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295012fd-2954584.pdf
2.4V OSCILLATOR KILL 100k PB LOGIC 10µS FILTER DEBOUNCE 0.6V 0.8V INT OSCILLATOR GND ONT OFFT 2950 BD Timing Diagrams tKILL(PW) KILL tKILL(PD) EN/EN 2950 TD01 295012fd 7 LTC2950-1/LTC2950-2 TIMING DiagramS PB PB & KILL IGNORED DB, ON tONT tKILL, ON BLANK 16 CYCLES EN (LTC2950-1) EN (LTC2950-2) 2950 TD02
in „[V] 3St. Push Button On/Off Controller LTC2950 (7€)“ · Markt ·
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PDF
LTC3490.pdf
1 NiMH OR + LTC3490 ALKALINE 4.7µF CELL CTRL/SHDN LED CELLS LOBAT 0.6Ω 1M LUMILEDS GND LUXEON LXHL-BD03 3490 TA06 Luxeon Red LED Driver with Dimming 3.3µH ON/OFF VIN SW CAP 1 NiMH OR LTC3490 ALKALINE + CELL 1M CTRL/SHDN LED 4.7µF CELLS LOBAT MBRM120E GND LUMILEDS LUXEON LXHL-BD03 3490 TA07 Efficiency
in „Step Up Wandler 1.5V -> 3.2 V“ · Mikrocontroller und Digitale Elektronik ·
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LT1019.pdf
VIN R3 TRIM 80k – HEATER R2 1.188V VOUT LT1019-LT1019-10 = 5k + LT1019-2.5 = 10k 400 GND LT1019 • BD U U W U APPLICATIO S I FOR ATIO Line and Load Regulation Two separate thermal effects are evident in monolithic circuits.Oneisagradienteffect,wherepowerdissipation Line regulation on the LT1019 is nearly
in „Referenz Chip LT1019 / Heizung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTC5507f.pdf
SOURCE RIN6 SHDN 30k C2 30k 100Ω VCC 5 + PCAP RF DET – 60µA 60µA 150k BIAS GND 2 1 C1 = C2 SHDN 5507 BD C2 (µF) 1 , f = LOWEST RF INPUT FREQUENCY (MHz) 30f Figure 2. 5507f 4 LTC5507 U U W U APPLICATIO S I FOR ATIO Operation Applications The LTC5507 integrates several functions to provide RF TheLTC5507canbeusedasaself-standingsignalstrength
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Datei
lcdtext_I2C_an_480x200.asm
0x00,0xCC,0x00,0x00,0xCD,0x00,0x00,0x0E,0x06,0x00,0x00,0x00,0x81,0x00,0x00,0x03,0x00,0x03,0x00,0x66,0xBD,0x36,0x03,0x00,0x66,0x00,0x00,0x07,0xC0,0xC0,0x00,0x00 ; 0xFF .db 0x00,0x18,0xFF,0xEE,0xC7,0xC3,0xE7,0x00,0x00,0x00,0x00,0xA3,0x66,0x00,0xF7,0xBD,0x0E,0xE0,0xE7,0x66,0xBD,0x03,0x00,0xE7,0xE7,0x81,0x81,0x03,0x00,0x42,0x01,0xEF
in „Pollin Display Optrex F-51154NF-FW-AA“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd_text_twi.asm
0x00,0xCC,0x00,0x00,0xCD,0x00,0x00,0x0E,0x06,0x00,0x00,0x00,0x81,0x00,0x00,0x03,0x00,0x03,0x00,0x66,0xBD,0x36,0x03,0x00,0x66,0x00,0x00,0x07,0xC0,0xC0,0x00,0x00 ; 0xFF .db 0x00,0x18,0xFF,0xEE,0xC7,0xC3,0xE7,0x00,0x00,0x00,0x00,0xA3,0x66,0x00,0xF7,0xBD,0x0E,0xE0,0xE7,0x66,0xBD,0x03,0x00,0xE7,0xE7,0x81,0x81,0x03,0x00,0x42,0x01,0xEF
in „Einfacher Low Cost LCD Controller für 320x240 LCD im Textmodus“ · Projekte & Code ·
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Datei
AssemblerCodeManson_HCS_3000.txt
; Store Register to I/O Location BD78: BC-BC out 0x2c, r11 ; Store Register to I/O Location BD7A: BD-BD out 0x2d, r27 ; Store Register to I/O Location BD7C: BE-BE out 0x3e, r11 ; Store Register to I/O Location BD7E: BF-BF out 0x3f, r27 ; Store Register to I/O Location BD80: C0-C0 rjmp .+384 ; Relative Jump BD82: C1-C1 rjmp .+898 ; Relative Jump BD84: C2-C2 rjmp .+1412 ; Relative Jump BD86: C3-C3 rjmp .+1926 ; Relative Jump BD88: C4-C4 rjmp .+2440 ; Relative Jump BD8A
in „Manson HCS-3602 HCS-3600 Reparatur“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
nm-ohne-f_mount.txt
0000000c T USBD_FS_USR_BOSDescriptor 08001b94 t $d 08001b98 t $t 08001b99 00000036 t IntToUnicode 08001bd0 t $t 08001bd1 00000034 t Get_SerialNum 08001bfc t $d 08001c04 t $t 08001c05 00000014 T USBD_FS_SerialStrDescriptor 08001c14 t $d 08001c18 t $t 08001c19 00000024 T USBD_FS_ProductStrDescriptor 08001c34
in „stm32 FatFS stranges Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
disassebled_original_working.asm
0f 93 push r16 bc8: 1f 93 push r17 bca: cf 93 push r28 bcc: df 93 push r29 bce: ec 01 movw r28, r24 bd0: 6a 01 movw r12, r20 bd2: 7b 01 movw r14, r22 bd4: a2 2e mov r10, r18 bd6: 8d 89 ldd r24, Y+21 ; 0x15 bd8: 88 23 and r24, r24 bda: 39 f0 breq .+14 ; 0xbea <_ZN9UartClass5beginEmj+0x30> bdc: e8 81 ld
in „Bizarrer Firmware crash - ATmega4808. Wie Debuggen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
journalctl.txt
31 15:34:29 T400 kernel: BIOS-e820: [mem 0x00000000bd7b7000-0x00000000bd80efff] reserved Mär 31 15:34:29 T400 kernel: BIOS-e820: [mem 0x00000000bd80f000-0x00000000bd8c6fff] usable Mär 31 15:34:29 T400 kernel: BIOS-e820: [mem 0x00000000bd8c7000-0x00000000bd8d1fff] ACPI NVS Mär 31 15:34:29 T400 kernel: BIOS-e820: [mem 0x00000000bd8d2000-0x00000000bd8d4fff] ACPI data Mär 31 15:34:29 T400 kernel: BIOS-e820: [mem 0x00000000bd8d5000-0x00000000bd8d8fff] reserved Mär 31 15:34:29 T400 kernel: BIOS-e820: [mem 0x00000000bd8d9000-0x00000000bd8dcfff
in „ArchLinux mountet Bootpartition nicht“ · PC Hard- und Software ·
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Datei
TEST.LST
28: e3 c0 rjmp .+454 ; 0x1f0 <main+0x76> 2a: df c0 rjmp .+446 ; 0x1ea <main+0x70> 2c: d9 c0 rjmp .+434 ; 0x1e0 <main+0x66> 2e: ea c0 rjmp .+468 ; 0x204 <main+0x8a> 30: f4 c0 rjmp .+488 ; 0x21a <main+0xa0> 32: e8 c0 rjmp .+464 ; 0x204 <main+0x8a> 00000034 <__init>: 34: 11 24 eor r1, r1 36: 1f be out 0x3f
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PDF
lt1157.pdf
GATE REGULATOR OSCILLATOR INPUT LOGIC-TO-CMOS VOLTAGE DISCHARGE CONVERTER REGULATOR LOGIC LTC1157 • BD GND 4 LTC1157 U U W U APPLICATIO S I FOR ATIO MOSFET Selection Obviously, this is too much current for the regulator (or The LTC1157 is designed to operate with both standard outputcapacitor)tosupplyandtheoutputwillglitchbyas
in „3V Gate-Treiber gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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ag172d.pdf
engine 17" LCD Color Monitor Hanns.G AG172D CN405 1 R491 PC5V DB15 10K 1/16W FB410 0 1/16W 11 1 RED+ R434 56 1/16W C432 0.047uF 6 RED- RIN 4 12 2 GREEN+ FB411 0 1/16W R435 56 1/16W C433 0.047uF 7 GREEN- GIN 4 13 3 BLUE+ FB412 0 1/16W R436 56 1/16W C434 0.047uF BIN 4 8 BLUE- 14 4 6 0 6 R437 470 1/16W C435
in „Geplatzte 25V-Elkos im 12V-Netzteil gegen 16V Low ESR austauschen?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Castillo112.c
0xA987, 0x5AB8, 0x493E, 0x4BA6, 0x5EA5, 0x690F, 0x76EE, 0x18DF, 0x0B05, 0xF150, 0xE234, 0xB8DE, 0x2BD2, 0xC46F, 0xA7BD, 0xEFD3, 0xBD07, 0x8F1E, 0x56A4, 0xDDBC, 0x5EB6, 0x5E11, 0x32B9, 0x530F, 0x55D6, 0xC42A, 0x547F, 0x2041, 0x1562, 0xBD04, 0x9232, 0x46C7, 0x4F71, 0xE61F, 0xF581, 0x9E3D, 0x4C51, 0x8A3E
in „BMP/JPEG/GIF/PNG nach C-Code konvertieren“ · Projekte & Code ·
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PDF
RC17xxHP-RC232_Datasheet.pdf
444.700000 MHz for RF_CHANNEL = 89 444.250000 MHz for RF_CHANNEL = 90 433.950000 MHz for RF_CHANNEL = 91 434.000000 MHz for RF_CHANNEL = 92 434.050000 MHz for RF_CHANNEL = 93 RC1760HP-RC232 458.512500 + (n-1)*0.0125 MHz RC1760-RC232* n = RF_CHANNEL for n=1 to 39 457.4875 + (n-39)*0.0125 MHz n = RF_CHANNEL
in „[V] RADIOCRAFTS RC1701HP-RC232 169MHz Development Kit“ · Markt ·
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PDF
lt1153.pdf
PUMP LOGIC GND TIMER AUTO-RESET FAULT DETECTION CAP TIMER AND STATUS STATUS OUTPUT DRIVER LTC1153 • BD01 6 LTC1153 W U W TEST CIRCUITS TI I G DIAGRA 5V OVER-CURRENT NOR- SHUT- OFF NORMAL (AUTO-CURRENT) MAL DOWN OFF INPUT 1 IN VS 8 RSEN 51k CP 0.05 INPUT 2 7 0.01 F *200 s 0.1 F CT DS R 100k Z5U LTC1153
in „TPS61175 Overccurent Protection Mode“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ohne_kontrollausgabe.asm
defined(WGM01) sbi(TCCR0A, WGM01); 4ba: 84 b5 in r24, 0x24 ; 36 4bc: 82 60 ori r24, 0x02 ; 2 4be: 84 bd out 0x24, r24 ; 36 sbi(TCCR0A, WGM00); 4c0: 84 b5 in r24, 0x24 ; 36 4c2: 81 60 ori r24, 0x01 ; 1 4c4: 84 bd out 0x24, r24 ; 36 // this combination is for the standard atmega8 sbi(TCCR0, CS01); sbi(TCCR0
in „AVR Inline Optimierung kaputt?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
disassebled_minimal_change_crash.asm
0f 93 push r16 bc8: 1f 93 push r17 bca: cf 93 push r28 bcc: df 93 push r29 bce: ec 01 movw r28, r24 bd0: 6a 01 movw r12, r20 bd2: 7b 01 movw r14, r22 bd4: a2 2e mov r10, r18 bd6: 8d 89 ldd r24, Y+21 ; 0x15 bd8: 88 23 and r24, r24 bda: 39 f0 breq .+14 ; 0xbea <_ZN9UartClass5beginEmj+0x30> bdc: e8 81 ld
in „Bizarrer Firmware crash - ATmega4808. Wie Debuggen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PSpice_LibraryguideOrCAD.pdf
BD240 PWRBJT.OLB Power Bipolar Transistor BD240A BD240A PWRBJT.OLB Power Bipolar Transistor BD240B BD240B PWRBJT.OLB Power Bipolar Transistor BD240C BD240C PWRBJT.OLB Power Bipolar Transistor BD241 BD241
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.lst
driver.c:91: for (k=0;k<cnt;k++); 00B9 21 00 00 [10] 324 ld hl,#0x0000 00BC E3 [19] 325 ex (sp), hl 00BD 326 00103$: 00BD 21 04 00 [10] 327 ld hl,#4 00C0 39 [11] 328 add hl,sp 00C1 FD 21 00 00 [14] 329 ld iy,#0 00C5 FD 39 [15] 330 add iy,sp 00C7 FD 7E 00 [19] 331 ld a,0 (iy) 00CA 96 [ 7] 332 sub a, (hl)
in „Mehrdimensionale char-arrays“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN758.pdf
layout. If the amount of feedback is 5 dB, 8 dB for VCS2 = 1.5 V. Since the voltage across ac and bd =CE , will have to be absorbed by the input network at 2 MHz. a turns ratio of 32:1 would be required. It appears that if the Omitting the reactive components, L1, L2, C1, and the feedback voltage on
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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PDF
_Motorola_AN758.pdf
layout. If the amount of feedback is 5 dB, 8 dB for VCS2 = 1.5 V. Since the voltage across ac and bd =CE , will have to be absorbed by the input network at 2 MHz. a turns ratio of 32:1 would be required. It appears that if the Omitting the reactive components, L1, L2, C1, and the feedback voltage on
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Datei
nano_os_OPTs.txt
r24, 0xF1 ; 241 378: 83 bf out 0x33, r24 ; 51 TCNT0 = 0xf0; 37a: 80 ef ldi r24, 0xF0 ; 240 37c: 86 bd out 0x26, r24 ; 38 TIMER_REG = _BV(CS00); 37e: 81 e0 ldi r24, 0x01 ; 1 380: 85 bd out 0x25, r24 ; 37 TIMER_ENABLE |= _BV(TOIE0); 382: ee e6 ldi r30, 0x6E ; 110 384: f0 e0 ldi r31, 0x00 ; 0 386: 80 81
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LT1083_LT1084_LT1085_LT.pdf
ADJ G26 1083/4/5 ADJ G27 6 LT1083/LT1084/LT1085 W BLOCK DIAGRAM VIN + – TLIMITL V OUT 1083/4/5 ADJ BD ADJ U U W U APPLICATIONS INFORMATION TheLT1083familyofthree-terminaladjustableregulators theoutputwillensurestability.Normally,capacitorsmuch is easy to use and has all the protection features that are
in „Aus 12V 5V machen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1085.pdf
ADJ G26 1083/4/5 ADJ G27 6 LT1083/LT1084/LT1085 W BLOCK DIAGRAM VIN + – TLIMITL V OUT 1083/4/5 ADJ BD ADJ U U W U APPLICATIONS INFORMATION TheLT1083familyofthree-terminaladjustableregulators theoutputwillensurestability.Normally,capacitorsmuch is easy to use and has all the protection features that are
in „LT1085 parallel“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
hufftabs_3_Ebenen.c
0x03CC, 0x03CC, 0x04AD, 0x04DA, 0x047E, 0x04AC, 0x03CA, 0x03CA, 0x04C9, 0x047D, 0x035E, 0x035E, 0x02BD, 0x02BD, 0x02BD, 0x02BD, // Sub-Tabelle größe 1 mit vorherigen Code 00001000 und 0 Sub-Tabellen 0x012F, 0x010F, // Sub-Tabelle größe 6 mit vorherigen Code 00001011 und 0 Sub-Tabellen 0x059E, 0x059E,
in „Helix MP3 Dekoder mit kleineren Huffman-Tabellen“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
mit_kontrollausgabe.asm
defined(WGM01) sbi(TCCR0A, WGM01); 526: 84 b5 in r24, 0x24 ; 36 528: 82 60 ori r24, 0x02 ; 2 52a: 84 bd out 0x24, r24 ; 36 sbi(TCCR0A, WGM00); 52c: 84 b5 in r24, 0x24 ; 36 52e: 81 60 ori r24, 0x01 ; 1 530: 84 bd out 0x24, r24 ; 36 // this combination is for the standard atmega8 sbi(TCCR0, CS01); sbi(TCCR0
in „AVR Inline Optimierung kaputt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IR-Protokolle_Diplomarbeit.pdf
0x000000000000C89D 5 0x000000000000287D 6 0x000000000000A8FD 7 0x000000000000683D 8 0x000000000000E8BD 9 0x000000000000184D 10 0x000000000000A1F4 groesser10 0x0000000000002174 0 0x00000000000098CD program 0x0000000000005104 clear 0x0000000000000154 recall 0x00000000000081D4 time_mode 0x000000000000AAFF
in „Lernfunktion für IR Signale.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nano_os_2_OPTs.txt
r24, 0xF1 ; 241 32e: 83 bf out 0x33, r24 ; 51 TCNT0 = 0xf0; 330: 80 ef ldi r24, 0xF0 ; 240 332: 86 bd out 0x26, r24 ; 38 TIMER_REG = _BV(CS00); 334: 81 e0 ldi r24, 0x01 ; 1 336: 85 bd out 0x25, r24 ; 37 TIMER_ENABLE |= _BV(TOIE0); 338: ee e6 ldi r30, 0x6E ; 110 33a: f0 e0 ldi r31, 0x00 ; 0 33c: 80 81
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PDF
Schaltplan_33.pdf
C331 1 LM324MX 100K 100K 100K 100K 1u 4.7K R544 C 220K1% 4 K 8 1 ( 5p 1 3 C 1u 3 5 R545 R 2 R428 R434 K 6 + 4 H 0.001 1 8 p 18nH(LQN21A) C315 270nH(LLQ1608) 1 Q505A 7 Q505B 180K 6.8K 2 220K1% 7 100K 0 L 8 4 3 0 5 K 6 5 10p 8 2 2 2 6 7 0 B 2 9 C 2 1 5 1 4 5 R 1 3 4 0 Q 0 p 5 - 4 5 8 3 p 5 7 5 K 5 7 8
in „Pegelwandler RX TX?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.ino.asm
defined(WGM01) sbi(TCCR0A, WGM01); 40e: 84 b5 in r24, 0x24 ; 36 410: 82 60 ori r24, 0x02 ; 2 412: 84 bd out 0x24, r24 ; 36 sbi(TCCR0A, WGM00); 414: 84 b5 in r24, 0x24 ; 36 416: 81 60 ori r24, 0x01 ; 1 418: 84 bd out 0x24, r24 ; 36 // this combination is for the standard atmega8 sbi(TCCR0, CS01); sbi(TCCR0
in „Atmega328 1-Wire mit Timer CTC/PWM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dcc_lok.lst
: ; Setup watchdog 260/ 68 : E00F LDI R16,(1 << WDE)|(1 << WDP2)|(1 << WDP1)|(1 << WDP0) 261/ 69 : BD01 OUT WDTCR,R16 ; configure watchdog 262/ 6A : 263/ 6A : ; Setup external interrupt 264/ 6A : E003 LDI R16, (1 << ISC01)|(1 << ISC00) 265/ 6B : BF05 OUT MCUCR,R16 ; set INT0 to rising edge triggered
in „DCC Singal auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
disasm.asm
l00000bca: DAC9 bge.n l00000b60 l00000bcc: A803 add r0, sp, #12 l00000bce: 19C0 adds r0, r0, r7 l00000bd0: 9001 str r0, [sp, #4] l00000bd2: 6800 ldr r0, [r0, #0] l00000bd4: 21FA movs r1, #250 l00000bd6: 01C9 lsls r1, r1, #7 l00000bd8: 4288 cmp r0, r1 l00000bda: DB02 blt.n l00000be2 l00000bdc: 9801 ldr r0
in „Flash im Cortex-M0 durch Codeinjektion ins SRAM auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT.pdf
LT1076 0.1 *AVAILABLE ON PACKAGES WITH PIN COUNTS GREATER THAN 5. 100 SWITCH OUTPUT (V ) SW LT1074 • BD01 4 LT1074/LT1076 W U B O K DIAGRA D ESCRIPTIO A switch cycle in the LT1074 is initiated by the oscillatortages by feeding the FB signal into the oscillator and setting the R/S latch. The pulse that
in „Prinzipielle Fragen zum Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1074.pdf
LT1076 0.1 *AVAILABLE ON PACKAGES WITH PIN COUNTS GREATER THAN 5. 100 SWITCH OUTPUT (V ) SW LT1074 • BD01 4 LT1074/LT1076 W U B O K DIAGRA D ESCRIPTIO A switch cycle in the LT1074 is initiated by the oscillatortages by feeding the FB signal into the oscillator and setting the R/S latch. The pulse that
in „LT1074HV wozu Pin VC Datenblatt strange“ · Mikrocontroller und Digitale Elektronik ·
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Datei
boot.asm
x) tsb X0008 X69A3: inc XFBFD,x ; db $F7 L69A7: db $AD ; sta (X0000) and #$03 tax lda X0116 bpl L69BD lda X74EC,x and X012F beq L69BD jmp L6A5B ; L69BD: ldy #$04 ldx X011E L69C2: txa inc a and #$03 tax lda X74EC,x and X0095 bne L69D7 lda X74E8,x and X009B beq L6A02 L69D7: dey bne L69C2 ldy #$04 ldx X011E
in „Mini-Farbdisplay (+mehr) für 1 Euro“ · Mikrocontroller und Digitale Elektronik ·
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Datei
boot.asm
x) tsb X0008 X69A3: inc XFBFD,x ; db $F7 L69A7: db $AD ; sta (X0000) and #$03 tax lda X0116 bpl L69BD lda X74EC,x and X012F beq L69BD jmp L6A5B ; L69BD: ldy #$04 ldx X011E L69C2: txa inc a and #$03 tax lda X74EC,x and X0095 bne L69D7 lda X74E8,x and X009B beq L6A02 L69D7: dey bne L69C2 ldy #$04 ldx X011E
in „Mini-Farbdisplay (+mehr) für 1 Euro“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16151fas.pdf
Q2 400ns Q3 R2 X10 ONE-SHOT (EXTERNAL) R3 DRIVER 30k RESET + R4 0.12Ω 140k A2 – 42mV* 2 GND 1615/-1 BD * 12mV FOR LT1615-1 Figure 1. LT1615 Block Diagram U OPERATIO The LT1615 uses a constant off-time control scheme to currentrampsbackupto350mA,thenA2resetstheone- provide high efficiencies over a wide
in „LT1615, Spannungsspitze beim Einschalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16151fas.pdf
Q2 400ns Q3 R2 X10 ONE-SHOT (EXTERNAL) R3 DRIVER 30k RESET + R4 0.12Ω 140k A2 – 42mV* 2 GND 1615/-1 BD * 12mV FOR LT1615-1 Figure 1. LT1615 Block Diagram U OPERATIO The LT1615 uses a constant off-time control scheme to currentrampsbackupto350mA,thenA2resetstheone- provide high efficiencies over a wide
in „[V] 8St. DC/DC Micropower Step-Up DC/DC Converters LT1615-1 (12€)“ · Markt ·
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PDF
LTC1477_LinearTechnology.pdf
EN TTL-TO-CMOS OSCILLATOR CHARGE CAND THERMALT CONVERTER AND BIAS PUMP SHUTDOWN VOUT LTC1477/1478 • BD01 U U W U APPLICATIONS INFORMATION Tailoring ILIMITand R DS(ON) for Load Requirements Table 1. Effects of Disconnecting V IN2 and VIN3 TheLTC1477isdesignedtocurrentlimitatapproximately ALL VININS VIN3
in „TPS61175 Overccurent Protection Mode“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
DC_3840EEprom_cut.lst
#00h ; 0d 0BC9 C2 05 clr 20h.5 0BCB 75 25 01 mov 25h, #01h ; 1d 0BCE 75 26 00 mov 26h, #00h ; 0d 0BD1 12 0F 70 lcall 0F70h 0BD4 30 05 05 jnb 20h.5, 0BDCh 0BD7 12 0E 00 lcall 0E00h 0BDA 61 C9 ajmp BC9h 0BDC 20 00 D6 jb 20h.0, 0BB5h 0BDF 61 D4 ajmp BD4h 0BE1 75 42 00 mov 42h, #00h ; 0d 0BE4 12 04 47 lcall
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Datei
version_1p3_assembler.lst
OVERFLOW REGISTER 6958: 1BCE D7 XCHD A,@R1 ;GET DIGIT 8 6959: 1BCF C4 SWAP A ;FLIP FOR LOAD 6960: 1BD0 FC MOV R4,A 6961: ; 6962: 1BD1 E7 RIGHTL: MOV A,@R1 ;GET THE LOW ORDER BYTE 6963: 1BD2 D6 XCHD A,@R0 ;SWAP NIBBLES 6964: 1BD3 C4 SWAP A ;FLIP FOR STORE 6965: 1BD4 F7 MOV @R1,A ;SAVE THE DIGITS 6966: 1BD5 18 DEC R0 ;BUMP THE POINTERS 6967: 1BD6 19 DEC R1 6968: 1BD7 B9 2A F7 CJNE R1,#FP_DIG12-1,RIGHTL ;LOOP 6969: ; 6970: 1BDA E7 MOV A,@R1 ;ACC = CH8 6971: 1BDB C4 SWAP A ;ACC = 8CH 6972: 1BDC 54 0F ANL
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
out.txt
0x8003bc8 ; _ZN16mb_callback_hold10call_writeEtt + 332 0x08003bd0: 4a13 .J LDR r2,[pc,#76] ; [0x8003c20] = 0x40022000 0x08003bd2: 4917 .I LDR r1,[pc,#92] ; [0x8003c30] = 0xfffffdf7 0x08003bd4: 6853 Sh LDR r3,[r2,#4] 0x08003bd6: 400b .@ ANDS r3,r3,r1 0x08003bd8: 6053
in „ARM Bootloader mit ELF, Einstieg nicht bei 0x08000000“ · Mikrocontroller und Digitale Elektronik ·
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Datei
font.h
0x00, 0xF8, 0x00, 0xF8, 0x00, 0x00, 0x00, 0x00, 0x00, /* character 0x003E ('>'): (width=6, offset=434) */ 0x00, 0x00, 0x00, 0x00, 0x00, 0x80, 0x70, 0x08, 0x70, 0x80, 0x00, 0x00, 0x00, 0x00, /* character 0x003F ('?'): (width=6, offset=448) */ 0x00, 0x00, 0x00, 0x70, 0x88, 0x08, 0x10, 0x20, 0x20, 0x00
in „Frage zur Optimierung Display Text mit Font“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nano_os_OPT3.txt
item_size != 1) bc8: 80 91 37 01 lds r24, 0x0137 bcc: 90 e0 ldi r25, 0x00 ; 0 bce: 30 e0 ldi r19, 0x00 ; 0 bd0: 28 17 cp r18, r24 bd2: 39 07 cpc r19, r25 bd4: 24 f4 brge .+8 ; 0xbde <button_press_12+0x34> bd6: 80 91 36 01 lds r24, 0x0136 bda: 81 30 cpi r24, 0x01 ; 1 bdc: 39 f1 breq .+78 ; 0xc2c <button_press
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Datei
sc_math.lib.dis.txt
510 <__aeabi_ui2f+0x3a>) 42e: 6018 str r0, [r3, #0] 430: 4618 mov r0, r3 432: 60c2 str r2, [r0, #12] 434: 6101 str r1, [r0, #16] 436: bf00 nop 438: 4835 ldr r0, [pc, #212] ; (510 <__aeabi_ui2f+0x3a>) 43a: 6840 ldr r0, [r0, #4] 43c: f000 0001 and.w r0, r0, #1 440: 2800 cmp r0, #0 442: d0f9 beq.n 438 <__
in „Neue MCU APM32F103“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC1257.pdf
12-BIT SHIFT REGISTER D OUT D IN 12 LOAD 12-BIT LATCH GND 12 REF 2.048V REFERENCE DAC + VOUT – 1257 BD W U W TI I G DIAGRA t1 2 6 t7 CLK 4 3 B11 B10 B1 B0 DIN MSB LSB t 5 LOAD t8 D OUT B11 B10 B1 B0 B11 (PREVIOUS WORD) CURRENT WORD 1257 TD 7 LTC1257 U OPERATIO Serial Interface Reference The data on the
in „Elektrometer - Rückkopplung dimensionieren?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN0003_Binary_Messages_SkyTraq_Venus6.pdf
1866 6 Oahu 150 Oman -346 -1 224 Clarke 1880 7 Oman Ordnance Survey Great 151 Britain 1936 371 -112 434 Airy 1830 1 England Ordnance Survey Great England; Isle of Man; 152 371 -111 434 Airy 1830 1 Britain 1936 Wales Ordnance Survey Great MEAN FOR England; Isle 153 375 -111 431 Airy 1830 1 of Man; Scotland
in „[V] Mini GPS Module - SkyTraq Venus 6 (22x22x8mm)“ · Markt ·
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PDF
ltc485.pdf
Driver Enable and Disable Times VOH R 1.5V 1.5V VOL OUTPUT t f = 1MHzr t10ns, f 10ns t V PHL PLH A, BD2 0V INPUT LTC485 • F07 –VOD2 Figure 7. Receiver Propagation Delays 3V RE 1.5V f = 1MHz,rt10ns, f 10ns 1.5V 0V t t 5V ZL LZ R 1.5V OUTPUT NORMALLY LOW 0.5V OUTPUT NORMALLY HIGH 0.5V R 1.5V 0V tZH tHZ
in „IR mit langer Leitung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
0001-spice-up-for-customized-edition.patch
From 1f1af62b3dd1f6642f908c4afc658504b3d30bd2 Mon Sep 17 00:00:00 2001 From: Stephan Baerwolf <stephan.baerwolf@tu-ilmenau.de> Date: Mon, 16 Sep 2013 16:56:51 +0200 Subject: [PATCH] spice up for customized edition http://www.mikrocontroller.net
in „ATMEGA32 Minimum System Board“ · Mikrocontroller und Digitale Elektronik ·