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inhalt.html
/CharSet (/seven/zero/one/two/C/four/S/Oslash/five/U/period/six/space) /FontFile3 45 0 R >> endobj 21 0 obj 989 endobj 22 0 obj << /Filter /FlateDecode /Length 21 0 R >> stream H VË® 7 ý ù - £ HJÛ m ] 1ÐE MóB »@ÚE~¿ Ò ¬ñ5 Ûâ ×ö ŸtÈC ¹ Ëó_^ ûøÏ \Éä.Ûçyù°|]È}r /â ÙGu ýZ Ä+»¿ß ¿? ¹¿¶ \Ùöe~Œ?õ! û*f ì fý
in „was bedeutet DC1 DC3 DC15“ · Mikrocontroller und Digitale Elektronik ·
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UHF_Remote_Control_System_TEMIC_9606.pdf
Components for complete receiver on 303.85 MHz, AM........................................................ 21 9. References ..................................................................................................................................... 23 Issue: 09.96 TELEFUNKEN Semiconductors 1. Introduction
in „ISM Empfänger mit kleinstem Standby“ · HF, Funk und Felder ·
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rdr-840q_30w_INN3977CQ.pdf
Performance Data with SR FET version .............................................................. 21 8.1.1 30 VDC, 12 V 0.85 A (10 W) ................................................................ 21 8.1.2 60 VDC, 12 V 1.25 A (15 W) ................................................................
in „Frage zu PowerInc INN3977CQ“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
mega128RFA1.h
0x1b; sfrb EIFR=0x1c; sfrb EIMSK=0x1d; sfrb GPIOR0=0x1e; sfrb EECR=0x1f; sfrb EEDR=0x20; sfrb EEARL=0x21; sfrb EEARH=0x22; sfrw EEAR=0X21; // 16 bit access sfrb GTCCR=0x23; sfrb TCCR0A=0x24; sfrb TCCR0B=0x25; sfrb TCNT0=0x26; sfrb OCR0A=0x27; sfrb OCR0B=0x28; sfrb GPIOR1=0x2a; sfrb GPIOR2=0x2b; sfrb SPCR
in „ATmega128RFA1“ · Mikrocontroller und Digitale Elektronik ·
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Diode.pdf
50 8.5 9.4 9.9 1 14.4 27.7 0.145 19.5 124 0.073 7.3 SMAJ10A/CA 0.2 1 10 11.1 11.7 1 17 23.5 0.201 21.7 106 0.089 7.8 SMAJ12A/CA 0.2 1 12 13.3 14 1 19.9 20.1 0.259 25.3 91 0.116 8.3 SMAJ13A/CA 0.2 1 13 14.4 15.2 1 21.5 18.6 0.298 27.2 85 0.132 8.4 SMAJ15A/CA 0.2 1 15 16.7 17.6 1 24.4 16.4 0.361 32.5 71 0.197 8.8 SMAJ18A/CA 0.2 1 18 20 21.1 1 29.2 13.7 0.514 39.3 59 0.291 9.2 SMAJ20A/CA 0.2 1 20 22.2 23.4 1 32.4 12.3 0.637 42.8 54 0.338 9.4 SMAJ22A/CA 0.2 1 22 24.4 25.7 1 35.5 11.2 0.760 48.3 48 0.444 9.6 SMAJ24A/CA 0.2 1 24 26.7 28.1
in „Überspannungsschutz ADC“ · Analoge Elektronik und Schaltungstechnik ·
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SMBJ5.pdf
20 50 8.5 9.4 9.9 1 14.4 41.7 0.096 19.5 205 0.044 7.3 SMBJ10A/CA 0.2 1 10 11.1 11.7 1 17 37 0.127 21.7 184 0.051 7.8 SMBJ12A/CA 0.2 1 12 13.3 14 1 19.9 31 0.168 25.3 157 0.068 8.3 SMBJ13A/CA 0.2 1 13 14.4 15.2 1 21.5 29 0.191 27.2 147 0.076 8.4 SMBJ15A/CA 0.2 1 15 16.7 17.6 1 24.4 25.1 0.236 32.5 123
in „Zener Diode gesucht, die bei 4,0V nur 5-10mA zieht und 2-3 Watt "verbrennen" kann“ · Analoge Elektronik und Schaltungstechnik ·
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PO023OX1_10.pdf
voltage (4) VLCD-VCL 7.3 V Power supply voltage (5) VGH-VSS 13.7 V Power supply voltage (6) VSS-VGL 10.21 V TFT Common Electrode VCOMH 3. 6 V Note 7-2 Voltage VCOML 0.71 V Coupling voltage Δ Vp 0.82 V Black of Video Low Voltage VLB 0.24 V Black of Video High Voltage VHB 4.24 V White of Video Low Voltage VLW V Note 7-3 0.2 White of Video High Voltage VHW 4.18 V Note 7-1:The VCI 3±0.2V is base on item 11-2 setting, if out of range, will be have some display abnormal Note 7-2:VCOM must be adjusted optimize display quality, crosstalk, contrast ration and etc. Note 7-3: The information contained
in „Uhr Nachbau. Wo kriege ich dieses Display“ · Mikrocontroller und Digitale Elektronik ·
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pnFET_Si1551.pdf
Vos (V) rOS(on) (n) lo(A) Qg(Typ) 19@VOS ,4.5V 0.30 20 3,7@VGs:;2.7V 0.22 0.72 4.2 @Vas·;,,'2.V 0.21 Q.995 @ VGS ':: ··v4.5 ·,·20 1.600@VGS::::··2.7V ··0.34 052 ! , .800 @ VG.S -2.5 V -0.32 ~ - - - - '- - " " - - - '_--_._-_ ___ _-_._-_ _ ._._-------_ .-.-_ ------_ . _ ._._-------_. _ .._-_ _._ _ --
in „Kann diese Schaltung den 74HC132 killen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pnFET_Si1551.pdf
Vos (V) rOS(on) (n) lo(A) Qg(Typ) 19@VOS ,4.5V 0.30 20 3,7@VGs:;2.7V 0.22 0.72 4.2 @Vas·;,,'2.V 0.21 Q.995 @ VGS ':: ··v4.5 ·,·20 1.600@VGS::::··2.7V ··0.34 052 ! , .800 @ VG.S -2.5 V -0.32 ~ - - - - '- - " " - - - '_--_._-_ ___ _-_._-_ _ ._._-------_ .-.-_ ------_ . _ ._._-------_. _ .._-_ _._ _ --
in „Warum sperrt P-Kannal FET M1 nicht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
vle-gcc-0905c.diff
) lwz 20,-48(11) +HIDDEN_FUNC(_restgpr_20_x) LWZ 20,-48(11) CFI_RESTORE (20) -HIDDEN_FUNC(_restgpr_21_x) lwz 21,-44(11) +HIDDEN_FUNC(_restgpr_21_x) LWZ 21,-44(11) CFI_RESTORE (21) -HIDDEN_FUNC(_restgpr_22_x) lwz 22,-40(11) +HIDDEN_FUNC(_restgpr_22_x) LWZ 22,-40(11) CFI_RESTORE (22) -HIDDEN_FUNC(_restgpr
in „Toolchain für PowerPC mit VLE“ · Mikrocontroller und Digitale Elektronik ·
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uwe-100-120.pdf
OFF state OFF = Ground pin or external voltage 0 0.8 V Control Current open collector/drain 1 2 mA Base Plate "B" suffix www.murata-ps.com/support MDC_UWE-100-120W.C05 Page 3 of 35 UWE-100-120W Series Wide Input, Isolated Eighth-Brick DC-DC Converters FUNCTIONAL SPECIFICATIONS, UWE-3.3/30-Q48 (CONT.)
in „DC DC Konverter schwingt auf PWM-Frequenz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
log.txt
hapConfig::Controller::JSON | getASInputV- | | ueTemplates | | alueTemplat- | | | | es | | /json/getTimeBase | hapConfig::Controller::JSON | getTimeBase | | /json/getWeekdays | hapConfig::Controller::JSON | getWeekdays | | /json/getMacros | hapConfig::Controller::JSON | getMacros | | /json/getGuiViews | hapConfig
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Datei
ms5611.c
MS561101BA_PROM_REG_COUNT;i++) { if(i2c_start(MS561101BA + I2C_WRITE)) error(); i2c_write(MS561101BA_PROM_BASE_ADDR + (i * MS561101BA_PROM_REG_SIZE)); i2c_stop(); i2c_start(MS561101BA + I2C_READ); _C[i] = i2c_readAck(); _C[i] <<= 8; _C[i] |= i2c_readNak(); i2c_stop(); //DEBUG_PRINT(_C[i]); } /* int cnt; // simple
in „Problem mit avr-gcc und Optimierung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MessageBox.txt
Without it, the Compiler will not properly optimize the design. Info (332144): No user constrained base clocks found in the design Info (332143): No user constrained clock uncertainty found in the design. Calling "derive_clock_uncertainty" Info (332123): Deriving Clock Uncertainty. Please refer to report_sdc
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Die_Physik_der_Twisted-Pair-Verkabelung___Fluke_Networks.pdf
Länge eines Kabels hinweg stark gedämpft werden. Zum Beispiel die IEEE 802,3 Spezifikation für 1000BASE-T ermöglicht einen Verlust von maximal 24 dB, as zu einem Signal führt, das auf seiner Reise vom fernen Endsender zum Ethernet-Port Ihres Computers auf (ich werde die Mathematik für die Dichter erledigen
in „Ethernet Leitungsdifferenz 0,25mm innerhalb eines Adernpaares und 50mm zw. 2 Adernpaaren?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R44-2006.pdf
Indicates the computer of Y cable or terminal side. Keyboard input Short branch PC OR of the Y cable Base Cables: TERMINAL VS/HS: 8-0203-01 DUET: 8-0455-01 To Scanner Keyboard Note: Your cable may differ from illustration based on your Host Terminal. Figure 1. Keyboard-Wedge Cable Connections. 3 Plug the
in „Ansteuerung POS HS1250“ · Mikrocontroller und Digitale Elektronik ·
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Linear_VCO.pdf
approach is preferred. In most cases, a Colpitts oscillator is successfully used. Circuits with grounded base exhibit severe stability problems and even the Colpitts oscillator, based on its emitter circuitry, shows ocassional unwanted resonances up to 6GHz. This is due to the fact that the modern Si and SiGe
in „Leicht unterschiedliche Frequenzen stabil erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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tl431.pdf
....................................... 4 10 Applications and Implementation...................... 21 10.1 Application Information.......................................... 21 7.1 Absolute Maximum Ratings ...................................... 4 7.2 ESD Ratings........................................
in „Analogeingang: Problem bei Überlast“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ATtiny212_40001911A.pdf
TCB consists of a base counter and control logic which can be set in one of eight different modes, each mode providing unique functionality. The base counter is clocked by the peripheral clock with optional prescaling. ©
in „Neue 8-Bit Tinys vorgestellt: 417/814/816/817“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dvm13mfc2.pdf
50MHz 1kHz 10Hz 3 AC 100Hz ~ 2MHz 10kHz 0.1Hz 0.01Hz ~ 100Hz (not 3 DC including 100Hz) 0.001Hz Time Base Short-Time Stability ± 3 x 10 /sec Long-Time Stability ± 2 x 10 /month Temperature Drift Coefficient ± 1 x 10 , 10°C ~ 40°C Line Voltage Variation ± 1 x 10 for line voltage ± 10% Gate Time continuously
in „Was taugt dieser Frequenzzähler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Evolutionary_Audio.pdf
especially The inherent snag in this approach is at the extreme ends of the audio spec that the base voltage/collector current trum, by avoiding the need for this characteristics of germanium and sili component have remained one of the contransistors aredifferent, withthat of majorbenefitsof"solid-state
in „Eigenbau Verstärker - Verbesserungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Evol._Audio_ks_-_WW.pdf
especially The inherent snag in this approach is at the extreme ends of the audio spec that the base voltage/collector current trum, by avoiding the need for this characteristics of germanium and sili component have remained one of the contransistors aredifferent, withthat of majorbenefitsof"solid-state
in „Quasi Komplementär und Komplementäre Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
nkat20-21.pdf
Gehäuse SOT 23 (Abmessungen 2.8 x 1.2 x 1.1 mm) Typ Funktion Ur (V) Id (mA) ab 10. ab 100 ab 500 ab 3000 BAS 16 schnelle Schaltdiode 75 250 -.10 -.021 -.0139 -.0095 BAS 19 schnelle Schaltdiode 100 200 -.11 -.029 -.0197 -.0131 BAS 20 schnelle Schaltdiode 150 200 -.12 -.026 -.0173 -.0115 BAS 21 schnelle Schaltdiode
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HotRodEtherwav.pdf
beat', test gear. Leave a clear space of two or three feet around your work area. Place the cabinet base in the so that the instrument, once properly tuned, is silent middle of the cleared space, and put the pitch when the player steps away from it. The audio antenna in place. waveform at the junction
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mc35i_hd_v0103.pdf
modes ...............................................................................................21 3.2 Power supply .....................................................................................................22 3.2.1 Power supply pins on the ZIF connector..................................
in „Taste im Hörer an GSM-Modul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TransceiverIC.pdf
Data-Input/Output 14 19 XTO 2) Clock Output f2) µC / SEL RX/TX Selection 15 20 CSEL Control Switch 16 21 PON Power up/down 22 MDO Test Pad, do not connect 17 23 XTAL Crystal-Oscillator Input 18 24 DGND Digital Supply Ground 19 25 DVDD Digtal Supply Voltage 20 26 VCO1 Voltage Controlled Oscillator 21 27
in „Transceiver IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DATASHEET-LI10600T070IA3098-TR.pdf
0.1432(V) mm Viewing Direction ALL - Outside Dimension 165.0(W)*100.0(H)*3.5(D) mm Active Area 154.21(W)*85.92(H) mm Mechanical Luminance 200 cd/m² Characteristics LED Numbers 21 LEDS - From left to right Pin Order - 50PIN_0.5mm Interface RGB_24bit - Electrical Color Depth 16.7M colors Characteristics
in „Parallel RGB Frequenz/Einzelbild?“ · Mikrocontroller und Digitale Elektronik ·
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VN5E016AHTR.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 21 Figure 20. Input low level. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 21 Figure 21. Input high level . . . . . . . . . . . .
in „[V] Highside-Schalter“ · Markt ·
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ULN200xA_data.pdf
,H igh-C urrentD arlingtonTransistorA rrays 1 Features The ULx2004A devices have a 10.5-kΩ series base resistor to allow operation directly from CMOS • 500-mA-Rated Collector Current (Single Output) devices that use supply voltages of 6 V to 15 V. The • High-Voltage Outputs: 50 V required input current
in „[V] Darlington Transistor Arrays, npn, Relaistreiber“ · Markt ·
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Datei
eve.cpp
update the command-ram pointer write_string(text); } #ifdef FT_81X_ENABLE void cmd_setbase(uint32_t base) { start_cmd(CMD_SETBASE); cmdparam8((uint8_t)(base)); // Send data low byte cmdparam8((uint8_t)(base >> 8)); cmdparam8((uint8_t)(base >> 16)); cmdparam8((uint8_t)(base >> 24)); // Send data high byte
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Datei
eve.cpp
update the command-ram pointer write_string(text); } #ifdef FT_81X_ENABLE void cmd_setbase(uint32_t base) { start_cmd(CMD_SETBASE); cmdparam8((uint8_t)(base)); // Send data low byte cmdparam8((uint8_t)(base >> 8)); cmdparam8((uint8_t)(base >> 16)); cmdparam8((uint8_t)(base >> 24)); // Send data high byte
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16-BT-131INK.pdf
CPWtCPW Serialclock FCP DS tDH Serialdata 1-bit datait data Fig. 2-22ing Condition of Serial Clo Tab21 Tioindition em S mbol Codin MniTyp Max U nit CP frequency c | | | 0.5 MHz CP puisehw tCPW | i700 j | ns Time needetCS-CP | 000 j | | ns betwn nS CP Time needetCP-CS | 000 j | | ns betwn nP CS Time to
in „FUTABA Chip in Glass (CIG) VFDisplays“ · Mikrocontroller und Digitale Elektronik ·
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TDA-884.pdf
matrix PAL/NTSC(Japan) X X X X X Colour matrix NTSC Japan/USA X X X X YUV interface X X X X X X X Base-band delay line for PAL and SECAM or chroma comb filterXfor X X X X X X NTSC Adjustable luminance delay time X X X X X Horizontal geometry X X X X X Horizontal and vertical zoom X X X X X Vertical scroll
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
emc.c
//D19 LPC_SCU->SFSPD_6 = (MD_PLN_FAST | FUNC2); //D20 LPC_SCU->SFSPD_7 = (MD_PLN_FAST | FUNC2); //D21 LPC_SCU->SFSPD_8 = (MD_PLN_FAST | FUNC2); //D22 LPC_SCU->SFSPD_9 = (MD_PLN_FAST | FUNC2); //D23 LPC_SCU->SFSPE_5 = (MD_PLN_FAST | FUNC3); //D24 LPC_SCU->SFSPE_6 = (MD_PLN_FAST | FUNC3); //D25 LPC_SCU
in „LPC1857 ARM Cortex M3 Problem mit EMC und SDRAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD590.pdf
.11 Changesto Endnote2, Table1...................................................3 Changesto Figure 21 and Figure 22........................................11 Changesto Ordering Guide.....................................................15 Deleted Figure 24..............................................
in „AD590 Temperatursensor von Analog Devices - Frage zum Einbau“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Descriptions.txt
STORE REGISTER, tri-state 23 HEXFET Power MOSFET 22 TOGGLE SWITCH 22 SLIDING SWITCH 22 Dual In Line 21 TRANSFORMER 21 SIL RESISTOR 21 HEWLETT PACKARD OPTO COUPLER 20 Standard Ohmscher Widerstand 20 SMD SHUNT RESISTOR 20 Silicon Schottky Diodes 20 N-CHANNEL MOS FET 20 Low Signal Relay 18 MKDSN 1,5/ 2-5,08
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
fcc_9.pdf
252.9482 27.98 13.94 41.92 46.00 -4.08 QP V 336.0350 18.96 16.03 34.99 46.00 -11.01 QP V 533.8318 17.52 21.58 39.10 46.00 -6.90 QP H 76.7806 28.56 7.14 35.70 40.00 -4.30 QP H 155.9097 27.35 11.38 38.73 43.50 -4.77 QP H 215.2675 27.39 9.91 37.30 43.50 -6.20 QP H 330.1949 21.14 15.85 36.99 46.00 -9.01 QP H
in „Wlan2Serial Modul für 5 euro“ · Mikrocontroller und Digitale Elektronik ·
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i2c.pdf
As shown in Figure 39, the ACCESS.bus protocol comprises three levels: the I C-bus protocol, the base protocol, and the application ACCESS.bus SYSTEM protocol. The ACCESS.bus (bus for connecting ACCESSory devices to a host system) is an I C-bus based open-standard serial interconnect The base protocol
in „Suche I²C Bus Grundlagen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
px1011a.px1012a.pdf
Express protocol and signaling. The PX1011A/1012A PCI Express PHY is compliant to the PCI Express Base Specification, Rev. 1.0a, and Rev. 1.1. The PX1011A/1012A includes features such as clock and data recovery (CDR), data serialization and de-serialization, 8b/10b encoding, analog buffers, elastic buffer
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ImplementierungEinerFiniteStateMachine.pdf
Franklin Street , Fifth Floor, Boston , MA 02110-1301, USA. 17 */ 18 19 /** 20 * \author Philipp Kaelin 21 * \date created: 2011/11/13 <br> 22 * modified: 2011/11/13 23 * \brief This is the base class from which all the states of the fsm should be inherited 24 * \defgroup State 25 */ 26 #ifndef STATE_H_ 27
in „Artikel über Finite State Machines“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc6462.pdf
the EBI is used to drive the REG signal of the CompactFlash Device (except in True IDE mode). Table 21-5. CompactFlash Mode Selection A[23:21] Mode Base Address 000 Attribute Memory 010 Common Memory 100 I/O Mode 110 True IDE Mode 111 Alternate True IDE Mode 21.6.5.2 CFCE1 and CFCE2 signals To cover all
in „Externes SRAM + Atmel AT91SAM7SE“ · Mikrocontroller und Digitale Elektronik ·
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PDF
90000897.pdf
Regulatory information FCC Part 15 Class B 66 Labeling requirements (FCC 15.19) 66 Modifications (FCC 15.21) 66 Industry Canada 67 Europe 67 Declaration of Conformity (DoC) 68 Digi Connect ME, Wi-ME, ME 9210, Wi-ME 9210HardwareReferenceManual 5 Maximum power andfrequency specifications 68 Antenna configurations
in „[V] WEITERE gebrauchte DIGI-Connect-ME LAN-Seriell Module (10€/St.)“ · Markt ·
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PDF
stm32l431_reference_manual.pdf
RM0394 11.5.7 DMA1 channel selection register (DMA1_CSELR) Address offset: 0xA8 (with respect to DMA1 base address) Reset value: 0x0000 0000 This register is used to manage the mapping of DMA channels (see Figure 25). 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 Res. Res. Res. Res. C7S [3:0] C6S [3:0]
in „ADC differential mode“ · Mikrocontroller und Digitale Elektronik ·
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stm32l431_reference_manual.pdf
RM0394 11.5.7 DMA1 channel selection register (DMA1_CSELR) Address offset: 0xA8 (with respect to DMA1 base address) Reset value: 0x0000 0000 This register is used to manage the mapping of DMA channels (see Figure 25). 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 Res. Res. Res. Res. C7S [3:0] C6S [3:0]
in „Offset Data alignment“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stm32l431_reference_manual.pdf
RM0394 11.5.7 DMA1 channel selection register (DMA1_CSELR) Address offset: 0xA8 (with respect to DMA1 base address) Reset value: 0x0000 0000 This register is used to manage the mapping of DMA channels (see Figure 25). 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 Res. Res. Res. Res. C7S [3:0] C6S [3:0]
in „DMA one shot mode“ · Mikrocontroller und Digitale Elektronik ·
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Datei
drv6963.h
/ 1c00H +---------------+ // | CG Ram | // | 1024 Bytes | // 1fffH +---------------+ #define CGRamBase 0x1C00 // Requires offset = 3 #define OFFSET 0x03 // CG rom 1800h - 1FFFh // char80h Starts at 1C00h // 1800h + 80h*8 = 1C00 #define SET 1 // set pixel #define CLEAR 0 // clear Pixel #define ON 1 #define OFF 0 // Commands for Controler #define LCD_CURSOR_POINTER_SET 0x21 #define LCD_OFFSET_REGISTER_SET 0x22 #define LCD_ADDRESS_POINTER_SET 0x24 #define LCD_AUTO_WRITE_MODE 0xb0 #define LCD_AUTO_WRITE_OFF 0xb2 #define LCD_DISPLAY_OFF 0x90 #define LCD_CURSOR_ON 0x92 #define
in „240x128 Grafik Display T6963“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr_compiler.h
This file implements some macros that makes the IAR C-compiler and * avr-gcc work with the same code base for the AVR architecture. * * \par Documentation * For comprehensive code documentation, supported compilers, compiler * settings and supported devices see readme.html * * \author * Atmel Corporation
in „IPOD and AVR anschließen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd4bitsub.asm
RS = 2 ;----------------------------------------- .DEF lcdDATA = R18 .DEF cnt1 = R20 .DEF cnt2 = R21 ; init LCD-Display lcdINIT: ; set DDRB and DDRC ldi mp, (1<<D4)|(1<<D5)|(1<<D6)|(1<<D7) out dataPORTD, mp ldi mp, (1<<RS)|(1<<RW)|(1<<E0)|(1<<E1) out controlPORTD, mp ; init sequence rcall delay5ms rcall
in „Tiny26 LCD an PortA und PortB“ · Mikrocontroller und Digitale Elektronik ·
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Datei
board_cstartup_gnu.c
MCI_IrqHandler, /* 18 MCI */ TWI0_IrqHandler, /* 19 TWI 0 */ TWI1_IrqHandler, /* 20 TWI 1 */ SPI_IrqHandler, /* 21 SPI */ SSC_IrqHandler, /* 22 SSC */ TC0_IrqHandler, /* 23 Timer Counter 0 */ TC1_IrqHandler, /* 24 Timer Counter 1 */ TC2_IrqHandler, /* 25 Timer Counter 2 */ TC3_IrqHandler, /* 26 Timer Counter 3 */
in „Wie funktioniert der ARM cortex M3?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
can_interface.c
= 0; /* for return of the interrupt handling */ /** * @brief Configures the NVIC and Vector Table base address. * @param None * @retval None */ #define CANx CAN1 #define GPIO_CAN GPIO_CAN1 #define GPIO_Remapping_CAN GPIO_Remapping_CAN1 #define GPIO_CAN GPIO_CAN1 #define GPIO_Pin_CAN_RX GPIO_Pin_CAN1_
in „Interruptroutine Timer Cotex M3“ · Mikrocontroller und Digitale Elektronik ·