-
Datei
enc28j60.h
ENC_REG_EDMADSTH (0x00 | 0x15) #define ENC_REG_EDMACSL (0x00 | 0x16) #define ENC_REG_EDMACSH (0x00 | 0x17) /* enc registers bank 1 */ #define ENC_REG_EHT0 (0x20 | 0x00) #define ENC_REG_EHT1 (0x20 | 0x01) #define ENC_REG_EHT2 (0x20 | 0x02) #define ENC_REG_EHT3 (0x20 | 0x03) #define ENC_REG_EHT4 (0x20 | 0x04
in „Verzögerung Zündung TRIAC für Phasenanschnitt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DS_FT232R.pdf
the USB data. In accordance with the USB 2.0 specification, it performs bit stuffing/un-stuffing and CRC5/CRC16 generation. It also checks the CRC on the USB data stream. USB Protocol Engine. The USB Protocol Engine manages the data stream from the device USB control endpoint. It handles the low level
in „Power via USB - Entstörung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
gsm-m1-e.pdf
. . . . 16 Loading the factory configuration and displaying a configuration . . . . . . . . . . . 17 ATVn - Result codes . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17 A/ - Repeat previous command line . . . . . . . . . . . . . . . . . . . . . . . . . .
in „Pinbelegung f. Siemens M1 GSM Modem“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
rfm70.c
initialization value const uint8_t Bank0_Reg[][2] PROGMEM = { {0,0x0F},//reflect RX_DR\TX_DS\MAX_RT,Enable CRC ,2byte,POWER UP,PRX {1,0x3F},//Enable auto acknowledgement data pipe5\4\3\2\1\0 {2,0x3F},//Enable RX Addresses pipe5\4\3\2\1\0 {3,0x03},//RX/TX address field width 5byte {4,0x0F},//auto retransmission dalay (250us),auto retransmission count(15) {5,0x17},//23 channel {6,0x17},//air data rate-1M,out power 5dbm,setup LNA gain {7,0x07}, {8,0x00}, {9,0x00}, {12,0xc3},//only LSB Receive address data pipe 2, MSB bytes is equal to RX_ADDR_P1[39:8] {13,0xc4
in „RFM70 und ATMega16 benötige Hilfe!!“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
Speicherplatz für die ID der Sensoren // Position 0-4 eig. ID, Pos. 5+6 ist die Temperatur, Pos. 7 CRC-Byte PROGMEM uint8_t DS18B20IDs[MAXSENSORS+1][OW_ROMCODE_SIZE] = { OW_ID_T01, // 1. DS18B20 OW_ID_T02, OW_ID_T03, OW_ID_T04, OW_ID_T05, OW_ID_T06, OW_ID_T07, OW_ID_T08, OW_ID_Last }; // Endmarker uint8
-
Datei
main.c
Speicherplatz für die ID der Sensoren // Position 0-4 eig. ID, Pos. 5+6 ist die Temperatur, Pos. 7 CRC-Byte PROGMEM uint8_t DS18B20IDs[MAXSENSORS+1][OW_ROMCODE_SIZE] = { OW_ID_T01, // 1. DS18B20 OW_ID_T02, OW_ID_T03, OW_ID_T04, OW_ID_T05, OW_ID_T06, OW_ID_T07, OW_ID_T08, OW_ID_Last }; // Endmarker uint8
-
Datei
main.c
Speicherplatz für die ID der Sensoren // Position 0-4 eig. ID, Pos. 5+6 ist die Temperatur, Pos. 7 CRC-Byte PROGMEM uint8_t DS18B20IDs[MAXSENSORS+1][OW_ROMCODE_SIZE] = { OW_ID_T01, // 1. DS18B20 OW_ID_T02, OW_ID_T03, OW_ID_T04, OW_ID_T05, OW_ID_T06, OW_ID_T07, OW_ID_T08, OW_ID_Last }; // Endmarker uint8
in „AVR NET IO RoBue 1.5 Automatischer Ablauf“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
ds1820_TEMP.txt
14745600 ; .endif .def befehl = r0 ;enthält den auszugebenden 8bit-befehl . .def temp4 = r16 .def temp = r17 .def temp1 = r18 .def temp2 = r19 .def temp3 = r20 .def delay1 = r21 .def delay2 = r22 .dseg ;SRAM-Variablen temp_lsb: .byte 1 temp1_lsb: .byte 1 temp_msb: .byte 1 th_reg: .byte 1 tl_reg: .byte 1 res1: .byte 1 res2: .byte 1 count_re: .byte 1 count_pc: .byte 1 crc: .byte 1 id_rom: .byte 1 .CSEG .org 0x000 .include"Lcd_routines.inc" reset: ldi temp, LOW(RAMEND) ;LOW-Byte der obersten RAM-Adresse out SPL, temp ldi temp, HIGH(RAMEND) ;HIGH-Byte der obersten RAM-Adresse
in „Nachkomma stelle DS1820“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ft232r08.pdf
the USB data. In accordance to the USB 1.1 specification, it performs bit stuffing / un-stuffing and CRC5 / CRC16 generation / checking on the USB data stream. • USB Protocol Engine The USB Protocol Engine manages the data stream from the device USB control endpoint. It handles the low level USB protocol
in „AVR - USB - Interface“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
can_top.v
connected, these two signals // need to be negated one level higher. // // Revision 1.25 2003/03/12 04:17:36 mohor // 8051 interface added (besides WISHBONE interface). Selection is made in // can_defines.v file. // // Revision 1.24 2003/03/10 17:24:40 mohor // wire declaration added. // // Revision 1.23
in „Cant resolve multiple constant drivers“ · FPGA, VHDL & Co. ·
-
Datei
disassebled_minimal_change_crash.asm
, 0x38 ; 56 1428: ce 01 movw r24, r28 142a: 0e 94 ef 09 call 0x13de ; 0x13de <_Z14checksum_crc16Phh.part.0> 142e: 21 e0 ldi r18, 0x01 ; 1 1430: 48 ad ldd r20, Y+56 ; 0x38 1432: 59 ad ldd r21, Y+57 ; 0x39 1434: 48 17 cp r20, r24 1436: 59 07 cpc r21, r25 1438: 09 f0 breq .+2 ; 0x143c <_ZN11Calibration21verify_checksum_crc16Ev.constprop
in „Bizarrer Firmware crash - ATmega4808. Wie Debuggen?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Ethernet_r.asm
+0x14 movlw 0x76 movwf ICMP_DATA+0x15 movlw 0x77 movwf ICMP_DATA+0x16 movlw 0x61 movwf ICMP_DATA+0x17 movlw 0x62 movwf ICMP_DATA+0x18 movlw 0x63 movwf ICMP_DATA+0x19 movlw 0x64 movwf ICMP_DATA+0x1A movlw 0x65 movwf ICMP_DATA+0x1B movlw 0x66 movwf ICMP_DATA+0x1C movlw 0x67 movwf ICMP_DATA+0x1D movlw 0x68
in „ENC28J60 PC reagiert nicht“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
flushmagic.py
consideration where applicable. ERR_CMD_LOCKED = 15 ERR_INVALID_CODE = 16 ERR_INVALID_BAUD_RATE = 17 ERR_INVALID_STOP_BIT = 18 ERR_CRP_ENABLED = 19 #------------------------------------------------------------------------------- def cmdErr2Str(cmdErr): return { CMD_SUCCESS: "SUCCESS", ERR_INVALID_CMD
-
Datei
disassebled_original_working.asm
, 0x38 ; 56 1428: ce 01 movw r24, r28 142a: 0e 94 ef 09 call 0x13de ; 0x13de <_Z14checksum_crc16Phh.part.0> 142e: 21 e0 ldi r18, 0x01 ; 1 1430: 48 ad ldd r20, Y+56 ; 0x38 1432: 59 ad ldd r21, Y+57 ; 0x39 1434: 48 17 cp r20, r24 1436: 59 07 cpc r21, r25 1438: 09 f0 breq .+2 ; 0x143c <_ZN11Calibration21verify_checksum_crc16Ev.constprop
in „Bizarrer Firmware crash - ATmega4808. Wie Debuggen?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AVR128DA28_32_48_64.pdf
Description 0x0 FLASH CRC of full Flash (boot, application code, and application data) 0x1 BOOT CRC of the Boot section 0x2 BOOTAPP CRC of the Application code and Boot sections 0x3 NOCRC No CRC Bit 5 – CRCSEL CRC Mode Selection This bit controls the type of CRC performed by the CRCSCAN peripheral. Refer to the CRCSCAN section for more information about the functionality. Value Name Description 0x0 CRC16 CRC-16-CCITT 0x1 CRC32 CRC-32 (IEEE 802.3) Bits 3:2 –
in „AVR64EA28: PIT-Interrupt“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
sfr32c83.h
u4tb_addr.byte.high /* UART4 Transmit buffer register high 8 bit */ #define crcd crcd_addr.word /* CRC data register 16 bit */ #define crcdl crcd_addr.byte.low /* CRC data register low 8 bit */ #define crcdh crcd_addr.byte.high /* CRC data register high 8 bit */ #define ad00 ad00_addr.word /* A-D0 register
in „Timer funktioniert nicht ( M32C83 )“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
fitter.txt
; ; ; -- normal mode ; 1034 ; ; -- arithmetic mode ; 18 ; ; ; ; ; Total registers* ; 990 / 6,000 ( 17 % ) ; ; -- Dedicated logic registers ; 990 / 5,136 ( 19 % ) ; ; -- I/O registers ; 0 / 864 ( 0 % ) ; ; ; ; ; Total LABs: partially or completely used ; 101 / 321 ( 31 % ) ; ; User inserted logic elements
in „schlanker Softcore für Cyclone III“ · FPGA, VHDL & Co. ·
-
Datei
MMC.asm
.include "m8def.inc" .def temp1 = r16 .def arg0 = r17 .def arg1 = r18 .def arg2 = r19 .def arg3 = r20 .EQU CLOCK = 1000000 .EQU BAUD = 4800 .EQU UBRRVAL = CLOCK/(BAUD*16)-1 .macro wait ;(a, k) wait1: //warten bis Übertragung fertig sbis SPSR, SPIF rjmp
in „Problem mit MMC, bekomme immer illegal command“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Img2chs.c
define MAXCYLINDER 980L /* CHS parameter from the original hdd */ #define MAXHEAD 15L #define MAXSECTOR 17L #define TARGETDISK 0x81 /* 0x80 first hdd 0x81 second hdd ... */ #define FILENAME "KN2000.img" /* the Image file to store on the hdd */ /*************************************************************
in „Technics Keyboard Festplatte klonen geht das ?“ · PC Hard- und Software ·
-
PDF
HDD_Quantum.pdf
ms typ. Average write 10.5 ms typ. 10.5 ms typ. 10.5 ms typ. 10.5 ms typ. 10.5 ms typ. Full stroke 17 ms typ. 17 ms typ. 17 ms typ. 17 ms typ. 17 ms typ. Data transfer Rates: Disk to Read Once a 184 Mb/sec 184 Mb/sec 184 Mb/sec 184 Mb/sec 184 Mb/sec Revolution 1, 2 min. min. min. min. min. 341 Mb/sec
in „HDD Festplatte ATA IDE an AVR µC Mikrocontroller ATmega1284p Assembler - viele Fragen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PWM_Controller_Manual.pdf
12 R/W 0D PWM Kanal 13 R/W 0E PWM Kanal 14 R/W 0F PWM Kanal 15 R/W 10 PWM Kanal 16 R/W 11 PWM Kanal 17 HB R/W 12 PWM Kanal 17 LB R/W 13 PWM Kanal 18 HB R/W 14 PWM Kanal 18 LB R/W 15 Control_Reg R/W Steuerregister 16 PWM_CNTR_ADDR R/W PW18 TWI- Busadressen Register 17 CS_Soft_PWM R/W Clock Select für Soft- PWM Zeitbasis 18 CS_HW_PWM_16 R/W Frequenz für 16-Bit PWM( Kanal 17,18) 19 Res_HW_PWM_HB R/W Auflösung HB 16-Bit PWM ( Kanal 17,18) 1A Res_HW_PWM_LB R/W Auflösung LB 16-Bit PWM ( Kanal 17,18) 1B Res_Soft_PWM R/W Auflösung für Soft PWM 1C PWM_vs_BUS R/W Interruptzeit
in „PWM- Controller 18- Kanal TWI- Bus Proj.“ · Projekte & Code ·
-
Datei
Web_Haus_Webserver.bas
Byte At Buffer + &H16 Overlay 'protocol (ICMP=1, TCP=6, UDP=11) Dim T_ip_proto As Byte At Buffer + &H17 Overlay 'header checksum Dim T_ip_hdr_cksum0 As Byte At Buffer + &H18 Overlay Dim T_ip_hdr_cksum1 As Byte At Buffer + &H19 Overlay Dim T_ip_hdr_cksum As Word At Buffer + &H18 Overlay 'IP address of source
in „AVR WebServer und Google Chrome?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SAF_C515C-LM.pdf
not only sets TF2 but also causes the timer 2 registers to be loaded with the 16-bit value in the CRC register, which is preset by software. In mode 1, a 16-bit reload from the CRC register is caused by a negative transition at the correspon- ding input pin P1.5/T2EX. This transition will also set flag
in „SAF C515C LM auslesen verzweiflung :(“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
xapp694.pdf
Considerations for PROM and FPGA Connections • When the INIT pin goes Low, indicating either that a CRC error occurred during configuration or that INIT has become user I/O initialized to a Low state after configuration, the address counter of the PROM will be held reset to zero. If the OE/RESET pin of
-
Datei
main.c
434MHz/869M/915M Data rate: 2.4kbps/4.8kbps/9.6kbps Working mode: PH+FIFO modulation: FSK Package size: 17byte valid data Author: Baiguang(ISA) Company: Hope microelectronic Co.,Ltd. Contact: +86-0755-82973805-846 E-MAIL: rfeng@hoperf.com Date: 2011-07-20 **************************************************
in „RFM22B Beispiel Projekt gesucht.“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
13475.pdf
SPI_SSOutputCmd function . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 319 17.2.14 SPI_DataSizeConfig function . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 319 17.2.15 SPI_TransmitCRC function . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 320 17.2.16 SPI_CalculateCRC function . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 321 17.2.17 SPI_GetCRC function . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
in „STM32F: SPI "Halbduplex"“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TLE499x_AppNote_Throttle_Position_Sensing_v1.0.pdf
safety, as for example error detection and correction of on-chip EEPROM, Cyclic Redundancy Checks (CRC) in the SENT protocol or the detection of open wires and short circuits. The drift of magnetic circuits with temperature has been successfully tackled with user programmable linear Hall sensors. The
in „TLE4998 - 5V/10V Schnittstelle über 7810?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at91sam.pdf
the PSTDBY is reset, so as to wake up the Voltage Regulator in Normal Mode. 91 6120I–ATARM–06-Apr-11 17.2 Voltage Regulator Power Controller (VREG) User Interface Table 17-1. Register Mapping Offset Register Name Access Reset Value 0x60 Voltage Regulator Mode Register VREG_MR Read-write 0x0 17.2.1 Voltage
in „SPI-Initialisierung von zwei Geräte über den gleichen Bus“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
IO-Link-01-DirectParamsDevice-20130515-IODD1.1.xml
BooleanT"/> <Name textId="TN_BooleanParameter_1"/> </RecordItem> <RecordItem subindex="3" bitOffset="17"> <SimpleDatatype xsi:type="BooleanT"/> <Name textId="TN_BooleanParameter_2"/> </RecordItem> </Datatype> <Name textId="TN_DirectParameters"/> </DirectParameterOverlay> </VariableCollection> <ProcessDataCollection
-
PDF
0900766b80060b32.pdf
...................................................................................................17 3.4.1 Host ⇒ RWD.................................................................................................................17 3.4.2 RWD ⇒ Host.................................................................................................................17 3.5 General Notes.......................................................................................................................17 M02640.doc /RM Page 2 of 19 Scope Rev. 4.0 1997-05-23 1 Scope
in „[V] Altes RFID Mifare Philips Eval Kit (1998)..“ · Markt ·
-
Datei
avr-m8_z80.asm
dsk_dmah = r13 .def dsk_dmal = r14 ;.def parityb = r15 .def temp = R16 ;The temp register .def temp2 = R17 ;Second temp register .def trace = r18 .def opl = r19 .def oph = r20 .def adrl = r21 .def adrh = r22 .def insdecl = r23 .def z_pcl = r24 .def z_pch = r25 .undef xl .undef xh .def insdech = r26 .def z_flags
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
avr-m8_z80.asm
dsk_dmah = r13 .def dsk_dmal = r14 ;.def parityb = r15 .def temp = R16 ;The temp register .def temp2 = R17 ;Second temp register .def trace = r18 .def opl = r19 .def oph = r20 .def adrl = r21 .def adrh = r22 .def insdecl = r23 .def z_pcl = r24 .def z_pch = r25 .undef xl .undef xh .def insdech = r26 .def z_flags
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
spi.c
/ looks like PA1 and PA2 are not implemented on RFM69W/CW, hence the max output power is 13dBm // +17dBm and +20dBm are possible on RFM69HW // +13dBm formula: Pout = -18 + OutputPower (with PA0 or PA1**) // +17dBm formula: Pout = -14 + OutputPower (with PA1 and PA2)** // +20dBm formula: Pout = -11 +
in „PIC16f15244 RFM69 sendet nicht“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
enet.txt
* Pseudoheader, myIP erstmal 0 *) obuf[12] := 0; obuf[13] := 0; obuf[16] := 6; i := ende; i := i - 17; i := i * 2; obuf[17] := i; FOR i := 11 TO 24 DO SWAP(obuf[i]); END; obuf[12] := me.IPh; obuf[13] := me.IPl; obuf[14] := Http.IPh; obuf[15] := Http.IPl; obuf[26] := 0; obuf[27] := 0; i := 12; checksum
in „Ein kleiner Oberoncompiler für die C16x-Familie“ · Projekte & Code ·
-
Datei
test.c
fcntl.h> #include <termios.h> #include <stdio.h> #include <string.h> #include <unistd.h> #include "crc.h" #define BAUDRATE B4800 #define MODEMDEVICE "/dev/ttyS0" #define _POSIX_SOURCE 1 /* POSIX compliant source */ #define FALSE 0 #define TRUE 1 volatile int STOP=FALSE; int main(void) { int fd; int res
in „UART, String, Array, einzelne Zeichen extrahieren“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
hdd_smart_20221120_WD-WCC4NCCD03P6.txt
not indicated) SATA Version is: SATA 3.0, 6.0 Gb/s (current: 6.0 Gb/s) Local Time is: Sun Nov 20 22:17:31 2022 CET SMART support is: Available - device has SMART capability. SMART support is: Enabled === START OF READ SMART DATA SECTION === SMART overall-health self-assessment test result: PASSED General
in „[V] Festplatten WDRED 2x3TB, 2x4TB, extern: 500MB, 1TB“ · Markt ·
-
PDF
Fristar3_Kommunikation.pdf
Sequenzen für dieAnfrage der 13 Messwerte sind (offensichtlich gibt es da eine Struktur, lt. [1] auch eine CRC; ich verwende einfach immer die ganzen Sequenzen): Index Messwert Anfrage (hexadezimal) 1 Warmwasser-Isttemperatur Tww [°C] 55 FD FF 07 50 44 11 2 Kaltwassertemperatur TKW [°C] 55 FD FF 07 90 44 12
in „UVR 1611 (TA), Auswertung DL, Mega88, WinAVR“ · Projekte & Code ·
-
PDF
EM4005_DS.pdf
send first 1…………..11 12…………….…………………83 84……………………….101 102…………………...128 Header Identification code CRC Extension 11 bits 64 bits + 8 trail bits 16 bits + 2 trail bits 24 bits + 3 trail bits c l National code Country l Reserved code a B m 38 bits + 4 trail bits 10 bits + 1 trail bit a 14 bits + 3 trail
in „Verzweiflung am U2270B“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DM8203.pdf
.................................................................................................. 17 6.8 VLAN Control Register (53H)....................................................................................................................................... 17 6.9 Switch Status Register (54H
in „2 Port Switch IC wie in IP telefonen?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DM8203.pdf
.................................................................................................. 17 6.8 VLAN Control Register (53H)....................................................................................................................................... 17 6.9 Switch Status Register (54H
in „[V] DM8203 & DM8603“ · Markt ·
-
PDF
io-controller-hub-9-datasheet.pdf
......................... 679 17.2.2 Host Controller Operational Registers...................................................... 680 17.2.2.1 USB2.0_CMD—USB 2.0 Command Register ................................ 681 17.2.2.2 USB2.0_STS—USB
in „FLASH Memory Chip im Lenovo X200 von 8 MB auf 16 MB vergroessern“ · PC Hard- und Software ·
-
PDF
AT90CAN128.pdf
the compiler handles the 16-bit access. Assembly Code Examples (1) ... ; Set TCNTn to 0x01FF ldi r17,0x01 ldi r16,0xFF sts TCNTnH,r17 sts TCNTnL,r16 ; Read TCNTn into r17:r16 lds r16,TCNTnL lds r17,TCNTnH ... C Code Examples (1) unsigned int i; ... /* Set TCNTn to 0x01FF */ TCNTn = 0x1FF; /* Read TCNTn
in „Umrechnen von analog to digital“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
EM6580.pdf
NUMBER __48 6.2.1 Debouncer__________________________16 6.2.2 IRQ on Port A _______________________17 17. TEMPERATURE AND VOLTAGE 6.2.3 Pull-up/down ________________________17 BEHAVIOUR ____________________________ 49 6.2.4 Software test variables ________________18 6.2.5 Port A for 10-Bit Counter___
in „Was ist aus dem Thread der MeteoData geworden?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CD00277537.pdf
Universal serial bus (USB) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 28 3.17 CRC (cyclic redundancy check) calculation unit . . . . . . . . . . . . . . . . . . . 29 3.18 Development support . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 29 4 Pin
in „SPI-Schnittstelle Befehl: SPI_I2S_SendData(spi2, data)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
RIGOL-DSA815_TG-CalibrationData_Test-7.pdf
0039.4000 DSA Calibration Data \FLASH_FWv00.01.09.00.07_with-TG-TGCal-Options\dsa815_flash.bin Start CRC-32 Offset 0 Start Data Byte 0 - Length 8,556 Length Data 1 2 3 4 5 6 7 8 CRC-32 low word 8,556 Byte 27 33 34 32 29 32 33 32 xx Points per group 00390000 ad 9e ff ff 6c 21 00 00 1b 21 22 20 1d 20 21
in „Rigol DSA815 Spektrum Analyser“ · PC Hard- und Software ·
-
PDF
lpc2468board.pdf
P3.15 / D15 ADC0 18 P0.23 / AD0.0 / I2SRX_CLK / CAP3.0 P3.16 / D16 / PWM0.1 / TXD1 137 D16 16 143 D17 MC_IO_0 ADC1 P0.24 / AD0.1 / I2SRX_WS / CAP3.1 P3.17 / D17 / PWM0.2 / RXD1 C30 MC_IO_1 ADC2 14 P0.25 / AD0.2 / I2SRX_SDA / TXD3 P3.18 / D18 / PWM0.3 / CTS1 151 D18 100n 12 161 D19 MC_IO_2 DAC 50 P0.26
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
specification_CA10089.pdf
Specifications ・・・・・・・・・ 14 7.2.3 RX/TX Specifications ・・・・・・・・・ 15 7.2.4 Reset input timing ・・・・・・・・・ 17 7.3 Input Timing Characteristics ・・・・・・・・・ 17 7.4 Input Signal Timing Chart ・・・・・・・・・ 18 8. About MIPI Interface 8.1 Version ・・・・・・・・・ 19 8.2 DSI protocol ・・・・・・・・・ 19 8.3 Packet data types ・・・・・・・・・
in „Suche 4.3" Display mit Controller fuer DVI to RGB TTL/MIPI DSI“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Cypress_CY8C58LP_001-84932_0F-491909.pdf
[14] udb_intr[14] 15 31 I C phub_termout0[15] udb_intr[15] 16 32 CAN phub_termout1[0] udb_intr[16] 17 33 Timer/Counter0 phub_termout1[1] udb_intr[17] 18 34 Timer/Counter1 phub_termout1[2] udb_intr[18] 19 35 Timer/Counter2 phub_termout1[3] udb_intr[19] 20 36 Timer/Counter3 phub_termout1[4] udb_intr[20
in „UART-Schnittstelle 2x verwenden?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
MP3_FINAL_1.1.txt
Warteschleifen-Generator ; 8000000 Zyklen: ; ----------------------------- ; warte 7999992 Zyklen: ldi R17, $48 WGLOOP04: ldi R18, $BC WGLOOP14: ldi R19, $C4 WGLOOP24: dec R19 brne WGLOOP24 dec R18 brne WGLOOP14 dec R17 brne WGLOOP04 ; ----------------------------- ; warte 6 Zyklen: ldi R17, $02 WGLOOP34:
in „Atmega32, AVRstudio und SRAM“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
board_cstartup_gnu.c
*/ USART1_IrqHandler, /* 15 USART 1 */ IrqHandlerNotUsed, /* 16 Reserved */ IrqHandlerNotUsed, /* 17 Reserved */ MCI_IrqHandler, /* 18 MCI */ TWI0_IrqHandler, /* 19 TWI 0 */ TWI1_IrqHandler, /* 20 TWI 1 */ SPI_IrqHandler, /* 21 SPI */ SSC_IrqHandler, /* 22 SSC */ TC0_IrqHandler, /* 23 Timer Counter
in „Wie funktioniert der ARM cortex M3?“ · Mikrocontroller und Digitale Elektronik ·