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PDF
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Datei
w2000a-screenshot.cpp
idx<16384;idx++) { for (chan=0;chan<4;chan++) { r = rdchar(comport); c[chan] = (unsigned char)r; //BF del (void)printf("%d ",c); } //BF del(void)printf("\n"); (void)fprintf(fp, "%d;%d;%d;%d\n",c[0],c[1],c[2],c[3]); //write csv-line with separators } if (fclose(fp) != 0) // close file err(1, "fclose(%
in „Wittig(welec) DSO W20xxA Open Source Firmware“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LatFET2019_09_27_THD20kHz.asc.txt
528 2256 -528 WIRE 2544 -528 2384 -528 WIRE 2656 -528 2544 -528 WIRE 2816 -528 2656 -528 WIRE 544 -480 544 -528 WIRE 1920 -480 1920 -528 WIRE 2656 -480 2656 -528 WIRE 2816 -480 2816 -528 WIRE 976 -432 976 -528 WIRE 1440 -432 1440 -528 WIRE 816 -416 816 -528 WIRE 1216 -416 1216 -528 WIRE 1920 -368 1920
in „Class AB Audioverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Osram.lib.txt
***************************************************************** .MODEL SFH3410 NPN (IS=6.12e-15 BF=480 NF=1.053 VAF=25.6 + ISE=6.12E-15 NE=2 RE=19.8 RC=13 + CJE=3.98E-12 MJE=0.234 VJE=0.696 FC=0.5 CJC=7.07E-11 + MJC=0.312 VJC=0.539 TF=1e-13) .MODEL SFH3710 NPN (IS=6.12e-15 BF=480 NF=1.053 VAF=25.6
in „Fototransistor mit LTSpice simulieren“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
OSRAM_Phototransistors_II.lib.txt
G001 Emit Base Opt_In+ Opt_In- {SENS*resp*lens} Q001 Coll Base Emit F049 .MODEL F049 NPN (IS=6.12e-15 BF=480 NF=1.053 VAF=25.6 + ISE=6.12E-15 NE=2 RE=19.8 RC=13 + CJE=3.98E-12 MJE=0.234 VJE=0.696 FC=0.5 CJC=7.07E-11 + MJC=0.312 VJC=0.539 TF=1e-13) .ends **************************************************
in „Fototransistor mit LTSpice simulieren“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Technische Zeichnungen von Bauteilgehäusen BF 1 bis BF 73
BF 1 BF 2 BF 5 BF 6 BF 16 BF 17 BF 18 BF 19 BF 32 BF 33 BF 37 BF 40 BF 60 BF 68 BF 71 BF 73 DN IEC 480C0208 Typ F02 Typ F06 Typ F12 Typ F15 Typ F21
in „Quarzdiskriminator zur FM-Demodulation“ · HF, Funk und Felder · · Diagramme
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Datei
sc_math.lib.dis.txt
, #0] 47e: 4610 mov r0, r2 480: 60c1 str r1, [r0, #12] 482: bf00 nop 484: 4822 ldr r0, [pc, #136] ; (510 <__aeabi_ui2f+0x3a>) 486: 6840 ldr r0, [r0, #4] 488: f000 0001 and.w r0, r0, #1 48c: 2800 cmp r0, #0 48e: d0f9 beq.n 484 <__
in „Neue MCU APM32F103“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8833_1.pdf
TF 0 00H − top fixed area 6.2.24 r 1 SA 7 SA 6 SA5 SA4 SA3 SA2 SA1 SA 0 82H − scroll area 6.2.24 1 BF 7 BF6 BF5 BF4 BF3 BF2 BF1 BF 0 00H − bottom fixed area 6.2.24 9 0 0 0 1 1 0 1 0 0 34H tearing line off (TEOFF) 6.2.25 0 0 0 1 1 0 1 0 1 35H tearing line on (TEON) 6.2.26 1 X X X X X X X X 00H − 6.2.26
in „Versorgung einer LCD Anzeige und MC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_bq2023.pdf
SLUS480B – MAY 2001 D Multifunction Monitoring IC Designed to D 32 Bytes of General-Purpose RAM, 224 Work With an Intelligent Host Controller: Bytes of FLASH, and 8 Bytes of Secure ID – Provides Accurate State
in „Mit MSP430 einen IC( bq2023) programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
diff.txt
100750000C0210920E020895AC0180910D028823C4 :100750000C0210920E020895AC0180910D028823C4 :1007600019F480E090E0089520E030E001C0EC93BF :1007600019F480E090E0089520E030E001C0EC93BF :10077000822F9927FC01E351FE4FE0812F5F3F4F0D :10077000822F9927FC01E351FE4FE0812F5F3F4F0D :10078000DA01A80FB91FEE2391F71C9281E090E0E7
in „UART Bootloader ATtiny13 - ATmega644“ · Projekte & Code ·
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Datei
asm.txt
: bf00 nop 08001e78 <BusFault_Handler>: /** * @brief This function handles Prefetch fault, memory access fault. */ void BusFault_Handler(void) { 8001e78: b480 push {r7} 8001e7a: af00 add r7, sp, #0 /* USER
in „NUCLEO-L432KC Blinky Projekt mit 11kB Speicherverbrauch“ · Mikrocontroller und Digitale Elektronik ·
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Datei
README.txt
data * v0.91 Switch "-v" display version information * v0.93 Extended dump type recognition to be BF and OS firmware compatible. This version also works with older firmware revisions. * v0.94: - unified OS screenshot utitilty and derived utility by BF/Hayo - recommended DSO firmware BF v2.13 or newer
in „Wittig(welec) DSO W20xxA Open Source Firmware (Teil4)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Vishay_Diode_Marking.pdf
SMA5J12 5BD 5BD BYG24G BYG24G P4SMA350A 350A - SMA5J12A 5BE 5BE BYG24J BYG24J P4SMA400A 400A - SMA5J13 5BF 5BF BYS10-25 BYS025 P4SMA440A 440A - SMA5J13A 5BG 5BG BYS10-35 BYS035 P4SMA480A 480A - SMA5J14 5BH 5BH BYS10-45 BYS045 P4SMA510A 510A - SMA5J14A 5BK 5BK BYS11-90 BYS109 P4SMA540A 540A - SMA5J15 5BL 5BL
in „Unbekanntes Bauteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
marking.pdf
SMA5J12 5BD 5BD BYG24G BYG24G P4SMA350A 350A - SMA5J12A 5BE 5BE BYG24J BYG24J P4SMA400A 400A - SMA5J13 5BF 5BF BYS10-25 BYS025 P4SMA440A 440A - SMA5J13A 5BG 5BG BYS10-35 BYS035 P4SMA480A 480A - SMA5J14 5BH 5BH BYS10-45 BYS045 P4SMA510A 510A - SMA5J14A 5BK 5BK BYS11-90 BYS109 P4SMA540A 540A - SMA5J15 5BL 5BL
in „Suche Datenblatt zu S422“ · Mikrocontroller und Digitale Elektronik ·
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PDF
marking.pdf
SMA5J12 5BD 5BD BYG24G BYG24G P4SMA350A 350A - SMA5J12A 5BE 5BE BYG24J BYG24J P4SMA400A 400A - SMA5J13 5BF 5BF BYS10-25 BYS025 P4SMA440A 440A - SMA5J13A 5BG 5BG BYS10-35 BYS035 P4SMA480A 480A - SMA5J14 5BH 5BH BYS10-45 BYS045 P4SMA510A 510A - SMA5J14A 5BK 5BK BYS11-90 BYS109 P4SMA540A 540A - SMA5J15 5BL 5BL
in „Suche die Bezeichnung eines Bauteils“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
88912_Marking_Diodes_Vishay-061201.pdf
SMA5J12 5BD 5BD BYG24G BYG24G P4SMA350A 350A - SMA5J12A 5BE 5BE BYG24J BYG24J P4SMA400A 400A - SMA5J13 5BF 5BF BYS10-25 BYS025 P4SMA440A 440A - SMA5J13A 5BG 5BG BYS10-35 BYS035 P4SMA480A 480A - SMA5J14 5BH 5BH BYS10-45 BYS045 P4SMA510A 510A - SMA5J14A 5BK 5BK BYS11-90 BYS109 P4SMA540A 540A - SMA5J15 5BL 5BL
in „Bauteil identifizieren diode, SMC, "G DE 47"“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Xorg.0.log.txt
800 824 896 1024 600 601 603 625 +hsync +vsync (35.2 kHz) [ 20.622] (**) SIS(0): Default mode "640x480": 31.5 MHz, 37.5 kHz, 75.0 Hz [ 20.622] (II) SIS(0): Modeline "640x480"x75.0 31.50 640 656 720 840 480 481 484 500 -hsync -vsync (37.5 kHz) [ 20.622] (**) SIS(0): Default mode "640x480": 31.5 MHz, 37.9 kHz, 72.8 Hz [ 20.622] (II) SIS(0): Modeline "640x480"x72.8 31.50 640 664 704 832 480 489 491 520 -hsync -vsync (37.9 kHz) [ 20.622] (**) SIS(0): Default mode "640x480": 25.1 MHz, 31.3 kHz, 59.7 Hz [ 20.622] (II) SIS(0): Modeline "640x480"x59.7 25.06 640
in „Notebook mit externem Monitor unter Ubuntu 12.04 LTS (32-bit) - Problem mit Auflösung“ · PC Hard- und Software ·
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Datei
robot-mit-cplusplus-anteilen-noheap-trotzdem-grosz.objdump.txt
> 8000342: f107 0708 add.w r7, r7, #8 8000346: 46bd mov sp, r7 8000348: bd80 pop {r7, pc} 800034a: bf00 nop 0800034c <rotate_actuator_position_into_local_coordsys>: 800034c: b480 push {r7} 800034e: b08b sub sp, #44 ; 0x2c 8000350: af00 add r7, sp, #0 8000352: 60f8 str r0, [r7, #12] 8000354: 4638 mov
in „ROM-Auslastung von C++-Programm reduzieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
objdump.txt
mov sp, r7 8002576: bc80 pop {r7} 8002578: 4770 bx lr 800257a: bf00 nop 0800257c <HardFault_Handler>: * @brief This function handles Hard Fault exception. * @param None * @retval None */ void HardFault_Handler(void) { 800257c: b480 push {r7} 800257e: af00 add r7, sp
in „STM32F4 HardFault Interrupt bei stdlib Funktionen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN734.pdf
set the UA bit to indicate that the lower half of the address should be loaded into SSPADD for match BF (SSPSTAT<0>) detection. The BF (Buffer Full) bit tells the user whether a byte of R/W (SSPSTAT<2>) data is currently in the SSP Buffer register, SSPBUF. This bit is cleared automatically when the SSPBUF
in „I2C example code“ · Mikrocontroller und Digitale Elektronik ·
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Datei
down.txt
S11301409091C2009093BF008093BE002093BB00A7 S11301501092B5001092B6001092B7001092B80039 S11301608091600090916100009719F480E991E01A S113017001C001979093610080936000BF91AF919B S11301809F918F913F912F910F900FBE0F901F90D1 S113019018959C011ABA90EF9BBB80E886B997BB6F
in „Calibration Byte 8MHz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
standard.bjt.txt
12 Icrating=2.5 mfg=Zetex .MODEL FMMT718 PNP IS=6.8E-13 BF=480 IKF=2 VAF=23 ISE=0.8E-13 NE=1.5567 NR=1 BR=70 IKR=0.4 VAR=7 ISC=7.5E-14 NC=1.19 RB=0.085 RE=0.04 RC=0.045 CJC=70.02p MJC=0.4685 VJC=0.7714 CJE=203.6p MJE=0.5029 VJE=0.9403 TF=0.71n TR=23.7n Vceo=
in „Hilfe bei LTSpice nötig!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Funkgeraeteliste_Chirp.pdf
0.00% BTECH_UV-50X3 @KC9HI 10-Dec-2022 Yes 0.06% BTECH_UV-5X3 @KC9HI 9-Dec-2022 Yes 0.43% Baofeng_BF-888 @kk7ds 13-Feb-2019 Yes 15.53% Baofeng_BF-A58 @KC9HI 3-Dec-2022 Yes 1.46% Baofeng_BF-A58S @KC9HI 3-Dec-2022 Yes 0.59% Baofeng_BF-F8HP @KC9HI 18-Nov-2022 Yes 6.33% Baofeng_BF-T1 @KC9HI 10-Dec-2022 Yes 0.76% Baofeng_BF-T8 @KC9HI 30-Nov-2022 Yes 0.42% Baofeng_BF-V8A @KC9HI 28-Nov-2022 Yes 0.03% Baofeng_F-11 ImpliedbyBaofeng_UV-5R 18-Nov-2022 Yes 0.12% Baofeng_GT-3WP @KC9HI 3-Dec-2022 Yes 0.43% Baofeng_GT-5R @KC9HI 18
in „Welcher USB-Adapter für Baofeng UV-5R gut?“ · HF, Funk und Felder ·
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Datei
TempDisplay.c
struct + union /************************************************************************/ struct charBF{ unsigned char B0:1, B1:1, B2:1, B3:1, B4:1, B5:1, B6:1, B7:1; }; typedef union { struct charBF b; unsigned char complete; } Pchar; /******************************************************************
in „Temperaturauswertung 1-WIRE AVR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spicemodel.txt
Gnd, Sink, In2, Source Q1 1 2 6 ZXGD3003N Q2 3 5 4 ZXGD3003P * .MODEL ZXGD3003N NPN IS=2.5E-13 NF=1 BF=600 IKF=1 VAF=51 ISE=2E-13 +NE=1.4 NR=1 BR=150 IKR=.5 VAR=25 ISC=1e-13 NC=1.47 RB=0.5 +RE=0.055 RC=0.055 CJC=23E-12 MJC=0.33 VJC=0.75 CJE=98E-12 TF=0.8E-9 +TR=30e-9 * .MODEL ZXGD3003P PNP IS=2e-13 BF
in „LTSpice - hierarchische Blöcke“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
kueche_2.lst
, OWpin owreset:OWDirOut ;force pin low + +.set LOOP_FREQ = F_OSC / 3 +.set WANT_FREQ = 1000000 / 480 +.set N = ( LOOP_FREQ + WANT_FREQ - 1 ) / WANT_FREQ +.if N < 256 +ldi r31 , N +subi r31 , 1 +brne PC - 1 +.else 00011c e7e5 +.set LOOP_FREQ = F_OSC / 4 00011d e0f3 +.set WANT_FREQ = 1000000 / 480 00011e
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Datei
TOP_MODULE.vhd
", X"55D", X"507", X"4F7", X"4F6", X"4BF", X"4B1", X"472", X"44E", X"440", X"3C4", X"37C", X"367", X"33A", X"307", X"2F6", X"33E", X"352", X"366", X"379", X"3B0", X"3F5", X"42B", X"447", X"423", X"428", X"45F", X"45D", X"434", X"410", X"42A
in „Implementierung der XILINX FFT-Core“ · FPGA, VHDL & Co. ·
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Datei
timer.ihex.txt
100320008100DF91CF9108951F920F920FB60F9227 :1003300011242F933F934F935F936F937F938F93EA :100340009F93AF93BF93EF93FF93CF93DF93CDB77B :10035000DEB7809187008F5F809387008091870050 :100360008F3130F110928700809188009091890040 :100370000197909389008093880067DE80918800C0 :10038000909189000097A1F410927F0081E0809302
in „Platinen selber ätzen“ · Platinen ·
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PDF
PWM_Controller_Manual.pdf
Resolution = 250- 500Hz PWM- Frequency 2x Kanal 16- Bit Hardware PWM(Fast PWM), Variable Auflösung 2-16 ● 480 Byte TWI- SRAM ● 384 Byte TWI- E²PROM ● Über TWI- Bus zugängliche Hardware Einstellungen ─ TWI- Slave Adresse, Standart SLA= 0x7A ─ Clock Select Bytes Timer 1, 2 (PWM- Frequency) ─ Auflösung 16- Bit
in „PWM- Controller 18- Kanal TWI- Bus Proj.“ · Projekte & Code ·
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PDF
00643b.pdf
02CD 00BF MOVWF 3F 02CE 2AD1 GOTO 02D1h else 02CF 3080 MOVLW 80h pwmout += 0x8000; 02D0 07BF ADDWF 3F 02D1 083F MOVF 3F,W CCPR1L = (pwmout>>9)&0x007f; // Write 7 bits 02D2 00A7 MOVWF 27 02D3 0CA7 RRF 27 02D4 307F
in „Messdaten Kompression“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
hardware_t.cpp
Setup_Vars(void) // Set standard values for variables { short ix, ix2, ix3; int cnt; for (ix = 0;ix < 480;ix++) Display_Line_Adresses[ix] = ix * 20; //BF used in Display::PIXELP() /* BF del not used for (ix = 0;ix < 480;ix++) Display_Line_Adresses2[ix] = ix * 80; */ /*BF del for (ix = 0; ix <= 255; ix++
in „Wittig(welec) DSO W20xxA Open Source Firmware (Teil3)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Displayinitialisierung_16F877A_Puffer_Check_fix.asm
bsf COLLED BANKSEL SSPSTAT config4 btfss SSPSTAT,BF ; Data transfer complete? (Buffer Full?) goto config4 ; if not, check again BANKSEL SSPBUF ; BANK0 movf SSPBUF,W ; Get Data from SSPBUF ; ; Throw it away bcf DC movlw 0x14 movwf SSPBUF btfsc SSPCON,7 bsf COLLED BANKSEL SSPSTAT config5 btfss SSPSTAT,BF ; Data transfer complete? (Buffer Full?) goto config5 ; if not, check again BANKSEL SSPBUF ; BANK0 movf SSPBUF,W ; Get Data from SSPBUF ; ; Throw it away bcf DC movlw 0x20 movwf SSPBUF btfsc SSPCON,7
in „[PIC]Probleme bei SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Displayinitialisierung_16F877A_abfragen_fix.asm
bsf COLLED BANKSEL SSPSTAT config4 btfss SSPSTAT,BF ; Data transfer complete? (Buffer Full?) goto config4 ; if not, check again BANKSEL SSPBUF ; BANK0 movf SSPBUF,W ; Get Data from SSPBUF ; ; Throw it away bcf DC movlw 0x14 movwf SSPBUF btfsc SSPCON,7 bcf COLLED BANKSEL SSPSTAT config5 btfss SSPSTAT,BF ; Data transfer complete? (Buffer Full?) goto config5 ; if not, check again BANKSEL SSPBUF ; BANK0 movf SSPBUF,W ; Get Data from SSPBUF ; ; Throw it away bcf DC movlw 0x20 movwf SSPBUF btfsc SSPCON,7
in „[PIC]Probleme bei SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Displayinitialisierung_16F877A_abfragen_fix.asm
bsf COLLED BANKSEL SSPSTAT config4 btfss SSPSTAT,BF ; Data transfer complete? (Buffer Full?) goto config4 ; if not, check again BANKSEL SSPBUF ; BANK0 movf SSPBUF,W ; Get Data from SSPBUF ; ; Throw it away bcf DC movlw 0x14 movwf SSPBUF btfsc SSPCON,7 bcf COLLED BANKSEL SSPSTAT config5 btfss SSPSTAT,BF ; Data transfer complete? (Buffer Full?) goto config5 ; if not, check again BANKSEL SSPBUF ; BANK0 movf SSPBUF,W ; Get Data from SSPBUF ; ; Throw it away bcf DC movlw 0x20 movwf SSPBUF btfsc SSPCON,7
in „[PIC]Probleme bei SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AssamblerCode.txt
0000000E: BD81 OUT 0x21,R24 Out to I/O location +0000000F: ED8F LDI R24,0xDF Load immediate +00000010: BF8D OUT 0x3D,R24 Out to I/O location +00000011: ECC0 LDI R28,0xC0 Load immediate +00000012: EBE8 LDI R30,0xB8 Load immediate +00000013: 2E4E MOV R4,R30 Copy register +00000014: 27DD CLR R29 Exclusive OR
in „Total Ratlos: Controller läuft nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tfrec-d-dump.txt
2f0a 1 5e14 0 2f0a 1 5e14 0 bc29 0 bc29 1 7852 0 7852 1 f0a4 1 f0a5 1 e14b 1 c297 1 852f 1 0a5f 1 14bf 1 297f 1 52ff 1 a5ff 1 4bff 1 97ff 1 2fff 1 5fff 1 bfff 1 7fff 1 ffff 0 e149 0 c292 0 8524 0 0a48 0 1490 0 2920 0 5240 0 a480 0 4900 0 9200 0 2400 0 4800 0 9000 0 2000 0 4000 0 8000 0 0000 1 0000 1 0000
in „SDR-Dekoder für TFA KlimaLogg Pro/IT+ Temperatursensoren“ · Projekte & Code ·
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PDF
datasheet.pdf
1F0000h 1F0FFFh . . . 14 495 1EF000h 1EFFFFh 224 0E0000h 0E0FFFh 30 . . . 223 0DF000h 0DFFFFh . . . 480 1E0000h 1E0FFFh 13 479 1DF000h 1DFFFFh 208 0D0000h 0D0FFFh 29 . . . 2.7 0CF0.0h 0CFF.Fh 464 1D0000h 1D0FFFh 12 463 1CF000h 1CFFFFh 192 0C0000h 0C0FFFh . . . 28 1.1 0BF0.0h 0BFF.Fh 448 1C0000h 1C0FFFh
in „MX25L160(5AM2C) neu beschreiben? Gibt es eine DIY Lösung?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Eclipse.txt
push r28 2a: cd b7 in r28, 0x3d ; 61 2c: de b7 in r29, 0x3e ; 62 2e: 2a 97 sbiw r28, 0x0a ; 10 30: cd bf out 0x3d, r28 ; 61 32: de bf out 0x3e, r29 ; 62 /*! Buffer with test data to send.*/ uint8_t sendBuffer[] = {0x07,0x00,0xff}; 34: ce 01 movw r24, r28 36: 01 96 adiw r24, 0x01 ; 1 38: 8e 83 std Y+6, r24
in „XMega Eclipse, AVR-Studio Interrupt Unterschiede“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fw_v2.15_nevm.diff.txt
void)putchar(0); //Send dumptye 0 Color + (void)putchar(1); //Send interface version for (y = 0; y < 480; y++) @@ -3678,6 +3679,138 @@ void CommIF::SCREENSHOT(unsigned char ma } +/* + * Why do we need this? + * Well, using puts() and printf() intermittently + * with putchar() results in garbled output,
in „Wittig(welec) DSO W20xxA Open Source Firmware (Teil4)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hexiangning-20.pdf
LIhIPTS=10000) .MODEL MOSN NMOS(KP=2.4 VTO=5) .END .MODEL MOSP PMOS(KP=3.6 VTO=-3) .MODEL BJTP PNP(BF=2.4 TF=I.2U TR=IU) GTO model and circuitile .MODEL BJTN NPN(BF=0.4 TF=I.2U TR=IU) .TRAN 0.4U 160U OU IOOON UIC .PROBE Vo 1 0 DC 600 RI1 2 1.0 .OPTIONS (lTL4=40 ITL5=15000 ABSTOL=IOO.ON LI 2 3 4M IC=400
in „Projekt: Leistungsstarkes Blitzgerät aus 12 Volt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
SSD1963.h
---------------------------------------------------------- #define LCD_MAX_X 800 #define LCD_MAX_Y 480 #define LCD_PIXEL LCD_MAX_X * LCD_MAX_Y #define LCD_SSD1963_PAUSE 5000 #define LCD_SSD1963_FSMC_AST 15 //Address Set Up Time #define LCD_SSD1963_FSMC_DST 15 //Data Set Up Time #define LCD_SSD1963_PORTRAIT
in „7 Zoll LCD Display“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DDS.vhd
475 => x"2B2DBFA4", 476 => x"2B43D55E", 477 => x"2B59E934", 478 => x"2B6FFB22", 479 => x"2B860B2A", 480 => x"2B9C1949", 481 => x"2BB2257F", 482 => x"2BC82FCA", 483 => x"2BDE382A", 484 => x"2BF43E9E", 485 => x"2C0A4325", 486 => x"2C2045BE", 487 => x"2C364667", 488 => x"2C4C4521", 489 => x"2C6241E9", 490
in „DDS mit DE0-Nano Board nur niedrige Frequenzen?“ · FPGA, VHDL & Co. ·
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Datei
Program_Memory.TXT
444 1BB 3185 MOVLP 0x5 445 1BC 250E CALL 0x50e 446 1BD 3180 MOVLP 0 447 1BE 16F0 BSF 0x70, 0x5 448 1BF 3002 MOVLW 0x2 449 1C0 00F7 MOVWF 0x77 450 1C1 0877 MOVF 0x77, W 451 1C2 00F8 MOVWF 0x78 452 1C3 29C4 GOTO 0x1c4 453 1C4 1BF0 BTFSC 0x70, 0x7 454 1C5 29C7 GOTO 0x1c7 455 1C6 29C8 GOTO 0x1c8 456 1C7 29CD
in „Falsche Quelltextposition beim Debuggen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD204B_DIS.pdf
L H DD RAM address DD RAM Data is sent and 42μs ADDRESS received after this setting READ BUSY L H BF Address Counter used for 0μs H Busy FLAG & both DD & CG RAM address BF ADDRESS L Ready − Reads BF indication internal operating is being performed − Reads address counter contents WRITE DATA H L Write
in „LCD Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
164a_series-v10.PDF
L H DD RAM address 42μs DD RAM Data is sent and ADDRESS received after this setting READ BUSY L H BF Address Counter used for 0μs H Busy FLAG & both DD & CG RAM address BF ADDRESS L Ready − Reads BF indication internal operating is being performed − Reads address counter contents WRITE DATA H L Write
in „LCD Aufloesung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD204B_DIS.pdf
L H DD RAM address DD RAM Data is sent and 42μs ADDRESS received after this setting READ BUSY L H BF Address Counter used for 0μs H Busy FLAG & both DD & CG RAM address BF ADDRESS L Ready − Reads BF indication internal operating is being performed − Reads address counter contents WRITE DATA H L Write
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PDF
20x4.pdf
L H DD RAM address DD RAM Data is sent and 42μs ADDRESS received after this setting READ BUSY L H BF Address Counter used for 0μs H Busy FLAG & both DD & CG RAM address BF ADDRESS L Ready − Reads BF indication internal operating is being performed − Reads address counter contents WRITE DATA H L Write
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PDF
sender_Empf_LCD.pdf
L H DD RAM address DD RAM Data is sent and 42μs ADDRESS received after this setting READ BUSY L H BF Address Counter used for 0μs H Busy FLAG & both DD & CG RAM address BF ADDRESS L Ready − Reads BF indication internal operating is being performed − Reads address counter contents WRITE DATA H L Write
in „Adressvergabe für Ram und LCD ??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD.pdf
L H DD RAM address 42μs DD RAM Data is sent and ADDRESS received after this setting READ BUSY L H BF Address Counter used for 0μs H Busy FLAG & both DD & CG RAM address BF ADDRESS L Ready − Reads BF indication internal operating is being performed − Reads address counter contents WRITE DATA H L Write
in „lcd string "ü" darstellen.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DIS.pdf
L H DD RAM address DD RAM Data is sent and 42μs ADDRESS received after this setting READ BUSY L H BF Address Counter used for 0μs H Busy FLAG & both DD & CG RAM address BF ADDRESS L Ready − Reads BF indication internal operating is being performed − Reads address counter contents WRITE DATA H L Write
in „Ansteuern eines LCD über ATmega16“ · Mikrocontroller und Digitale Elektronik ·