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Motor.pdf
1 + A ⋅s A ZA mit K = 1 = 1 = 0,005 1 ,T = LA = 0,3H =1,5ms A ZA 200Ω Ω A ZA 200Ω Erregerfluss/Maschinenkonstante: M(t) = c⋅ϕ ⋅i At) M(s) = c⋅Φ⋅I (sA G s( )= M ( ) = ⋅Φ =1,3 N ⋅ =1,3V ⋅s 1 I ( ) A A V ⋅ N N m⋅ u At) = c⋅ϕ ⋅ω(t) 1T =1 2 =1 ⇒ 1 = 1V ⋅ m m A A U
in „PI_Regler in Antriebstechnik“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1307.pdf
TYP MAX UNITS NOTES SCL Clock Frequency f 0 100 kHz SCL Bus Free Time Between a STOP and tBUF 4.7 ms START Condition Hold Time (Repeated) START Condition HD:STA 4.0 ms 3 LOW Period of SCL Clock LOW 4.7 ms HIGH Period of SCL Clock tHIGH 4.0 ms Set-up Time for a Repeated START SU:STA 4.7 ms Condition Data Hold Time tHD:DAT 0 ms 4,5 Data Set-up Time SU:DAT 250 ns Rise Time of Both SDA and SCL Signals tR 1000 ns Fall Time of Both SDA and SCL Signals tF 300 ns Set-up Time for STOP Condition SU:STO 4.7 ms Capacitive Load for each
in „Real-Time Clock (ds1307)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
irmpprotocols.h
otherwise some JVC codes will not be accepted #define IRMP_TIMEOUT_TIME 15500.0e-6 // timeout after 15.5 ms darkness #define IRMP_TIMEOUT_TIME_MS 15500L // timeout after 15.5 ms darkness #if IRMP_SUPPORT_NIKON_PROTOCOL == 1 # define IRMP_TIMEOUT_NIKON_TIME 29500.0e-6 // 2nd timeout after 29.5 ms darkness (only for NIKON!) # define IRMP_TIMEOUT_NIKON_TIME_MS 29500L // 2nd timeout after 29.5 ms darkness typedef uint16_t PAUSE_LEN; # define IRMP_TIMEOUT_NIKON_LEN (PAUSE_LEN)(F_INTERRUPTS * IRMP_TIMEOUT_NIKON_TIME + 0.5) #else # if (F_INTERRUPTS * IRMP_TIMEOUT_TIME_MS
in „IR Fernbedienung mit IRSND“ · Mikrocontroller und Digitale Elektronik ·
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Datei
irmpprotocols.h
otherwise some JVC codes will not be accepted #define IRMP_TIMEOUT_TIME 15500.0e-6 // timeout after 15.5 ms darkness #define IRMP_TIMEOUT_TIME_MS 15500L // timeout after 15.5 ms darkness #if IRMP_SUPPORT_NIKON_PROTOCOL == 1 # define IRMP_TIMEOUT_NIKON_TIME 29500.0e-6 // 2nd timeout after 29.5 ms darkness (only for NIKON!) # define IRMP_TIMEOUT_NIKON_TIME_MS 29500L // 2nd timeout after 29.5 ms darkness typedef uint16_t PAUSE_LEN; # define IRMP_TIMEOUT_NIKON_LEN (PAUSE_LEN)(F_INTERRUPTS * IRMP_TIMEOUT_NIKON_TIME + 0.5) #else # if (F_INTERRUPTS * IRMP_TIMEOUT_TIME_MS
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
irmpprotocols.h
otherwise some JVC codes will not be accepted #define IRMP_TIMEOUT_TIME 15500.0e-6 // timeout after 15.5 ms darkness #define IRMP_TIMEOUT_TIME_MS 15500L // timeout after 15.5 ms darkness #if IRMP_SUPPORT_NIKON_PROTOCOL == 1 # define IRMP_TIMEOUT_NIKON_TIME 29500.0e-6 // 2nd timeout after 29.5 ms darkness (only for NIKON!) # define IRMP_TIMEOUT_NIKON_TIME_MS 29500L // 2nd timeout after 29.5 ms darkness typedef uint16_t PAUSE_LEN; # define IRMP_TIMEOUT_NIKON_LEN (PAUSE_LEN)(F_INTERRUPTS * IRMP_TIMEOUT_NIKON_TIME + 0.5) #else # if (F_INTERRUPTS * IRMP_TIMEOUT_TIME_MS
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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PDF
BT-WiFi-52rf5541.pdf
.................................................................................. 13 FIGURE 4 FLIP51 ARCHITECTURE.................................................................................................................. 15 FIGURE 5 FLIP51 SPACE................................................
in „JDY-40 ein neuer Geniestreich aus China?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tlc5620.pdf
(R-PDSO-G**) PLASTIC SMALL-OUTLINE PACKAGE 14 PIN SHOWN PINS ** 0.050 (1,27) 8 14 16 DIM 0.020 (0,51) 0.010 (0,25) M 0.197 0.344 0.394 0.014 (0,35) A MAX (5,00) (8,75) (10,00) 14 8 A MIN 0.189 0.337 0.386 (4,80) (8,55) (9,80) 0.244 (6,20) 0.228 (5,80) 0.008 (0,20) NOM 0.157 (4,00) 0.150 (3,81) Gage
in „DAC Schieberegister“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLC5620.pdf
(R-PDSO-G**) PLASTIC SMALL-OUTLINE PACKAGE 14 PIN SHOWN 0.050 (1,27) PINS ** 8 14 16 DIM 0.020 (0,51) 0.010 (0,25) M 0.197 0.344 0.394 0.014 (0,35) A MAX (5,00) (8,75) (10,00) 14 8 A MIN 0.189 0.337 0.386 (4,80) (8,55) (9,80) 0.244 (6,20) 0.228 (5,80) 0.157 (4,00) 0.008 (0,20) NOM 0.150 (3,81) Gage
in „DAC Steuerung mittels SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rt9198__rt9198a_richtek_DT_93R.pdf
( 5 V ( 5 i i P 0 P 0 E E e g g l 2 l 2 V ) o ) u ( 1 t ( 1 t p u 0 u 0 O O Time (10μs/Div) Time (1ms/Div) DS9198/A-14 April 2011 www.richtek.com 7 RT9198/A Noise Noise V = 4.5V VOUT = 1.8V V = 4.5V VOUT= 1.8V IN IN CIN C OUT= 1uF LOAD= 150mA CIN C OUT= 1uF No Load 400 400 200 ) ) 200 μ μ ( 0 ( 0 i i o -200 o -200 N N -400 -400 f = 10Hz to 100kHz f = 10Hz to 100kHz Time (5ms/Div) Time (5ms/Div) www.richtek.com DS9198/A-14 April 2011 8 RT9198/A Applications Information Likeanylow-dropoutregulator,theexternalcapacitorsused Enable Function for the RT9198/A must be carefully
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rt9198__rt9198a_richtek_VR.pdf
( 5 V ( 5 i i P 0 P 0 E E e g g l 2 l 2 V ) o ) u ( 1 t ( 1 t p u 0 u 0 O O Time (10μs/Div) Time (1ms/Div) DS9198/A-14 April 2011 www.richtek.com 7 RT9198/A Noise Noise V = 4.5V VOUT = 1.8V V = 4.5V VOUT= 1.8V IN IN CIN C OUT= 1uF LOAD= 150mA CIN C OUT= 1uF No Load 400 400 200 ) ) 200 μ μ ( 0 ( 0 i i o -200 o -200 N N -400 -400 f = 10Hz to 100kHz f = 10Hz to 100kHz Time (5ms/Div) Time (5ms/Div) www.richtek.com DS9198/A-14 April 2011 8 RT9198/A Applications Information Likeanylow-dropoutregulator,theexternalcapacitorsused Enable Function for the RT9198/A must be carefully
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DiscoveryF3_adap.pdf
PD6_UART2_RX PIJ499 52 PIJ4052PB15_SPI2_MOSI Bar pressure sensor 3 COR140P10K402 PD5_UART2_TX PIJ410 51 PIJ4051PD9_UART3_RX I1L2L2 R16150P10K502 PB5_SPI3_MOSI PIJ411 50 PIJ4050PD8_UART3_TX GND VCC3V 220 Ohm R13160P10K602 P4P4 PB3_SPI3_SCK PIJ412 49 PIJ4049 U4U4 PIR130PIR1301 PD7_EXTI4 PIJ413 48 PIJ4048
in „[V] STM32F3 Discovery + Adapterboard für ein FlyingF3 (FlightControl) mit der Taulabssoftware“ · Markt ·
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PDF
hp_3562-63a-Datenblatt.pdf
Option 921) is useful. This set of utilities runs on a PC and converts HP 3563A and 3562A files to MS-DOS® format. Conversion utilities are also included to make analyzer files compatible with MATRIX X from Integrated Systems, and PC-Matlab from The Mathworks. Characterize Electronic Networks and Signals
in „Spektrum berechnen mit Mikrocontroller“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
BTT_SKR_V1.4-SCH.pdf
J8 2 RV19 M R T M M U1 E1-STP SLP1B DC3.3V 1B 3 DC3.3V A Z-STOP 3 PWRDETD CG0603MLC-3.3LE DC3.3V E1MS E1-DIR STP V 2 VBB A PWRDET GND 1 DIR G 1 R10 1K P1.0 LPC1768/LPC1769 2 1 R18 10K DC3.3V 3 J5 2 RV17 CG0603MLC-3.3LE 1 9 9 9 9 9 9 9 9 9 9 8 8 8 8 8 8 8 8 8 8 7 7 7 7 E1-SLP 4 E0DET 3 E0_DET GND RN1
in „Induktiven Sensor (6-36V) an Microcontroller/Mainboard anschließen“ · Mikrocontroller und Digitale Elektronik ·
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BTT_SKR_V1.4SCH.pdf
J8 2 RV19 M R T M M U1 E1-STP SLP1B DC3.3V 1B 3 DC3.3V A Z-STOP 3 PWRDETD CG0603MLC-3.3LE DC3.3V E1MS E1-DIR STP V 2 VBB A PWRDET GND 1 DIR G 1 R10 1K P1.0 LPC1768/LPC1769 2 1 R18 10K DC3.3V 3 J5 2 RV17 CG0603MLC-3.3LE 1 9 9 9 9 9 9 9 9 9 9 8 8 8 8 8 8 8 8 8 8 7 7 7 7 E1-SLP 4 E0DET 3 E0_DET GND RN1
in „3D-Drucker, Mainboard-Lüfteranschluss erweitern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
TICKS2WAITONE_HALF 155 //!< Wait one and a half bit period. #endif #ifdef BR_19200 #define TICKS2COUNT 51 //!< Ticks between two bits. #define TICKS2WAITONE 51 //!< Wait one bit period. #define TICKS2WAITONE_HALF 77 //!< Wait one and a half bit period. #endif #ifdef BR_38400 #define TICKS2COUNT 25 //!< Ticks
in „Atmega329P + SoftUART - Timing ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MLX90223ESO.pdf
OP 11 15 19.4 mA Operating Current Low DD low B<B RP 3.9 5 6.9 mA Data Valid Delay TDLY DB>B hys 25 ms o Thermal Resistance RTH Operating SO Package 575 C/W Thermal Resistance RTH Operating UA Package 206 oC/W # MLX90223 Magnetic Specifications o DC Operating Parameters: T = -A0 to 85 C, V DD = 3.75 to
in „Hallsensor prüfen mit multimeter“ · Analoge Elektronik und Schaltungstechnik ·
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edison-module_HG_331189.pdf
70-pin connector part numbers Hirose P/N Mating stack height DigiKey P/N Mouser P/N DF40C-70DS-0.4V(51) 1.5 mm n/a 798-DF40C70DS04V51 DF40C(2.0)-70DS-0.4V(51) 2.0 mm H11908CT-ND (low quantity) 798-DF40C2070DS04V51 H11908TR-ND (tape and reel) DF40HC(3.0)-70DS-0.4V(51) 3.0 mm n/a n/a The Intel® Edison Arduino
in „Intel Edison Breakout Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mikrobeginner_gesamt.pdf
ZL ; + 2 LcdLineSet4: ldi ZH,HIGH(n50ms) ; + 1 ldi rmp,0xC0+20 ; Zeile 4 ldi ZL,LOW(n50ms) ; + 1 rjmp LcdLineSetRmp rjmp Warte ; + 2, gesamt = 11 LcdLineSetRmp: Warte5ms: ; Warteroutine 5 ms rcall LcdC4Byte ; Ausgabe Kontrollwort .equ c5ms
in „Attiny26 PortD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Eurotec.pdf
strength: 2kgs, 10s IEC68-2-21 Ub Terminal fatigue: 1kg, 3 cycles IEC68-2-21 Ub Mechanical shock: 100g, 6ms. IEC68-2-27 Ea Solvent resistance: alcohol, trichlorethane, freon IEC68-2-45 EUROTEC - THE EUROPEAN ADVANTAGE 4 T H R E E Y E A R W A R R A N T Y During every step in the production of Eurotec products
in „Distributor für M/A-COM in Deuschland“ · HF, Funk und Felder ·
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Datei
oled_2313demo.c
0x22, 0x63, 0x49, 0x49, 0x7f, 0x36, 0x00 }, // Ascii 51 = '3' { 0x18, 0x1c, 0x16, 0x13, 0x7f, 0x7f, 0x10, 0x00 }, // Ascii 52 = '4' { 0x00, 0x27, 0x67, 0x45, 0x45, 0x7d, 0x39, 0x00 }, // Ascii 53 = '5' { 0x00, 0x3e, 0x7f, 0x49, 0x49, 0x7b, 0x32, 0x00 }, /
in „I2C Display einfache Frage“ · Mikrocontroller und Digitale Elektronik ·
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LTC1799f_oscillator_info.pdf
Resistor Sets the Frequency TheLTC 1799isaprecisionoscillatorthatiseasytouse Fast Start-Up Time: <1ms and occupies very little PC board space. The oscillator 1kHz to 33MHz Frequency Range frequency is programmed by a single external resistor TM Low Profile (1mm) ThinSOT Package (RSET).TheLTC1799hasbeendesignedforhighaccuracy
in „Ein Rechteckgenerator mit LTC1799 - Nachbrenner?“ · Analoge Elektronik und Schaltungstechnik ·
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TDA1591.pdf
mm dimensions) A A 1 A2 (1) (1) Z (1) UNIT max. min. max. b b1 c D E e e1 L M E MH w max. mm 4.2 0.51 3.2 1.73 0.53 0.36 26.92 6.40 2.54 7.62 3.60 8.25 10.0 0.254 2.0 1.30 0.38 0.23 26.54 6.22 3.05 7.80 8.3 inches 0.17 0.020 0.13 0.068 0.021 0.014 1.060 0.25 0.10 0.30 0.14 0.32 0.39 0.01 0.078 0.051
in „TDA 7313 input AM / FM“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
RGB_LED_10bitPWM.asm
in accu1, led_port andi accu1, 0b00000111 or accu2, accu1 out led_port, accu2 main2: sbrs Flag, neu_ms rjmp Programm_XXX cbr Flag, 1<<neu_ms rcall HSV_2_RGB rcall Get_PWM_LED rjmp Programm_XXX ;------------------------------------------------------------------- ;HSB -> RGB Wandler, in AVR-Assembler, für
in „Mega8 Assembler RGB Fader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BMA150_DataSheet_Rev1.4_14Jan2008.pdf
automatic wake-up. Table 5: Settings of wake_up_pause wake_up_pause<1:0> Sleep phase duration 00 20 ms 01 80 ms 10 320 ms 11 2560 ms 3.1.6 Shadow_dis BMA150 provides the possibility to block the update of data MSB while LSB are read out. This avoids a potential mixing of LSB and MSB of successive conversion
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cc1100.pdf
of clock periods after Event 0 before Event 1 times out. Setting t Event1 0 (000) 4 (0.111 – 0.115 ms) 1 (001) 6 (0.167 – 0.173 ms) 2 (010) 8 (0.222 – 0.230 ms) 3 (011) 12 (0.333 – 0.346 ms) 4 (100) 16 (0.444 – 0.462 ms) 5 (101) 24 (0.667 – 0.692 ms) 6 (110) 32 (0.889 – 0.923 ms) 7 (111) 48 (1.333 –
in „Scrambler für Funkstrecke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS-00129-GD25Q41B-Rev2.0.pdf
0.2 us SUS CS# High To Next Command After Suspend 20 us tW Write Status Register Cycle Time 10 30 ms tPP Page Programming Time 0.35 2.4 ms tSE Sector Erase Time 50 200\400 (1) ms tBE Block Erase Time(32K\64K) 0.18\0.25 0.6\0.8 s t Chip Erase Time 1.5 3.0 s CE 45 Uniform Sector Dual and Quad Serial Flash GD25Q41B Note: 1. Max ValuetSEwith <50K cycles is 200 ms and >50K & <100K cycles is 400 ms. Figure 39. Serial Input Timing tSHSL CS# tCHSL tSLCH tCHSH tSHCH SCLK tDVCH tCHCL tCHDX tCLCH SI MSB LSB SO High-Z Figure 40. Output Timing CS# tCLH tSHQZ SCLK tCLQV
in „ESP8266-07 Reset Loop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BMP280_2018.pdf
3.3.3) handheld device low-power (e.g. Normal Ultra high ×16 ×2 4 tstandby 10.0 0.92 resolution 62.5 ms Android) handheld device dynamic (e.g. Normal Standard ×4 ×1 16 tstandby 83.3 1.75 Android) resolution 0.5 ms Weather Ultra low monitoring Forced power ×1 ×1 Off 1/min 1/60 full (lowest power) Elevator / floor Standard tstandby change Normal resolution ×4 ×1 4 125 ms 7.3 0.67 detection Low tstandby Drop detection Normal power ×2 ×1 Off 0.5 ms 125 full Indoor Normal Ultra high ×16 ×2 16 tstandby 26.3 0.55 navigation resolution 0.5 ms 3.9 Data readout To read out data
in „BME680 Berechnung Temperatur Luftfeuchtigkeit Druck Gas Fragen Initialisierung Assembler ASM ATmega8“ · Mikrocontroller und Digitale Elektronik ·
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ATS2503.pdf
General GPIO_F4 BI Z purpose I/O port F Bit4 of MMC/SD Card 30 MMC_D4 BI 10mA / PU50k data bus Bit0 of MS Card data MS_D0 BI / PD50k bus Bit5 of General GPIO_F5 BI Z purpose I/O port F Bit5of MMC/SD Card MMC_D5 BI 10mA / PU50k 31 data bus Bit1 of MS Card data MS_D1 BI / PD50k bus Low resolution A/D LRADC3
in „Hilfe gesucht zum IC "ATS2503"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LG4573A_DS_V1.1.5__1_.pdf
...................................................................................................51 6.2.1 00h – N o Operation ...............................................................................................51 6.2.2 01h – Softw are Reset................................................
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at42qt1070.pdf
with the drift compensation mechanism. The drift mechanism will drift toward touch at a rate of 160 ms × 18 = 2.88 seconds and away from touch at a rate of 160 ms × 6 = 0.96 seconds. The 160 ms is based on 20 × 8 ms cycles. If the cycle time exceeds 8 ms then the overall times will be extended to match
in „QTOUCH Controller Atmel AT42QT1070 Timing Problem bei I2C ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
isl94203.pdf
UVLOR UVR Threshold - All Cells Overvoltage Lock-out Detection Time tOVLO Normal Operating Mode 176 ms 5 consecutive samples over the limit (min = 160ms, max = 192ms) Undervoltage Lock-out Detection tUVLO Normal Operating Mode 176 ms Time 5 consecutive samples under the limit (min = 160ms, max = 192ms
in „Registerwerte verändern von Intersil ISL94203“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLC2543.pdf
) (21,6) (21,8) 84 1.141 1.165 1.047 1.063 (28,99) (29,59) (26,6) (27,0) 26 27 28 1 2 3 4 0.020 (0,51) 0.080 (2,03) 0.010 (0,25) 0.064 (1,63) 0.020 (0,51) 0.010 (0,25) 0.055 (1,40) 0.045 (1,14) 0.045 (1,14) 0.035 (0,89) 0.045 (1,14) 0.028 (0,71) 0.022 (0,54) 0.035 (0,89) 0.050 (1,27) 4040140/D 10/96
in „externer A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TOBIAS_stromsenke.c
*****************************************************************/ #include <stdio.h> #include <reg51.h> #include <irq52.h> void InitPort(void); void Delay(unsigned int time); void InitLcd(void); void ClearLcd(void); void GotoLine(void); void WriteLcd(char lcd_param); void LcdBusy(void); #define ENA
in „port einlesen 8051“ · Mikrocontroller und Digitale Elektronik ·
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Datei
adc_test_001.c
void main(void) { uint16_t i=0; uint8_t z; char buffer[40]; //Lokale Variablen // const uint16_t baud=51; const uint16_t UBRR = F_CPU / (16 * BAUD)-1; //Der "Baud-Rate Parameter" wird durch die Frequenz und //der vorhergesehen Baud-Rate berechnet (siehe Datenblatt S.143) PORTA=0x00; //PORTA als Eingang PORTD=0xF1; //RS232 Schnittstelle USART_Init(UBRR); ADC_Init(); while(1) { for(z=0;z<100;z++) _delay_ms(5); sprintf(buffer,"Messung %i:%i\n\r",i+1,ADC_Conversion()); USART_Puts(buffer); i++; } } void USART_Init(const uint16_t UBRR) { UCSRC |= (0<<UPM1) | (1<<UCSZ1) | (1<<UCSZ0); /* Asynchrone Operation
in „ADC/RS232 mit ATmega32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcducnet.c
#include <reg51.h> #include <intrins.h> sbit DB4=0xB0; sbit DB5=0xB1; sbit DB6=0xB2; sbit DB7=0xB3; sbit RS=0xB4; sbit E=0xB5; void tst_nop (void) { _nop_ (); // delay _nop_ (); _nop_ (); _nop_ (); _nop_ (); _nop_ (
in „LCD ansteuern, fragen zu tutorial in assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Init_Adam.c
//ICC-AVR application builder : 05.01.2015 08:44:51 // Target : T2313 // Crystal: 16.000Mhz #include <iot2313v.h> #include <macros.h> void port_init(void) { PORTA = 0x00; //Unused (Reset + XTAL) DDRA = 0x00; PORTB = 0x38; //ATTN,ACK + 3 LEDs DDRB = 0x47
in „ATTiny2313 läuft nicht immer an“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Init_Eva.c
//ICC-AVR application builder : 05.01.2015 08:44:51 // Target : T2313 // Crystal: 16.000Mhz #include <iot2313v.h> #include <macros.h> void port_init(void) { PORTA = 0x00; //Unused (Reset + XTAL) DDRA = 0x00; PORTB = 0x38; //ATTN,ACK + 3 LEDs1 DDRB = 0x47
in „ATTiny2313 läuft nicht immer an“ · Mikrocontroller und Digitale Elektronik ·
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PDF
217369.pdf
Component Program of devices made to JEDEC placement on the pc board k A Underwriters Specifications MS-018 footprint pattern facilitates s , Laboratories Inc., ® (square packages) and MS- inspection as well as c 016-AE (rectangular permitting the heat source c File No. E28476 packages). to penetrate to
in „Kühlkörper TO3 Befestigungslöcher zu groß?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
GPS-Compendium_Book__GPS-X-02007_.pdf
signal travel time (Figure 6). Satellite and Satellite and receiver clock receiver clock display: 0ms display: 67.3ms 0ms 0ms 75ms 25ms 75ms 25ms 50ms 50ms Signal Signal transmission (start time) Signal reception (stop time) Figure 6: Determining the signal travel time As with the example of the car,
in „Verschlüsselte Militär(?)daten innerhalb des GPS-Signals“ · HF, Funk und Felder ·
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PDF
N79A8211.pdf
...................................................................................................51 12.4 中断输入................................................................................................................................................51 13 可编程定时器/计数器..............................
in „Induktionskochfeld hacken / optimieren“ · Haus & Smart Home ·
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PDF
THC63LVDM83R_63R.pdf
TA3 RS 2 47 TA2 TA5 3 54 TA2 TA5 3 46 GND TA6 4 53 GND TA6 4 45 TA1 GND 5 52 TA1 GND 5 44 TA0 TB0 6 51 TA0 TB0 6 43 N/C TB1 7 50 TD0 TB1 7 42 8 49 8 41 LVDS GND TD2 9 48 LVDS GND VCC 9 40 TA- VCC 10 47 TA- TB2 10 39 TA+ TD3 TA+ TB3 TB- TB2 11 46 TB- GND 11 38 TB+ TB3 12 45 TB+ TB4 12 37 LVDS VCC GND 13
in „NoteBook TFT/LCD an PC(VGA) anschliessen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430f5529.pdf
01h Port mapping 2 10h 10h 10h 10h 10h 10h 10h 10h 04h 04h 04h 04h 04h 04h 04h 04h Port 1 and 2 2 51h 51h 51h 51h 51h 51h 51h 51h 02h 02h 02h 02h 02h 02h 02h 02h Port 3 and 4 2 52h 52h 52h 52h 52h 52h 52h 52h Port 5 and 6 2 02h 02h 02h 02h 02h 02h 02h 02h 53h 53h 53h 53h 53h 53h 53h 53h Port 7 and 8
in „Tastatur komplett selbst erstellen“ · PC Hard- und Software ·
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PDF
ADXL330.pdf
SUPPLY OperatingVoltage Range 1.8 3.6 V Supply Current VS= 3V 320 μA 7 Turn-OnTime No external filter 1 ms TEMPERATURE OperatingTemperature Range −25 +70 °C 1 2Defined as coupling between any two axes. 3Sensitivity is essentially ratioSetric to V . 4Defined as the output change from ambient-to-maximum temperature
in „Lagebestimmung mit Beschleunigssensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
l293d.pdf
. . . . .+ 3 V. . . . . . . . . . . . −3 V to V O CC2 Peak output current, IO(nonrepetitive, t ≤ 5 ms): L293 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ±2 A Peak output current, IO(nonrepetitive, t ≤ 100 µs): L293D . . . . . . . . . . . . . . . . . . . . . . .
in „Motorentreiber L293D“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD9857.pdf
1 - C 0 –1 1 –1.3071895838 1.30718958378 0 1 –1.3071895838 1.30718958378 0 Figure13.QPSK,65MHz,2.56MS/s Figure16.16-QAM,65MHz,2.56MS/s 1 1 CONST CONST 200m/DIV 200m/DIV 1 7 - - –1 8 –1 - 0 1 –1.3071895838 1.30718958378 0 –1.3071895838 1.30718958378 0 Figure14.64-QAM,42MHz,6MS/s Figure17.256-QAM,42MHz,6MS/s 1 CONST 200m/DIV 1 C –1 1 1 –1.3071895838 1.30718958378 0 Figure15.GMSKModulation,13MS/s Rev. C | Page 14 of 40 AD9857 MODES OF OPERATION TheAD9857 has three operating modes: of PDCLK.The PDCLK operates
in „Updatepin zur Aktivierung beschriebener Kontrollregister“ · Mikrocontroller und Digitale Elektronik ·
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AD9857.pdf
1 - C 0 –1 1 –1.3071895838 1.30718958378 0 1 –1.3071895838 1.30718958378 0 Figure13.QPSK,65MHz,2.56MS/s Figure16.16-QAM,65MHz,2.56MS/s 1 1 CONST CONST 200m/DIV 200m/DIV 1 7 - - –1 8 –1 - 0 1 –1.3071895838 1.30718958378 0 –1.3071895838 1.30718958378 0 Figure14.64-QAM,42MHz,6MS/s Figure17.256-QAM,42MHz,6MS/s 1 CONST 200m/DIV 1 C –1 1 1 –1.3071895838 1.30718958378 0 Figure15.GMSKModulation,13MS/s Rev. C | Page 14 of 40 AD9857 MODES OF OPERATION TheAD9857 has three operating modes: of PDCLK.The PDCLK operates
in „Mit MSP430F2013 parallele Datenübertragung programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Servicemanual_Hameg_HM_305-2.pdf
div 20µs 50kHz 50µs/div 50µs 20kHz 100µs/div 100µs 10kHz 200µs/div 200µs 5kHz 500µs/div 500µs 2kHz 1ms/div 1ms 1kHz 2ms/div 2ms 500Hz 5ms/div 5ms 200Hz 10ms/div 10ms 100Hz 20ms/div 20ms 50Hz 50ms/div 50ms 20Hz 100ms/div 100ms 10Hz 200ms/div 200ms 5Hz 500ms/div 500ms 2Hz Time base adjustment Note: The
in „Oszilloskop - Bildröhre läuft unzuverlässig“ · Analoge Elektronik und Schaltungstechnik ·
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Sinuswechselrichter.pdf
Kosten der Hardwareanpassung . . . . . . . . . . . . . . . . . . . . . . 49 5 Firmwareentwicklung 51 5.1 Konfiguration des Mikrocontrollers . . . . . . . . . . . . . . . . . . . . 51 5.2 Programmablauf der Main- und Interruptroutine . . . . . . . . . . . . . 53 5.3 Berechnung der Sinusreferenz . . .
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RTC-4553.pdf
46 RA 45 RA 44 RA 107 RA 106 RA 105 RA 104 C 1 1 0 0 Y10 y80 y40 y20 y10 10-year digit register RA 51 RA 50 RA 49 RA 48 RA 111 RA 110 RA 109 RA 108 D 1 1 0 1 C1 TPS 30ADJ CNTR 24/12 Control register 1 RA 55 RA 54 RA 53 RA 52 RA 115 RA 114 RA 113 RA 112 E 1 1 1 0 C2 BUSY PONC — * Control register 2 RA 59 RA 58 RA 57 RA 56 RA 119 RA 118 RA 117 RA 116 F 1 1 1 1 C3 SYSR TEST MS 1 MS 0 Control register 3 Same as MODE 0 Same as MODE 0 Note: TEST bit should be “0”. AC characteristics (Ta=-30°Cto+70°C, VDD=5V 10%, GND=OV) Timing chart Item Symbol Condition Min. Typ. Max. Unit _
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HM_TR_EN.pdf
maximum Unit HM-TR315 310.24 315 319.75 MHz HM-TR433 430.24 434 439.75 MHz HM-TR868 860.48 869 879.51 MHz HM-TR915 900.72 915 929.27 MHz Maximum transmission power Module P/N description minimum typical maximum Unit HM-TR315 8 dBm HM-TR433 8 dBm HM-TR868 4 dBm HM-TR915 4 dBm Receiving sensitivity Module
in „Sammelbestellung RFM12“ · Markt ·