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Datei
main.txt
144: fe 84 ldd r15, Y+14 ; 0x0e 146: 0f 85 ldd r16, Y+15 ; 0x0f 148: 18 89 ldd r17, Y+16 ; 0x10 14a: ad 88 ldd r10, Y+21 ; 0x15 14c: be 88 ldd r11, Y+22 ; 0x16 14e: cf 88 ldd r12, Y+23 ; 0x17 150: d8 8c ldd r13, Y+24 ; 0x18 152: ea 14 cp r14, r10 154: fb 04 cpc r15, r11 156: 0c 05 cpc r16, r12 158: 1d
in „flash-Fehler mit ATtiny2313, compile ok“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MT6252.pdf
P13dGND AA2 NC d ia3 TAU_FMINR R10 GND A1 NC M e B5 AU_MOUTLAS R14 GND AC1 NC A6 AU_MOUTR U7 GNn o n _W AD1 NC B7 AU_OUT0_P V15 GND W19 NC A4 AU_VCM W4 GND AC8 NC D2 AU_VIN0_P W13 GND AC9 NC C1 AU_VIN1_N Y11 GND AD9 NC D3 AUX_IN4_P H11 GND_ANALOG AD10 NC E6 AUX_IN5 H13 GND_ANALOG AB11 NC B8 AVDD28_AFE J10
in „Amparos GPS Tacker - Pollin Schnäppchen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
EMS_Adapter.xml
wGFJuIpHf+Hg97R7x+PLWqF4rfYuEYr3MX8XIFWeei31xBJGTFOuwhvX5acWQgiPFv4Aj38i8GU5i2cY9cZ7wOrAeWUL3mEzMyWYyt1zWeAdYJYGNLmjj8kHFE3YM+t4p/XKATL9+rjVj+nViCZsJFWC7j7oY7jgFtOgiuRX99ZBsW0VySFH7Qmbt15ppNjBljiwbhYL4agdg5UfeWW7B67U0e8ekljdWQh/BmnV7Hmr5vz5B/5k2QKHxuyquJTn3eIFtPiunvrJNxAz7w3F4Siv/Jbgy6Soy+z2XLBo4K7T1U0IQxhiZ
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Datei
EMS_Adapter.xml
wGFJuIpHf+Hg97R7x+PLWqF4rfYuEYr3MX8XIFWeei31xBJGTFOuwhvX5acWQgiPFv4Aj38i8GU5i2cY9cZ7wOrAeWUL3mEzMyWYyt1zWeAdYJYGNLmjj8kHFE3YM+t4p/XKATL9+rjVj+nViCZsJFWC7j7oY7jgFtOgiuRX99ZBsW0VySFH7Qmbt15ppNjBljiwbhYL4agdg5UfeWW7B67U0e8ekljdWQh/BmnV7Hmr5vz5B/5k2QKHxuyquJTn3eIFtPiunvrJNxAz7w3F4Siv/Jbgy6Soy+z2XLBo4K7T1U0IQxhiZ
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Datei
nibble_data.vhd
v1_o(55)(19 downto 16)); when x"1AC" => data <=std_Logic_vector( v1_o(55)(23 downto 20)); when x"1AD" => data <=std_Logic_vector( v1_o(55)(11 downto 8)); when x"1AE" => data <=std_Logic_vector( v1_o(55)(15 downto 12)); when x"1AF" => data <=std_Logic_vector( v1_o(55)(3 downto 0)); when x"1B0" => data
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PDF
slau144i.pdf
following fields: src The source operand defined by As and S-reg dst The destination operand defined by Ad and D-reg As The addressing bits responsible for the addressing mode used for the source (src) S-reg The working register used for the source (src) Ad The addressing bits responsible for the addressing
in „Anfängerprogramm TimerA MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2594HVM-5.0_Datenblatt.pdf
Renco Electronics Inc. Phone (800) 645-5828 FIGURE 10. Capacitor Manufacturers Phone Numbers FAX (516) 586-5562 Schott Corp. Phone (612) 475-1173 FAX (612) 475-1786 FIGURE 9. Inductor Manufacturers Phone Numbers www.national.com 16 L M LM2594/LM2594HV Series Buck Regulator Design Procedure (Continued) 5
in „Idee für ein ||transportables|| Handyladegerät“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SSD1351-Revision_1.5.pdf
585 COM67 -5234.62 539.96 346 SB51 993.00 681.25 426 SA78 -1007.00 681.25 506 SB103 -3018.00 681.25 586 COM68 -5234.62 504.96 347 SC51 968.00 681.25 427 SB78 -1032.00 681.25 507 SC103 -3043.00 681.25 587 COM69 -5234.62 469.96 SA52 943.00 681.25 SC78 -1057.00 681.25 SA104 -3068.00 681.25 COM70 -5234.62
in „OLED128x128 SSD1351 RGB Initialisierung Color Farbe bunt SPI 3.3V AVR ATmega8 ATmega328p Assembler“ · Projekte & Code ·
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Datei
disas.txt
sbci r23, 0xFF ; 255 580: f2 01 movw r30, r4 582: 2b 01 movw r4, r22 584: 64 80 ldd r6, Z+4 ; 0x04 586: 75 80 ldd r7, Z+5 ; 0x05 588: 46 18 sub r4, r6 58a: 57 08 sbc r5, r7 58c: 66 80 ldd r6, Z+6 ; 0x06 58e: 77 80 ldd r7, Z+7 ; 0x07 590: 64 82 std Z+4, r6 ; 0x04 592: 75 82 std Z+5, r7 ; 0x05 594: 27
in „Audio Spektrum Analyzer mit ATtiny85“ · Projekte & Code ·
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LG4573A_DS_V1.1.5__1_.pdf
................................................................................19 5.1.1 Write/ Re ad Cycle Sequence...................................................................................19 5.2 MIPI DB I Type C ..............................................................................
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Datei
debug_okay.asm
byteval, 1); ) return byteval; } 580: 89 81 ldd r24, Y+1 ; 0x01 582: 0f 90 pop r0 584: df 91 pop r29 586: cf 91 pop r28 588: 08 95 ret 0000058a <lib_nRF24L01_set_regbyte>: // Writes one byte into the given nRF24L01-module register void lib_nRF24L01_set_regbyte( uint8_t reg, uint8_t value) { 58a: cf 93
in „Fehler bei einfacher Integer-Division?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slau144j.pdf
Checking Integrity of SegmentA .....................................................................586............... 24.4 Parsing TLV Structure of Segment A .................................................................586.............. 25 DAC12 ...................................................
in „MSP430 Gleitkommazahl in Flash speichern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
family_guide.pdf
Checking Integrity of SegmentA .....................................................................586............... 24.4 Parsing TLV Structure of Segment A .................................................................586.............. 25 DAC12 ...................................................
in „MSP430 Output nur auf zwei von vier Pinnen möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pm2521ocr.pdf
. . . e e e e e e es OD bon 1.4.3.2. Time measurements 2... 0... 0. e c e e e e ee eee eee eee ee AD 1.4.3.3. Trigger measurements .. 0.0.00... c c c e e ee ee eee ee eee eee 40 : 1.4.4. Analog section (multifunction measurements) . . . . .00.600.0 e.ee0ee. ac.es Af : 1.4.4.1, R M S . convertor 2 .
in „Pjilips PM2519“ · Markt ·
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Datei
merged.lst
582: ; 583: ;TMOD_CLR0 EQU 0F1H ; Timer 0 584: ;TMOD_SET0 EQU 01H ; Timer 0 585: ;TIMER_LOW EQU TL0 586: ;TIMER_HIGH EQU TH1 587: ;TIMER_RUN EQU TR0 588: ;TIMER_ENA EQU ET0 589: ;TIMER_PRIO EQU PT0 590: ;MS10_HIGH EQU 3CH ; fuer 50 mS Interrupt 591: ;MS10_LOW EQU 0B0H 592: ;EIN EQU 01H 593: ;AUS EQU 00H
in „8051 Assembler + Linker für WINDOWS 10/11“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nano_os_OPT3.txt
02 lds r24, 0x0215 acc: 8f 5f subi r24, 0xFF ; 255 ace: 80 93 15 02 sts 0x0215, r24 SREG = sregsys; ad2: 80 91 0a 01 lds r24, 0x010A ad6: 8f bf out 0x3f, r24 ; 63 //* * //**************************************************** uint8_t queue_write_byte (Queue *qp, unsigned char message) { sregsys = SREG; ad8: 8f b7 in r24, 0x3f ; 63 ada: 80 93 0a 01 sts 0x010A, r24 cli(); ade: f8 94 cli uint8_t mlen = qp->number; ae0: 20 91 c9 01 lds r18, 0x01C9 if (mlen > (qp->queueDepth - 1) || qp->item_size != 1) ae4
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Datei
hrktar_main.lst
583: 1 ;TMOD_CLR0 EQU 0F1H ; Timer 0 584: 1 ;TMOD_SET0 EQU 01H ; Timer 0 585: 1 ;TIMER_LOW EQU TL0 586: 1 ;TIMER_HIGH EQU TH1 587: 1 ;TIMER_RUN EQU TR0 588: 1 ;TIMER_ENA EQU ET0 589: 1 ;TIMER_PRIO EQU PT0 590: 1 ;MS10_HIGH EQU 3CH ; fue 591: 1 ;MS10_LOW EQU 0B0H 592: 1 ;EIN EQU 01H 593: 1 ;AUS EQU 00H
in „8051 Assembler + Linker für WINDOWS 10/11“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1_AMD_BKDG_Family__15h_Mod_00h-0Fh_BKDG.pdf
9AAB AC AC00 00AC ACAC AC56 AC2B ACAD AC26 AC13 AC4C ACB1ACDA 56AC 2BAC ADAC 26AC 13AC 4CAC B1AC DAAC AD AD0000ADADADADEE AD77 AD83 ADE0 AD70 ADB1 AD38 AD47 EEAD 77AD 83AD E0AD 70AD B1AD 38AD 47AD AE AE00 00AE AEAE AE57 AE93 AEF1 AEDB AED5 AEC7 AED2 AE91 57AE 93AE F1AE DBAE D5AE C7AE D2AE 91AE AF AF00 00AF
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lg_flatron_l1800p_lb886f_ch_cl-29.pdf
4 1 t eS/ ot uA 41R 3 5 2R une M ecr uoS R R 31R R R 1R 8R L 11C304T0786: N/ P 2 51. 11. 1002: et aD 1 1 YEK F688BL:l edo M R R B O A R D 2 2 R C R22 8 Z L15 3 3 R C R21 7 L14 Z 2 R30 2 C L R 2 C L R 1 R L J C28 R R28 R 3 1 C 6 X S U F 1 U 8 U C L S e o C D B M Z R B O C 1 A Z 3 R C U D C2 L17 1 5 6
in „Überspannung in Mehrparteien-Wohunung. Baustrom, oder Kabel angebohrt?“ · Haus & Smart Home ·
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Datei
stm32f10x_rcc.lst
mov r3, r0 987 0008 FB71 strb r3, [r7, #7] 585:lib/stm32f10x_rcc.c **** /* Check the parameters */ 586:lib/stm32f10x_rcc.c **** assert_param(IS_FUNCTIONAL_STATE(NewState)); 587:lib/stm32f10x_rcc.c **** *(__IO uint32_t *) CSR_LSION_BB = (uint32_t)NewState; 988 .loc 1 587 0 989 000a 044B ldr r3, .L66 990
in „Seltsame Initialisierungen und Abstürze.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430FR59xx.pdf
..... 21.4.3 UCAxSTATW Register ...................................................................586.................. 21.4.4 UCAxRXBUF Register ...................................................................587.................. 21.4.5 UCAxTXBUF Register .......................................
in „Probleme mit Konfiguration der SPI-Schnittstelle am MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430FR59xx.pdf
..... 21.4.3 UCAxSTATW Register ...................................................................586.................. 21.4.4 UCAxRXBUF Register ...................................................................587.................. 21.4.5 UCAxTXBUF Register .......................................
in „Schaltung für Vibrationsmessung mit Piezo“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
intel_bas52man.pdf
4 GND 14 15 O 3 1 14 V CC EPROMS 2 13 3 12 T2 / P1.0 1 40 V PA3 1 40 PA4 4 11 CC T2EX / P1.1 2 39 AD0 PA2 2 39 PA5 5 10 PWM OUTPUT / P1.2 3 38 AD1 PA1 3 38 PA6 6 9 ALE DISABLE / P1.3 4 37 AD2 PA0 4 37 PA7 GND 7 8 PROGRAM PULSE / P1.4 5 36 AD3 RD 5 36 WR PROGRAM ENABLE / P1.5 6 35 AD4 CS 6 35 RESET 74LS08 NC 1 28 V CC DMA ACKNOLEDGE / P1.6 7 34 AD5 GND 7 34 D0 74LS00 INVERTING A12 2 27 WR LINE PRINTER OUTPUT / P1.7 8 33 AD6 A1 8 33 D1 A7 3 26 NC RESE T 9 32 AD7 A0 9 32 D2 A6 4 25 A 8 CONSOLE SERIAL INPUT 10 31 + 5 VOLTS PC7 10 31 D3 A5 5 24 A
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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PDF
intel_bas52man.pdf
4 GND 14 15 O 3 1 14 V CC EPROMS 2 13 3 12 T2 / P1.0 1 40 V PA3 1 40 PA4 4 11 CC T2EX / P1.1 2 39 AD0 PA2 2 39 PA5 5 10 PWM OUTPUT / P1.2 3 38 AD1 PA1 3 38 PA6 6 9 ALE DISABLE / P1.3 4 37 AD2 PA0 4 37 PA7 GND 7 8 PROGRAM PULSE / P1.4 5 36 AD3 RD 5 36 WR PROGRAM ENABLE / P1.5 6 35 AD4 CS 6 35 RESET 74LS08 NC 1 28 V CC DMA ACKNOLEDGE / P1.6 7 34 AD5 GND 7 34 D0 74LS00 INVERTING A12 2 27 WR LINE PRINTER OUTPUT / P1.7 8 33 AD6 A1 8 33 D1 A7 3 26 NC RESE T 9 32 AD7 A0 9 32 D2 A6 4 25 A 8 CONSOLE SERIAL INPUT 10 31 + 5 VOLTS PC7 10 31 D3 A5 5 24 A
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sja1000_beschreibung.pdf
CS 3 to 7 8 VSS1 RD/E, WR 11,16 control CLKOUT MODE,INT 7 8 adress/data INTERFACE MANAGEMENT LOGIC AD7 to AD0 2,1 28 to 23 Internal Bus 12 VDD3 15 VSS3 13 Message Buffer TX0 BIT TIMING 14 TX1 TRANSMIT BIT LOGIC 19 RX0 BUFFER STREAM 20 RX1 PROCESSOR 21 RECEIVE 18 VSS2 FIFO VDD2 RECEIVE BUFFER ACCEP− ERROR
in „AVR und SJA1000 CAN Controller??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
gps-spec-IS_GPS_200J.pdf
24) 2A7CBF6621E0FAFD216C4DFA3D5CBFAB75FAA743419F4ABC7DAA7 BF44C35E949 3DECDF76407FFF921FA4515FAF512A586C2530BA5633B04C2F8CA 075 P 1t+48) 38CFFBE7562 111 P37t+48) AB1BE13E44C590CC08255280835311B5B8623EBCDC96C46B2958D 4F10D72C01B 112 P 1t+72) DEAB62046E05324EAD7498317CA46457BE5F06BC689EA4207AD66 250BA3A9F35
in „Magisches Auge für GPS-Empfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AoE3_chapter9.pdf
Real-time I/O 992 13.11.1 ADE7753 multifunction ac power metering IC 943 14.1.6 Data bus 992 13.11.2 AD7873 touchscreen digitizer 944 14.2 A computer instruction set 993 13.11.3 AD7927 ADC with sequencer 945 14.2.1 Assembly language and 13.11.4 AD7730 precision machine language 993 bridge-measurement subsystem
in „Labornetzgerät - Fragen zum Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ttester.pdf
609mV, Diode, 611mV, Diode, 606mV, 5.15nF 5.20nF, 0.39uA 5.25nF, 0.4uA BU508A B+C Diode, 582mV, Diode, 586mV, Diode, 587mV, 256pF 255pF, 21nA 259pF, 19nA AC128 B+E Diode, 272mV, Diode, 277mV, Diode, 273mV, 0pF 0pF, 2.2uA 0pF, 2.3uA AC128 B+E Diode, 349mV, gekühlt 140pF, 0.57uA MBR20100CT 2xDi, 337mV, 337mV
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PDF
ttester.pdf
609mV, Diode, 611mV, Diode, 606mV, 5.15nF 5.20nF, 0.39uA 5.25nF, 0.4uA BU508A B+C Diode, 582mV, Diode, 586mV, Diode, 587mV, 256pF 255pF, 21nA 259pF, 19nA AC128 B+E Diode, 272mV, Diode, 277mV, Diode, 273mV, 0pF 0pF, 2.2uA 0pF, 2.3uA AC128 B+E Diode, 349mV, gekühlt 140pF, 0.57uA MBR20100CT 2xDi, 337mV, 337mV
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PDF
ttester.pdf
609mV, Diode, 611mV, Diode, 606mV, 5.15nF 5.20nF, 0.39uA 5.25nF, 0.4uA BU508A B+C Diode, 582mV, Diode, 586mV, Diode, 587mV, 256pF 255pF, 21nA 259pF, 19nA AC128 B+E Diode, 272mV, Diode, 277mV, Diode, 273mV, 0pF 0pF, 2.2uA 0pF, 2.3uA AC128 B+E Diode, 349mV, gekühlt 140pF, 0.57uA MBR20100CT 2xDi, 337mV, 337mV
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id_vrla_handbook_e.pdf
0.718 0.590 0.482 0.316 0.171 5.10V 15.7 12.7 8.97 6.80 5.62 4.20 2.97 2.36 1.59 1.22 0.935 0.713 0.586 0.478 0.313 0.170 5.25V 14.0 11.4 8.31 6.33 5.34 4.11 2.93 2.31 1.56 1.18 0.921 0.710 0.581 0.475 0.312 0.170 The data in this document are for descriptive purposes only and are not intended to make
in „Bleiakku richtig lagern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lt32a1.pdf
063T213J105GCC CAP MPE 1UF J 450V ▯ C805 065G 1K1021AT CK45-R3AD102K-NR 1000PF / 1KV R-TYPE P ▯ C821 065G 1K1021AT CK45-R3AD102K-NR 1000PF / 1KV R-TYPE P ▯ C824 065G 1K103 2E6213 CAP CER 10NF K 1KV ▯ C911 065G 1K103 2E6921 CAP CER 10NF K 1KV Y5U ▯ C801 065G 6J3096ET
in „Philips LCD TV kein Bild aber Ton [46PFL7655K/02]“ · Haus & Smart Home ·
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PDF
onkyo_tx_nr_616_service_manual.pdf.pdf
push POWER button. N R 6 1 6 D x 2 0 0 0 MODEL Name Destination A B C D Dx : USA/Canada A:Value of AD port of BAND DF : Taiwan B:Value of AD port of INIT1 xx : Other(Europe, Asia):Value of AD port of INIT2 JJ : Japan D:Value of AD port of INIT3 MODEL TX-NR515 TX-NR515AE HT-RC460 HT-R791 DTR-20.4 FL DIS
in „Onkyo verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ttester_110k_20140511.diff
0x6A,0x50}, // 0xAB +{0x00,0x17,0x08,0x34,0x2A,0x78}, // 0xAC +{0x00,0x00,0x30,0x7D,0x30,0x00}, // 0xAD +{0x00,0x08,0x14,0x00,0x08,0x14}, // 0xAE +{0x00,0x14,0x08,0x00,0x14,0x08}, // 0xAF +{0x44,0x11,0x44,0x11,0x44,0x11}, // 0xB0 +{0xAA,0x55,0xAA,0x55,0xAA,0x55}, // 0xB1 +{0xBB,0xEE,0xBB,0xEE,0xBB,0xEE
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PDF
Datenblatt_PIC12F1822.pdf
s1,4) Legend: Shaded cells are outside of recommended range. Note 1: The FRC source has a typicalAD time of 1.6 s forDD. 2: These values violate the minimum requiredAD time. 3: For faster conversion times, the selection of another clock source is recommended. 4: The ADC clock period (TAD) and total
in „PIC12F1822-PWM Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_PIC12F1822.pdf
s1,4) Legend: Shaded cells are outside of recommended range. Note 1: The FRC source has a typicalAD time of 1.6 s forDD. 2: These values violate the minimum requiredAD time. 3: For faster conversion times, the selection of another clock source is recommended. 4: The ADC clock period (TAD) and total
in „Interrupt-PIC12F1822“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
s1,4) Legend: Shaded cells are outside of recommended range. Note 1: The FRC source has a typicalAD time of 1.6 s forDD. 2: These values violate the minimum requiredAD time. 3: For faster conversion times, the selection of another clock source is recommended. 4: The ADC clock period (TAD) and total
in „Auflösung PWM-Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
s1,4) Legend: Shaded cells are outside of recommended range. Note 1: The FRC source has a typicalAD time of 1.6 s forDD. 2: These values violate the minimum requiredAD time. 3: For faster conversion times, the selection of another clock source is recommended. 4: The ADC clock period (TAD) and total
in „8Bits und 2Bits in eine Integer-Variable“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
s1,4) Legend: Shaded cells are outside of recommended range. Note 1: The FRC source has a typicalAD time of 1.6 s forDD. 2: These values violate the minimum requiredAD time. 3: For faster conversion times, the selection of another clock source is recommended. 4: The ADC clock period (TAD) and total
in „Timer2 auf 10bit einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC12FLF1822PIC16FLF1823.pdf
s1,4) Legend: Shaded cells are outside of recommended range. Note 1: The FRC source has a typicalAD time of 1.6 s forDD. 2: These values violate the minimum requiredAD time. 3: For faster conversion times, the selection of another clock source is recommended. 4: The ADC clock period (TAD) and total
in „PIC16lf1823 General purpose I/Os mit Schmitt Trigger ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UC1698u_Revision__1.5.pdf
fulDDVON-OFF-ON cycle. e • Under 16-bit bus mode and CD=0, D[15:8] is ignored and only D[7:0] is used. Ad a result, the bus cycles for commands under 16-bit bus and 8-bit bus are the same, and double-byte commands stillineed two bus cycles under 16-bit bus mode. Example: f 8-bit bus mode: n Set PL[1:0] =
in „Defekte Heizungsregelung RC310 Display leuchtet“ · Haus & Smart Home ·
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PDF
Ansteuer-IS_UC1698__Vers._1.21_fuer_DEM_240160AFGH-PW___240x160.pdf
9KÅ FOR MTP P ROCESS CROSS -SECTION 68 MP Specifications UC1698u 160x128RGB CSTN Controller-Driver P AD C OORDINATES # Pad X Y W H # Pad X Y W H 1 DUMMY -6579.8 792.5 115 21.5 56 COM142 -6370.5 -748.1 17.5 115 2 COM36 -6579.8 759.5 115 17.5 57 COM144 -6339.5 -748.1 17.5 115 3 COM38 -6579.8 728.5 115 17.5
in „LCD DEM240160 mit UC1698 wie Bildspeicher auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HX8352-A.pdf
5399 393 525 G346 8255 271 585 G226 7295 271 645 G106 6335 271 705 S717 5385 271 526 G344 8239 393 586 G224 7279 393 646 G104 6319 393 706 S716 5371 393 527 G342 8223 271 587 G222 7263 271 647 G102 6303 271 707 S715 5357 271 528 G340 8207 393 588 G220 7247 393 648 G100 6287 393 708 S714 5343 393 529
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harman_kardon_avr145_sm.pdf
J 1 R584 CRD20TJ561T RES , CARBON 560 OHM 1/5W J 1 R585 CRD20TJ561T RES , CARBON 560 OHM 1/5W J 1 R586 CRD20TJ561T RES , CARBON 560 OHM 1/5W J 1 R587 CRD20TJ561T RES , CARBON 560 OHM 1/5W J 1 R588 CRD20TJ561T RES , CARBON 560 OHM 1/5W J 1 R589 CRD20TJ561T RES , CARBON 560 OHM 1/5W J 1 R590 CRD20TJ561T
in „Relais beim AVR 145 von harman/kardon durch SSR ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
devlist.txt
------------------------------------------------------------------- 1220AB . . . . .1) 5718 D1 1220AD . . . . .1) 5719 D1 1220Y . . . . . .1) 5720 D1 1225AB . . . . .1) 5721 D1 1225AD . . . . .1) 5722 D1 1225D . . . . . .1) 5723 D1 1225E . . . . . .1) 5724 D1 1225Y . . . . . .1) 5725 D1 1230AB . . .
in „PROM lesen /schreiben / Programmiergerät“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC16F1939.pdf
2017 Microchip Technology Inc. DS40001574D-page 145 PIC16(L)F1938/9 TABLE 15-1: ADC CLOCK PERIOD (T AD ) V S. DEVICE OPERATING FREQUENCIES ADC Clock Period (T AD) Device Frequency (F OSC) Device Frequency (F OSC) ADC Clock Source ADCS<2:0> 32 MHz 20 MHz 16 MHz 8 MHz 4 MHz 1 MHz Fosc/2 000 62.5ns(2) 100
in „MPLAB delay und xtalfreq richtig benutzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bestandsliste.pdf
142Stk 3,66 € 519,37 € 396 BB1F Diode 30Stk 0,22 € 6,53 € 397 SF64G Diode 6A 200V Superschnell DO201AD 3Stk 0,27 € 0,82 € 398 70HF80 Diode 70A 800V An.am Gew.1/4"28UNF 9Stk 4,18 € 37,64 € 399 AA138 Diode Ge TV Demodulator 15V 20mA 23Stk 0,13 € 2,88 € 400 AA118 Diode Ge Uni 115V 50mA 16Stk 0,16 € 2,56
in „Auflösung Elektronik Shop“ · Markt ·
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Panasonic_AG-7350-7150_Service_Manual.pdf
67 66 65 64 100J..l l P66 P67 VSS P70 P ? P72 P73 P74 P75 P76 P77 VDD AVOO VREFP80/AP80/A010/AP80/AD30/AP80/AD50/AD6 A10K ~ - G MRN1403 -'--J.,fV\---_._--+ 1 - 2 6 1 A 1 )--' QR1NV.) · r P87 IAD? 6 3 r 47K A 2 )--' 2 P64 VA EF 6 2 ' ) - - - - - - - r - - - - , A 4 )--' ,J;6V47 H A 3 1 H - - - - - {
in „Totalausfall Panasonic AG-7350 (nur noch Hintergrundbeleuchtung der Zeigerinstrumente)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
openocd_log.txt
at91sam4.c:1454 efc_get_status(): Status: 0x00000000 (lockerror: 0, cmderror: 0, ready: 0) Debug: 586 2737 target.c:2600 target_read_u32(): address: 0x400e0a08, value: 0x00000000 Debug: 587 2737 at91sam4.c:1454 efc_get_status(): Status: 0x00000000 (lockerror: 0, cmderror: 0, ready: 0) Debug: 588 2753
in „OpenOCD sehr langsam beim flashen“ · Mikrocontroller und Digitale Elektronik ·
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DM00135183.pdf
timing diagram, internal clock divided by 2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 586 Figure 209. Counter timing diagram, internal clock divided by 4 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 586 Figure 210. Counter timing diagram, internal clock divided by N. . . . . . . . . . . . . . . . . . . . . . . . . . . . . 586 Figure 211. Counter timing diagram, update event when ARPE=0 (TIMx_ARR not preloaded) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 587 Figure 212. Counter
in „STM32F446 FMP I2C kein Open Drain möglich?!“ · Mikrocontroller und Digitale Elektronik ·