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54600-Series_Datasheet__5968-8152EN_.pdf
capa- analog and digital designs. • Deep memory transfer over bilities you need for verifying and I C, CAN, LIN, USB, and SPI the interface bus debugging designs that include triggering come standard. A/Ds, D/As, DSPs, and embedded N2758A CAN trigger module 8- or 16-bit microcontrollers. option is also
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AoE3_chapter9.pdf
0.33 TPS730xx - - - - - 5,6- - • 7 • • - • Δ - - - 2.7-5.5 1.2-5.5 0.2 2 tt 0.17 33f,e1all 500 2.2c 0.01,1 0.65 MIC5249 - - - 8 - - - - - 6 • • - - x - - • 2.7-6 1.8-3.3 0.3 1 0.085 - - 3000 2.2 c 0,0.3 0.98 f t TPS732, 36xx - - - - 5 5 - 8 • 8 • d - - • v - - 2.2-5.5 1.2-5.5 0.25, 0.4 0.tt 0.4 21f
in „Labornetzgerät - Fragen zum Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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Exp_Meth_In_RF_Des--Wes_Hayward.pdf
," 7. G. Dobbs, "A Stable Regenerative Weekender," QST, Aug, 1981, pp 18-21. See QST. Feb, 1988, p 14-18. " Receiver," SPRAT, Issue 105, Dec, 2000, also G. Grammcr, Understanding Amateur 5. C, Kitchin, "A Simple Regenerative Radio p 21. Getting Started 1.23 C H A P T E R Amplifier
in „Literatur zum Selbstbau von Sendern und Empfängern“ · HF, Funk und Felder ·
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isco_3700.pdf
P2 R53 1 SENSE BACKLIGHT 2 RECEIVE +5 6 5 P1 2 10K 3 KEY U19 F 3 3 +5 0 3 4 GND U19 4 0 6 VP Q16 3 C 5 +12 9 8 12 U12 6 1 R 4 2 Q1 8 1 R75 1 5 6 TRANSMIT U14 11 5 HC32 3 2N3704 N 1 KEY 10K 1 D40C2 40106 13 4081 + 1 110 1 C GND 7 U21 40106 8 NC U19 K 9 2 R76 R70 1 0 R - P9 GND 13 12 1 TLO62 1 4 3 U 1
in „Reparatur Motorsteuerung, Probennehmer“ · Mikrocontroller und Digitale Elektronik ·
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cdj350.pdf
V C C 12 R 103 0.1u 205 P D 5/D 21/IR Q 5/S S I1/T C LK B /T IO C 1B D A T A 15 4 56 5 206 V S S 12 D A T A 14 3 6 207 P V S S 17 D A T A 13 2 7 T C O U N T 208 C 115 P D 4/D 20/IR Q 4/S S C K 1/T C LK A
in „Diode (1SS352) in CD-Player ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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PMT_handbook_v4E.pdf
photocathodes capable of stable operation in harsh environments, for example, at low temperatures below -100 °C or at high temperatures of 200 °C. 14)-19) 20) 21) In addition, photocathodes using III-V compound semiconductors such as GaAs and InGaAs have been developed and put into practical use. These semiconductor
in „Suche nach geeignetem OpAmp als Impedanzwandler“ · Analoge Elektronik und Schaltungstechnik ·
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349_529-15.pdf
6) Schock 6 ms 1000 m/s2 (EN 60068-2-27) 2000 m/s 2 (EN 60068-2-27) 2) Max. Arbeitstemperatur 100 °C UP= 5 V: 100 °C 100 °C 85 °C (100 °C 100 °C UP= 10 bis 30 V: bei UP < 15 V) 85 °C Min. Arbeitstemperatur Flanschdose oder Flanschdose oder Kabel fest verlegt: –40 °C Kabel fest verlegt: –40 °C Kabel
in „Wie entsteht das Sinusförmige Signal eines Drehgebers/ Vermutung“ · Offtopic ·
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TMS320F2812_Datasheet.pdf
S M [ [ M M M M I I N A D A S D D M A 3 2 1 A S C A C D 2 D S D A T A A A A S 2 A 1 W D S W D D W W WW C C A X T X V V T T X C C C X V X X T T T V V V X C X C C V T X T P V V P X X P P P P S S C 132 89 133 3 3 2 2 2 2 2 2 2 2 2 2 1 1 1 1 1 1 1 1 1 1
in „Wieder eine Elektronik-Anfängerfrage“ · Mikrocontroller und Digitale Elektronik ·
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slod006b.pdf
in Equation C G 3–21, and the capacitor has no effect. The gain at low frequencies is F+RG. At very high frequencies X ⇒ 0, so the gain setting resistor is shorted out thus increasing the C circuit gain to maximum
in „Einfache Verstaerkerschaltung mit OP“ · Analoge Elektronik und Schaltungstechnik ·
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OP_Amps_for_slod006b.pdf
in Equation C G 3–21, and the capacitor has no effect. The gain at low frequencies is F+RG. At very high frequencies X ⇒ 0, so the gain setting resistor is shorted out thus increasing the C circuit gain to maximum
in „Vor- und Nachteile: Unipolare vs. Bipolare Spannungsversorgung bei OpAmps“ · Analoge Elektronik und Schaltungstechnik ·
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3B036723d01.pdf
4k7 ƒ 4 MHz 19 IRQ 6 BC239 NC 40 VPP1 TCAP2 23 50 RDI ) TCMP2 1 52 e 22 4k7 ƒ TDO a TCAP1 20 PLMA c 32 EEPROM tested p PB7 4k7 ƒ 21 PLMB i PB6 33 2 - PB5 34 TCMP1 2 PB4 35 EEPROM not tested 51 SCLK ( PB3 36 B 37 5 PB2 38 4k7 ƒ C PB1 39 H PB0 3 PD7 6 4 C 5 PD6 M 42 9 PD5 PC7 11 PD4 43 PD3 PC6 12 PD2
in „unbekanntes Touchpad, wie anschliessen und verwenden?“ · Mikrocontroller und Digitale Elektronik ·
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l9805e.pdf
calculated using the J following equation: T J T A (P xD ) JA)* Where: – T is the Ambient Temperature in C, A – JAis the Package Junction-to-Ambient Thermal Resistance, in C/W, – P Ds the sum of P INTand P I/O – P is the product of I and VB, plus the power dissipated by the power bridge, INT 1 expressed
in „ST L9805-E Motortreiber mit H Brücke und ST7UD05 Kern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MPHexEditor.pas
#$96, #$94, #$95, #$90, #$F7, #$D7, #$FF, #$DD, #$98, #$97, #$86, #$99, #$DE, #$A4, #$88, #$87, #$89, #$8B, #$8A, #$C2, #$CA, #$C1, #$CB, #$C8, #$CD, #$CE, #$CF, #$CC, #$D3, #$D4, #$F0, #$D2, #$DA, #$DB, #$D9, #$9B, #$9A, #$85, #$8F, #$9D, #$9C, #$9E, #$9F, #$FD, #$FE, #$AF ) ); // ebcdic cp38..ms ansi
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Ablerex_ESx000_AS3100_09TH0459_2.pdf
AG Basel Connector AC Adels- 1500/3DS 300V; 40A; 85°C; FW2; (XCFR2) URus E63492 CONTACT AWG18-8 Flame Class: 94V-2 Internal wiring + Ancheer Cable 1015 10 AWG; 600Vac; 105°C (AVLV2) cURus E328778 from AC Provided with Ferrite Core terminal
in „Wechselrichter effekta es 5000 streikt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Z80DOC.TXT
C USER'S MANUAL Page 21 6. Machine Dependencies HI-TECH C eliminates many of the machine dependent aspects of C, since it uniformly implements such features as unsigned char. There are however certain
in „Zeta SBC V2 Z80 mit Floppy Disk“ · Mikrocontroller und Digitale Elektronik ·
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service_nb_ipc_8170.pdf
VSS VSS 1206 1206 1206 1206 1206 1206 2 10V 2 10V 2 10V 2 10V 2 2 R23 VSS VSS AD21 2 10V 2 10V 2 10V 2 10V 2 10V 2 10V T6 VSS VSS AE17 CPU_CORE T3 VSS VSS AE15 T24 AE13 T21 VSS VSS AE11 1 1 1 1 1 1 U5 VSS VSS AE9 C21 C27 C25 C17 C543 C11 C U2 VSS VSS AE26 10U 10U 10U 10U 10U 10U C
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EleLaDoku_V4.0.20B27.pdf
Zeic. Name DEC HEX Zeic. DEC HEX Zeic. DEC HEX Zeic. 0 00 ^@ 32 20 Leer 64 40 @ 96 60 ' 1 01 ^A 33 21 ! 65 41 A 97 61 a 2 02 ^B 34 22 " 66 42 B 98 62 b 3 03 ^C 35 23 # 67 43 C 99 63 c 4 04 ^D 36 24 $ 68 44 D 100 64 d 5 05 ^E 37 25 % 69 45 E 101 65 e 6 06 ^F 38 26 & 70 46 F 102 66 f 7 07 ^G 39 27 ' 71
in „EleLa - Elektronik Lagerverwaltung V4.0“ · Projekte & Code ·
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VHDL_f__r_Einsteiger.pdf
OUTPUT => TAKT ); -- Programm Generator FlipFlop_1: FF port map ( T => TAKT, RESET => CLEAR, OUTPUT => C0 ); FlipFlop_2: FF port map ( T => C0, RESET => CLEAR, OUTPUT => C1 ); FlipFlop_3: FF port map ( T => C1, RESET => CLEAR, OUTPUT => C2 ); -- interne Reset Schaltung CLEAR <= (C1 and C2) when RESET =
in „Erste Schritte mit FPGA - ich komme nicht weiter“ · FPGA, VHDL & Co. ·
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PDF
VHF-COMM.1983.3.pdf
(., ry 0, Bittan. G 3 JVQ I OJ 0 80, R, svp.!i1 OK·7·~OOHERfJlNG . Franoe responsible lor the text C,m"'h.~nMo(;hel,F!l SM Etectrco -c Roberl E Lentz, DL 3 INR. 2(o.s A..."u€,Ol!!)ClaluOf'ls F·89C>OOAUXERRE rcspons-bte lor the technical Tel(f!6~4696~9 Finland contents Er~"lHoJhcfll tSF·J I l OOSOMERO
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ps42p3sx_ch._d58a.pdf
MCAD(4) G19 C7 ADQ(23) H18 AD4 DQ23 S MCAD(5) AD5 DQ22 A7 ADQ(22) MCAD(6) H17 D8 ADQ(21) O F20 AD6 DQ21 B6 MCAD(7) AD7 DQ20 ADQ(20) G17 C6 ADQ(19) U DQ19 C5 R DQ18 ADQ(18) N 0 C 0 / K 1 R1063 0 D6 ADQ(17) 0 1 6 6
in „Netzteil prüfen wie stelle ich das richtig an?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
PowerLog6s_V110_bearbeitet.asm
ROM:08001DEA r dword_8002018 DCD 0x2000480C ; DATA XREF: ROM:08001DC4 r dword_800201C DCD 0x2000007A ; DATA XREF: ROM:08001E14 r aFindNewDs18b20 DCB "Find new DS18B20",0 ; DATA XREF: ROM:08001E24 o DCB 0 DCB 0 DCB 0 dword_8002034 DCD 0x20000030
in „Datenlogger Jun-si PowerLog 6S verbessern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
abel-HDL_Reference.pdf
ABEL-HDL Reference Manual 88 Exclusive OR Equations Preset 1AND2 Clear D FF K 2 3 1 5 Q XOR S Q OR2 1 2 C 1 3 3 1 AND2 2 3 2 4 J 3 D Q 6 2 Clock Q : = (Q) $ (J & !Q # K & Q) Figure 2-11. JK Flip-flop Emulation, D Flip-flop with XOR ABEL-HDL Reference Manual 89 State Machines State Machines A state machine
in „Pal Assembler Abel 3 (Data IO)“ · PC Hard- und Software ·
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PDF
R2_MMC1.pdf
voltage unless otherwise stated. 2.1 System Environmental Specifications Temperature Operating: -25° C to 85° C Non-Operating: -40° C to 85° C Humidity Operating: 8% to 95%, non-condensing Non-Operating: 8% to 95%, non-condensing Acoustic Noise: 0 dB Vibration Operating: 15 G peak to peak max. Non-Operating
in „Multi Media Card (MMC)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R2_MMC1.pdf
voltage unless otherwise stated. 2.1 System Environmental Specifications Temperature Operating: -25° C to 85° C Non-Operating: -40° C to 85° C Humidity Operating: 8% to 95%, non-condensing Non-Operating: 8% to 95%, non-condensing Acoustic Noise: 0 dB Vibration Operating: 15 G peak to peak max. Non-Operating
in „(ANSI-)C-Code für MMC-Kommunikation?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
r2_mmc1.pdf
voltage unless otherwise stated. 2.1 System Environmental Specifications Temperature Operating: -25° C to 85° C Non-Operating: -40° C to 85° C Humidity Operating: 8% to 95%, non-condensing Non-Operating: 8% to 95%, non-condensing Acoustic Noise: 0 dB Vibration Operating: 15 G peak to peak max. Non-Operating
in „suche infos über Multimediacard“ · Mikrocontroller und Digitale Elektronik ·
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PDF
C500-System.pdf
- - - - - - - - - - - - - - - - - 1 17 Io I Bild 1.9 ; Innere Verknüpfung der im Digitalprozessor C502 D integrierten Punk tionsgruppen 21 1.Aufcau,,Fvtion und Applikationsbeispiele der BauelC 500 DbisC 504 � . Digital- , zum Analogprozesso1( übertragen. Zur Stromversorgung des Di gitalprozessors
in „IC C500 Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
VisiLogic_-_Communications.pdf
80-119 0 L99:# MDW L 120-159 0 L127:# XDW L 160-199 0 L177:# SDW L 200-239 0 L208:# Counter Preset C 0 1 C0:#.PRE Counter Current C 0 2 C0:#.ACC Counter Bit C 0 13 C0:#.DN Timer Preset T 0 1 T0:#.PRE Timer Current T 0 2 T0:#.ACC Timer Bit T 0 13 T0:#.DN Notes In the event that operand types share file
in „USB-Host / industrielle SPS / Frequency Counter“ · Mikrocontroller und Digitale Elektronik ·
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Datei
all_cmds.txt
byobu-ulevel bytes-circle byzanz-playback byzanz-record bz3cat bz3grep bz3less bz3more bz3most bzip3 bzz c++-copy-class-and-file c++-rename-class-and-file c++decl c++filt (1) - demangle C++ and Java symbols c-icap c-icap-client c-icap-config c-icap-libicapapi-config c-icap-mkbdb c-icap-mods-sguardDB c-icap-stretch c-index-test c-index-test-13 c-index-test-14 c-index-test-15 c2050 c2bciter c2bimport c2dec c2enc c2go c2hs c2p c2x c2xml c3270 c44 c89-gcc (1) - ANSI (1989) C compiler c99-gcc (1) - ANSI (1999) C compiler
in „Vergleichstabelle von Systemeigenen Tools in Windows“ · PC Hard- und Software ·
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PDF
ise_tutorial_ug695.pdf
Design Suite installed. This tutorial assumes that the software is installed in the default location c:\xilinx\release_number\ISE_DS\ISE. If you installed the software in a different location, substitute your installation path in the procedures that follow. Note: For detailed software installation instructions
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Datei
iotn814.h
; /* Dither value */ register8_t reserved_0x1A; register8_t reserved_0x1B; register8_t reserved_0x1C; register8_t reserved_0x1D; register8_t DBGCTRL; /* Debug Control */ register8_t reserved_0x1F; register8_t reserved_0x20; register8_t reserved_0x21; _WORDREGISTER(CAPTUREA); /* Capture A */ _WORDREGISTER
in „Attiny417/814/816/817 und avr-gcc, avr-libc“ · Mikrocontroller und Digitale Elektronik ·
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Datei
iotn3217.h
register8_t reserved_0x19; register8_t reserved_0x1A; register8_t reserved_0x1B; register8_t reserved_0x1C; register8_t reserved_0x1D; register8_t reserved_0x1E; register8_t reserved_0x1F; register8_t reserved_0x20; register8_t reserved_0x21; register8_t reserved_0x22; register8_t reserved_0x23; register8
in „Neue 8-Bit Tinys vorgestellt: 417/814/816/817“ · Mikrocontroller und Digitale Elektronik ·
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Datei
report_all.txt
: 0 ( 0 filtered) Number of infos : 37 ( 0 filtered) Release 13.2 ngdbuild O.61xd (nt) Copyright (c) 1995-2011 Xilinx, Inc. All rights reserved. Command Line: C:\Programme\Xilinx\13.2\ISE_DS\ISE\bin\nt\unwrapped\ngdbuild.exe -intstyle ise -dd _ngo -nt timestamp -i -bm edkBmmFile.bmm -p xc3s500e-fg320
in „Place and Route partially locked IO bus“ · FPGA, VHDL & Co. ·
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Datei
tn816def.inc
CTRLA = 0x0A80 ; Control A .equ TCD0_CTRLB = 0x0A81 ; Control B .equ TCD0_CTRLC = 0x0A82 ; Control C .equ TCD0_CTRLD = 0x0A83 ; Control D .equ TCD0_CTRLE = 0x0A84 ; Control E .equ TCD0_EVCTRLA = 0x0A88 ; EVCTRLA .equ TCD0_EVCTRLB = 0x0A89 ; EVCTRLB .equ TCD0_INTCTRL = 0x0A8C ; Interrupt Control .equ
in „ATtiny816 wo finde ich def.inc“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UM10398_-_LPC11xx_UserManual.pdf
pin. (LPC1113/14 only). PIO2_4 18 [3] I/O PIO2_4 — General purpose digital input/output pin. (LPC11C12/C14 only). [3] PIO2_5 20 I/O PIO2_5 — General purpose digital input/output pin. LPC1113/14 only). [3] PIO2_5 21 I/O PIO2_5 — General purpose digital input/output pin. (LPC11C12/C14 only). PIO2_6 1[
in „Cortex-M UART im Polling-Betrieb“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BTB06-600Adatasheet.php
J w§$;l ,4Ÿf³Ÿ 2f+ QëfÊ¢1 endstream endobj 36 0 obj << /Filter /FlateDecode /Length 716 >> stream dsÙRôk{ÿc"oÚ= {¿ë d ¥ l ÎŒ ò' 8K{ÕÅêÍj O SÛ ÉY r x I ®%HRù~ú 7¥Í K »(S Y[Ná.Ù ¢U¬cDv4×kbËA 0÷óÇ ø Ôš,¶1 UÈe!k ä;îöúÍ ÜEäÝÎv Œådp ÁÿPa ÛL óæ®ŒpÞ|ÿK¯ ¹åû"é¶Ø y œô ±J kP~ C À© 0F>- Û û!*ÐP ³Ê NÖß]\%]l TÍ
in „BTB04-600A ersetzen durch BTB600SL“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
fetch.php
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Datei
a.tif.txt
óUÖ¯j O ÷ýH íÚ¢/ß]m[üãŸO Ý q%è9Tªºg ÇÑb£¬ íK ¯×Oâ$ ÙÛNÛ œ>K 4 $<vž@+ÕŸ » = µb8% ¡Ë b ×(cþtQÜ>¯¬T¹7j [c ò*íÝåµI WµT \ Í?_¯ºgFfl š7 %=<DÍÑ¢ Ï' xÖ¥ üÔ ŠõuD õ - U ßBUIoÑô¡ÈŠ% Ù® ³ ªr ¯ë}ÿ¬Zª89&Z( !4©ñ hy0Ž(Óö© L ~NÙEkQ$ DHõ-t TʬMñ ¥ Îl ŸO"š( PÐI €ïÐ} 9* 8 ¥ £JgáIM)è dQ=Õ7 äšF3Ov Ùni9 IUE èë$[Ã6 d-ä &j2Ùh
in „Fastlimiter - Soundwesthost“ · Analoge Elektronik und Schaltungstechnik ·