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Datei
log_avr.txt
03 0E ÿ.ê......... ... 03 00 00 35 1B 21 00 03 0E 03 00 01 35 1B 22 00 ...5.!......5.". 02 0E 10 00 25 1B 23 00 04 0E 1B 00 1E 00 37 1B ....%.#.......7. 24 00 04 0E 1B 00 94 00 BA 1B 25 00 04 0E 1B 00 $..... .º.%..... 06 00 29 1B 26 00 02 0E 11 00 20 1B 27 00 03 0E ..).&..... .'... 03 00 00 32 1B 28 00 03 0E 03 00 01 3C 1B 29 00 ...2.(......<.). 02 0E 10 00 2E 1B 2A 00 04 0E 18 00 06 00 25 1B ......*.......%. 2B 00 04 0E 18 00 DF 00 FD 1B 2C 00 04 0E 18 00 +.....ß.ý.,..... F9 00 DC 1B 2D 00 02 0E 11 00 2B 1B 2E 00 03 0E ù.Ü.-.....+..... 03 00 00 3B 1B 2F 00 03 0E 03 00 01 3B 1B 30 00 .
in „seriell ISP sehr langsam“ · Mikrocontroller und Digitale Elektronik ·
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Datei
at90s2313.txt
0x51 ; 'Q' ROM:01BC cpi r19, 0x10 ROM:01BD sbci r20, 0x35 ; '5' ROM:01BE cpi r19, 0x40 ; '@' ROM:01BF sbci r20, 0x51 ; 'Q' ROM:01C0 cli ROM:01C1 ldi r25, 2 ROM:01C2 rjmp loc_1DB ROM:01C2 ; END OF FUNCTION CHUNK FOR sub_91 ROM:01C2 ; --------------------------------------------------------------------
in „Programmierung AT90S2313“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GT06_GPS_Tracker_Communication_Protocol_v1.8.1.pdf
.....................................................................................25 5.4.2.3. Protocol Number...............................................................................................................25 5.4.2.4. Information Serial Number................................................................................................25 5.4.2.5. Error Check........................................................................................................................25 5.4.2.6. Stop Bit.......................................
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PDF
Supply.pdf
Q803 10K 1/6W 5% 0R05 1/4W C832 1K OHM +-5% 1/8W RK7002FD5T116 10N 50V R827 C835 R840 4 1 12V 2U2 25V 10K 1/8W 1% IC805 1K OHM +-5% 1/8W Q804 ! EL817MA RK7002FD5T116 1MOHM +-1% 1/4W 3.3K ENA 3 2 R838 R824 B 2U2 25V 1U 25V 10K 1/6W 5% COLD HOT IC810 R826 330K 1/8W 1%_NC KIA431A-AT/P_NC R820 C821 30K 1/8W 1%_NC 1U 25V_NC R841 B 7K5 +-5% 1/8W C ! 470OHM +-5% 1/8W 12V R816 4 1 R814 47K 1/8W 1% C817 IC806 R842 56P 50V EL817MA 3.3K D806 3 3 2 Arcing BAV99 R830 R815 330K 1/8W 1% 2K7 +-5% 1/8W IC809 20K 1/8W 1% KIA431A-AT
in „Philips geht nach 1 Minute aus“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INFINEON-BFP620_.pdf
Parameter (Gummel-Poon Model, Berkley-SPICE 2G.6 Syntax): Transistor Chip Data: 0.22 fA - 1.025 - IS = BF = 425 NF = VAF = 1000 V IKF = 0.25 A ISE = 21 fA 2 - - 1 - NE = BR = 50 NR = VAR = 2 V IKR = 10 mA ISC = 18 pA NC = 2 - RB = 3.129 Ω IRB = 1.522 mA RBM = 2.707 Ω RE = 0.6 - RC = 2.364 Ω CJE = 250.7 fF
in „H - Detektor mit vorspannen von Dioden?“ · HF, Funk und Felder ·
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PDF
4620.pdf
set in software UA bit is not set, the module is now configured in regardless of the state of the BF bit. The Transmit mode and clock stretching is controlled by user should be careful to clear the BF bit in the ISR before the next receive the BF flag as in 7-bit Slave Transmit mode (see sequence in
in „SPI master/slave - schreib/lese befehle ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MWAFER-4821ENG.pdf
...24 4.2 Standard CMOS Setup......................................................................25 4.3 Advanced CMOS Setup .....................................................................26 4.4 Advanced Chipset Setup ...................................................................28 4.5 Peripheral
in „[S] PC/104 Grafikkarte (VGA) oder ISA- Adapter gesucht“ · Markt ·
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Datei
pa-transformer-pcb.kicad_pcb.txt
46.228) (end 144.8562 47.7266) (layer "Dwgs.User") (width 0.1) (fill none) (tstamp 5d31508c-a9a8-4880-bf83-60dae5900b92)) (gr_rect (start 57.4802 109.2962) (end 85.9282 110.7948) (layer "Dwgs.User") (width 0.1) (fill none) (tstamp 5f60fdde-068b-4b6a-a25b-e96427d49cfa)) (gr_line (start 35.2552 127.508) (
in „Upload to AISLER from KiCAD Problem - no drills found.“ · Platinen ·
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Datei
ZXGD3105N8.txt
=30) .MODEL DMOD1 D(IS=200E-15 RS=59.7m + CJO=.6p VJ=.42 M=0.36 N=1.35 TT=7n) .MODEL NMOD NPN(IS=1.25E-15 BF=11 NF=1 ISE=6E-16 NE=1.15 CJC=2.56E-12 VJC=.72 MJC=.21 CJE=3.72E-12 VJE=.72 MJE=.24 TR=.1E-9) .ENDS * (c) 2012 Diodes Inc * * The copyright in these models and the designs embodied belong * to
in „SPICE Model einbindung problem“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
BFR92P_spice_v2mod.txt
Version 3.0 March 2014 *************************************************************** *.OPTION TNOM=25, GMIN= 1.00e-12 *BFR92P 11 22 33 .SUBCKT BFR92P 11 22 33 CBEPAR 2 3 1.872E-013 CBCPAR 2 1 1.575E-013 CCEPAR 1 3 1.959E-013 LEI 3 30 1E-009 LBI 2 20 1E-009 CBEPCK 20 30 1.304E-014 CBCPCK 1 20 1.5E-013
in „LTSpice Floating Node“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Drehzahlsensor.pdf
Gebrauchsdauer (T M ) 20 a 1 Diagnosedeckungsgrad (DC) 0 % Umgebungsbedingungen Umgebungstemperatur -25 ... 70 °C (-13 ... 158 °F) 2 4 Mechanische Daten Anschlussart Gerätestecker M12 x 1 , 4-polig Gehäusematerial Messing, vernickelt 3 Stirnfläche PBT Schutzart IP67 Masse 30 g l Normen- und Richtlinienkonformität
in „Drehzahlmessung durch Auswerten der Inrerrupteingänge“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bosch-fug8b.pdf
NF-Übertragungsbereich 300–3.000 Hz NF-Übertragungsbereich 300–3.000 Hz Betriebs-Temperaturbereich –25… +55 °C Betriebs-Temperaturbereich –25… +55 ° Sender Sender Sendeleistung 2,5/6 Watt Sendeleistung 3/10 Watt Senderausgang 50 Ω, unsymmetrisch Senderausgang 50 Ω, unsymmetrisch Klirrfaktor > 5% bei 70%
in „FuG8b externer Lautsprecher sehr leise. Frage zu Lautsprecher Auslegung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
isec05poster_pq11_a3.pdf
16 AM Date: 082405 Time: 05:17 AM large h ~ 14fe 1.2 nV / Hz 10 The largest C g ratio we found: BF862 TRACE A:Ch1 PSD TRACE A MarkerD 50 000.0 Hz 44.283 nVrms/rtHz Not promising /div g m 85AY* = Vrms/rtHz600 000 Hz 432.41 nVrms/rtHz 115 Y* = Vrms/rtHz T = 5.5 K, Z = 4.2 kΩ @ 10 MHz (theory) dB*
in „Meßverstärker für 1/f-Rauschen 0.1 - 10 Hz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
X100-LEB_LET_A2A.pdf
Tj 125 °C Junction temperature Durchlassstrom pro Chip DC Forward current per chip DC F 700 mA (T =25°C) board Stoßstrom pro Chip DC FM 2000 mA Surge current per chip DC t ≤10 µs, D = 0.1;TA=25°C Sperrspannung pro Chip DC VR 0.5 V Reverse voltage per chip DC (Tboard25°C) Sperrstrom R 10 mA Reverse current
in „[V] Hochleistungs-LED-Module auf Metallkernplatine“ · Markt ·
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PDF
BFG591.pdf
G maximum unilateral power gain; I = 70 mA; V = 12 V; 13 dB UM C CE note 1 f = 900 MHz; Tamb = 25 C I = 70 mA; V = 12 V; 7.5 dB C CE f = 2 GHz; Tamb= 25 C 2 insertion power gain I = 70 mA; V = 12 V; 12 dB s21 C CE f = 1 GHz; Tamb= 25 C V output voltage note 2 700 mV o Notes 2 - - -
in „UKW-Prüfsender: Diverse Fragen!“ · HF, Funk und Felder ·
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Datei
out.txt
ZN16mb_callback_hold10call_writeEtt + 360 0x08003bec: 682b +h LDR r3,[r5,#0] 0x08003bee: 429c .B CMP r4,r3 0x08003bf0: d00c .. BEQ 0x8003c0c ; _ZN16mb_callback_hold10call_writeEtt + 400 0x08003bf2: 2003 . MOVS r0,#3 0x08003bf4: e752 R. B 0x8003a9c ; _ZN16mb_callback_hold10call_writeEtt + 32 0x08003bf6: 2002 . MOVS
in „ARM Bootloader mit ELF, Einstieg nicht bei 0x08000000“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
SWT_MS)) { return true; } else { return false; } } void wait(int x) { for(int i=0;i<x;i++) { _delay_ms(25); } } void init(void) { DDRB |= (1<<LED_Ini) | (1<<LED_Rdy); DDRD |= (1<<LED_Err) | (1<<LED_Act); DDRD &= ~(1<<SWT_MS); LED_an(LED_Ini); LED_aus(LED_Rdy); LED_aus(LED_Err); LED_aus(LED_Act); MCUCR =
in „ATmega162 - USART empfängt nix“ · Mikrocontroller und Digitale Elektronik ·
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Datei
C_code_2.c
0xB7,1602}, {0xB8,1663},{0xB9,1725},{0xBA,1786},{0xBB,1869},{0xBC,1900},{0xBD,2000}, {0xBE,2050},{0xBF,2133},{0xC0,2200},{0xC1,2270},{0xC2,2360},{0xC3,2422}, {0xC4,2500},{0xC5,2570},{0xC6,2650},{0xC7,2735},{0xC8,2810},{0xC9,2900}, {0xCA,2968},{0xCB,3051},{0xCC,3120},{0xCD,3225},{0xCE,3300}, {0xCF,3381
in „M16C, UART0 und UARt1 gleichzietig“ · Mikrocontroller und Digitale Elektronik ·
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Datei
disas.txt
75 80 ldd r7, Z+5 ; 0x05 254: 46 18 sub r4, r6 256: 57 08 sbc r5, r7 258: 66 80 ldd r6, Z+6 ; 0x06 25a: 77 80 ldd r7, Z+7 ; 0x07 25c: 64 82 std Z+4, r6 ; 0x04 25e: 75 82 std Z+5, r7 ; 0x05 260: 27 ff sbrs r18, 7 262: 03 c0 rjmp .+6 ; 0x26a 264: 46 18 sub r4, r6 266: 57 08 sbc r5, r7 268: 02 c0 rjmp .
in „Audio Spektrum Analyzer mit ATtiny85“ · Projekte & Code ·
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PDF
W20xxA_Spectrum_Analysis_de.pdf
- W20xxA Spectrum Analysis by BlueFlash 1 Die Spektralanalyse 1.1 Einleitung Seit der Version 1.2.BF.0.80 verfügt das W20xxA über eine Spektralanalysefunktion. Je nach Einstellung und anliegendem Signal sieht man eine Menge bunte Striche über den Bildschirm geistern die es zu deuten gilt. Wie immer
in „Wittig(welec) DSO W20xxA Open Source Firmware“ · Mikrocontroller und Digitale Elektronik ·
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Datei
webpage.h
,0x05,0xD8,0xDA,0x98,0x4F,0xB0,0xF4,0xA7,0x4E,0x96,0xB1,0xAB,0x88,0x56, 0xBE,0xED,0x69,0xDF,0x67,0xBF,0x02,0x10,0x4C,0x8A,0x86,0x6E,0xBB,0x26,0xB2,0xC5, 0xCA,0xEA,0x15,0x48,0x34,0x66,0x7B,0xD9,0xB8,0x87,0x9C,0xF6,0x9A,0x35,0x54,0xEC, 0x01,0x70,0xA9,0x55,0x0E,0x47,0x0A,0x9E,0x57,0x14,0x01,0x25,0x8D,0x6D
in „AVR Webserver Radig eingabe speichern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
webpage.h
,0x05,0xD8,0xDA,0x98,0x4F,0xB0,0xF4,0xA7,0x4E,0x96,0xB1,0xAB,0x88,0x56, 0xBE,0xED,0x69,0xDF,0x67,0xBF,0x02,0x10,0x4C,0x8A,0x86,0x6E,0xBB,0x26,0xB2,0xC5, 0xCA,0xEA,0x15,0x48,0x34,0x66,0x7B,0xD9,0xB8,0x87,0x9C,0xF6,0x9A,0x35,0x54,0xEC, 0x01,0x70,0xA9,0x55,0x0E,0x47,0x0A,0x9E,0x57,0x14,0x01,0x25,0x8D,0x6D
in „AVR ETH_M32_EX von Ulrich Radig“ · Mikrocontroller und Digitale Elektronik ·
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Datei
webpage_backup.h
,0x05,0xD8,0xDA,0x98,0x4F,0xB0,0xF4,0xA7,0x4E,0x96,0xB1,0xAB,0x88,0x56, 0xBE,0xED,0x69,0xDF,0x67,0xBF,0x02,0x10,0x4C,0x8A,0x86,0x6E,0xBB,0x26,0xB2,0xC5, 0xCA,0xEA,0x15,0x48,0x34,0x66,0x7B,0xD9,0xB8,0x87,0x9C,0xF6,0x9A,0x35,0x54,0xEC, 0x01,0x70,0xA9,0x55,0x0E,0x47,0x0A,0x9E,0x57,0x14,0x01,0x25,0x8D,0x6D
in „AVR ETH_M32_EX von Ulrich Radig“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LCD_driver.h
0xCC #define EPMWR 0xFC #define EPMRD 0xFD #define EPSRRD1 0x7C #define EPSRRD2 0x7D #define NOP 0x25 //******************************************************************** // // PHILLIPS Controller Definitions // //******************************************************************** //LCD Commands /
in „Arduino Uno mit Sparkfun LCD undefined reference“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uploadlog.txt
serial program mode : yes parallel program mode : yes Timeout : 200 StabDelay : 100 CmdexeDelay : 25 SyncLoops : 32 ByteDelay : 0 PollIndex : 3 PollValue : 0x53 Memory Detail : Block Poll Page Polled Memory Type Mode Delay Size Indx Paged Size Size #Pages MinW MaxW ReadBack ----------- ---- ----- --
in „Atmel Studio, Arduio ISP und Attiny“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_Elmos__981_03.pdf
0.45 1) ms slope, Maximum bus current slope (0x210) = 0x02 lim125_di/ 0.87 1) 1 1) 1.13 1) mA / in 1.25 mA/ms mode dt ms Maximum bus current slope (0x210) = 0x03 slope, 1.75 2 2.25 mA / in 2.5 mA/ms mode lim25_di/dt ms V > 20V, I VS= 0 ... I Output voltage at pin V20 V20 V20(max) VV20 18.5 20 21.5 V (positive
in „Exposed Pad anschließen? (ATSAMD20E18A-MU und ELMOS E981.03)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
disasm.asm
l00000bea: 49A8 ldr r1, l00000e8c l00000bec: 6001 str r1, [r0, #0] l00000bee: 488C ldr r0, l00000e20 l00000bf0: 19C0 adds r0, r0, r7 l00000bf2: 3070 adds r0, #112 l00000bf4: 9007 str r0, [sp, #28] l00000bf6: 4889 ldr r0, l00000e1c l00000bf8: 19C0 adds r0, r0, r7 l00000bfa: 9006 str r0, [sp, #24] l00000bfc: 9801
in „Flash im Cortex-M0 durch Codeinjektion ins SRAM auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AddressSanitizer.txt
82.04 Max magnitude: -25.9 dB mag -26 size 1200 ==3269==poisoning: 0x7fffffff8b60 2580 ==3269==unpoisoning: 0x7fffffff8b60 2580 Frame pos: 0.200s Mag: -27.76 Mean: -55.70 sum: -83.46 Max magnitude: -25.9 dB mag -28 size 1200
in „Tipps zur Speicheranalyse gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XLampXBD.pdf
Reverse voltage V -5 Forward voltage (@ 350 mA, 85 °C) - white V 2.9 3.5 Forward voltage (@ 350 mA, 25 °C) - royal blue, blue V 3.1 3.7 Forward voltage (@ 350 mA, 25 °C) - green V 3.3 3.9 Forward voltage (@ 350 mA, 25 °C) - red-orange, red V 2.25 2.6 LED junction temperature °C 150 Copyright © 2011-2012
in „Keine angaben über erforderliche Kühlung bei 100W LED“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
NORMSTAHL_24LC08.txt
F3 2C 00 C9 4C 00 9F 6C 00 75 8C 00 4B AC 00 21 CC 00 F7 EB 00 CD 0B 00 A3 2B 00 79 4B 00 4F 6B 00 25 8B 00 FB AA 00 D1 CA 00 A7 EA 00 7D 0A 00 53 2A 00 29 4A 00 FF 69 00 D5 89 00 AB A9 00 81 C9 00 57 E9 00 2D 09 00 03 29 00 D9 48 00 AF 68 00 85 88 00 5B A8 00 31 C8 00 07 E8 00 DD 07 00 B3 27 00 89 47
in „Garagentorantrieb Normstahl Ultra vergisst Position“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Boot_Log.txt
], MCK[60Mhz] ==> Start UBOOTÿ U-Boot 1.0.0 (Aug 22 2008 - 09:00:35) U-Boot code: 21F00000 -> 21F14BF0 BSS: -> 21F185C8 DRAM Configuration: Bank #0: 20000000 32 MB Atmel: AT49BV1614 (16Mbit) Flash: 2 MB DataFlash:AT45DB642 Nb pages: 8192 Page Size: 1056 Size= 8650752 bytes Logical address: 0xC0000000
in „[V] Infinova Dome IP Kamera, separater Video Encoder“ · Markt ·
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PDF
PS2_Modul.pdf
16 22 F8 0A 0A 10 KP 9 7D 7D 125 2 1E 1E 30 F9 1 1 1 ] 58 58 88 3 26 26 38 F10 9 9 9 ; 4C 4C 76 4 25 25 37 F11 78 78 120 ' 52 52 82 5 2E 2E 46 F12 7 7 7 , 41 41 65 PRNT E0 12 6 36 36 54 C4 196 . 49 49 SCRN E0 7C 73 7 3D 3D 61 SCROLL 7E 7E 126 / 4A 4A 74 E1 14 77 8 3E 3E 62 PAUSE E1 F0 C5 197 14 F0 77
in „(V) Arduinos und Zubehör“ · Markt ·
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PDF
27512EP_EDA.pdf
0101* Epromm" 21 db "er 2716-27512 V." 22 db "1.4 * [c]87/89 E." 23 db "Ludwig/J.Beisler *" 24 db 00E 25 db "0308MENš: [Korr." 26 db "" 27 db "DEL" 28 db "" 29 db ", Zur▯ck Anf." 30 db "" 31 db "Z" 32 db "" 33 db ", Abbruch " 34 db "" 35 db "Q" 36 db "" 37 db "]" 38 db 00E 39 db "061" 40 db "2+080 41 CALL
in „EDA-Dateien bearbeiten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MSC_Tests_-_Failed_-_2021-02-22_15-06-48.html
content'>Test did not execute all required steps.</DIV></DIV> <DIV style='font-weight: bold;color:#BF0000'><DIV class='label'>INFO</DIV><DIV class='content'> Stop time: Feb 22, 2021 - 15:08:17</DIV></DIV> <DIV style='font-weight: bold;color:#BF0000'><DIV class='label'>INFO</DIV><DIV class='content'>Duration
in „STM32 USB Übertragungsproblem mit Code von S.F.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
10.4._0646_uhr_TX_2475__RX_2403_2423_2440.txt
00 79 41 00 02 00 02 09 00 13 8A 00 6F 2F 00 1 83 00 00 00 05 03 E8 00 45 00 01 08 15 A1 8A 07:49:25 So 220410 3 81 00 01 80 01 00 01 5F 39 5F 39 00 00 00 00 47 DE 0C 00 07:50:25 So 220410 3 01 00 01 01 3F 00 19 00 4F 01 3D 00 12 00 38 00 00 EB 00 2 02 85 FB 00 00 79 41 00 03 00 02 08 FF 13 89 00 80
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC14541.pdf
56 k ) U 5.0 V A 1.0 (RS= 120 k ) E I 0.5 F–12 S f 0.2 RTC= 56 k , RS= 0, f = 10.15 DD= 10 VA T = 25⋅C –16 C = 1000 pF RS= 120 k , f = 7.8 DD= 10 VA T = 25⋅C 0.1 –55 –25 0 25 50 75 100 125 1.0 k 10 k 100 k 1.0 m T , AMBIENT TEMPERATURE (⋅C) RTC RESISTANCE (OHMS) A 0.0001 0.001 0.01 0.1 Figure 4. RC
in „unbekannte Platine“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LB-Mod_en.pdf
can see the amplitude rising towards 2dB between 100MHz and 200MHz. This is a factor of approx. 1.25 or a deviation of 25%. The AD8131 on the other hand, have a very linear response up to 200MHz, falling to -3dB at about 400MHz (Fig 3). Our operating levels are lower than 2Vpp, but other than circuit
in „Wittig(welec) DSO W20xxA Hardware (Teil 2)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BASIC31A.A51
dpl xch a,r1 ret ; X0566: movx a,@dptr mov 40h,a inc dptr movx a,@dptr mov 41h,a ret ; X056e: setb 25h.1 X0570: lcall X0e9f X0573: lcall X0aa7 jz X058a inc dptr jb 25h.1,X0586 acall X05b0 acall X05a6 movx a,@dptr jb 25h.2,X058a jc X058a X0586: acall X05c2 sjmp X0573 ; X058a: clr 25h.1 ret ; X058d: mov
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MLX90640-Datasheet-Melexis.pdf
0x2500 0x2510 0x2520 0x2530 0x2540 0x2550 0x2560 0x2570 0x2580 0x2590 0x25A0 0x25B0 0x25C0 768 x Offset, α, Kta, Outlier 0x25D0 0x25E0 0x25F0 0x2600 0x2610 0x2620 0x2630 0x2640 0x2650 0x2660 0x2670 0x2680 0x2690 0x26A0 0x26B0 0x26C0 0x26D0 0x26E0 0x26F0 0x2700 0x2710 0x2720
in „MLX90640 IR-Array 32x24 pixel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MLX90640-Datasheet-Melexis.pdf
0x2500 0x2510 0x2520 0x2530 0x2540 0x2550 0x2560 0x2570 0x2580 0x2590 0x25A0 0x25B0 0x25C0 768 x Offset, α, Kta, Outlier 0x25D0 0x25E0 0x25F0 0x2600 0x2610 0x2620 0x2630 0x2640 0x2650 0x2660 0x2670 0x2680 0x2690 0x26A0 0x26B0 0x26C0 0x26D0 0x26E0 0x26F0 0x2700 0x2710 0x2720
in „Wärmebildkamera mit dem MLX90640 und Arduino Due“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tle2426-q1.pdf
Full range ±10 mV (sinking current) O = 0 to 20 mA 25°C 0.175 ±1.4 Output impedance 25°C 7.5 22.5 mΩ Noise-reduction impedance 25°C 110 kΩ Sinking current, VO = 5 V 26 Short-circuit current Sourcing current, V = 0 25°C −47 mA O CNR = 0 120 Output noise
in „Möglichst genaue Spannungshalbierung mit OP?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
vo3120.pdf
IMMUNITY PARAMETER TEST CONDITION SYMBOL MIN. TYP. MAX. UNIT Common mode transient immunity at TA= 25 °C, I F 10 mA to 16 mA, logic high output (1)(2) VCM = 1500 V, V CC = 32 V |CM H| 25 35 kV/μs Common mode transient immunity at TA= 25 °C, V CM = 1500 V, (1)(3) |CM L 25 35 kV/μs logic low output V CC
in „MOSFET High side Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
NTC.html
callout.bp3-intent-warning > .bp3-icon:first-child, .bp3-callout.bp3-intent-warning .bp3-heading{ color:#bf7326; } .bp3-dark .bp3-callout.bp3-intent-warning{ background-color:rgba(217, 130, 43, 0.25); } .bp3-dark .bp3-callout.bp3-intent-warning[class*="bp3-icon-"]::before, .bp3-dark .bp3-callout.bp3-intent-warning
in „NTC auto kalibrierung - Matheformel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
JQ8400_English.pdf
at 4.2V, IO port level at 3.3V Default current Sleep mode: 500uA; normal mode: 10mA PCB size 18 x 25mm Working -40 to 85 degree Celcius temperature Humidity 5% to 95% 2 PINOUTS Pins Labels Descriptions 1 ONE LINE One-line interface port 2 BUSY HIGH when playing, LOW in other conditions 3 RX Data receive
in „Nutzung eines SPI-Flash durch zwei Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
28QVF1J-0_1.0-E.pdf
GND=0V, IOVCC=1.8V,VCI=2.80V Item Symbol Condition Min. Typ. Max. Unit contrast ratio C θ=0°, φ=0° 25°C 400 500 - - Range of θ(6h) Viewing angle - C10 25°C - 80 - degree (θ:6h–12h) θ(12h) Range of θ(3h) Viewing angle - C10 25°C - 80 - degree (θ:3h–9h) θ(9h) x (0.27) (0.32 (0.37) - White y 25°C (0.29) (0.34) (0.39) - Red x BM-7 25°C (0.59) (0.64) (0.69) - Color y (TOPCON) (0.28) (0.33) (0.38) - x (0.28) (0.33) (0.38) - Green y θ=0°, φ=0° 25°C (0.57) (0.62) (0.67) - Blue x 25°C (0.10) (0.15) (0.20) - y (0.01) (0.06) (0.11) - NTSC
in „Probleme Seiko Display 24_28QVF1H_J zu initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dude54arduino_mit_vvvv.txt
Device code: 0x23 = (unknown) avrdude: Recv: $ [24] Device code: 0x24 = (unknown) avrdude: Recv: % [25] Device code: 0x25 = (unknown) avrdude: Recv: & [26] Device code: 0x26 = (unknown) avrdude: Recv: ' [27] Device code: 0x27 = (unknown) avrdude: Recv: ( [28] Device code: 0x28 = AT90S4414 avrdude: Recv
in „avrdude - Probleme unter Mac OS X 10.7 (Lion)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mpsa42.pdf
Saturation V vs Collector Current E Voltage vs Collector Current G 0.3 140 T β = 10 I O G120 125 °C V0.25 T E N100 T 0.2 R 80 25 °C I U -0.15 125°C C 60 R C T 25°C - 40 - 40 °C E 0.1 F VCE= 5V L h 20 O0.05 - 40 °C - A 0.1 1 10 100 C 0.1 1 10 100 IC - COLLECTOR CURRENT (mA) V IC - COLLECTOR CURRENT (mA) M
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Datei
efivars.txt
00e098032b8c -rw-r--r-- 1 root root 54 Aug 1 14:43 /sys/firmware/efi/efivars/SMBIOSELOG000-c3eeae98-23bf-412b-ab60-efcbb48e1534 -rw-r--r-- 1 root root 5 Aug 1 14:43 /sys/firmware/efi/efivars/SMBIOSELOGNUMBER-c3eeae98-23bf-412b-ab60-efcbb48e1534 -rw-r--r-- 1 root root 6 Aug 1 14:43 /sys/firmware/efi/efivars/SMBIOSLEN-c3eeae98-23bf-412b-ab60-efcbb48e1534 -rw-r--r-- 1 root root 12 Aug 1 14:43 /sys/firmware/efi/efivars/SMBIOSMEMSIZE-c3eeae98-23bf-412b-ab60-efcbb48e1534 -rw-r--r-- 1 root root 8 Aug 1 14:43 /sys/firmware/efi/efivars
in „Schlankes Ubuntu für MPLAB X gesucht“ · PC Hard- und Software ·
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Datei
Leds.asm
LED_g0 .db LED_r1, LED_r0, 0 .endif ; Beispiel für 6 SMT Duo Leds Rot/Grün = 12 Leds an 4 Pins ; ergibt 25% Dutycycle pro LED. ; Row/Pin 3 2 1 0 # SMT Duo Led ; 0 | | |--|>|--| LED_r0 0 ; | |-------|--|>|--| LED_r1 1 ; |-------|-------|--|>|--| LED_r2 2 ; | | | | ; 1 | | |--|<|--| LED_g0 0 ; | |--|>|--| |
in „LED Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LON.ino
3334; WiFiUDP lon_udp_out; WiFiUDP lon_udp_in; #define LON_RX 26 #define LON_TX 33 #define LON_TX_EN 25 #define LONSTATE_VERSION 0x0100 extern float tempsens_value; volatile uint32_t lon_rx_activity = 0; struct tm timeStruct; typedef struct { uint64_t magic1; uint32_t version; /* must not be used from
in „LON Bus Windhager mitlesen/steuern“ · Softwareentwicklung ·