-
PDF
MMA8452Q.pdf
20 80 2.5 80 6.25 5.1 20.4 0.638 40.8 20 80 2.5 160 1.56 5.1 20.4 0.638 40.8 20 80 2.5 160 0x13: PL_BF_ZCOMP Back/Front and Z Compensation Register The Z-Lock angle compensation is set to 29°. The Back to Front trip angle is set to ±75°. 0x13: PL_BF_ZCOMP Register (Read Only) Bit 7 Bit 6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0 BKFR[1] BKFR[0] 0 0 0 ZLOCK[2] ZLOCK[1] ZLOCK[0] Table 23. PL_BF_ZCOMP Description BKFR[1:0] Back Front Trip Angle Fixed Threshold = 01 which i≥ ±75°. ZLOCK[2:0] Z-Lock Angle Fixed Threshold = 100 which is 29°. Note: All angles are accurate to ±2°. MMA8452Q Sensors
in „Beschl-Sensor mit i2C reagiert nicht“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
qaxe_flash_stm32L.txt
Found 1 stlink programmers version: V2J17S4 serial: 303030303030303030303031 flash: 65536 (pagesize: 256) sram: 32768 chipid: 0x429 dev-type: STM32L1xx_Cat_2 root@linux-kwm1:~ >st-info --chipid 0x0429 st-flash --connect-under-reset write /dev/shm/QAXE/FW/qaxe/firmware/fw-rev2/qaxe-rev2.bin 0x8000000 >st-flash
in „10W Bitcoin miner mit 450GH/s für Raspberry Pi“ · Projekte & Code ·
-
PDF
Atmel-M90E32AS-ApplicationNote.pdf
0B7H QmeanC 0C7H QmeanCLSB 51H PoffsetAF 0D1H PmeanAF 0E1H PmeanAFLSB fundamental power 52H PoffsetBF 0D2H PmeanBF 0E2H PmeanBFLSB 53H PoffsetCF 0D3H PmeanCF 0E3H PmeanCFLSB 4.2.6 Voltage/ Current Measurement Calibration Measurement calibration means the calibration of voltage rms (Urms) gain and current
in „Wahl eines passenden Mikrocontrollers zur Ansteuerung des M90E32AS Energy Metering IC“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
dmidecode.txt
Designation: CPU 1 Type: Central Processor Family: Core 2 Duo Manufacturer: Intel ID: 52 06 02 00 FF FB EB BF Signature: Type 0, Family 6, Model 37, Stepping 2 Flags: FPU (Floating-point unit on-chip) VME (Virtual mode extension) DE (Debugging extension) PSE (Page size extension) TSC (Time stamp counter) MSR
-
Datei
fritzbox_7590_log.txt
TCP: Hash tables configured (established 1024 bind 1024) [ 0.392911][ T1] UDP hash table entries: 256 (order: 0, 4096 bytes) [ 0.399418][ T1] UDP-Lite hash table entries: 256 (order: 0, 4096 bytes) [ 0.406845][ T1] NET: Registered protocol family 1 [ 0.416387][ T1] Unpacking initramfs... [ 1.158423]
in „FritzBox 7590 Boot Loop“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
isl94203.pdf
11. OWPSD bit = 0 12. This time is 8s in IDLE and 16s in DOZE 13. This 32ms Scan rate increases to 256ms in IDLE and 512ms in DOZE FIGURE 19. OPEN WIRE TEST TIMING Depending on the selection of the input filter components, the When an open wire condition occurs and OWPSD = “1”, the OPEN internal open
in „Registerwerte verändern von Intersil ISL94203“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
ff.c
BYTE*,UINT), /* Pointer to the streaming function */ UINT btf, /* Number of bytes to forward */ UINT* bf /* Pointer to number of bytes forwarded */ ) { FRESULT res; FATFS *fs; DWORD clst, sect; FSIZE_t remain; UINT rcnt, csect; BYTE *dbuf; *bf = 0; /* Clear transfer byte counter */ res = validate(&fp->obj
in „Arduino Sloeber - C Code einbinden“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
D_Listing.txt
0xFF4 252: TABLAT RES 1 ; 0xFF5 253: TBLPTR 254: TBLPTRL RES 1 ; 0xFF6 255: TBLPTRH RES 1 ; 0xFF7 256: TBLPTRU RES 1 ; 0xFF8 257: PC 258: PCL RES 1 ; 0xFF9 259: PCLATH RES 1 ; 0xFFA 260: PCLATU RES 1 ; 0xFFB 261: STKPTR 262: STKPTRbits RES 1 ; 0xFFC 263: TOS 264: TOSL RES 1 ; 0xFFD 265: TOSH RES 1 ;
in „PIC18F4550 - PIC macht "nix"“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
manual_microvip_3_plus.pdf
added together, except for the string start character (:). - the value calculated is then divided by 256 and the remainder is noted - the remainder is then subtracted from 256 to obtain the desired LRC. Example: 01H,03H,FE00H,0021H,LRC,CR,LF The LRC will be calculated as follows: - 01H + 03H + FEH + 00H + 00H + 21H = 123H (291) - 123H / 100H (256) = 01H RESTO = 23H (35) - 100H (256)- 23H = DDH therefore: - LRC = DDH. 50 Description of the operational reading functions implemented READING OF ALL MEASUREMENTS This is carried out by reading 65
in „Auslesen von Microvip Messgeräten“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
test3.txt
reset/power-on mov #0x2700,w15 ; initialize stack pointer mov #0x27FE,w0 ; and stack limit register (256 bytes space) mov w0,SPLIM ; btst RCON,#POR ; was this a power-on reset? bra z,Start ; branch if not ; clr FaultCount ; else clear fault counter bclr RCON,#POR Start: ;**** General Initialisation ***
in „PIC24F - UART Problem mit dem Empfang“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
W20xxA_Spectrum_Analysis_de.pdf
- W20xxA Spectrum Analysis by BlueFlash 1 Die Spektralanalyse 1.1 Einleitung Seit der Version 1.2.BF.0.80 verfügt das W20xxA über eine Spektralanalysefunktion. Je nach Einstellung und anliegendem Signal sieht man eine Menge bunte Striche über den Bildschirm geistern die es zu deuten gilt. Wie immer
in „Wittig(welec) DSO W20xxA Open Source Firmware“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Test4.c
AVR Core Clock frequency: 4,000000 MHz Memory model : Small External RAM size : 0 Data Stack size : 256 *****************************************************/ #include <mega8.h> // SPI functions #include <spi.h> #include <mcp2515_defs.h> #include <delay.h> #include <stdio.h> int timer1 = 0; bit CAN_message_received
in „MCP2515 Botschaften Empfangen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SSD1332_R1.61.pdf
16-bit space inside graphic display data RAM with format as follows. For 256-color mode, one pixel data is sent in a 8-bit session like below. Bit 7 Bit 6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0 st 1 byte C2 C1 C0 B2 B1 B0 A1 A0 Figure 11 – 256 Color Depth Graphic Display Data Writing
in „OLED und 8051“ · Mikrocontroller und Digitale Elektronik ·
-
Artikel
AVR Bootloader in C - eine einfache Anleitung
Boot Reset (Start Boot Loader Section) 1 1 128 words 4 0x000 - 0xF7F 0xF80 - 0xFFF 0xF7F 0xF80 1 0 256 words 8 0x000 - 0xEFF 0xF00 - 0xFFF 0xEFF 0xF00 0 1 512 words 16 0x000 - 0xDFF 0xE00 - 0xFFF 0xDFF 0xE00 0 0 1024 words 32 0x000 - 0xBFF 0xC00 - 0xFFF 0xBFF 0xC00 Um die Tabelle zu verstehen muss man
ist. Denn selbst wenn man dem Funktionspointer z.B. 0x1F000 (kleinste Bootloader Startadresse bei 256kB Devices) als Adresswert zuweist, werden nur die unteren zwei Bytes verwendet. Der Sprung in den Bootloader würde also nach 0xF000 gehen und man würde bei Applikationen, die größer sind als 120kB,
Artikel ·
-
PDF
SM8952AC25.PDF
4/8KB internal flash MCU z 12 clocks per machine cycle z 4/8K internal flash memory Description z 256 bytes data RAM z 2/3 16 bit timers/counters chip micro controller with 4/8 KB flash embedded. It z Four 8-bit I/O ports provides hard-ware features and a powerful instruction z Full duplex serial channel
in „SM8952A Programm auslesen von RFID Reader“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SM8952AC25.pdf
4/8KB internal flash MCU z 12 clocks per machine cycle z 4/8K internal flash memory Description z 256 bytes data RAM z 2/3 16 bit timers/counters chip micro controller with 4/8 KB flash embedded. It z Four 8-bit I/O ports provides hard-ware features and a powerful instruction z Full duplex serial channel
in „Whirlpool-Steuerung Manipulieren / Fernsteuern: Welches Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
qsort.html
background-color:#00fafa} .black{color:#000} .black-background{background-color:#000} .blue{color:#0000bf} .blue-background{background-color:#0000fa} .fuchsia{color:#bf00bf} .fuchsia-background{background-color:#fa00fa} .gray{color:#606060} .gray-background{background-color:#7d7d7d} .green{color:#006000}
in „Welche Programmiersprache auf µC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
nightsky_arx15.pdf
AT32 VDD VDD AV36 R17 VDD VDD W40 BD48 VDD VDD BE52 AT33 VDD VDD AV37 R18 VDD VDD Y13 BD49 VDD VDD BF42 AT34 VDD VDD AV38 R19 VDD VDD Y40 BD50 VDD VDD BF44 AT35 VDD VDD AV39 R20 VDD BD51 VDD VDD BF45 AT36 VDD VDD AV40 R21 VDD BE41 VDD VDD BF47 AT37 VDD VDD AV42 R22 VDD BE42 VDD VDD BF49 AT38 VDD VDD
in „SMD TGAJ TVS Diode USB“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
version_1p3_assembler.lst
Source 3146: 0BF4 71 D6 SRD2: ACALL X_TR ;RESTORE POINTERS 3147: 0BF6 F1 01 ACALL VAR_ER ;GET VARIABLE ADDRESS 3148: 0BF8 F1 D1 ACALL XPOP ;FLIP THE REGISTERS FOR POPAS 3149: 0BFA D1 C6 ACALL C_TST ;SEE IF A COMMA 3150
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
IO_subprocessor_draft.pdf
or when using the RC command you should see the IO subprocessor identify itself. IO subprocessor @ BF70 V0.70 built Apr 14 2016 11:15:41 When there are problems with the bus configuration or bus hardware you will not be able to run the emulator. IO subprocessor @ BF70 failed, cannot continue! IO subprocessor
in „ATMEGA16 Revision & USART receive buffer“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SSD1303.pdf
of 256 banks brightness steps. Brightness increases as the value 0 A[7:0] A A A A A A A A 7 6 5 4 3 2 1 0 increases. (RESET = 80h) 0 91 1 0 0 1 0 0 0 1 Set Look Up Table Set current drive pulse width of Bank
-
Datei
nibble_data.vhd
std_Logic_vector( v1_o(255)(3 downto 0)); when x"660" => data <=std_Logic_vector( v1_o(255)(7 downto 4)); --256 werte when x"661" => data <=std_Logic_vector( v1_o(256)(19 downto 16)); when x"662" => data <=std_Logic_vector( v1_o(256)(23 downto 20)); when x"663" => data <=std_Logic_vector( v1_o(256)(11 downto 8)); when x"664" => data <=std_Logic_vector( v1_o(256)(15 downto 12)); when x"665" => data <=std_Logic_vector( v1_o(256)(3 downto 0)); when x"666" => data <=std_Logic_vector( v1_o(256)(7 downto 4)); when x"667" => data <=std_Logic_vector( v1_o(260)(19
-
Datei
dmesg_complete.txt
3ee00000) [ 0.000000] Booting paravirtualized kernel on bare hardware [ 0.000000] setup_percpu: NR_CPUS:256 nr_cpumask_bits:256 nr_cpu_ids:4 nr_node_ids:1 [ 0.000000] PERCPU: Embedded 28 pages/cpu @ffff8800bfc00000 s84416 r8192 d22080 u524288 [ 0.000000] pcpu-alloc: s84416 r8192 d22080 u524288 alloc=1*2097152
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
-
Thread
avr-gcc 4.7 I/O-Zugriffe
f22: 91 70 andi r25, 0x01 ; 1 f24: 90 93 59 06 sts 0x0659, r25 f28: 2f bf out 0x3f, r18 ; 63 f2a: 85 95 asr r24 f2c: 08 95 ret [/avrasm] Wieso wird hier der Z-Pointer zurechtgebaut, wenn es auch ein LDS und ein MOV täte. Zum Speichern
mit. ;-) Ob dir bei dieser Ansicht viele beipflichten werden? Zweifellos werden die Anwender der 256KB Versionen darüber hoch erfreut sein, wenn ihr Programm nach gut 10 Minuten nun 140KB statt 142KB gross ist. Und die Aussicht, dass die Freitags gestartete Kompilierung vom Linux-Kernel bereits
Mikrocontroller und Digitale Elektronik ·Lars R. · ·42 Antworten
-
PDF
XC88xCLM_UM_v1_1.pdf
AFE1 H AFE0 H 9 1 e … … … … r - y … … … … r - y … … … … c 2 - … … … … c 2 - e 1 2 e 1 2 S L 1 S L 1 BF9F H …………………………….. BF82 H BF81 H BF80 H W AF9F H …………………………….. AF82 H AF81H AF80 H W 3 3 BF7F H …………………………….. BF62 H BF61 H BF60 H 1 e AF7F H …………………………….. AF62 H AF61H AF60 H 1 e … … … … r - y … … … … r - y … … … … t 0 - … … … … t 0 - e 1 2 e 1 2 S L 1 S L 1 BF1F H …………………………….. BF02 H BF01 H BF00 H W AF1F H …………………………….. AF02 H AF01H AF00 H W BEFF H …………………………….. BEE2 H BEE1 H BEE0 H 1 AEFF H …………………………….. AEE2 H AEE1 H AEE0 H 1 … … … … r - y … … … … r - y
in „80C517A Paging“ · Mikrocontroller und Digitale Elektronik ·
-
Thread
Sonnenaufgang/Sonnenuntergang in Tabelle (Astro-Uhr/Dämmerungsschalter)?
10.09.24 253 5:47:45 101 11.09.24 254 5:49:26 101 12.09.24 255 5:51:07 101 13.09.24 256 5:52:48 101 14.09.24 257 5:54:30 101 15.09.24 258 5:56:11 101 16.09.24 259 5:57:52 101 17.09.24 260 5:59:33 101 18.09.24 261 6:01:15 101 19.09.24 262 6:02:56 101 20.09.24
: https://www.cambridge.org/core/books/practical-astronomy-with-your-calculator-or-spreadsheet/AE9BF845B4C2DDFDA0BDCFF3F51EB10E https://www.phy.cam.ac.uk/directory/duffettsmithp https://en.wikipedia.org/wiki/Jean_Meeus Astronomical Formulae for Calculators (1979), 1st ed, ISBN 0-943396-22-0
Mikrocontroller und Digitale Elektronik ·Idefix · ·70 Antworten
-
PDF
rxv396.pdf
I/O RAM data bus terminal 2, connected to external 256K SRAM data 75 RAMD3 I/O RAM data bus terminal 3, connected to external 256K SRAM data 76 RAMD4 I/O RAM data bus terminal 4, connected to external 256K SRAM data 77 RAMD5 I/O RAM data bus terminal 5, connected to external 256K SRAM data 78 RAMD6 I/O RAM data bus terminal 6, connected to external 256K SRAM data 79 RAMD7 I/O RAM data bus terminal 7, connected to external 256K SRAM data 80 VSS Ground 81 VDD2 +3V power supply
in „Yamaha RX-V396 RDS Fehlersuche“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ABOV-Semicon-MC80F0604_C142970.pdf
MC80F0504/0604 CKCTLR Interrupt (overflow) Period (ms) [2:0] Source clock @ f XIN = 8MHz 000 fXIN÷8 0.256 001 fXIN÷16 0.512 010 fXIN÷32 1.024 011 fXIN÷64 2.048 100 fXIN÷128 4.096 101 fXIN÷256 8.192 110 fXIN÷512 16.384 111 fXIN÷1024 32.768 Table 11-1 Basic Interval Timer Interrupt Period 7 6 5 4 3 2 1 0
in „Steuerung Infrorotkabine / Openhab“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Peavey_Semiconductors_Cross_Ref_2009.pdf
SJE-3517 70406018 SJE-6019 MJE-350 70406019 SDS-7204 1034 2N6557, MPS-U10 70407204 SDS-7205 MPS-U60, BF-463, MPS-U60 70407205 TUBE DRIVER, REPLACE 9058S, 0694 PAIR Page 3 ORIGINAL ALTERNATE FIELD IN-HOUSE IN-HOUSE REPLACEMENT ORDER NUMBER NUMBER NUMBER NUMBER NOTES TO-220 TRANSISTOR 2005M TDA-2005M TDA
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Peavey_Semiconductors_CrossRef_2010.pdf
SJE-3517 70406018 SJE-6019 MJE-350 70406019 SDS-7204 1034 2N6557, MPS-U10 70407204 SDS-7205 MPS-U60, BF-463, MPS-U60 70407205 TUBE DRIVER, REPLACE 9058S, 0694 PAIR Page 3 ORIGINAL ALTERNATE FIELD IN-HOUSE IN-HOUSE REPLACEMENT ORDER NUMBER NUMBER NUMBER NUMBER NOTES TO-220 TRANSISTOR 2005M TDA-2005M TDA
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
dmesg.txt
region 0800-087f claimed by ICH6 ACPI/GPIO/TCO [ 0.339513] pci 0000:00:1f.0: quirk: region 0480-04bf claimed by ICH6 GPIO [ 0.339516] pci 0000:00:1f.0: ICH7 LPC Generic IO decode 1 PIO at 0294 (mask 0003) [ 0.339563] pci 0000:00:1f.2: reg 10 io port: [0x8000-0x8007] [ 0.339567] pci 0000:00:1f.2: reg
in „Sporadische Gnome-Abbrüche auf Ubuntu 10.04“ · PC Hard- und Software ·
-
Datei
Castillo33.c
0x5955, 0x0ABF, 0xB1FC, 0x0255, 0x45A2, 0x8002, 0x0235, 0xFFD6, 0x455B, 0x1551, 0x8585, 0xD616, 0x56BF, 0xF595, 0x80E3, 0x956C, 0x2595, 0xA256, 0x5635, 0x25A4, 0xA956, 0x5565, 0x55A4, 0x5655, 0x5A25, 0x6555, 0x27FD, 0xCFF0, 0x0956, 0xD600, 0x5808, 0x6024, 0xBFFD, 0x1455, 0x5915, 0xBF58, 0x8859, 0x6156
in „BMP/JPEG/GIF/PNG nach C-Code konvertieren“ · Projekte & Code ·
-
Datei
Castillo33.c
0x5955, 0x0ABF, 0xB1FC, 0x0255, 0x45A2, 0x8002, 0x0235, 0xFFD6, 0x455B, 0x1551, 0x8585, 0xD616, 0x56BF, 0xF595, 0x80E3, 0x956C, 0x2595, 0xA256, 0x5635, 0x25A4, 0xA956, 0x5565, 0x55A4, 0x5655, 0x5A25, 0x6555, 0x27FD, 0xCFF0, 0x0956, 0xD600, 0x5808, 0x6024, 0xBFFD, 0x1455, 0x5915, 0xBF58, 0x8859, 0x6156
in „Bilder umwandeln für C/C++ Code“ · Softwareentwicklung ·
-
Datei
pa-transformer-pcb.kicad_pcb.txt
(gr_line (start 123.7234 111.7854) (end 123.7234 118.872) (layer "Dwgs.User") (width 0.1) (tstamp 0bf97ddc-7646-4659-829c-0931993bef8e)) (gr_line (start 123.7234 127.508) (end 123.7234 134.5946) (layer "Dwgs.User") (width 0.1) (tstamp 0c91a48d-c7e9-4949-bedc-9f60c977347a)) (gr_line (start 123.698 84.1502
in „Upload to AISLER from KiCAD Problem - no drills found.“ · Platinen ·
-
Datei
cd-loader.dasm.html
></a> ld a,(8174h)</a> <a name="L0BE7"></a> cp 62h ; 'b'</a> <a name="L0BE9"></a> jr c,<a href="#L0BF9">L0BF9</a></a> <a name="L0BEB"></a> ld a,(8174h)</a> <a name="L0BEE"></a> cp 6Eh ; 'n'</a> <a name="L0BF0"></a> jr nc,<a href="#L0BF9">L0BF9</a></a> <a name="L0BF2"></a> xor a</a> <a name="L0BF3"></
in „Suche KL5C80A12 (Z80 Clone) Datenblatt / Register-Map“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
mc9s12ne64.h
_DBGSC.Bits.TRG2 #define DBGSC_TRG3 _DBGSC.Bits.TRG3 #define DBGSC_CF _DBGSC.Bits.CF #define DBGSC_BF _DBGSC.Bits.BF #define DBGSC_AF _DBGSC.Bits.AF #define DBGSC_TRG _DBGSC.MergedBits.grpTRG #define DBGSC_TRG0_MASK 1 #define DBGSC_TRG1_MASK 2 #define DBGSC_TRG2_MASK 4 #define DBGSC_TRG3_MASK 8 #define DBGSC_CF_MASK 32 #define DBGSC_BF_MASK 64 #define DBGSC_AF_MASK 128 #define DBGSC_TRG_MASK 15 #define DBGSC_TRG_BITNUM 0 /*** DBGTB - Debug Trace Buffer Register; 0x00000022 ***/ typedef union { word Word; /* Overlapped registers: */
in „Hilfe MC9S12NE64 interrupt programmierung“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
JU1-V2-5-mod.asm
mov R1,#0xc7 mov A,@R1 jnb ACC.7,F17ce A17a0: mov R1,#0xc0 mov R0,#0xc7 A17a4: mov A,@R1 jb ACC.7,C17bf mov R7,A mov A,#0x0c jnb 0x50,A17b0 mov A,#0xf4 A17b0: lcall D084b mov @R1,A jb 0x55,C17bf cjne R0,#0xcd,A17ba A17ba: jnc C17bf setb ACC.7 mov @R0,A C17bf: inc R1 inc R0 cjne R1,#0xc7,A17a4 jnb 0x55,
in „8051 Disassembler“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
XC866_ds_v12.pdf
9: 128-byte Sector 1: 128-byte Sector 8: 128-byte Sector 7: 128-byte Sector 6: 128-byte Sector 5: 256-byte Sector 4: 256-byte Sector 3: 512-byte Sector 0: 3.75-Kbyte Sector 2: 512-byte Sector 1: 1-Kbyte Sector 0: 1-Kbyte P-Flash D-Flash Figure 11 Flash Bank Sectorization The internal structure of each
in „Wie schnell ist der Counter eines 8-Bir µC's“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PIC18f6622.pdf
. set before the transfer was received. 8. Receive first (high) byte of address (bits SSPxIF and BF are set). In this case, the SSPxSR register value is not loaded into the SSPxBUF, but bit SSPxIF is set. The BF bit is 9. Read the SSPxBUF register (clears bit BF) and cleared by reading the SSPxBUF
in „PIC 18F6622 Zeit um EEPROM zu schreiben“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PIC_18F8722_Data_Sheet.pdf
pulse: line, this will clear bit UA. • The Buffer Full bit, BF (SSPxSTAT<0>), was set 6. Read the SSPxBUF register (clears bit BF) and before the transfer was received. clear flag bit SSPxIF. • The overflow bit, SSPOV (SSPxCON1<6>), was set before the transfer was
in „PIC 18F6527 mit 32MHz Takten“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
1_AMD_BKDG_Family__15h_Mod_00h-0Fh_BKDG.pdf
register settings for contiguous memory mapping are: • D18F2x80_dct[1:0] = 0000_0011h. // CS0/1 = 256 MB; CS2/3 = 256 MB • D18F2x40 = 0000_0001h. // 0 MB base • D18F2x44 = 0010_0001h. // 256 MB base = 0 MB + 256 MB • D18F2x48 = 0020_0001h. // 512 MB base = 256 MB + 256 MB • D18F2x4C = 0030_0001h. //
-
PDF
20200316NukiSmartLockAPI2_1__1_.pdf
term secret key out of the shared key calculated by dh1 4.3 The authentication function h1 HMAC-SHA256 Used to calculate the authenticator during the authorization process between the Nuki Smartlock and the client device. Nuki Home Solutions GmbH Münzgrabenstraße 92/4 • 8010 Graz • Austria • • F +43
in „wie kann "MTU Exchange Request" von ESP32 Gatt Server senden?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
qv12.asm
zwischengespeichert. ; Messwerte der IR Sensoren landen Im SRAM unter 0x0080-0x009F fuer IR1 und ; 0x00A0-0x00BF fuer IR2. ; Beinhub wird im SRAM in 0x0070 ; am Anfang des Programmes abgelegt und soll in spaeteren Versionen ; im Main-Bereich des Programmes errechnet oder ueber I2C oder SPI ; von einem anderen Controller
in „Servos ansteuern“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
qv12.asm
zwischengespeichert. ; Messwerte der IR Sensoren landen Im SRAM unter 0x0080-0x009F fuer IR1 und ; 0x00A0-0x00BF fuer IR2. ; Beinhub wird im SRAM in 0x0070 ; am Anfang des Programmes abgelegt und soll in spaeteren Versionen ; im Main-Bereich des Programmes errechnet oder ueber I2C oder SPI ; von einem anderen Controller
in „Grundsätzliches zur Ansteuerung von Servos mit AVR und ASM“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LB-Mod_en.pdf
display. The strong noise is mainly caused by a poor amplification of the input signal, so less than the 256 levels of the 8bit ADC can be used. As a result, the signal has to be scaled up to be displayed. The unavoidable noise of the ADCs and input circuit becomes more significant. Or in technical terms:
in „Wittig(welec) DSO W20xxA Hardware (Teil 2)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATMega128CAN11_short.pdf
IDMSK0 RTRMSK – IDEMSK page 257 (0xF3) CANIDT1 IDT28 IDT27 IDT26 IDT25 IDT24 IDT23 IDT22 IDT21 page 256 (0xF2) CANIDT2 IDT20 IDT19 IDT18 IDT17 IDT16 IDT15 IDT14 IDT13 page 256 (0xF1) CANIDT3 IDT12 IDT11 IDT10 IDT9 IDT8 IDT7 IDT6 IDT5 page 256 (0xF0) CANIDT4 IDT4 IDT3 IDT2 IDT1 IDT0 RTRTAG RB1TAG RB0TAG page 256 (0xEF) CANCDMOB CONMOB1 CONMOB0 RPLV IDE DLC3 DLC2 DLC1 DLC0 page 255 (0xEE) CANSTMOB DLCW TXOK RXOK BERR SERR CERR FERR AERR page 254 (0xED) CANPAGE MOBNB3 MOBNB2 MOBNB1 MOBNB0 AINC INDX2 INDX1 INDX0
in „ATmega128CAN11“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATMega128CAN11_short.pdf
IDMSK0 RTRMSK – IDEMSK page 257 (0xF3) CANIDT1 IDT28 IDT27 IDT26 IDT25 IDT24 IDT23 IDT22 IDT21 page 256 (0xF2) CANIDT2 IDT20 IDT19 IDT18 IDT17 IDT16 IDT15 IDT14 IDT13 page 256 (0xF1) CANIDT3 IDT12 IDT11 IDT10 IDT9 IDT8 IDT7 IDT6 IDT5 page 256 (0xF0) CANIDT4 IDT4 IDT3 IDT2 IDT1 IDT0 RTRTAG RB1TAG RB0TAG page 256 (0xEF) CANCDMOB CONMOB1 CONMOB0 RPLV IDE DLC3 DLC2 DLC1 DLC0 page 255 (0xEE) CANSTMOB DLCW TXOK RXOK BERR SERR CERR FERR AERR page 254 (0xED) CANPAGE MOBNB3 MOBNB2 MOBNB1 MOBNB0 AINC INDX2 INDX1 INDX0
in „ATmega128CAN11“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
cc1100.pdf
the packet and sets the PKTLEN payload data, excluding the length byte and register to mod(length, 256). When less than 256 bytes remains of the packet the MCU the optional CRC. The PKTLEN register is disables infinite packet length mode and used to set the maximum packet length activates fixed packet
in „Scrambler für Funkstrecke“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
debug_error.asm
r1, r1 6a: 1f be out 0x3f, r1 ; 63 6c: cf ef ldi r28, 0xFF ; 255 6e: d4 e0 ldi r29, 0x04 ; 4 70: de bf out 0x3e, r29 ; 62 72: cd bf out 0x3d, r28 ; 61 00000074 <__do_copy_data>: 74: 11 e0 ldi r17, 0x01 ; 1 76: a0 e0 ldi r26, 0x00 ; 0 78: b1 e0 ldi r27, 0x01 ; 1 7a: ec e8 ldi r30, 0x8C ; 140 7c: fc e0
in „Fehler bei einfacher Integer-Division?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
apple_macbook_pro_a1286_mlb_d1_051-9216_13.3_retina_a1425_820-3462_sch.pdf
USB3RP4 IN USBP3N H28 USB_EXTD_XHCI_N BI 26 74 Ext D (XHCI) (Mobiles: Trackpad) 74 38 OUT USB3_EXTA_TX_N BF26 USB3TN1 USBP3P F28 USB_EXTD_XHCI_P BI 26 74 9 USB3_EXTC_TX_N BB28 USB3TN2 B OUT BF28 S M26 74 36OUT USB3_EXTB_TX_N USB3TN3 U USBP4N TP_USB_4N 9 Unused 9 OUT USB3_EXTD_TX_N BF30 USB3TN4 USBP4P K26 TP_USB
in „Macbook Schaltpläne“ · Mikrocontroller und Digitale Elektronik ·