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e8_manual_5_July_2008.pdf
at if used before) Alt-M-F Ctrl-I Display Ignition Map1 (2D, first range if just started, last range it was left at if used Alt-M-I before) Ctrl-E Display Engine Data Panel Alt-P-E Ctrl-O Display Output Options Panel Alt-O-O
in „Vollprogrammierbare Zündanlage für 1Zylinder 2 und 4 Takt Motoren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC_18F8722_Data_Sheet.pdf
Compare/PWM Register 1 Low Byte 59 CCPR1H Enhanced Capture/Compare/PWM Register 1 High Byte 59 CCP1CON P1M1 P1M0 DC1B1 DC1B0 CCP1M3 CCP1M2 CCP1M1 CCP1M0 59 CCPR2L Enhanced Capture/Compare/PWM Register 2 Low Byte 59 CCPR2H Enhanced Capture/Compare/PWM Register 2 High Byte 59 CCP2CON P2M1 P2M0 DC2B1 DC2B0 CCP2M3 CCP2M2 CCP2M1 CCP2M0 59 CCP3CON P3M1 P3M0 DC3B1 DC3B0 CCP3M3 CCP3M2 CCP3M1 CCP3M0 59 CCP4CON — — DC4B1 DC4B0 CCP4M3 CCP4M2 CCP4M1 CCP4M0 61 CCP5CON — — DC5B1 DC5B0 CCP5M3 CCP5M2 CCP5M1 CCP5M0 61 Legend: —
in „PIC 18F6527 mit 32MHz Takten“ · Mikrocontroller und Digitale Elektronik ·
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xc164_um_v2.1_2004_03_per.pdf
Control Bank 1 Bank 2 Output Bitfield Bank 1 Bank 2 Output Bitfieldin Pin CC1DRM Pin CC2DRM CC0 CC8 – DR0M CC16 CC24 CC16IO DR0M CC1 CC9 – DR1M CC17 CC25 CC17IO DR1M CC2 CC10 – DR2M CC18 CC26 CC18IO DR2M CC3 CC11 – DR3M CC19 CC27 CC19IO DR3M CC4 CC12 – DR4M CC20 CC28 CC20IO DR4M CC5 CC13 – DR5M CC21 CC29
in „Unterschied Compare match und Period Match“ · Mikrocontroller und Digitale Elektronik ·
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Mikrocontroller-PIC18F2420.pdf
50, 169, 170 SSPADD MSSP Address Register in I C™ Slave Mode. MSSP Baud Rate Reload Register in I C M0000 0000e.50, 170 SSPSTAT SMP CKE D/A P S R/W UA BF 0000 0000 50, 162, 171 SSPCON1 WCOL SSPOV SSPEN CKP SSPM3 SSPM2 SSPM1 SSPM0 0000 0000 50, 163, 172 SSPCON2 GCEN ACKSTAT ACKDT ACKEN RCEN PEN RSEN SEN
in „Spannungseinbruch beim Sampeln des Signals“ · Mikrocontroller und Digitale Elektronik ·
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16F648a_40044F.pdf
xxxx 55 16h CCPR1H Capture/Compare/PWM Register (MSB) xxxx xxxx 55 17h CCP1CON — — CCP1X CCP1Y CCP1M3 CCP1M2 CCP1M1 CCP1M0 --00 0000 55 18h RCSTA SPEN RX9 SREN CREN ADEN FERR OERR RX9D 0000 000x 72 19h TXREG USART Transmit Data Register 0000 0000 77 1Ah RCREG USART Receive Data Register 0000 0000 80
in „16f627A schaltet RA5 u RA6 nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATM16_doc2466.pdf
REGISTER SELECT (ADMUX) REGISTER (ADCSRA) (ADCH/ADCL) 1 0 R 4 3 2 1 0 F S L U U U U U N C T F S S S R E D M M M M M D D D D D D D 0 R A A A A A A A A [ TRIGGER D SELECT A MUX DECODER PRESCALER I N START C I L C S L L S N I CONVERSION LOGIC AVCC A G C INTERNAL 2.56V REFERENCE SAMPLE & HOLD COMPARATOR AREF 10
in „ISP - Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LGT8FX8P_databook_v1.0.4.pdf
– Programming Manual 1.0.4 LogicGreen Technologies Co., LTD [7:6] - 保留不用 5 HDR5 PF5 输出驱动控制; 1 = 80mA 驱动, 0 = 12mA 驱动 4 HDR4 PF4 输出驱动控制; 1 = 80mA 驱动, 0 = 12mA 驱动 3 HDR3 PF2 输出驱动控制; 1 = 80mA 驱动, 0 = 12mA 驱动 2 HDR2 PF1 输出驱动控制; 1 = 80mA 驱动, 0 = 12mA 驱动 1 HDR1 PD6 输出驱动控制; 1 = 80mA 驱动, 0 = 12mA 驱动 0 HDR0
in „Spot Welder Firmware Update fehlerhaft“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LGT8FX8P_databook_v1.0.4.pdf
– Programming Manual 1.0.4 LogicGreen Technologies Co., LTD [7:6] - 保留不用 5 HDR5 PF5 输出驱动控制; 1 = 80mA 驱动, 0 = 12mA 驱动 4 HDR4 PF4 输出驱动控制; 1 = 80mA 驱动, 0 = 12mA 驱动 3 HDR3 PF2 输出驱动控制; 1 = 80mA 驱动, 0 = 12mA 驱动 2 HDR2 PF1 输出驱动控制; 1 = 80mA 驱动, 0 = 12mA 驱动 1 HDR1 PD6 输出驱动控制; 1 = 80mA 驱动, 0 = 12mA 驱动 0 HDR0
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MC9S08DZ60.pdf
← (M) = $FF – (M) IX 73 4 rfwp COM oprx8,SP M ← (M) = $FF – (M) SP1 9E 63 ff 6 prfwpp CPHX opr16a Compare Index Register (H:X) with MemoryT 3E hh ll 6 prrfpp CPHX #opr16i (H:X) – (M:M + $0001) IMM 65 jj kk
in „Delay Funktion für Freescale“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ateme16.pdf
REGISTER SELECT (ADMUX) REGISTER (ADCSRA) (ADCH/ADCL) 1 0 R 4 3 2 1 0 F S L U U U U U N C T F S S S R E D M M M M M D D D D D D D 0 R A A A A A A A A [ TRIGGER D SELECT A MUX DECODER PRESCALER I N START C I L C S L L S N I CONVERSION LOGIC AVCC A G C INTERNAL 2.56V REFERENCE SAMPLE & HOLD COMPARATOR AREF 10
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ateme16.pdf
REGISTER SELECT (ADMUX) REGISTER (ADCSRA) (ADCH/ADCL) 1 0 R 4 3 2 1 0 F S L U U U U U N C T F S S S R E D M M M M M D D D D D D D 0 R A A A A A A A A [ TRIGGER D SELECT A MUX DECODER PRESCALER I N START C I L C S L L S N I CONVERSION LOGIC AVCC A G C INTERNAL 2.56V REFERENCE SAMPLE & HOLD COMPARATOR AREF 10
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pic16f88.pdf
extended Param No. Device Typ Max Units Conditions Supply Current (IDD )(2,3) All devices 1.8 2.3 mA -40°C 1.6 2.2 mA +25°C VDD = 4.0V 1.3 2.2 mA +85°C FOSC = 20 MH Z All devices 3.0 4.2 mA -40°C (HS Oscillator) 2.5 4.0 mA +25°C VDD = 5.0V 2.5 4.0 mA +85°C Extended devices 3.0 5.0 mA +85°C Legend:
in „auftrennen einer 2stelligen Dezimalzahl in asm (pic 16f88)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_PIC12F1822.pdf
6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0 on Page ANSELA — — — ANSA4 — ANSA2 ANSA1 ANSA0 125 CCP1CON P1M1 P1M0 DC1B1 DC1B0 CCP1M3 CCP1M2 CCP1M1 CCP1M0 226 INTCON GIE PEIE TMR0IE INTE IOCIE TMR0IF INTF IOCIF 91 PIE1 TMR1GIE ADIE RCIE TXIE SSP1IE CCP1IE TMR2IE TMR1IE 92 PIR1 TMR1GIF ADIF RCIF TXIF SSP1IF
in „PIC12F1822-PWM Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_PIC12F1822.pdf
6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0 on Page ANSELA — — — ANSA4 — ANSA2 ANSA1 ANSA0 125 CCP1CON P1M1 P1M0 DC1B1 DC1B0 CCP1M3 CCP1M2 CCP1M1 CCP1M0 226 INTCON GIE PEIE TMR0IE INTE IOCIE TMR0IF INTF IOCIF 91 PIE1 TMR1GIE ADIE RCIE TXIE SSP1IE CCP1IE TMR2IE TMR1IE 92 PIR1 TMR1GIF ADIF RCIF TXIF SSP1IF
in „Interrupt-PIC12F1822“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0 on Page ANSELA — — — ANSA4 — ANSA2 ANSA1 ANSA0 125 CCP1CON P1M1 P1M0 DC1B1 DC1B0 CCP1M3 CCP1M2 CCP1M1 CCP1M0 226 INTCON GIE PEIE TMR0IE INTE IOCIE TMR0IF INTF IOCIF 91 PIE1 TMR1GIE ADIE RCIE TXIE SSP1IE CCP1IE TMR2IE TMR1IE 92 PIR1 TMR1GIF ADIF RCIF TXIF SSP1IF
in „Auflösung PWM-Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0 on Page ANSELA — — — ANSA4 — ANSA2 ANSA1 ANSA0 125 CCP1CON P1M1 P1M0 DC1B1 DC1B0 CCP1M3 CCP1M2 CCP1M1 CCP1M0 226 INTCON GIE PEIE TMR0IE INTE IOCIE TMR0IF INTF IOCIF 91 PIE1 TMR1GIE ADIE RCIE TXIE SSP1IE CCP1IE TMR2IE TMR1IE 92 PIR1 TMR1GIF ADIF RCIF TXIF SSP1IF
in „8Bits und 2Bits in eine Integer-Variable“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0 on Page ANSELA — — — ANSA4 — ANSA2 ANSA1 ANSA0 125 CCP1CON P1M1 P1M0 DC1B1 DC1B0 CCP1M3 CCP1M2 CCP1M1 CCP1M0 226 INTCON GIE PEIE TMR0IE INTE IOCIE TMR0IF INTF IOCIF 91 PIE1 TMR1GIE ADIE RCIE TXIE SSP1IE CCP1IE TMR2IE TMR1IE 92 PIR1 TMR1GIF ADIF RCIF TXIF SSP1IF
in „Timer2 auf 10bit einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC12FLF1822PIC16FLF1823.pdf
6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0 on Page ANSELA — — — ANSA4 — ANSA2 ANSA1 ANSA0 125 CCP1CON P1M1 P1M0 DC1B1 DC1B0 CCP1M3 CCP1M2 CCP1M1 CCP1M0 226 INTCON GIE PEIE TMR0IE INTE IOCIE TMR0IF INTF IOCIF 91 PIE1 TMR1GIE ADIE RCIE TXIE SSP1IE CCP1IE TMR2IE TMR1IE 92 PIR1 TMR1GIF ADIF RCIF TXIF SSP1IF
in „PIC16lf1823 General purpose I/Os mit Schmitt Trigger ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC_Applikationen.PDF
many computers use ±12 volts for their RS-232 signals, each line should be capable of delivering 4 mA. In practice, most can provide more, up to perhaps 15 mA. The only problem with exploiting this free power is that the software running on the PC or terminal must be written or modified to keep the
in „MATRIX-Tastatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
db_atmega8.pdf
230.4k 3 8.5% 8 -3.5% 4 0.0% 9 0.0% 4 8.5% 10 -1.4% 250k 3 0.0% 7 0.0% 4 -7.8% 8 2.4% 4 0.0% 9 0.0% 0.5M 1 0.0% 3 0.0% – – 4 -7.8% – – 4 0.0% 1M 0 0.0% 1 0.0% – – – – – – – – Max (1) 1 Mbps 2 Mbps 1.152 Mbps 2.304 Mbps 1.25 Mbps 2.5 Mbps 1. UBRR = 0, Error = 0.0% 162 ATmega8(L) 2486P–AVR–02/06 ATmega8(L
in „ADC-Input und Auswahlverfahren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test-eeprom.txt
Konfiguration µC: '--------------------------------------------------------------------------' $regfile = "m16def.dat" $crystal = 16000000 $hwstack = 32 $swstack = 10 $framesize = 40 $baud = 19200 '--------PollinBoard----------------------------------- Ddrd = &B11100000 'D5-LED1, D6-LED2, D7-Summer Portd =
in „I2C Eeprom 24C16 - Speicherproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT90PWM2_2B_3_3B__2_.pdf
V I/O) OH CC (3) I = 2.1 mA, V = 5V 0.7 V V Output Low Voltage OL CC OL3 (RESET pin as I/O) IOL = 0.8 mA, VCC = 3V 0.5 V Output High Voltage(4) IOH = -0.6 mA, VCC = 5V 3.8 V V OH3 (RESET pin as I/O) IOH = -0.4 mA, VCC = 3V 2.2
in „Interrupt bem Flankenwechsel beim AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at90pwm3.pdf
V I/O) OH CC (3) I = 2.1 mA, V = 5V 0.7 V V Output Low Voltage OL CC OL3 (RESET pin as I/O) IOL = 0.8 mA, VCC = 3V 0.5 V Output High Voltage(4) IOH = -0.6 mA, VCC = 5V 3.8 V V OH3 (RESET pin as I/O) IOH = -0.4 mA, VCC = 3V 2.2
in „Schrittmotorsteuerung mir 90atPWM3“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC16F18344.pdf
Microchip Technology Inc. PIC16(L)F18324/18344 PIC16(L)F183XX Family Types ) ) e h s h s ) P d a r a y r M ( d r f M / z ) t F o F b o s A s 2 C A e t e s i W R ™ D ( e m ( m ( e t S t (s D D p a G k e - P P O A C C M S L D d u Device h r r r r M b a b / t i h p C o i / C b N S 2( C D P X P a b S g o g o t ( a ( I b 5 i m C T ( 0 E P e D a r e r e D D 0 H C 1 S I D P M P M 1 M PIC16(L)F18313 (1) 2048 3.5 256 256 6 5 1 1 1 1 2/1 2 2 1 1 1 2 1 Y Y Y Y I PIC16(L)F18323 (1) 2048 3.5 256 256 12 11 1 2 1 1 2/1 2 2 1 1 1 2 1
in „EEPROM Verständnisproblem beim PIC 16F18344“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_ATmega32.pdf
Wake Up Sources in the Different Sleep Modes Active Clock domains Oscillators Wake-up Sources d r l t M a l s R c n c r P H l e O d d E P L D S C r r b A h r / d r k kF k kA kA a u m a T T T I a m M a C t Sleep Mode c c c c c M So T E I I I T M T 2 S R A O I Idle X X X X X(2) X X X X X X ADC Noise (2)
in „Anschwingvorgang µC & Quarz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lsm6dsl.pdf
supply for I/O 1.62 3.6 V Gyroscope and accelerometer IddHP current consumption ODR = 1.6 kHz 0.65 mA in high-performance mode Gyroscope and accelerometer IddNM current consumption ODR = 208 Hz 0.45 mA in normal mode Gyroscope and accelerometer IddLP current consumption ODR = 52 Hz 0.29 mA in low-power
in „LSM6DSL Gyro+Accelerometer, Gyro gibt keine Werte aus.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sh7020.pdf
) until fetching of first instruction of interrupt service routine starts Interrupt Total 7 + m1 + m2 + m3 8 + m1 + m2 + m3 response Minimum 10 11 0.50–0.55 µs at 20 MHz Maximum 11 + 2(m1 + m2 + 12 + 2(m1 + m2 + (m1 = m2 = m3 = m4) 0.90– m3) + m4 m3) + m4 0.95 µs at 20 MHz Notes: m1–m4 are the
in „welche GPS-Maus ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R32C-152_Users_Manual.pdf
except the frame base register (FB) and stack pointer (SP). Stack Stack Address MSB LSB Address MSB LSB m-8 m-8 Program counter (PCLL) SP m-7 m-7 Program counter (PCLH) m-6 m-6 Program counter (PCHL) m-5 m-5 Program counter (PCHH) m-4 m-4 Flag register (FLGLL) m-3 m-3 Flag register (FLGLH) m-2 m-2 Flag register (FLGHL) m-1 m-1 Flag register (FLGHH) m Content of previous stack SP m Content of previous stack m+1 Content of previous stack m+1 Content of previous stack Stack before interrupt request is accepted Stack after
in „Keine UART Programmierung bei R32C möglich“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LGT8F328P.pdf
1.0.1 LogicGreen Technologies Co., LTD [7: 6] - Keep not used 5 HDR5 PF5 output drive control; 1 = 80mA drive, 0 = 12mA drive 4 HDR4 PF4 output drive control; 1 = 80mA drive, 0 = 12mA drive 3 HDR3 PF2 output drive control; 1 = 80mA drive, 0 = 12mA drive 2 HDR2 PF1 output drive control; 1 = 80mA drive, 0 = 12mA drive 1 HDR1 PD6 output drive control; 1 = 80mA drive, 0 = 12mA drive 0 HDR0 PD5 output drive control; 1 = 80mA drive, 0 = 12mA drive Port Multiplexed Control Register 0 - PMX0 PMX0 - Port Multiplexed
in „Neue 8-Bit Tinys vorgestellt: 417/814/816/817“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Kleines_LCD_Tutorial.htm
ergehen lassen, ist somit auch ohne mir bekannt gewordene Einschränkungen voll zu empfehlen: Displaytech 162F. <a href="#anfang">Zum Seitenanfang</a><br> Die <a name="pos"></a> Positionierung (Locating) des anzuzeigenden Zeichens auf eine ganz bestimmte Spalte und Zeile kann über den Befehlsmodus direkt programmiert
in „AVR-Tutorial: LCD - Erweiterung lcd-routines.asm - Bitte um Feedback“ · Mikrocontroller und Digitale Elektronik ·
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PDF
u-blox-ATCommands_Manual__UBX-13002752_.pdf
protocol to be used between the DTE and MT; these values are supported: • "PPP" (default value) • "M-HEX" • "M-RAW_IP" • "M-OPT-PPP" • "M-PPP-RELAY" (only on LISA-U200-62S series) TOBY-L2 / MPCI-L2 Only the "PPP" value is supported. There is no support for IPv6 over PPP (PPPv6). LEON-G / SARA-G <L2P
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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PDF
SIM300_ATC_V2.03.pdf
default will be used if missing. 1.4.2 S parameter syntax These AT commands have the format of “ATS<n>=<m>”, where “<n>” is the index of the S register to set, and “<m>”is the value to assign to it. “<m>” is optional; if it is missing, then a default value is assigned. 1.4.3 Extended Syntax These commands
in „GSM-Modem IMEI plötzlich gesperrt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SIM300_ATC_V2.03.pdf
default will be used if missing. 1.4.2 S parameter syntax These AT commands have the format of “ATS<n>=<m>”, where “<n>” is the index of the S register to set, and “<m>”is the value to assign to it. “<m>” is optional; if it is missing, then a default value is assigned. 1.4.3 Extended Syntax These commands
in „GSM Modem +CLIP funktioniert nicht mehr richtig“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC9S08MM128RM.pdf
X M (M) = $FF – (M) IX 73 4 rfwp COM oprx8,SP M (M ) = $FF – (M) SP1 9E 63 ff 6 prfwpp CPHX opr16a EXT 3E hh ll 6 prrfpp CPHX #opr16i Compare Index Register (H:X) with MemoryIMM 65 jj kk 3 ppp (H:X)
in „Freescale s08mm128 und USB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmega8.pdf
300mA. 2] The sum of all IOL, for ports C0 - C5 should not exceed 100mA. 3] The sum of all IOL, for ports B0 - B7, C6, D0 - D7 and XTAL2, should not exceed 200mA. If IOL exceeds the test condition, VOL may
in „Mikrocontroller und 15'' TFT LCD“ · Mikrocontroller und Digitale Elektronik ·
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Datei
devlist.txt
P2 PALCE24V10H . . .0) 222 D1,P2 PALCE26V12H . . .0) 223 D1,P2 PALCE26V12H/4 . .0) 224 D1,P2 PALCE29M16H . . .0) 225 D1,P2 PALCE29M16H/4 . .0) 226 D1,P2 PALCE29MA16H . .0) 227 D1,P2 PALCE29MA16H/4 .0) 228 D1,P2 PALCE610 . . . .0) 229 D1,P2 PALCE610H . . . .0) 230 D1,P2 PALCE630 . . . .0) 231 D1,P2 PALLV16V8
in „PROM lesen /schreiben / Programmiergerät“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMEGA8_DATENBLATT.pdf
230.4k 3 8.5% 8 -3.5% 4 0.0% 9 0.0% 4 8.5% 10 -1.4% 250k 3 0.0% 7 0.0% 4 -7.8% 8 2.4% 4 0.0% 9 0.0% 0.5M 1 0.0% 3 0.0% – – 4 -7.8% – – 4 0.0% 1M 0 0.0% 1 0.0% – – – – – – – – Max (1) 1 Mbps 2 Mbps 1.152 Mbps 2.304 Mbps 1.25 Mbps 2.5 Mbps 1. UBRR = 0, Error = 0.0% 162 ATmega8(L) 2486X–AVR–06/10 ATmega8(L
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pic18f2320.pdf
Byte xxxx xxxx 48, 134 CCPR1L Capture/Compare/PWM Register 1 Low Byte xxxx xxxx 48, 134 CCP1CON P1M1(5) P1M0(5) DC1B1 DC1B0 CCP1M3 CCP1M2 CCP1M1 CCP1M0 0000 0000 48, 133, 141 CCPR2H Capture/Compare/PWM Register 2 High Byte xxxx xxxx 48, 134 CCPR2L Capture/Compare/PWM Register 2 Low Byte xxxx xxxx 48
in „I2C-Bus Collision“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tir.lst
00C1 ; sub_28+92 j seg000:00C1 ld hl, 2056h seg000:00C4 ld a, (214Ch) seg000:00C7 or a seg000:00C8 jp m, loc_CF seg000:00CB set 7, (hl) seg000:00CD jr loc_D1 seg000:00CF ; --------------------------------------------------------------------------- seg000:00CF seg000:00CF loc_CF: ; CODE XREF: sub_28+A0
in „Z80/UA880D mit 28C64 startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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PIC32MX3XX_Data_Sheet.pdf
/ / / / / / / / K / / 0 / E / 5 4 / R 3 2 R R R D D D D D D D D D C D D D D V P D D R W D D 4 3 2 M M M R R R M M R R M M M M N C M M M M M M C C C P P P T T T P P T T P P P P E V P P P P P P O O O 0 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 1 75 VSS RG15 VDD 2 74 SOSCO/T1CK/CN0/RC14 PMD5/RE5
in „PIC32 und Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xe166_um_v2.1_2008_08_vol2per.pdf
CAPCOM2 Unit Register Pair Used Output Pin Control Bitfield in CC2_DRM Bank 1 Bank 2 CC16 CC24 CC16IO DR0M CC17 CC25 CC17IO DR1M CC18 CC26 CC18IO DR2M CC19 CC27 CC19IO DR3M CC20 CC28 CC20IO DR4M CC21 CC29 CC21IO DR5M CC22 CC30 CC22IO DR6M CC23 CC31 CC23IO DR7M The double-register compare mode can be programmed
in „Kernel State Configuration Register KSCCFG xe164 xe166 xe164f xe16x“ · Mikrocontroller und Digitale Elektronik ·
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PDF
64F3048F16-Hitachi.pdf
e Vector area t e e r s l r s l d d s s d d s s H'000FF - d a e H'0000FF - d a e r h i es r h i e m n - dr m n - d e r 1 a e r 1 a H'07FFF M b H'007FFF M b H'1FFFF Area 0 Area 0 H'20000 H'1FFFFF H'3FFFF Area 1 H'200000 H'40000 H'5FFFF Area 2 Area 1 H'60000 External address H'3FFFFF H'7FFFF space Area
in „CPU Melkanlage auslesbar? 64F3059F16“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lang_EN.txt
frmMain.qBAdrBauteilVariante=Variant frmMain.qBAdrBauteilVariante_ID=Variant ID frmMain.qBAdrEPreisM=Price M frmMain.qBAdrMengeEP=Quantity Purchase Price frmMain.qSuchVID=LID frmMain.qSuchVBez=Variant Comment frmMain.qSuchVBemerk=Variant Comment frmMain.qSuchVInfo=VInfo frmMain.qSuchPinout=Pinout frmMain.qSuchEinheit
in „Elela - BOM import, Component verlinkt nicht zuvorhandenen Bauteilen“ · Projekte & Code ·
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Datei
ems.txt
MEMORY? Expanded memory is memory beyond DOS's 640K-byte limit. The LIM specification supports up to 32M bytes of expanded memory. Because the 8086, 8088, and 80286 (in real mode) microprocessors can physically address only 1M byte of memory, they access expanded memory through a window in their physical
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MCU_-_HR8P506_Datasheet_e.pdf
Microelectronics Co., Ltd. http://www.essemi.com HR8P506 Datasheet 1. 4. 3 LQFP32 4 2 3 O 1 1 M M C/ A K M 1 C OC 0 S C O O /0 0 K / / / / K S L G G I 0 S NS 5 E E O S 1 0 1 1 / / M 3 3 A 2 _ _ 0 0 6 N6 1 G N N C I 1 1 1 E 1 1 0 0 1 T0 N 0 / / 0 0 2 2 1 O 0 0 X X N N / I C S 0 0 1 1 D / / / / /
in „Re - Programmierung eines Cortex M0“ · Mikrocontroller und Digitale Elektronik ·
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AM700_SM.pdf
Output Level Range XLR: 0 to 8.0 V p-p into 110 W BNC: 0 to 2.04 V p-p into 75 W Resolution XLR: 10 mV BNC: 2 mV Accuracy XLR: ±(10 mV + 5% of setting) BNC: ±(2 mV + 2% of setting) Main Output Residual Jitter Clock Source From Audio Frequency Offset = 0 0.05 UI p-p maximum Frequency Offset < > 0 or Clock
in „Tektronix AM700“ · Mikrocontroller und Digitale Elektronik ·
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STC89C51RC-en.pdf
shown as the bellowed table : WDT overflow Time @20MHz PS2 PS1 PS0 Pre-scale and 12T mode 0 0 0 2 39.3 mS 0 0 1 4 78.6 mS 0 1 0 8 157.3 mS 0 1 1 16 314.6 mS 1 0 0 32 629.1 mS 1 0 1 64 1.25 S 1 1 0 128 2.5 S 1 1 1 256 5 S The WDT overflow time is determined by the following equation: WDT overflow time =
in „stc89c52rc programmieren“ · Mikrocontroller und Digitale Elektronik ·
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super.pdf
Einführung in das Mikrocontroller-System 80(C)515/80(C)535 Seite 75 von 228 Timer 1 Timer 0 Gate C/ T M1 M0 Gate C/T M1 M0 (MSB) (LSB) Bit Funktion Gate Wenn dieses Bit gesetzt ist, läuft der Timer nur dann, wenn er mit Trx freigegeben ist und gleichzeitig der Portpin P3.2 (Timer 0) bzw. der Portpin P3.3
in „Handyansteuerung über uC“ · Mikrocontroller und Digitale Elektronik ·
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super.pdf
Einführung in das Mikrocontroller-System 80(C)515/80(C)535 Seite 75 von 228 Timer 1 Timer 0 Gate C/ T M1 M0 Gate C/T M1 M0 (MSB) (LSB) Bit Funktion Gate Wenn dieses Bit gesetzt ist, läuft der Timer nur dann, wenn er mit Trx freigegeben ist und gleichzeitig der Portpin P3.2 (Timer 0) bzw. der Portpin P3.3
in „Facharbeit Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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AN332.pdf
0 x40 0 0 ) S et M u te /U n m u t e (pro pe rty 0 x40 0 1 ) S e t A M T un e F req u en cy (com m a n d 0x4 0 ) U se G E T _ IN T _ S T A T U S (com m a n d 0 x14 ) or h a rd w a re in terru pts U ntil S T C b it is set C a ll A M _ T U N E _ S T A T U S W ith IN T A C K bit se t (com m a n d 0x4 2 ) C H IP S T A T E : R E C E IV IN G A M / S W / L W Q ue ry A M _ T U N E _S T A T U S (com m a n d 0x4 2 ) 170 Skyworks Solutions
in „Radioempfang: Mono statt Stereo erzwingen, UKW“ · HF, Funk und Felder ·