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PDF
RFM12.pdf
microcontroller for parameter setting. Features: • Low costing, high performance and price ratio • Tuning free during production • PLL and zero IF technology • Fast PLL lock time • High resolution PLL with 2.5 KHz step • High data rate (up to 115.2 kbps
in „Beispielprogramm für RFM12 433MHz Funk-Module“ · Projekte & Code ·
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PDF
RFM12_hope_rf.pdf
microcontroller for parameter setting. Features: • Low costing, high performance and price ratio • Tuning free during production • PLL and zero IF technology • Fast PLL lock time • High resolution PLL with 2.5 KHz step • High data rate (up to 115.2 kbps
in „RFM12 - hängt in while (!(RF_PIN&(1<<SDO)));“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AoE3_chapter9.pdf
current-source circuit. As with the latter, the voltage drop is limited to a maximum of 40V (less at higher currents) at the high end; its lower dropout and low SET -derived B. Lower currents reference voltage allows operation down to ∼1.5V drop. The above regulator-derived current sources are best suited
in „Labornetzgerät - Fragen zum Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
lcdcon.asm
.def NextOp =r20 ;Zähler für Parameter eines Befehls .def tempm =r21 .def Flags =r22 .def XAdresseLow=r26 ;Writepointer Spalte .def ZeileL =r27 ;Writepointer Zeile LSB .def AdresseLow =r30 ;Readpointer Spalte .def AdresseHigh=r31 ;Readpointer Zeile ;PortB .equ EnLCD =0 ;LCD Spannung einschalten .equ
in „LCD Controller für 640x480 LCD mit mega8515“ · Projekte & Code ·
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Datei
LCD8.c
kann man nachher besser #define E 2 //sehen, was abgeht // Man kann das auch so machen #define RS_high sbi(PORTB,RS) //Zum bessern lesen des Codes #define RS_low cbi(PORTB,RS) #define E_high sbi(PORTB,E) #define E_low cbi(PORTB,E) pause (void) { long int i; for(i=0;i<1000;i++) asm volatile (" nop");
in „LCD- Wahnsinn!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Mega32.pdf
PAGEL low to XTAL1 high 150 ns BVPH BS1 Valid before PAGEL High 67 ns PHPL PAGEL Pulse Width High 150 ns PLBX BS1 Hold after PAGEL Low 67 ns t BS2/1 Hold after WR Low 67 ns WLBX t PAGEL Low to WR Low 67 ns PLWL t BS1 Valid to WR Low 67 ns BVWL t WR Pulse Width Low 150 ns WLWH WLRL WR Low to RDY/BSY Low 0 1 µs (1) WLRH WR Low to RDY/BSY High 3.7 4.5 ms (2) WLRH_CE WR Low to RDY/BSY High for Chip Erase 7.5 9 ms XLOL XTAL1 Low to
in „AVR Timer/Counter Zeit berechnen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
melodie.txt
E5 21 okt4: MOV A,f_high 0109 006D D3 SETB C 0110 006E 13 RRC A 0111 006F F5 21 MOV f_high,A 0112 0071 E5 20 MOV A,f_low 0113 0073 13 RRC A 0114 0074 F5 20 MOV f_low,A 0115 0076 80 03 SJMP okt31 0116 0078 B4 20 0D okt3: CJNE
in „PIC 18F2550 Töne erzeugen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dds_test.asm
r17,0x09 ldi r18,0x0E ldi r19,0x38 ldi r20,0xE3 ldi r21,0x8E ;Datenwörter ausgeben cbi portd,0 ;WRclk auf low cbi portd,1 ;fqud auf low out portc,r17 call warte10u sbi portd,1 ;wrclk erst high dann low call warte1u cbi portd,1 call warte1u out portc,r18 call warte10u sbi portd,1 ;wrclk erst high dann low call warte1u cbi portd,1 call warte1u out portc,r19 call warte10u sbi portd,1 ;wrclk erst high dann low call warte1u cbi portd,1 call warte1u out portc,r20 call warte10u sbi portd,1 ;wrclk erst high dann low call warte1u cbi portd,1 call warte1u out portc,r21 call warte10u sbi portd,1 ;wrclk
in „code problem mega16“ · Mikrocontroller und Digitale Elektronik ·
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Datei
gls330.bas
Lookupstr(in_array(gl_i) , Sdat1) Return 'Sending commands and data routines Send_dat: Reset Gl_a0 'CD low Gl_dat = Gl_byte Goto Gl_strobe Send_cmd: Set Gl_a0 'CD high Gl_dat = Gl_cmd Gl_strobe: Reset Gl_wr 'WR low ! nop Set Gl_wr 'WR high Reset Gl_a0 'CMD low Return Read_lcd: 'Returns gl_read Gl_cmd = Sys_mread Gosub Send_cmd Gl_tris = &B00000000 'Port input 'Make portd input Set Gl_a0 'Set A0 high Reset Gl_rd 'RD low ! nop Gl_read = Gl_inp 'PIND 'Assign data Set Gl_rd 'RD high Reset Gl_a0 'CD low high Gl_tris = &B11111111 'port output Return 'Place a message on the display assumes msg has the
in „LCD-Modul EPSON ECM-A0428 von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Display__W128128-XALG-1275535_.pdf
Unit Supply Voltage for Logic VCI Note 2.8 3.0 3.3 V Supply Voltage for Display VCC - 14 14.5 15 V High Level Input VIH - 0.8×VCI - VCI V - 0 - 0.2×VCI Low Level Input VIL V High Level Output VOH - 0.9×VCI - VCI V Low Level Output VOL - 0 - 0.1×VDDIO V 50% Check Board operating Current VCC =14.5V 23 24
in „Display EA W128128-XALG Strombedarf“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DS18B20.txt
One_Wire_Write ;1 Byte schreiben timer,2 ;2µs delay SCL: rcall One_Wire_Read ;1-Wire Byte lesen mov RawLow,accu ;Byte 0 des Scratchpad rcall One_Wire_Read ;1-Wire Byte lesen mov RawHigh,accu ;Byte 1 des Scratchpad rcall CalcT ret Readrom: ldi yl,low(romcopy) ;y-pointer auf Romcopy ldi yh,high(romcopy) ;
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PDF
Elektor.pdf
drive must be small enough to ensure that nF. The current through the output the output stage. The high resistance of the the amplifier remains stable. The valves proved to have rather large cathode resistor (R13) yields low distortion necessary gainroll-off is providedby fluctuations at a very low frequency
in „Röhrenverstärkerstufe ECC XX welches System zuerst?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NHD-0420CW_Manual.pdf
[7] [8] [9] [10] [11] [12] Timing Characteristics 6800-Series Parallel Interface: Condition 1: /CS low pulse width > E high pulse width [13] Condition 2: /CS low pulse width < E high pulse width [14] 8080-Series Parallel Interface: [15] Serial Interface: [16] I²C Interface: [17] Built-in Font Tables
in „Unbekannte Signale Oled-Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADG714_715.pdf
Low Voltage 0.4 V max ISINK= 6 mA C Digital Output Capacitance 4 pF typ OUT DIGITAL INPUTS (SCL, SDA) 2 Input High Voltage, VINH 0.7 VDD V min V + 0.3 V max DD Input Low Voltage, VINL –0.3 V min 0.3 VDD
in „Arduino Uno & ADG714 via SPI funktioniert nur sporadisch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCA9306.pdf
or SDA1 VI(EN) 2.5 V; VIH= 2.5 V; VIL 0 V; VM= 0.75 V (see Figure 8) PLH LOW to HIGH from (input) SCL2 or SDA2 0 2.0 0 1.2 0 0.6 ns propagation delay to (output) SCL1 or SDA1 PHL HIGH to LOW from (input) SCL2 or SDA2 0 2.5 0 1.5 0 0.75 ns propagation delay to (output) SCL1 or
in „[V] ONSEMI Dual bidirectional PCA9306 I2C-bus and SMBus Voltage-level translator (30St für10€)“ · Markt ·
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PDF
PCA9306.pdf
or SDA1 VI(EN) 2.5 V; VIH= 2.5 V; VIL 0 V; VM= 0.75 V (see Figure 8) PLH LOW to HIGH from (input) SCL2 or SDA2 0 2.0 0 1.2 0 0.6 ns propagation delay to (output) SCL1 or SDA1 PHL HIGH to LOW from (input) SCL2 or SDA2 0 2.5 0 1.5 0 0.75 ns propagation delay to (output) SCL1 or
in „[V] .Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (30St/10€)“ · Markt ·
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PDF
PCA9306.pdf
or SDA1 VI(EN) 2.5 V; VIH= 2.5 V; VIL 0 V; VM= 0.75 V (see Figure 8) PLH LOW to HIGH from (input) SCL2 or SDA2 0 2.0 0 1.2 0 0.6 ns propagation delay to (output) SCL1 or SDA1 PHL HIGH to LOW from (input) SCL2 or SDA2 0 2.5 0 1.5 0 0.75 ns propagation delay to (output) SCL1 or
in „[V] ca. 190St.Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (20St/8€)“ · Markt ·
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PDF
PCA9306.pdf
or SDA1 VI(EN) 2.5 V; VIH= 2.5 V; VIL 0 V; VM= 0.75 V (see Figure 8) PLH LOW to HIGH from (input) SCL2 or SDA2 0 2.0 0 1.2 0 0.6 ns propagation delay to (output) SCL1 or SDA1 PHL HIGH to LOW from (input) SCL2 or SDA2 0 2.5 0 1.5 0 0.75 ns propagation delay to (output) SCL1 or
in „V] ca. 170 St.Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (20St/8€)“ · Markt ·
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PDF
PCA9306.pdf
or SDA1 VI(EN) 2.5 V; VIH= 2.5 V; VIL 0 V; VM= 0.75 V (see Figure 8) PLH LOW to HIGH from (input) SCL2 or SDA2 0 2.0 0 1.2 0 0.6 ns propagation delay to (output) SCL1 or SDA1 PHL HIGH to LOW from (input) SCL2 or SDA2 0 2.5 0 1.5 0 0.75 ns propagation delay to (output) SCL1 or
in „[V] Konvolut Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator“ · Markt ·
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PDF
TLC2543.pdf
be capable of slewing the analog input voltage into a capacitance of 60 pF. CS 15 I Chipselect. A high-to-low transition on CS resets the internal counters and controls and enables DATA OUT, DATA INPUT, and I/O CLOCK. A low-to-high transition disables DATA INPUT and I/O CLOCK within a setup time. DATA
in „externer A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mp2307.pdf
Amplifier Voltage Gain) A EA 400 V/V Error Amplifier Transconductance G EA ∆IC= ±10µA 820 µA/V (5) High-Side Switch On-Resistance R DS(ON)1 100 mΩ Low-Side Switch On-Resistance(5) R DS(ON)2 100 mΩ High-Side Switch Leakage Current VEN = 0V, SW = 0V 0 10 µA Upper Switch Current Limit Minimum Duty Cycle
in „Spannungsregelung mit MP1584 und MP2307“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mp2307.pdf
Amplifier Voltage Gain) A EA 400 V/V Error Amplifier Transconductance G EA ∆IC= ±10µA 820 µA/V (5) High-Side Switch On-Resistance R DS(ON)1 100 mΩ Low-Side Switch On-Resistance(5) R DS(ON)2 100 mΩ High-Side Switch Leakage Current VEN = 0V, SW = 0V 0 10 µA Upper Switch Current Limit Minimum Duty Cycle
in „Step Down - Stabil 5V 3A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mp2307.pdf
Amplifier Voltage Gain) A EA 400 V/V Error Amplifier Transconductance G EA ∆IC= ±10µA 820 µA/V (5) High-Side Switch On-Resistance R DS(ON)1 100 mΩ Low-Side Switch On-Resistance(5) R DS(ON)2 100 mΩ High-Side Switch Leakage Current VEN = 0V, SW = 0V 0 10 µA Upper Switch Current Limit Minimum Duty Cycle
in „Empfehlung Step Down Converter IC“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
lcd_test.c
OUTPUT); pinMode(LCD_PIN_CS, OUTPUT); pinMode(LCD_PIN_CMD_DATA, OUTPUT); digitalWrite(LCD_VDD_PWR, LOW); digitalWrite(LCD_BL_PWR, LOW); digitalWrite(LCD_PIN_BACKLIGHT, HIGH); digitalWrite(LCD_PIN_CS, HIGH); SPI.begin(); SPI.beginTransaction(SPISettings(400000, MSBFIRST, SPI_MODE0)); digitalWrite(LCD_PIN_RESET
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PDF
ZXLD1366.pdf
Inductor Selection Recommended inductor values for the ZXLD1366 are in the range 68μH to 220μH. Higher values of inductance are recommended at higher supply voltages in order to minimize errors due to switching delays, which result in increased ripple and lower efficiency. Higher values of inductance
in „Spannungsteiler zwischen Arduino und KSQ“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2097320.pdf
Inductor Selection Recommended inductor values for the ZXLD1366 are in the range 68μH to 220μH. Higher values of inductance are recommended at higher supply voltages in order to minimize errors due to switching delays, which result in increased ripple and lower efficiency. Higher values of inductance
in „ZXLD1366 Beschaltung ADJ Pin“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HMX3033H-AnaSem.pdf
AnaSem 安纳森 Analog Semiconductor IC HMX3033H Series Low current consumption, 3.0mT High sensitivity CMOS Hall Magnetic Sensor Switch (IMPORTANT: Please check the last page for Genuine Product Labeling) Rev. E13-01 Website: www.anasemi.com Tel: +852-3590-
in „IC unbekannt (Marking Code 57PE12)“ · Fahrzeugelektronik ·
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PDF
lmx1602.pdf
Input Sensitivity −15 0 dBm CHARGE PUMP ICPo-source RF Charge Pump Output Current (See VCPo = V CC/2, High Gain Mode −1600 µA ICP Programming Description) VCPo = V /2, High Gain Mode 1600 µA o-sink CC ICPo-source VCPo = V CC/2, Low Gain Mode −160 µA ICPo-sink VCPo = V CC/2, Low Gain Mode 160 µA ICPo-Tri
in „Software <> Funkgerät, Kommunikation“ · HF, Funk und Felder ·
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PDF
adxl380.pdf
C,V =S.3V,andV DDIO=3.3V) Limit Parameter Symbol TestConditions/Comments Min Max Unit DIGITALINPUT LowLevelInputVoltage V 0.3×V V IL DDIO HighLevelInputVoltage VIH 0.7×V DDIO V LowLevelInputCurrent I Inputvoltage(V )=V −0.1 µA IL IN DDIO HighLevelInputCurrent IH VIN0V 0.1 µA DIGITALOUTPUT LowLevelOutputVoltage
in „ADXL380 mit SPI auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_ds1820.pdf
storing energy on an function commands. internalcapacitorduringperiodsoftimewhenthesignal line is high and continues to operate off this power One control function command instructs the DS1820 to source during the low times of the 1–Wire line until it perform a temperature measurement. The result of
in „Kennt sich irgendwer mit CVAVR aus, geht um DS1820“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1820_DAL.pdf
storing energy on an function commands. internalcapacitorduringperiodsoftimewhenthesignal line is high and continues to operate off this power One control function command instructs the DS1820 to source during the low times of the 1–Wire line until it perform a temperature measurement. The result of
in „DS1820 physikalisch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_ds1820.pdf
storing energy on an function commands. internalcapacitorduringperiodsoftimewhenthesignal line is high and continues to operate off this power One control function command instructs the DS1820 to source during the low times of the 1–Wire line until it perform a temperature measurement. The result of
in „CVAVR und DS1820 nix als Ärger!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1820.pdf
storing energy on an function commands. internalcapacitorduringperiodsoftimewhenthesignal line is high and continues to operate off this power One control function command instructs the DS1820 to source during the low times of the 1–Wire line until it perform a temperature measurement. The result of
in „1-Wire und DS1820 Testprog“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDS_DS18S20.pdf
storing energy on an function commands. internalcapacitorduringperiodsoftimewhenthesignal line is high and continues to operate off this power One control function command instructs the DS1820 to source during the low times of the 1–Wire line until it perform a temperature measurement. The result of
in „2x HW Uart / Sinnvoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1820.pdf
storing energy on an function commands. internalcapacitorduringperiodsoftimewhenthesignal line is high and continues to operate off this power One control function command instructs the DS1820 to source during the low times of the 1–Wire line until it perform a temperature measurement. The result of
in „DS1820 Umrechnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1820.pdf
storing energy on an function commands. internalcapacitorduringperiodsoftimewhenthesignal line is high and continues to operate off this power One control function command instructs the DS1820 to source during the low times of the 1–Wire line until it perform a temperature measurement. The result of
in „1-Wire Protokollablauf“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1820_eng-ds.pdf
storing energy on an function commands. internalcapacitorduringperiodsoftimewhenthesignal line is high and continues to operate off this power One control function command instructs the DS1820 to source during the low times of the 1–Wire line until it perform a temperature measurement. The result of
in „DS18S20, DS18B20, DS1820?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1820_DALLAS.pdf
storing energy on an function commands. internalcapacitorduringperiodsoftimewhenthesignal line is high and continues to operate off this power One control function command instructs the DS1820 to source during the low times of the 1–Wire line until it perform a temperature measurement. The result of
in „18x20 welches Messprinzip“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
lcdtext.asm
ldi YL, low(DDRAM+354) ldi YH, high(DDRAM+354) st Y+, temp ldi YL, low(DDRAM+365) ldi YH, high(DDRAM+365) st Y+, temp ldi YL, low(DDRAM+394) ldi YH, high(DDRAM+394) st Y+, temp ldi YL, low(DDRAM+405) ldi YH, high(DDRAM+405) st Y+, temp ldi YL, low(DDRAM+434) ldi YH, high(DDRAM+434) st Y+, temp ldi YL, low(DDRAM+445) ldi YH, high(DDRAM+445) st Y+, temp ldi YL, low(DDRAM+474) ldi YH, high(DDRAM+474) st Y+, temp ldi YL, low(DDRAM+485) ldi YH, high
in „@ Benedikt K./"Displaybauer" - Homepage?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcdtext_12pxl_RS232_RX.asm
,high(DDRAM+274) st Y+,temp ldi YL,low(DDRAM+285) ldi YH,high(DDRAM+285) st Y+,temp ldi YL,low(DDRAM+314) ldi YH,high(DDRAM+314) st Y+,temp ldi YL,low(DDRAM+325) ldi YH,high(DDRAM+325) st Y+,temp ldi YL,low(DDRAM+354) ldi YH,high(DDRAM+354) st Y+,temp ldi YL,low(DDRAM+365) ldi YH,high(DDRAM+365) st Y+,temp ldi YL,low(DDRAM+394) ldi YH,high(DDRAM+394) st Y+,temp ldi YL,low(DDRAM+405) ldi YH,high(DDRAM+405) st Y+,temp ldi YL,low
in „Pollin Display Optrex F-51154NF-FW-AA“ · Mikrocontroller und Digitale Elektronik ·
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Datei
1wire.s
zweite zeile rcall lcd_command ldi ZL, LOW(error_2*2) ; Adresse des Strings in den ldi ZH, HIGH(error_2*2) ; Z-Pointer laden rcall lcd_flash_string ; Unterprogramm gibt String aus der ; durch den Z-Pointer adressiert wird ret DS_error1: cbi
in „ds18s20 atmega16 asm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R1610C.PDF
Address High NCR0EH 94 C6h Non-Cache region0 End Address Low NCR0EL 94 CCh Non-Cache region1 Starts Address High NCR1SH 95 CAh Non-Cache region1 Starts Address Low NCR1SL 95 D0h Non-Cache region1 End Address High NCR1EH 96 CEh Non-Cache region1 End Address Low NCR1EL 95 D4h Non-Cache region2 Starts Address High NCR2SH 96 D2h Non-Cache region2 Starts Address Low NCR2SL 96 D8h Non-Cache region2 End Address High NCR2EH 97 D6h Non-Cache region2 End Address Low
in „Hilfe JTAG für IP Webcam ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
kanalwechsel.txt
//ATTENTION: Gain settings, Polar operations, Update rates have to be the same as first */ output_low(CS3); setup_adc_device(ADC_SELF,ADC_GAIN_1,ADC_UNIPOLAR,ADC_500); printf("ADC3 is calibrating\n\r"); delay_ms(3000); setup_adc_device(ADC_NORMAL,ADC_GAIN_1,ADC_UNIPOLAR,ADC_500); output_high(CS3); output_low
in „wechsel der Kanäle bei ADC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
kanalwechsel.txt
//ATTENTION: Gain settings, Polar operations, Update rates have to be the same as first */ output_low(CS3); setup_adc_device(ADC_SELF,ADC_GAIN_1,ADC_UNIPOLAR,ADC_500); printf("ADC3 is calibrating\n\r"); delay_ms(3000); setup_adc_device(ADC_NORMAL,ADC_GAIN_1,ADC_UNIPOLAR,ADC_500); output_high(CS3); output_low
in „AD7705 Kanalwechsel geht nicht!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bma150.pdf
Specification of four-wire SPI serial interface Interface parameters : Conditions Min. Typ. Max. unit Input - low level Vil_si V =1.62V to 3.6V 0.3*V V DDIO DDIO Input - high level Vih_si V DDIO1.62V to 3.6V 0.7*VDDIO V Output – low level Vol_SDI V =1.8V, iol=3 mA 0.4 V DDIO Output – high level Voh_SDI V DDIO1.8V
in „ARDUINO: Neigungsmesser bauen (Steigung/Gefälle)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
FunksteckdoseQuigg.ino
@ 2MHz for geneating PWM pulses, but there is no need for 16 bit accurancy. // // 0 |-|___ 1 clk high, 3 clk low // 1 |---|_ 3 clk high, 1 clk low // S |-|_______ sync 1 clk high, 7 clk low // // My remote plugs do detect signals with a clk duration between 308us and 385us // #include <Arduino.h> //
in „LIDL/BAT Funksteckdose Protokoll reverse-engineering“ · Mikrocontroller und Digitale Elektronik ·
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Datei
gpib.c
tx_state = GPIB_TX_WAIT_FOR_NRFD; count = TIMEOUT; break; case GPIB_TX_WAIT_FOR_NRFD: // Wait for NRFD high if (PORTCbits.RC1 == 1 || count--<=0) tx_state = GPIB_TX_SET_DAV_LOW; break; case GPIB_TX_SET_DAV_LOW: // DAV = 0; TRISCbits.TRISC0 = 0; tx_state = GPIB_TX_WAIT_FOR_NDAC; count = TIMEOUT; break; case
in „GPIB-nach-USB-Konverter“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Tttiny_test_3.ino
schalter; } } schalter: if(schalten) { if(schalter1 < 17) { if(schalter1 == 0) { digitalWrite(Pin1, LOW); //Serial.println("pin1 low"); } else { digitalWrite(Pin1, HIGH); // Serial.println("pin1 high"); } } if(schalter2 < 17) { if(schalter2 == 0) { digitalWrite(Pin2, LOW); // Serial.println("pin2 low"); } else { digitalWrite(Pin2, HIGH); //Serial.println("pin2 high"); } } if(schalter3 < 17) { if(schalter3 == 0) { digitalWrite(Pin3, LOW); //Serial.println("pin3 low"); } else { digitalWrite(Pin3, HIGH); // Serial.println("pin3 high"
in „Attiny 167(Digispark Pro) USB Verbindung unterbricht nach Programmupload“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1315.pdf
sequence: 1. Power ON V DD (4) 2. After V DD become stable, wait at least 20ms (t 0, set RES# pin LOW (logic low) for at least 3us (t ) 1 and then HIGH (logic high). (1) 3. After set RES# pin LOW (logic low), wait for at least 3us (t ). T2en Power ON V CC. 4. After V CC become stable, send command AFh
in „I2C Display einfache Frage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1315.pdf
sequence: 1. Power ON V DD (4) 2. After V DD become stable, wait at least 20ms (t 0, set RES# pin LOW (logic low) for at least 3us (t ) 1 and then HIGH (logic high). (1) 3. After set RES# pin LOW (logic low), wait for at least 3us (t ). T2en Power ON V CC. 4. After V CC become stable, send command AFh
in „I2C Display einfache Frage“ · Mikrocontroller und Digitale Elektronik ·