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an44fa.pdf
Tj= 150 C VO= 5V 10 1.6 1.4 BUCK CONVERTER 5 1.4 1.2 CONTINUOUS MODE 1.2 1.0 0 0 5 10 15 20 25 30 35 40 45 50 0 5 10 15 20 25 30 35 40 45 50 –50 –25 0 25 50 75 100 125 150 INPUT VOLTAGE (V) OUTPUT VOLTAGE (V) JUNCTION TEMPERATURE ( C) LTAN44 • TPC06 LTAN44 • TPC07 * STATUS WILL NOT GO LOW IF OUTPUT
in „Festspannungsregler, Alternativen ?“ · Analoge Elektronik und Schaltungstechnik ·
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beispiel.html
| LM387 | LM4674 | LM709 | LM741 | LPC2138 | LPC2148 | LT1070 | LT1074 | LTS-6960HR | LTS-6980HR | MC34063 | MC3479P | MM232R | MONCONN3 | MSP430F133 | MSP430F135 | MSP430F147 | MSP430F1471 | MSP430F148 | MSP430F1481 | MSP430F149 | MSP430F1491 | MSP430F155 | MSP430F156 | MSP430F157 | MSP430F1610 | MSP430F1611
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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sam7x256.pdf
exists CPUTAPID ] } { 29 set _CPUTAPID $CPUTAPID 30 } else { 31 set _CPUTAPID 0x3f0f0f0f 32 33 } 34 35 #use combined on interfaces or targets that cannot set TRST/SRST separately 36 reset_config trst_and_srst 37 38 # set speed 39 jtag_khz 1000 40 41 42 #jtag scan chain 43 jtag newtap $_CHIPNAME cpu -irlen
in „AT91SAM7X265 fabrikneu starten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sam7x256.pdf
exists CPUTAPID ] } { 29 set _CPUTAPID $CPUTAPID 30 } else { 31 set _CPUTAPID 0x3f0f0f0f 32 33 } 34 35 #use combined on interfaces or targets that cannot set TRST/SRST separately 36 reset_config trst_and_srst 37 38 # set speed 39 jtag_khz 1000 40 41 42 #jtag scan chain 43 jtag newtap $_CHIPNAME cpu -irlen
in „AT91SAM7X startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
000202020-qs-01-en-SCHALTPLAN_MCU_AKKULADESTATION_CHARGE_MA.pdf
Y5 Y9 LCD11 D4 Clock Y8 LCD6 EN J1 R19 Y24 Y7 LCD5 R/W 470k Y6 LCD4 RS 44 43 42 41 40 39 38 37 36 35 34 E4 E3 E2 Vss V DDA A7 A6 A5 A4 A3 A2 MUX1 1/3 CD4053 1 RES A1 33 2 15 PM C3 2 C0 A0 32 Monitor Data 0µ1/20%/MKS R6 R15 R16 R18 1 Y1 220k Tr1 C1 15k 270R 3 C1 VRL 31 10 VDD 1k0 BC547C 1µ0/16V/Tantal 4 C2 VRH 30 D1 R4 SA2 R23 R9 C5 1N4148 100k 5 C3 B7 29 220k 100k 0u1 C4 S9CD SA1 0µ1 Y25 6 C4 MC68HC-908 B6 28 R17 S10CD SA0 Y2 1k0 Y26 7 C5 B5 27 Vtst S2CD MA2 Y13 8 C6 B4 26 MA1 9 E0/TxD B3 25 MUX2 R7 MA0 1/3 CD4053 47k 10 E1/RxD B2 24 12 +15V R3 SC 14 100k 11 IRQ B1 23 ZD1 SD 13 ZPD12V LCD-Brightness
in „Charge Manager 2020 Fehler beheben - wie?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
apputi01.pdf
Voltage The supply voltage for the system can be in the range from 8 V up to 30 V. It is stabilised by a MC7805 fixed voltage regulator in order to give the necessary 5V power supply for the digital part of the system. The +5V analogue power supply is provided by filtering the digital supply. Nevertheless
in „Temperaturmessung mit PT100 und UTI03“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EP2833568A1.pdf
input of the first op-amp U1 ensures that the The PWM signal is then filtered by the RC arrangement 35 Voltage at the node between the resistors R12 and R13 comprising the resistors R19, R35 and R36 and the ca- iso.Assuch,theVoltageatthenodebetweenthetwelfth pacitors C6 and C28 such as to provide a substantially
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Datei
a30-7.txt
1784 692 C36 1260 399 s .0068 3 1981 1352 1250 371 w Q45 1320 420 w FET 3 1981 1431 U45 1497 342 w MC34060 3 1496 1091 C42 1427 439 w .056 3 938 1237 R38? 1376 479 s 100 3 1846 1468 R41 1406 497 s 2k7 3 1762 1409 CR43 1468 518 s DioS 3 1036 1245 CR44 1499 518 s DioS 3 969 1196 R45 1530 506 s 10k 3 1045
in „Tektronix TDS744A Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tsop17xx.pdf
0.8 mA VS= 5 V, Ev= 40 klx, sunlight SH 1.0 mA Transmission Distance Ev= 0, test signal see fig.7, d 35 m IR diode TSIP5201, IF= 400 mA Output Voltage Low (Pin 3) IOSL = 0.5 mA, VOSL 250 mV E = 0.7 mW/m , f = f , t /T = 0.4 e o p 2 Irradiance (30 – 40 kHz) Pulse width tolerance: E e min 0.35 0.5 mW/m pi
in „Farblaser (rot) zur Datenübertragung -> Empfänger?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
171085-da-01-en-IR-Empfaenger-Modul_TSOP_1740.pdf
0.8 mA VS= 5 V, Ev= 40 klx, sunlight SH 1.0 mA Transmission Distance Ev= 0, test signal see fig.7, d 35 m IR diode TSIP5201, IF= 400 mA Output Voltage Low (Pin 3) IOSL = 0.5 mA, VOSL 250 mV E = 0.7 mW/m , f = f , t /T = 0.4 e o p 2 Irradiance (30 – 40 kHz) Pulse width tolerance: E e min 0.35 0.5 mW/m pi
in „ir-Fernbedienung“ · Mikrocontroller und Digitale Elektronik ·
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U2538B.pdf
U2538B–MFP SO8 Tube U2538B–MFPG3 SO8 Taped and reeled VS 95 9837 U2538B Amplifier Input and filter Detector mC AGC / ATC Modulated IR signal carrier frequency 20 to 60 kHz min. 6 pulses/burst Figure 1. Rev.A2, 15-Oct-98 1 (7) U2538B Pin Description n.c. RF AGND IN Pin Symbol Function 8 7 6 5 1 VS Supply voltage
in „Temic-Datenblättern“ · Analoge Elektronik und Schaltungstechnik ·
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Linearisierung_HF-Verstaerker.pdf
. . . . . . . 30 3.4 Prototype . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 32 35 4 Testing Procedures and Simulation 4.1 Summary . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 35 4.2 Future work . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 35
in „Linearisierung von HF-Endstufen“ · HF, Funk und Felder ·
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PDF
Ferroxcube_Data_Handbook.pdf
) 3C90 100 ±5% (1) ≈ 64 ≈ 2000 E35/18/10-3C90-E100 160 ±5% (1) ≈ 103 ≈ 1060 E35/18/10-3C90-E160 250 ±5% ≈ 161 ≈ 590 E35/18/10-3C90-A250 315 ±5% ≈ 202 ≈ 440 E35/18/10-3C90-A315 400 ±8% ≈ 257 ≈ 330 E35/18/10-3C90-A400 630 ±15% ≈ 405 ≈ 180 E35/18/10-3C90-A630 2500 ±25% ≈ 1610 ≈ 0 E35/18/10-3C90 3C95 2980 ±25% ≈ 1915 ≈ 0 E35/18/10-3C95 Note 1. Measured in combination with an equal gapped core half, clamping force for L measurements, 30 ±15
in „Maximale Magnetflussdichte im Ferritkern Temperaturangabe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Umsetzung_und_Implementierung_einer_FFT_f_r_8.pdf
1 0,8 0,6 Hanning Blackman 0,4 Bartlett Welch 0,2 0 1 3 5 7 9 11 13 15 17 19 21 23 25 27 29 31 33 35 37 39 41 43 45 47 49 51 53 55 57 59 61 63 -0,2 1,5 1 0,5 0 Hammingert 1 4 7 10 13 16 19 22 25 28 31 34 37 40 43 46 49 52 55 58 61 64 -0,5 -1 -1,5 Wie man erkennen kann, würde bei der nächsten Abtastung
in „FFT Tutorial für AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Powermeter.pdf
active power measured are related as follows: Equation 14. Frequency of Energy Pulse Output. f = P× MC 3600000 Here P is active power in watts and MC is the meter constant in pulses/kilowatt-hour. The meter constant is part of the calibration coefficient set, and can be set to any integer value, ranging
in „230V Leistung erfassen mit ATmega128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
volt230.pdf
active power measured are related as follows: Equation 14. Frequency of Energy Pulse Output. f = P× MC 3600000 Here P is active power in watts and MC is the meter constant in pulses/kilowatt-hour. The meter constant is part of the calibration coefficient set, and can be set to any integer value, ranging
in „Netzteil ohne Trafo“ · Mikrocontroller und Digitale Elektronik ·
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PDF
energymeter.pdf
active power measured are related as follows: Equation 14. Frequency of Energy Pulse Output. f = P× MC 3600000 Here P is active power in watts and MC is the meter constant in pulses/kilowatt-hour. The meter constant is part of the calibration coefficient set, and can be set to any integer value, ranging
in „Leistungsmessung über Shunt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
doc2566.pdf
active power measured are related as follows: Equation 14. Frequency of Energy Pulse Output. f = P× MC 3600000 Here P is active power in watts and MC is the meter constant in pulses/kilowatt-hour. The meter constant is part of the calibration coefficient set, and can be set to any integer value, ranging
in „Cadsoft Eagle“ · Platinen ·
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PDF
at91sam.pdf
-3. Embedded Flash Controller (EFC0) Register Mapping Offset Register Name Access Reset State 0x60 MC Flash Mode Register MC_FMR Read-write 0x0 0x64 MC Flash Command Register MC_FCR Write-only – 0x68 MC Flash Status Register MC_FSR Read-only – 0x6C Reserved – – – Table 19-4. Embedded Flash Controller (EFC1) Register Mapping Offset Register Name Access Reset State 0x70 MC Flash Mode Register MC_FMR Read-write 0x0 0x74 MC Flash Command Register MC_FCR Write-only – 0x78 MC Flash Status Register MC_FSR Read-only – 0x7C Reserved – – – 113 6120I–ATARM–06-Apr-11 19.3.1 MC Flash
in „SPI-Initialisierung von zwei Geräte über den gleichen Bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GU256X64D-7000.pdf
Graphic VFD Module GU256X64D-7000 Ref: MC-051 Dec.12.06 @ Character Graphic, Transformerless display The module includes the Vacuum Fluorescent Display @ Single 5V power supply glass, driver and micro-controller Ics with refresh RAM, High Brightness
in „suche kontrastreiches S/W Display“ · Mikrocontroller und Digitale Elektronik ·
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Datei
0167-iar-UART_DS04_senden_V02.c
(29) // URXD0 |P3.5 P3.2|<- Data In (SOMI0) (30) // |P3.6 P3.3|-> Serial Clock Out (UCLK) (31) //(35) SM CE\ |P3.7 P4.0-P4.7| Daten SM karte (36)..(43) //(44) WE\ |P5.0 P2.7| CS SPI Gerät 1 Platz 1 // ALE |P5.1 P2.6| CS SPI Gerät 2 Platz 2 // CLE |P5.2 P2.4| CS SPI Gerät 3 Platz 3 // RE\ |P5.3 P2.5|
in „MSP430 über UART Daten senden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lg_lh-cx245_cx246_cx247_cx640__1_.pdf
0.00 0.00 236 1.52 1.66 25 2.35 2.05 31 4.54 4.54 IC204 (OPMP,MC4580) 37 1.56 1.56 92 0.00 0.00 17 1.54 1.43 72 2.191.80 127 3.27 3.27 182 3.28 3.28 237 1.76 1.66 26 1.44 1.46 32 4.94 4.94 1 4.88 4.88 38 0.00 0.00 93 1.28 1.28 18 1.96
in „Netzteil von LG LH-C360 defekt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
konfig.txt
M50 Adresse_6=M60 Adresse_7=M70 Adresse_8=M81 Adresse_9=M90 Adresse_10=MA0 Adresse_11=MB0 Adresse_12=MC0 Adresse_13=MD0 Adresse_14=ME0 Adresse_15=MF0 Displayhelligkeit=40 Touchsummer=aus Display_lighttime=1Min Comand-Delay=1 Hardcopy-color_Background=blau Hardcopy-color_Text=weiss Baudrate=9600 WDT-Resets
in „AVR: INI-Datei RAM-sparend durchsuchen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2019-02-22_SCH_ATMega_Eval_DEVEL_v0_2_.PDF
.. 15 ............................................ 25 ............................................ 35 ............................................ 6 ............................................ 16 ............................................ 26 ............................................ 36 ........
in „AD.wandler und FFT auf Atmega 128A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dielectric_rod_antenna.pdf
Johann Ambrosius Barth, 10. Auflage, 1993, (in German) [2] J. A. Stratton, Electromagnetic Theory, McGraw-Hill, 1941 nd [3] R. E. Collin, Foundations for Microwave Engineering, McGraw-Hill, 2 Ed., 1992, p. 26 [4] M. R. Spiegel, Mathematical Handbook of Formulas and Tables, Schaum’s Outline Series, McGraw-Hill
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multimec-5-series-switches.pdf
Wave length nm 460 563 585 NA 650 565/590 630/565 625/590 570 587 624/632 Spread Δnm 40 40 40 NA 40 35 35 35 10 45 20 Spread angle degree 20 45 45 25 45 60 200 60 100 90 40 Luminous Intensity Min. mcd 20 9.0 5.6 630 5.6 8 2.2 8 70**** 71**** 400**** Typ. mcd 25 25 16 1000 16 25 4.8 25 20**** 112**** 800
in „[S] Beleuchtete Navimec Navigationskreistaster für Prototypenherstellung“ · Markt ·
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PDF
s1d13700.pdf
7.3.2 Generic Bus Direct/Indirect Interface without WAIT# Timing . . . . . . . . . . . . 28 7.3.3 MC68K Family Bus Direct/Indirect Interface with DTACK# Timing . . . . . . . . 30 7.3.4 MC68K Family Bus Direct/Indirect Interface without DTACK# Timing . . . . . . 32 7.3.5 M6800 Family Bus Indirect Interface
in „LPC2140 an S1D13700 Display driver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s1d13700.pdf
7.3.2 Generic Bus Direct/Indirect Interface without WAIT# Timing . . . . . . . . . . . . 28 7.3.3 MC68K Family Bus Direct/Indirect Interface with DTACK# Timing . . . . . . . . 30 7.3.4 MC68K Family Bus Direct/Indirect Interface without DTACK# Timing . . . . . . 32 7.3.5 M6800 Family Bus Indirect Interface
in „[V] 8 LCDs 320x240 s/w, 6 Zoll, Touch, inkl Controller“ · Markt ·
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PDF
s1d13700.pdf
7.3.2 Generic Bus Direct/Indirect Interface without WAIT# Timing . . . . . . . . . . . . 28 7.3.3 MC68K Family Bus Direct/Indirect Interface with DTACK# Timing . . . . . . . . 30 7.3.4 MC68K Family Bus Direct/Indirect Interface without DTACK# Timing . . . . . . 32 7.3.5 M6800 Family Bus Indirect Interface
in „Erste GLCD (Touch) -Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s1d13700.pdf
7.3.2 Generic Bus Direct/Indirect Interface without WAIT# Timing . . . . . . . . . . . . 28 7.3.3 MC68K Family Bus Direct/Indirect Interface with DTACK# Timing . . . . . . . . 30 7.3.4 MC68K Family Bus Direct/Indirect Interface without DTACK# Timing . . . . . . 32 7.3.5 M6800 Family Bus Indirect Interface
in „[v] LCDs 320x240 s/w, 6 Zoll, Touch, inkl Controller“ · Markt ·
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PDF
s1d13700_320-240_display.pdf
7.3.2 Generic Bus Direct/Indirect Interface without WAIT# Timing . . . . . . . . . . . . 28 7.3.3 MC68K Family Bus Direct/Indirect Interface with DTACK# Timing . . . . . . . . 30 7.3.4 MC68K Family Bus Direct/Indirect Interface without DTACK# Timing . . . . . . 32 7.3.5 M6800 Family Bus Indirect Interface
in „Anstuerung eines Grafik LCDs. Fragen zu Display und Controller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTM8054.pdf
4.92mmBGA TYPICAL APPLICATION MaximumOutput Current and Efficiency vs Input Voltage 12V OUT from5V to 35V BINk Boost Regulator 92 6 VIN VIN LTM8054 OUT VOUT 6V TO 35V IIN OUT 12V U SVIN ) 90 4 P ( T 4.7µF RUN C U 50V 100k 68µF I E ×2 CTL F T SS CLKOUT 22µF E 88 2 A SYNC IINMON 25V ) 36.5k COMP IOUTMON 11.0k
in „DC/DC Wandler (Step Down) gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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LM78XX_728844.pdf
operation outside datasheet specifications. Symbol Parameter Value Unit VI Input Voltage VO= 5V to 18V 35 V VO = 24V 40 V RθJC Thermal Resistance Junction-Cases (TO-220) 5 °C/W R Thermal Resistance Junction-Air (TO-220) 65 °C/W θJA TOPR Operating Temperature LM78xx -40 to +125 °C Range LM78xxA 0 to +125
in „Von 18V auf 12V mit LM7812CT“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HBD855-D_Thyristor_Theory.pdf
5370A 1.2 K 1 K 1 K μF n (1/2) R4 1 k 100 56 V 2 W 2 W μF 2 W 3 e MC1458 2N3904 CURRENT 1W 5 W m SET GATE CURRENT − V o 1N 0.001 1N 0.002 1N R5 SW S2 2 5932A μF 5932A μF 5932A c + 10 V + 10 V − V1 20 V o 1 5 82 90 mA MR856 1.5 W m 4N35 1 k 2N 120 70 T I L1: 0 μH (TYP)
in „Ansteuerschaltung Thyristor und Triac“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APT9502_1_.pdf
6284 Squiredell Dr. 405 SW Columbia St. San Jose, California 95129 USA Bend, Oregon 97702 USA Bobby McDonald UNI-WEST ENGINEERING 6329 Bethel Island Rd. Bethel Island, CA94511 USA ABSTRACT Thispaperdetailsthedesign,development,assemblyandperformanceofalowcost,high-efficiency, 1000Watt,13.56MHzRFpoweramplifier
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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PDF
Computer_Kontakt_1986-08_09_-_21.pdf
tuHjiduhne]! m Kahmcn dcr Graiikgcaljd- ?'.f-Ari.L 'Chv zi:'rrr^lv / Z80-Analyst Disassembler und MC-Testpiogiamm in ei: cnlliihci Pcimosc!plnt! Z SO-Arwly^. nilin nthiTi mil ii>*vilL|KrnipiK- de Spectrum ipteilnoch cinen Single- und entsprcchcodcn A User Club Wuppertal ^nmlerciTi rjildausgeteriBci
in „ZX Spectrum => Upgrade von 16 auf 48 KB RAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
10134fd.pdf
upgradingtheper- Strain Gauge Signal Conditioners Thermocouple Amplifiers formanceofsuchpopulardevicesastheMC1458/MC1558, LM158andOP-221.TheLT1013’sspecificationsaresimilar Instrumentation Amplifiers n to (even somewhat better than) the LT1014’s. 4mA to 20mA Current Loop Transmitters n Multiple Limit Threshold
in „LT1013 Unterschied D und P Package“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
REN_icl7106-07-07s_DST_20251218.pdf
F 3 38 OSC 3 E E R R O N N - U N - C1 R R C C C I I A B I V B1 4 37 TEST (1’s) A1 5 36 REF HI F1 6 35 REF LO NC 144 43 42 41 40 39 38 37 36 35 34 NC G1 7 34 C REF+ 33 NC 2 32 G2 E1 8 33 C REF- D2 9 32 COMMON TEST 3 31 C3 OSC 3 4 30 A3 C2 10 31 IN HI NC 5 29 G3 (10’s) B2 11 30 IN LO A2 12 29 A-Z OSC 2
in „Panel-Meter KAIFU FR-4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TimerPumpe_S01_CMOS4060.pdf
2,95€ 30pcs SV3.5-4 2,5-4mm2 37A iDia4,3mm 24,8x8mm 1,26 Euro Step-Up Boost 10-32Vin max.10Ain 12-35Vo 6Aout 100W max.150W+Fan 65x56,5x23mm, UC3843A SO8, 78L09 SOT89 max30V 2x 1000uF 25mA 049-01 2,87€ , Oese1-2_12V +13,8VM1 Pressure Water Pump FL-40 12V 9,2A 110W 17L/Min 1020l/h ThermalProtection, d
in „Laufzeitbegrenzung für 12V Pumpe mit Akku, Solarmodul, Step-Up, Zeitschaltuhrbetrieb LED-Anzeige MPP“ · Projekte & Code ·
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PDF
_Horn-Theory-Intro.pdf
The parabolic horn is a true 1P horn impedance of a pulsating sphere of radius When m = 2k or f = mc , the throat 4π if it is rectangular with two parallel sides, x0. resistance becomes zero, and the horn the two other sides expanding linearly, The throat resistance of the conical is said to cut off
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PDF
top247.pdf
QR I = 69 % ON/OFF DC LIMIT DC 47 kΩ Input For R = 25 kΩ Input Voltage IL Voltage R D M ILIMIT 43 % MC 24 kΩ R MC= 2R IL RIL D M CONTROL CONTROL QR C RIL 12 kΩ C ON/OFF 47 kΩ S S - - PI-2520-040501 PI-2521-040501 Figure 38. Active-on Remote ON/OFF with Externally Set Figure 39. Active-off Remote ON/OFF
in „Hilfe bei Reparatur SNT Laderegler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
top247.pdf
QR I = 69 % ON/OFF DC LIMIT DC 47 kΩ Input For R = 25 kΩ Input Voltage IL Voltage R D M ILIMIT 43 % MC 24 kΩ R MC= 2R IL RIL D M CONTROL CONTROL QR C RIL 12 kΩ C ON/OFF 47 kΩ S S - - PI-2520-040501 PI-2521-040501 Figure 38. Active-on Remote ON/OFF with Externally Set Figure 39. Active-off Remote ON/OFF
in „Hilfe bei Reparatur SNT Laderegler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
rfax.pdf
, 0N-31N, 35W-100W PWEE91.TIF 24HR Wind/Wave Forecast (Most Current) PWEE11.TIF 36HR Wind/Wave Forecast VT12, 0N-31N, 35W-100W PWED98.TIF 48HR Wind/Wave Forecast VT00, 0N-31N, 35W-100W PWEI88.TIF 48HR Wind/Wave Forecast VT12, 0N-31N, 35W-100W PWEI89.TIF 48HR Wind/Wave Forecast (Most Current) PWEI11.TIF 48HR Wave Period/Swell Dir Forecast VT00, 0N-31N, 35W-100W PJEI88.TIF 48HR Wave Period/Swell Dir Forecast VT12, 0N-31N, 35W-100W PJEI89
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PDF
0752_001.pdf
gleiùzeitig den Ubertrag für 180V CD66A zt+h lle¡kömmliche 161509131411r02 Decoderschollung ¡4C74t+1AP MC 7441 AP MC7441 AP MC 7441 AP MC 7441AP 4¡44132,3xBSY76 3674 367+ 367+ 367+ 367+ llzMC tlzMC2 G1 IzMCTt+00P IS4 I56 A B c D i I 9 1213 129811,1 129811 1 1?II11 1298l',1 129811 1 t{c7473P MC 7490 P MC 7490 P MC 7490 P MC 7490 P MC 7t+90P ?6'1 5 296714 2367 2367 2367 23Ê7 Ein I 1Hz 1413',r21910 16151413121I ) Bild5. G€samterZähler Eitallen A¡sdrlilasen. LiuteD dieBesdraltuagde¡ ei¡zelneIS nc7490P l107+tt1AP
in „Als Mikro noch Makro war: Die "Dicke Tal- Uhr"“ · HF, Funk und Felder ·
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PDF
SK-FM3-176PMC-ETHERNET_v11_schematic_v15.pdf
_1/INT26_0/MAD23_0 PIU10143 NLPin142 Pin143 PIJ203434 C 35 PIJ1035 NLPin36 Pin35 PIU1035 P37/IC01_0/SOT5_2/INT10_1/TIOB12_2/MCSX3_0 P93/TIOB11_0/RTO23_1/SOT5_1/MAD22_0 PIU10142 NLPin141 Pin142 PIJ203535 36 PIJ1036 Pin36 Pin36 P I U 1 0P38/IC00_0/SCK5_2/INT11
in „Problem bei LAN8710A-Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
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Datei
0167-iar-UART_DS04_V01.c
(29) // URXD0 |P3.5 P3.2|<- Data In (SOMI0) (30) // |P3.6 P3.3|-> Serial Clock Out (UCLK) (31) //(35) SM CE\ |P3.7 P4.0-P4.7| Daten SM karte (36)..(43) //(44) WE\ |P5.0 P2.7| CS SPI Gerät 1 Platz 1 // ALE |P5.1 P2.6| CS SPI Gerät 2 Platz 2 // CLE |P5.2 P2.4| CS SPI Gerät 3 Platz 3 // RE\ |P5.3 P2.5|
in „MSP430 über UART Daten senden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
0167-iar_V03-UART_DS04_16bit.c
(29) // URXD0 |P3.5 P3.2|<- Data In (SOMI0) (30) // |P3.6 P3.3|-> Serial Clock Out (UCLK) (31) //(35) SM CE\ |P3.7 P4.0-P4.7| Daten SM karte (36)..(43) //(44) WE\ |P5.0 P2.7| CS SPI Gerät 1 Platz 1 // ALE |P5.1 P2.6| CS SPI Gerät 2 Platz 2 // CLE |P5.2 P2.4| CS SPI Gerät 3 Platz 3 // RE\ |P5.3 P2.5|
in „MSP430—über UART 16Bit Daten übertragen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
0167-iar_V03-UART_DS04_16bit.c
(29) // URXD0 |P3.5 P3.2|<- Data In (SOMI0) (30) // |P3.6 P3.3|-> Serial Clock Out (UCLK) (31) //(35) SM CE\ |P3.7 P4.0-P4.7| Daten SM karte (36)..(43) //(44) WE\ |P5.0 P2.7| CS SPI Gerät 1 Platz 1 // ALE |P5.1 P2.6| CS SPI Gerät 2 Platz 2 // CLE |P5.2 P2.4| CS SPI Gerät 3 Platz 3 // RE\ |P5.3 P2.5|
in „MSP430 über UART Daten senden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM741.pdf
Anstead ers which feature improved performance over industof −55˚C to +125˚C. m for the 709C, LM201, MC1439 and 748 in most applications.ts p The amplifiers offer many features which make their applica- i tion nearly foolproof: overload protection on the input and i output, no latch-up when the common
in „IC LM 741 DIP8 Daternblatt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NHD-C12864WO-B1TGH-M.pdf
History Revision Date Description Changed by 0 9/1/08 Initial Release - 1 2/26/10 User guide reformat MC 2 3/9/10 Block diagram updated BE 3 5/4/10 Block diagram and pin description MP 4 5/5/10 Backlight Connectors updated BE 5 5/14/10 Pin description update MP 6 5/2/11 Example initialization code updated
in „[V] 2St. NHD LCDs: NHD-C160100 und NHD C12864WO“ · Markt ·