-
PDF
obC16x.pdf
VAR bf:WORD; BEGIN bf := step * 2; (* bf = R13, mal 2 wg. Word *) VERBATIM jmp Fstepnext SHsteptable DW 224, 255, 7, 127, 96, 125, 5, 253 Fstepnext mov R12, #SHsteptable add R12, R13 mov R13, [R12] ; Wert nach bf laden END_VERBATIM IF cur = 2 THEN (* mittlerer Strom *) bf := bf ANDB %10111110; ELSIF cur
in „Ein kleiner Oberoncompiler für die C16x-Familie“ · Projekte & Code ·
-
PDF
A_Design_of_High_Speed_and_Real-time_DSO_Based_on_FPGA.pdf
GPl1IjIPJIV.i'E FP1I~lt'iiJIP,m, 'IT,(1HJJ(J iffiJrf~(HPJ!;,ltL 5bit(contro] bus) &1'/-[&t{.2i / , , " 01' n ~JiADIdata f.~}Jl~! FPGA dataARM9f--- tiADIdata t 3 il iot) 01' PLL / ~ tr 01' 5brt(control bus) tU! clkldataiLE 1'il1.'f,)iliJlH''fJi\ilftl1*It[!'iI 3jj~':5A A/D$"*1*1JIjg*lJ![1)';0i);tJ[$<'~,If'
in „Oszilloskop - SoC“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
252039.pdf
SH4 Mode Size Resource Base address (Name) 32 MB to 256 KB 00000000 64 KB Host interface registers 01FC0000 (HostBase) 32 KB Display registers 01FD0000 (DisplayBase) 32 KB Capture registers 01FD8000 (CaptureBase) 32 KB Drawing registers 01FF0000 (DrawBase) 32 KB Geometry engine registers 01FF8000 (GeometryBase
in „LCD Display / Controller eines Schweißgerätes prüfen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
tiny13_doc2535.pdf
contains control bits for interrupt sense MCUCR control. Bit 7 6 5 4 3 2 1 0 – PUD SE SM1 SM0 – ISC01 ISC00 MCUCR Read/Write R R/W R/W R/W R/W R R/W R/W Initial Value 0 0 0 0 0 0 0 0 Bits 1, 0 – ISC01, ISC00: Interrupt Sense Control 0 Bit 1 and Bit 0 The External Interrupt 0 is activated by the external
in „Atmel AVRs: SRAM so unwichtig?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
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 ·
-
Datei
bootloaderV2.a51
--------- CopyrightMsg: ;0x3665 db 'MCU ISP & WCH.CN',0 ; DeviceDesc: ;0x3E76 db 18 db 1 db 0x10,0x01 ; USB_bcd 1.1 db 0xFF ; class vendor defined db 0x80 ; subclass ?? db 0x55 ; protocol ?? db 8 ; EP0 Size db 0x48,0x43 ; Vendor ID 0x4843 db 0xE0,0x55 if (CHANGE_BCD_VER = 0) db 0x00,0x01 ; original V1.0
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATtiny261A_Complete.pdf
can be used directly for accessing the OCR0A/B registers. Assembly Code Example ... ; Set TCNT0 to 0x01FF ldir17,0x01 ldir16,0xFF outTCNT0H,r17 outTCNT0L,r16 ; Read TCNT0 into r17:r16 in r16,TCNT0L in r17,TCNT0H ... C Code Example unsigned int i; ... /* Set TCNT0 to 0x01FF */ TCNT0H = 0x01; TCNT0L = 0xff
in „USI Interface als SPI Schnittstelle beim ATtiny261A“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
ff.c
st_dword(dj.dir + DIR_FileSize, 0); fs->wflag = 1; if (cl != 0) { /* Remove the cluster chain if exist */ dw = fs->winsect; res = remove_chain(&dj.obj, cl, 0); if (res == FR_OK) { res = move_window(fs, dw); fs->last_clst = cl - 1; /* Reuse the cluster hole */ } } } } } else { /* Open an existing file */ if
in „Arduino Sloeber - C Code einbinden“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
dt_502813.html
2.483871</td> <td>2</td> <td>159</td> <td>21</td> <td>6</td> </tr> <tr> <th>Dennis W. (Firma: Privat) (dw86)</th> <td>1</td> <td>0</td> <td>0</td> <td>0.000000</td> <td>0</td> <td>0</td> <td>1</td> <td>0</td> </tr> <tr> <th>kimi (Gast)</th> <td>1</td> <td>-4</td> <td>-4</td> <td>-4.000000</td> <td>-4</td
in „Linux wird nicht wirklich akzeptiert, woran liegt das ?“ · PC Hard- und Software ·
-
PDF
DD19FCD3d01.pdf
11.9.1 TCCR0A – Timer/Counter Control Register A Bit 7 6 5 4 3 2 1 0 COM0A1 COM0A0 COM0B1 COM0B0 – – WGM01 WGM00 TCCR0A Read/Write R/W R/W R/W R/W R R R/W R/W Initial Value 0 0 0 0 0 0 0 0 Bits 7:6 – COM01A:0: Compare Match Output A Mode These bits control the Output Compare pin (OC0A) behavior. If one or
in „HV-Prog für ATtiny13“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
doc2535.pdf
11.9.1 TCCR0A – Timer/Counter Control Register A Bit 7 6 5 4 3 2 1 0 COM0A1 COM0A0 COM0B1 COM0B0 – – WGM01 WGM00 TCCR0A Read/Write R/W R/W R/W R/W R R R/W R/W Initial Value 0 0 0 0 0 0 0 0 • Bits 7:6 – COM01A:0: Compare Match Output A Mode These bits control the Output Compare pin (OC0A) behavior. If one
in „RGB PWM mit Attiny13“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
doc2535.pdf
11.9.1 TCCR0A – Timer/Counter Control Register A Bit 7 6 5 4 3 2 1 0 COM0A1 COM0A0 COM0B1 COM0B0 – – WGM01 WGM00 TCCR0A Read/Write R/W R/W R/W R/W R R R/W R/W Initial Value 0 0 0 0 0 0 0 0 • Bits 7:6 – COM01A:0: Compare Match Output A Mode These bits control the Output Compare pin (OC0A) behavior. If one
in „ATtiny13 mit 20MHz“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
tiny13.pdf
contains control bits for interrupt sense MCUCR control. Bit 7 6 5 4 3 2 1 0 – PUD SE SM1 SM0 – ISC01 ISC00 MCUCR Read/Write R R/W R/W R/W R/W R R/W R/W Initial Value 0 0 0 0 0 0 0 0 Bits 1, 0 – ISC01, ISC00: Interrupt Sense Control 0 Bit 1 and Bit 0 The External Interrupt 0 is activated by the external
in „ATtiny13 Datenblatt External Clock Source on T0-Pin“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PIC16F1939.pdf
FSR1 Low • FSR1 High EXAMPLE 3-2: ACCESSING PROGRAM • BSR MEMORY VIA FSR • WREG constants • PCLATH DW DATA0 ;First constant DW DATA1 ;Second constant • INTCON DW DATA2 DW DATA3 Note: The core registers are the first 12 my_function addresses of every data memory bank. ;… LOTS OF CODE… MOVLW DATA_INDEX
in „MPLAB delay und xtalfreq richtig benutzen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
xe166_um_v2.1_2008_08_vol2per.pdf
Edge Selection CT3 CI Triggering Signal/Edge for Capture Mode X 00B None. Capture Mode is disabled. 0 01B Positive transition (rising edge) on CAPIN. 0 10 Negative transition (falling edge) on CAPIN. B 0 11B Any transition (rising or falling edge) on CAPIN. 1 01B Any transition (rising or falling edge)
in „Kernel State Configuration Register KSCCFG xe164 xe166 xe164f xe16x“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
xc2200_um_v2.1_2008_08_vol2per.pdf
Edge Selection CT3 CI Triggering Signal/Edge for Capture Mode X 00B None. Capture Mode is disabled. 0 01B Positive transition (rising edge) on CAPIN. 0 10 Negative transition (falling edge) on CAPIN. B 0 11B Any transition (rising or falling edge) on CAPIN. 1 01B Any transition (rising or falling edge)
in „Schlechte Datenblätter von Infineon (CAN)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
obC16x.pdf
VAR bf:WORD; BEGIN bf := step * 2; (* bf = R13, mal 2 wg. Word *) VERBATIM jmp Fstepnext SHsteptable DW 224, 255, 7, 127, 96, 125, 5, 253 Fstepnext mov R12, #SHsteptable add R12, R13 mov R13, [R12] ; Wert nach bf laden END_VERBATIM IF cur = 2 THEN (* mittlerer Strom *) bf := bf ANDB %10111110; ELSIF cur
in „Ein kleiner Oberoncompiler für die C16x-Familie“ · Projekte & Code ·
-
PDF
Atiny2313.pdf
access. 88 ATtiny2313/V 2543I–AVR–04/06 ATtiny2313/V Assembly Code Examples (1) ... ; Set TCNT1 to 0x01FF ldir17,0x01 ldir16,0xFF outTCNT1H,r17 outTCNT1L,r16 ; Read TCNT1 into r17:r16 in r16,TCNT1L in r17,TCNT1H ... (1) C Code Examples unsigned int i; ... /* Set TCNT1 to 0x01FF */ TCNT1 = 0x1FF; /* Read
in „Suche tutorial“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MASM61PROGUIDE.pdf
written for MASM 5.1: OPTION OFFSET:SEGMENT MyGroup GROUP MySeg MySeg SEGMENT 'data' MyLabel LABEL BYTE DW OFFSET MyLabel ; Relative to MySeg DW OFFSET MyGroup:MyLabel ; Relative to MyGroup DW OFFSET MySeg:MyLabel ; Relative to MySeg MySeg ENDS In the preceding example, the first OFFSET statement computes
in „SumArray Proc Uses SI, Was heisst bitte das Uses bei MASM?“ · Softwareentwicklung ·
-
PDF
HAMEG_HM1507-3_Oscilloscope_Service.pdf
on¬ mCO 16V AD4 R8065 2K21 —(Z> TAD4 FC-Cx VO.O r CS_RD0UT m _ 40 P35 P15 27 _ Ml AD5 Q3 mCJ AD5 (ZB01 I2L-|Z>TAD5 Datum: 31.05.2000 a SCSI [1] 4 P36 P16 28 _ m AD6 AD6 ZB01 R8021 2K21 I2HZ>TAD6 Date : m TXD P37/TXD P17 AD7 AD7 R8019 2K21 L2L~\ TAD7 LED_G = L-383 Z86E61DIP > CA = 100nF/ 63V Blatt von
in „HM 1507-3 bootet nicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
1_AMD_BKDG_Family__15h_Mod_00h-0Fh_BKDG.pdf
QR - QR 0, 2 001b 10b 2 1066 1.5, 1.35, 1.25 NP QR - QR 1, 3 000b 10b 2 1066 1.5 SR QR - SR 0 101b 01b 2 1066 1.5 SR, DR QR - QR 0, 2 001b 01b 2 1066 1.5 SR, DR QR - QR 1, 3 000b 01b 2 1066 1.5 DR QR - DR 0, 1 101b 01b 2 1066 1.5 QR SR - SR 0 101b 01b 2 1066 1.5 QR SR,DR, - QR 0, 2 001b 01b QR 2 1066
-
PDF
intel_bas52man.pdf
EXAMPLE: ORG 2070H ;LOCATION BASIC CALLS TO ;GET USER LOOKUP ; RET DPTR,#VECTOR_TABLE ; VECTOR_TABLE: ; DW RUN_DISPLAY ;ROUTINE, TOKEN (10H) DW RUN_TRANSFER ;ADDRESS OF TRANSFER ;ROUTINE, TOKEN (11H) DW RUN_ROTATE ;ROUTINE, TOKEN (12H) ; ORG 2300H ;AGAIN, THESE ROUTINES ;MAY BE PLACED ANYWHERE RUN DISPLAY
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
-
PDF
intel_bas52man.pdf
EXAMPLE: ORG 2070H ;LOCATION BASIC CALLS TO ;GET USER LOOKUP ; RET DPTR,#VECTOR_TABLE ; VECTOR_TABLE: ; DW RUN_DISPLAY ;ROUTINE, TOKEN (10H) DW RUN_TRANSFER ;ADDRESS OF TRANSFER ;ROUTINE, TOKEN (11H) DW RUN_ROTATE ;ROUTINE, TOKEN (12H) ; ORG 2300H ;AGAIN, THESE ROUTINES ;MAY BE PLACED ANYWHERE RUN DISPLAY
-
PDF
nightsky_arx15.pdf
AN45 FBA_D58 FBA_WCKB01 V45 FBA_WCKB01 FBA_WCKB01 15 40ȍ_NETCLASS1 < 2.7" FBB_WCK45 L45 FBB_WCK45# FBB_WCK45# 18 CMD30 CA6_A CA6_B r FBA_D59 AN46 FBA_D59 FBA_WCKB01 V44 FBA_WCKB01# FBA_WCKB01# 15 17 FBB_DBI0 FBB_DBI0 C32 FBB_DQM0
in „SMD TGAJ TVS Diode USB“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
StartXC167.A66.txt
) ; Set SYSCON1 register _SYSC1 SET (_CPSYS<<8) OR (_PFCFG<<4) OR (_PDCFG<<2) OR (_SLEEPCON) EXTR #01H ; Extended SFR access MOV SYSCON1,#_SYSC1 $ENDIF $IF (INIT_SYSCON3 = 1) ; Set SYSCON3 register _SYSC3 SET ADCDIS OR (ASC0DIS << 1) OR (SSC0DIS << 2) OR (GPTDIS << 3) _SYSC3 SET _SYSC3 OR (FMDIS << 5
in „CAPCOM6 an Port1“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
XC88xCLM_UM_v1_1.pdf
4 b . . . . c 0 6 . . . . c 0 6 S L 2 S L 2 W W 7D1F …………………………….. 7D02 7D01 7D00 6D1F …………………………….. 6D02 6D01 6D00 H H H H H H H H 7CFF …………………………….. 7CE2 7CE1 7CE0 6CFF …………………………….. 6CE2 6CE1 6CE0 H H H H 3 H H H H 3 … … … … 4 1 t … … … … 4 1 t … … … … o - b … … … … o - b
in „80C517A Paging“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATtiny841_Datasheet.pdf
Temperature sensor — — 00 1101 Internal 1.1V reference — — 00 1110 0V (AGND) — — 00 1111 Supply voltage — — 01 0000 — ADC0 ADC1 01 0001 — ADC0 ADC3 01 0010 — ADC1 ADC2 01 0011 — ADC1 ADC3 01 0100 — ADC2 ADC3 01 0101 — ADC3 ADC4 01 0110 — ADC3 ADC5 01 0111 — ADC3 ADC6 01 1000 — ADC3 ADC7 01 1001 — ADC4 ADC5 01 1010 — ADC4 ADC6 01 1011 — ADC4 ADC7 01 1100 — ADC5 ADC6 01 1101 — ADC5 ADC7 01 1110 — ADC6 ADC7 01 1111 — ADC8 ADC9 ATtiny441/841 [DATASHEET] 144 8495H–AVR–05/2014 Differential-Ended MUX[5:0] Single-Ended Positive Negative
in „TOCPMSA1 und TOCPMCOE Verhalten beim Attiny 841“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATtiny441_841.pdf
Temperature sensor — — 00 1101 Internal 1.1V reference — — 00 1110 0V (AGND) — — 00 1111 Supply voltage — — 01 0000 — ADC0 ADC1 01 0001 — ADC0 ADC3 01 0010 — ADC1 ADC2 01 0011 — ADC1 ADC3 01 0100 — ADC2 ADC3 01 0101 — ADC3 ADC4 01 0110 — ADC3 ADC5 01 0111 — ADC3 ADC6 01 1000 — ADC3 ADC7 01 1001 — ADC4 ADC5 01 1010 — ADC4 ADC6 01 1011 — ADC4 ADC7 01 1100 — ADC5 ADC6 01 1101 — ADC5 ADC7 01 1110 — ADC6 ADC7 01 1111 — ADC8 ADC9 ATtiny441/841 [DATASHEET] 144 8495H–AVR–05/2014 Differential-Ended MUX[5:0] Single-Ended Positive Negative
in „Suche nach ATtiny mit ADC und Gain > 20x“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATtiny841_Datasheet.pdf
Temperature sensor — — 00 1101 Internal 1.1V reference — — 00 1110 0V (AGND) — — 00 1111 Supply voltage — — 01 0000 — ADC0 ADC1 01 0001 — ADC0 ADC3 01 0010 — ADC1 ADC2 01 0011 — ADC1 ADC3 01 0100 — ADC2 ADC3 01 0101 — ADC3 ADC4 01 0110 — ADC3 ADC5 01 0111 — ADC3 ADC6 01 1000 — ADC3 ADC7 01 1001 — ADC4 ADC5 01 1010 — ADC4 ADC6 01 1011 — ADC4 ADC7 01 1100 — ADC5 ADC6 01 1101 — ADC5 ADC7 01 1110 — ADC6 ADC7 01 1111 — ADC8 ADC9 ATtiny441/841 [DATASHEET] 144 8495H–AVR–05/2014 Differential-Ended MUX[5:0] Single-Ended Positive Negative
in „sleep und Interrupt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATtiny841_Datasheet.pdf
Temperature sensor — — 00 1101 Internal 1.1V reference — — 00 1110 0V (AGND) — — 00 1111 Supply voltage — — 01 0000 — ADC0 ADC1 01 0001 — ADC0 ADC3 01 0010 — ADC1 ADC2 01 0011 — ADC1 ADC3 01 0100 — ADC2 ADC3 01 0101 — ADC3 ADC4 01 0110 — ADC3 ADC5 01 0111 — ADC3 ADC6 01 1000 — ADC3 ADC7 01 1001 — ADC4 ADC5 01 1010 — ADC4 ADC6 01 1011 — ADC4 ADC7 01 1100 — ADC5 ADC6 01 1101 — ADC5 ADC7 01 1110 — ADC6 ADC7 01 1111 — ADC8 ADC9 ATtiny441/841 [DATASHEET] 144 8495H–AVR–05/2014 Differential-Ended MUX[5:0] Single-Ended Positive Negative
in „Takt-Vorskalierungsregister beim Attiny841“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
EEPROM.pdf
WRITE (up to 32 Bytes) ■ Self-Timed Programming Cycle ■ Adjustable Size Read-Only EEPROM Area TSSOP8 (DW) ■ Enhanced ESD Protection 169 mil width ■ More than 1 Million Erase/Write Cycles ■ More than 40-Year Data Retention TSSOP8 (DS) 3x3mm² body size (MSOP) UFDFPN8 (MB) 2x3mm² (MLP) Table 1. Product List
in „Probleme beim Ansteuern eines EEPROM über SPI“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PIC_32_MX_110_F_016_-_I-SO__11-2-3___SO_28_.pdf
o 0210 RTCALRM o 15:0 ALRMEN CHIME PIV ALRMSYNC AMASK<3:0> ARPT<7:0> 0000 y 31:16 — — HR10<1:0> HR01<3:0> — MIN10<2:0> MIN01<3:0> xxxx n 0220 RTCTIME 15:0 — SEC10<2:0> SEC01<3:0> — — — — — — — — xx00 c . 0230 RTCDATE 31:16 YEAR10<3:0> YEAR01<3:0> — — — MONTH10 MONTH01<3:0> xxxx 15:0 — — DAY10<1:0> DAY01<3:0> — — — — — WDAY01<2:0> xx00 0240 ALRMTIME 31:16 — — HR10<1:0> HR01<3:0> — MIN10<2:0> MIN01<3:0> xxxx 15:0 — SEC10<2:0> SEC01<3:0> — — — — — — — — xx00 31:16 — — — — — — — — — — — MONTH10 MONTH01<3:0> 00xx 0250 ALRMDATE
in „pic32 flash und i/o speed“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PIC_32M_X_220_F_032_B-50I-SP_____DIP_28_.pdf
o 0210 RTCALRM o 15:0 ALRMEN CHIME PIV ALRMSYNC AMASK<3:0> ARPT<7:0> 0000 y 31:16 — — HR10<1:0> HR01<3:0> — MIN10<2:0> MIN01<3:0> xxxx n 0220 RTCTIME 15:0 — SEC10<2:0> SEC01<3:0> — — — — — — — — xx00 c . 0230 RTCDATE 31:16 YEAR10<3:0> YEAR01<3:0> — — — MONTH10 MONTH01<3:0> xxxx 15:0 — — DAY10<1:0> DAY01<3:0> — — — — — WDAY01<2:0> xx00 0240 ALRMTIME 31:16 — — HR10<1:0> HR01<3:0> — MIN10<2:0> MIN01<3:0> xxxx 15:0 — SEC10<2:0> SEC01<3:0> — — — — — — — — xx00 31:16 — — — — — — — — — — — MONTH10 MONTH01<3:0> 00xx 0250 ALRMDATE
in „PIC32MX flash access time“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
lsm6dsl.pdf
_BW_SEL HPCF_XL[1:0] COMPOSITE Bandwidth 0 - - ODR/2 0 1 - - ODR/4 0 00 ODR/50 (1) (low-pass path) 01 1 (low noise)ODR/100 1 - 10 0 (low latency)ODR/9 11 ODR/400 00 ODR/4 1 - - 01 0 ODR/100 (high-pass path) 10 ODR/9 11 ODR/400 1. The bandwidth column is related to LPF1 if LPF2_XL_EN = 0 or to LPF2 if
in „LSM6DSL Gyro+Accelerometer, Gyro gibt keine Werte aus.“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Advantest_R4131.pdf
-F F 1 2 2 3 X 1 2 -1 CB3 DCB-FF2023X32-1 C84 DCB-FF2023X26--1 CB6 DCB-FF2680X15--1 CB7 DCB-QQ2805X01-1 C88 DCB-RR2791X04-1 CB9 DCB-QF2802X01-1 CB1O DCB-QF2803X01-1 CBI1 DCB-QF2804X01-1 C612 D CB-Q F2801X 01-1 CB13 DCB-QQ2799X01-1 . CBI4 DCB-QS2800X01--1 J i JC I-A F 0 0 3 JX O 5 -3 J2 -5 JCF-ABOO1JXO3
in „Advantest Spectrum Analyser R4131B Fehler im Netzteil“ · HF, Funk und Felder ·
-
PDF
Dissertaion.pdf
Lagesollwert ! Lageistwert simuliert x0.08 m Lageistwert gemessen 0.07 0.06 0.05 0.04 0.03 0.02 0.01 0 −0.01 0 0.05 0.1 0.15 0.2 0.25 s 0.3 t ! Abbildung 7.11: Berechneter und simulierter Positionsverlauf bei einer sprungförmigen Lageänderung In Abbildung 7.11 ist die Position des Läufers in der Simulation
in „Radial magnetisierte Neodym Magneten - Bezugsquelle“ · Mechanik, Gehäuse, Werkzeug ·
-
PDF
IS2100EV1.61.pdf
400.00 B 304 Y450 6678.00 326.21 A 219 DUMMY 9439.76 -400.00 B 305 Y449 6642.00 410.21 A 220 VC1 9527.01 -400.00 B 306 Y448 6606.00 326.21 A 221 DUMMY 9607.01 -400.00 B 307 Y447 6570.00 410.21 A 222 DUMMY 9630.00 326.21 A 308 Y446 6534.00 326.21 A 223 VC1 9594.00 410.21 A 309 Y445 6498.00 410.21 A 224 DUMMY
in „LCD-Modul OPTREX 351570AG“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
harman_kardon_avr145_sm.pdf
CN11 CJP13GA117ZY WAFER , CARD CABLE WAFER 1 CN12 CJP21GA115ZY WAFER , CARD CABLE WAFER 1 CN61 CJP02GA01ZY WAFER, STRAIGHT, 2PIN WAFER 1 CN62 CJP02GA01ZY WAFER, STRAIGHT, 2PIN WAFER 1 CN63 CJP02GA01ZY WAFER, STRAIGHT, 2PIN WAFER 1 CN64 CJP02GA01ZY WAFER, STRAIGHT, 2PIN WAFER 1 CN65 CJP02GA01ZY WAFER, STRAIGHT
in „Relais beim AVR 145 von harman/kardon durch SSR ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
mathgen-1688632460.pdf
greater than Q then exp ▯1(▯T) = sinh(▯i) _ ▯▯▯ [ ▯(▯ ▯ 1;R(p )0) p x;n ZZZ 2 = liminf U (e;:::;e) dW + ▯▯▯ ▯ 1 ▯7: @0 Moreover, every composite vector is smoothly convex, continuously convex, hyper-irreducible and Serre. Clearly, p > H( ). Note that ( X i ;@ ▯ 0 ▯ ( ▯ 0); Y < 0 sinh S ▯ s;C = RR1v ▯
in „Fake Mathematik“ · Offtopic ·
-
PDF
doc7707.pdf
compiler handles the 16-bit access. 109 7707F–AVR–11/10 Assembly Code Examples(1) ... ; Set TCNTn to 0x01FF ldir17,0x01 ldir16,0xFF outTCNTnH,r17 outTCNTnL,r16 ; Read TCNTn into r17:r16 in r16,TCNTnL in r17,TCNTnH ... C Code Examples(1) unsigned int i; ... /* Set TCNTn to 0x01FF */ TCNTn = 0x1FF; /* Read
in „AVR (AT90USB162) - Sleep Mode und PCINT“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
apple_macbook_pro_a1286_mlb_d1_051-9216_13.3_retina_a1425_820-3462_sch.pdf
10% 16V X5R-CE0R2M01 PCIE_TBT_R2D_P<3> PERP_3 PETP_3 PCIE_TBT_D2R_C_P<3> 0.1UF 10% 16V X5R-CE0R2M01 R3610 1 2 75 PCIE_TBT_R2D_N<3> AB19 PERN_3 P PETN_3 AD19 PCIE_TBT_D2R_C_N<3> 1 2 475% 75 9 IN PCIE_TBT_R2D_C_N<3> C3607
in „Macbook Schaltpläne“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
grundig_chassis_t5_19_22vle2000t_22-2010t_22-2940t_22-2942t_19hd_br_wp_cba_16-2941tc_19-2940t.pdf
759551493300 LAUTSPRECHER 16 OHM 3/5 W LOUDSPEAKER 16 OHM 3/5 W 0020.000 S 759551505500 LCD-DISPLAY M185XW01 V00D*1 LCD-DISPLAY M185XW01 V00D *1 0020.000 S 759551505500 LCD-DISPLAY M185XW01 V00D*1 LCD-DISPLAY M185XW01 V00D*1 0020.000 S 759551505900 LCD-DISPLAY LTM185AT01-R04*2 LCD-DISPLAY LTM185AT01-R04*2 3
in „Grundig Fernseher defekt“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Lankarte.pdf
7404N _ nRCO_preambel T nRCO_gap S fifo_valid fifo_valid IC94B 3 4 TX_CLK BA: b00 -> HI Nibble 1 2 1 b01 -> LO Nibble 7404N TXFIFO[0..7] b10 -> 0x5 V 5 b11 -> 0xd N A + 0 2 5 TXF_DV TXFIFO4 6 1C0 1Y 7 TX0 4 1 C IC90D 12 TXFIFO0 5 1C1 7 I nur valide wenn der Zustand stimmt TXF_REN 11 4 1C2 2Y 9 TX1 13 nread
in „Space Age 2 der 32Bit MIPS Rechner in TTL“ · Projekte & Code ·
-
PDF
Spice_3f3_Users_Manual.pdf
AC 0.333 45.0 SFFM(0 1 10K 5 1K) VMEAS 12 9 VCARRIER 1 0 DISTOF1 0.1 -90.0 VMODULATOR 2 0 DISTOF2 0.01 IIN1 1 5 AC 1 DISTOF1 DISTOF2 0.001 N+ and N- are the positive and negative nodes, respectively. Note that voltage sources need not be grounded. Positive current is assumed to flow from the positive
in „Potenzierender Operationsverstärker, Daten Diode“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
M95160_EEPROM.pdf
than 1 Million Erase/Write Cycles ■ More than 40-Year Data Retention 1 SO8 (MN) 150 mil width TSSOP8 (DW) 169 mil width Table 1. Product List Reference Part Number TSSOP8 (DS) M95160 3x3mm² body size (MSOP) M95160 M95160-W M95160-R M95080 UFDFPN8 (MB) M95080 M95080-W 2x3mm² (MLP) M95080-R October 2004 1
in „SPI EEPROM M95160: read/write probleme, erhalte immer FFh!“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AVR_ATtiny_24_44_84.pdf
the description in the “TCCR0A – Timer/Counter Control Register A” on page 80. Bits 2:0 – CS02, CS01, CS00: Clock Select The three Clock Select bits select the clock source to be used by the Timer/Counter. Table 11-9. Clock Select Bit Description CS02 CS01 CS00 Description 0 0 0 No clock source (Timer
in „AVR Programm brennen ohne Bootloader“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ATmega48PA-ATmega88PA-ATmega168PA_Datasheet.pdf
TWI ; 2-wire Serial Interface Handler 0x019 rjmp SPM_RDY ; Store Program Memory Ready Handler ; 0x01A RESET: ldi r16, high(RAMEND); Main program start 0x01B out SPH,r16 ; Set Stack Pointer to top of RAM 0x01C ldi r16, low(RAMEND) 0x01D out SPL,r16 0x01E sei ; Enable interrupts 0x01F <instr> xxx ...
in „Probleme mit Int Capt ISR ATmega48PA“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
attiny84.pdf
compiler handles the 16-bit access. 105 8006H–AVR–10/09 Assembly Code Examples ... ; Set TCNT1 to 0x01FF ldir17,0x01 ldir16,0xFF outTCNT1H,r17 outTCNT1L,r16 ; Read TCNT1 into r17:r16 in r16,TCNT1L in r17,TCNT1H ... C Code Examples unsigned int i; ... /* Set TCNT1 to 0x01FF */ TCNT1 = 0x1FF; /* Read TCNT1
in „Attiny 84 ISP?!“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
doc8209.pdf
power-down and Additional delay from reset 3..0 SUT1..0 power-save (V = 5.0V) CC 00 1K CK 14CK 0011 01 1K CK 14CK + 4ms RC Osc 10 1K CK 14CK + 64ms 11 16K CK 14CK 00 1K CK 14CK 01 1K CK 14CK + 4ms 0101 Ext Osc 10 16K CK 14CK + 4ms 11 16K CK 14CK + 64ms 00 6 CK (1) 14CK 0001 01 6 CK (1) 14CK + 4ms (1)
-
Datei
dt_502813.html
>1</td> <td>82.0</td> <td>108.500000</td> <td>135.0</td> </tr> <tr> <th>Dennis W. (Firma: Privat) (dw86)</th> <td>1</td> <td>0</td> <td>0</td> <td>0.000000</td> <td>0</td> <td>0</td> <td>1</td> <td>0</td> <td>267.0</td> <td>267.000000</td> <td>267.0</td> </tr> <tr> <th>Y/n ... (Gast)</th> <td>18</td>
in „Linux wird nicht wirklich akzeptiert, woran liegt das ?“ · PC Hard- und Software ·