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Schaltplan einer Blitzröhren-Ansteuerung
? BD237 E C B UF4007 100 kOhm Blitzröhre +12V 15 kOhm 5.6 kOhm 6V 230V 470 Ohm BD237 220 uF 400V 10 nF PC123 Anode Mark ANODE COLLECTOR CATHODE EMITTER +12V Tigger 220 Ohm Tigger PC817 PC123 10 nF 100 nF
in „Physikprojekte“ · Offtopic · · Schaltpläne
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PDF
Buecherliste.pdf
Kinematik u. Kinetik Oldenbourg Verlag 10. Aufl. 1992 350 S. Autorenkollektiv Fachlexikon abc Physik Bd. 1 a-ma Verlag Harri Deutsch 2. Aufl. 1989 600 S. Autorenkollektiv Fachlexikon abc Physik Bd. 2 ma-z Verlag Harri Deutsch 2. Aufl. 1989 1146 S. W. Demtröder Experimentalphysik 1 Mechanik, Wärmelehre
in „Wie wird ein TO-50-Transistor auf einem Steckbrett angebracht?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Meine_Fachbuecherliste.pdf
Kinematik u. Kinetik Oldenbourg Verlag 10. Aufl. 1992 350 S. Autorenkollektiv Fachlexikon abc Physik Bd. 1 a-ma Verlag Harri Deutsch 2. Aufl. 1989 600 S. Autorenkollektiv Fachlexikon abc Physik Bd. 2 ma-z Verlag Harri Deutsch 2. Aufl. 1989 1146 S. W. Demtröder Experimentalphysik 1 Mechanik, Wärmelehre
in „Germanium-Halbleiter auf einer Platine fixieren“ · Platinen ·
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fsp_technology_fsp202-4fs01_runtkb074wjqz_psu.pdf
QPXFS!TUBHF CVDL D/!TFDPOEBSZ!PVUQVU E!up!E B/!FNJ!GJMUFS!BOE!SBX!C,!DJSDVJU A QPXFS 18V A USBOTGPSNFS BD QGD GVTF FNJ NBJO DPOUUSPM 18V JOQVU GJMUFS SFDUJGJFS DJSDVJU SFDUJGFS!'!DJSDVJU GJMUFS 70V S X P F/GFFE.CBDL!DJSDVJU ! E/PVUQVU!DPOUSPM Y B QXN PQUP.JTPMBUPS ESJWFS DJSDVJU DPOTUBOU!WPMUBHF DJSDVJU
in „Welche Diode ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
utf8_demo.c
-167 0xC2,0xBF,0x00, // ASCII-168 0xE2,0x8C,0x90, // ASCII-169 0xC2,0xAC,0x00, // ASCII-170 0xC2,0xBD,0x00, // ASCII-171 0xC2,0xBC,0x00, // ASCII-172 0xC2,0xA1,0x00, // ASCII-173 0xC2,0xAB,0x00, // ASCII-174 0xC2,0xBB,0x00, // ASCII-175 0xE2,0x96,0x91, // ASCII-176 0xE2,0x96,0x92, // ASCII-177 0xE2,0x96,0x93
in „Cursorpositionierung, Farben und Codepage 437 Ausgabe im Linuxterminakl“ · Projekte & Code ·
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Datei
disassebled_minimal_change_crash.asm
> 3bd2: 1f 5f subi r17, 0xFF ; 255 3bd4: f6 cf rjmp .-20 ; 0x3bc2 <_ZN5Print10printFloatEdh+0x100> 3bd6: a7 01 movw r20, r14 3bd8: 96 01 movw r18, r12 3bda: 0e 94 eb 43 call 0x87d6 ; 0x87d6 <__addsf3> 3bde
in „Bizarrer Firmware crash - ATmega4808. Wie Debuggen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
disassebled_original_working.asm
0f 93 push r16 bc8: 1f 93 push r17 bca: cf 93 push r28 bcc: df 93 push r29 bce: ec 01 movw r28, r24 bd0: 6a 01 movw r12, r20 bd2: 7b 01 movw r14, r22 bd4: a2 2e mov r10, r18 bd6: 8d 89 ldd r24, Y+21 ; 0x15 bd8: 88 23 and r24, r24 bda: 39 f0 breq .+14 ; 0xbea <_ZN9UartClass5beginEmj+0x30> bdc: e8 81 ld
in „Bizarrer Firmware crash - ATmega4808. Wie Debuggen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SMY202.HEX.txt
20BCC000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF84 :20BCE000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF64 :20BD0000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF43 :20BD2000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF23 :20BD4000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF03 :20BD6000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFE3 :20BD8000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFC3 :20BDA000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFA3
in „[V] Rohde und Schwarz SMY02 9kHz-2.080Gh Signal Generator“ · Markt ·
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Datei
fontandcolor.h
0x1C9F // 30, 144, 255 #define COLOR_DEEPSKYBLUE 0x05FF // 0, 191, 255 #define COLOR_CORNFLOWERBLUE 0x64BD // 100, 149, 237 #define COLOR_SKYBLUE 0x867D // 135, 206, 235 #define COLOR_LIGHTSKYBLUE 0x867F // 135, 206, 250 #define COLOR_LIGHTBLUE 0xAEDC // 173, 216, 230 #define COLOR_POWDERBLUE 0xB71C // 176
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Datei
CoolTerm_Capture__FritzAVM_1V8.CoolTermSettings__2026-06-27_08-52-21-633.txt
0.000000][ T0] .init : 0xc0a3a000 - 0xc0a78000 ( 248 kB) [ 0.000000][ T0] .data : 0xc0a78000 - 0xc0bd5000 (1396 kB) [ 0.000000][ T0] .bss : 0xc0bd7000 - 0xc0e76748 (2686 kB) [ 0.000000][ T0] SLUB: HWalign=64, Order=0-3, MinObjects=0, CPUs=4, Nodes=1 [ 0.000000][ T0] Preemptible hierarchical RCU implementation
in „FRITZ!Box 7490 Bootloop“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Disassemblyjbt3.a51
Address_8BF jb Bit_19,Address_8BF mov a,Register_3F cjne a,#0x96,Address_8A1 Address_8A1: jnc Address_8BD Address_8A3: Address_8A4: Address_8A5: cjne a,#0x32,Address_8A6 Address_8A6: jc Address_8BF mov a,Register_41 jz Address_8BD mov a,Register_41 jz Address_8BD cjne a,#0x80,Address_8B3 Address_8B3: jnc Address_8BD Address_8B5: setb Bit_5A setb Bit_16 mov c,Bit_58 mov Bit_5E,c Address_8BD: clr Bit_1D Address_8BF: ret Address_8C0: jb P34,Address_8E1 jb P34,Address_8E1 Address_8C6: jnb Bit_20,Address_8E9 clr Bit_
in „Eprom von Denon DJ Laufwerk defekt Winbond 78e52“ · Mikrocontroller und Digitale Elektronik ·
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technical.pdf
) eff The bias-dependent threshold voltage depends on the bulk-source BSlor the bulk-drain voltage BD depending on the mode of operation. √ √ γ · Φ − VBS − Φ for DS ≥ 0, i.eBSV≥ V BD VTh= V T0+ γ ·√ Φ − V − √Φ for V < 0, i.e. V > V (11.160) BD DS BD BS The following equations describe the DC current
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Elektor_1978-06.pdf
The two-stage transis- toramplifier consisting of T27 and T28 provides a gain of around 60. After BD242 being amplified, the high frequency input signal is fed to the decade divider, IC24. This is an ECL (emitter-coupled logic) device, which can operate at the very high frequencies involved. The Figure
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hitag2_hacken.pdf
on LFSR, we are able to efficiently generatethe lookup table, reducing the complexity from 2 48 to 237 en- morethan 20 vehiclesof variousmake and model. On all cryptions. This attack recovers the secret key re- these vehicles we were able to use an emulating device to bypass the immobilizer and start