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7-Segmentanzeige4.bas
Funktion : '| Einfacher Zähler, getiggert durch Timer0 '| '| Schaltung : '| STK-PD0 --> Pin 1(A0) von 74LS138 - Stellen-/Segmentauswahl '| STK-PD1 --> Pin 2(A1) von 74LS138 - Stellen-/Segmentauswahl '| STK-PD2 --> Pin 3(A2) von 74LS138 - Stellen-/Segmentauswahl '| STK-PB0 --> Pin 7(A0) von 74HC4511 - Zahlenwert '| STK-PB1 --> Pin 1(A1) von 74HC4511 - Zahlenwert '| STK-PB2 --> Pin 2(A2) von 74HC4511 - Zahlenwert '| STK-PB3 --> Pin 6(A3) von 74HC4511 - Zahlenwert '| STK-PB4 --> an Dezimalpunkt '+---------------------------------------------
in „Frequenz LED-Multiplex-Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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user.guide.hcmos.pdf
transistors conduct for brief periods and their effect is included in thePD value in the data sheets. 7.2 74HCT inputs Fig.22 74HC input circuit. The 74HCT input stage is similar to that of a 74HC device. It has the same characteristics for LSTTL levels as a 74HC inputhasforCMOSlevels,sothereisnotrade-offinspeed
in „Unterschied 74HCxx, 74ACxx, 74LVCxx ?“ · Mikrocontroller und Digitale Elektronik ·
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user.guide.hcmos.pdf
transistors conduct for brief periods and their effect is included in thePD value in the data sheets. 7.2 74HCT inputs Fig.22 74HC input circuit. The 74HCT input stage is similar to that of a 74HC device. It has the same characteristics for LSTTL levels as a 74HC inputhasforCMOSlevels,sothereisnotrade-offinspeed
in „74HCT Ausgangsstrom“ · Analoge Elektronik und Schaltungstechnik ·
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nkat20-21.pdf
.170 -.126 74HC 390 SMD -.355 -.237 -.182 74HC 21 SMD -.383 -.255 -.196 74HC 393 SMD -.404 -.238 -.176 74HC 30 SMD -.225 -.150 -.115 74HC 423 SMD -.913 -.609 -.468 74HC 32 SMD -.256 -.151 -.112 74HC 540 SMD -.596 -.397 -.305 74HC 73 SMD -.270 -.180 -.138 74HC 541 SMD -.423 -.249 -.184 74HC 74 SMD -.206 -.121 -.090 74HC 563 SMD -.543 -.362 -.279 74HC 86 SMD -.180 -.120 -.092 74HC 573 SMD -.476 -.280 -.207 74HC 112 SMD -.687
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CPU08RM.pdf
Source Form, Addressing Mode, Machine Code, Cycles, and Access Detail Source Address Machine Code HC08 Form Mode Opcode Operand(s) Cycles BGE rel REL 90 rr 3 See the BRA instruction for a summary of all branches and their complements. CPU08 Central Processor Unit Reference Manual, Rev. 4 74 Freescale
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tFXKSKyORc24h2V2.pdf
O C C M S ICW3 C Q D O C C M S N0FSR3 8 P0ICP408 9 V T H D 0 V T H D V T H D 3.3K FSR3 GND C CLGND 74HC595 S S D 0 74HC595 S S D 74HC595 S S D CN500 R141 C120 1 1 2 3 3 5 647 N5 6 7 0 C 11 223 4 3 6 4 N 5 6 7 0 0 11 223 435 6 4 N 5 6 7 0 0 P0R14101 P0R14102 C114 74HC4053 0.1 1 Q Q Q Q Q Q Q G1 1 1 C
in „Risiko | Nicht?“ · Offtopic ·
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HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
_DC 0 P5018 D osx 1° cn c\ı HM4/7 osx 1° 15ÜR LED_GK ' 1_1-1F <\11 † 1 LL Z 1_ 1 >- 1 LED_GK › RFR 74Pxc4oa4 ff O <3 | cz II 74HC4D94 ›' B043 1_1\1R xcaoos 1_ı.11* 1* I1 1x/1AG1Off >( >c xcanox ÜÜO7 SGL xx E0_G 1 1STP Q0 4 O 1 STR 00 4 Q4 ED_G 013044 2 0 02 § ;~† Z 0 02 0s0xox . ROL Laufe; 1_LF 3 03
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AD5415.pdf
MC68HC11 microcontroller. The serial peripheral interface (SPI) on the MC68HC11 is configured for master Communication between two devices at a given clock speed is mode (MSTR) = 1,Clock polarity bit (CPOL)
in „D/A mit Stromausgang“ · Mikrocontroller und Digitale Elektronik ·
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doc7627.pdf
191,657 42 46,316 72 14,329 -17 1037,934 13 181,920 43 44,380 73 13,828 -16 973,006 14 172,740 44 42,537 74 13,347 -15 912,596 15 164,083 45 40,781 75 12,885 -14 856,361 16 155,914 46 39,107 76 12,442 -13 803,984 17 148,205 47 37,513 77 12,017 -12 755,175 18 140,926 48 35,992 78 11,608 -11 709,669 19 134,051
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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Datei
version_1p3_assembler.lst
1CAB B4 47 00 CJNE A,#'F'+1,HEX_CHECK1 ;SEE IF F OR LESS 7185: 1CAE HEX_CHECK1: 7186: 1CAE 40 01 JC HC1 7187: 1CB0 22 RET 7188: ; 7189: 1CB1 B4 41 00 HC1: CJNE A,#'A',HC11 ;SEE IF A OR GREATER 7190: 1CB4 B3 HC11: CPL C 7191: 1CB5 22 RET 7192: ; 7193: 1CB6 PUSHR2R0: 7194: ; 7195: 1CB6 7B 00 MOV R3,#HIGH
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Powermeter.pdf
be used. Gain configuration resistors are readily toggled in and out using low-cost switches from 74HC-series logic, as shown in Figure 4. The gain stage shown has a fast switching time and allows high AC gain but a low DC gain. Figure 4. Inverting Amplifier with Variable Gain Uses Bilateral Switches (74HC4066). C1 R11 R12 R13 R2 RS VCC I/O0 R4 C2 I/O1 R3 Calculating the Gain The gain of the inverting amplifier is as follows: Equation 7. Gain Of Inverting Amplifier. R2 A = − R1 Here R1 consists of the
in „230V Leistung erfassen mit ATmega128“ · Mikrocontroller und Digitale Elektronik ·
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volt230.pdf
be used. Gain configuration resistors are readily toggled in and out using low-cost switches from 74HC-series logic, as shown in Figure 4. The gain stage shown has a fast switching time and allows high AC gain but a low DC gain. Figure 4. Inverting Amplifier with Variable Gain Uses Bilateral Switches (74HC4066). C1 R11 R12 R13 R2 RS VCC I/O0 R4 C2 I/O1 R3 Calculating the Gain The gain of the inverting amplifier is as follows: Equation 7. Gain Of Inverting Amplifier. R2 A = − R1 Here R1 consists of the
in „Netzteil ohne Trafo“ · Mikrocontroller und Digitale Elektronik ·
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energymeter.pdf
be used. Gain configuration resistors are readily toggled in and out using low-cost switches from 74HC-series logic, as shown in Figure 4. The gain stage shown has a fast switching time and allows high AC gain but a low DC gain. Figure 4. Inverting Amplifier with Variable Gain Uses Bilateral Switches (74HC4066). C1 R11 R12 R13 R2 RS VCC I/O0 R4 C2 I/O1 R3 Calculating the Gain The gain of the inverting amplifier is as follows: Equation 7. Gain Of Inverting Amplifier. R2 A = − R1 Here R1 consists of the
in „Leistungsmessung über Shunt?“ · Analoge Elektronik und Schaltungstechnik ·
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doc2566.pdf
be used. Gain configuration resistors are readily toggled in and out using low-cost switches from 74HC-series logic, as shown in Figure 4. The gain stage shown has a fast switching time and allows high AC gain but a low DC gain. Figure 4. Inverting Amplifier with Variable Gain Uses Bilateral Switches (74HC4066). C1 R11 R12 R13 R2 RS VCC I/O0 R4 C2 I/O1 R3 Calculating the Gain The gain of the inverting amplifier is as follows: Equation 7. Gain Of Inverting Amplifier. R2 A = − R1 Here R1 consists of the
in „Cadsoft Eagle“ · Platinen ·
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PSpice_LibraryguideOrCAD.pdf
74TTL Diodes and Rectifiers MUR880 MUR880 DIODE.OLB 74TTL Diodes and Rectifiers MUR890 MUR890 DIODE.OLB 74TTL Diodes and Rectifiers R710XPT R710XPT DIODE.OLB 74TTL Diodes and Rectifiers R711XPT R711XPT
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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at90s2313-datasheet-atmel.pdf
left unconnected while XTAL1 is driven, as shown in Figure 3. Figure 2. Oscillator Connections MAX 1 HC BUFFER HC C2 XTAL2 C1 XTAL1 GND Note: When using the MCU Oscillator as a clock for an external device, an HC buffer should be connected as indicated in the figure. Figure 3. External Clock Drive Configuration
in „AVR Studio 4.19“ · Mikrocontroller und Digitale Elektronik ·
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AT90S2313_Datasheet.pdf
left unconnected while XTAL1 is driven, as shown in Figure 3. Figure 2. Oscillator Connections MAX 1 HC BUFFER HC C2 XTAL2 C1 XTAL1 GND Note: When using the MCU Oscillator as a clock for an external device, an HC buffer should be connected as indicated in the figure. Figure 3. External Clock Drive Configuration
in „Fragen zum Sleep Mode“ · Mikrocontroller und Digitale Elektronik ·
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6291174.pdf
Q9801 405 134 5905 TR 2SA1037AK-T146-R IC561 409 502 3302 IC L3E06070D0A IC6101 409 431 6009 IC MC74VHC14DT INTEGRATED CIRCUIT 410 356 8009 IC SN74LV14APWR IC1101 409 504 9005 IC TB1274AF IC1171 409 416 6505 IC BA05FP-E2 IC6121 409 158 5804 IC TC74HC123AF-TP1 IC6141 409 158 5804 IC TC74HC123AF-TP1 IC121
in „Sanyo LCD Beamer PLC- XU30 defekt“ · Analoge Elektronik und Schaltungstechnik ·
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TMC5072_datasheet.pdf
ANDEME CIRCUITRY 16 12.5 LIMITS OF STGLUARD2 OPERATION 73 4 SPI INTERFACE 18 13 COOLSTEP OPERATION 74 4.1 SPI DATAGRAM STRUCTURE 18 13.1 USERBENEFITS 74 4.2 SPI IGNALS 19 13.2 SETTING UP FOR COSTEP 74 4.3 TIMING 20 13.3 TUNING COOSTEP 76 5 UART SINGLE WIRE INTERFACE 21 14 DCSTEP 77 5.1 DATAGRAM STRUCTURE
in „TMC5072 SPI Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·