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Schaltplan eines Netzteils
, C2 4700 µF, C4 4,7 nF, 1N4148, R1 1,8 kΩ, T3, T5, T6 MJ 3001, C6 4,7 nF, C5 4,7 nF, R10,11 2 x 0,33 Ω, I, U, C9 1 nF, D6 1N4002, C8 47 µF, D7 ZTE1V5, R12 330 Ω, T7 BC307, P3 Spannung, 10 kΩ, LD1 grün, LD2 gelb, LD3 rot, S1, T8 BC 237, T9, R9 1 kΩ, R16 1 kΩ, R14 33 Ω, R17 1,5 kΩ, P4 U max, LD4 grün, IC1 7905, C1 470 µF, C3 100 µF, R6 330 Ω, R7 8,2 kΩ, R5 0,33 Ω, P2 Strom, P1 1 kΩ, R15 1,2 kΩ, C7 47 µF, 30 V 4 A mt, B80 C5000, 8 V D1...4 1N4148, Nachdruck mit freundlicher Genehmigung des ELECTRONIC ACTUELL Magazins
in „Bauplan/ Tipps für 36V DC analoges Netzteil, kein Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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analyse.txt
mov r30,r18 // 1 ldi r31,lo8(0) // 1 subi r30,lo8(-(dataporta)) // 1 sbci r31,hi8(-(dataporta)) // 1 ld r24,Z // 1 and r25,r24 // 1 out 34-32,r25 // 1 rjmp .L2 // 2 .L12: in r24,43-32 mov r30,r18 ldi r31,lo8(0) subi r30,lo8(-(dataportd)) sbci r31,hi8(-(dataportd)) ld r25,Z and r24,r25 out 43-32,r24 rjmp
in „Inline-Assembler: Label-Sprungadresse in Z-Register laden - wie?“ · Mikrocontroller und Digitale Elektronik ·
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rawsource.asm
: ldi XL,T_ERR sts 0x200,XL fsys_delete_x: ret fsys_delete_5: ld r16,Z+ ;char 2 andi r16,0x3f cpi r16,0x31 brne fsys_delete_e ld r16,Z+ ;char 3 andi r16,0x3f cpi r16,0x31 brne fsys_delete_e sts fileio_ram+33,const_0 ;file number fsys_delete_6: call fsys_dfile lds
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FS453-4_FS455-6_HW_V30.pdf
H2 13 P8 LCD_D8 LTVDATA8 TVDAT8 J1 14 P9 LCD_D9 LTVDATA9 TVDAT9 J2 15 P10 LCD_D10 LD6 LTVDATA10 LDD_5 TVDAT10 K1 16 P11 LCD_D11 LD7 LTVDATA11 LDD_6 TVDAT11 (a) K2 17 P12/ V656_0 LCD_D12 LD8 LDD_7 L1 18 P13/ V656_1 LCD_D13 LD9 LDD_8 N3 23 P14/ V656_2 LCD_D14 LD10 LDD_9 M4 24 P15/ V656_3 LCD_D15 LD11 LDD_10 N4 25 P16/ V656_4 LCD_D0 M5 26 P17/ V656_5 LCD_D1 N5 27 P18/ V656_6 LCD_D2 M6 28 P19/ V656_7 LCD_D3 LD0 LDD_0 N6 29 P20 LCD_D4 LD1 LDD_1 M8 32 P21/V656_H LD2 LCD_D5 LDD_2 N8 33 P22/V656_V LCD_D6
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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nano_os_OPT3.txt
currentTask = -1; 470: 80 93 00 01 sts 0x0100, r24 set_sleep_mode(SLEEP_MODE_IDLE); 474: 83 b7 in r24, 0x33 ; 51 476: 81 7f andi r24, 0xF1 ; 241 478: 83 bf out 0x33, r24 ; 51 sei(); 47a: 78 94 sei sleep_mode(); 47c: 83 b7 in r24, 0x33 ; 51 47e: 81 60 ori r24, 0x01 ; 1 480: 83 bf out 0x33, r24 ; 51 482: 88
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Schaltplan eines Netzteils
Capacitor protects against suddenly reversed polarity, Q1 DPM3015V-7, D1 MBB5242BLT3G, R1 12k, C2 100n, LD01: 3.3V, A_GND_IN, TP10 TestPoint, C11 10u, C15, R12 2.2k, U10 LT3041, IN, EN/UV, VS, PG, OUT, GND, A_SET, C12 10u, C13 10u, C16, R15 1W, R13 33k, R16 110, Enable LD0 at (2.2 / 1 + 1) * 1.28V = 4.10V, A_GND_SEN, LD02: 1.24V, B_GND_IN, TP20 TestPoint, C21 10u, C25, R22 1k, U20 LT3041, IN, EN/UV, VS, PG, OUT, GND, B_SET, C22 10u, C23 10u, C26, R25 360k, R21 2.2k, R23 12.4k, C24, Enable LD0 at (1 / 2.2 + 1) * 1.28V
in „Hilfe bei Spannungsversorgung für DVB-S2-NIM“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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CY2890-F02-datasheet-v2.4.pdf
O C 0 1 2 3 4 5 0 1 2 R R D V V D H R R R R R R G G G 48 47 46 45 44 43 42 41 40 39 38 37 36 35 34 33 RI2 49 32 GO3 RI3 50 31 GO4 RI4 51 30 GO5 RI5 29 52 BO0 RI6 53 28 BO1 RI7 54 27 BO2 GI0 55 26 BO3 25 GI1 56 BO4 GI2 57 24 BO5 GI3 58 23 LD CY2890-F02 GI4 59 22 REV 21 GI5 60 POL GI6 61 20 OEV GI7 62
in „Display ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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ISBN_3-9800725-0-9.pdf
SFH 400 96 u 123 p 115 ILQ-1 131 SFH 401 96 u 237,257 56 ILQ-74 131 SFH 402 96 SFH 405 96 V 290 P 97 LD 110 73 SFH 500 92 V292 P 97 LD 242 60 SFH 900 107 V390 P 97 LD 260-269 95 V 518 P 73 LD 261 96 SPX 1160 108 V 619 P 75 LD 271 96 SPX 1180 108 V621 P 63 LDR 03, 05, 07 162 SPX 1397 108 V622 P 63 SPX 1404
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test.lst
R3,-Y 012D 924A ST R4,-Y 012E 939A ST R25,-Y 012F 93AA ST R26,-Y 0130 DFF4 RCALL ac1toac2 0131 9189 LD R24,Y+ 0132 9139 LD R19,Y+ 0133 9129 LD R18,Y+ 0134 9119 LD R17,Y+ 0135 9109 LD R16,Y+ 0136 9508 RET unpack: 0137 2F83 MOV R24,R19 0138 E8B0 LDI R27,0x80 0139 0F22 LSL R18 013A 1F33 ROL R19 013B 273B
in „Wurzel ziehen asm“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Steu4414.asm
r2, 0x0079 in r3, PORTB or r3, r2 out PORTB, r3 ; Referenced from offset 0x234 by breq Label23: wdr ld r2, Y+ out SREG, r2 ld r30, Y+ ld r25, Y+ ld r24, Y+ ld r19, Y+ ld r18, Y+ ld r17, Y+ ld r16, Y+ ld r3, Y+ ld r2, Y+ reti ; Referenced from offset 0x4ac by rcall Function3: in r16, USR andi r16, 0x80
in „Gerät mit AT90S4414 retten“ · Mikrocontroller und Digitale Elektronik ·
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main.c
198,192,187,181,176,170,164,158,152,146,139,133,127,121,115,108,102,96,90,84,78, 73,67,62,56,51,46,42,37,33,29,25,21,18,15,12,10,7,5,4,2,1,1,0,0,0,1,1,2,4,5,7,10, 12,15,18,21,25,29,33,37,42,46,51,56,62,67,73,78,84,90,96,102,108,115,121 }; uint8 Pointer=0,Pointer2=0; // Variable to hold the index into the lookup
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disassebled_minimal_change_crash.asm
> 103c: 2f 5f subi r18, 0xFF ; 255 103e: 3f 4f sbci r19, 0xFF ; 255 1040: 22 0f add r18, r18 1042: 33 1f adc r19, r19 1044: 22 0f add r18, r18 1046: 33 1f adc r19, r19 1048: a9 81 ldd r26, Y+1 ; 0x01 104a: ba 81 ldd r27, Y+2 ; 0x02 104c: a2 0f add r26, r18 104e: b3 1f adc r27, r19 1050: 4d 91 ld r20,
in „Bizarrer Firmware crash - ATmega4808. Wie Debuggen?“ · Mikrocontroller und Digitale Elektronik ·
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65c02.pdf
1A1 3D 2 3Q 3D 2 3Q D2 E2 HEX D2 3D 2 3Q 3D 2 3Q D2 E2 HEX D2 3D 2 3Q D2 E2 HEX D2 B0 2 C4 D3 s D3 LD° 4 RCO 3D 2 3Q D2 E2 HEX D2 D3 s D3 LD° 4 RCO 3D 2 3Q D2 E2 HEX D2 LD° 4 RCO° D2 E2 HEX D2 A0 D0 4D 4 4Q 4D 4 4Q D3 E3 D3 4D 4 4Q 4D 4 4Q D3 E3 D3 4D 4 4Q D3 E3 D3 4 D4 B D4 7 4D 4 4Q D3 E3 D3 D4 B D4
in „Dynamisch visualisierbarer Schaltplan eines 65C02 Mikroprozessors“ · Mikrocontroller und Digitale Elektronik ·
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Datei
disassebled_original_working.asm
movw r26, r14 43d2: ed 91 ld r30, X+ 43d4: fc 91 ld r31, X 43d6: d8 01 movw r26, r16 43d8: 9c 91 ld r25, X 43da: 80 81 ld r24, Z 43dc: 98 13 cpse r25, r24 43de: 28 c0 rjmp .+80 ; 0x4430 <_ZN5myMAC13radio_receiveEb.constprop.36+0x33c
in „Bizarrer Firmware crash - ATmega4808. Wie Debuggen?“ · Mikrocontroller und Digitale Elektronik ·
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Nexys4_DDR_schematic.pdf
D1D3D4I5 200 D7 D88 D11 D22 P2 GND VCC3V3 D2 GND I2 GND VCC3V3 D0GND XADC1_P Pmod 2x6 XADC1_NN I11 7 7 R33 XADC2_P I22 8 8 XADC2_NN LED0 PIR3PIR30PILD0A PILD0K I3 9 B VCC3V3 330 XADC3_P I43 9 1 XADC3_NN B LD0 GND 410 GND LED1 R34 XADC4_P I5511 1 XADC4_NN PISW01 R355 SW0 PIR3PIR34PILD10A PILD10K I6612 2 SW0
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Eclipse.txt
r25, Y+8 ; 0x08 320: fc 01 movw r30, r24 322: e2 0f add r30, r18 324: f3 1f adc r31, r19 326: 20 81 ld r18, Z 328: 8c 81 ldd r24, Y+4 ; 0x04 32a: 9d 81 ldd r25, Y+5 ; 0x05 32c: 84 0f add r24, r20 32e: 95 1f adc r25, r21 330: fc 01 movw r30, r24 332: 33 96 adiw r30, 0x03 ; 3 334: 20 83 st Z, r18 twi->address
in „XMega Eclipse, AVR-Studio Interrupt Unterschiede“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ohne_kontrollausgabe.asm
0x100 <Print::write(unsigned char const*, unsigned int)+0x42> if (write(*buffer++)) n++; ea: 69 91 ld r22, Y+ ec: d6 01 movw r26, r12 ee: ed 91 ld r30, X+ f0: fc 91 ld r31, X f2: 01 90 ld r0, Z+ f4: f0 81 ld r31, Z f6: e0 2d mov r30, r0 f8: c6 01 movw r24, r12 fa: 09 95 icall fc: 89 2b or r24, r25 fe
in „AVR Inline Optimierung kaputt?“ · Mikrocontroller und Digitale Elektronik ·
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mb1045_changed.pdf
P P0R14102 P0R14101LD1001 2 0 0 0 P U5V_ST_LINK 1 12 P P 1 2 C56 820 10 5 10uF Header 6X2 P 0 P TP1 TP11 U2 2V8 C +3V3 +5V LD1117STR +2V8 1 C U12 P +5V LD1086D2M33 +3V3 0 3 P0U203 P0U202 0 P0U1202 P Vin Vout P0U204 P 1 3
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mb1045_changed_korrigiert.pdf
P P0R14102 P0R14101LD1001 2 0 0 0 P U5V_ST_LINK 1 12 P P 1 2 C56 820 10 5 10uF Header 6X2 P 0 P TP1 TP11 U2 2V8 C +3V3 +5V LD1117STR +2V8 1 C U12 P +5V LD1086D2M33 +3V3 0 3 P0U203 P0U202 0 P0U1202 P Vin Vout P0U204 P 1 3
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STM32 Nucleo-64 Mikrocontroller-Entwicklungsboard
Nucleo MB1136 rev C ST-LINK U2 R4 R6 R7 R15 R17 R21 R22 R23 R25 R26 R27 R28 R30 R31 R32 R33 R34 C11 C16 C17 C27 C28 C29 C30 C31 C32 C33 C34 CN1 CN4 CN5 CN6 CN7 CN8 CN9 CN10 LD1 LD2 LD3 LD4 SWD J1234 5V GND VIN A0 A1 A2 A3 A4 A5 TX/D1 RX/D0 SCL/D14 SDA/D13 MISO/D12 MOSI/D11 SCK/D10 RESET GND
in „[V] STM 32 Nucleo F070RB“ · Markt · · Platinenfotos
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t.lst
LD R22,Z+ LD R23,Z MOVW R30,R0 .ENDM .MACRO __GETB2SX MOVW R26,R28 SUBI R26,LOW(-@0) SBCI R27,HIGH(-@0) LD R26,X .ENDM .MACRO __GETW2SX MOVW R26,R28 SUBI R26,LOW(-@0) SBCI R27,HIGH(-@0) LD R0,X+ LD R27,
in „Problem mit CodevisionAVR 1.23.8c Standard“ · Mikrocontroller und Digitale Elektronik ·
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Datei
t.lst
LD R22,Z+ LD R23,Z MOVW R30,R0 .ENDM .MACRO __GETB2SX MOVW R26,R28 SUBI R26,LOW(-@0) SBCI R27,HIGH(-@0) LD R26,X .ENDM .MACRO __GETW2SX MOVW R26,R28 SUBI R26,LOW(-@0) SBCI R27,HIGH(-@0) LD R0,X+ LD R27,
in „Problem mit CodevisionAVR 1.23.8c Standard“ · Mikrocontroller und Digitale Elektronik ·
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Datei
disassembly.s
false" .align 8 .LC4: .string "scroll_region_valid: %s origin_mode: %s\n" .LC5: .string "ox->x: %u %ld oy->y: %u %ld\n" .LC6: .string "sr top: %u sr bottom: %u\n" .LC7: .string "1 ax: %ld ay: %ld\n" .LC8: .string "top: %u bottom: %u\n" .LC9: .string "2 ax: %ld ay: %ld\n" .LC10: .string "!!!: %ld %u %ld\n" .LC11: .string "fx: %ld fy: %ld\n" .section .text.tym_i_pane_set_cursor_position,"ax",@progbits .globl tym_i_pane_set_cursor_position .hidden tym_i_pane_set_cursor_position .type tym_i_pane_set_cursor_position, @function tym_i_pane_set_cursor_position
in „Stack corruption, aber valgrind und asan finden nichts, was kann ich noch tun?“ · Softwareentwicklung ·
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behringer_eurolive_b112d_sm.pdf
100p 2 C53 X6 1 C72 C65 R73 2 C81 C11 1u 4n7 470p 47p R81 C46 470p 220k B T5 3 AGND R12 C29 C R 3904 R33 3 C C89 LD2 10k NC 10p E RD AGND AGND T 6 - k 10u R22 10n 6 - AGND D2 R85 6 R177 S 4580 8 C24 2k2 10k IC9-B 7 IC7-B 7 220 10n R40 074 4148 R175 C60 C54 5 470p 470p AGND AGND 5 + 28k + R176 5 + C38 10n
in „Behringer B112D Funktionsweise Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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LCD_Display_1602.pdf
o/p instruction to module INSTR: CALL DELAY ;time delay LD B,Ø ;power up delay DJNZ $ LD A,(HL) ;get data LD (WRINST), A ;o/p to module LD SP,27FFH ;stack pointer LD HL, INITBL ;init table pointer RET LD B,15 ;15ms delay ; time delay subroutine CALL INSTR ;o/p instruction to module LD B,5 ;5ms delay ; Total delay time = B* 1mS ; Register destroyed : DE CALL INSTR ;o/p instruction to module LD B,1 ; one ms delay DELAY: PUSH HL CALL INSTR ;o/p instruction to module LD DE,-1 LOOP1: LD
in „AT89S8252 in C programmieren“ · Mikrocontroller und Digitale Elektronik ·
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V_Licht.pdf
PIR103 PIR101 P2 100nF P0 100nF +8V 10k -8V e R3 +8V GND O R2R2 p 1k P7 COV1 o R10 3 AD8041 CX11 CR33 C PIV103+ PIV106 Analog_PO NALOG0LD BNC P I X 1 0 1 PIR301 PIR302 PIV102- Analog_LD F: 60MHz 1k Vss: 400-500mV U1U1 P4 V-Off: 2.5V GND 8 LO RF 1 GND -8V PIU108 PIU101 R4R4 VCC B PIR401 PIR402 B 10k C1CO33
in „Hilfe bei Ringmischer entwerfen/bauen“ · HF, Funk und Felder ·
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SeikoG642G_Pinbelegung.pdf
SCLK NC PIN 7 N/C PIN 8 BDSCLK NC PIN 8 DIN PIN 9 ECK NC PIN 9 XSC PIN 10 GND NC PIN 10 N/C PIN 11 LD0 PIN 11 UD0 PIN 12 BNCLK NC PIN 12 UD1 PIN 13 LD1 PIN 13 UD2 PIN 14 GND PIN 14 UD3 PIN 15 LD2 PIN 15 LD0 PIN 16 PCLK NC PIN 16 LD1 PIN 17 LD3 PIN 17 LD2 PIN 18 GND PIN 18 LD3 PIN 19 LD4 NC PIN 19 N/C PIN 20 LR2 NC NC PIN 20 N/C PIN 21 LD5 PIN 22 LR3 NC PIN 23 LD6 PIN 24 GND PIN 25 LD7 PIN 26 EXTON NC PIN 27 +5 PIN 28 RSVD NC INVERTER PIN 29 VSYNC PIN 30 -12V NC 12V PIN 1 GND SEIKO HBL-0006 PIN 31 -24V NC PIN 2 PIN 32 RSVD NC R1 R2 PIN
in „Saiko G642G Rev2 Display ansteuern (Signale)“ · Mikrocontroller und Digitale Elektronik ·
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MB1137.pdf
RMII_MDC RMII_MDC STLK_TX STLK_TX RMII_MDIO RMII_MDIO MCO MCO RMII_REF_CLK RMII_REF_CLK PWR_ENn NRST U5 LD1117S50TR VIN_5V 0 3 P0U503 P0U502 VIN C Vin Vout P0U504 1 P Tab 4 8 C17 0 0 1 5 2 C18 10uF(25V) P 10 8 P 0 10uF P JP3 U5V +5V U6 LD39050PU33R P0JP3066 5 P0JP305 6 SB1 P0SB101 P0SB102 1 P0JP304 P0JP303
in „Suche Mikrocontroller mit 16Bit ADCs und DACs“ · Mikrocontroller und Digitale Elektronik ·
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Netzuhr2.asm
rjmp label_33 ; PC+0x0005 ; label_32: ldi XL, 0x64 ld temp, X andi temp, 0x7F st X, temp ; label_33: lds r16, 0x0067 cpi r16, 0xAA breq label_31 ; PC+0x02 rjmp label_29 ; PC+0x000A ; label_31: lds r16, 0x0063 cpi
in „Uhrzenbausatz mit At89C2051 funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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test_einfach.asm
lpm ; R0 = (Z) ;out PORTD,R0 ; LEDs = 1100 = OKAY ldi ZL,LOW(TEST_DATEN*2) ldi ZH,HIGH(TEST_DATEN*2) ld temp1,Z+ ;temp1=0 ld temp1,Z+ ;temp1=1 ld temp1,Z+ ;temp1=2 ld temp1,Z ;temp1=3 out PORTD,temp1 ; LEDs = sollten 1100 sein, ist es aber nicht. ; Wo liegt hier der Fehler ? ; ENDE loop33: rjmp loop33
in „ATmega8515L kleines Zeiger Problem in ASM“ · Mikrocontroller und Digitale Elektronik ·
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dp101.c
; // P2.3 33/45 __sbit __at (0xA4) PITCH_EN; // P2.4 Pitch Enable __sbit __at (0xA5) RPM78; // P2.5 78 RPM // ===== Status (Port 3) ===== __sbit __at (0xB6) LD; // P3.6 Lock Detect // ===== LEDs (Port 0) ===== __
in „Eprom von Denon DJ Laufwerk defekt Winbond 78e52“ · Mikrocontroller und Digitale Elektronik ·
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sony_str-de485_service_brazil.pdf
C802 1-126-947-11 ELECT 47uF 20% 35V C803 1-165-498-11 ELECT 4700uF 20% 63V D691 8-719-991-33 DIODE 1SS133-T-77 D705 8-719-991-33 DIODE 1SS133-T-77 D710 8-719-991-33 DIODE 1SS133-T-77 D721 8-719-991-33 DIODE 1SS133-T-77 D722 8-719-991-33 DIODE 1SS133-T-77 C804 1-165-498-11 ELECT 4700uF 20% 63V D731 8-719-991-33 DIODE 1SS133-T-77 D732 8-719-991-33 DIODE 1SS133-T-77 D733 8-719-991-33 DIODE 1SS133-T-77 C805 1-135-851-21 MYLAR 0.22uF 100V D734 8-719-991-33 DIODE 1SS133-T-77 C806 1-135-851-21 MYLAR 0.22uF 100V D740
in „Reparaturanleitung Sony STR-DE585 FM STEREO/FM-AM RECEIVER Surround“ · Mikrocontroller und Digitale Elektronik ·
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UserManual_74.pdf
STLK_TX STLK_TX RMII_MDIO RMII_MDIO MCO MCO RMII_REF_CLK RMII_REF_CLK PWR_ENn D o NRST c I D 0 2 U5 8 LD1117S50TR VIN_5V 5 VIN 3 Vin Vout 2 9 Tab 4 9 C17 C18 R 10uF(25V) 1 10uF e v JP3 U5V 6 5 +5V U6 LD39050PU33R 7 SB1 Open 4 3 6 VI PG 3 C16 E5V 2 1 +3V3 JP5 VDD 4.7uF R29 1 EN VO 4 SB3 Closed C11 Header
in „LD39050 mit Spannung am Ausgang -> geht was kaputt?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
mit_kontrollausgabe.asm
0x100 <Print::write(unsigned char const*, unsigned int)+0x42> if (write(*buffer++)) n++; ea: 69 91 ld r22, Y+ ec: d6 01 movw r26, r12 ee: ed 91 ld r30, X+ f0: fc 91 ld r31, X f2: 01 90 ld r0, Z+ f4: f0 81 ld r31, Z f6: e0 2d mov r30, r0 f8: c6 01 movw r24, r12 fa: 09 95 icall fc: 89 2b or r24, r25 fe
in „AVR Inline Optimierung kaputt?“ · Mikrocontroller und Digitale Elektronik ·
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3003E.pdf
220u/50V CON4 CON1 -VS 1 D2 1N5402 CN4 -OUT CON1 R4 200 R3 D7 CN5 LR1 1 00/2W +8V L 2 ADJ OUT COM LD1 C1 1 K2A K1A 4 ARC OUT 2 ARC OUT 1 1 LD2 120 4 70 u/35CON2 3 2 12V D6 12V D5 2 3 1 BQ20 1N4148 1N4148 1 ARC OUT 1 ARC OUT 2 4 COM ADJ OUT Q2 Q1 K1 103/2KV CN2 CN4 R24 R23 CON4 CON4 LR2 2A 30k 30k N
in „Suche Schaltplan Netzgerät QJ3003E“ · Analoge Elektronik und Schaltungstechnik ·
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QJ3003E_S_netzteil.pdf
220u/50V CON4 CON1 -VS 1 D2 1N5402 CN4 -OUT CON1 R4 200 R3 D7 CN5 LR1 1 00/2W +8V L 2 ADJ OUT COM LD1 C1 1 K2A K1A 4 ARC OUT 2 ARC OUT 1 1 LD2 120 4 70 u/35CON2 3 2 12V D6 12V D5 2 3 1 BQ20 1N4148 1N4148 1 ARC OUT 1 ARC OUT 2 4 COM ADJ OUT Q2 Q1 K1 103/2KV CN2 CN4 R24 R23 CON4 CON4 LR2 2A 30k 30k N
in „QJE 3005E III Schaltbild“ · Analoge Elektronik und Schaltungstechnik ·
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b.pdf
V- V- 16 16 V+ C1 + IC1p IC3p 1 2 8 8 R1 100nF 3 1 2 R18 T4 33 IC1 IC3a 1 2 1 R-0402 2 M M BT3904 V- CTRDIVm I0 5 A 9 3 I1 B 1 SEN C3 2 I2 10 R3 5 CYI\ G4 4 I3 C 11 10 U/D\ 4M[2DN] D 12 3 1 2 4M[1UP] E 13 R2 T1 33 1 LD F 1 2 1 K2 9 B/D\ M6[m=10] 6 PHASE 15 V- M5
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FastSoftPWM.asm
,r14 ;1 ld r14,X+ ;2 out PORTC,r14 ;1 sbi PORTA,2 ;2 out PORTA,r15 ;1 ld r14,X+ ;2 out PORTB,r14 ;1 ld r14,X+ ;2 out PORTC,r14 ;1 sbi PORTA,3 ;2 out PORTA,r15 ;1 ld r14,X+ ;2 out PORTB,r14 ;1 ld r14,X+ ;2 out PORTC
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74HCT4543_2.pdf
SEGMENT LATCH/DECODER/DRIVER SCHS281A – REVISED MAY 2003 logic diagram 7 BI 9 a 5 D0 D0 Q0 10 Latch b Q0 LD LD LD LD 11 3 c D1 D Q1 Latch Q1 12d LD LD LD LD LD Qn D n Q n Dn P ≡ Qn 2 n D2 D2 Q2 LD LD Qn Latch LD LD P LD LD Q2 n LD LD 13 e LD 4 D3 D3 Q3 Latch 15f Q3 LD LD LD LD 1 LD LD 14 g LD 6 PH POST OFFICE
in „Welcher Treiber zu 7 Segment LED mit Common Anode“ · Mikrocontroller und Digitale Elektronik ·
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Datei
GRAPHICS.s
* break; jp =24 * case 7: =32: * ypos := ypos - DE; ld hl,(ypos) and a sbc hl,de ld (ypos),hl * case 6: =33: * xpos := xpos - DE; ld hl,(xpos) and a sbc hl,de ld (xpos),hl * break; jp =24 * } jr =24 =25: and a jr z,=27 cp 7 jr z,=32 jr nc,=24 dec a jr z,=26 dec a jr z,=29 dec a jr z,=28 dec a jr z,=31 dec a jr z,=30 dec a jr z,=33 =24: * gstate = 0; xor a ld (gstate),a * * pop IY; pop iy * } ret!! .sect data * * g_point:: .sect code g_point:: * { * comd (FIGS); ld l,76 rst 0x18 * parb (RIGHT); ld l,2 rst 0x28 * * switch (type)
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
GRAPHICS.s
* break; jp =24 * case 7: =32: * ypos := ypos - DE; ld hl,(ypos) and a sbc hl,de ld (ypos),hl * case 6: =33: * xpos := xpos - DE; ld hl,(xpos) and a sbc hl,de ld (xpos),hl * break; jp =24 * } jr =24 =25: and a jr z,=27 cp 7 jr z,=32 jr nc,=24 dec a jr z,=26 dec a jr z,=29 dec a jr z,=28 dec a jr z,=31 dec a jr z,=30 dec a jr z,=33 =24: * gstate = 0; xor a ld (gstate),a * * pop IY; pop iy * } ret!! .sect data * * g_point:: .sect code g_point:: * { * comd (FIGS); ld l,76 rst 0x18 * parb (RIGHT); ld l,2 rst 0x28 * * switch (type)
in „Gibt es eine Programmiersprache mit diesem Schleifentyp?“ · Offtopic ·
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PDF
MB1136.pdf
.SCHDOC NRST NRST TCK TCK TMS TMS SWO SWO STLK_RX USART_TX STLK_TX USART_RX MCO MCO PWR_ENn U3 VIN LD1117S50TR D4 E5V 0 3 P0U303 P0U302 C Vin Vout P0U304 1 P0D401 P0D402 P Tab 4 7 C16 0 C STPS2L30A 1 0 P C17 10uF(25V) 0 0 0 JP5 P P C 10uF P P0JP503 +5V U4 LD39050PU33R P2JP502 0 P0U406 P03403 3 VI PG
in „Mikrocontroller Spannung/Strom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Nucleo_Board_Schematics.pdf
.SCHDOC NRST NRST TCK TCK TMS TMS SWO SWO STLK_RX USART_TX STLK_TX USART_RX MCO MCO PWR_ENn U3 VIN LD1117S50TR D4 E5V 0 3 P0U303 P0U302 C Vin Vout P0U304 1 P0D401 P0D402 P Tab 4 7 C16 0 C STPS2L30A 1 0 P C17 10uF(25V) 0 0 0 JP5 P P C 10uF P P0JP503 +5V U4 LD39050PU33R P2JP502 0 P0U406 P03403 3 VI PG
in „Erbitte Hilfe bei Fehlersuche - STM32F446“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CM_2_metre_Lindenblad.txt
Angles, L=37.61-in, assuming 13.3-in from Center. CM holl_ands mods: Add FR/RP, Just ONE vs Multiple LD Cards, Convert All SYmbols. CM Parasitic Array mod: Add 37.93-in Vertical Dipole, which is ONLY Active Element. CM Angle of the Parasitic Array Elements must be REVERSED to return to RHCP. CM Active
in „EZNEC Parasitic Lindenblad Antenna for 70cm File“ · HF, Funk und Felder ·
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Datei
anschluss.txt
1 12v sieht wie ich finde mit 9v besser aus 2 gnd 3 3,3v 4 gnd 5 cs1\ 6 rs\ 7 lwr\ 8 lrd\ 9 gnd 10 ld0 -> db0 11 ld1 12 ld2 13 ld3 14 ld4 15 ld5 16 ld6 17 ld7 -> db7 18 gnd 19 pl0 -> db8 20 pl1 21 pl2 22 pl3 23 pl4 24 pl5 25 pl6 26 pl7 -> db15 27 nc 28 nc 29 nc 30 nc 31 pb1\ reset 32 nc 33 gnd (mode
in „VW-Werbebeilage mit Display (vidipri)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
flash.txt
,Y+o3C L33AD: ldd r26,Y+o3D std Y+o3E,r10 L33AF: std Y+o3F,r26 in r11,p00 L33B1: in r27,p01 in r11,p12 L33B3: in r27,p13 in r11,p24 L33B5: in r27,p25 in r11,p36 L33B7: in r27,p37 out p08,r11 L33B9: out p09,r27
in „[AVR] FM-Transmitter für 1,50EUR --> Ansteuerung?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
footprint.txt
# LEGEND : #========== # ST = lines (or pages) with STORE only # LD = lines (or pages) with LOAD only # CD = lines (or pages) with CODE only # LD+ST = lines (or pages) with LOAD and SOTRE # CD+LD = lines (or pages) with CODE and LOAD # CD+ST = lines (or pages) with CODE
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PDF
RPM.pdf
LED CLK SDI8 CLK SDI9 CLK SDI7 3 CLK SDO 14 3 CLK SDO 14 3 CLK SDO 14 LED AS1109 LED 0 0 0 0 0 0 VDD LD 4 LD OEN 13 OEN LD 4 LD OEN 13 OEN LD 4 LD OEN 13 OEN VDD B 5 OUT0 OUT7 12 5 OUT0 OUT7 12 5 OUT0 OUT7 12 B U13 R55 6 11 6 11 6 11 1 16 OUT1 OUT6 OUT1 OUT6 OUT1 OUT6 GND VDD 7 10 7 10 7 10 SDI4 2 15 OUT2
in „Schaltplan Rotordisplay“ · Mikrocontroller und Digitale Elektronik ·
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Datei
netzuhr_.asm
rjmp L0376 L0368: cpi r16,0x03 breq L036B rjmp L0376 L036B: sbi PORTD, 0 ; PORTD Bit 0 ldi XL,0x70 ld ZL,X clr ZH ldi XL,0x64 ldi r25,0x01 rcall L03F7 ldi XL,0x6A ld temp,X subi temp,0xFF st X,temp L0376: ldi XL,0x63 ld temp,X bst temp, 1 ldi XL,0x61 clr temp bld temp, 0 st X,temp lds r20,DS65 lds r16
in „Reparaturtips für VFD von alter Elektronika-Leuchte“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
341001.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 „TFT Display Ansteuern, Tipps und Tricks“ · Mikrocontroller und Digitale Elektronik ·