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Datei
out.txt
3302 .3 ADDS r3,#2 0x08002dde: 0052 R. LSLS r2,r2,#1 0x08002de0: 5283 .R STRH r3,[r0,r2] 0x08002de2: bc80 .. POP {r7} 0x08002de4: 46b8 .F MOV r8,r7 0x08002de6: bdf0 .. POP {r4-r7,pc} 0x08002de8: 3101 .1 ADDS r1,#1 0x08002dea: 33ff .3 ADDS r3,r3,#0xff 0x08002dec: 31ff .1 ADDS r1,r1,#0xff 0x08002dee: e7ef
in „ARM Bootloader mit ELF, Einstieg nicht bei 0x08000000“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LatFET2019_09_27_THD20kHz.asc.txt
0.1u startup uic\n.option numdgt=15\n.option reltol=1e-6\n.option ptrantau=0 TEXT 112 -936 Left 1 !* BC550C - created March 1, 2011 copyright Cordell Audio\n.MODEL BC550C npn IS=45e-15 BF=689 VAF=162 IKF=0.09 ISE=4600e-15 NE=2 NF=0.9965 RB=167 RC=1 RE=0.04 CJE=18.7e-12 MJE=0.35 VJE=0.75 CJC=6.2e-12 MJC
in „Class AB Audioverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
debug_error.asm
70 b6: 80 83 st Z, r24 | WDT_PRESCALER; // Prescaler Value sei(); b8: 78 94 sei ba: 08 95 ret 000000bc <__vector_6>: } ISR( WDT_vect) { bc: 1f 92 push r1 be: 0f 92 push r0 c0: 0f b6 in r0, 0x3f ; 63 c2: 0f 92 push r0 c4: 11 24 eor r1, r1 // note: a watchdog timer reset is automatically done per hardware
in „Fehler bei einfacher Integer-Division?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
8080int-jmp.asm
Carry Flag|CY=~CY | ;|CP s |***V1*|Compare |A-s | ;|CPD |****1-|Compare and Decrement|A-[HL],HL=HL-1,BC=BC-1| ;|CPDR |****1-|Compare, Dec., Repeat|CPD till A=[HL]or BC=0| ;|CPI |****1-|Compare and Increment|A-[HL],HL=HL+1,BC=BC-1| ;|CPIR |****1-|Compare, Inc., Repeat|CPI till A=[HL]or BC=0| ;|CPL |--1-
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
8080int-jmp.asm
Carry Flag|CY=~CY | ;|CP s |***V1*|Compare |A-s | ;|CPD |****1-|Compare and Decrement|A-[HL],HL=HL-1,BC=BC-1| ;|CPDR |****1-|Compare, Dec., Repeat|CPD till A=[HL]or BC=0| ;|CPI |****1-|Compare and Increment|A-[HL],HL=HL+1,BC=BC-1| ;|CPIR |****1-|Compare, Inc., Repeat|CPI till A=[HL]or BC=0| ;|CPL |--1-
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
8080int-jmp.asm
Carry Flag|CY=~CY | ;|CP s |***V1*|Compare |A-s | ;|CPD |****1-|Compare and Decrement|A-[HL],HL=HL-1,BC=BC-1| ;|CPDR |****1-|Compare, Dec., Repeat|CPD till A=[HL]or BC=0| ;|CPI |****1-|Compare and Increment|A-[HL],HL=HL+1,BC=BC-1| ;|CPIR |****1-|Compare, Inc., Repeat|CPI till A=[HL]or BC=0| ;|CPL |--1-
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
8080int-jmp.asm
Carry Flag|CY=~CY | ;|CP s |***V1*|Compare |A-s | ;|CPD |****1-|Compare and Decrement|A-[HL],HL=HL-1,BC=BC-1| ;|CPDR |****1-|Compare, Dec., Repeat|CPD till A=[HL]or BC=0| ;|CPI |****1-|Compare and Increment|A-[HL],HL=HL+1,BC=BC-1| ;|CPIR |****1-|Compare, Inc., Repeat|CPI till A=[HL]or BC=0| ;|CPL |--1-
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
8080int-jmp.asm
Carry Flag|CY=~CY | ;|CP s |***V1*|Compare |A-s | ;|CPD |****1-|Compare and Decrement|A-[HL],HL=HL-1,BC=BC-1| ;|CPDR |****1-|Compare, Dec., Repeat|CPD till A=[HL]or BC=0| ;|CPI |****1-|Compare and Increment|A-[HL],HL=HL+1,BC=BC-1| ;|CPIR |****1-|Compare, Inc., Repeat|CPI till A=[HL]or BC=0| ;|CPL |--1-
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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PDF
anzeige.pdf
5 R14 SER QA 5 R30 13 QB 6 R15 13 QB 6 R31 8 SCK QC 7 R16 8 SCK QC 7 R32 SCL QD 14 R17 SCL QD 14 R33 QE R18 QE R34 12 RCK QF 15 R19 12 RCK QF 15 R35 QG 16 R20 QG 16 R36 QH 17 QH 17 GND GND 9 G QH* 18 9 G QH* 18 TPIC6B595N TPIC6B595N C V C C C C V V V V C1 C2 C3 C4 +C5 +C6 +C7 +C8 IC1PWRIC2PWRIC3PWRIC4PWR
in „Zweifarb LED-Matrix (mal wieder), Kommentare“ · Mikrocontroller und Digitale Elektronik ·
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PDF
opamp.pdf
CSHUNT=1p V k v C 4 2 1 h .options ITL1=4000 8 D R r .options ITL2=8000 X 1 .nodeset all=0 B R26 R33 } 1 2 1 2 2 o E C13 2 m r=100 r=100 FCX558.lib B {cmos} R { C5 1 r 4.7p Q10 C S D G Q22 G Q15 E E IXTH10P60 R5 R17 2 e IXTH24N50L 1 2 B BC857C.lib BC857C.lib B 1 2 out 0 u D 2 } S Q7 2 s 9 o D7 bv=20
in „Slew Rate Erhöhung für diskrete Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Heuzung_200111_-_direkt_1.txt
7F 00 0C 63 A0 FF 00 03 0F 39 00 61 07 00 7F 00 03 0F 39 3F 13 33 00 7F 00 03 0F 6E 00 61 13 13 1A 00 7F 00 03 0F 39 1F 7E 03 00 7F 00 03 00 AC 00 F7 00 03 00 AA 00 A8 00 F7 00 03 00 A6 00 A4 00 F7 00 03 00 BD 00 F7 00 03 00 7A 00 DE 00 F7 00 03 00 79 00 BC 00 F7 00
in „Junkers HT-Bus Heatronic 3 Schnittstelle“ · Haus & Smart Home ·
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PDF
MSi001_R3v2.0.pdf
Hz – 100 kHz 0.3 º rms Notes: 1) Matched to 1 k source 2) Two tones at 2.3 MHz & 3.8 MHz each of 33 mVp-p, balanced input. LO1 at 130 MHz, LO2 at 132.55 MHz, IM2 products at 450 kHz at I/Q outputs 3) Two tones at 2.3 MHz & 3.8 MHz each of 0.33 Vp-p, balanced input. LO1 at 130 MHz, LO2 at 132.55 MHz
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Datei
MapFile.txt
/../lib\libBcAll.a(halTaskManager.o) ../../BitCloud/Components/../lib\libBcAll.a(halAppClock.o) (halTaskFlags4) ../../BitCloud/Components/../lib\libBcAll.a(i2cPacket.o) ../../BitCloud/Components/../lib\libBcAll.a(
in „AVR 5 Breakpoint Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DDS20_KM_G_030523.pdf
P0.0/INT4 4 32 C1 C2 10u C3 C4 C35 1u 21 P0.1/SCK COM0 COM0 + SMD + SMD 22 COM1 5 31 COM1 1u J310 BC848C C37 23 P0.2/SO COM2 6 30 COM2 Tantal SMDn Tantal SMDn SMD 1u K K P0.3/SI COM3 7 29 COM3 IC5 2 M 2 0 SMD 2 K 2 R 1 M R 0 R 0 1 16 R 1 R 1 R 1 R 4 1n R 1 DR1 1 1 24 P1.0/INT0 SEG0 3 1 SEG0 FS ADJ COMP
in „AD811 Bezug für ELV DDS20“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DDS20_KM_G_030523.pdf
P0.0/INT4 4 32 C1 C2 10u C3 C4 C35 1u 21 P0.1/SCK COM0 COM0 + SMD + SMD 22 COM1 5 31 COM1 1u J310 BC848C C37 23 P0.2/SO COM2 6 30 COM2 Tantal SMDn Tantal SMDn SMD 1u K K P0.3/SI COM3 7 29 COM3 IC5 2 M 2 0 SMD 2 K 2 R 1 M R 0 R 0 1 16 R 1 R 1 R 1 R 4 1n R 1 DR1 1 1 24 P1.0/INT0 SEG0 3 1 SEG0 FS ADJ COMP
in „Welcher Microcontroller ist das, DSS20 ELV?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
kicad-gdb-error-bt.txt
xxxxxx/kicad-source-mirror-master-20190222/pcbnew/swig/python_scripting.cpp:213 #66 0x00007fffd0b053bc in scriptingSetup() () at xxxxxx/kicad-source-mirror-master-20190222/pcbnew/pcbnew.cpp:293 #67 0x00007fffd0b0580e in PCB::IFACE::OnKifaceStart(PGM_BASE*, int) (this=0x7fffd226eb60 <PCB::kiface>, aProgram
in „KiCad 5.0.2 - Absturz beim Footprint-Editor Aufruf“ · Platinen ·
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Datei
10.4._0646_uhr_TX_2475__RX_2403_2423_2440.txt
00 01 23 FB 44 8C 09:32:16 So 220410 3 81 00 01 80 01 00 01 5F 39 5F 39 00 00 00 00 47 DE 0C 00 09:33:16 So 220410 2 01 00 01 01 3F 00 37 00 AF 01 51 00 1B 00 5A 00 00 22 00 2 02 86 10 00 00 79 4D 00 18 00 0E 08 F2 13 8B 00 FD BC 00 1 83 00 00 00 0B 03 E8 00 6D 00 01 94 3B 35 8B 09:34:17 So 220410 3
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.txt
00B8 lcall seg000_19D seg000:00BB ret seg000:00BB ; End of function seg000_AF seg000:00BB seg000:00BC seg000:00BC ; ŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠ S U B R O U T I N E ŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠŠ seg000:00BC seg000:00BC seg000:00BC seg000_BC: ; CODE XREF: seg000_1A4+197 p seg000:00BC ; seg000_1A4+1A5 p .
in „source für at89c2051 nach 87c51 umwandeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
harman_kardon_hkts200-230_hkts210-230_sub.pdf
0 VSS OUT2B P * 5 5 C 4 R45 R R47 9 P 100nF P F A 22uH 0 0 0 0 0 0 0 0 100nF 100PF 0 0 0 0 CN3 P 0 BC846B 33 P0IC9033 P0IC904 4 0 u 1 2 C s s s0 P 0s s s0 P s s s0 P 10k VCC 0 1M 5 C59 VSS VCC2B 6 0 7 6 0 0 D2 P SPK+ 0 0 0s s0 0 0s 0 0 0s R78 4 0 C C . C C P C C62 C s s sPs1 Ps s sP2 s s sPs3 SPK+ P0R7802P0R7801
in „Überspannung Herman Kardon Subwoofer“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
simple_server.c
0x47,0x49,0x46,0x38,0x39,0x61,0x56,0x00,0x41,0x00,0xF7,0x00,0x31,0xFF,0xFF, 0xFF,0x09,0x6B,0xD6,0xF8,0xFB,0xFF,0xCC,0xCC,0xCC,0x99,0x99,0x99,0x33,0x99, 0xFF,0xE8,0xEC,0xEF,0xBD,0xBD,0xBD,0x22,0x87,0xF5,0xD0,0xDE,0xED,0xA4,0xA4, 0xA4,0x09,0x78,0xEF,0xBC,0xCD,0xDF,0x8C,0xB0,0xD8,0xF2,0xF6,0xFA,0x99,0xCC, 0xFF,0x4D,0x8D,0xD4,0x6B,0x9E,0xD5,0xE6,0xE6,0xE6,0x9A
in „Webpage Webserver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Weidezaun_S04_ELV50.pdf
:1000 Ü=1:5 80s R8 ER900 2 H1 Glimmlampe 0,24€ 0,5mA Zünd 94VAC Brenn 55 VAC, 390 kOhm D4,0x10,5mm 33G652 Buerklin.com 2 C9 16/75mARM15/17,5x5 83D796+83D780+83D800 <t 20M D10 R9 1k 3 *THR1 D6 Neon Bulb 4x10mm1,79€/25 G BL1 PCB1 0,11/1,1mA B2 T1 1N5388B 200V±5% 5mA 5WD4x9mm017 Onsemi 35V 1TYN612 UF4007 UF4007 1,7V@1A 75ns 0,81€/100 (1N4007 1000V 1A 1,5us DO41) D BL35 PCB90_70_PAD31_24 -5Vmax BC337-25 ZY200 2WDO204AM Diotec 5 BL2 PCB120_80_PAD42_30 R14 D12 C7 C8 R10 TYN612 600V 8-12A 120Apk@10ms Ig15mA Ih30mA Rth=2,5°C/W TO220 1,85€/10 (R5min<100k) t BL35 nc4R7 1N4148 E1 45V 0,5A hfe100-600
in „Weidezaun gegen Schnecken mit Netztrafo und Rohr DN160 für Hobbygärtner“ · Projekte & Code ·
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PDF
translate.pdf
23 F0 23 e E 07 08 12 92 24 F0 24 f F 07 09 21 A1 2B F0 2B g G 07 0A 22 A2 34 F0 34 h H 07 0B 23 A3 33 F0 33 i I 07 0C 17 97 43 F0 43 j J 07 0D 24 A4 3B F0 3B k K 07 0E 25 A5 42 F0 42 l L 07 0F 26 A6 4B F0 4B m M 07 10 32 B2 3A F0 3A n N 07 11 31 B1 31 F0 31 o O 07 12 18 98 44 F0 44 p P 07 13 19 99 4D
in „USB Tastatur Scancode“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Helvetica_12.C
/* CH_31 "one" cnt= 9 ab 1046*/ 4, 31, 6, 12, /* CH_32 "two" cnt= 9 ab 1055*/ 4, 40, 6, 12, /* CH_33 "three" cnt= 9 ab 1064*/ 4, 49, 6, 12, /* CH_34 "four" cnt= 9 ab 1073*/ 4, 58, 6, 12, /* CH_35 "five" cnt= 9 ab 1082*/ 4, 67, 6, 12, /* CH_36 "six" cnt= 9 ab 1091*/ 4, 76, 6, 12, /* CH_37 "seven" cnt
in „C -> Zeichen aus Font suchen / rechnen?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MICRF104BM.pdf
V = 4V 12 17 mA DDPWR SPACE supply currentOFF 22 30 mA VDDPWR = 4V 9 12 mA Mean operating current 33% mark/space ratio, Note 4 25 34 mA 33% mark/space ratio, V = 4V, Note 4 10 14 mA DDRWR 5V Max. output current 15 mA Note 9, DDPWR = 4V 35 mA 5V Output Voltage range Note 9 4.75 5.25 V RF Output Section
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Datei
Eclipse.txt
TWI_MASTER_WIEN_bm | TWI_MASTER_ENABLE_bm; twi->interface->MASTER.BAUD = baudRateRegisterSetting; 1bc: e9 81 ldd r30, Y+1 ; 0x01 1be: fa 81 ldd r31, Y+2 ; 0x02 1c0: 01 90 ld r0, Z+ 1c2: f0 81 ld r31, Z 1c4: e0 2d mov r30, r0 1c6: 8e 81 ldd r24, Y+6 ; 0x06 1c8: 85 83 std Z+5, r24 ; 0x05 twi->interface
in „XMega Eclipse, AVR-Studio Interrupt Unterschiede“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bootload.lst
****************************************** 11 #define PAGESIZE 32 31 32 #define byte3(x) ((x)>>16) 33 #define byte2(x) ((x & 0xff00)>>8) 34 #define byte1(x) (x & 0xff) 35 36 37 /* 38 Atmel's AVR assembler is case insensitive, gcc is not. 39 mangled_case.h covers the cases where the representations in
in „Peter Danneggers Bootloader (fastboot) für AVR-GCC-Toolchain“ · Projekte & Code ·
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Datei
main.lss.txt
TIMERVALUE - starttime) < CLOCK_T_320us) { b6: 22 b7 in r18, 0x32 ; 50 b8: 23 1b sub r18, r19 ba: 2c 33 cpi r18, 0x3C ; 60 bc: e0 f3 brcs .-8 ; 0xb6 <clockWait+0x6> /* wait time * 320 us */ void clockWait(uint8_t time) { uint8_t i; for (i = 0; i < time; i++) { be: 9f 5f subi r25, 0xFF ; 255 c0: 98 17 cp
in „2 Programme in einem AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xc164cm_ds_v1.4_2007_03.pdf
0.1 V – AGND SS SS Analog input voltage range VAIN SR V AGND V AREF V 2) 3) Basic clock frequency BC 0.5 20 MHz Conver4)on time for 10-bit C10P CC 52 × tBC + tS+ 6 × tSYS – Post-calibr. on result t CC 40 × t + t + 6 × t – Post-calibr. off C10 BC S SYS Conversion time for 8-bit C8P CC 44 × tBC + tS+
in „xc164cm16ff und cc770“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Endstufe-Protect.pdf
470 a R9 Q11 1 2 4 9 7 R16 s 10K 1 1 MMBT5551L 3 A Q10A 2 Q12 GND R1 6 6 2 MMDT5401 1 MMBT5551L OutA 33K Q5A Q8A 6 2 1 2 2 C3 D6 +24V R17 2 R2 FFB5551 FFB5551 104P 4007 D7 220 J3 OutB 33K 1 1 4007 3 Clip2 3 Conn_01x04 C1 C6 Q14 R18 470 4 47U 220U 1 MMBT5551L 2 2 1 2 1 GND C2 LS1 LS2 220U 1 J1 GND Speaker
in „(AB-)Endstufenreparatur Transistoren parallel - Emitterwiderstände ersätzen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SV1-505A.pdf
Manufacturer UL Number no. Description Polysol P155/ E143312/ Round Polysol-180 Elektrisola E331840 BC-Polyester, OC-Polyamide (or) 1 Enamelled Polyurethane modified V 155,V180 Synflex E335481 Copper Wire Preci-9/ Preci-10 Precision E174288 Techno UL as per 2 Silicon Sleeve Silicon Elastomer Technoflex-SR700 Polymer E254189 3 Bobbin Polyamide 66 (PA66), glass reinforced 70G33L E I DUPOND E41938 4 Case Polyamide 66 (PA66), glass reinforced 70G33L E I DUPOND E41938 5 Potting Polyurethane (PUR) Tedistac D45003 / Dow France E130092 Compound Isostac D45003 SAS TESTING DETAILS:
in „LTSpice: Sprung im Strom durch Diode“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MRF89XAM8A.pdf
power setting with 8 Steps of typ. 3 dB — -8.5 — dBm Minimum power setting PN Phase Noise — -112 — dBc/Hz Measured with a 600 kHz offset at the transmitter output TXSP Transmitted Spurious — — -47 dBc At any offset between 200 kHz and 600 kHz, unmodulated carrierdev= 50 kHz (2) Tx2 Second Harmonic No
in „Was darf man von einer PCB-Antenne erwarten?“ · HF, Funk und Felder ·
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PDF
433MHz__odul_antenne_0900766b802fb241.pdf
Transmitter & Receiver • Low Profile Ceramic DIL Package • Data Rates To 20 Kbits/S • 433.92 or 433.33MHz Operation • 2 Selectable RF Channels • Narrowband Crystal Controlled • Optimal Range 200m • Supply Voltage 3-5V • Very Stable Operating Frequency • Operates from –20 to +70 C • Standby Mode 8uA Applications
in „Funkempfänger/sender gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_ADC_LTC2287.pdf
Range, 65Msps fIN = 30MHz, 2V Range, 65Msps 80 120 70 110 dBFS 100 60 dBFS S S 90 B B 80 d 50 D N dBc N 70 dBc c 40 c 60 d d R 30 R 50 S F 40 80dBc SFDR 20 S 30 REFERENCE LINE 20 10 10 0 0 –60 –50 –40 –30 –20 –10 0 –60 –50 –40 –30 –20 –10 0 INPUT LEVEL (dBFS) INPUT LEVEL (dBFS) 228876 G13 228876 G14
in „Programmieren des LTC2287 Dual 10-Bit ADCs“ · FPGA, VHDL & Co. ·
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PDF
4astepper.pdf
1N4148 8 1K2 4093 L6203 C7 4093 LED r 6 22n C e Phase3 6 IC1B R5 p IC1D 47K h 4 12 R11 C 5 11 T1 13 4K7 BC640 R2 C8 4093 R7 0.1ohm 5W 220n 47K 4093 SetupofIHoldandIMax: R13 IHold:Motorwinding currency ifpin IMaxIntOn = Low GND R10 9K IMax:Motorwinding currencyifpin IMaxIntOn =High 33K Step1: SetupP3 toIHold
in „L297 + L6203 <- Frage zu Stromregelung / Ruhestromabsenkung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3KV-Switch.pdf
R23 1 VCC -VOUT 5 G1 1 R1 vcc Q1 Q2 10M 10M 10M C CM/NC 6 6 R51 1k2 R11 U$11 2 GND +VOUT 7 V1 C21 R BC817 BC807 p p 2 p 3 G1 470R 4 C 4 C 4 C U$22 VL-0512SSH6 OPI1268 2 1 VCC -VOUT 5 G2 2 10x SPD02N80C3 R24 R25 R26 C CM/NC 6 R R2 U$2 V2 Q3 2 GND +VOUT 7 V2 C22 vcc R52 Q4 R12 U$13 1 1 1 X1-2 1$23 VL-0512SSH6
in „Hochspannung schnell schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SMI1.pdf
LAN_A_N L L T R A O S C R C M D DO R29 2 LAN_A_P O O 7 6 5 4 3 2 1 0 2 2 L A I O L S S1 T T T T T T 33K D19 2 3 LAN_B_N 0 1 0 1 1 2 3 6 S S + - O O O O O O O O 2 3 T T 4 C D 5 _ _ _ _ _ 6 G G G G G E 1N4148 3 +5V N N 5 5 A A A A O O S SB P P P P P P P P I N N A A N C C N P P P P PI N A A A A A E A 4 4
in „Gibt es irgendwo brauchbare Infos zu SMI ?“ · Haus & Smart Home ·
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Datei
ohne_kontrollausgabe.asm
byte. char *str = &buf[sizeof(buf) - 1]; *str = '\0'; 2f8: 19 a2 std Y+33, r1 ; 0x21 // prevent crash if called with base == 1 if (base < 2) base = 10; 2fa: 42 30 cpi r20, 0x02 ; 2 2fc: 08 f4 brcc .+2 ; 0x300 <Print::printNumber(unsigned long, unsigned char) [clone .constprop
in „AVR Inline Optimierung kaputt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ttester.pdf
9 PB0(ICP) 15 PB6(XTAL1/TOSC1) PB1(OC1A) VCC R10 22p 8MHz PB2(OC1B) 16 C12 PB3(MOSI/OC2) 17 10k T3 33k 10 PB7(XTAL2/TOSC2) PB4(MISO) 18 22p PB5(SCK) 19 BC557C 7 3 1 GND Ubat R 3 R15 2 2 +5V T2 27k VCC PD0(RXD) 3 10k 3 VEE 7 PD1(TXD) 4 4 LED1 Test BC547 VCC PD2(INT0) 5 5 RS C4 PD3(INT1) 6 R/W IC2 VCC 100n PD4(XCK/T0) 6 7 E 1 IN OUT T1 R8 8 GND PD5(T1) 11 8 D0 2 C9 GND k PD6(AIN0) 12 D1 D C5 BC547 C2 R 0 27k PD7(AIN1) 13 9 D2 L 10u 100n C6 100n 10n 1 10 D3 11 D4 VCC 12 D5 Button 13 1 ISP 2 VCC 14 D6 MISO VCC R14 15 D7 3 SCK MOSI 4 16 Reset 5 6 33−270 RESET GND Abbildung 2.1. Neue TransistorTester-Schaltung
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PDF
ttester.pdf
9 PB0(ICP) 15 PB6(XTAL1/TOSC1) PB1(OC1A) VCC R10 22p 8MHz PB2(OC1B) 16 C12 PB3(MOSI/OC2) 17 10k T3 33k 10 PB7(XTAL2/TOSC2) PB4(MISO) 18 22p PB5(SCK) 19 BC557C 7 3 1 GND Ubat R 3 R15 2 2 +5V T2 27k VCC PD0(RXD) 3 10k 3 VEE 7 PD1(TXD) 4 4 LED1 Test BC547 VCC PD2(INT0) 5 5 RS C4 PD3(INT1) 6 R/W IC2 VCC 100n PD4(XCK/T0) 6 7 E 1 IN OUT T1 R8 8 GND PD5(T1) 11 8 D0 2 C9 GND k PD6(AIN0) 12 D1 D C5 BC547 C2 R 0 27k PD7(AIN1) 13 9 D2 L 10u 100n C6 100n 10n 1 10 D3 11 D4 VCC 12 D5 Button 13 1 ISP 2 VCC 14 D6 MISO VCC R14 15 D7 3 SCK MOSI 4 16 Reset 5 6 33−270 RESET GND Abbildung 2.1. Neue TransistorTester-Schaltung
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ttester.pdf
9 PB0(ICP) 15 PB6(XTAL1/TOSC1) PB1(OC1A) VCC R10 22p 8MHz PB2(OC1B) 16 C12 PB3(MOSI/OC2) 17 10k T3 33k 10 PB7(XTAL2/TOSC2) PB4(MISO) 18 22p PB5(SCK) 19 BC557C 7 3 1 GND Ubat R 3 R15 2 2 +5V T2 27k VCC PD0(RXD) 3 10k 3 VEE 7 PD1(TXD) 4 4 LED1 Test BC547 VCC PD2(INT0) 5 5 RS C4 PD3(INT1) 6 R/W IC2 VCC 100n PD4(XCK/T0) 6 7 E 1 IN OUT T1 R8 8 GND PD5(T1) 11 8 D0 2 C9 GND k PD6(AIN0) 12 D1 D C5 BC547 C2 R 0 27k PD7(AIN1) 13 9 D2 L 10u 100n C6 100n 10n 1 10 D3 11 D4 VCC 12 D5 Button 13 1 ISP 2 VCC 14 D6 MISO VCC R14 15 D7 3 SCK MOSI 4 16 Reset 5 6 33−270 RESET GND Abbildung 2.1. Neue TransistorTester-Schaltung
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Soldering_Iron_schematics.pdf
▯1 ▯2 ▯3 ▯4 ▯5 ▯6 20V-5V Step-down 20V 5V U1 D1 1 2 L1 ▯A 3 VIN OUTPUT 4 ▯A 6 GND FB 33uH SS32 C1 C2 5 GND D2 C4 C5 470uF 10uF C3 ON_OFF SS32 470uF 10uF C6 100nF 100nF LM2596S-5.0 GND USBC-Data USBC-PD Trigger logic 5V-3.3V Voltage Regulator DATA1 VBUS A4 B6 DP 20V A9 VBUS D+ A6 DP POWER1
in „ESP gesteuerter JBC T245 Lötkolben mit USB-C PD - Schematic review“ · Mikrocontroller und Digitale Elektronik ·
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ESC_P_Part_1.pdf
relative horizontal position Format Class 2 ASCII <MOVX> nL n H Binary 010F xxxxB nL n H Parameter range #BC = Low nibble value F = 0, 1 0 ≤ nL≤ 255 0 ≤ nH≤ 127 F #BC value Positioning parameter (k) Command F = 0 #BC = k #BC (–8 ~ 7) <MOVX> F = 1 #BC = 1 nL(–128 ~ 127) <MOVX> n L #BC = 2 nL+ nH × 256 <MOVX>
in „Drucker für C64´er“ · Markt ·
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Datei
crc32.c
0x8BBEB8EA, 0xFCB9887C, 0x62DD1DDF, 0x15DA2D49, 0x8CD37CF3, 0xFBD44C65, 0x4DB26158, 0x3AB551CE, 0xA3BC0074, 0xD4BB30E2, 0x4ADFA541, 0x3DD895D7, 0xA4D1C46D, 0xD3D6F4FB, 0x4369E96A,//20 0x346ED9FC, 0xAD678846, 0xDA60B8D0, 0x44042D73, 0x33031DE5, 0xAA0A4C5F, 0xDD0D7CC9, 0x5005713C, 0x270241AA, 0xBE0B1010
in „Ideen um CRC-Routine zu beschleunigen? (AVR, gcc)“ · Mikrocontroller und Digitale Elektronik ·
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Hantek_DSO5062B_250MHz_input_stage_mod.pdf
that JFET cannot directly go on the BC846B land’s, it requires some nasty “free- air” “single-leg” soldering magic. 4. R01_25 I completely fail on this one. Does anybody know why they could have introduced this resistor? Is that an attempt
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TI_ads5102_03.pdf
number of bits f = 3.5 MHz 9.0 9.3 ADS5103 Bits f = 20 MHz 9.2 f = 3.5 MHz 58 73 ADS5102 f = 20 MHz 71 dBc SFDR Spurious free dynamic range f = 3.5 MHz 64 69 ADS5103 dBc f = 20 MHz 66 f = 3.5 MHz –71 –55 ADS5102 dBc f = 20 MHz –71 THD Total harmonic distortion f = 3.5 MHz –65 –62 ADS5103 dBc f = 20 MHz –68 f = 3.5 MHz 56 58 ADS5102 f = 20 MHz 57 dBc SNR Signal-to-noise ratio f = 3.5 MHz 57 59 ADS5103 dBc f = 20 MHz 58 f = 3.5 MHz 54 58 ADS5102 dBc f = 20 MHz 57 SINAD Signal-to-noise and distortion ADS5103 f = 3.5 MHz 56 58 dBc f = 20 MHz 57 † power
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
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LM7372MR-NOPB-Texas-Instruments.pdf
Differential Phase (Note 9) 0.02 deg D hd2 Second Harmonic Distortion V OUT= 2VP-P, L = 100Ω −80 dBc F = 1MHz, A = +2 IN V V OUT= 16.8VP-P RL= 100Ω −73 dBc hd3 Third Harmonic Distortion V OUT= 2VP-P, L = 100Ω −91 dBc FIN 1MHz, A V +2 V OUT= 16.8VP-P RL= 100Ω −67 dBc IMD Intermodulation Distortion Fin
in „Gleichspannungsquelle mit µC genau steuern“ · Analoge Elektronik und Schaltungstechnik ·
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jep106k.pdf
1 0 1 9D 30 Exel 1 0 0 1 1 1 1 0 9E 31 Atmel 0 0 0 1 1 1 1 1 1F 32 SGS/Thomson 0 0 1 0 0 0 0 0 20 33 Lattice Semi. 1 0 1 0 0 0 0 1 A1 34 NCR 1 0 1 0 0 0 1 0 A2 35 Wafer Scale Integration 0 0 1 0 0 0 1 1 23 36 IBM 1 0 1 0 0 1 0 0 A4 37 Tristar 0 0 1 0 0 1 0 1 25 38 Visic 0 0 1 0 0 1 1 0 26 39 Intl. CMOS
in „USBprog jetzt verfügbar als AVR32 Flashprogrammer!“ · Mikrocontroller und Digitale Elektronik ·
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CS8130.pdf
FORM/BSY 5.2 (2)1 14 LED1C TXD D/C 15 5.2(2) 4 LED2C 10 PWRDN 9 CLKFR TGND1 TGND2 DGND 2 3 20 +3V 0.33 F 1 VCC 14 5 CIA- EN RS-232/IR 0.33 F 2 CIA+ SHDN 15 SELECT 4 25 CIB- C2+ 0.33 F MAX562 0.33 F 3 CIB+ C2- 24 UART DSR 23 R1IN R1OUT 6 6 DSR CTS 22 R2IN R2OUT 7 8 CTS 2 RXD 21 R3IN R3OUT 8 DB9 RXD 1 DCD
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Lenovo_ThinkPad_T14s_Gen_1_Intel_NM-C891_Schematic_Diagram_p35.pdf
VDDQ_F2 F8 M_B_DQ50 H3 DQL3 VDDQ_F2 F8 M_B_DQ1 F7 DQL2 VDDQ_F8 G1 M_B_DQ17 F7 DQL2 VDDQ_F8 G1 M_B_DQ33 F7 DQL2 VDDQ_F8 G1 M_B_DQ49 F7 DQL2 VDDQ_F8 G1 M_B_DQ0 G2 DQL1 VDDQ_G1 G9 M_B_DQ16 G2 DQL1 VDDQ_G1 G9 M_B_DQ32 G2 DQL1 VDDQ_G1 G9 M_B_DQ48 G2 DQL1 VDDQ_G1 G9 DQL0 VDDQ_G9 J2 DQL0 VDDQ_G9 J2 DQL0 VDDQ_G9
in „Wie lokalisiere ich ein defektes DRAM Modul?“ · PC Hard- und Software ·
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Datei
LCD.c
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, // "`" 0x00, 0x00, 0x00, 0x1C, 0x40, 0x3E, 0x60, 0x33, 0x60, 0x33, 0x60, 0x33, 0x60, 0x33, 0x60, 0x33, 0x60, 0x33, 0xE0, 0x3F, 0xC0, 0x3F, 0x00, 0x00, // "a" 0x00, 0x00, 0xFF, 0x7F, 0xFF, 0x7F, 0x80, 0x61, 0xC0, 0x60, 0xC0, 0x60, 0xC0, 0x60, 0xC0, 0x60,
in „Mini-Farbdisplay (+mehr) für 1 Euro“ · Mikrocontroller und Digitale Elektronik ·