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ascii-set-4.h
0x08, 0xfe, 0x09, 0x09, 0x02, 0x00, 0x18, 0xa4, 0xa4, 0xa4, 0x7c, 0x00, // f und g // Zeichen 104 bis 111 0x7f, 0x08, 0x04, 0x04, 0x78, 0x00, 0x00, 0x44, 0x7d, 0x40, 0x00, 0x00, // h und i 0x40, 0x80, 0x84, 0x7d, 0x00, 0x00, 0x7f, 0x10, 0x28, 0x44, 0x00, 0x00, // j und k 0x00, 0x41, 0x7f, 0x40, 0x00, 0x00
in „EEPROM schreiben,lesen“ · Mikrocontroller und Digitale Elektronik ·
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File
spi_master.v
else if (sck_q == spi_control[3:0]) begin ctr_d = ctr_q + 1'b1; // count the shifted bit if(ctr_q==3'b111) begin // 1 byte already shifted out state_d=IDLE; data_out_d = data_q; // Received a full byte, so set notification bit spi_status_d[0] <= 1'b1; // Reset start bit, so user can start next transfer
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Reislampe3.cc
F_PWM*PWM_STEPS)) // Systemtakte pro PWM-Takt //#define T_PWM 1 //TEST #if ((T_PWM*PWM_PRESCALER)<(111+5)) #error T_PWM zu klein, F_CPU muss vergrösst werden oder F_PWM oder PWM_STEPS verkleinert werden #endif #if ((T_PWM*PWM_STEPS)>65535) #error Periodendauer der PWM zu gross! F_PWM oder PWM_PRESCALER
in „error: invalid types 'bool[int]' for array subscript“ · Mikrocontroller und Digitale Elektronik ·
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File
take1.lst
zero_reg__ 108 0032 01F4 brne .L2 109 /* epilogue start */ 110 .LBE2: 11:take1.c **** } 12:take1.c **** } 111 .stabn 68,0,12,.LM6-.LFBB1 112 .LM6: 113 0034 DF91 pop r29 114 0036 CF91 pop r28 115 0038 0895 ret 116 .size add, .-add 117 .stabs "ergebnis:r(1,22)",64,0,5,24 118 .stabn 192,0,0,.LFBB1-.LFBB1 119 .
in „Byteweise mit Carry addieren?“ · Mikrocontroller und Digitale Elektronik ·
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File
take4.lst
{ 107 .stabn 68,0,9,.LM8-.LFBB1 108 .LM8: 109 0026 2150 subi r18,lo8(-(-1)) 110 0028 01F4 brne .L4 111 /* epilogue start */ 112 .LBE2: 16:take4.c **** } 17:take4.c **** } 113 .stabn 68,0,17,.LM9-.LFBB1 114 .LM9: 115 002a 0895 ret 116 .size add, .-add 117 .stabs "a:r(1,2)",64,0,5,24 118 .stabs "r1:r(1,2
in „Byteweise mit Carry addieren?“ · Mikrocontroller und Digitale Elektronik ·
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File
tinymips.v
logical and (for and) 6'b100101: alucont <= 3'b001; // logical or (for or) 6'b101010: alucont <= 3'b111; // set on less (for slt) default: alucont <= 3'b101; // should never happen endcase endcase endmodule // Datapath, including register file, ALU, muxes, and other registers module datapath #(parameter
in „help me..newbie in this language“ · FPGA, VHDL & Verilog ·
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PDF
BMA180_main_c.pdf
des X-MSB um 8Bit n 109 temp2|=read(ACCXLSB); 110 temp2=temp2>>2; /*LSB+MSB um 2 Stellen nach recht 111 benötigt werden*/ 112 printf("%d\t",temp2); //Ausgabe der Daten in X-Richtung 113 114 while(temp!=1) 115 { 116 temp=read(ACCYLSB)&0x01; 117 } 118 119 temp=read(ACCYMSB); 120 temp2=temp<<8; 121 temp2
in „Problem mit FDEV_SETUP_STREAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Inline_AVR8ASM_arduino.pdf
Anschließend wir der Wert aus r16 in das DDRB geladen, dazu dient der Befehl out [A TMEL INSTRUCTION SET, S.111]. Das DDRB hat die Adresse 0x04 [Atmel Datenblatt 2009, Tabelle S.426], so daß sich jetzt folgendes ergibt: 1 Allerdings vgl. die Anweisung sbi [ATMEL INSTRUCTION SET, S. 128] 2 Einführung in das physical
in „Mit dem ATMEL STUDIO 7 klarkommen“ · Mikrocontroller und Digitale Elektronik ·
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File
Build-Listing.txt
107 00c0 020051E1 2: cmp R1, R2 108 00c4 04008134 strlo R0, [R1], #4 109 00c8 FCFFFF3A blo 2b 110 111 /* Enter the C code */ 112 00cc FEFFFFEA b main 113 114 .endfunc _ARM GAS ../startup.S page 3 115 00d0 00000000 .end 115 00000000 115 00000000 115 00000000 115 00000000 _ARM GAS ../startup.S page 4
in „GNUARM-Linker ERROR wegen hardware FP“ · Mikrocontroller und Digitale Elektronik ·
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File
img.txt
148 148 147 146 145 148 146 145 146 146 144 143 144 143 142 142 142 142 141 137 137 133 133 134 133 111 88 85 82 82 83 81 80 83 82 80 79 77 79 78 77 77 77 76 74 73 73 74 74 75 76 75 74 72 72 72 72 72 75 76 71 69 69 70 73 75 75 74 74 72 65 66 64 55 51 47 47 45 43 46 44 44 42 40 38 38 40 44 42 39 39 40
in „help in reading a large text file using verilog.“ · FPGA, VHDL & Verilog ·
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File
rs232.vhd
strIdle; end if; when strEightDelay => dataIncr <= '0'; rShift <= '0'; CE <= '0'; if ctr(2 downto 0) = "111" then ctRst <= '1'; dataRST <= '1'; strNext <= strGetData; else ctRst <= '0'; dataRST <= '0'; strNext <= strEightDelay; end if; when strGetData => CE <= '0'; dataRst <= '0'; if ctr(3 downto 0) = "1111
in „Transmitting 12 bit by RS232 in packs of 8 bits“ · FPGA, VHDL & Verilog ·
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File
z80.lst
106: 005F 7E ld a, (hl) 107: 0060 AD xor l 108: 0061 D300 out (0), a 109: 0063 0680 ld b, 80h 110: 111: 0065 trampeln2: 112: 0065 10FE djnz $ 113: 0067 23 inc hl 114: 0068 AF xor a 115: 0069 79 ld a, c 116: 006A 17 rla 117: 006B 4F ld c, a 118: 006C D301 out (1), a 119: 006E 30EF jr nc, Loop_2inner 120
in „Hilfe bei z80 Hex Datei“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LC75710NE.pdf
pattern (output data) is undefined if the characterBcodes 00001B00 to 000B1111 , 1000B000 to 1001B111 , or 11100000 to 11111111 Bare written to DCRAM. No. 4907-18/21 LC75710NE, 75711NE, 75712E Table 4 LC75711NE CGROM (Version for use in Europe) Note: The character pattern (output data) is undefined
in „Controling Sanyo LC75710 by ATMega16“ · µC & Digital Electronics ·
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File
mv_gcctest9.lst
mv_gcctest9.c **** int main(void) 23:mv_gcctest9.c **** { 109 .LM1: 110 /* prologue: frame size=0 */ 111 0000 C0E0 ldi r28,lo8(__stack - 0) 112 0002 D0E0 ldi r29,hi8(__stack - 0) 113 0004 DEBF out __SP_H__,r29 114 0006 CDBF out __SP_L__,r28 115 /* prologue end (size=4) */ 24:mv_gcctest9.c **** double a1
in „Multiplikation ist zu schnell...“ · Mikrocontroller und Digitale Elektronik ·
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File
i2c_master_top.txt
could change in future releases -- when "101" => wb_dat_o <= txr; when "110" => wb_dat_o <= cr; when "111" => wb_dat_o <= (others => '0'); when others => wb_dat_o <= (others => 'X'); -- for simulation only end case; end if; end process assign_dato; -- generate registers (CR, SR see below) gen_regs: process
in „Connect FPGA with i2c to a mikrocontroller“ · FPGA, VHDL & Verilog ·
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File
main.lst
----------------------------- 109 ; Function stop_cpu 110 ; --------------------------------- 0000 111 _stop_cpu_start:: 0000 112 _stop_cpu: 113 ;driver.c:10: __endasm ; 0000 76 [ 4] 114 halt 115 ;driver.c:12: while (1); 0001 116 00102$: 0001 18 FE [12] 117 jr 00102$ 0003 118 _stop_cpu_end:: 119 ;driver.c
in „Mehrdimensionale char-arrays“ · Mikrocontroller und Digitale Elektronik ·
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File
main.txt
f4 brcc .+4 ; 0xf8 <__stack+0x19> f4: b8 01 movw r22, r16 f6: 7c c0 rjmp .+248 ; 0x1f0 <__stack+0x111> f8: 8a 85 ldd r24, Y+10 ; 0x0a fa: 9a 89 ldd r25, Y+18 ; 0x12 fc: 89 27 eor r24, r25 fe: 8a 87 std Y+10, r24 ; 0x0a 100: 24 30 cpi r18, 0x04 ; 4 102: 11 f0 breq .+4 ; 0x108 <__stack+0x29> 104: 22 30
in „flash-Fehler mit ATtiny2313, compile ok“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hut1_11.pdf
.....92 Figure 9: 7-Segment Direct Mapping Data....................................................111 Figure 10: 14-Segment Direct Mapping Data................................................111 Figure 11: Matrix Character Segment Mapping.............................................117 Figure 12: 7-
in „USB HID Descriptor (V-USB)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
27512EP_EDA.pdf
DE,HL 105 CALL INHEX 106 mov A,[si-002] 107 EX DE,HL 108 mov HL,00400 109 L1A6A ADD HL,HL 110 DEC A 111 jmp NZ,L1A6A 112 EX DE,HL 113 mov A,[si-2] 114 cmp 6 115 jmp Z,X1 116 ; 117 PUSH HL 118 XOR A 119 SBC HL,DE 120 POP HL 121 jmp NC,L1A4A 122 ; 123 X1 call PRINT 124 db 00E 125 db "1908A" 126 db ".+080
in „EDA-Dateien bearbeiten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A3PE1500__FPGA_.pdf
IO147NDB5V1 W11 IO133NDB4V2 W12 IO130NDB4V2 W13 IO130PDB4V2 W14 IO113NDB4V0 W15 GDC2/IO113PDB4V0 W16 IO111NDB4V0 W17 GDA2/IO111PDB4V0 W18 TMS W19 GND W20 NC W21 NC W22 NC Y1 VCCIB6 Y2 NC Y3 NC Y4 IO161NDB5V3 Y5 GND Y6 IO163NDB5V3 3-26 Revision 9 ProASIC3E Flash Family FPGAs 484-Pin FBGA 484-Pin FBGA 484-
in „How to interface FLASH ADC with FPGA?“ · FPGA, VHDL & Verilog ·
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PDF
2018_NCAA_Mittal_FPGA_Accelerator_CNN.pdf
1.+1) +(+1.-1+(+1.+1) 3 -1 +1 +1 -1 +1 +(+1.+1) +(+1.-1+(+1.+1) 000 -1-1-1= -3 101 001 -1-1+1 = -1 111 (a) An example of binarized MM 010 -1+1-1= -1 111 011 -1+1+1= +1 001 T 0 0 1 BCNT(XNOR(011,011)) 100 +1-1-1= -1 111 0 1 1 1 0 1 BCNT(XNOR(011,000)) 3 -1 +1 101 +1-1+1= +1 001 BCNT(XNOR(011,111)) 1 0 1 110 +1+1-1= +1 001 (b) Binarized MM using XNOR and BCNT. -1 is represented using 0. 111 +1+1+1= +3 011 (c) BCNT using a lookup table (OUT is in 2’s complement form) Fig. 8. (a) An example of binarized MM (b) Implementing binarized MM using XNOR and BCNT (bit-count) functions (c) Implementing
in „Survey on FPGA-based Accelerators for CNNs“ · FPGA, VHDL & Verilog ·
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File
mtd_dataflash.c
0x2c) 4096 528 10 * AT45DB0321B 32Mbit (4M) xx1101xx (0x34) 8192 528 10 * AT45DB0642 64Mbit (8M) xx111xxx (0x3c) 8192 1056 11 * AT45DB1282 128Mbit (16M) xx0100xx (0x10) 16384 1056 11 */ static int __devinit dataflash_probe(struct spi_device *spi) { int status; status = dataflash_status(spi); if (status
in „Probleme mit Atmel DataFlash“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Modeling_and_Implementation_of_FPGA___Based_Flexible_Voltage-to-Frequency_Converter.pdf
in,max=1,5V corresponds to Sofia, 2010 (in Bulgarian). fout=90kHz and V in,min 900mV corresponds to 111
in „Simulink Voltage-to-Frequency Converter on matlab.“ · FPGA, VHDL & Verilog ·
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File
ee24xx.lst
108:ee24xx.c **** goto error; /* must send stop condition */ 109:ee24xx.c **** } 110:ee24xx.c **** 111:ee24xx.c **** /* zweite 8 Bit der Adresse */ 112:ee24xx.c **** TWDR = (uint8_t) eeaddr; /* low 8 bits of addr */ 113:ee24xx.c **** TWCR = _BV(TWINT) | _BV(TWEN); /* clear interrupt to start transmission
in „I2C EEPROM Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
de1_v11a.pdf
LVDS93p LVDS108p AB12 FLASH_A16 SRAM_A5 AB10 LVDS110p LVDS125p Y5 SRAM_A17 W16 LVDS94n SRAM_A8 V11 LVDS111n LVDS126n AA4 SRAM_A2 Y17 LVDS94p SRAM_A9 W11 LVDS111p LVDS126p AB4 SRAM_A3 FLASH_A6 V15 AA3 SRAM_A0 FLASH_A5 U15 LVDS95n SRAM_A10 R11 LVDS127n AB3 SRAM_A1 LVDS95p SRAM_A11 T11 LVDS112n LVDS127p T16
in „FPGA active serial programming“ · FPGA, VHDL & Verilog ·
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File
Fehlermeldungen.txt
`mymac' stack.o:C:\Dokumente und Einstellungen\erster\Eigene Dateien\ETH_M32EX\default/../stack.c:111: more undefined references to `mymac' follow stack.o: In function `stack_init': C:\Dokumente und Einstellungen\erster\Eigene Dateien\ETH_M32EX\default/../stack.c:115: undefined reference to `enc_init
in „GCC: wie kompiliere ich ETH_M32EX von Ulrich Radig richtig?“ · Mikrocontroller und Digitale Elektronik ·
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File
virtualInheritanceTest.s
byte 0x0 .section .debug_pubnames,"",@progbits .long 65 .word 2 .long .Ldebug_info0 .long 824 .long 111 .string "main" .long 530 .string "B::test" .long 615 .string "B::B" .long 680 .string "A::A" .long 774 .string "A::test" .long 0 .section .debug_aranges,"",@progbits .long 16 .word 2 .long .Ldebug_info0
in „Warning bei avr-g++“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Steuersystem_Gew_shaus_4.pdf
30 0,78 1040 1,390 7,744 561 2 49 40 0,75 1122 1,468 7,861 592 2 80 50 0,73 1209 1,546 7,772 623 2 111 60 0,71 1299 1,624 7,672 655 2 143 70 0,69 1392 1,701 7,716 686 2 174 80 0,67 1490 1,778 7,584 717 2 205 90 0,65 1591 1,854 7,515 747 2 235 100 0,63 1696 1,929 7,430 778 3 10 110 0,61 1805 2,003 7,143
in „Einfaches µC Betriebssystem - z. B. für SPS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
03_9-JPE09127.pdf
ZSI fed induction motor drive system has four (e.g., null (000) ! active(100) ! active (110) ! null (111)) major parts: a diode rectifier, a Z-source (containing two series and the null states at the start and end of a switching cycle inductors and two equal, diagonally connected capacitors), an Tsspan
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PDF
t6_1.pdf
014D5, D2367, DD0123, D4567, D ,D 100 101 α 000 001 Figure 6: First pass of top down heuristic. 110 111 010 011 along S and recursively calls itselfon each of the sub- 2 trees ro oted at M and M .The recursion terminates 1 2 when there are just two data signals remaining. Figure 4: Bo olean cub e corresp
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File
ddr3_code.vhdl
time %t INFO: %s %d OCD Program = OCD Exit", $time, cmd_string[cmd], bank); end else if (ocd == 3'b111) begin if (DEBUG) $display ("%m: at time %t INFO: %s %d OCD Program = OCD Default", $time, cmd_string[cmd], bank); end else begin $display ("%m: at time %t ERROR: %s %d Illegal OCD Program = %b", $time
in „vhdl/verilog code for interfacing DDR3 SDRAM to virtex6 or spartran6 fpga“ · FPGA, VHDL & Verilog ·
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File
debug_okay.asm
ori r24, 0x02 ; 2 144: 80 83 st Z, r24 TIMSK1 |= (1<<ICIE1) | (1<<TOIE1); 146: ef e6 ldi r30, 0x6F ; 111 148: f0 e0 ldi r31, 0x00 ; 0 14a: 80 81 ld r24, Z 14c: 81 62 ori r24, 0x21 ; 33 14e: 80 83 st Z, r24 cli(); // §§§ muss spätestens vor dem letzten Befehl stehen, dieser ist allerdings beliebig (setting
in „Fehler bei einfacher Integer-Division?“ · Mikrocontroller und Digitale Elektronik ·
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File
font.h
6A 106 j */ 75, /* 6B 107 k */ 76, /* 6C 108 l */ 77, /* 6D 109 m */ 78, /* 6E 110 n */ 79, /* 6F 111 o */ 80, /* 70 112 p */ 81, /* 71 113 q */ 82, /* 72 114 r */ 83, /* 73 115 s */ 84, /* 74 116 t */ 85, /* 75 117 u */ 86, /* 76 118 v */ 87, /* 77 119 w */ 88, /* 78 120 x */ 89, /* 79 121 y */ 90,
in „Frage zur Optimierung Display Text mit Font“ · Mikrocontroller und Digitale Elektronik ·
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PDF
as.pdf
xibu. fwfs puifs obnfe tfdujpot zpv tqfdjgz vtjoh uif a/tqbdf( boe a/tvctqbdf( ejsfdujwft/ Tff IQ:111 Tfsjft 911 Bttfncmz Mbohvbhf Sfgfsfodf Nbovbm )IQ :3543.:1112* gps efubjmt po uif a/tqbdf( boe a/tvctqbdf( bttfncmfs ejsfdujwft/ Beejujpobmmz- bt vtft ejfffsfou obnft gps uif tuboebse ufyu- ebub- boe
in „Doku zu gcc assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
Full-Scale Voltage = V C 1 LSB = V /4096 REF l CLK = 2MHz REF p 10 S TA= 25°C 1 LSB +V = +2.7V 11...111 V CC= +2.5V REF 11...110 1 PD1 = PD0 = 0 e11...101 1k 10k 100k 1M o t SAMPLE(Hz) p u O00...010 00...001 FIGURE 8. Supply Current vs Directly Scaling the Fre- quency of DCLK with Sample Rate or Keeping
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PDF
05_IJEEE-Vol6-Num2-ID2.pdf
phase VSI, where three state transitions occur (e.g., null (000) → active(100) → active (110) → null (111) ) and the null states are placed at the start and end of a switching cycle T s span Fig.4 Implementation block diagram of CBC. equal time intervals to achieve optimal harmonic performance. The switching
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PDF
DUE_Faradays_law.pdf
1878,1979,2081,2171,2273,2364,2465,2550,2647,2753 };//voltage U double[] Frq_f = { 27.99,55.98,83.91,111.92,139.74,167.76,195.5,223.71,251.26,279.33 };//frequency public void draw_fct(Graphics g, TFkt_00 z, Color c) { double x, dx; int xvon, yvon, xbis, ybis; Pen pen = new Pen(c, 1); dx = (xmax - xmin)
in „Arduino Due in plain C“ · Mikrocontroller und Digitale Elektronik ·
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File
foo.dwarf-3.txt
uleb128 0x1 .long .LASF109 .byte 0x5 .uleb128 0x1 .long .LASF110 .byte 0x5 .uleb128 0x1 .long .LASF111 .byte 0x5 .uleb128 0x1 .long .LASF112 .byte 0x5 .uleb128 0x1 .long .LASF113 .byte 0x5 .uleb128 0x1 .long .LASF114 .byte 0x5 .uleb128 0x1 .long .LASF115 .byte 0x5 .uleb128 0x1 .long .LASF116 .byte 0x5
in „Simple C Frage zum Typ enum“ · Mikrocontroller und Digitale Elektronik ·
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File
debug_error.asm
ori r24, 0x02 ; 2 144: 80 83 st Z, r24 TIMSK1 |= (1<<ICIE1) | (1<<TOIE1); 146: ef e6 ldi r30, 0x6F ; 111 148: f0 e0 ldi r31, 0x00 ; 0 14a: 80 81 ld r24, Z 14c: 81 62 ori r24, 0x21 ; 33 14e: 80 83 st Z, r24 cli(); // §§§ muss spätestens vor dem letzten Befehl stehen, dieser ist allerdings beliebig (setting
in „Fehler bei einfacher Integer-Division?“ · Mikrocontroller und Digitale Elektronik ·
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File
filemon-winavr-20060125.log.txt
4096 110 19:27:56 Avr-gcc:FFE5124B Read D:\WINAVR\BIN\AVR-GCC.EXE SUCCESS Offset: 80896 Length: 4096 111 19:27:56 Avr-gcc:FFE5124B Read D:\WINAVR\BIN\AVR-GCC.EXE SUCCESS Offset: 17408 Length: 4096 112 19:27:56 Avr-gcc:FFE5124B Read D:\WINAVR\BIN\AVR-GCC.EXE SUCCESS Offset: 89088 Length: 4096 113 19:27:
in „avr-gcc: _spawnv: No such file or directory“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PEHandbuch.pdf
== 0x0E00 _HEXASC == 0x0E37 _HEXDEZ == 0x0F74 _HEX16DEZ == 0x0FA5 _DEZHEX == 0x10B3 _DEZ16HEX == 0x111B _BCH1TO7 == 0x1320 _BCH2TO7 == 0x1349 ;Arithmetik _DIV16 == 0x11A1 _DIV32 == 0x13D6 _MUL16 == 0x1373 _CMP16 == 0x124A ;Programmbeendigung _CLRAUTO == 0x135F _TASTEND == 0x18D8 _T0END == 0x0F5C _T1END
in „MC68HC908AZ60A programmieren mit OpenSource“ · Mikrocontroller und Digitale Elektronik ·
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File
font_graph.c
0x00,0x00,0x0D,0x13,0x11,0x11,0x11,0x00, // 110 = 0x6e <n> 0x00,0x00,0x0E,0x11,0x11,0x11,0x0E,0x00, // 111 = 0x6f <o> 0x00,0x00,0x0F,0x11,0x0F,0x01,0x01,0x00, // 112 = 0x70 <p> 0x00,0x00,0x16,0x19,0x1E,0x10,0x10,0x00, // 113 = 0x71 <q> 0x00,0x00,0x0D,0x0B,0x01,0x01,0x01,0x00, // 114 = 0x72 <r> 0x00,0x00,0x0E
in „Lib für Arduino Giga machen“ · Mikrocontroller und Digitale Elektronik ·
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File
out.lst
cpi r24, 0x74 ; 116 3e8: 91 05 cpc r25, r1 3ea: 24 f4 brge .+8 ; 0x3f4 3ec: 8f 36 cpi r24, 0x6F ; 111 3ee: 91 05 cpc r25, r1 3f0: e1 f0 breq .+56 ; 0x42a 3f2: 0e c0 rjmp .+28 ; 0x410 3f4: 85 37 cpi r24, 0x75 ; 117 3f6: 91 05 cpc r25, r1 3f8: e1 f0 breq .+56 ; 0x432 3fa: 88 37 cpi r24, 0x78 ; 120 3fc
in „Multiplikation ist zu schnell...“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Understanding_OpAmps.pdf
BBS (281) 274-2323 email dsph@ti.com Asia TI Number -800-800-1450 Americas Phone Singapore 800-0111-111 Phone +1(972) 644-5580 International+886-2-3786800 TI Number -800-800-1450 Taiwan 080-006800 Fax +1(972) 480-7800 Thailand 0019-991-1111 Email sc-infomaster@ti.com TI Number -800-800-1450 Contents Abstract
in „Instrumentation amplifier, single supply“ · Analog Circuits ·
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PDF
MPC82G516_datasheet.pdf
Power Saving Modes ................................................................................. 111 21.1 Idle Mode .............................................................................................................................111 21.2 Power-Down Mode..................................
in „Set PWM o/p pin in AT89C51CC01“ · µC & Digital Electronics ·
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PDF
MPC82G516_datasheet.pdf
Power Saving Modes ................................................................................. 111 21.1 Idle Mode .............................................................................................................................111 21.2 Power-Down Mode..................................
in „How to generate PWM using PCA in MPC82G516A“ · µC & Digital Electronics ·
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PDF
XE164xM_ds_v2.0_2009_03.PDF
3IC xx’01B4 H 6D H 109 D RTC RTC_IC xx’01B8 H 6E H 110 D End of PEC Subchannel EOPIC xx’01BC H 6F H 111 D 1) Register VECSEG defines the segment where the vector table is located. Bitfield VECSC in register CPUCON1 defines the distance between two adjacent vectors. This table represents the default setting
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PDF
LGT8FX8P_databook_v1.0.4.pdf
执行 SLEEP 指令后,MCU 将进入到 DPS1 模式。进入 DPS1 后, 系统所有时钟源均被关闭。此种模式可以使用 IO 的电平变化,看门狗唤醒。 掉电模式 DPS2 设置 SM[2:0]为 111, 并通过 DPSR2 寄存器的 DPS2EN 使能 AWSON 模块,执行 SLEEP 指 令后将进入 DPS2 模式。进入 DPS2 模式后,系统关闭内核电源。所以寄存器以及 RAM 数据 将会丢失。从 DSP2 唤醒过程与上电复位过程相同。 DPS2 模式下, 由于关闭了内核电压,寄存器信息丢失,因此端口的控制状态也将全部 恢复到输入状态,所有 IO 的输出驱动以及上拉控制也将关闭。 FLASH
in „Spot Welder Firmware Update fehlerhaft“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TestArmTurtorialDeu.pdf
Operationen. Beispielsweise kann das Hinzufügen wie folgt durchgeführt werden: ldr r0 = 222 ldr r1 = 111 addiere r2, r0, r1 Dies lädt zuerst den Wert 222 in das Register r0, lädt 111 in r1 und addiert schließlich r0 und r1 und speichert das Ergebnis (d. H. 333) in r2. Der Operand für das Ergebnis steht
in „ARM-Assembler-Tutorial“ · Mikrocontroller und Digitale Elektronik ·
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File
eeprom.c
eeDataONOFFCH3_3 EEMEM = 109; uint16_t eeDataONOFFCH4_3 EEMEM = 110; uint16_t eeDataONOFFCH5_3 EEMEM = 111; uint16_t eeDataONOFFCH6_3 EEMEM = 112; uint16_t eeDataONOFFCH7_3 EEMEM = 113; uint16_t eeDataONOFFCH8_3 EEMEM = 114; uint16_t eeDataONOFFCH9_3 EEMEM = 115; uint16_t eeDataONOFFCH10_3 EEMEM = 116; uint16
in „EEPROM Adresse über 255 und SOFT PWM Frage/Anliegen“ · Mikrocontroller und Digitale Elektronik ·