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PDF
PCN_DN43A_20000630.pdf
933480360215 T M 3 31-12-00 30-6-01 BCX71H Standard Discontinuation. Consult Marketing. See Replacement. BF240 BF240 T/R NPN medium frequency transistor 933164250116 N M 3 31-12-00 30-6-01 BF240 112 Standard Discontinuation. Consult Marketing. See Replacement. BF324 PNP medium frequency transistor 933167730112
in „Mosfet Identifikation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FOURIER.PDF
Setzt man t D 0 ein, dann bekommt man 1 4 ▯ 1 1 ▯ 1 1 ▯ 2 1 D C 1 C C C ::: ) 1 C C C ▯▯▯ D 2 ▯ 2 9 25 9 25 8 Viele Reihensummen kommen auf diese Art zustande. So ist z.B. 1 X 1 ▯2 2 D nD1 n 6 Das kann man nachweisen, wenn man den Parabelbogen f .t/ D t im Bereich ▯▯ 6 t 6 ▯ in seine Fourierreihe entwickelt
in „Mathe: Fourier Reihe.“ · Offtopic ·
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PDF
FOURIER.PDF
Setzt man t D 0 ein, dann bekommt man 1 4 ▯ 1 1 ▯ 1 1 ▯ 2 1 D C 1 C C C ::: ) 1 C C C ▯▯▯ D 2 ▯ 2 9 25 9 25 8 Viele Reihensummen kommen auf diese Art zustande. So ist z.B. 1 X 1 ▯2 2 D nD1 n 6 Das kann man nachweisen, wenn man den Parabelbogen f .t/ D t im Bereich ▯▯ 6 t 6 ▯ in seine Fourierreihe entwickelt
in „dft und fft grundlagen für selbststudium gesucht“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
TRW-24G.pdf
IVDD 19 mA 1000kbps Supply current two channels IVDD 250kbps 23 mA Supply current two channels IVDD 25 mA 1000kbps Sensitivity at RX SENS 0.1%BER(@250kbps) -90 dB Sensitivity at RX SENS -80 dB 0.1%BER(@1000kbps) Part No. Description TRW-24G High frequency Transceiver module (GFSK) 2.4GHz WENSHING TRW
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PDF
wg160128b_datasheet.pdf
Characteristics ITEM SYMBOL CONDITION MIN. TYP. MAX. UNIT Supply Voltage For VDDV SS - 4.75 5.0 5.25 V Logic Ta=-20℃ - - 22.1 V Supply Voltage For LCV DD 0 Ta=25℃ - 19.2 - V Ta=70℃ 16.8 - - V Input High Volt. V - - V IH V DD.2 VDD Input Low Volt. VIL - 0 - 0.8 V Output High Volt. VOH - - V V DD.3 VDD
in „GLCD Kontrast (WG160128B & T6963c)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm12.c
daraus ergeben sich 39 wahlfreie Kanaele auf den gesendet und empfangen werden kann. Kanal 0 = 430,25 Mhz Kanal 1 = 430,5 Mhz Kanal 2 = 430,75 Mhz ..... Kanal 38 = 439,75 Mhz */ void RF_SetChannel(byte kanal) { int16 F; disable_interrupts(GLOBAL); RF_Init_SPI(); if (kanal>38) kanal = 38; // Bereichsfehler
in „PIC18: Getesteter CCS C-Code für RFM12 Modul“ · Projekte & Code ·
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Datei
test3.txt
*********************************************************** mov #0xF1FC,W0 ; Configure Pins 2,3,24,25,26 as Analog Input mov W0,AD1PCFG mov #0xFFEF,W0 ; Configue Pin 12 as Output mov W0,TRISA mov #0xE0BF,W0 ; Configue Pins 15,17,18,21,22,23 as Output mov W0,TRISB ;**** UART1 Initialisation **********
in „PIC24F - UART Problem mit dem Empfang“ · Mikrocontroller und Digitale Elektronik ·
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Datei
atmega32u2.patch
only 0x4000?) + { 0xBD,0xF2,0xBD,0xE1,0xBB,0xCF,0xB4,0x00, + 0xBE,0x01,0xB6,0x01,0xBC,0x00,0xBB,0xBF, + 0x99,0xF9,0xBB,0xAF }, // ucEepromInst + { 0xB6,0x01,0x11 }, // ucFlashInst (this also) + 0x3E, // ucSPHaddr + 0x3D, // ucSPLaddr + fill_b2(32768 / 128), // uiFlashpages + 0x31, // ucDWDRAddress +
in „avarice und atmega32u2“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avrdude_crash.txt
serial program mode : yes parallel program mode : yes Timeout : 200 StabDelay : 100 CmdexeDelay : 25 SyncLoops : 32 ByteDelay : 0 PollIndex : 3 PollValue : 0x53 Memory Detail : Block Poll Page Polled Memory Type Mode Delay Size Indx Paged Size Size #Pages MinW MaxW ReadBack ----------- ---- ----- --
in „Avrdude stürzt ab, beim Flash/EEPROM Lesen über usbtiny, Ubuntu 16.04“ · PC Hard- und Software ·
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Datei
disassembly.txt
0; start < 1000000; start++) 000001EC 9800 LDR R0, [SP, #0] 000001EE 491B LDR R1, [PC,#0x06C] ; [0x25C] =0xF4240 000001F0 4288 CMP R0, R1 000001F2 D203 BCS 0x0001FC for (start = 0; start < 1000000; start++) 000001F4 9800 LDR R0, [SP, #0] 000001F6 1C40 ADD R0, R0, #1 000001F8 9000 STR R0, [SP, #0] 000001FA
in „Flash Read and Write in LPC-2148“ · µC & Digital Electronics ·
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PDF
ST20450.pdf
24FD ccnt1 2 check count from 1 A, E 22F9 testerr 1 test error falseand clear 21F0 seterr 1 set error 25F5 stoperr 1 to 3 stop on error (no error) D 25F7 clrhalterr 2 clear halt-on-error 25F8 sethalterr 1 set halt-on-error 25F9 testhalterr 1 test halt-on-error Table 5.13 Error handling operation codes Memory Mnemonic Processor Name Notes code cycles 25FB move2dinit 1 initialize data for 2D blockmove 25FC move2dall 2D block copy I 25FD move2dnonzero 2D block copy non-zero bytes I 25FE move2dzero 2D block copy zero bytes I Table 5.14 2D block move operation
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Datei
CMU_BASE.INI.TXT
/main/5.20/2 14 May 2009 09:00:24 schro_ra ** ** /main/5.20/_integration_5x20.a05/1 13 May 2009 09:25:50 schro_ra ** ** /main/5.00/4 30 Apr 2009 09:14:06 schro_ra ** ** /main/5.00/_integration_5x00.b30/1 24 Apr 2009 16:03:30 schro_ra ** added GSM700 ** ** /main/5.20/1 8 Dec 2008 17:02:54 schro_ra **
in „Option B41 bei einer CMU200 nachrüsten.“ · HF, Funk und Felder ·
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Datei
schrittmotor.asm
LRAM_0x22 equ 0x22 ; 2 <0:2:0> LRAM_0x23 equ 0x23 ; 2 <0:2:0> LRAM_0x24 equ 0x24 ; 2 <0:2:0> LRAM_0x25 equ 0x25 ; 2 <0:2:0> LRAM_0x26 equ 0x26 ; 4 <0:4:0> LRAM_0x27 equ 0x27 ; 4 <0:4:0> LRAM_0x28 equ 0x28 ; 1 <0:1:0> LRAM_0x29 equ 0x29 ; 1 <0:1:0> LRAM_0x2A equ 0x2A ; 5 <0:5:0> LRAM_0x2B equ 0x2B ; 6
in „Linear Schrittmotor bei Pollin, ggf. mit Treiberplatine“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Diamond_WP.pdf
about 5%) is more than offset by the difference between 24-bit and 32-bit encoding (a reduction of 25%). Figure 3: Xtensa Instruction Encoding Formats. Note that many instruction sets with 5-bit register fields do not provide 32 general registers for compilation. Most dedicate a register to hold zero
in „Nachfolger vom esp8266: ESP32 - besser, schneller“ · Offtopic ·
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Datei
nm.txt
0000002c T dac_stop 08004bd9 00000002 W DebugMon_Handler 08004bd8 00000002 T Default_Handler 08004d25 0000001c T delay 080055e8 00000094 R digitalPin 08004cb1 00000070 T digitalWrite 08003029 000000d8 T disableTimerClock 08004bd9 00000002 W DMA1_Channel1_IRQHandler 08004bd9 00000002 W DMA1_Channel2_IRQHandler
in „Warum ist die USB/CDC Implementierung der Cube HAL so groẞ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Baumappe_BX-222P_1_.pdf
R28 C57 EXT_FIL 1,5k + 10u 4 3 R36 C29 56 R14 2 1 n.b. n.b. T5 150 X3 BFR193 DIFF_A/2.1C T3 10n R8 BF862 n.b. R34 TR1 1M D 4k7 CX2064 C39 n.b. n.b. 1 P4 P3 T2 RF G S BFR193 2 10n R5 U_HILF/2.4C RFGND P2 R15 1 R 0 D1 200 n.b. n.b. n.b. R25 R35 X2 BAV99 R13 1k 4k7 BNC-BUCHSE C58 P6 P1 R 10 C56 + Punkt
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PDF
Grundig_ST70-780_text_Service-Manual.pdf
., 15625Hz hor. / Segnale dynam.del'image25Hz,actifsurvideoetfonction.mixte/Spostam. Y - 50Hz vert., 15625Hz hor. / Señal Y - 50Hz vert., 15625Hz hor. vert. dinam. 25Hz, attivo con video e. funzionam. misto / Desplaz. dinamico vert. 25Hz, activo
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
wt8871.pdf
GPIO. 104 VSS Ground 105 VDDC 2.5V Power. 106 AVSS_PLL Analog power for analog front end PLL, 107 AVD25_PLL Analog power for analog front end PLL, 108 PLL27M_LF Loop filter for 27MHz PLL. 109 AVD25_27M 2.5V power.. 110 AVSS_27M Ground. 111 AVSS_CVBS Ground. 112 AVD25_CVBS 2.5V power. 113 CVBSI AI CVBS
in „LCD Display HT070I36-E00“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avra_test_list.txt
OCR1AH = 0x2b .equ OCR1BL = 0x28 .equ OCR1BH = 0x29 .equ ICR1L = 0x26 .equ ICR1H = 0x27 .equ TCCR2 = 0x25 .equ TCNT2 = 0x24 .equ OCR2 = 0x23 .equ ASSR = 0x22 .equ WDTCR = 0x21 .equ UBRRH = 0x20 .equ UCSRC = 0x20 .equ EEARL = 0x1e .equ EEARH = 0x1f .equ EEDR = 0x1d .equ EECR = 0x1c .equ PORTA = 0x1b .equ
in „AVR mit Linux Programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
liste.lst
OCR1AL = 0x2a .equ OCR1BH = 0x29 .equ OCR1BL = 0x28 .equ ICR1H = 0x27 .equ ICR1L = 0x26 .equ TCCR2 = 0x25 .equ TCNT2 = 0x24 .equ OCR2 = 0x23 .equ ASSR = 0x22 .equ WDTCR = 0x21 .equ UBRRH = 0x20 .equ UCSRC = 0x20 .equ EEARH = 0x1f .equ EEARL = 0x1e .equ EEDR = 0x1d .equ EECR = 0x1c .equ PORTA = 0x1b .equ
in „Adressierung eines LUT mit Z-Register“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1963_V014.pdf
timing Correct Table 6.1-6.5 Pin Mapping -> Pin description 1.4 1. Update Section 9.45 SET_PWM_CONF 25-Jul-11 25-Jul-11 2. Update Section 9.30 SET_TEAR_SCANLINE 3. Update Section 15.3 Tape and Reel Drawing Solomon Systech Jul 2011 P 2/94 Rev 1.4 SSD1963 CONTENTS 1 GENERAL DESCRIPTION..................
in „SSD1963 Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Nahaufnahme eines integrierten Schaltkreises auf einer Leiterplatte
2R2 10811
in „nintendo switch R2R Chip Kaputt“ · Platinen · · Platinenfotos
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PDF
clrc632.pdf
… 16F w 23 17 170 … 17F w 24 18 180 … 18F w 25 19 190 … 19F w 26 1A 1A0 … 1AF w 27 1B 1B0 … 1BF w 28 1C 1C0 … 1CF w 29 1D 1D0 … 1DF w 30 1E 1E0 … 1EF w 31 1F 1F0 … 1FF w Table 6-1: Diagram of E²PROM Memory Organisation 73 Confidential Philips Semiconductors
in „SPI master/slave - schreib/lese befehle ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega128CAN11_short.pdf
Measure = mm) SYMBOL MIN NOM MAX NOTE A – – 1.20 A1 0.05 – 0.15 A2 0.95 1.00 1.05 D 15.75 16.00 16.25 D1 13.90 14.00 14.10 Note 2 E 15.75 16.00 16.25 Notes: 1. This package conforms to JEDEC reference MS-026, Variation AEB. 2. Dimensions D1 and E1 do not include mold protrusion. Allowable E1 13.90 14.00 14.10 Note 2 protrusion is 0.25 mm per side. Dimensions D1 and E1 are maximum B 0.30 – 0.45 plastic body size dimensions including mold mismatch. C 0.09 – 0.20 3. Lead coplanarity is 0.10 mm maximum. L 0.45 – 0.75 e 0.80 TYP Advance
in „ATmega128CAN11“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega128CAN11_short.pdf
Measure = mm) SYMBOL MIN NOM MAX NOTE A – – 1.20 A1 0.05 – 0.15 A2 0.95 1.00 1.05 D 15.75 16.00 16.25 D1 13.90 14.00 14.10 Note 2 E 15.75 16.00 16.25 Notes: 1. This package conforms to JEDEC reference MS-026, Variation AEB. 2. Dimensions D1 and E1 do not include mold protrusion. Allowable E1 13.90 14.00 14.10 Note 2 protrusion is 0.25 mm per side. Dimensions D1 and E1 are maximum B 0.30 – 0.45 plastic body size dimensions including mold mismatch. C 0.09 – 0.20 3. Lead coplanarity is 0.10 mm maximum. L 0.45 – 0.75 e 0.80 TYP Advance
in „ATmega128CAN11“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MON8052.asm
,H'85," ",H'1 .DB H'04,H'86," ",H'1 .DB H'04,H'87," ",H'1 ; 20 - 2F .DB H'1A,H'8C,"$,* ",H'3 .DB H'25,"H01$ ",H'2 .DB H'23," ",H'1 .DB H'0D,"A ",H'1 .DB H'00,"A,#$ ",H'2 .DB H'00,"A,$ ",H'2 .DB H'00,"A,",H'88," ",H'1 .DB H'00,"A,",H'89," ",H'1 .DB H'00,"A,",H'80," ",H'1 .DB H'00,"A,",H'81," ",H'1 .DB
in „80C535 Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MON8052.asm
,H'85," ",H'1 .DB H'04,H'86," ",H'1 .DB H'04,H'87," ",H'1 ; 20 - 2F .DB H'1A,H'8C,"$,* ",H'3 .DB H'25,"H01$ ",H'2 .DB H'23," ",H'1 .DB H'0D,"A ",H'1 .DB H'00,"A,#$ ",H'2 .DB H'00,"A,$ ",H'2 .DB H'00,"A,",H'88," ",H'1 .DB H'00,"A,",H'89," ",H'1 .DB H'00,"A,",H'80," ",H'1 .DB H'00,"A,",H'81," ",H'1 .DB
in „ARM: kompliziert?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MON8052.asm
,H'85," ",H'1 .DB H'04,H'86," ",H'1 .DB H'04,H'87," ",H'1 ; 20 - 2F .DB H'1A,H'8C,"$,* ",H'3 .DB H'25,"H01$ ",H'2 .DB H'23," ",H'1 .DB H'0D,"A ",H'1 .DB H'00,"A,#$ ",H'2 .DB H'00,"A,$ ",H'2 .DB H'00,"A,",H'88," ",H'1 .DB H'00,"A,",H'89," ",H'1 .DB H'00,"A,",H'80," ",H'1 .DB H'00,"A,",H'81," ",H'1 .DB
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SST39LF010-SST39LF020-SST39LF040-SST39VF010-SST39VF020-SST39VF040-Data-Sheet-DS20005023.pdf
DQ7 A14 5 28 DQ6 A5 7 27 A8 NC/A171) 6 27 DQ5 7 26 DQ4 A4 8 26 A9 WE# Standard Pinout VDD 8 Top View 25 DQ3 A3 9 Top View 25 A11 NC/A182) 9 Die Up 24 VSS A2 10 24 OE# A16 10 23 DQ2 A15 11 22 DQ1 A1 11 23 A10 A12 12 21 DQ0 13 20 A0 A0 12 22 CE# A7 A6 14 19 A1 DQ0 13 21 DQ7 A5 15 18 A2 14 15 16 17 18 19
in „[V] 10St. neue OPV Flash Micochip SST39LF040 4Mb 3-3.6V Parallel Flash PLCC32 (10€)“ · Markt ·
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PDF
Hc11dat.pdf
Frequency SPR[1:0] = 00 SPR[1:0] = 01 SPR[1:0] = 10 SPR[1:0] = 11 1 MHz 500 kbps 250 kbps 62.5 kbps 31.25 kbps 2 MHz 1 Mbps 500 kbps 125 kbps 62.5 kbps 3 MHz 1.5 Mbps 750 kbps 187.5 kbps 93.75 kbps 4 MHz 2 Mbps 1 Mbps 250 kbps 125 kbps 5 MHz 2.5 Mbps 1.25 Mbps 312.5 kbps 156.25 kbps 6 MHz 3 Mbps 1.5 Mbps
in „68HC11 MC68HC11 Layout gesucht PLCC68“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC68HC11F1FN.pdf
Frequency SPR[1:0] = 00 SPR[1:0] = 01 SPR[1:0] = 10 SPR[1:0] = 11 1 MHz 500 kbps 250 kbps 62.5 kbps 31.25 kbps 2 MHz 1 Mbps 500 kbps 125 kbps 62.5 kbps 3 MHz 1.5 Mbps 750 kbps 187.5 kbps 93.75 kbps 4 MHz 2 Mbps 1 Mbps 250 kbps 125 kbps 5 MHz 2.5 Mbps 1.25 Mbps 312.5 kbps 156.25 kbps 6 MHz 3 Mbps 1.5 Mbps
in „MC68HC11F1FN (EEPROM) von Motorola zu verkaufen“ · Markt ·
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PDF
PIC18F46J11_39932D.pdf
m e M C R e R R E P I 0 C D P M S S 1 PIC18F24J11 28 16K 3776 19 2/3 2 2 2 Y Y 10 2 Y N Y Y PIC18F25J11 28 32K 3776 19 2/3 2 2 2 Y Y 10 2 Y N Y Y PIC18F26J11 28 64K 3776 19 2/3 2 2 2 Y Y 10 2 Y N Y Y PIC18F44J11 44 16K 3776 25 2/3 2 2 2 Y Y 13 2 Y Y Y Y PIC18F45J11 44 32K 3776 25 2/3 2 2 2 Y Y 13 2
in „PIC18F46J11 und RTC. Quarz nötig? Anfängerfrage Übersicht verloren ;-(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_SC16IS750.pdf
slow only for SC16IS750. [9] The special register set is accessible only when LCR[7] = 1 and not 0xBF. [10] Enhanced Feature Registers are only accessible when LCR = 0xBF. 8.1 Receive Holding Register (RHR) The receiver section consists of the Receiver Holding Register (RHR) and the Receiver Shift Register
in „UART_Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ABOV-Semicon-MC80F0604_C142970.pdf
to operate properly only within the specified range. Operating Area fXIN Normal Operation (MHz) Ta=25°C IDD −V DD 16 IDD 14 (mA) Ta=25°C 12 12 10 10 8 8 fXIN12MHz 6 6 4MHz 4 4 2 2 0 V 0 VDD DD 2 3 4 5 6 (V) 2 3 4 5 6 (V) STOP Mode SLEEP Mode ISTOP −V DD ISLEEP −V DD I DD DD (μA) Ta=25°C (mA) Ta=25°C
in „Steuerung Infrorotkabine / Openhab“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Alto_D1__D2__D3__D4_Power_Amp_Service_Manual.pdf
ZB-plastic cover D1_V1.0 1 5 MI03890 D-fixed bracket D1 1t*24.5*30*60_V1.0 1 6 NI04551 fixed cover D1 f 25*12_V1.0 1 7 NI04553 pass light key D1 f 18.5*17.7_V1.0 1 8 NI04554 leach net D1 389*82*4t_V1.0 1 9 MI02856 ZB-fixed bracket PA-240P 2.0t*24*26*88 Lmould_V1.0 2 10 HE00065 fan DC12V/0.19A 80*80*25 380mm
in „Endstufe reparieren, Bauteil identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2_gameboy.pdf
$FFFE [$FF05] = $00 ; TIMA [$FF06] = $00 ; TMA [$FF07] = $00 ; TAC [$FF10] = $80 ; NR10 [$FF11] = $BF ; NR11 [$FF12] = $F3 ; NR12 [$FF14] = $BF ; NR14 [$FF16] = $3F ; NR21 [$FF17] = $00 ; NR22 [$FF19] = $BF ; NR24 [$FF1A] = $7F ; NR30 [$FF1B] = $FF ; NR31 [$FF1C] = $9F ; NR32 [$FF1E] = $BF ; NR33 [$FF20] = $FF ; NR41 [$FF21] = $00 ; NR42 [$FF22] = $00 ; NR43 [$FF23] = $BF ; NR30 [$FF24] = $77 ; NR50 [$FF25] = $F3 ; NR51 [$FF26] = $F1-GB, $F0-SGB ; NR52 [$FF40] = $91 ; LCDC [$FF42] = $00 ; SCY [$FF43] = $00 ; SCX [$FF45] = $00 ; LYC [$FF47] = $FC ; BGP [$FF48] = $FF ;
in „(Chip8 / gameboy) Emulator für AVR AVR32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
st_logo.c
,0xDB,0xB7,0x70,0xE3,0xCA,0x6D,0x7B,0x05,0x80,0x07,0x11,0x64,0xCD, 0x8E,0x34,0x62,0x63,0x41,0x85,0xBF,0x80,0x03,0x0B,0x1E,0x4C,0xB8,0x70,0xE0, 0x21,0x2B,0x44,0x0C,0x90,0x20,0x73,0x24,0x8B,0xB4,0x26,0xFE,0x7E,0x98,0x4C, 0xB9,0xB2,0xE5,0xCB,0x98,0x33,0x7F,0xB8,0xC1,0xE2,0xC2,0x01,0x0F,0x8C,0xF5, 0x86,0xB4,0xD2,0x57,0x0A
in „Webpage Webserver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xapp694.pdf
data on din/dout and the sync pulse. 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 clock din SYNC n-2 SYNC n-1 SYNC n DATA0 DATA1 DATA6 DATA7 DATA8 sync dout DATA[7:0] DATA[7:0] data_ready x694_07_033104 Figure 7: Control State Machine Block Timing Adding
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PDF
RXV667.pdf
7C-9C62 9 7C-9C 2002 B0 00 18 A8 004.009 45B5 09 9 048.009 9 7C-1F 9 79-19 79-19 9 7F-99 9 79-8D 79-BF 080F K75 0 7C-93 7C-936D 0 7C-93 2002 B0 00 19 A9 004.000 45B5 0A 0 048.000 0 7C-16 0/10 79-10 79-10 0 7F-90 0 79-8E 79-C0 090F K76 +10 7C-9D 7C-9D63 +10 7C-9D 2002 B0 00 89 39 004.120 45B5 25 +10 –
in „Yamaha RX-V667 Reparatur und Bezugsquellen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
panasonic_tx-w32d5dpf.pdf
ERD25TJ101 CARBON 0.25W 5% 100 R1163 ERJ6GEYJ103 S.M.CARB 0.1W 5% 10K R1013 ERD25TJ471 CARBON 0.25W 5% 470 R1164 ERJ6GEYJ103 S.M.CARB 0.1W 5% 10K R1015 ERD25TJ103 CARBON 0.25W 5% 10K R1165 ERJ6GEYJ103 S.M.CARB 0.1W 5% 10K R1071 ERD25TJ103 CARBON 0.25W 5% 10K R1166 ERJ6GEYJ683 S.M.CARB 0.1W 5% 68K R1072 ERD25TJ222 CARBON 0.25W 5% 2K2 R1167 ERJ6GEYJ103 S.M.CARB 0.1W 5% 10K R1073 ERD25TJ222 CARBON 0.25W 5% 2K2 R1168 ERJ6GEYJ103 S.M.CARB
in „Panasonic TX-W32D5DPF“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
nokia_6085_rm-198_service_schematics_v2.pdf
0 K4 TxIP GENIO22 V6 22 24 GENIO24 DIFWRX Gabes/ SDA Rebun 17 B4 VCCA 2k2 S3200 8 1 K3 TxIN Y4 23 25 GENIO25 LCDTE 21 VIO VIO B1 VCCB GND A3 GND 2 L3 GENIO23 V5 24 26 GENIO26 DIFCSX Gabes 16 GND D2 GND RFCONV(11:0) TXQP GENIO24 5 GENIO5 LCDCS2X Rebun 18 1 2 3 L4 TXQN GENIO25 AA3 25 28 19 C3201 C3202
in „H179IT01 1,7" TFT aus Nokia Handy - Daten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADNS2051.pdf
(0.878) 0.99 0.01 (0.039) 3.18 (0.000) (0.125) 50° ± 0.5° 2.98 (0.117) 5.16 (0.203) 0.50 CHAMFER 0.25 (0.010) LEAD WIDTH 0.50 1.26 LEAD OFFSET * (0.020) (0.050) 6.18 5° ± 3° (0.243) 0.25 2.54 (0.010) (0.100)LEAD PITCH 13.57 ± 0.45 (AT LEAD TIP) (0.534 ± 0.018) GATE LOCATION 6.03 SURFACE RECESSED (0.237
in „Maussensor ADNS 2051 Bild auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
gps-spec-IS_GPS_200J.pdf
D03D945B9085A58C583A392E7CA1FA6B5FF5FF0BB436CAE9C1FD4 4B0124E42332A03A54AE23A23A82223DB0B43C9BE049 210 P25t+120) 59E2F1EEAF906B168FC5226D6E2A295C488BC1D37A7BECA8193F9 A570194E08DF23171E5EF24D150A9BF302095C0DA751C7E65B913 7D76FA51495E894B93576D456E10E9CBF556692794213711F6025 41E9871D9D030E724623596E21EF66BAEA334360B3BCEB9698A20
in „Magisches Auge für GPS-Empfänger“ · Mikrocontroller und Digitale Elektronik ·
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SSD1963_1.1.pdf
...................................................................................................25 9.5 G ETDISPLAY MODE.............................................................................................................................................25 9.6 G ETSIGNAL MODE ...............
in „TFT- Ansteuerung ET0350G0DH6 (Glyn) mit HX8238 LCD Driver und Microchip Graphic Lib“ · Mikrocontroller und Digitale Elektronik ·
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binaer.h
.: 034 #define B00100011 0x23 // dez.: 035 #define B00100100 0x24 // dez.: 036 #define B00100101 0x25 // dez.: 037 #define B00100110 0x26 // dez.: 038 #define B00100111 0x27 // dez.: 039 #define B00101000 0x28 // dez.: 040 #define B00101001 0x29 // dez.: 041 #define B00101010 0x2A // dez.: 042 #define
in „0b10101010 ANSI C gerecht?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sheeva-boot-3.5.7.txt
cgroup subsys blkio CPU: Testing write buffer coherency: ok Setting up static identity map for 0x46bf80 - 0x46bfbc devtmpfs: initialized NET: Registered protocol family 16 Kirkwood: MV88F6281-A1, TCLK=200000000. Feroceon L2: Enabling L2 Feroceon L2: Cache support initialised. bio: create slab <bio-0>
in „Sheevaplug brauche eine Einführung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm12.c
daraus ergeben sich 39 wahlfreie Kanaele auf den gesendet und empfangen werden kann. Kanal 0 = 430,25 Mhz Kanal 1 = 430,5 Mhz Kanal 2 = 430,75 Mhz ..... Kanal 38 = 439,75 Mhz */ void RF_SetChannel(byte kanal) { int16 F; disable_interrupts(GLOBAL); RF_Init_SPI(); if (kanal>38) kanal = 38; // Bereichsfehler
in „RFM12b an Atmega168 - Empfangsprobleme“ · Mikrocontroller und Digitale Elektronik ·
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DS_SX1261-2_V1.1-1307803.pdf
...................................................................................................25 4.3.1 Intermediate Frequencies.................................................................................................................................................25 4.4 Transmitter .....
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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 ·
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CY7C68013.pdf
slave-FIFO output status flag signal. SLCS# gates all other slave FIFO enable/strobes Port B 44 34 25 18 PB0 or I/O/Z I Multiplexed pin whose function is selected by the following bits: FD[0] (PB0) IFCONFIG[1..0]. PB0 is a bidirectional I/O port pin. FD[0] is the bidirectional FIFO/GPIF data bus. 45