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PDF
MOC3022-M.pdf
25°C 4.4 mW/°C EMITTER Continuous Forward Current IF All 60 mA Reverse Voltage V All 3 V R Total Power Dissipation 25°C Ambient 100 mW PD All Derate above 25°C 1.33 mW/°C DETECTOR MOC3010M/1M/2M 250 Off-State
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PDF
MOC3022-M.pdf
25°C 4.4 mW/°C EMITTER Continuous Forward Current IF All 60 mA Reverse Voltage V All 3 V R Total Power Dissipation 25°C Ambient 100 mW PD All Derate above 25°C 1.33 mW/°C DETECTOR MOC3010M/1M/2M 250 Off-State
in „Problem beim dimmen von NV-Halogenspots“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3022-M.pdf
25°C 4.4 mW/°C EMITTER Continuous Forward Current IF All 60 mA Reverse Voltage V All 3 V R Total Power Dissipation 25°C Ambient 100 mW PD All Derate above 25°C 1.33 mW/°C DETECTOR MOC3010M/1M/2M 250 Off-State
in „triac und diac“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
321-19620-0-PC87200.pdf
BALE 27 94 STOP# MEMCS16# 28 93 DEVSEL# IOCS16# 29 92 TRDY# SA20 30 91 IRDY# SA21 31 90 Vss SA22 32 89 Vdd SA23 33 88 FRAME# IRQ10 34 87 C/BE2# IRQ11 35 86 AD16 IRQ12 36 85 AD17 IRQ15 37 84 AD18 IRQ14 38 83 AD19 Vdd 39 82 AD20 Vss 40 81 AD21 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0
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PDF
MOC3023-M.pdf
25°C 4.4 mW/°C EMITTER Continuous Forward Current IF All 60 mA Reverse Voltage V All 3 V R Total Power Dissipation 25°C Ambient 100 mW PD All Derate above 25°C 1.33 mW/°C DETECTOR MOC3010M/1M/2M 250 Off-State
in „Moc3023 Tic225 Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_moc3022.pdf
25°C 4.4 mW/°C EMITTER Continuous Forward Current IF All 60 mA Reverse Voltage V All 3 V R Total Power Dissipation 25°C Ambient 100 mW PD All Derate above 25°C 1.33 mW/°C DETECTOR MOC3010M/1M/2M 250 Off-State
in „Phasenanschnitt- Fehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Switch.pdf
KUHP-11A51-120 A2 120VAC DPDT 20A 655-KUHP-11D51-12 KUHP-11D51-12 A2 12VDC DPDT 20A C D 655-KUHP-11D51-24 KUHP-11D51-24 A2 24VDC DPDT 20A Gehäuse mit Flansch oben 655-KUHP-5AT1-120 KUHP-5AT1-120 B1 120VAC SPDT
in „Ausfallursache Printtaster DeLonghi Kaffeeautomat?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
24LC32A.pdf
Range b) 24AA32A-I/SN: Industrial Temperature,1.8V, 2 SOIC package Device: 24AA32A: 1.8V, 32 Kbit 2 C Serial EEPROM c) 24AA32A-I/SM: Industrial Temperature.,1.8V, 24AA32AT: 1.8V, 32 Kbit I C Serial EEPROM SOIC (208 mil) package (Tape and Reel) 24AA32AX 1.8V, 32 Kbit I 2C Serial EEPROM in d) 24AA32AX-I
in „I2C Eeprom: Buskollisionen nach einem schnellen Reset“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCPL-063.pdf
. It is recommended that 6.3 mA to 10 mA be used for best performance and to permit at least a 20% LED degradation guardband. 6 Electrical Specifications Over Recommended Temperature (T = –4A˚C to +85˚C) unless otherwise specified. All Typicals at V CC= 3.3 V, TA= 25˚C. All enable test
in „Logic Gate Optocoupler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3041-M.pdf
25°C 2.94 mW/°C EMITTER I All 60 mA Continuous Forward Current F Reverse Voltage VR All 6 V Total Power Dissipation 25°C Ambient 120 mW P All Derate above 25°C D 1.41 mW/°C DETECTOR MOC3031M/2M/3M 250 Off-State
in „Triac schaltet nicht ab“ · Mikrocontroller und Digitale Elektronik ·
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PDF
an_06-65.pdf
limit 3 mv S mv H)5023 Plug-in printed circuit selects dual output range, 0-32 0-2 UttAt or or 0.2 50°C 50 or 50-400 V&A V V V V 11,3 89 H x 476 0 x 483 W V V other range — 0-64 V, 0-1A. Variable vollage and 435.00 0.02 •/. 0.03 •/• 210-250 current limit. 3mv 3 mv 105-125 Plug-in module
in „HP 6966A Schaltplan / Manual“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datasheet_ILI9225DS_V022.pdf
color ILI9225 No. Name X Y No. Name X Y No. Name X Y No. Name X Y No. Name X Y 1 DUMMY1 -6695 -267 51 C11P -3695 -267 101 VCI -695 -267 151 TEST_MUX<2> 2855 -267 201 GVDDO 5855 -267 2 DUMMY2 -6635 -267 52 C11P -3635 -267 102 VCI -635 -267 152 TEST_MUX<1> 2915 -267 202 VCOMH 5915 -267 3 VCOM -6575 -267
in „STM32F103 TFT SPI ILI9225“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dcc_lok.lst
: 214/ 41 : 2033 EXT_STP:TST R3 215/ 42 : F052 BRMI EXT_STO ; jump if stop bit received 216/ 43 : 2C45 MOV R4,R5 217/ 44 : 2C56 MOV R5,R6 218/ 45 : 2C67 MOV R6,R7 ; shift bytes one position downwards 219/ 46 : 2C78 MOV R7,R8 220/ 47 : 2C89 MOV R8,R9 221/ 48 : 3600 CPI R16,BYTE_6 ; if at least 6 bytes
in „DCC Singal auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TM1637Display.h
receives raw segment values as input and displays them. The segment data</span></td> </tr> <tr> <td id="L51" class="blob-num js-line-number" data-line-number="51"></td> <td id="LC51" class="blob-code blob-code-inner js-file-line"> <span class="pl-c">//! is given as a byte array, each byte corresponding to
in „7-Segmentanzeige an Atmega32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Micro_turbo_expander_design_for_small_scale_ORC_Te.pdf
....34 ▯ Table 2.6 Literature Review summary.......................................................51 ▯ Table 3. 1 Aluminium properties (at 20°C) 79 ▯ Table 3. 2 Settings used for Software calculations .....................................81 ▯ Table 3. 3 Curvature parameters..........................
in „Luftzerlegung/Luftverflüssigung auf dem Basteltisch machbar?“ · Offtopic ·
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PDF
EagleSchematicOverview.pdf
2 1 2X 7 2X 2X 1Xne mmel K 8 2 2 2 2 2 2 2 2 2 2 2 2 2 6 5 4 8 7 3 2 1 5 4 3 2 1 6 5 6 5 D31. 1/1 51 6 5 E G D7. 1/4 3 D4. 1/4 3 D9. 1/4 3 P l 2V 1 W e g 2 1 2 1 2 1 i 2U M 1V p t D31. 1/1 11 D71. 1/1 31 D71. 1/1 11 k 2 W ~3 1U at E N 3 2 1 e n D61. 1/1 31 P L L L r o 1 M e r WK01 h ü r f dnabr edr
in „Eagle: Alle Schaltpläne in ein pdf drucken“ · Platinen ·
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PDF
NEC_78F.pdf
(TMC50) register50 (TCL50) Internal bus <R> Figure 7-2. Block Diagram of 8-bit Timer/Event Counter 51 Internal bus 8-bittimercompare register51(CR51) i Selector INTTM51 TI51/TO51/ r c P33/INTP4 Match k Note 1 fPRS o a fPRS/4 c M S Q o TO51 fPRS/26 l 8-bittimer OVF INV c output fPRS/28 S l TO51/TI51/
in „NEC bzw. Renesas Microcontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DYPTH01B-SPI_Datasheet.pdf
Conditions Min Typ Max Unit Humidity Resolution 1 % Repeatability 1 % Accuracy Uncertainty Temperature at 0 +,-3 +,-5 % 0C – 50C range Interchangeability Fully Inter Changeable Nonlinearity 1 2 % Range Temperature at 0C – 50C range 18 98 % Response Time 63% slowly move air 60 Second Hysterisis Non-condensate
in „Luftfeuchtigkeitssensor an Arduino UNO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
B-1220.pdf
Quarzoszillator (10.245,0 kHz) erhält. Löten Sie ein: R37 10 kΩ R100 10 kΩ R101 10 kΩ R35 3,3 kΩ R90 10 kΩ R89 47 kΩ C67 33 pF C116 56 pF C117 120 pF C122 100 nF C134 100 µF (Polung beachten) C120 100 nF C119 100 nF C118 100 nF C74 1 nF C136 100 pF C128 1 nF C48 10 pF C44 22 pF C46 22 pF C47 5,6 pF C63 5,6 pF
in „JR 78 von DF5FC Schaltbild gesucht“ · HF, Funk und Felder ·
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PDF
LT1734.pdf
has negligible B-E of a device may be impaired. reverse-leakage current when the emitter is biased at 0V (CC) and the base is biased at 4.2V (V ). Note 2: The LTC1734LE is guaranteed to meet performance specifications BAT from0°C to 70°C ambient temperature range and 0°C to 100°C junction Note 5: The
in „akku mit solar aufladen, kommt das IC: LT1734L dafür in Frage?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STP6NK90ZFP.pdf
Symbol Parameter Unit 2 TO-220 TO-220FP TO-247 D PAK Rthj-case Thermal resistance junction-case 0.89 4.2 0.89 °C/W R thj-pcb Thermal resistance junction-pcb 60 °C/W Rthj-amb Thermal resistance junction-ambient 62.5 50 °C/W Table 3. Avalanche characteristics Symbol Parameter Value Unit AR Avalanche current
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PDF
STP6NK90ZFP.pdf
Symbol Parameter Unit 2 TO-220 TO-220FP TO-247 D PAK Rthj-case Thermal resistance junction-case 0.89 4.2 0.89 °C/W R thj-pcb Thermal resistance junction-pcb 60 °C/W Rthj-amb Thermal resistance junction-ambient 62.5 50 °C/W Table 3. Avalanche characteristics Symbol Parameter Value Unit AR Avalanche current
in „Unterschiedliche Power MOSFET kompatibel?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
S1D15714_Technical_Manual__E_.pdf
.) µm 4.2 Alignment mark Alignment coordinate 1 (5364, 975) µm 2 (–5415, –942) µm b Mark size a c a = 70.5 µm b = 20.3 µm c = 79.5 µm Rev. 1.0 EPSON 3 S1D15714 Series 4.3 Pad Center Coordinates Unit: µm PAD Pin PAD Pin PAD Pin No. Name X Y No. Name X Y No. Name X Y 1 NC 4986 982 51 CAP1+ –728 982
in „Nokia LCD 3510“ · Mikrocontroller und Digitale Elektronik ·
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Datei
USART.C
************** //******************************************************************* // Header und C-Unterprogramme einbinden //******************************************************************* #include "AT89C51CC03.H" //******************************************************************* // RS-232
in „zwei Byte übertragen AT89C51CC03 (8051)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mega128-can128.pdf
S I I I I ( C / ( / T T / / / / ( / T T / / / / / A 2 ( ( C D D D A ( ( C D D D N C C ( ( X T C ( ( X T C R ( ( ( ( ( ( X ( ( Table 1. Changed Pins Pin ATmega128 AT90CAN128 Comments for AT90CAN128 1 PEN (n.c.) Not
in „AtMega128 - At90Can128“ · Mikrocontroller und Digitale Elektronik ·
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Datei
an614_V1.a51
$NOMOD51 $INCLUDE(89S51.MCU) ;REGISTER ASSIGNMENTS ; ;R1 DATA OR DATA POINTER ;R2 LOOP COUNTER REGISTER ;R3 ADDRESS, HI BYTE ;R4 ADDRESS, LOW BYTE ;R5 ;R6 BYTE COUNT FOR PAGE OPERATIONS ;PIN ASSIGNMENTS: ;Port
in „EEPROM 24LC08B von Pollin an AT89S51“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD66002.pdf
Y 74 24 57 Y 7 Y 75 25 56 Y 6 Y 76 26 55 Y 5 Y 77 27 54 Y 4 Y 78 28 53 Y 3 Y 79 29 52 Y 2 Y 80 30 51 Y 1 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 3 3 3 3 3 3 3 3 3 4 4 4 4 4 4 4 4 4 4 5 1 2 3 4 E 1 D L C S 1 2 R L 2 R E V V V V V M C N H VC C S T L R I OI C A G S F E E D D D D C T T Figure 1 Pin Arrangement
in „Grafikdisplay 480x64 UMS-7024AN-G“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD9235.pdf
92.0 dBc f = 9.7 MHz Full IV 80.0 88.5 dBc INPUT 25°C I 91.0 dBc fINPUT 19.6 MHz Full IV 80.0 89.0 dBc 25°C I 90.0 dBc fINPUT 32.5 MHz Full IV 74.0 83.0 dBc 25°C I 85.0 dBc fINPUT 100 MHz 25°C V 84.0 85.0 80.5 dBc Rev. C | Page 6 of 40 AD9235 ABSOLUTE MAXIMUM
in „Einstellen eines ADCs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EEPROM.pdf
DIP, • Low-power CMOS technology: SOIC, TSSOP, MSOP and DFN packages. - Maximum write current 3 mA at 5.5V - Maximum read current 400 μA at 5.5V Block Diagram - Standby current 100 nA, typical at 5.5V 2-wire serial interface bus, I C compatible A0 A1A2WP HV Generator Cascadable for up to eight devices
in „EEPROM auslesen (24xx256) mit Pic16f819, an PC über RS232“ · Mikrocontroller und Digitale Elektronik ·
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Datei
R6581.txt
^Nu N^NuNV N^NuNV N^NuNV N^NuNV N^Nu? log10 domain error N^NuNV N^Nusqrt domain error N^Nu# NuNV `"C `$C g&Hx 89N^Nu. (GJ g:J 89N^NuNV "TR "TB 0 N^NuNV N^Nu diuoxX !N^NuNV "U *f(R "S8 "SX JTl gX"Cp `PJ "U~ "C" BT"U~ "U| 88N^NuNV (MJ 0 N^Nu (MJ d&. 89N^NuB BDC &IBn .f,B f0"n b.. t.. "Q" `j>. `N"n &QJ
in „Hilfe bei Disassembler 68000 Binary“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Adc.asm
0xd8,0xd5,0xd3,0xd1,0xce,0xcc,0xc9,0xc7,0xc4,0xc1,0xbf,0xbc,0xb9,0xb6,0xb3 .db 0xb0,0xae,0xab,0xa8,0xa5,0xa2,0x9f,0x9c,0x98,0x95,0x92,0x8f,0x8c,0x89,0x86,0x83 .db 0x80,0x7c,0x79,0x76,0x73,0x70,0x6d,0x6a,0x67,0x63,0x60,0x5d,0x5a,0x57,0x54,0x51 .db 0x4f,0x4c,0x49,0x46,0x43,0x40,0x3e,0x3b,0x38,0x36,0x33,0x31,0x2e,0x2c,0x2a
in „AD-Wandler spinnt . . .“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M48T58Y.pdf
32,768 Hz. The devices are tested not to exceed 35 ppm (parts per million) oscillator frequency error at 25°C, which equates to about ±1.53 minutes per month. With the calibration bits properly set, the accuracy of each M48T58/Y improves to better than +1/–2 ppm at 25°C. The oscillation rate of any crystal
in „[S] DALLAS DS1220Y-150 NVRAM (NOS)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pico-datasheet_1_.pdf
intensity. The 'Maximum' data is obtained during periods of white video, when the current required is at its highest. Table 1. Popcorn running on the VGAico Board Average VBUSCurrent @ 5V (mA) Maximum VBUSCurrent @5V (mA) Board (VGA video, SD Card and I2S audio) Temperature (°C) Temperature (°C) -25 25
in „Raspberry Pi Pico PIO (JESUS)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCA82C251_PHI.pdf
36 V limit; note 2 V7 DC voltage at pin 7 (CANH) 0 V < CC < 5.5 V; no time limit −36 +36 V Vtr transient voltage on pins 6 and 7 see Fig.8 −200 +200 V T storage temperature −55 +150 °C stg Tamb ambient temperature −40 +125 °C Tvj virtual
in „Differentielle Datenübertragung, welcher Baustein empfehlenswert?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZAD-11_.pdf
ZAD-11+ Level 7 (LO Power +7 dBm) 5 to 2000 MHz Maximum Ratings Features Operating Temperature -55°C to 100°C • low conversion loss, 7.12 dB typ. CASE STYLE: M22 Storage Temperature -55°C to 100°C • wideband, 5 to 2000 MHz Connectors Model Price Qty. RF Power 50mW • rugged shielded case BNC ZAD-11+
in „Wie soll ich meinen Mixer halten?“ · HF, Funk und Felder ·
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PDF
ECO7213.pdf
the aid of Fig.6 we find the maximum value of S and the normalized values of the correction elements C 1n and L1n C 1n L 1n× R 1 Now C a1d L ca1 be calculated: C1 = - and L 1 - ω max × R1 ω max 1998 Mar 23 5 Philips Semiconductors Design of H.F. Wideband Power Transformers; Part II ECO7213 At the secondary
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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PDF
PCA82C250_PHI.pdf
100% tested at +25 °C. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Supply 3 supply current dominant; 1 = 1 V − − 70 mA recessive; 1 = 4 V; − − 14 mA R8= 47 k recessive; 1 = 4 V; − − 18 mA V8= 1 V standby; amb <
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PDF
82C250.pdf
100% tested at +25 °C. SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Supply 3 supply current dominant; 1 = 1 V − − 70 mA recessive; 1 = 4 V; − − 14 mA R8= 47 k recessive; 1 = 4 V; − − 18 mA V8= 1 V standby; amb <
in „I2C vs CAN vs Ethernet“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NECCS04393-1.pdf
Method Soldering Conditions Recommended Condition Symbol Infrared reflow Package peak temperature: 235°C, Time: 30 seconds max. IR35-00-3 (at 210°C or higher), Count: Three times or less VPS Package peak temperature: 215°C, Time: 40 seconds max. VP15-00-3 (at 200°C or higher), Count: Three times or less
in „Anschlussbelegung uP D78P0308GF gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
drehzahlmitcapture.txt
Einbinden von Include-Dateien ***/ #include <stdio.h> // Standard Ein-/Ausgabefunktionen #include <at89c51cc03.h> // CC03er-Grundregister #include "lcd_fkts.h" // Funktionsprototypen der Datei lcd_fkts.c #include "cc03er.h" // Funktionsprototypen der Datei cc03er.c unsigned char bit T2 @ 0x90; // Port-Pin
in „Capture Funktion“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74hc595.PDF
REGISTER WITH OUTPUT LATCHES (3 STATE) . HIGH SPEED . LOWPOWER DISSIPATIONAT VCC = 5 V CC = 4 A(MAX.) AT T A 25 ⋅C . HIGH NOISE IMMUNITY VNIH= VNIL= 28 % VCC (MIN.) . OUTPUT DRIVE CAPABILITY B1R F1R 15 LSTTL LOADS FOR QA TO QH (Plastic Package) (CeramicPackage) 10 LSTTL LOADS FOR QH’ . SYMMETRICAL OUTPUT
in „7 Segment Anzeige - SAA1064 + 4stellige Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
51R1 u 51R1 n T ›\ «T d C2105 Tezzso *sv r 1í1 C 11 R I ' R2157 n v2x5 SD54O 5 Ø 12;, C2144 g D1“F T2042 BCESOC 308 C2140 16 H25 n RC254 R254 zr«-1 2 C R21a2 HC7 O1uF o J C2105 .5 b GMP C2002 Z C í ` 1DZDO9
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Datei
fcntl.lst
GAS LISTING c:\windows\TEMP\ccTDIigb.s page 1 1 .file "fcntl.c" 2 .arch at90s8535 3 __SREG__ = 0x3f 4 __SP_H__ = 0x3e 5 __SP_L__ = 0x3d 6 __tmp_reg__ = 0 7 __zero_reg__ = 1 8 _PC_ = 2 9 .stabs "D:\\Projects\\miconox
in „Compiler-Fehler?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1302.pdf
to +70°C 8 PDIP DS1302 X2 1 D 8 I/O DS1302N -40°C to +85°C 8 PDIP DS1302* N.C. 2 7 N.C. DS1302S 0°C to +70°C 8 SO (200 mils) DS1302S N.C. 3 6 N.C. DS1302SN -40°C to +85°C 8 SO DS1302S* GND 4 5 CE DS1302Z 0°C
in „Wiedermal ein RTC-Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Tastatur.lst
OUT 0x0A,R16 49 UBRR = 0x33; // 9600 Baud @ 8 MHz \ 00000016 E303 LDI R16,51 \ 00000018 B909 OUT 0x09,R16 50 UCR = 0x98; // enable TxD, RxD and RxD Interrupt \ 0000001A E908 LDI R16,152 \ 0000001C B90A OUT 0x0A,R16 51 52 MCUCR = 0x02; // int0: falling edge \ 0000001E E002 LDI
in „erzeugter Code von ICCAVR ineffizient“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Navtex.pdf
arbitrary chosen centre impedance of 22 ohms and Q factors of 8 and 7, respectively . 1 CMOS switches (U1c, U1d) are used as mixers. The signal of either mixer output is amplified (U2a, U2b) and fed into a first-order all pass filter (U2c, U2d), specified for 90° phase shift at 950 Hz (U2c) and 160 Hz (U2d
in „Antenne für 518kHz Navtex Empfänger“ · HF, Funk und Felder ·
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PDF
Navtex.pdf
arbitrary chosen centre impedance of 22 ohms and Q factors of 8 and 7, respectively . 1 CMOS switches (U1c, U1d) are used as mixers. The signal of either mixer output is amplified (U2a, U2b) and fed into a first-order all pass filter (U2c, U2d), specified for 90° phase shift at 950 Hz (U2c) and 160 Hz (U2d
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Bild
PCB-Layout eines Mikrocontrollers mit Widerständen
R2 R2 R U1 V U1 R1 R1 R AT89C51CC03
in „KiCad 6, AT89C51CC03“ · Platinen · · Layouts
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Datei
crc_m16.c
------ // Table of CRC values for low-order byte const unsigned char CRCM16HiArray[256] = { 0x00,0x89,0x12,0x9B,0x24,0xAD,0x36,0xBF,0x48,0xC1, 0x5A,0xD3,0x6C,0xE5,0x7E,0xF7,0x81,0x08,0x93,0x1A, 0xA5,0x2C,0xB7,0x3E,0xC9,0x40,0xDB,0x52,0xED,0x64, 0xFF,0x76,0x02,0x8B,0x10,0x99,0x26,0xAF,0x34,0xBD, 0x4A,
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PDF
LT1083_LT1084_LT1085_LT.pdf
1.7V ≤ (VIN V OUT ) ≤25V for LT1084 at –55°C ≤ TJ≤ –40°C. power dissipation will not be available over the full input/output voltage range. Note 7: Dropout is 1.7V maximumfor LT1084 at –55°C ≤ T J ≤–40°C. Note 3: FULL LOADis defined in the
in „Aus 12V 5V machen“ · Mikrocontroller und Digitale Elektronik ·