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Fragen_und_Antworten_zur_fachlichen_Pruefung_fuer_Funkamateure_BAPT_1988.pdf
T:g:#=S##!n#=gfrm#m#Ft.#£ 145 ,500 MLlz FMAnrufksn81 S2¢el) InternatimslG` FMA4obi lmrufkanal S22 i45,%i5¥45Y7Lk875 m+z Auggsbefrequenzen RTTY+{elais R5x, R6x und R7x L44,dm_L44,845Mk§:änw¥#¥#kerebTenpeäe#e€::ä#grers#r%:z:¥.> ::#is3:#LLCv#u#i:aenss#8#f:8;¥femd:fcgg`b::#Vtr:§£#g¥bwcrerR#:£S- - 4 6 - A
in „Neuer Fragenkatalog für die Amateurfunkprüfung“ · HF, Funk und Felder ·
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PDF
FGA5065ADF.pdf
Emitter Voltage 30 V Collector Current @ TC= 25 C 100 A C o Collector Current @ TC = 100 C 50 A LM (1) Pulsed Collector Current @ TC= 25 C 150 A CM (2) Pulsed Collector Current 150 A o F (3) Diode Forward Current @ TC= 25 C 40 A Diode Forward Current @ TC= 100 C 20 A FM (2) Pulsed Diode Maximum Forward
in „Inverter Schweißgerät, Alternative IGBTs kompatibel? (Datenblätter inside)“ · Analoge Elektronik und Schaltungstechnik ·
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MN-RBXEB-01.pdf
....................44 On-board Devices............................................................45 PCI Configuration Space Map........................................45 Interrupts..........................................................................46 PCI Interrupt Routing Map.................
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Datei
ssd1329.c
the LSB and the bottom row in the MSB. // // Note: This is the same font data that is used in the EK-LM3S811 // osram96x16x1 driver. The single bit-per-pixel is expaned in the StringDraw // function to the appropriate four bit-per-pixel gray scale format. // //******************************************
in „Doppelte Zeichengrösse für OLED-Treiber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
grasshopper_schematic.pdf
PWRLED 44 43 [1] PA19 P1 PA19(USART1-RTS/TIMER0-CLK1) PC19(LCDC-CC/MACB1-COL) G9 PC19 [1] [1,6] LED1 46 45 [1] PA20 R97 49R9 P3 PA20(USART1-CTS/SPIO-NPCS3) PC20(LCDC-HSYNC) F9 PC20[1] [1,6] LED2 48 47 [1,4] CLK25 PA21(SSC0-RX_FRAME_SYNC/PWM-PWM2) PC21(LCDC-PCLK) PC21[1] [1,6] LED3 [1,6] PWRLED R1 PA22(SSC0
in „Grasshopper Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
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Computer_Kontakt_1986-08_09_-_21.pdf
Sofhware-EiitwicM* aul d-jrr J Bud* PROGRAMMING THR PIH CB.M d«s EIN LEHRBUCH - A-.fbau •"eichen Aurora: fei lm J ,Viv,v-nL[i-io,>--f!il:>:«::p-.i(e!T'iirr-. spieldes C6<l fir aliw-Auwdidakten und Ein- 5 ANWENDUNGS-HANDBUCH zum C-64/SX- EIN .r:ii^nV,o,a:.,!-!i-i.n^:-il^nA'i-Hir.WKri?ii- -,4[1.tu'>i ,r,ei^tiemmdenen
in „ZX Spectrum => Upgrade von 16 auf 48 KB RAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VFD_Schaltung_Auszug.pdf
STANDBY 2 3C12 + 47P KEY4 G16/S13 44 P12 FROM SMPS +5VDD 1 +5VDD 220uF/10V 3CB4 1 2 3 4 5 6 7 8 9 1 1 1 45 P11 G GND 104 D / / / / / / / / / / / /S 46 P10 PH-3A-2.0mm V K K K K K K K K K K K K P9 IR_OUT 47 P8 DGND DGND 4 5 6 7 8 9 0 1 2 3 4 5 6 48 P7 1 1 1 1 1 1 2 2 2 2 2 2 2 49 P6 3 DGND IR_IN 50 P5 G 51
in „BCD-7Segment Treiber für VFD Röhren“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.s
fearly-inlining -feliminate-unused-debug-types -fforward-propagate ; -ffunction-cse -ffunction-sections -fgcse-lm -fgnu-runtime -fgnu-unique ; -fguess-branch-probability -fident -fif-conversion -fif-conversion2 ; -finline -finline-atomics -finline-functions-called-once -fipa-profile ; -fipa-pure-const -fipa-reference
in „ATmega809 Timer CMP Interrupt funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Attiny25.txt
PORTB.1 #define InterruptOut PORTB.2 #define Target_low 40 //Minimale Temperatur #define Target_high 45 //Maximale Temperatur // Bandgap Voltage Reference: Off #define ADC_VREF_TYPE ((0<<REFS0) | (0<<ADLAR)) //// Prototypen //// int read_adc (); /// Globale Variablen /// char temp = 0; char temp_part =
in „AVR ADC auswerten klappt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
arduino-grid-tie-inverter-schema-20221024.pdf
D3 6 31KHz modulation BC557 Q2 18 7 3 AREF D4 dcdcaus 1K5 100n U2 22n 2 3 Arduino_Nano_v3.x D5 8 D5 LM7805 19 9 2 3 1 MKP-Y2 R10 20 A0 D6 10 drain 1K5 1 VI VO A1 D7 BC557 D 68K 21 A2 A1 D8 11 R13 R11 G R12 22 12 Sallen-Key 2 120K A3 D9 BAT43 68K R15 23 A4 D10 13 560 Q3 EM516 24 14 3 D5 D6 R14 27K A5 D11
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Schematic_ED2109-015.pdf
VDD FB 4 2 3 13 VCC N 1 GND X1 5 SGND PGND 1 +3.3V R18 8 GND ANT 9 1 ANT R16 100k 1 10 GND 2 GND GND LM2623MM/NOPB GND 100k IC1A 3 GND 10 18 R22 RFSolutions RFM95W-868S2 P1 +3.3V RST 11 PA0-WKUP PB0 19 NP TE Connectivity 1909763-1 GND 1 TX2 12 PA1 PB1 20 GND T7 1 2 SWDIO RX2 13 PA2 PB2 39 GND BC847C 2
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Current_Ref._100uA.pdf
text) 117 99.6 86 100 66 30 15 99.5 0 2 5 6 0 1 1 –50 –25 0 25 50 75 100 125 0 5 10 15 20 25 30 35 40 45 50 55 60 65 Temperature (°C) Temperature Drift (ppm/°C) CURRENT SOURCE CURRENT SOURCE OUTPUT CURRENT vs VOLTAGE OUTPUT CURRENT vs VOLTAGE 101 100.5 100.8 100.4 100.6 100.3 100.4 ) )100.2 µ100.2 A100.1
in „Stromreferenz Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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spartan7.pdf
IHLP1212BZER2R2M11 3A_BEAD C122 COM P$4 GND 10u 25V 10u 25V10u 2NV 20 20_ROSC 19_FB3 19 7 1 C115 C116 C119 G LM2663M 10n 5 n 22u 22u 2 0 C120 C103 GND R24 C 1 D R 1 47uGND P$1 GND -VOUT P$5 BEAD z 18_COMP3 18 N 15k D 10u 25V 10u 25V-15V25V H G N GND 1 GND1 4 9.1k R23 5V GND GND G GND L14 k 21_AGND0 4_PGOOD D R22
in „FPGA Board mit FT2232H und Spartan7“ · Projekte & Code ·
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TRW-24G.pdf
Bit56 1 0 1 0 1 0 1 0 Bit55 Bit54 Bit53 Bit52 Bit51 Bit50 Bit49 Bit48 0 1 0 1 0 1 0 1 Bit47 Bit46 Bit45 Bit44 Bit43 Bit42 Bit41 Bit40 1 0 1 0 1 0 1 0 Bit39 Bit38 Bit37 Bit36 Bit35 Bit34 Bit33 Bit32 0 1 0 1 0 1 0 1 Bit31 Bit30 Bit29 Bit28 Bit27 Bit26 Bit25 Bit24 1 0 1 0 1 0 1 0 Bit23 Bit22 Bit21 Bit20 Bit19
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LT1085.pdf
input-to-output voltage. Note that the 60Wpower dissipation for the reliability and lifetime. LT1083 (45Wfor the LT1084 (K, P), 30Wfor the LT1084 (T), 30Wfor the Note 2: See thermal regulation specifications for changes in output voltageT1085) is only achievable over a limited range of input-to-output voltage
in „Suche einstellbaren Spannungsregler mit niedriegen Eigenstromverbrauch“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1084CP.pdf
input-to-output voltage. Note that the 60Wpower dissipation for the reliability and lifetime. LT1083 (45Wfor the LT1084 (K, P), 30Wfor the LT1084 (T), 30Wfor the Note 2: See thermal regulation specifications for changes in output voltageT1085) is only achievable over a limited range of input-to-output voltage
in „LT1083 Regelt nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TF5000CI.pdf
sinking provided, the thermal shutdown circVoltage Range takes over preventing the IC from overheating. LM7805C 5V Considerable effort was expanded to make the LM78XX se- ries of regulators easy to use and mininize the number7812C 12V LM7815C 15V Schematic and Connection Diagrams Metal Can Package TO-3 (K) Aluminum TL/H/7746–2 Bottom View Order Number LM7805CK, LM7812CK or LM7815CK See NS Package Number KC02A Plastic Package TO-220 (T) TL/H/7746–3 Top View Order Number LM7805CT, LM7812CT or LM7815CT See NS Package Number T03B TL/H/7746–1 C1995 National
in „CPU SAA7219 per Jtag auf Basis FT2232H ansprechen - Tool schreiben“ · PC Hard- und Software ·
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ST_70-780_Service_Manual.pdf
.......................................................... 3-21 C.I. de remplacement 29305-119.42/.45 ................................... 3-24Alternative Board 29305-119.42/.45 .......................................... 3-24 C.I. du processeur 29305-119.37/.39/.40/.46 ............................ 3-25
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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Elektronischer_Muskelsimulator.pdf
Spannung von bis zu 35 bis sodassandenAusgängenfürdieElektrodenIund erfordert hingegen offenbar stärkere 45Vanliegen,andenunbelastetenAus- IIentsprechendhöhereImpulswerteanliegen.Zur Impulse. Allerdings dürfen diese allge- gängender Schaltung sind es Werte bis Einstellungder Impulsamplitudedient eineeinfa-
in „Wechselrichter/Funktionsgenerator mit Atmega8“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Rhode_Schwarz_URV3_RF-Millivoltmeter_Schematics.pdf
15V +15V o l,7k R¿6 2N6¿85 100k c28 T5 1N /./84 20 33 BU1I1L 2 L7k 2 BCY59 X( R c20 3 813 t7P R51 t, LM 308 R41 810 R1.2 r -15V 812 220k k 308 R62 cD LÙt 7 100k GL5 R50 22 C2l. 10k 1N¿/.¿ 8 1M 2 2¡t 33 R-C -'t5v COMMON R¿9 î- c16 't0 R/.5 T8 BUl t 11 0 c21 L7n l,7k 220n BU1/9 BCY 79 1 R55 TI', +15V t,
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PDF
Rhode_Schwarz_URV3_RF-Millivoltmeter_Schematics.pdf
15V +15V o l,7k R¿6 2N6¿85 100k c28 T5 1N /./84 20 33 BU1I1L 2 L7k 2 BCY59 X( R c20 3 813 t7P R51 t, LM 308 R41 810 R1.2 r -15V 812 220k k 308 R62 cD LÙt 7 100k GL5 R50 22 C2l. 10k 1N¿/.¿ 8 1M 2 2¡t 33 R-C -'t5v COMMON R¿9 î- c16 't0 R/.5 T8 BUl t 11 0 c21 L7n l,7k 220n BU1/9 BCY 79 1 R55 TI', +15V t,
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PDF
SAQ-receiver-kit-manual-ver-3.pdf
1N4001 D1, black with grey ring Zener diode BZX55C 5V1 D2, reddish, black ring Integrated circuit LM386 IC1 Integrated circuit 555 (7555) IC2 Choke 22 mH Dr1, red-red-orange-gold Choke 100 mH Dr2, black, round 2 transistors BC550C Q1, Q2 Colour code etc: Resistors R1, R3 1 MΩ Brown-black-green R2 68
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Kochfeld.pdf
C31 TP19 8 R37 TDK_CT034 100nF 5+ 7 10K TMP2 1:200 R18 D6 STTH102 6– 4 4 1 100R R31 NTC2 R40 R44 U3B LM258 D7 PT1000 62K 1M STTH102 33R 3 2 D5 1W Temperature control STTH102 for plateth PT1000 sensors +5V +15V +15VC21 R32 R35 TP20 TP18 100nF NTC4 R68 2K7 2K2 PT1 8 R45 47K 1K TMP1 I-CTRL 50K 3+ 1 12KALARM R69 2– U3A 100K 10nF R33 C18 R34 R36 C19 4 LM 258 n.c. 22nF 1K8 4K7 22nF C20 TH1 Alarm management 22nF 110 AI12610 Feedback signals are output by the current transformer placed in series with the plate, and temperature sensors. The most important
in „Induktionsofen- funktioniert nur mit magnetischen Metallen!“ · Offtopic ·
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PDF
Elektronik.pdf
TMC_SCLK 1 R PE13 PB13 J1 Sheet: Power Supply Tim1_Ch4 TMC0_STP 44 PE14 PB14 53 TMC_MISO SPI2 3 TMC0_CS 45 54 TMC_MOSI 3 1 PE15 PB15 2 4 1 7 SPI4_CLK 2 1 5V_enable_oD SPI4_CS0 3 Ventil5 81 15 SSR1 V V 3 3 5V_enable PD0 PC0 R57 5 5 3 3 SPI4_CS1 4 J4 Rasp_is_on 82 PD1 PC1 16 SSR0 R60 Raspberry_Pi_2_3 SPI4_MISO
in „50ns Delay mit STM32H7“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EK2005_v1.1_Bill_of_Materials.pdf
cer.smd 42 1 C42 CAP 0402 100nF cer.smd 43 1 C43 CAP 0402 100nF cer.smd 44 1 C44 CAP 0402 100nF cer.smd 45 1 D1 DIO SMB 10BQ040 46 1 D2 DIO HSMX-C190 HSMG-C190 47 1 D3 DIO SMB 10BQ040 48 1 D4 DIO SMB 10BQ040 49 1 D5 DIO HSMX-C190 HSMB-C190 50 1 J1 CON AMP146134-2 AMP146134-2 51 1 J2 CON AMP146134-7 AMP146134
in „NP Kondensator in Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Vorlage_100x75.pdf
$10 A 3 U$17G$2 H GND V P0.18/P1.24-HALL2/IDX X +7 U$8 I 3 IC2 P1.31-MOTORCURRENT R34 R35 2 6 BAS21 LM307D 1K 10K 4 C24 + C8 1 3 GND 0 R 100nF R37 10µF 3 1 R 100k E GND E GND GND GND Motor Control 1 2 3 4 5 6 7 8 28.08.2012 16:57:40 C:\Users\Phil\Dropbox\Projekt Cineslider\Elektronik\Eagle Datei,LIB\ESD
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PDF
Vorlage_100x75.pdf
P1.20-HALL0/PHA +3V3 BLD 9 RESET CTS1/P0.17 46P0.17/P1.23-HALL1/PHB D 1µF 10nF VSSA 100nF GND P0.18 45P0.18/P1.24-HALL2/IDX G L2 XTAL1 19XTAL1 P0.22 44 VDD(REG)27 VDD(REG)2 AD0.2/P0.25 7 VDD(REG)14 VDD(REG)1 XTAL2 20XTAL2 GND AD0.3/P0.26 6 VDDIO_4 77 VDD4 USB_DP/P0.29 22 VDDIO_3 56 VDD3 RTCX1 13RTCX1
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pa3000.pdf
1N4007 D33 4 6 1 9 2 9 3 R R 5 4 K 4 K 4 0 R 3 R 3 R 1 100R CN9 4 0 T 1 D 4 R44 R 2 -B P C T O 2 R45 CN10 P C 100R 9 W C13 2 9 3 9 R 0 R46 4N25 U3 R47 +B 4 / 1 K 5 K 5 K 0 5 1 5 R 1 100\63 5 6 R 3 R 3 1 R 3K3 560R 5 R 5 Q19 6 D12 6 2 DZ1 Q20 0 C 4 K D28 BD140 1N4007 1 1N4742 5 7 D27 4148 4148 2K2 Q21
in „McCrypt PA 3000 modifizieren (Lüfter, Leistung,.)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
attiny25.c
PORTB.1 #define InterruptOut PORTB.2 #define Target_low 40 //Minimale Temperatur #define Target_high 45 //Maximale Temperatur #define ADC_VREF_TYPE ((0<<REFS0) | (0<<ADLAR)) // Bandgap Voltage Reference: Off //// Prototypen //// unsigned int read_adc (); /// Globale Variablen /// char temp = 0; char temp_part
in „AVR ADC auswerten klappt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Netzteil_Schaltplan.pdf
1% R6 1N5401 UB max. 35V 2 1% IC6 D1 R7 6 4 5 5 IN OUT 3 3 2 1% G 2 4 VC T 4 IC7 T K 2 7 S O S V+ LM334M A 1 8 +C7 +C10 1 3 K1 LT3080T R B @P - 10µF 2 10µF V- 2 M P C4 S S D 1 R R 1 0 100nF GND GND R 1 1 2 5 R8 +C9 0 V VCC OUT ADC_IOUT GND k 3 330 10µF 1 , + GND C5 R 6 N GND C12 G 1µF ADC_VOUT GND %
in „Layout Bewertung“ · Platinen ·
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PDF
LiveDesign_EB_Schematics-xilinx_spartan.pdf
TP5S GJ1S GJ2S U3S (2V50) LM1084IS-ADJ 1 1 +5V 2V50 VCCAUX B 2 2 3 IN OUT 2 B Header 2 Header 2 1 C71S C75S R33S C76S 470uF 16V 10uF 1 120R 1% 10uF GJ3S GJ4S Tant Tant 1 1 2 2 R34S Header 2 Header 2 120R 1% TP8S (1V20) U4S C C +5V LM1084IS-ADJ 1V20 VCCINT 3 IN OUT 2 D2S 1 1 C77S R37S C78S C72S 3 10uF 1 10uF 470uF 16V 2 R38S Tant Tant 470R BAS40-04 Do Not Mount V-232 R31S R30S 10R 4k7 C79S 10uF Tant D D Title NEB - Spartan Power Supply
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PDF
tidu533.pdf
changing the voltage applied to the VSENSE pin of the TPS54040A. VOUT TPS54040A Rup RSENSE MCU Rlow LM10011 Figure 12. Adjustable Voltage using Current Output DAC LM10011 4.2.4 Layout Guidelines Please refer to page 38 of the TPS54040A datasheet and Figure 105. 4.3 Output Protection The specifications
in „Hilfe bei der Berechnung (Voltage Divider)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Rechteckgenerator.pdf
(Wahl) R 1 R 2 R 1 R 2 T = R TC ⋅T ln( ) C T 100 nF (Wahl) T 1 R T C ⋅ ln 9 = 100 ⋅00 1⋅ −9⋅ln 9 = 45.511 kΩ T ( ) ( ) 10k u 2 10k +12V +12V 0 t u -12V 2 -12V 45.51k 10ms 100n Bild 3: Realisation des Rechteckgenerators nach Beispiel 1. Ausgabe: 29.9.2002, Gerhard Krucker, CH-3113 Rubigen Rechteckgenerator
in „Rechteckgenerator OPV“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HF500-30.pdf
Technology” are Frame (3) Frame (3) registered trademarks of Monolithic Power Systems, Inc. POUT (W) 30 45 20 30 NOTES: 1) The junction temperature can limit the maximum output power. 2) Maximum continuous power in a non-ventilated enclosed adapter measured at 50°C ambient temperature. 3) Maximum continuous
in „Marking Code Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TEM-U2400B-.pdf
output current Pin 7 –IRef 20 mA Time selection voltage Pin 13 V 3 V 13 Power dissipation T amb = 45⋅C P tot 0.8 W T amb = 85⋅C 0.4 Storage temperature range T – 40 to +125 ⋅C stg Ambient temperature range Tamb –10 to +85 ⋅C Thermal Resistance Parameters Symbol Value Unit Junction ambient DIP16 120
in „NI-CD Batterielader mit U2400B“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IC_LEXIKON_-_NEU.pdf
LaNrNOS Pos EurSStkFREIKHerSte PinBA Bezeich1 Bezeich2 Bezeich3 Bezeich4 030 k3 4,00 xilinx qua pc84c v5b45aps a32253a bk19542 LaNrNOS Pos EurSStkFREIKHerSte PinBA Bezeich1 Bezeich2 Bezeich3 Bezeich4 031 k3 3,00 toshiba gro tc551001 cf-70L ger 9915tak4 LaNrNOS Pos EurSStkFREIKHerSte PinBA Bezeich1 Bezeich2
in „(V) Bauelemente 70er-90er zu verkaufen Vintage Retro“ · Markt ·
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PDF
LeanXcam_UserDoc.pdf
...................................................................................................45 6.1. Übung 8: Textur-basierte Change Detection..........................................................45 6.2. Übung 9: Change Detection mit Morphologie und Region Labeling..........................51
in „Lean Xcam Farbenauslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA8375.pdf
often used. Preheating is necessary to dry the paste and evaporate the binding agent. Preheat for 45 minutes at 45 °C. Thistextgivesaverybriefinsighttoacomplextechnology. A more in-depth account of soldering ICs can be found in W AVE SOLDERING our ÒIC Package DatabookÓ (order code 9398 652 90011). Wave
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ads122c04.pdf
condition 4.0 µs tBUF Bus free time, between STOP and START condition 4.7 µs tVD;DAT Valid time, data 3.45 µs tVD;ACK Valid time, acknowledge 3.45 µs FAST-MODE fSCL SCL clock frequency 0 400 kHz Hold time, (repeated) START condition. tHD;STA After this period, the first clock pulse is generated. 0.6 µs tLOW
in „ads122C04 ADC 24Bit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPCA533A_ist_in_einer_Polaroid.pdf
PAS102, TASC TAS5130A, Biomorphic BI8602, IC Media ICM205DL, Motorola SCM20014, National Semiconductor LM9627, Century Semiconductor CS2102 SVGA/500K PixelCam PCS2112, Hynix HV7141B 1.3M OmniVision OV9620, Motorola MCM20027 3M Y-medai YM3170 CCD sensors: VGA/300K Sharp LZ24BP, Sony ICX098AK, Panasonic MN37771
in „SmartMedia auf xD-Picture Card“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SCH.pdf
LDEN(DEN) 43 LCD_VSYNC Y2 WR 120 E(RD) LFRAME(VSYNC) 44 LCD_HSYNC 4.3_TFT RS 122 RM/(WR) LLINE(HSYNC) 45 LCD_DCLK D/C LSHIFT(DCLK) CS 123 CS GPIO0 36 LCD_DISP 50 TE GPIO1 37 GPIO2 38 OSCOUT 24 OSCOUT GPIO3 39 2 1 J1 OSCIN 22 OSCIN PWM 51 CON2 REST 127 LCD_BL_ADJ 15 RESET CLK L S S 2 1 P A A S S S S S S
in „Open407I-C (Board für STM32) mit OV9655 (Kameramodul) auf 5"-Touchdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_Operationsversaerker_UA748.pdf
(Plastic Package) ■ NO LATCH-UP WHEN COMMON-MODE RANGE IS EXCEEDED ■ SAME PIN CONFIGURATION AS THE LM101A DESCRIPTION The UA748 is a general purpose operational am- D plifier built on a single silicon chip. The resulting SO8 close match and tight thermal coupling gives low (Plastic Micropackage) offsets
in „Operationsverstärker UA748 Abgleichen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
150418-da-01-en-ADJ_LOW_DROPOUT_POS_VR_5A.pdf
LT1085MK-12 1 GND 2-LEAD TO-3 METAL CAN JA= 35°C/W 3-LEAD TO-3P PLASTIC OBSOLETE NOT RECOMMENDED JA= 45°C/W FOR NEWDESIGNS FRONT VIEW FRONT VIEW LT1084CT-3.3 LT1085CM-3.3 TAB IS LT1084CT-5 3 VIN LT1085CM-3.6 OUTPUT LT1084CT-12 TAB IS 2 VOUT LT1085IM-3.6 3 V LT1085CT-3.3 OUTPUT IN LT1085CT-3.6 1 GND 2 VOUT
in „spannungsstabilisierung in blitz“ · Mikrocontroller und Digitale Elektronik ·
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CP_Robot_12b_sch.pdf
+24V IC5 +5V +5V s p 4 Pas 0 p P S FB S S X16 LM2576T L1 I/O 0 Pas 0 0 0 0 1wr 0 1 2 SuPpa0s 1 2 1 Pa0 1 0 0 1 R23 a a a a VIN E OUT a a a a P P P P D S s P P P P s 330 + C16 + C15 + C40 C18 N A N P 80..100uH + C19 + C5 +C28 C17 P G C O 1 X15 P I/O
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PDF
1083ffd.pdf
2-LEAD TO-3 METAL CAN LT1084CK-12 LT1085MK-12 1 GND θJA 35°C/W P PACKAGE 3-LEAD TO-3P PLASTIC θJA 45°C/W OBSOLETE NOT RECOMMENDED FOR NEWDESIGNS FRONT VIEW LT1084CT-3.3 LT1085CM-3.3 FRONT VIEW LT1084CT-5 3 VIN LT1085CM-3.6 OUTPUT LT1084CT-12 OUTPUTS 2 VOUT LT1085IM-3.6 3 VIN LT1085CT-3.3 LT1085CT-3.6
in „Frage zum Datenblatt LT1084CT-5“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Madli_Full.pdf
circuit diagram +5V +5V k 0 0 1 1 k 1 0 2 1 R 4 R R 5 R R R6 100k 1 Q1 C 1 n 8 0 D D B 8 U1A 1 4 3 LM393 3 4 + 1 Rx 0 0 D L J1 V V 1 4 3 2 - A B 1 T 1 B O 5 I 6 8 4 2 H 4 1 2 3 S D L k L 4 NET 2 5 6 R D D 0 0 4 1 1 1 - A A O 6 B B I 1 H 5 2 3 2 F R8 200R P Q21 S Tx C B R 3 0 1 9 R 0 0 0 Figure 4. Ballast
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Wie_archiviert_ihr_Websites__-_Mikrocontroller.net.html
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Datei
NRF24_SendRcvMIesp.ino
) ((p->packet[23] << 8) + p->packet[24])/10; if ((30<U_DC<50) && (0<I_DC<15) && (200<U_AC<300) && (45<F_AC<55) && (0<P_DC<420) && (0<TEMP<80)) DataOK = 1; else { DEBUG_OUT.println(F("Data Wrong!!"));DataOK =0; return;} STAT = (uint8_t)(p->packet[25] ); FCNT = (uint8_t)(p->packet[26]); FCODE = (uint8_
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
NRF24_SendRcvMIesp.ino
) ((p->packet[23] << 8) + p->packet[24])/10; if ((30<U_DC<50) && (0<I_DC<15) && (200<U_AC<300) && (45<F_AC<55) && (0<P_DC<420) && (0<TEMP<80)) DataOK = 1; else { DEBUG_OUT.println(F("Data Wrong!!"));DataOK =0; return;} STAT = (uint8_t)(p->packet[25] ); FCNT = (uint8_t)(p->packet[26]); FCODE = (uint8_
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
NRF24_SendRcvMIesp.ino
) ((p->packet[23] << 8) + p->packet[24])/10; if ((30<U_DC<50) && (0<I_DC<15) && (200<U_AC<300) && (45<F_AC<55) && (0<P_DC<420) && (0<TEMP<80)) DataOK = 1; else { DEBUG_OUT.println(F("Data Wrong!!"));DataOK =0; return;} STAT = (uint8_t)(p->packet[25] ); FCNT = (uint8_t)(p->packet[26]); FCODE = (uint8_
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·