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PDF
datasheet.pdf
Capacitors. Note 3) Stabilization and charge sharing Capacitors. Note 4) Charge sharing Capacitors LD-20302A -5 External recommended condenser LD-20302A -6 5. Absolute Maximum Ratings Item Symbol Conditions Rated value Unit Remarks Input voltage VI Ta = 25 C -0.3 ~ V +0.3 Note 1 DDIO V Logic I/O power
in „Outdoor Displayauswahl“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.asm
@0) LD R0,Z+ LD R1,Z+ LD R22,Z+ LD R23,Z MOV R30,R0 MOV R31,R1 .ENDM .MACRO __GETB2SX MOV R26,R28 MOV R27,R29 SUBI R26,LOW(-@0) SBCI R27,HIGH(-@0) LD R26,X .ENDM .MACRO __GETW2SX MOV R26,R28 MOV R27,R29 SUBI R26,LOW(-@0) SBCI R27,HIGH(-@0) LD R0,X+ LD R27,X MOV R26,R0 .ENDM .MACRO __GETD2SX MOV R26,R28 MOV R27,R29 SUBI R26,LOW(-@0) SBCI R27,HIGH(-@0) LD R0,X+ LD R1,X+ LD R24,X+ LD R25,X MOV R26,R0 MOV R27,R1 .ENDM .MACRO __GETBRSX MOV R30
in „Probleme mit CodeVisionAVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
adl-66505tl.pdf
Components (UK) Ltd. Laser Components Nordic AB Laser Components USA, Inc. Tel: +49 8142 2864 – 0 Tel: +33 1 39 59 52 25 Tel: +44 1245 491 499 Tel: +46 31 703 71 73 Tel: +1 603 821 – 7040 Fax: +49 8142 2864 – 11 Fax: +33 1 39 59 53 50 Fax: +44 1245 491 801 Fax: +46 31 703 71 01 Fax: +1 603 821 – 7041 info
in „Laser-Diode in Kühlkörper einlöten (oder wird's ihr zu heiß?)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ln_423_425_3005XIII_schaltplan.pdf
2000u 2 2 470u 104 6.8k KBJ2D 1000u 104 16k R29 Q1 R30 Q2 R31 Q3 + 35 21 VE2 L 1 V GND V 3 1 V GND V 3 LD3 6 ADJ OU T -5V +5V C6 224 INT E2 L IN OUT IN OUT 27k C945 27k C945 LD2 5 ADJ OU T- 34 22 VD3 +12V +8V +5V LD1 4 ARCOUT 3 -V V- D3 C2 IC3 IC3 3 ARCOUT 2 L 4 7808 7805 2 ARCOUT 1 N G C A G B P A E F B
in „Labornetzgerät LN-423/425, 3005XIII, McPower 2x30V/5A - Verbesserungen u. Änderungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Grundig-DVDP-7000-Service-Manual.pdf
Battery_c Z3 170 GPA1 AVO3 91 AVO3 C243 22p Z3 171 GPA0 AVSS 90 24 C2POI C2POI 172 C2POI/SMS3 P4.4 89 R231 33 CDWSI CDWSI 173 CDWSI/SMS2 P4.5 88 LD_CONTROL 33 CDSDI CDSDI 174 CDSDI/SMS1 , P4.6 87 TV_ENABLE LD_CONTROL L205 1.8uH C CDCLKI CDCLKI 175 CDCLKI/SMS0 5 0 P4.7 86 TV_ENABLE 10 RF_SDEN RF_SDEN 176 D_REQI
in „800x480-Farbdisplay mit uC verwenden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mach84.pdf
-LD 8 - 6 4.7K 14 66 -LD 11 - 19 4.7K 14 25 -LD 9 - 7 4.7K 14 67 10K 14 10K 12 10K 14 26 10K 14 10K 12 10K 14 68 10K 14 10K 12 10K 14 27 10K 14 10K 12 10K 14 69 10K 14 10K 12 10K 14 28 10K 14 10K 12 10K
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Datei
output_as.txt
/../../../../arm-none-eabi/bin/ld.exe: c:\Workspace\VS2019\RpPicoThX-Test01\threadx\ports\cortex_m4\gnu\example_build/cortexm4_crt0.S:33: undefined reference to `__dtors_load_start__' c:/sysgcc/arm-eabi/bin/../lib/gcc/arm-none-eabi/12.3.1
in „ThreadX/Azure RTOS, Example baut nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
log.txt
Users\\User\\AppData\\Local\\Arduino15\\packages\\esp32\\tools\\esp32-arduino-libs\\idf-release_v5.1-33fbade6\\esp32/flags/ld_flags" "@C:\\Users\\User\\AppData\\Local\\Arduino15\\packages\\esp32\\tools\\esp32-arduino-libs\\idf-release_v5.1-33fbade6\\esp32/flags/ld_scripts" "-Wl,--Map=C:\\Windows\\Temp\
in „ESP32 LittleFS Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SCH.pdf
D8 LD9 69 LCD_Data_9 LCD_Data_4 25 B4 DB9 112 D9 LD10 68 LCD_Data_10 LCD_Data_5 26 B5 U3 DB10 111 D10 LD11 67 LCD_Data_11 LCD_Data_6 27 B6 SD_CS 1 CS DB11 107 D11 LD12 63 LCD_Data_12 LCD_Data_7 28 B7 SD_DIN
in „Open407I-C (Board für STM32) mit OV9655 (Kameramodul) auf 5"-Touchdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMEGA_128.pdf
None 1 MOVW Rd, Rr Copy Register Word Rd+1:Rd ← Rr+1:Rr None 1 LDI Rd, K Load Immediate Rd ← K None 1 LD Rd, X Load Indirect Rd ← (X) None 2 LD Rd, X+ Load Indirect and Post-Inc. Rd ← (X), X ← X + 1 None 2 LD Rd, - X Load Indirect and Pre-Dec. X ← X - 1, Rd ← (X) None 2 LD Rd, Y Load Indirect Rd ← (Y) None 2 LD Rd, Y+ Load Indirect and Post-Inc. Rd ← (Y), Y ← Y + 1 None 2 LD Rd, - Y Load Indirect and Pre-Dec. Y ← Y - 1, Rd ← (Y) None 2 LDD Rd,Y+q Load Indirect with Displacement Rd ← (Y + q) None 2 LD Rd, Z
in „ATMEGA128 Board im Neuhold Newsletter 2/2011“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICL_7106_-_07_-_FN3082.pdf
only 10 passive PART NO. RANGE ( C) PACKAGE PKG. NO. components and a display. ICL7106CPL 0 to 70 40 Ld PDIP E40.6 ICL7106RCPL 0 to 70 40 Ld PDIP (Note) E40.6 ICL7106CM44 0 to 70 44 Ld MQFP Q44.10x10 ICL7106SCPL 0 to 70 40 Ld PDIP E40.6 ICL7107SCPL 0 to 70 40 Ld PDIP E40.6 ICL7107CPL 0 to 70 40 Ld PDIP E40.6 ICL7107RCPL 0 to 70 40 Ld PDIP (Note) E40.6 ICL7107CM44 0 to 70 44 Ld MQFP Q44.10x10 NOTE: ÒRÓ indicates device with reversed leads for mounting to PC board underside. ÒSÓ indicates enhanced stability. CAUTION: These devices
in „Digitalmultimeter Modul mit 7107“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICL7106_7.pdf
only 10 passive PART NO. RANGE ( C) PACKAGE PKG. NO. components and a display. ICL7106CPL 0 to 70 40 Ld PDIP E40.6 ICL7106RCPL 0 to 70 40 Ld PDIP (Note) E40.6 ICL7106CM44 0 to 70 44 Ld MQFP Q44.10x10 ICL7106SCPL 0 to 70 40 Ld PDIP E40.6 ICL7107SCPL 0 to 70 40 Ld PDIP E40.6 ICL7107CPL 0 to 70 40 Ld PDIP E40.6 ICL7107RCPL 0 to 70 40 Ld PDIP (Note) E40.6 ICL7107CM44 0 to 70 44 Ld MQFP Q44.10x10 NOTE: ÒRÓ indicates device with reversed leads for mounting to PC board underside. ÒSÓ indicates enhanced stability. CAUTION: These devices
in „ICL7107 - Funktionsweise?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
pal3.asm
************************************************************************************** .macro spi9 ld ZL, Y+ ; 2 #N in ZL lpm tmp1, Z ; 3 ld ZL, Y+ ; 2 #0 in ZL lpm tmp0, Z ; 3 out DDRB, spi0 ; 1 spi0 out SPDR, tmp1 ; 1 #N out DDRB, spi1 ; 1 spi1 ld ZL, Y+ ; 2 #1 in ZL lpm tmp1, Z ; 3 lsl tmp1 ; 1 rol
in „Atmega 328P 20MHz PAL Video Terminal 60x30 Zeichen mit PS/2“ · Projekte & Code ·
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Datei
HelloWorld.lst
r23, 0x017A ; 0x80017a <__iob+0x3> 322: db 01 movw r26, r22 324: 18 96 adiw r26, 0x08 ; 8 326: ed 91 ld r30, X+ 328: fc 91 ld r31, X 32a: 19 97 sbiw r26, 0x09 ; 9 32c: 88 23 and r24, r24 32e: 41 f0 breq .+16 ; 0x340 <puts_P+0x46> 330: 09 95 icall 332: 89 2b or r24, r25 334: 11 f0 breq .+4 ; 0x33a <puts_P+0x40> 336: df ef ldi r29, 0xFF ; 255 338: cf ef ldi r28, 0xFF ; 255 33a: 0f 5f subi r16, 0xFF ; 255 33c: 1f 4f sbci r17, 0xFF ; 255 33e: eb cf rjmp .-42 ; 0x316 <puts_P+0x1c> 340: 8a e0 ldi r24, 0x0A ; 10 342: 09 95 icall 344: 89 2b or r24, r25 346: 19 f0 breq .+6 ; 0x34e
in „AVR: Speicherverwaltung in Mischprojekt C++ & ASM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lcm5334.pdf
data for upper half (upper drive) Display CN2 CPU (JPLCD) Function Pin no. Pin no. Function Remarks LD0 1 37 P15 Display data for lower half (lower drive) LD1 2 34 P13 Display data for lower half (lower drive) LD2 3 31 P11 Display data for lower half (lower drive) LD3 4 28 P9 Display data for lower half (lower drive) LD4 5 25 P7 Display data for lower half (lower drive) LD5 6 22 P5 Display data for lower half (lower drive) LD6 7 19 P3 Display data for lower half (lower drive) LD7 8 16 P1 Display data for lower half
in „LCD-Display: wie ansteuern? unbekannter Typ“ · Mikrocontroller und Digitale Elektronik ·
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PDF
T6963C.pdf
DATA PORT 19 : STACK EQU 9FFFH ; STACK POINTER BASE ADDRESS 20 : ; 21 : ORG 0000H 22 : START: 23 : LD SP, STACK 24 : ; 25 : ; SET TEXT HOME ADDRESS 26 : ; 27 : LD HL, 0000H ; TEXT HOME ADDRESS 0000H 28 : CALL DT2 29 : LD A, TXHOME 30 : CALL CMD 31 : ; 32 : ; SET GRAPHIC HOME ADDRESS 33 : ; 34 : LD HL
in „[V] Grafikdisplay 240x128“ · Markt ·
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PDF
T6963C.pdf
DATA PORT 19 : STACK EQU 9FFFH ; STACK POINTER BASE ADDRESS 20 : ; 21 : ORG 0000H 22 : START: 23 : LD SP, STACK 24 : ; 25 : ; SET TEXT HOME ADDRESS 26 : ; 27 : LD HL, 0000H ; TEXT HOME ADDRESS 0000H 28 : CALL DT2 29 : LD A, TXHOME 30 : CALL CMD 31 : ; 32 : ; SET GRAPHIC HOME ADDRESS 33 : ; 34 : LD HL
in „altes Phytec MCB-51 Monitor/Basic Befehle?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UMS-21100.pdf
_B2 27 • • 28 LD1_B1 d LD0_B0 29 • • 30 VCC i s UART3_RXD 31 • • 32 UART3_RTS e UART3_TXD 33 • • 34 UART3_CTS b USBG_RXDP 35 • • 36 USBG_OE_B u i USBG_RXDM 37 • • 38 USBG_ON_B t m USBG_TXDP 39 • • 40 USBG_FS a F USBG_TXDM
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
target_schematic.pdf
Vcc C5 1▯F C1+ Vcc !SYMBOL C4 C1 VCC3V +5V IC4 0,1▯F C1- V+ 0,47▯F RN1 GND LD1 R1out R1in K1 3S S . . . T K S D O0 0 1 1 0 a A R2out R2in DVCC CV V P P P R T T T TD I S O O P5.4 b a A T1in T1out P6.3 VD A M S S S P5.3 c f b T2in T2out P6.4 P5.2 d g SUB-D_9POL_BUCHSE_STEHEND P6.5
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PDF
target_schem.pdf
Vcc C5 1▯F C1+ Vcc !SYMBOL C4 C1 VCC3V +5V IC4 0,1▯F C1- V+ 0,47▯F RN1 GND LD1 R1out R1in K1 3S S . . . T K S D O0 0 1 1 0 a A R2out R2in DVCC CV V P P P R T T T TD I S O O P5.4 b a A T1in T1out P6.3 VD A M S S S P5.3 c f b T2in T2out P6.4 P5.2 d g SUB-D_9POL_BUCHSE_STEHEND P6.5
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Datei
Studiouhr.asm
temp1 st -x,temp1 ;Sekunden loeschen cpi temp,60 ;Minuten = 60 ? brne uhr_ende ;nein uhr_stunden: ld temp,x+ ld temp,x+ ld temp,x+ ;Stunden laden inc temp st -x,temp ;Stunden erhoehen clr temp1 st -x,temp1 ;Minuten loeschen cpi temp,24 ;Stunden = 24 ? brne uhr_ende ;nein uhr_over: ld temp,x+ ld temp
in „StudioLED Uhr mit DCF Atmega8 und assembler“ · Projekte & Code ·
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Datei
Studiouhr.asm
temp1 st -x,temp1 ;Sekunden loeschen cpi temp,60 ;Minuten = 60 ? brne uhr_ende ;nein uhr_stunden: ld temp,x+ ld temp,x+ ld temp,x+ ;Stunden laden inc temp st -x,temp ;Stunden erhoehen clr temp1 st -x,temp1 ;Minuten loeschen cpi temp,24 ;Stunden = 24 ? brne uhr_ende ;nein uhr_over: ld temp,x+ ld temp
in „LED-Studiouhr mit atmega8 und assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PinTemplateVirtual.ino.elf.txt
: 80 91 04 28 lds r24, 0x2804 3dc: 90 91 05 28 lds r25, 0x2805 3e0: dc 01 movw r26, r24 3e2: ed 91 ld r30, X+ 3e4: fc 91 ld r31, X 3e6: 01 90 ld r0, Z+ 3e8: f0 81 ld r31, Z 3ea: e0 2d mov r30, r0 3ec: 09 95 icall 3ee: 80 91 06 28 lds r24, 0x2806 3f2: 90 91 07 28 lds r25, 0x2807 3f6: dc 01 movw r26, r24 3f8: ed 91 ld r30, X+ 3fa: fc 91 ld r31, X 3fc: 01 90 ld r0, Z+ 3fe: f0 81 ld r31, Z 400: e0 2d mov r30, r0 402: 09 95 icall setup(); for (;;) { loop(); if (serialEventRun) serialEventRun(); 404: c0 e0 ldi r28, 0x00
in „Buchempfehlung C++ und MCUs“ · Mikrocontroller und Digitale Elektronik ·
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Datei
drehgeber.lst
725F 525E CLR L:0x525e 31 TIM1_CNTRL = (u8)(TIM1_Start); \ 000024 35 32 525F MOV L:0x525f, #0x32 32 33 34 // config timer for encoder mode 35 36 TIM1_CCMR1_CC1S = 1; // channel 1 to input TI1FP1 on PC1 \ 000028 C6 5258 LD A, L:0x5258 \ 00002B A4 FC AND A, #0xfc \ 00002D AA 01 OR A, #0x1 \ 00002F C7 5258 LD L:0x5258, A 37 TIM1_CCMR1_OC1M = 7; // in inputmode IC1F, set digital filter \ 000032 C6 5258 LD A, L:0x5258 \ 000035 AA 70 OR A, #0x70 \ 000037 C7 5258 LD L:0x5258, A 38 TIM1_CCMR1_OC1CE = 0; // in
in „[STM8S] Drehgeber direkt anschließen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
thermo.asm
R26,LOW(-@0) SBCI R27,HIGH(-@0) LD R0,X+ LD R27,X MOV R26,R0 .ENDM .MACRO __GETD2SX MOV R26,R28 MOV R27,R29 SUBI R26,LOW(-@0) SBCI R27,HIGH(-@0) LD R0,X+ LD R1,X+ LD R24,X+ LD R25,X MOV R26,R0 MOV R27,R1 .ENDM .MACRO __GETBRSX MOV R30
in „Thermometer mit Ds18B20“ · Mikrocontroller und Digitale Elektronik ·
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PDF
user_manual_nucleo.pdf
a PC with a USB cable ‘type A to mini-B’ through USB connector CN1 to power the board. The red LED LD3 (PWR) and LD1 (COM) should light up. LD1 (COM) and green LED LD2 should blink. 4. Press button B1 (left button). 5. Observe how the blinking of the green LED LD2 changes according to clicks on button
in „USART1 issue with a STM32F030R8 Nucleo Board“ · µC & Digital Electronics ·
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PDF
U13843EU3V0AN00.pdf
3.8” Sharp LQ64D431 Table 21 640 x 480 10.4” NEC NL6448AC20-06 Table 22 640 x 480 6.5” NEC NL6448AC33-18 Table 23 640 x 480 10.4" NEC NL6448AC33-18A Table 23 640 x 480 10.4 NEC NL6448AC33-24 Table 23 640 x 480 10.4 NEC NL6448AC33-27 Table 23 640 x 480 10.4” NEC NL8060AC26-04 Table 24 800 x 600 10.4”
in „Controller für Graphik LCD“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BASIC.LST
08CF 06 81 PUTFID: LD B,ZFOR ; "FOR" block marker 1119 08D1 C5 PUSH BC ; Save it 1120 08D2 33 INC SP ; Don't save C 1121 08D3 1122 08D3 CD 3E 09 RUNCNT: CALL TSTBRK ; Execution driver - Test break 1123 08D6 22 35 1E LD (BRKLIN
in „Suche verschiedene BASIC Eprom's für Z80 Rechner.“ · Markt ·
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PDF
Diagrams_TF-118_TF-100.pdf
M1_A_2 AML6210DP/LQFP GND M1_A3 24 M1_A_3 R M1_A4 29 schlib_v1 100 M1_A5 30 M1_A_4 O XD_CE 106 R11 33R RSD2_D0 3 RP2 33R M1_A6 31 M1_A_5 XD_RE 103 TMS 1 8 ADATA0/AL M1_A7 33 M1_A_6 M GPIO // CARD_POWER CARD_EN TCK 2 7 M1_A8 34 M1_A_7 E TDI 3 6 ASCLK M1_A9 35 M1_A_8 TDO 4 5 ALRCLK M1_A10 36 M1_A_9 M 110
in „Photo-Rahmen als Farbdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ReciprCnt.pdf
rcall Bin2BCD ; clr tBCD3 ;initial highest bytes of result ldi tBCD4,0xfe ; binbcd_loop: subi tBCD0,-0x33 ;add 0x33 to digits 1 and 0 sbrs tBCD0,3 ;if bit 3 clear sub 3 subi tBCD0,0x03 ; sbrs tBCD0,7 ;if bit 7 clear sub $30 subi tBCD0,0x30 ; subi tBCD1,-0x33 ;add 0x33 to digits 3 and 2 sbrs tBCD1,3 ;if bit
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PDF
8174_WireBushing_EK00_III_de.pdf
8174/203-0304-33 0,468 6 25 A 750 V d 34 1300/1300 8174/203-0604-33 0,125 E9 12 25 A 750 V d 41 1300/1300 8174/204-1204-33 1,588 6 3 33 A 750 V d 34 1300/1300 8174/203-0305-33 0,670 6 33 A 750 V d 34 1300/1300 8174/203
in „Kabel aus Druckgehäuse herauszuführen“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
Instruction_Card_Z80.pdf
60 61 62 63 64 65 66 26.. LD L,. 6F 68 69 6A 6B 6C 6D 6E 2E.. LD (HL), 77 70 71 72 73 74 75 36.. LD (BC), 02 LD (DE), 12 LD (nn), 32.... A B C D E H L LD .,(IX+d) DD7E.. DD46.. DD4e.. DD56.. DD5E.. DD66.. DD6E.. LD .,(IY+d) FD7E
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
5500-0080_VQC_DisplayAdapter_V2R1.pdf
1 2 3 4 5 6 LD1 LD2 20 Z1 20 Z1 Z1 Z1 VCC D1 1 D1 Z2 21 Z2 D1 1 D1 Z2 21 Z2 D2 8 19 Z3 D2 8 19 Z3 D D3 4 D2 Z3 22 Z4 D3 4 D2 Z3 22 Z4 D C1 C2 C3 C4 C5 D3 Z4 D3 Z4 0u1 0u1 0u1 0u1 0u1 D4 11 D4 Z5 23 Z5 D4 11 D4 Z5 23
in „Als Mikro noch Makro war: Die "Dicke Tal- Uhr"“ · HF, Funk und Felder ·
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PDF
Relay_Driver_Board_V1.pdf
1 2 3 4 R1 K1 86 87 J1 1K +12 30 1 D1 2 1N4148 LD1 CH1 85 87a CON2 D K2 REL_PAN_CM1-R-12V D R2 86 87 J2 1K 1 +12 30 D2 LD2 2 1N4148 CH2 85 87a CON2 REL_PAN_CM1-R-12V K3 R3 86 87 J3 1K 1 D3 +12 30 2 VCC 1N4148 LD3 CH3 85 87a CON2 N C1 U1 I 0u1 REL_PAN_CM1
in „MCP23017 und UDN2981A“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Zentrale_V1.4.asm
ldi YL,low(RamDat) GrX: ; Gruppe "00" bis "15" ldi r18,16 ; Bitzähler missbraucht für Zeigeroffset ! ld r2,Z+ ; Synchronbyte 1, Zeiger weiterstellen ld r3,Z+ ; Synchronbyte 2 ( nur HI-Nibble gültig ) mov XH,YH ; Datenzeiger kopieren mov XL,YL ld r10,Y ; A 00, 01, 02 .... 15 add YL,r18 ; Zeiger weiterstellen um Offset 16 ld r9,Y ; A 16, 17, 18 .... 31 add YL,r18 ld r8,Y ; A 32, 33, 34 .... 47 add YL,r18 ld r7,Y ; A 48, 49, 50 .....63 add YL,r18 ld r6,Y ; A 64, 65, 66 .....79 add YL,r18 ld r5,Y ; A 80, 81, 82 .....95 add
in „UART im Interrupt, Daten direkt in EEProm speichern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
REN_icl7106-07-07s_DST_20251218.pdf
Notes 2, 4) PART MARKING (RoHS Compliant) PKG. DWG. # (UNITS) (Note 5) (°C) ICL7106CPLZ ICL7106CPLZ 40 Ld PDIP (Note 3) E40.6 Tube 0 to 70 ICL7106CM44Z ICL7106 44Ld MQFP Q44.10x10C Tray 0 to 70 CM44Z ICL7106CM44ZT ICL7106 44Ld MQFP Q44.10x10C Reel, 500 0 to 70 CM44Z ICL7107CPLZ ICL7107CPLZ 40 Ld PDIP (Note 3) E40.6 Tube 0 to 70 ICL7107SCPLZ(Note 1) ICL7107SCPLZ 40 Ld PDIP (Note 3) E40.6 Tube 0 to 70 ICL7107CM44Z ICL7107 44Ld MQFP Q44.10x10C Tray 0 to 70 CM44Z ICL7107CM44ZT ICL7107 44Ld MQFP Q44.10x10C Reel, 500 0 to 70 CM44Z NOTES: 1. “S” indicates enhanced stability
in „Panel-Meter KAIFU FR-4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
qsc_gx5_sh_ts_sch.pdf
REGULATOR under the front heatsink LM339AM 2 5.8v 1/10W 5v 1 -15V +15V 6 55K C81 6 5 5K U9 10 PCNT LD3 LD4 SIG-B SP-B VIN VOUT 1 1 V+ VO 2 1.57v 4 U7 3 R120 W CC 50V W CC LED GREEN LED GREEN R33 GND C46 634 3 1 3 1 3.01K SENSOR C40 TH-A 1 PCNT LED RED BIPOLAR LED RED BIPOLAR 1 PCNT R46 2 C38 C39 3 10
in „QSC GX5 negative Spannung am Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
qsc_gx5_sh_ts_sch.pdf
REGULATOR under the front heatsink LM339AM 2 5.8v 1/10W 5v 1 -15V +15V 6 55K C81 6 5 5K U9 10 PCNT LD3 LD4 SIG-B SP-B VIN VOUT 1 1 V+ VO 2 1.57v 4 U7 3 R120 W CC 50V W CC LED GREEN LED GREEN R33 GND C46 634 3 1 3 1 3.01K SENSOR C40 TH-A 1 PCNT LED RED BIPOLAR LED RED BIPOLAR 1 PCNT R46 2 C38 C39 3 10
in „QSC GX5 negative Spannung am Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
discoveryf4.pdf
omnidirectional digital microphone ● CS43L22, audio DAC with integrated class D speaker driver ● Eight LEDs: – LD1 (red/green) for USB communication – LD2 (red) for 3.3V power on – Four user LEDs, LD3 (orange), LD4 (green), LD5 (red) and LD6 (blue) – 2 USB OTG LEDs LD7 (green) VBus and LD8 (red) over-current ● Two
in „Hilfe bei Programmierung STM32F407VG bei TIM1“ · Mikrocontroller und Digitale Elektronik ·
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Datei
basic1.asm
subi RX8,-0x03 ;add 0x03 to digit 8 only sbrs RX8,3 ;if bit 3 clear subi RX8,0x03 ; sub 3 subi Rx7,-0x33 ;add 0x33 to digits 7 and 6 sbrs Rx7,3 ;if bit 3 clear subi Rx7,0x03 ; sub 3 sbrs Rx7,7 ;if bit 7 clear subi Rx7,0x30 ; sub $30 binbcd_54: subi Rx6,-0x33 ;add 0x33 to digits 5 and 4 sbrs Rx6,3 ;if bit
in „Dynamisierung Encoder speziell für DDS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
1.1 Freescale Semiconductor 33 Specifications T1 T1 VSYN T2 T3 XMAX T4 T2 HSYN SCLK Ts LD[15:0] Figure 22. Non-TFT Mode Panel Timing Table 21. Non-TFT Mode Panel Timing Symbol Description Minimum Value Unit T1 HSYN to VSYN delay 2
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TMPA910_Rev.1.0_Schematic.pdf
PA4/KI4 PJ4/LD12 D6 L_D11 B PORT_A2 L15 PA3/KI3 PJ3/LD11 J6 L_D10 B PORT_A1 N19 PA2/KI2 PJ2/LD10 B3 L_D9 PA1/KI1 PJ1/LD9 PORT_A0 N18 PA0/KI0 PJ0/LD8 C7 L_D8 ND_D[7..0] ND_D7 P8 H8 L_D7 ND_D[7..0] ND_D6 N9 SV7/NDD7 ST7/LD7 B5 L_D6 ND_D5 T7 SV6/NDD6 ST6/LD6 B7 L_D5 SV5/NDD5 ST5/LD5 ND_D4 P10 SV4/NDD4 ST4/LD4 G9 L_D4 ND_D3 U6 SV3/NDD3 ST3/LD3 C8 L_D3 ND_D2 R7 SV2/NDD2 ST2/LD2 C9 L_D2 ND_D1 V5 E9 L_D1 ND_D0 U7 SV1/NDD1 ST1
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AG1_Ops_Manual_020_0350_00B.pdf
UD1 Video data (upper) 2 UD0 Video data (upper) 3 UD3 Video data (upper) 4 UD2 Video data (upper) 5 LD1 Video data (lower) 6 LD0 Video data (lower) 7 LD3 Video data (lower) 8 LD2 Video data (lower) 9 CP2 Data input clock 10 GND Ground 11 CP1 Input data latch. 12 GND Ground 13 S Scan start-up signal 14
in „SED1353 an AVR“ · Mikrocontroller und Digitale Elektronik ·
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DCF_77.pdf
Sekunden lang HIGH und kippt dann um auf LOW (= LD 4 ein), weil ihm der Trigger von Sekunde 59 fehlt. Bis zur nächsten LD Hi Sekundenmarke (Nr. 00), zeigt das Leuchten von LD4 das Ende der laufenden (NAND2) Minute an. Bild 8: Ein paar Monoflops und ein
in „DCF77: Welcher Parallelkondensator?“ · HF, Funk und Felder ·
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rxv396.pdf
connected to external DIR2 1fs word clock output 50 VSS Ground * Digital input Digital Input DIB(Pin33) Selector Control DVD/LD L (H=High, L=Low) SAT/D-TV H 31 Downloaded from www.Manualslib.com manuals search engine RX-V396/RX-V396RDS/HTR-5230/HTR-5230RDS IC4 : YSS908-F (AC3Dav) DSP + AC-3(Dolby Digital
in „Yamaha RX-V396 RDS Fehlersuche“ · Mikrocontroller und Digitale Elektronik ·
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Z80-Zilog.pdf
3008 32 jr pc, noex–$ ; if first > second, no jump 0015 dd7300 33 ld (ix), e ; exchange array elements 0018 dd7201 34 ld (ix+i), d 001b cbc4 35 set flag, h ; record exchange occurred 0010 dd23 36 noex: inc ix ; point to next data element 001f 10ea 37 djnz next–$ ;
in „DDR Schach-Computer Chess Master Diamond reparieren (Dauerton)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVR-Studio.txt
r25, Y+8 ; 0x08 53e: fc 01 movw r30, r24 540: e2 0f add r30, r18 542: f3 1f adc r31, r19 544: 20 81 ld r18, Z 546: 8c 81 ldd r24, Y+4 ; 0x04 548: 9d 81 ldd r25, Y+5 ; 0x05 54a: 84 0f add r24, r20 54c: 95 1f adc r25, r21 54e: fc 01 movw r30, r24 550: 33 96 adiw r30, 0x03 ; 3 552: 20 83 st Z, r18 twi->address
in „XMega Eclipse, AVR-Studio Interrupt Unterschiede“ · Mikrocontroller und Digitale Elektronik ·
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lm1117.pdf
0 to 125 1117-25 LM1117LD-3.3/NOPB Active Production WSON (NGN) | 8 1000 | SMALL T&R Yes SN Level-3-260C-168 HR 0 to 125 1117-33 LM1117LD-3.3/NOPB.B Active Production WSON (NGN) | 8 1000 | SMALL T&R Yes SN Level-3-260C-168 HR 0 to 125 1117-33 LM1117LD-ADJ/NOPB Active Production WSON (NGN) | 8 1000 | SMALL T&R Yes SN Level-3-260C-168 HR 0 to 125 1117ADJ LM1117LD-ADJ/NOPB.B Active Production WSON (NGN) | 8 1000 | SMALL T&R Yes SN Level-3-260C
in „LM1117-5.0 Ausgangsspannung mit R in GND erhöhen“ · Analoge Elektronik und Schaltungstechnik ·
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AD2500_Macro_Assembler_V402_Manual.pdf
Addressing Modes Immediate Addressing Modes Immediate The data is contained in the instruction. Examples: LD HL,1234H ; Ld HL with the HEX number 1234. LD HL,DATA ; Ld HL with the value associated with the Label 'DATA'. Register The data is contained in a CPU register. Examples: LD A,B ; Ld the contents in
in „2500 A.D. Z80 Macro Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
8080int-jmp.asm
instr fetch_nop, op_INV, store_nop ;30 oo ;JR NC,o instr fetch_DIR16, op_nop, store_SP ;31 nn nn ;LD SP,nn instr fetch_DIR16, op_nop, store_AM ;32 nn nn ;LD (nn),A instr fetch_SP, op_INC16, store_SP ;33 ;INC SP instr fetch_MHL, op_INC, store_MHL ;34 ;INC (HL) instr fetch_MHL, op_DEC, store_MHL ;35 ;
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·