /* Comp. A Int. Ref. Select 2 : 0.5*Vcc */ #define CAREF_3 (0x30) /* Comp. A Int. Ref. Select
in „MSP430 Portfehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina105.pdf
systems. ® INA105 2 PIN CONFIGURATIONS Top View TO-99 Top View DIP/SOIC Tab No Internal Connection 8 Ref V+ 1 7 Ref 1 8 No Internal Connection (1) –In 2 7 V+ –In 2 6 Output 3 Output +In 6 V– 4 5 Sense 3 5 +In Sense 4 INA105AM INA105BM V– NOTE:(1)Performancegradeidentifierboxforsmalloutlinesurfacemount.
in „Spannungs / Strom Wandler mit Offset versehen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
|= (1 << DDB4); // Init ADC // Configure ADC: Use Vcc as Vref on defined input port ADMUX = (0 << REFS2) | (0 << REFS1) | (0 << REFS0) | (0 << ADLAR) | IN_PIN; // Enable and start ADC, enable ADC interrupt, use prescaler 128 ADCSRA = (1 << ADEN) | (1 << ADSC) | (1 << ADIE) | (1 << ADPS2) | (1 << ADPS1
in „Attiny 45 Lenkradfernbedienungs-Interface, erstes Programm so in Ordnung?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
|= (1 << DDB4); // Init ADC // Configure ADC: Use Vcc as Vref on defined input port ADMUX = (0 << REFS2) | (0 << REFS1) | (0 << REFS0) | (0 << ADLAR) | IN_PIN; // Enable and start ADC in free running mode, enable ADC interrupt, // use prescaler 128 ADCSRA = (1 << ADEN) | (1 << ADSC) | (1 << ADATE) |
in „Shift bei uint32_t nur bis 16 Stellen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
/ LOGICAL_MAXIMUM (255) 0x75, 0x08, // REPORT_SIZE (8bits) 0x95, 0x04, // REPORT_COUNT (2) 0x81, 0x02, // INPUT (Data,Var,Abs) 0xc0, // END_COLLECTION 0x05, 0x09, // USAGE_PAGE (Button) 0x19, 0x01, // USAGE_MINIMUM (Button 1) 0x29, 0x08, // USAGE_MAXIMUM (Button 8) 0x15, 0x00, // LOGICAL_MINIMUM (0)
in „Problem mit libUSB - wie Gerät ansprechen?“ · Softwareentwicklung ·
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PDF
ATMega_48_88_168.pdf
at a compare match (See “Compare Match Output Unit” on page 89.). For detailed timing information refer to “Timer/Counter Timing Diagrams” on page 94. Normal Mode The simplest mode of operation is the Normal mode (WGM02:0 = 0). In this mode the counting direction is always up (incrementing), and no counter
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atiny2313.pdf
the Timer/Counter0 Overflow interrupt is executed. The setting of this flag is dependent of the WGM02:0 bit setting. Refer to Table 40, “Waveform Generation Mode Bit Description” on page 79. Bit 0 – OCF0A: Output Compare Flag 0 A 82 ATtiny2313/V 2543I–AVR–04/06 ATtiny2313/V The OCF0A bit is set when
in „Suche tutorial“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Minimalistischer_GPS_Logger.pdf
N,01x02.6341,E,0.000,0.00,010217,,A*70 $GPRMC,122630.000,A,5x58.1925,N,01x02.6362,E,0.000,0.00,010217,,A*77 $GPRMC,122645.000,A,5x58.1918,N,01x02.6366,E,0.000,0.00,010217,,A*7F $GPRMC,122700.000,A,5x58.1911,N,01x02.6333,E,0.000,0.00,010217,,A*76 $GPRMC,122715.000,A,5x58.1923,N,01x02.6192,E,0.000,0.00,010217,,A*7A $GPRMC,122730.000,A,5x58.1948,N,01x02.6089,E,0.000,0.00,010217,,A*7B $GPRMC,122818.000,A,5x58.1927,
in „Minimalistischer GPS-Logger ohne µC und SD-Karte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430g2553_MIXED_SIGNAL_MICROCONTROLLER.pdf
019h Port P3 input P3IN 018h Port P2 Port P2 selection 2 P2SEL2 042h Port P2 resistor enable P2REN 02Fh Port P2 selection P2SEL 02Eh Port P2 interrupt enable P2IE 02Dh Port P2 interrupt edge select P2IES 02Ch Port P2 interrupt flag P2IFG 02Bh Port P2 direction P2DIR 02Ah Port P2 output P2OUT 029h Port
in „LiPo-Akku+LowPower: 5V Controller oder Spannungswandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BF1009S_Appnote__INF.pdf
Supply voltage 8 V to 9 V Ambient temperature -40 ... +85 °C The following AC / DC characteristics refer to supply voltage V = 8.5 V ±5 % and S Tamb= +25 °C. Supply current 111 mA Local oscillator frequency range 50 ... 250 MHz RF mixer input frequency f22-23 60 ... 140 MHz max. input RF level V 22-23
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PDF
aMG-160128B-SYFLY-W-6_010.pdf
1.8 Contrast defect. Black or white 2.1 White and black spots on display0.25mm, no more than three 02 spots on LCD white or black spots present. 2.5 (display only) 2.2 Densely spaced: No more than two spots or lines within 3mm 3.1 Round type : As following drawing SIZE Acceptable Q TY Φ=( x + y ) / 2
in „LCD Kontrastspannungsproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GM47_Integrators_Manual_R1C.pdf
specified in ITU-T Recommendations V.25ter, T.31 and T.32. In GSM there can be voice followed by data (refer to GSM 02.02), alternating voice/data (refer to GSM 02.02) and alternating voice/fax calls (refer to GSM 02.03). Test command returns values supported by the TA as a compound value. Note! +CMOD is
in „GM47 GSM Spannungsversorgung aus LiIo-Akku“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mcp6004.pdf
Falling Edge, DD= 5.5V G = +1 V/V 0.9 Falling Edge, V = 1.8V v0.06 0.8 DD i ) /0.04 / 0.7 V V m ( 0.6 20.02 t 0.5 ( R g0.00 0.4 Rising Edge, VDD= 5.5V t e Rising Edge, DD = 1.8V o-0.02 S 0.3 V 0.2 t p-0.04 0.1 u O-0.06 0.0 -50 -25 0 25 50 75 100 125 -0.E+01.E-062.E-063.E-064.E-065.E-066.E-07.E-068.E-069.E-
in „Nichtinvertierender Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
log.txt
UBRR &H09 UBRRL &H09 ACSR &H08 ADMUX &H07 ADCSRA &H06 ADCSR &H06 ADCH &H05 ADCL &H04 TWDR &H03 TWAR &H02 TWSR &H01 TWBR &H00 I2DR &H03 I2AR &H02 I2SR &H01 I2BR &H00 INT1 7 INT0 6 INT2 5 IVSEL 1 IVCE 0 INTF1 7 INTF0 6 INTF2 5 TOIE0 0 OCIE0 1 TOIE1 2 OCIE1B 3 OCIE1A 4 TICIE1 5 TOIE2 6 OCIE2 7 TOV0 0 OCF0
in „GLCD funktioniert nicht!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
muRata_TZC3P200A110_.pdf
soldeounting, handling) in this catalog to prevent smoking and/or burning, etc.r burning, etc. T13E8.pdf 02.9.2 • This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please pprove our product sp cification or transact the approval sheet for product
in „Wittig(welec) DSO W20xxA Hardware (Teil 2)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX100.pdf
affect device reliability. ELECTRICAL CHARACTERISTICS (VEE = -5.2V, CC = +5V, RL= 50Ω to -2V, VA RT = 1.02V, VA RB = -1.02V, MIN to TMAX = 0°C to +70°C, T A +25°C, unless otherwise noted.) (Note 3) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS ACCURACY Resolution 8 Bits Integral Nonlinearity (Note 4) INL
in „Oszilloskop mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bf_atmega88a.h
#define BFM_MUX3 BF_ADMUX.mux3 #define BFM_ADLAR BF_ADMUX.adlar #define BFM_REFS0 BF_ADMUX.refs0 #define BFM_REFS1 BF_ADMUX.refs1 struct ADCSRB_bits { uint8_t adts0:1; uint8_t adts1:1; uint8_t adts2:1; uint8_t dummy3:1; uint8_t dummy4:1; uint8_t dummy5:1; uint8_t acme:1; uint8_t
in „AVR-Register als Bitfields“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rej09b0101_16c29hm_2_.pdf
TB2SEL bit to 1 (underflow of TB2 interrupt generation frequency setting counter[ICTB2]), set the INV02 bit to 1 (three-phase motor control timer function). 7. Refer to "19.6 Digital Debounce Function" for the SD input. The effect of SD pin input is below. 1.Case of INV03 = 1(Three-phase motor control
in „Zeitproblem bei Softwarepwm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4P018-00_03_G2_Aurora_Mb_COG_Driver_Interface_Timing_for_small_size_20150727.pdf
1.3.6 Modify the description of Note number 15 1.3.6 Add description about hardware suggestion 30 Ver. 02 2015/02/16 31 32 5.2 Add the description of “Turn on OE” 33 34 37 6 Modify the description BORDER -> /BORDER_CONTROL 25 4 Modify OE setting (0x02,0x40) -> (0x02,0x04) 37 6 Remove OE off flow (0x02,0x05
in „Probleme mit Breakoutboard für 2" Pervasive Display“ · Mikrocontroller und Digitale Elektronik ·