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Datei
GccApplication5.c
/* * GccApplication5.c * * Created: 20.10.2015 14:35:26 * Author: Max */ #include <stdlib.h> #include <stdio.h> #include <avr/io.h> #define F_CPU 1000000 #include <util/delay.h> void temp_mess(); void lcd_init(); void init_sequnez(); void schreibe(); int
in „DS1820 reagiert garnicht, C Programm fehlerhaft? Sensor defekt?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm70.c
payload len writeRegVal(RFM70_CMD_WRITE_REG | (RFM70_REG_RX_PW_P0 + nr), plLen); // set EN_AA bit tmp = readRegVal(RFM70_REG_EN_AA); if (en_aa) tmp |= 1 << nr; else tmp &= ~(1 << nr); writeRegVal(RFM70_CMD_WRITE_REG | RFM70_REG_EN_AA, tmp); // clear DPL bit tmp = readRegVal(RFM70_REG_DYNPD); tmp &=
in „RFM70 Timing Problem?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spi1.c
; // zero prescaler bits tmp_cr1 &= (uint16_t)0xFFC7; // set new prescaler bits tmp_cr1 |= prescaler; // Enable SPI with new prescaler SPI1->CR1 = tmp_cr1 | SPI_CR1_SPE; return last_prescaler; } /** * @brief Change SPI datasize
in „STM32 SPI Init“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.bas
Tx(32) As Byte Dim N As Byte Declare Sub Fsk_send(byval Fsk_byte As Byte) Declare Sub Rf_cmd(byval Tmp As Word) As Word 'config SPI Config Spi = Hard , Interrupt = Off , Data Order = Msb , Master = Yes , Polarity = Low , Phase = 0 , Clockrate = 16 , Noss = 0 'Config Spi = Soft , Din = Pinb.4 , Dout =
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Datei
mlib-gen-3.diff
lib/avr31/Makefile - avr/lib/avr31/atmega103/Makefile - avr/lib/avr31/at43usb320/Makefile -]) - -#avr35 -AC_CONFIG_FILES([ - avr/lib/avr35/Makefile - avr/lib/avr35/at90usb82/Makefile - avr/lib/avr35/at90usb162/Makefile - avr/lib/avr35/ata5505/Makefile - avr/lib/avr35/ata6617c/Makefile - avr/lib/avr35/ata664251/Makefile - avr/lib/avr35/atmega8u2/Makefile - avr/lib/avr35/atmega16u2/Makefile - avr/lib/avr35/atmega32u2/Makefile - avr/lib/avr35/attiny167/Makefile - avr/lib/avr35/attiny1634/Makefile -]) - -#avr4 -AC_CONFIG_FILES([ - avr
in „Fork: avr-libc version 3, für xtiny“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Master.txt
, 2, 3 (temp. Var.) muss nicht bankfrei sein, weil nur für Bank 0 vorgesehen SYS_TMP1 = 0x73 ; located in Bank 0, 1, 2, 3 SYS_TMP2 = 0x74 ; located in Bank 0, 1, 2, 3 SYS_TMP3 = 0x75 ; located in Bank 0, 1, 2, 3 SYS_TMP4 = 0x76 ; located in Bank 0, 1, 2, 3 SYS_TMP5 = 0x77 ; located in Bank 0, 1, 2, 3 SYS_TMP6 = 0x78 ; located in Bank 0, 1, 2, 3 SYS_TMP7 = 0x79 ; located in Bank 0, 1, 2, 3 SYS_TMP8 = 0x7A ; located in Bank 0, 1, 2, 3 STELLIG = 0x7B ; located in Bank 0, 1, 2, 3 VORNULLEN = 0x7C ; located
in „PIC I2C Master Slave“ · Mikrocontroller und Digitale Elektronik ·
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Datei
GccApplication5.c
/* * GccApplication5.c * * Created: 20.10.2015 14:35:26 * Author: Max */ #include <stdlib.h> #include <stdio.h> #include <avr/io.h> #define F_CPU 1000000L #include <util/delay.h> void temp_mess(); void lcd_init(); void init_sequnez(); void schreibe();
in „DS1820 reagiert garnicht, C Programm fehlerhaft? Sensor defekt?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
GccApplication5.c
/* * GccApplication5.c * * Created: 20.10.2015 14:35:26 * Author: Max */ #include <stdlib.h> #include <stdio.h> #include <avr/io.h> #define F_CPU 1000000L #include <util/delay.h> void temp_mess(); void lcd_init(); void init_sequnez(); void schreibe();
in „DS1820 reagiert garnicht, C Programm fehlerhaft? Sensor defekt?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.bas
Tx(16) As Byte Dim N As Byte Declare Sub Fsk_send(byval Fsk_byte As Byte) Declare Sub Rf_cmd(byval Tmp As Word) As Word 'config SPI Config Spi = Hard , Interrupt = Off , Data Order = Msb , Master = Yes , Polarity = Low , Phase = 0 , Clockrate = 16 , Noss = 0 'Config Spi = Soft , Din = Pinb.4 , Dout =
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Datei
test.bas
Byte T1 Alias Pinb.1 'Taster T1 Declare Sub Fsk_send(byval Fsk_byte As Byte) Declare Sub Rf_cmd(byval Tmp As Word) As Word 'config SPI Config Spi = Hard , Interrupt = Off , Data Order = Msb , Master = Yes , Polarity = Low , Phase = 0 , Clockrate = 16 , Noss = 0 'Config Spi = Soft , Din = Pinb.4 , Dout =
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Datei
test.bas
Byte T1 Alias Pinb.1 'Taster T1 Declare Sub Fsk_send(byval Fsk_byte As Byte) Declare Sub Rf_cmd(byval Tmp As Word) As Word 'config SPI Config Spi = Hard , Interrupt = Off , Data Order = Msb , Master = Yes , Polarity = Low , Phase = 0 , Clockrate = 16 , Noss = 0 'Config Spi = Soft , Din = Pinb.4 , Dout =
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Datei
WiSoReV04.asm
, 2, 3 (temp. Var.) muss nicht bankfrei sein, weil nur für Bank 0 vorgesehen SYS_TMP1 = 0x73 ; located in Bank 0, 1, 2, 3 SYS_TMP2 = 0x74 ; located in Bank 0, 1, 2, 3 SYS_TMP3 = 0x75 ; located in Bank 0, 1, 2, 3 SYS_TMP4 = 0x76 ; located in Bank 0, 1, 2, 3 SYS_TMP5 = 0x77 ; located in Bank 0, 1, 2, 3 SYS_TMP6 = 0x78 ; located in Bank 0, 1, 2, 3 SYS_TMP7 = 0x79 ; located in Bank 0, 1, 2, 3 SYS_TMP8 = 0x7A ; located in Bank 0, 1, 2, 3 STELLIG = 0x7B ; located in Bank 0, 1, 2, 3 VORNULLEN = 0x7C ; located
in „Probleme hex-File zu erstellen von PIC16F1527(1827)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RFM_02_test_V7.bas
Temp As Byte Dim Cmd(2) As Byte Declare Sub Fsk_send(byval Fsk_byte As Byte) Declare Sub Rf_cmd(byval Tmp As Word) As Word 'config SPI Config Spi = Hard , Interrupt = Off , Data Order = Msb , Master = Yes , Polarity = Low , Phase = 0 , Clockrate = 16 , Noss = 0 'Config Spi = Soft , Din = Pinb.4 , Dout =
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Datei
RFM_02_FSK_Polling_868.bas
Temp As Byte Dim Cmd(2) As Byte Declare Sub Fsk_send(byval Fsk_byte As Byte) Declare Sub Rf_cmd(byval Tmp As Word) As Word 'config SPI Config Spi = Hard , Interrupt = Off , Data Order = Msb , Master = Yes , Polarity = Low , Phase = 0 , Clockrate = 16 , Noss = 0 'Config Spi = Soft , Din = Pinb.4 , Dout =
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Datei
test.bas
Byte T1 Alias Pinb.1 'Taster T1 Declare Sub Fsk_send(byval Fsk_byte As Byte) Declare Sub Rf_cmd(byval Tmp As Word) As Word 'config SPI Config Spi = Hard , Interrupt = Off , Data Order = Msb , Master = Yes , Polarity = Low , Phase = 0 , Clockrate = 16 , Noss = 0 'Config Spi = Soft , Din = Pinb.4 , Dout =
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Datei
UART_send.bas
Byte T1 Alias Pinb.1 'Taster T1 Declare Sub Fsk_send(byval Fsk_byte As Byte) Declare Sub Rf_cmd(byval Tmp As Word) As Word 'config SPI Config Spi = Hard , Interrupt = Off , Data Order = Msb , Master = Yes , Polarity = Low , Phase = 0 , Clockrate = 16 , Noss = 0 'Config Spi = Soft , Din = Pinb.4 , Dout =
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Datei
estimator.c
[0] - qm * rtb_TmpSignalConversionAtSFu_cc[2]; rtb_TmpSignalConversionAtSFunct[2] = qm * rtb_TmpSignalConversionAtSFu_cc[1] - Ze_idx * rtb_TmpSignalConversionAtSFu_cc[0]; q = norm(rtb_TmpSignalConversionAtSFunct); wy = (Ze_idx * rtb_TmpSignalConversionAtSFu_cc[2] - Ze_idx_0 * rtb_TmpSignalConversionAtSFu_cc[1]) / q; wz = (Ze_idx_0 * rtb_TmpSignalConversionAtSFu_cc[0] - qm * rtb_TmpSignalConversionAtSFu_cc[2]) / q; wx = (qm * rtb_TmpSignalConversionAtSFu_cc
in „EKF Code Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RFM_02_test_sdi.bas
As Byte Dim Sdi_byte As Byte Declare Sub Sdi_send(byval Sdi_byte As Byte) Declare Sub Rf_cmd(byval Tmp As Word) As Word 'config SPI 'Config Spi = Hard , Interrupt = Off , Data Order = Msb , Master = Yes , Polarity = Low , Phase = 0 , Clockrate = 16 , Noss = 0 Config Spi = Soft , Din = Pinb.4 , Dout =
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Datei
RFM_02_test_IRQ.bas
As Byte Dim Nirq_check As Bit Declare Sub Fsk_send(byval Fsk_byte As Byte) Declare Sub Rf_cmd(byval Tmp As Word) As Word Config Int0 = Rising On Int0 Set_nirq 'config SPI Config Spi = Hard , Interrupt = Off , Data Order = Msb , Master = Yes , Polarity = Low , Phase = 0 , Clockrate = 4 , Noss = 0 'Config
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Datei
HC_SR_04.c
{ hc_time_start = t_tmp; /* Zeit Low >> High nehmen */ } if (!(MCUCR & (1 << ISC00))) /* Wenn Pegel wechsel von High auf Low */ { hc_time_stop = t_tmp; /* Zeit High >> Low nehmen */ hc_complete = 1; /* Routine sperren solange
in „Externe .c bringt nur theater“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LED_CUBE.txt
lsl __tmp_reg__ \n\t" /* 3 */ "ror %[out] \n\t" "lsl __tmp_reg__ \n\t" /* 4 */ "ror %[out] \n\t" "lsl __tmp_reg__ \n\t" /* 5 */ "ror %[out] \n\t" "lsl __tmp_reg__ \n\t" /* 6 */ "ror %[out] \n\t" "lsl __tmp_reg
in „LED-Cube Effekte weiter per Knopfdruck“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Cube_Gro_.ino
lsl __tmp_reg__ \n\t" /* 3 */ "ror %[out] \n\t" "lsl __tmp_reg__ \n\t" /* 4 */ "ror %[out] \n\t" "lsl __tmp_reg__ \n\t" /* 5 */ "ror %[out] \n\t" "lsl __tmp_reg__ \n\t" /* 6 */ "ror %[out] \n\t" "lsl __tmp_reg
in „LED-Cube Effekte weiter per Knopfdruck“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tollercode.c
-10, 10, (videoTmp - 5000) / 100); stateChange = false; } if (rotenc.check(-10, 10)) { //When somebody turns videoTmp = rotenc.getPos() * 100 + 5000; screen.setBigText(String(videoTmp) + "K", true); light.color((videoTmp
in „Code for grösseres, 1.3"-Display anpassen (u8glib)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
prog.s
* prologue: function */ /* frame size = 0 */ .LM2: call dummy ; .LM3: sbi 55-32,6 ; ,, .LBB34: .LBB35: .LBB36: .LBB37: .LM4: ldi r25,lo8(26) ; tmp59, .L2: .LBE37: .LBE36: .LBE35: .LBE34: .LM5: sbi 56-32,6 ; ,, .LBB41: .LBB40: .LBB39: .LBB38: .LM6: mov r24,r25 ; __count, tmp59 .LVL0: /* #APP */ ; 83 "
in „Problem beim Auslagern von Funktionen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bootloader.s.txt
movqi_insn/2 [length = 1] /* #APP */ ; 19 "bootloader.c" 1 sts 87, r25 spm ; 0 "" 2 /* #NOAPP */ .L3: in __tmp_reg__,0x37 ; 80 *sbix_branch_tmp [length = 3] sbrc __tmp_reg__,0 rjmp .L3 tst r24 ; 82 *cmpqi/1 [length = 1] breq .L8 ; 83 branch [length = 1] ldi r24,lo8(127) ; 51 *movhi/5 [length = 2] ldi r25,lo8
in „2 Programme in einem AVR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DAQ_Parameterzuordnung.txt
name='SRpos ist' unit='' /> <CHANNEL id='72' name='SR mode' unit='' /> <CHANNEL id='73' name='KaskSollTmp_0' unit='°C' /> <CHANNEL id='74' name='KaskSollTmp_1' unit='°C' /> <CHANNEL id='75' name='KaskSollTmp_2' unit='°C' /> <CHANNEL id='76' name='KaskSollTmp_3' unit='°C' /> <CHANNEL id='77' name='KaskIstTmp_0' unit='°C' /> <CHANNEL id='78' name='KaskIstTmp_1' unit='°C' /> <CHANNEL id='79' name='KaskIstTmp_2' unit='°C' /> <CHANNEL id='80' name='KaskIstTmp_3' unit='°C' /> <CHANNEL id='81' name='UsePos' unit='' /> <CHANNEL id='82' name='UseMotSoll' unit=
in „Hargassner Pelletheizung Betriebsdatenerfassung“ · Haus & Smart Home ·
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Datei
gesperrt.txt
width:100%" height='61' cellpadding='0' cellspacing='0' border='0'> <tr> <td width='766'><img src='../tmp-de/bg-1.jpg'></td> <td align='right' background='../tmp-de/bg-2.jpg'><img src='../tmp-de/bg-3.jpg'></td> </tr> </table> </div> <div style="width:85%; margin:auto; padding-top:4%; background-color:#0078D7
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Datei
nano_os_ISR_NAKED.s
r31 pop r30 pop r27 pop r26 pop r25 pop r24 pop r23 pop r22 pop r21 pop r20 pop r19 pop r18 pop __tmp_reg__ out __SREG__,__tmp_reg__ pop __tmp_reg__ pop __zero_reg__ reti /* epilogue end (size=17) */ /* function __vector_3 size 36 (2) */ .size __vector_3, .-__vector_3 .global tick_time .type tick_time
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Datei
rfm12.c
Index--; } } else { RFM12_trans(0x0000); //dummy read } LED_on(7); } void RFM12_init( void ) { //char tmp_sreg; // save SREG and diable interrupts //tmp_sreg = SREG; //cli(); // CS_Pin as Output, RFM12 deselect //RFM12_CS_PORT |= (1<<RFM12_CS_PIN ); //RFM12_CS_DDR |= (1<<RFM12_CS_PIN ); GPIO_setdirection
in „RFM12 zuckt nicht ein bisschen.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
idt70V3319.vhd
; IF BE1LNeg_reg = '0' AND CE0LNeg_reg = '0' AND CE1L_reg = '1' THEN IF DataTempL1 >= 0 THEN DataL1Tmp := To_slv(DataTempL1, DataWidth); ELSIF DataTempL1 = -2 THEN DataL1Tmp := (OTHERS => 'U'); ELSE DataL1Tmp := (OTHERS => 'X'); END IF; IF LatencyL THEN DataL1Tmp := (OTHERS => 'Z'); END IF; ELSE DataL1tmp
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Datei
led_fade_.asm
) movwf cnt1 ; load counter1 return mode_random ; call mode_delay goto rand mode_eeprom skpnc clrf tmp call mode_delay movlw 0x1f ; limit tmp to 5 bit , 32 entry andwf tmp swapf mode,w ; move mode[1:2] to tmp[5:6] andlw 0x60 iorwf tmp,w ; incf tmp BSF STATUS, RP0 ; Bank1 MOVWF EEADR ; Address to read
in „LEDs an PIC ausglimmen lassen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Uhr2313_Longdelay_taktanpassung.asm
inc sek ;DCF-sek + 1 igno: out sreg,isr_tmp ;Flag's zurückschreiben reti ;****** Compare1_ISR bearbeiten **************************************************** ;**** 1. -interne Uhr ************ TC1isr: in isr_tmp,sreg ;Flagreg.sichern cbi Flagreg
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Datei
Uhr_2313_extradelays_quarzanpassung.asm
inc sek ;DCF-sek + 1 igno: out sreg,isr_tmp ;Flag's zurückschreiben reti ;****** Compare1_ISR bearbeiten **************************************************** ;**** 1. -interne Uhr ************ TC1isr: in isr_tmp,sreg ;Flagreg.sichern cbi Flagreg
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Datei
Uhr_2313_extradelays_quarzanpassung.asm
inc sek ;DCF-sek + 1 igno: out sreg,isr_tmp ;Flag's zurückschreiben reti ;****** Compare1_ISR bearbeiten **************************************************** ;**** 1. -interne Uhr ************ TC1isr: in isr_tmp,sreg ;Flagreg.sichern cbi Flagreg
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Datei
Uh2313_9.asm
inc sek ;DCF-sek + 1 igno: out sreg,isr_tmp ;Flag's zurückschreiben reti ;****** Compare1_ISR bearbeiten **************************************************** ;**** 1. -interne Uhr ************ TC1isr: in isr_tmp,sreg ;Flagreg.sichern cbi Flagreg
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Datei
Neues_Textdokument.txt
lsl __tmp_reg__ \n\t" /* 3 */ "ror %[out] \n\t" "lsl __tmp_reg__ \n\t" /* 4 */ "ror %[out] \n\t" "lsl __tmp_reg__ \n\t" /* 5 */ "ror %[out] \n\t" "lsl __tmp_reg__ \n\t" /* 6 */ "ror %[out] \n\t" "lsl __tmp_reg
in „LED-Cube Effekte weiter per Knopfdruck“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LED_Cube.ino
lsl __tmp_reg__ \n\t" /* 3 */ "ror %[out] \n\t" "lsl __tmp_reg__ \n\t" /* 4 */ "ror %[out] \n\t" "lsl __tmp_reg__ \n\t" /* 5 */ "ror %[out] \n\t" "lsl __tmp_reg__ \n\t" /* 6 */ "ror %[out] \n\t" "lsl __tmp_reg
in „LED-Cube Effekte weiter per Knopfdruck“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lampe.c
************************************************************************************ * Timer0 ISR (35,56ms) * ************************************************************************************************/ /********************************************************************************************
in „RTC trotz CTC so ungenau?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.s
46,0,0 .stabn 68,0,14,.LM0-__vector_10 .LM0: /* prologue: frame size=0 */ push __zero_reg__ push __tmp_reg__ in __tmp_reg__,__SREG__ push __tmp_reg__ clr __zero_reg__ push r24 push r25 push r30 push r31 /* prologue end (size=9) */ .stabn 68,0,15,.LM1-__vector_10 .LM1: ldi r24,lo8(-86) out 56-0x20,r24
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Datei
18b20.bas
bytes in array 1wreset ' reset the bus Crcit ' ckeck CRC If Crc = 0 Then ' if is OK, calculate for Tmp = Bd(1) And 1 ' 0.1C precision If Tmp = 1 Then Decr Bd(1) T = Makeint(bd(1) , Bd(2)) T = T * 50 : T = T - 25 : T1 = Bd(8) - Bd(7) : T1 = T1 * 100 T1 = T1 / Bd(8) : T = T + T1 : T = T / 10 End If End
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Datei
18b20.bas
bytes in array 1wreset ' reset the bus Crcit ' ckeck CRC If Crc = 0 Then ' if is OK, calculate for Tmp = Bd(1) And 1 ' 0.1C precision If Tmp = 1 Then Decr Bd(1) T = Makeint(bd(1) , Bd(2)) T = T * 50 : T = T - 25 : T1 = Bd(8) - Bd(7) : T1 = T1 * 100 T1 = T1 / Bd(8) : T = T + T1 : T = T / 10 End If End
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Datei
TTT.VHD
=kb_clk; end if; end process; B: process(kb_clock) begin if (kb_clock'event and kb_clock='0') then tmp_eingabe<=kb_data & tmp_eingabe(10 downto 1); end if; end process; C: process (kb_clock,clock) begin if rising_edge(kb_clock) then datachange <= '1'; end if; if (vcnt=11 and hcnt=77) then -- einmal pro
in „Taktrate“ · FPGA, VHDL & Co. ·
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Datei
LUHE_AD9650_funktion.h
aktuelle Frequenz void AD9850_ticksCalculate(unsigned long frequency) { frequence= frequency; uint64_t tmp1 = frequence; tmp1 <<= 32; tmp1 /= 125; // 125 MHz tmp1 /= 1000000; uint32_t sollResultat = (uint32_t) tmp1; for (int iiih=0;iiih<32;iiih++) { if (sollResultat & (0x01 << iiih)) { // Bit iiih gesetzt
in „AD9850 Steuerwort,Berechnung richtig?“ · HF, Funk und Felder ·
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Datei
glipict2_bas.htm
glcd_msb = glcd_msb - ASCII_OFFSET glcd_cmd = DATA_WR_INC gosub send_1 next endif pause 200 next if gl_tmp > 9 then gl_tmp = 0 endif ' Set Addr Ptr glcd_msb = $00 glcd_lsb = $5d glcd_cmd = ADDR_PTR_SET gosub send_2 lookup gl_tmp,["0123456789"],glcd_msb glcd_msb = glcd_msb - ASCII_OFFSET glcd_cmd = DATA_WR_INC gosub send_1 gl_tmp = gl_tmp + 1 if gl_old =0 then jmp gl_ad1=$14 gl_ad2=gl_old gosub setadr gl_k = $00 gosub write1 jmp: gl_ad1=$14 gl_ad2=$3b+gl_tmp gl_old =gl_ad2 gosub setadr gl_k = %11111111 gosub write1 goto looper
in „T6963c Display Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nexys4_DDR_schematic.pdf
10K 10K GND I0P 34 GND NLMPS GND 42No Load P2 No Load NVC3 NLMP0DL PIIC1SCL D LTP0IN VCC3V3P1 D V TMP_SDA PIIC1SDA V INT PIIC1409 TMP_INT R148 V NLCLINT LTP0CT LAL0C P21K O15 INT1PIIC13011NLCLINT1 VCC3V3PIIC1A03 N N CT PIIC14010 TMP_CT ACL_CSNK R152025100P8IC1SCLK INT2PIIC1309 ACL_INT2 VCC3V3PIIC1A14
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Datei
lanc0093.c
_Byte == 103) // Read sync value in us { TmpInt = LANC_Sync; TmpChar = TmpInt; RS232_High = (TmpInt>>8); } else if (First_RS232_Byte == 104) // Read LANC period in us { TmpInt = PeriodL; TmpChar = TmpInt; RS232_High = (TmpInt>>8); } else if (First_RS232
in „Problem mit ATMega8 - Flash überschreibt EEPROM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sd_raw.c
CMD_READ_SINGLE_BLOCK, block_address * 512)) #endif { unselect_card(); return 0; } // JKLM uint8_t tmp=0xFF; // wait for data block (start byte 0xfe) while(tmp && (sd_raw_rec_byte() != 0xfe)) tmp--; if (!tmp) { unselect_card(); return 0; } // while(sd_raw_rec_byte() != 0xfe); #if SD_RAW_SAVE_RAM /* read
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PDF
BGScript_developer_guide_v3.3.pdf
used. Please note that the id must be the same as in the gatt.xml. script.bgs #write 5 bytes from tmp array to attribute with offset 0 call attributes_write(xgatt_temperature_celsius,0,5,tmp(0:5)) Copyright © 2001-2013 Bluegiga Technologies Page 35 of 45 5.7 PS store These examples show how to read
in „BLE112 wer kennt sich mit dem UART aus ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Info-Images.txt
help): q sh-3.1# df -h Filesystem Size Used Available Use% Mounted on tmpfs 61.7M 28.0k 61.6M 0% /tmp /dev/sda2 3.8G 7.6M 3.6G 0% /tmp/sda2 sh-3.1# mke2fs /dev/sda2 mke2fs 1.39 (29-May-2006) Filesystem label= OS type: Linux Block size=4096 (log=2) Fragment size=4096 (log=2) 501952 inodes, 1002054 blocks
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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Datei
display.c
, 0x00); // // // Set SCR1_FX2 0x34, 0x9F oled_send_com_data2(0x34, 0x9F); // // // Set SCR1_FY1 0x35, 0x00 oled_send_com_data2(0x35, 0x00); // // // Set SCR1_FY2 0x36, 0x7F oled_send_com_data2(0x36, 0x7F); oled_send_com_data2(0x37, 0x00); // // // Set SCR1_FX2 0x34, 0x9F oled_send_com_data2(0x38, 0x9F
in „Problem Inbetriebnahme OLED-Display DD-160128FC-2A (Densitron)“ · Mikrocontroller und Digitale Elektronik ·