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71v416.pdf
than or equaWHZo+ DW to allow the I/O drivers to turn off and data to be placed on the bus for the requDWe. If OE is HIGH during a WE controlled write cycle, this requirement does not apply and the minimum write pulse is
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Thread
GCC inline assembler
Hi Hagen, mit diesen Makros sollte es gehen [C] #define HH8(dw) (*(((uint8_t*)&dw)+3)) #define HL8(dw) (*(((uint8_t*)&dw)+2)) #define LH8(dw) (*(((uint8_t*)&dw)+1)) #define LL8(dw) ((uint8_t)dw) [/C] also dann in etwa so [C] uint32_t dw; dw = pgm_read_dword
[c] #define HH8(dw) (*(((uint8_t*)&dw)+3)) #define HL8(dw) (*(((uint8_t*)&dw)+2)) #define LH8(dw) (*(((uint8_t*)&dw)+1)) #define LL8(dw) ((uint8_t)dw) [/c] Shit, das geht auch nicht, bzw. erzeugt andere Probleme
Mikrocontroller und Digitale Elektronik ·Hagen Re · ·13 Antworten
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pl2303.pdf
CE .NET support feature August 29, 2002 1.3 • Buffer for upstream and downstream data flow – August 01, 2002 change from 96 to 256 bytes 1.2 • For Chip Version H (date code 0206) July 03, 2002 • Add OS Support in Features Section • Correct default values in Table 5. Device Configuration Register • Add
in „USB - seriell Adapter für 1,- EUR!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
max232.pdf
SLLS047J − FEBRUARY 1989 − REVISED NOVEMBER 2003 D Meet or Exceed TIA/EIA-232-F and ITU MAX232 . . . D, DW, N, OR NS PACKAGE Recommendation V.28 MAX232I . . . D, DW, OR N PACKAGE (TOP VIEW) D Operate With Single 5-V Power Supply D Operate Up To 120 kbit/s C1+ 1 16 V CC D Two Drivers and Two Receivers VS+
in „MAX3232 Problem“ · Mikrocontroller und Digitale Elektronik ·
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AVR-Tutorial.pdf
fallenden Flanke (high nach low) ausgelöst werden. Dafür gibt es in diesem Register die Bits ISC00, ISC01 (betreffen INT0) und ISC10 und ISC11 (betreffen INT1). Hier eine Übersicht über die möglichen Einstellungen und was sie bewirken: ISCx1 ISCx0 Beschreibung 0 0 Low-Level am Pin löst den Interrupt aus
in „AVR-Tutorial als PDF bzw *.doc“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
FIFO v bytoch .dw VendorUSBID ;8,9 byte - identifikator dodavatela (Cypress=0x04B4) 1383 .dw DeviceUSBID ;10,11 byte - identifikator vyrobku (teplomer=0x0002) 1384 .dw DeviceVersion ;12,13 byte - cislo verzie vyrobku (verzia=0.01) 1385 .db 0x01,0x02 ;14 byte - index stringu "vyrobca" 1386 ;15 byte - index stringu "vyrobok" 1387 .db 0x00,0x01 ;16 byte - index stringu "seriove cislo" 1388 ;17 byte - pocet moznych konfiguracii 138DeviceDescriptorEnd
in „Per USB mit ATMega32 kommunizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UC3906_TEX.pdf
0.2 -0.5 -0.2 A Current Sense Comparator Input Bias Current 0.1 0.5 0.1 0.5 A Input Offset Current 0.01 0.2 0.01 0.2 A Input Offset Voltage Referenced to Pin 2, OUT = 1mA 20 25 30 20 25 30 mV Offset Supply Sensitivity +V IN= 5 to 40V 0.05 0.35 0.05 0.35 %/V Offset Common Mode Sensitivity CMV = 2V to +V
in „Ladeschlußspannung bei Blei-Akkus“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
G32trust.asm
14h push ebx mov eax, [esp+lpFileName] push ebp push esi push edi push 0 ; hTemplateFile push 80h ; dwFlagsAndAttributes push 3 ; dwCreationDisposition push 0 ; lpSecurityAttributes push 1 ; dwShareMode push 80000000h ; dwDesiredAccess push eax ; lpFileName call ds:__imp_CreateFileA mov edi, eax cmp edi
in „Wer kann mir eine ASM File compelieren“ · Softwareentwicklung ·
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PDF
USS720-1.pdf
bAlternateSetting Byte 0x00 Value used to select this alternate interface. 4 bNumEndpoints Byte 0x01 Number of endpoints used by this descriptor. 5 bInterfaceClass Byte 0x07 Printer class. 6 iInterfaceSubClass Byte 0x01 Printer subclass. 7 bInterfaceProtocol Byte 0x01 Unidirectional interface. 8 iInterface
in „[V] SL11H, USS720E ua.“ · Markt ·
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Datei
assembler_doku.txt
***************************************************************** ORG 0FFFEh ; MSP430 RESET Vector DW RESET ; ORG 0FFF0h ; Timer_A CCR[1/2] Vector DW HND_CCIFGx ; ORG 0FFF2h ; Timer_A0 Vector (Interrupt Vektor ) DW HND_CCIFG0 ; ORG 0FFE4h ; Port 1.x Interrupt Vektor DW P1_ISR ; ORG 0FFE6h ; Port 2.x
in „Assembler-Datei aufteilen, Syntax ?“ · Mikrocontroller und Digitale Elektronik ·
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msp430f1232.pdf
PACKAGED DEVICES T PLASTIC 32-PIN A PLASTIC 20-PIN PLASTIC 20-PIN PLASTIC 28-PIN PLASTIC 28-PIN SOWB (DW) TSSOP (PW) SOWB (DW) TSSOP (PW) QFN (RHB) MSP430F1122IRHB −40°C to 85°C MSP430F1122IDW MSP430F1122IPW MSP430F1222IDW MSP430F1222IPW MSP430F1132IRHB MSP430F1132IDW MSP430F1132IPW MSP430F1232IDW MSP430F1232IPW
in „MSP430 Interrupt Prioritäten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SitePlayer_Software_Manual.pdf
data. UDP receive packet example: Send 2 bytes (56h and 98h) to object address 0105h 02h,0FDh,05h,01h,56h,98h Send 1 byte (26h) to object address 0000h 01h,0FEh,00h,00h,26h Send 1 byte (00h) to object address 0010h 01h,0FEh,10h,00h,00h Total Packet: num,comp,address,data... 02h,0FDh,05h,01h,56h,98h 01h,0FEh,00h,00h,26h 01h,0FEh,10h,00h,00h 00h,00h UDPsendtest Program You may use the UPDsendtest program located in the SitePlayer installation directory to test the UDP packets sent out by SitePlayer.
in „RS232 nach HTTP/HTML Konverter“ · Mikrocontroller und Digitale Elektronik ·
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X1226.pdf
Type Reg Bit Range f Name 7 6 5 4 3 2 1 0 (optional) D 003F Status SR BAT AL1 AL0 0 0 RWEL WEL RTCF 01h 0037 RTC Y2K 0 0 Y2K21 Y2K20 Y2K13 0 0 Y2K10 19/20 20h 0036 (SRAM) DW 0 0 0 0 0 DY2 DY1 DY0 0-6 00h 0035 YR Y23 Y22 Y21 Y20 Y13 Y12 Y11 Y10 0-99 00h 0034 MO 0 0 0 G20 G13 G12 G11 G10 1-12 00h 0033 DT
in „kann RTC X1226 nicht beschreiben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MJoy.asm
;6 byte - protocol code ;7 byte - FIFO size in bytes .dw VendorUSBID ;8,9 byte - vendor identifier .dw DeviceUSBID ;10,11 byte - product identifier .dw DeviceVersion ;12,13 byte - product version number .db 0x01,0x02 ;14 byte - index of string "vendor" ;15
in „IGOR USB lässt sich nicht assemblieren“ · Mikrocontroller und Digitale Elektronik ·
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Assemblerbefehlavr.pdf
,k 0 ≤ s ≤ 7, -64 ≤ k ≤ +63 PC ← PC + k + 1 PC ← PC + 1, if condition is false 16-bit Opcode: 1111 01kk kkkk ksss Status Register (SREG) and Boolean Formula: I T H S V N Z C – – – – – – – – Example: cpi r20,5 ; Compare r20 to the value 5 brbc 1,noteq ; Branch if Zero Flag cleared ... noteq:nop ; Branch
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beginner_de.pdf
muss. Damit wir den Überblick nicht verlieren, könnte z.B. ein Doppelwort so angeordnet sein: .DEF dw1 = r17 .DEF dw2 = r18 .DEF dw3 = r19 dw0 bis dw3 liegen jetzt in einer Registerreihe. Soll dieses Doppelwort z.B. zu Programmbeginn auf einen festen Wert (hier: 4.000.000) gesetzt werden, dann sieht das in Assembler so aus: .EQU dwiLDI dw0,LOW(dwi) ; Die untersten 8 Bits in R16 LDI dw1,BYTE2(dwi) ; Bits 8 .. 15 in R17 LDI dw2,BYTE3(dwi) ; Bits 16 .. 23 in R18 LDI dw3,BYTE4(dwi) ; Bits 24 .. 31 in R19 Damit ist die Zahl in verdauliche
in „Langzeittimer für Anfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Manual_netX_Program_Reference_Guide_Rev02_GB.pdf
period time (Precharge to command) 00 : 1 clk 7:6 T_RP 01 : 2 clks R/W 11 10 : 3 clks (default) 11 : reserved Write recovery time (last write data to Precharge) 00 : 1 clk 5:4 T_WR 01 : 2 clks R/W 11 10 : 3 clks (default) 11 : reserved 3:2 reserved - R 00 Active
in „netX500 mit ARM-Kern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EEPROM_s_93Cxx.pdf
All Memory 1 00 10X XXXX 10 10 XXXX 9 Write All Memory WRAL with same Data 1 00 01X XXXX D7-D0 18 01 XXXX D15-D0 25 Notes: 1. X = don’t care bit. 2. Address bits A6 and A5 are not decoded by the M93C06. 3. Address bits A5 and A4 are not decoded by the M93C06. Table 7B. Instruction
in „EEPROM 93C86 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slaa123.pdf
; CPU runs from XT2 @3.58MHz ; ; Constants Definition FS equ 001h Memstart equ 1401h Memend equ 0fe01h ;****************************************************************************** RSEG CSTACK DS 0 ;****************************************************************************** RSEG CODE ;**********
in „Nur ein einfacher Gong“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ZndUhr01.asm
128,64,32,16,8,4,2,1 ;Bitmuster für Schuss 8...15 an PortA mt_head: ;obere Menüzeilen (Menüpunkte) .dw mt_000,mt_010,mt_020,mt_030,mt_040,mt_050,mt_060,mt_070 .dw mt_080,mt_090,mt_100,mt_110,mt_120,mt_130,mt_030,mt_030 .dw mt_160 mt_000: .db " *** Edit-Mode *** ",0,0 mt_010: .db " Datentransfer mit PC
in „Display Menü LCD 4x20“ · Mikrocontroller und Digitale Elektronik ·
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Datei
5EINSEN.LST
+1 dw val 14386+1+1 $rs 00E7 01B2 14387+1 dw val 14452+1+1 $rs 00E9 01B4 14453+1 dw val 14584+1+1 $rs 00EB 01B8 14585+1 dw val 14947+1+1 $rs 00ED 01C3 14948+1 dw val 15013+1+1 $rs 00EF 01C5 15014+1 dw val
in „Zähler“ · FPGA, VHDL & Co. ·
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Datei
5EINSEN.LST
rs 00CC 01A5 2962+1 dw val 2968+1+1 $rs 00CE 01A6 2969+1 dw val 2989+1+1 $rs 00D0 01A9 2990+1 dw val 2996+1+1 $rs 00D2 01AA 2997+1 dw val 3010+1+1 $rs 00D4 01AC 3011+1 dw val 3045+1+1 $rs 00D6 01B1 3046+1 dw val 3052+1+1 $rs 00D8 01B2 3053+1 dw val 3066+1+1 $rs 00DA 01B4 3067+1 dw val 3094+1+1 $rs 00DC 01B8 3095+1 dw val 3171+1+1 $rs 00DE 01C3 3172+1 dw val 3185+1+1 $rs 00E0 01C5 3186+1 dw val 3192+1+1 $rs 00E2 01C6 3193+1 dw val
in „Zähler“ · FPGA, VHDL & Co. ·
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Datei
5EINSEN.LST
+1 dw val 13516+1+1 $rs 00E7 01B2 13517+1 dw val 13578+1+1 $rs 00E9 01B4 13579+1 dw val 13702+1+1 $rs 00EB 01B8 13703+1 dw val 14043+1+1 $rs 00ED 01C3 14044+1 dw val 14105+1+1 $rs 00EF 01C5 14106+1 dw val
in „Zähler“ · FPGA, VHDL & Co. ·
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PDF
4051.pdf
Ratings are those values beyond which damage to the device may occur. †Temperature Derating:“P and D/DW” Packages: – 7.0 mW/_C From 65_C To 125_C Ceramic “L” Packages: – 12 mW/_C From 100_C To 125_C MC14051B MC14052B MC14053B 8–Channel Analog Dual 4–Channel Analog Triple 2–Channel Analog Multiplexer/Demultiplexer
in „V: MC14051BCP“ · Markt ·
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Datei
main.lst
0x64,0x0 000092 726f 000093 646c 000094 0000 ;REGISTER BIT VARIABLES INITIALIZATION __REG_BIT_VARS: .DW 0x0008 000095 0008 __GLOBAL_INI_TBL: .DW 0x02 000096 0002 .DW 0x02 000097 0002 .DW __REG_BIT_VARS*2 000098 012a .DW 0x01 000099 0001 .DW _Tag 00009a 016f .DW _3*2 00009b 0054 .DW 0x01 00009c 0001 .DW _Wochentag 00009d 0170 .DW _4*2 00009e 0056 .DW 0x01 00009f 0001 .DW _Monat 0000a0 0171 .DW _5*2 0000a1 0058 .DW 0x02 0000a2 0002 .DW __base_y_G3 0000a3 0173 .DW _215*2 0000a4 008a .DW 0 0000a5 0000 __RESET: 0000a6 94f8 CLI 0000a7
in „Timer initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ZndUhr01.asm
128,64,32,16,8,4,2,1 ;Bitmuster für Schuss 8...15 an PortA mt_head: ;obere Menüzeilen (Menüpunkte) .dw mt_000,mt_010,mt_020,mt_030,mt_040,mt_050,mt_060,mt_070 .dw mt_080,mt_090,mt_100,mt_110,mt_120,mt_130,mt_030,mt_030 .dw mt_160 mt_000: .db " *** Edit-Mode *** ",0,0 mt_010: .db " Datentransfer mit PC
in „Probleme mit USART (ATMEGA8535)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
L51_BANK.A51
B_FACTOR EQU 1 SHL ?B_FIRSTBIT ?C_INITSEG SEGMENT CODE ; Segment zur Initialisierung RSEG ?C_INITSEG DB 01H ; IData DB ?B_CURRENTBANK ; Init Current Bank DB 0 ; Set to Zero DB 41H ; XData DW ?B_XDATAPORT ; Init XDATA Port DB 02H ; Set to 2 (First Bank) PUBLIC ?B_XDATAPORT ?BANK?DATA SEGMENT DATA RSEG ?BANK
in „Bankumschaltung beim 8051“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UC3906_TEX.pdf
0.2 -0.5 -0.2 A Current Sense Comparator Input Bias Current 0.1 0.5 0.1 0.5 A Input Offset Current 0.01 0.2 0.01 0.2 A Input Offset Voltage Referenced to Pin 2, OUT = 1mA 20 25 30 20 25 30 mV Offset Supply Sensitivity +V IN= 5 to 40V 0.05 0.35 0.05 0.35 %/V Offset Common Mode Sensitivity CMV = 2V to +V
in „Blei Gel Akku laden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
instruction-set.pdf
,k 0 ≤ s ≤ 7, -64 ≤ k ≤ +63 PC ← PC + k + 1 PC ← PC + 1, if condition is false 16-bit Opcode: 1111 01kk kkkk ksss Status Register (SREG) and Boolean Formula: I T H S V N Z C – – – – – – – – Example: cpi r20,5 ; Compare r20 to the value 5 brbc 1,noteq ; Branch if Zero Flag cleared ... noteq:nop ; Branch
in „LED Multiplex ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fft232slow.asm
, 16954 .dw 17694, 18433, 19171, 19905, 20634, 21356, 22069, 22772 .dw 23462, 24138, 24799, 25443, 26068, 26673, 27256, 27816 .dw 28352, 28862, 29345, 29800, 30226, 30622, 30987, 31319 .dw 31619, 31885, 32117, 32315
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
an169.pdf
the device. Supported Devices: CP2101/2 Prototype: SI_STATUS SI_SetBaudRate (HANDLE Handle, DWORD dwBaudRate) Parameters: 1. Handle—Handle to the device as returned by SI_Open. 2. dwBaudRate—A DWORD value specifying the Baud Rate to set. Return Value: SI_STATUS = SI_SUCCESS or SI_INVALID_BAUDRATE or
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Datei
main.asm
) | (1<<TOIE1) | (1<<OCIE1A) | (1<<TICIE1) out TIMSK, rTemp0 ; initiailze MCUCR ldi rTemp0, (1<<ISC01) | (1<<ISC00) out MCUCR, rTemp0 ; initialize GIMSK ldi rTemp0, (1<<INT0) out GIMSK, rTemp0 ; initialize TCCR0 ldi rTemp0, (1<<CS02) | (0<<CS01) | (0<<CS00) ;CK/256 out TCCR0, rTemp0 ; initiailze TCCR1x
in „DCF 77“ · Projekte & Code ·
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Datei
Sound.asm
.dw 0x080b .dw 0x1009 ; T5 .dw 0x2007 .dw 0x1100 ; Z2 T1 .dw 0x1000 .dw 0x1002 .dw 0x1004 ; T2 .dw 0x3007 ; T3 .dw 0x3009 ; T4 .dw 0x1807 .dw 0x0802 .dw 0x1002 ; T5 .dw 0x4002 .dw 0x2100 ; Z3 T1+2 .dw 0x1007 .dw 0x1004 .dw 0x1007 ; T3 .dw 0x3010 ; T4 .dw 0x3009 ; T5 .dw 0x1007 .dw 0x1004 .dw 0x1000 ; Z4 T1 .dw 0x3000 ; T2 .dw 0x3002 ; T3 .dw 0x1004 .dw 0x1002 .dw 0x1004 ; T4 .dw 0x3007 ; Z5 T1 .dw 0x3009 ; T2
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Datei
Test.asm
,#00h MOVC A,@A+DPTR JZ BefehlError ; Befehl nicht gefunden JMP NextBefehl Befehl1: DB 'DIR \',00h DW CommandDirRoot DB 00h,00h,00h,00h,00h,00h,00h,00h DB 'DIR ',00h DW CommandDirName DB 00h,00h,00h,00h,00h,00h,00h,00h,00h DB 'DIR',00h DW CommandDir DB 00h,00h,00h,00h,00h,00h,00h,00h,00h,00h DB 'TYPE ',00h DW CommandTypeName DB 00h,00h,00h,00h,00h,00h,00h,00h DB 'CD \',00h DW CommandCDRoot DB 00h,00h,00h,00h,00h,00h,00h,00h,00h DB 'CD ',00h DW CommandCDName DB 00h,00h,00h,00h,00h,00h,00h,00h,00h,00h DB 00h
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Datei
schemath.txt
HITACHI: V202F JWATSU : SS-5802 KEITHLEY:196 228 LEADER: LSG-10 LSG-16 MARCONNI: 390G MONAKIT: MB-01 MULITMETER: HC600 PACO: S55 RADIO OCEAN: RO6V REALISTIC: NO22.201 NO22.2693 NO22.203 NO22.027B NO22.207 ROHDE & SCHWARZ: BN107 BN1600 BN510 BN1050 BN1091 BN4105 BN4245 BN6100 ROHDE & SCHWARZ: BN4247208
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PDF
X1205.pdf
occurring during an SR read operation will remain set after the read opera- Date of the Week Register (DW) tion is complete. This register provides a Day of the Week status and uses three bits DY2 to DY0 to represent the seven RWEL: Register Write Enable Latch—Volatile days of the week. The counter advances
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Datei
AvrStudio_asm.ini
dseg =Preprocessor .cseg =Preprocessor .csegsize =Preprocessor .eseg =Preprocessor .db =Preprocessor .dw =Preprocessor .dd =Preprocessor .qq =Preprocessor .def =Preprocessor .undef =Preprocessor .ifdef =Preprocessor .ifndef =Preprocessor .if =Preprocessor .endif =Preprocessor .elif =Preprocessor .else =
in „AVR Studio 4.11 + Synthax Highlighting“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMegaEvoBoard.pdf
Revision EVOB0011 REV_A A4 Date: 9-May-2005 Sheet of #1 von 3 File: C:\Work\Design\ATMega128_Evo_Board_ReDw\nTyM:_Ev_R.SecvhCa.udbdb 1 2 3 4 1 2 3 4 JP13 VCC PD5 R19 D VCC xR D D4 JP14 PD6 rot R24 JP7 R26 R27 470R 4k7 4K7 JP5 JP6 VCC IC7 ST11 MCP2510 IC8 R22 R23 JP10 5 RESET 17 1 2 14 120R 5k6 JP8 9 JP4 RESET
in „AT90CAN128 Development board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
psxpads.txt
AD 1A A1 1A 00 00 00 .¹|.¡.... to memory +0 +1 +2 +3 +4 +5 +6 +7 +8 +9 +A +B +C +D +E +F ASCII +00 01 00 5A 5D 00 00 80 53 43 11 01 82 71 82 68 82 ..Z]...SC.. q h c +10 63 82 66 82 64 81 40 82 71 82 60 82 62 82 64 82 f d @ q ` b d q +20 71 81 40 83 5E 83 43 83 80 83 65 81 5B 83 75 83 @ ^ C e [ u +30
in „Protokoll Sony PSX2 Gamecontroller?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
USB90S2313.asm
dw VendorUSBID ;8,9 byte - identifikator dodavatela (Cypress=0x04B4) .dw DeviceUSBID ;10,11 byte - identifikator vyrobku (teplomer=0x0002) .dw DeviceVersion ;12,13 byte - cislo verzie vyrobku (verzia=0.01) .db 0x01 0x01,0x02 ;14 byte - index stringu "vyrobca" ;15 byte - index stringu "vyrobok" .db 0x00 0x00,0x01 ;16 byte - index stringu "seriove cislo" ;17 byte - pocet moznych konfiguracii DeviceDescriptorEnd:
in „USB mit AVR ohne FTDI“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ne2.asm
, 0xff .db NIC_IMR, 0xff .db NIC_CR, ( 1 << STP ) | ( 1 << RD2 ) | ( 1 << PS0 ) ; reg page 1 .db 0x01, 0x01 .db NIC_PAR0, MAC0 ; set mac address .db NIC_PAR0+1, MAC1 .db NIC_PAR0+2, MAC2 .db NIC_PAR0+3, MAC3 .db NIC_PAR0+4, MAC4 .db NIC_PAR0+5, MAC5 .db NIC_CURR, NIC_RXSTART .db NIC_CR, ( 1 << STA ) | ( 1 << RD2 ) ; start nic .db 0x01, 0x01 .db NIC_TCR, 0x00 ; set normal operation .dw 0x00 nic_write_seq: lpm mov p0, r0 adiw ZL, 1 lpm mov p1, r0 adiw ZL, 1 tst p0 breq nic_write_seq_fin cpi p0, 1 breq nic_write_seq_dly rcall _nic_write
in „NE2000 DMA Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UPD43256.pdf
Timing Chart 1 (WE Controlled) WC Address (Input) tCW CS (Input) AW AS tWP tWR WE (Input) tOW tWHZ tDW DH High High I/O (Input/Output) Indefinite data out impe- Data in impe- Indefinite data out dance dance Cautions 1. CS or WE should be fixed to high level during address transition. 2. When I/O pins
in „IC P51256Sl-10 SRAM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
an1771sw.foru.asm
$18,$16,$15,$13,$11,$10 FCB $0F,$0D,$0C,$0B,$0A,$08,$07 FCB $06,$06,$05,$04,$03,$03,$02,$02 FCB $02,$01,$01,$01,$01,$01,$01 FCB $01,$02,$02,$02,$03,$03,$04,$05 FCB $06,$06,$07,$08,$0A,$0B,$0C FCB $0D,$0F,$10,$11,$13,$15,$16,$18 FCB $1A,$1C,$1E,$20,$22,$24,$26 FCB $28,$2B,$2D,$2F,$32,$34,$37,$39 FCB $3C
in „Reload Value für Timer berechnen??“ · Mikrocontroller und Digitale Elektronik ·
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Datei
910.asm
************************************************************************ Dev_S: ; byte write ;new .dw 0x10 ;S1200A .dw 0x11 ;S1200B .dw 0x12 ;S1200C .dw 0x13 ;S1200 .dw 0x20 ;S2313A .dw 0x28 ;S4414A .dw 0x30 ;S4433A .dw 0x34 ;S2333A .dw 0x38 ;S8515A .dw 0x48 ;S2323A .dw 0x4C ;S2343A ;new .dw 0x50 ;tn11
in „avr910 programmer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
adresse001.asm
,0xAA1C,0x861C,0x641C,0x421C .dw 0x211C,0x001C,0xE01B,0xC01B,0xA11B,0x821B,0x641B,0x461B,0x281B,0x0B1B,0xEE1A,0xD21A,0xB61A,0x9A1A,0x7E1A,0x631A .dw 0x481A,0x2E1A,0x131A,0xF919,0xDF19,0xC619,0xAC19,0x9319,0x7A19,0x6119,0x4919,0x3019,0x1819,0x0019,0xE818,0xD118
in „Migration AT90S4433 -> ATMega8“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr_at90_befehlsatz.pdf
,k 0 ≤ s ≤ 7, -64 ≤ k ≤ +63 PC ← PC + k + 1 PC ← PC + 1, if condition is false 16-bit Opcode: 1111 01kk kkkk ksss Status Register (SREG) and Boolean Formula: I T H S V N Z C – – – – – – – – Example: cpi r20,5 ; Compare r20 to the value 5 brbc 1,noteq ; Branch if Zero Flag cleared ... noteq:nop ; Branch
in „Rd Rr im indirekten Adressierungsmodus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
FIFO v bytoch .dw VendorUSBID ;8,9 byte - identifikator dodavatela (Cypress=0x04B4) 1383 .dw DeviceUSBID ;10,11 byte - identifikator vyrobku (teplomer=0x0002) 1384 .dw DeviceVersion ;12,13 byte - cislo verzie vyrobku (verzia=0.01) 1385 .db 0x01,0x02 ;14 byte - index stringu "vyrobca" 1386 ;15 byte - index stringu "vyrobok" 1387 .db 0x00,0x01 ;16 byte - index stringu "seriove cislo" 1388 ;17 byte - pocet moznych konfiguracii 138DeviceDescriptorEnd
in „Booten auf Knopfdruck mit AT90S23X3“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr910_2313_v38c.asm
Commands in ;* Note 17 implemented. Not comletely tested. ;* Code cleanup to save some Bytes. ;* V3.7e 11.01.05 (Klaus) Matched Devicecodes to the new Atmel AVRProgV1.40 ;* V3.7d 05.01.05 (Klaus) Removed 1200A/B/C devicecodes, Polling 0x7F for AT90S4414, default PollcodeF = 0xFF ;* V3.7c 04.01.05 (Klaus/Micha
in „Programmer incl. neuem Code für Atmel AN910“ · Projekte & Code ·
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ADSP-2181_Datenblatt.pdf
Setup Time t Data Setup before WR device connected to the processor (such as memory) is satisfied. DW High Timing Requirements apply to signals that are controlled by cir- Data Hold Time tDH Data Hold after WR High cuitry external to the processor, such as the data input for a readOE to Data Valid tRDD
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M24CXX.pdf
Million Erase/Write Cycles (minimum) SBGA ■ 40 Year Data Retention (minimum) 1 DESCRIPTION TSSOP8 (DW) SBGA5 (EA) These I C-compatible electricallyerasable 169 mil width 75 mil width programmable memory (EEPROM) devices are organized as 2048/1024/512/256/128 x 8 bit (M24C16, M24C08, M24C04, M24C02, M24C01
in „serielles EEPROM“ · Mikrocontroller und Digitale Elektronik ·