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Datei
sheeva-boot-3.5.7-initrd.txt
filesize=30eef8 fileaddr=2000000 netmask=255.255.255.0 ipaddr=192.168.178.26 serverip=192.168.178.20 console_1=console=ttyS0,115200 console_orig=console=ttyS0,115200 mtdparts=nand_mtd:0xc0000@0(uboot)ro,0x1ff00000@0x100000(root) bootargs_orig=console=ttyS0,115200 mtdparts=nand_mtd:0x400000@0x100000(
in „Sheevaplug brauche eine Einführung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sendmail.c
---------------------------------------------------------------------------- unsigned char Encode_Base64(char *wort, char *encoded) { char in[3], out[4]; unsigned char len, j=0, i, count=0; while( wort[j] != 0) { len = 0; for( i = 0; i < 3; i++ ) { in[i] = wort[j]; if( wort[j] != 0) { len++; j++; } else
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PDF
Active_Negative_Inductors.pdf
amplifier, and the impedance ing of the antenna to the amplifier difficult, ifZ connected between the two base terminals is impossible(1). Numeroussolutionsinvolvingre- reflectedtotheinputterminalsasanegativeim- mote tuning can be found (2, 3, 4), but overall apedanceof-Z. widebandsolutionishighlydesireable.
in „Richtwirkung einer Loopantenne erhöhen“ · HF, Funk und Felder ·
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PDF
2410121625_NEWOPTO-PIR223D-S0_C2887901.pdf
UA 3.3V\25° working current 灵敏度阈值 不可调节 V SENS 110 UV Sensitivity threshold unadjustable 工作温度 W ST -20 70 ℃ working temperature 输出 Output 输出低电流 OL -5 5 mA Output Low Current 封锁时间 不可调节 2.3 S Lock Time unadjustable 延迟时间 不可调节 1 S Delay Time unadjustable 地址:惠州市惠城区潼侨镇宏村宏川路鑫永诚科技园 3 /9 电话(Tel):0752—7987222 网址
in „Lampe mit Transistor schalten - Leuchtet nur schwach“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm5642.pdf
100 pF 10 m: 50V 27 RSNS2 R 16 2.8Arms 7 VLIN5 4.7 : 3 17 100: Q4 COMP1 HDRV2 Si4850EY 12 18 D 3B BAS40-06 C27 C26 C19 8.2 nF COMP2 CBOOT2 VDD C 25 L2 Vo2 = 3.3V, 4A 1 PF 4.7 PF C 20 15 nF SW2 16 100 nF R 10 P+▯▯ 23 R 13.7 Q5 R C23 8.45 24 k: LDRV2 20 12 m:▯ 19 + 330 PF k: 8 11 8.25 6.3V SGND FB2 Si4840DY
in „Komisches Verhalten von LM5642MTCX“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Vishay-Intertech-VS-E5PH6006L-N3_C2984102.pdf
Current 140 120 RMS limit ) ( s 100 o r 80 e o D = 0.01 P 60 D = 0.05 e D = 0.10 a 40 D = 0.20 e D = 0.50 A DC 20 0 0 20 40 60 80 100 I - Average Forward Current (A) F(AV) Fig. 5 - Average Power Loss vs. Average Forward Current 1 e ) n W a / e ( p e 0.1 I a a C m t 0.50 e n 0.20 T i 0.01 0.10
in „Netzteil schützen / Diode / Rückstrom“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
spc560b50.h
CMU_IMR; /* Interrupt Mask Register */ union { vuint32_t REG; struct { vuint32_t:12; vuint32_t MD:20; } BIT; } CMU_MDR; /* Measurement Duration Register */ /************************************/ /* CGM General Registers @ CGM base address + 0x0370 */ /************************************/ int32_t CGM_reserved7
in „Toolchain für PowerPC mit VLE“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mach-mini2440.c
attempts = 10, }; static struct ts_filter_median_configuration mini2440_ts_median_config = { .extent = 20, .decimation_below = 3, .decimation_threshold = 8 * 3, .decimation_above = 4, }; static struct ts_filter_mean_configuration mini2440_ts_mean_config = { .bits_filter_length = 2, /* 4 points */ }; static
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
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Datei
irsnd.c
TimeBaseFreq = RCC_ClocksStructure.PCLK2_Frequency; } else { TimeBaseFreq = RCC_ClocksStructure.PCLK2_Frequency * 2; } # endif } freq = TimeBaseFreq/freq; /* Set frequency */ TIM_SetAutoreload(IRSND_TIMER, freq
in „IR Fernbedienung mit IRSND“ · Mikrocontroller und Digitale Elektronik ·
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Datei
smartctl_mp.txt
to override this guess. Note that the printed output of smartctl displays most numerical values in base 10 (decimal), but some values are displayed in base 16 (hexadeci- mal). To distinguish them, the base 16 values are always displayed with a leading "0x", for example: "0xff". This man page follows the
in „smartctl Ausgabe für HDs und SSDs - Seek_Error_Rate“ · PC Hard- und Software ·
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PDF
T-3.pdf
20 +/- 2 degC 2-2 Relative Humidity 65% +/- 5% 3. GENERAL SECTION: 3-1 Power Supply AC 230V, 50Hz 3-2 Power Consumption 10.5 Watts 3-3 Dimensions 450 (W) x 370 (D) x 86 (H) mm 3-4 Weight 8.5 Kgs NOTE: Measurements
in „Eprom von Denon DJ Laufwerk defekt Winbond 78e52“ · Mikrocontroller und Digitale Elektronik ·
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PDF
c01609323.pdf
tolerance Boot ROM support Yes Network transfer mode Full-duplex Half-duplex (not available for the 1000BASE-T transceiver) Network transfer rate 10BASE-T (half-duplex) 10 Mbps 10BASE-T (full-duplex) 20 Mbps 100BASE-TX (half-duplex) 100 Mbps 100BASE-TX (full-duplex) 200 Mbps 1000BASE-T (full-duplex) 2000 Mbps
in „PC bootet nicht nach cpu Tausch“ · PC Hard- und Software ·
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PDF
c01609323.pdf
tolerance Boot ROM support Yes Network transfer mode Full-duplex Half-duplex (not available for the 1000BASE-T transceiver) Network transfer rate 10BASE-T (half-duplex) 10 Mbps 10BASE-T (full-duplex) 20 Mbps 100BASE-TX (half-duplex) 100 Mbps 100BASE-TX (full-duplex) 200 Mbps 1000BASE-T (full-duplex) 2000 Mbps
in „PC bootet nicht nach cpu Tausch“ · PC Hard- und Software ·
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PDF
huuang.pdf
External terminal PD002 0 Frequency 2:Communication port PD003 Main Frequency 0.00~400.00 Hz 0.00 PD004 Base Frequency 0.01~400.00 Hz 50.00 PD005 Max Operating 50.00~400.00 Hz 50.00 Frequency PD006 Intermediate Frequency 0.01~400.00 Hz 2.50/3.0 PD007 Min. Frequency 0.01~20.00 Hz 0.50 PD008 Max. Voltage 0.1V
in „87Hz-Schaltung Dreieck Vorteile?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
huuang.pdf
External terminal PD002 0 Frequency 2:Communication port PD003 Main Frequency 0.00~400.00 Hz 0.00 PD004 Base Frequency 0.01~400.00 Hz 50.00 PD005 Max Operating 50.00~400.00 Hz 50.00 Frequency PD006 Intermediate Frequency 0.01~400.00 Hz 2.50/3.0 PD007 Min. Frequency 0.01~20.00 Hz 0.50 PD008 Max. Voltage 0.1V
in „Frequenzumrichter und Motor für meine Drehbank“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC33153-D.pdf
L 2.6 O O S S R 2.6 R 2.5 T T T 2.4 T 2.4 P P , , VIL I 2.2 VIL I 2.3 - - I I V 2.0 V 2.2 -60 -40 -20 0 20 40 60 80 100 120 140 12 13 14 15 16 17 18 19 20 T , AMBIENT TEMPERATURE (°C) V , SUPPLY VOLTAGE (V) A CC Figure 4. Input Threshold Voltage Figure 5. Input Threshold Voltage versus Temperature versus
in „Treiber für MOSFET Brücke mit eingebauten Kurzschlußschutz gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
GIC_Presentation_at_PSRC_05_14_2014.pdf
phase transformer - 20 Amps DC 40% 35% High – Peak pulse One per Cycle n 30% r Small mean – width u C a 25% ú 1/8 – 1/12 of Cycle L o % 20% § RMS = 15 – 20 % of peak t e § Calculated using integration r c 15% g i x E 10% 5%
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Datei
pllsetup.S
@ SCB_BASE 0xE01FC000 @ System Control Block @ #define PLLCON_OFFSET 0x080 @ #define PLLCFG_OFFSET 0x084 @ #define PLLSTAT_OFFSET 0x088 @ #define PLLFEED_OFFSET 0x08C @ #define SCS_OFFSET 0x1A0 @ #define MAMCR_OFFSET
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PDF
FAM14_30014000-2_dt.pdf
und Funk-Antennenmodul mit nachge- Steckbrücken PC mit RS232-Bus verbinden und/oder Schreiben der Base-ID des FAM14 mit schalteten Funk-Schaltaktoren Damit sich die Steckbrücken im Betrieb Funk-Antennenmodul FAM14 bis zu 3 Funk-Empfangsmodule FEM mit PC-Tool PCT14. Oder mit der PC-Soft- nicht lockern
in „Dimmer für den Verteilerschrank mit Steuerinterface“ · Haus & Smart Home ·
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Datei
mosquitto_pub_dbg.txt
getsockname(11, {sa_family=AF_NETLINK, nl_pid=21707, nl_groups=00000000}, [12]) = 0 sendto(11, {{len=20, type=0x16 /* NLMSG_??? */, flags=NLM_F_REQUEST|0x300, seq=1545944974, pid=0}, "\0\0\0\0"}, 20, 0, {sa_family=AF_NETLINK, nl_pid=0, nl_groups=00000000}, 12) = 20 recvmsg(11, {msg_name={sa_family=AF_NETLINK
in „SDR-Dekoder für TFA KlimaLogg Pro/IT+ Temperatursensoren“ · Projekte & Code ·
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PDF
TL77xx_Appl.pdf
V 2,512 V 2,511 V 2,51 V 2,509 V 2,508 V 2,507 V 2,506 V 2,505 V 0 V 5 V 10 V 15 V 20 V V cc Supply voltage Supervisor TL77xx Series 9 Application examples Figure 11. Typical Variation of the Reference Voltage V versus ref supply Voltage Variations As has already been mentioned the supply
in „Mit negativen Impuls Relais schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
smbj.pdf
16.7 18.5 1.0 15 1.0 24.6 24.4 (+)SMBJ16A LP LM 17.8 19.7 1.0 16 1.0 23.1 26.0 (+)SMBJ17A LR LR 18.9 20.9 1.0 17 1.0 21.7 27.6 (+)SMBJ18A LT BT 20.0 22.1 1.0 18 1.0 20.5 29.2 (+)SMBJ20A LV LV 22.2 24.5 1.0 20 1.0 18.5 32.4 (+)SMBJ22A LX BX 24.4 26.9 1.0 22 1.0 16.9 35.5 (+)SMBJ24A LZ BZ 26.7 29.5 1.0 24
in „SMD-Bauteil identifizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slva001d_1_.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 20 Current Limiting . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 20 Fold-Back Current Limiting . . . . . .
in „Suche µC für Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KIN.pdf
50mm (2.0 INCH) 5x7 DOT MATRIX DISPLAYS ® TA20-11 TC20-11 TBA20-11 TBC20-11 Kingbright TBA20-12 TBC20-12 TBA20-22 TBC20-22 Features Description l2.0 INCH MATRIX HEIGHT. The Bright Red source color devices are made with Gallium lDOT SIZE 5mm. Phosphide
in „Led-Matrix Überlegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
071148-D_CC2-AVR-board-2.pdf
uns verwen- dete Display verfügt über folgende 16 C1 IC1 Anschlüsse: 8 10µ HD44780U 6V3 LC DISPLAY 20 x 4 Pin 14...7: Datenbus +5V +5V D Pin 6: E, Enable-Signal, aktiv high 7 6 5 4 3 2 1 0 / S O D S 15 D D D D D D D D E R R V V V Pin 5: R/W, 0 = Schreiben, 1 = Lesen EN3 K1 1 C2 Pin 4: RS, 1= Daten, 0
in „Schaltung für Schrittmotor mit I2C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
startup_MKL25Z4.s
) <0x0-0xFFFFFFFF:8> ; </h> Heap_Size EQU 0x00000000 AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit PRESERVE8 THUMB ; Vector Table Mapped to Address 0 at Reset AREA RESET, DATA, READONLY EXPORT __Vectors EXPORT __Vectors_End EXPORT __Vectors_Size __Vectors DCD
in „Interrupts bei Keil ARM? (KL25Z)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
servo.bas
.3 = 0 Portb.4 = 1 For I = 1 To Sdat(4) 'warte von 1 bis (10-20) Waitus 100 Next I Portb.4 = 0 Portb.5 = 1 For I = 1 To Sdat(5) 'warte von 1 bis (10-20) Waitus 100 Next I Portb.5 = 0 Portb.6 = 1 For I = 1 To Sdat(6) 'warte von 1 bis (10-20) Waitus 100 Next I Portb
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PDF
BUK100-50GL_1.pdf
Normalised Current Derating ID / A BUK100-50GL 120 40 110 VIS / V = 100 35 90 30 6 80 25 5.5 70 60 20 5 4.5 50 40 15 4 3.5 30 10 20 3 10 5 2.5 0 0 0 20 40 60 80 100 120 140 0 4 8 12 16 20 24 28 32 Tmb / C VDS / V Fig.3. Normalised continuous drain current. Fig.6. Typical output characteristics, T = 25
in „12V/2,5 A Sicher schalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
JamesMevey2009.pdf
magnet rotor.............................................................................225 Figure 5.20 – Maximum values for operation below and above base speed. ..............................226 Figure 5.21 – Flux weakening in the rotor reference frame.................................................
in „SVPWM mit LPC1769“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sn75452b.pdf
SNJ55453BFK ACTIVE LCCC FK 20 1 TBD POST-PLATE Level-NC-NC-NC SNJ55453BJG ACTIVE CDIP JG 8 1 TBD A42 SNPB Level-NC-NC-NC SNJ55454BFK OBSOLETE LCCC FK 20 TBD POST-PLATE Level-NC-NC-NC SNJ55454BJG ACTIVE CDIP JG 8 1 TBD A42 SNPB Level-NC-NC-NC
in „Suche Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
glxinfo.txt
DRI Intel(R) HD Graphics 4000 (IVB GT2) OpenGL core profile version string: 4.2 (Core Profile) Mesa 20.3.2 OpenGL core profile shading language version string: 4.20 OpenGL core profile context flags: (none) OpenGL core profile profile mask: core profile OpenGL core profile extensions: GL_3DFX_texture_compression_FXT1
in „Archlinux hängt auf einem Monitor“ · PC Hard- und Software ·
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PDF
MAX6603.pdf
otherwise noted.) 0 6 6 SUPPLY CURRENT OUTPUT-VOLTAGE DRIFT X vs. SUPPLY VOLTAGE vs. TEMPERATURE 3.8 0 20 0 3 3 A T = +125°C 6 6 3.5 A M ) M M m 10 A TA= +85°C T ( 3.2 I N T A +25°C D E G U 2.9 T 0 Y O L TA= -40°C T U 2.6 P S TA= 0°C U-10 O 2.3 2.0 -20 3.0 3.5 4.0 4.5 5.0 5.5 -40 -10 20 50 80 110 SUPPLY
in „Temperaturmessung mit Mikrocontroller im Batteriebetrieb“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WS2801.pdf
29.95 29.9 0.61 A29.85 F 0.6 t 29.8 V I 29.75 0.59 29.7 29.65 0.58 29.6 0.57 29.55 3 4 5 5.5 -40 -20 0 20 40 60 80 100 120 VCC(V) Temp. Output current vs. Temp (RFB=20Ω) Feed back voltage vs. temp. IOUT vs.VOUT IVCC vs. Temp. 30.1 1400 30.05 30 1200 29.95 1000 ) A m 29.9 ( 800 T29.85 C I 29.8 C 600 29.75 I 400 29.7 200 29.65 29.6 0 2 3 VOUT(V) 4 5 -40 -20 0 20 40 60 80 100 120 Temp.(℃) Output current vs. output voltage VCC vs. Temp. 6 /15 WS-Preliminary-V0.3 http://www.world-semi.com Preliminary WS2801 3-Channel Constant Current LED Driver With Programmable
in „Sammelbestellung Adafruit - Digital Addressable RGB LED w/ PWM waterproof flexi strip (LPD8806)“ · Markt ·
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PDF
WS2801.pdf
29.95 29.9 0.61 A29.85 F 0.6 t 29.8 V I 29.75 0.59 29.7 29.65 0.58 29.6 0.57 29.55 3 4 5 5.5 -40 -20 0 20 40 60 80 100 120 VCC(V) Temp. Output current vs. Temp (RFB=20Ω) Feed back voltage vs. temp. IOUT vs.VOUT IVCC vs. Temp. 30.1 1400 30.05 30 1200 29.95 1000 ) A m 29.9 ( 800 T29.85 C I 29.8 C 600 29.75 I 400 29.7 200 29.65 29.6 0 2 3 VOUT(V) 4 5 -40 -20 0 20 40 60 80 100 120 Temp.(℃) Output current vs. output voltage VCC vs. Temp. 6 /15 WS-Preliminary-V0.3 http://www.world-semi.com Preliminary WS2801 3-Channel Constant Current LED Driver With Programmable
in „WS2801 mehrere LEDs mit KSQ anschließen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
opa541.pdf
TYP MAX UNITS INPUT OFFSET VOLTAGE VOS ±2 ±10 ±0.1 ±1 mV vs Temperature Specified Temperature Range ±20 ±40 ±15 ±30 µV/°C vs Supply Voltage V = ±10V to ±V ±2.5 ±10 ✻ ✻ µV/V S MAX vs Power ±20 ±60 ✻ ✻ µV/W INPUT BIAS CURRENT B 4 50 ✻ ✻ pA INPUT OFFSET CURRENT I ±1 ±30 ✻ ✻ pA OS Specified Temperature Range
in „High-Power OPV mit mehr Bandbreite“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ht1632cv130.pdf
12H ROW10 15H 14H ROW11 17H 16H ROW12 19H 18H ROW13 1BH 1AH ROW14 1DH 1CH ROW15 1FH 1EH ROW16 21H 20H ROW17 23H 22H ROW18 25H 24H ROW19 27H 26H ROW20 29H 28H ROW21 2BH 2AH ROW22 2DH 2CH ROW23 2FH 2EH ROW24 31H 30H ROW25 33H 32H ROW26 35H 34H ROW27 37H 36H ROW28 39H 38H ROW29 3BH 3AH ROW30 3DH 3CH ROW31
in „8x8 RGB Matrix Ansteuerungsproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
User-Guide_L200.pdf
Whenattheterminals ofR24thereisavoltagedrop perature. To avoid having to use heatsinks which sufficienttomakeQ20conduct,Q19beginstodraw arecostlyandbulky,athermalprotectioncircuit has current from the base of the power transistor (dar- beenintroducedtolimittheoutputcurrentsothatthe lingtonformedbyQ22andQ23)and
in „Bastel Anleitung Funktion Generator und oder Labor Netzteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spice_3f3_Users_Manual.pdf
NS> MNAME <AREA> <OFF> <IC=VBE, VCE> <TEMP=T> Examples: Q23 10 24 13 QMOD IC=0.6, 5.0 Q50A 11 26 4 20 MOD1 NC, NB, and NE are the collector, base, and emitter nodes, respectively. NS is the (optional) sub- strate node. If unspecified, ground is used. MNAME is the model name, AREA is the area factor,
in „Potenzierender Operationsverstärker, Daten Diode“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mod_input_circuit.pdf
2.84 254.01 1.11 100 3.02 270.11 1.64 125 3.42 305.88 2.72 280R/4x22R/ArnoR DST1202B 150 3.58 320.20 3.12 PP-150 Probe 175 3.64 325.56 3.26 200 3.28 293.36 2.36 10 2.84 254.01 1.11 100 3.08 275.48 1.81 280R/4x22R/ArnoR 125 3.08 275.48 1.81 150 2.88 257.59 1.23 DST1202B TT-HF512 Probe 175 2.72 243.28
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Datei
Cstartup.s
effect in Normal Mode ;- De-assert the NIRQ and clear the source in Protect Mode ldr r14, =AT91C_BASE_AIC ldr r0 , [r14, #AIC_IVR] str r14, [r14, #AIC_IVR] ;- Enable Interrupt and Switch in Supervisor Mode msr CPSR_c, #SVC_MODE ;- Save scratch/used registers and LR in User Stack stmfd sp!, { r1-r3,
in „Probleme mit dem Remap Befehl beim AT91SAM7X mit RTOS“ · Mikrocontroller und Digitale Elektronik ·
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Datei
board-icnova_adb1000.c
refresh = 50, .xres = 320, .yres = 240, .pixclock = KHZ2PICOS(6500), .left_margin = 34, .right_margin = 20, .upper_margin = 9, .lower_margin = 4, .hsync_len = 34, .vsync_len = 9, .sync = FB_SYNC_HOR_HIGH_ACT | FB_SYNC_VERT_HIGH_ACT, .vmode = FB_VMODE_NONINTERLACED, }, #endif }; static struct fb_monspecs at91fb_default_monspecs
in „SPI - spidev ICNOVA ADB1000 SAM9g45“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TASE_submitted_corrections-libre.pdf
). This Load support Motors O X A figure also shows the friction force ffr. The platform’s motion Base Ground D response caused by the forces in Fig. 2 is computed by d B numerical integration of Eq. (2) and is presented in Fig. 3. l x ▯ ▯ ▯ ▯ ▯ ▯ ▯ ▯▯▯▯▯▯▯▯ E ▯ ▯ Eccentric loadsBase ▯ ▯ Contact points
in „MIni-Roboter mit Vibrations-Motor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
gnuplot.pdf
x**besj0(x))-2.5 cos(atan(x)) 0.5 0.5 0 0 -0.5 -1 -0.5 -1.5 -1 -2 -1.5 -2.5 -10 -5 0 5 10 -30 -25 -20 -15 -10 -5 0 5 10 15 20 Parametric Conic Sections 80 3 -t, t 2*x cos(t), cos(2*t) 60 2*cos(t), sin(t) 2 -cosh(t), sinh(t) 40 1 20 0 0 80 20 -1 40 -2 60 -3 80 -3 -2 -1 0 1 2 3 3D gnu plot demo 3D gnu
in „Gnuplot: Wie folgende Grafik zeichnen?“ · PC Hard- und Software ·
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PDF
XBee_Datasheet.pdf
15.6 dB A24-Y18NF Yagi (18-element) 15.0 dBi Fixed 2 m 17.1 dB A24-F2NF Omni-directional (Fiberglass base station) 2.1 dBi Fixed/Mobile 20 cm 4.2 dB A24-F3NF Omni-directional (Fiberglass base station) 3.0 dBi Fixed/Mobile 20 cm 5.1 dB A24-F5NF Omni-directional (Fiberglass base station) 5.0 dBi Fixed/Mobile 20 cm 7.1 dB A24-F8NF Omni-directional (Fiberglass base station) 8.0 dBi Fixed 2 m 10.1 dB A24-F9NF Omni-directional (Fiberglass base station) 9.5 dBi Fixed 2 m 11.6 dB A24-F10NF Omni-directional (Fiberglass
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PDF
Geschwindigkeitsrampen_berechnen_Richtig.pdf
Maximal 3000 Schritte einstellbar! Speed Limit 140 [steps/sec] Acceleration Limit 720 [steps/sec²] PWM Base Freq 500000 [Hz] Lineare Rampe S-Förmige Rampe 160 120 160 120 140 140 e 100 c 100 / 120 / p s 120 t 100 80 t 80 s s 100 t t i e e 80 60 r e 80 60 r g c k c d 60 S d 60 S i 40 i 40 h 40 w 40 s 20 c e 20 e 20 20 G G 0 0 0 0 0 0,1 0,2 0,3 0,4 0,5 0,6 0,7 0,8 0,9 1 0 0,2 0,4 0,6 0,8 1 1,2 1,4 1,6 Zeit in sec Zeit in sec Geschw indigkeit Zurückgelegte Geschw indigkeit Zurückgelegte [steps/sec] Schritte
in „rampenbrechnung für schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
QEagleBeta.pdf
MOST2 NMOS(VTO=-5 Kp=20.71u W=3.1m L=2u Rs=20m) .MODEL Dbody D(Is=56.31f N=1.084 Rs=467m Cjo=19.08p M=357.6m Vj=407.9m + Bv=50 Ibv=10u Tt=100n) .ENDS BSN20 Seite 26 QEAGLE 2.2.5 Einen Operationsverstärker anlegen - Create an
in „QSPICE von Mike Engelhardt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LS14500.pdf
3.67 V system Nominal voltage (at 0.2 mA + 20 C) 3.6 V ● Superior resistance to atmospheric corrosion Pulse capability: Typically up to 280 mA (280 mA/0.1 second pulses, drained every 2 mn at + 20 C from undischarged cells with 10 μA base current
in „Warum hat mein invertierender Schmitt-Trigger nur 1.9V am Ausgang?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LS14500.pdf
3.67 V system Nominal voltage (at 0.2 mA + 20 C) 3.6 V ● Superior resistance to atmospheric corrosion Pulse capability: Typically up to 280 mA (280 mA/0.1 second pulses, drained every 2 mn at + 20 C from undischarged cells with 10 μA base current
in „ESP8266 verhalten bei Unterspannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LS14500.pdf
3.67 V system Nominal voltage (at 0.2 mA + 20 C) 3.6 V ● Superior resistance to atmospheric corrosion Pulse capability: Typically up to 280 mA (280 mA/0.1 second pulses, drained every 2 mn at + 20 C from undischarged cells with 10 μA base current
in „Eigenartiges Verhalten von Li-Batterien“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LS14500.pdf
3.67 V system Nominal voltage (at 0.2 mA + 20 C) 3.6 V ● Superior resistance to atmospheric corrosion Pulse capability: Typically up to 280 mA (280 mA/0.1 second pulses, drained every 2 mn at + 20 C from undischarged cells with 10 μA base current
in „Eigenartiges Verhalten von Li-Batterien“ · Analoge Elektronik und Schaltungstechnik ·