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LGT8FX8P_databook_v1.0.4.pdf
进行写入操作时,OCR2BUB 2 OCR2BUB 位会被置位。当 OCR2B 的值更新完毕后,硬件会清零 OCR2BUB 位。只 有当 OCR2BUB 位为 0 时,才可对 OCR2B 进行更新。 - 140 - LGT8FX8P Series – Programming Manual 1.0.4LogicGreen Technologies Co., LTD TCCR2A 寄存器更新标志位。 当定时器 2 工作于异步模式下,对 TCCR2A 进行写入操作时,TCR2AUB 1 TCR2AUB位会被置位。当 TCCR2A 的值更新完毕后,硬件会清零 TCR2AUB 位。 只有当 TCR2AUB 位为
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W77E058Aj.pdf
INSTRUCTION HEX BYTES MACHINE CLOCK CLOCK 8032 SPEED OP-CODE CYCLES CYCLES CYCLES RATIO CJNE R5, #data, rel BD 3 4 16 24 1.5 CJNE R6, #data, rel BE 3 4 16 24 1.5 CLR A E4 1 1 4 12 3 CPL A F4 1 1 4 12 3 CLR C C3 1 1 4 12 3 CLR bit C2 2 2 8 12 1.5 CPL C B3 1 1 4 12 3 CPL bit B2 2 2 8 12 1.5 DEC A 14 1 1 4 12 3
in „[V] 12St. 8051er- NUVOTON / WINBOND PLCC44 ( 2UARTS u. 4 clocks/machine cycle- 40MHz)“ · Markt ·
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Datei
TopAS21.vhd
),-1.5359845 rad, -88.005429248 X"BE71C064",-- Achse A3 (a4 Servo),-0.23608547 rad,-13,526701035 X"BD11B3AA",-- Achse A4 (a5 Servo),-0.03557173 rad, -2.038109999 X"00000000" -- Achse A5 (a6 servo), 0 rad ); --======================================================= BEGIN -- begin VHDL CODE --=========
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AT89C51CC03.pdf
modules would not be a good idea. Thus, in most appli- cations the first solution is the best option. 140 AT89C51CC03 4182D–CAN–03/04 AT89C51CC03 PCA Registers Table 94. CMOD Register CMOD (S:D9h) PCA Counter Mode Register 7 6 5 4 3 2 1 0 CIDL WDTE - - - CPS1 CPS0 ECF Bit Bit Number Mnemonic Description
in „Einstellung Akzeptanzfilter - Programm / Tool gesucht“ · Mikrocontroller und Digitale Elektronik ·
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MC9S08DZ60_Data_Sheet.pdf
...................................................................................................140 8.4.1 Operational Modes ..........................................................................................................140 8.4.2 Mode Switching ...........................................
in „Bei AD-wandlung Bitsverlust“ · Mikrocontroller und Digitale Elektronik ·
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MC9S08DZ60.pdf
...................................................................................................140 8.3.1 MCG Control Register 1 (MCGC1) ...............................................................................140 8.3.2 MCG Control Register 2 (MCGC2) .........................................
in „Delay Funktion für Freescale“ · Mikrocontroller und Digitale Elektronik ·
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datasheet.pdf
/31A-M SPR2 SPR1 SPR0 Clock Rate Baud Rate Divisor (BD) 1 1 1 Don’t Use No BRG 19.3 Functional Description Figure 19-2 shows a detailed structure of the SPI module. Figure 19-2. SPI Module Block Diagram Internal Bus SPDAT Shift Register FCLK PERIPH 7 6 5
in „8051 Ultraschall problem“ · Mikrocontroller und Digitale Elektronik ·
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MC9S12XF512.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 140 6.2 External Signal Description . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 141 6.3 Memory Map and Register Definition . . . . . . . . .
in „Wie oft kann ein µC programmiert werden?“ · Mikrocontroller und Digitale Elektronik ·
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MC9S12XF512.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 140 6.2 External Signal Description . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 141 6.3 Memory Map and Register Definition . . . . . . . . .
in „Probleme beim Ansteuern eines EEPROM über SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_PIC12F1822.pdf
294h PWM1CON P1RSEN P1DC<6:0> 0000 0000 0000 0000 295h CCP1AS CCP1ASE CCP1AS<2:0> PSS1AC<1:0> PSS1BD<1:0> 0000 0000 0000 0000 296h PSTR1CON — — — STR1SYNC STR1D STR1C STR1B STR1A ---0 0001 ---0 0001 297h — Unimplemented — — 298h — Unimplemented — — 299h — Unimplemented — — 29Ah — Unimplemented — — 29Bh
in „PIC12F1822-PWM Mode“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt_PIC12F1822.pdf
294h PWM1CON P1RSEN P1DC<6:0> 0000 0000 0000 0000 295h CCP1AS CCP1ASE CCP1AS<2:0> PSS1AC<1:0> PSS1BD<1:0> 0000 0000 0000 0000 296h PSTR1CON — — — STR1SYNC STR1D STR1C STR1B STR1A ---0 0001 ---0 0001 297h — Unimplemented — — 298h — Unimplemented — — 299h — Unimplemented — — 29Ah — Unimplemented — — 29Bh
in „Interrupt-PIC12F1822“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
294h PWM1CON P1RSEN P1DC<6:0> 0000 0000 0000 0000 295h CCP1AS CCP1ASE CCP1AS<2:0> PSS1AC<1:0> PSS1BD<1:0> 0000 0000 0000 0000 296h PSTR1CON — — — STR1SYNC STR1D STR1C STR1B STR1A ---0 0001 ---0 0001 297h — Unimplemented — — 298h — Unimplemented — — 299h — Unimplemented — — 29Ah — Unimplemented — — 29Bh
in „Auflösung PWM-Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
294h PWM1CON P1RSEN P1DC<6:0> 0000 0000 0000 0000 295h CCP1AS CCP1ASE CCP1AS<2:0> PSS1AC<1:0> PSS1BD<1:0> 0000 0000 0000 0000 296h PSTR1CON — — — STR1SYNC STR1D STR1C STR1B STR1A ---0 0001 ---0 0001 297h — Unimplemented — — 298h — Unimplemented — — 299h — Unimplemented — — 29Ah — Unimplemented — — 29Bh
in „8Bits und 2Bits in eine Integer-Variable“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
294h PWM1CON P1RSEN P1DC<6:0> 0000 0000 0000 0000 295h CCP1AS CCP1ASE CCP1AS<2:0> PSS1AC<1:0> PSS1BD<1:0> 0000 0000 0000 0000 296h PSTR1CON — — — STR1SYNC STR1D STR1C STR1B STR1A ---0 0001 ---0 0001 297h — Unimplemented — — 298h — Unimplemented — — 299h — Unimplemented — — 29Ah — Unimplemented — — 29Bh
in „Timer2 auf 10bit einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC12FLF1822PIC16FLF1823.pdf
294h PWM1CON P1RSEN P1DC<6:0> 0000 0000 0000 0000 295h CCP1AS CCP1ASE CCP1AS<2:0> PSS1AC<1:0> PSS1BD<1:0> 0000 0000 0000 0000 296h PSTR1CON — — — STR1SYNC STR1D STR1C STR1B STR1A ---0 0001 ---0 0001 297h — Unimplemented — — 298h — Unimplemented — — 299h — Unimplemented — — 29Ah — Unimplemented — — 29Bh
in „PIC16lf1823 General purpose I/Os mit Schmitt Trigger ?“ · Mikrocontroller und Digitale Elektronik ·
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at89c51ed2.pdf
SPR1:SPR0. Table 16-1. SPI Master Baud Rate Selection SPR2 SPR1 SPR0 Clock Rate Baud Rate Divisor (BD) 0 0 0 FCLK PERIPH2 2 0 0 1 F /4 4 CLK PERIPH 0 1 0 F /8 8 CLK PERIPH 0 1 1 F /16 16 CLK PERIPH 1 0 0 FCLK PERIPH2 32 1 0 1 FCLK PERIPH4 64 1 1 0 FCLK PERIPH128 128 1 1 1 Don’t Use No BRG 64 AT89C51RD2
in „SCL Takt generieren“ · Mikrocontroller und Digitale Elektronik ·
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at89c51ed2.pdf
SPR1:SPR0. Table 16-1. SPI Master Baud Rate Selection SPR2 SPR1 SPR0 Clock Rate Baud Rate Divisor (BD) 0 0 0 FCLK PERIPH2 2 0 0 1 F /4 4 CLK PERIPH 0 1 0 F /8 8 CLK PERIPH 0 1 1 F /16 16 CLK PERIPH 1 0 0 FCLK PERIPH2 32 1 0 1 FCLK PERIPH4 64 1 1 0 FCLK PERIPH128 128 1 1 1 Don’t Use No BRG 64 AT89C51RD2
in „SCL Takt generieren“ · Mikrocontroller und Digitale Elektronik ·
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at98c51ed2.pdf
SPR2:SPR1:SPR0. Table 46. SPI Master Baud Rate Selection SPR2 SPR1 SPR0 Clock Rate Baud Rate Divisor (BD) 0 0 0 FCLK PERIPH2 2 0 0 1 FCLK PERIPH4 4 0 1 0 FCLK PERIPH 8 0 1 1 F CLK PERIPH6 16 1 0 0 F /32 32 CLK PERIPH 1 0 1 F /64 64 CLK PERIPH 1 1 0 FCLK PERIPH28 128 1 1 1 Don’t Use No BRG 65 4235G–8051–
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
SPR2:SPR1:SPR0. Table 46. SPI Master Baud Rate Selection SPR2 SPR1 SPR0 Clock Rate Baud Rate Divisor (BD) 0 0 0 FCLK PERIPH2 2 0 0 1 FCLK PERIPH4 4 0 1 0 FCLK PERIPH 8 0 1 1 F CLK PERIPH6 16 1 0 0 F /32 32 CLK PERIPH 1 0 1 F /64 64 CLK PERIPH 1 1 0 FCLK PERIPH28 128 1 1 1 Don’t Use No BRG 65 4235G–8051–
in „Temperatur ohne AD-Eingang messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
SPR2:SPR1:SPR0. Table 46. SPI Master Baud Rate Selection SPR2 SPR1 SPR0 Clock Rate Baud Rate Divisor (BD) 0 0 0 FCLK PERIPH2 2 0 0 1 FCLK PERIPH4 4 0 1 0 FCLK PERIPH 8 0 1 1 F CLK PERIPH6 16 1 0 0 F /32 32 CLK PERIPH 1 0 1 F /64 64 CLK PERIPH 1 1 0 FCLK PERIPH28 128 1 1 1 Don’t Use No BRG 65 4235G–8051–
in „Displaybeleuchtung faden ohne Analog I/O“ · Mikrocontroller und Digitale Elektronik ·
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at98c51ed2.pdf
SPR2:SPR1:SPR0. Table 46. SPI Master Baud Rate Selection SPR2 SPR1 SPR0 Clock Rate Baud Rate Divisor (BD) 0 0 0 FCLK PERIPH2 2 0 0 1 FCLK PERIPH4 4 0 1 0 FCLK PERIPH 8 0 1 1 F CLK PERIPH6 16 1 0 0 F /32 32 CLK PERIPH 1 0 1 F /64 64 CLK PERIPH 1 1 0 FCLK PERIPH28 128 1 1 1 Don’t Use No BRG 65 4235G–8051–
in „Displaybeleuchtung mit PWM dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
SPR2:SPR1:SPR0. Table 46. SPI Master Baud Rate Selection SPR2 SPR1 SPR0 Clock Rate Baud Rate Divisor (BD) 0 0 0 FCLK PERIPH2 2 0 0 1 FCLK PERIPH4 4 0 1 0 FCLK PERIPH 8 0 1 1 F CLK PERIPH6 16 1 0 0 F /32 32 CLK PERIPH 1 0 1 F /64 64 CLK PERIPH 1 1 0 FCLK PERIPH28 128 1 1 1 Don’t Use No BRG 65 4235G–8051–
in „8051: An Port 0 kann nichts ausgegeben werden“ · Mikrocontroller und Digitale Elektronik ·
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at98c51ed2.pdf
SPR2:SPR1:SPR0. Table 46. SPI Master Baud Rate Selection SPR2 SPR1 SPR0 Clock Rate Baud Rate Divisor (BD) 0 0 0 FCLK PERIPH2 2 0 0 1 FCLK PERIPH4 4 0 1 0 FCLK PERIPH 8 0 1 1 F CLK PERIPH6 16 1 0 0 F /32 32 CLK PERIPH 1 0 1 F /64 64 CLK PERIPH 1 1 0 FCLK PERIPH28 128 1 1 1 Don’t Use No BRG 65 4235G–8051–
in „8051: An Port 1 nur 3.5V anstatt 5V ?“ · Mikrocontroller und Digitale Elektronik ·
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panasonic_tx-w32d5dpf.pdf
INSTRUCTION BOOKS 17 TMW8E031 CONTROL BRACKET TQB8E2610A-2 GERMAN 18 TMX8E027 CHASSIS FRAME TQB8E2610BD2 DUTCH/FRENCH 19 TNPA0876AA D P.C.B. TQB8E2610CE2 ITALIAN/SPANISH 20 TNPA0877AA G P.C.B. TQB8E2610FG2 SWEDISH/NORG. 21 TNPA1046AA K P.C.B. TQB8E2610HK2 SUOMI/DANISH 22 TNPA1047AA H P.C.B. I.C.s 23 TNPA1048AA
in „Panasonic TX-W32D5DPF“ · Analoge Elektronik und Schaltungstechnik ·
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STC15-English.pdf
1.9.2 Block diagram of STC15F408AD series..........................................................140 1.9.3 Pin Configurations of STC15F408AD series MCU.........................................141 1.9.4 STC15F408AD series Selection and Price Table..............................................144 1.9.5
in „Testbericht Elektronische Last“ · Analoge Elektronik und Schaltungstechnik ·
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rej09b0101_16c29hm_2_.pdf
................................138 13. Timer S __________________________________________________ 140 13.1 Base Timer .................................................................................................................151 13.1.1 Base Timer Reset Register(G1BTRR) ........................
in „Zeitproblem bei Softwarepwm“ · Mikrocontroller und Digitale Elektronik ·
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LGT8F328P.pdf
value of the new OCR2x (non-0xFF) is updated and the value of OC2x is always maintained. - 132 - Page 140 LGT8FX8P Series - Programming Manual 1.0.1 LogicGreen Technologies Co., LTD When the ascending order counts, a compare match occurs. At this point the OC2x signal is not centered at the minimum, so
in „Neue 8-Bit Tinys vorgestellt: 417/814/816/817“ · Mikrocontroller und Digitale Elektronik ·
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Z80-Zilog.pdf
AE AE AE n d d DD FD F6 OR B7 B0 B1 B2 B3 B4 B5 B6 B6 B6 n d d Compare DD FD FE BF B8 B9 BA BB BC BD BE BE BE CP d d n Increment DD FD 3C 04 0C 14 1C 24 2C 34 34 34 INC d d Decrement DD FD 3D 05 0D 15 1D 25 2D 35 35 35 DEC d d Note: Descriptions of the 8-Bit Arithmetic Group instructions begin on page
in „DDR Schach-Computer Chess Master Diamond reparieren (Dauerton)“ · Mikrocontroller und Digitale Elektronik ·
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MC9S08MM128RM.pdf
5.7.13 System Options 5 Register (SOPT5) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .140 5.7.14 SIM Internal Peripheral Select Register (SIMIPS) . . . . . . . . . . . . . . . . . . . . . .140 5.7.15 Flash Protection Defeat Register (FPROTD) . . . . . . . . . . . . . . . . . . . . . . .
in „Freescale s08mm128 und USB“ · Mikrocontroller und Digitale Elektronik ·
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AN649_-_Programming_Guide_0.8.pdf
0 0 0 0 TYPE ARG2 0x00 ARG3 0x00 ARG4 SERVICE_ID[7:0] ARG5 SERVICE_ID[15:8] ARG6 SERVICE_ID[23:16] 140 Rev. 1.8 AN649 Bit D7 D6 D5 D4 D3 D2 D1 D0 ARG7 SERVICE_ID[31:24] ARG8 COMP_ID[7:0] ARG9 COMP_ID[15:8] ARG10 COMP_ID[23:16] ARG11 COMP_ID[31:24] Name Function Sets the type of service list to start.
in „DABPi - FM/DAB Empfänger mit Si4688 für Raspberry Pi“ · Projekte & Code ·
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PDF
SI4684_Prog.pdf
0 0 0 0 TYPE ARG2 0x00 ARG3 0x00 ARG4 SERVICE_ID[7:0] ARG5 SERVICE_ID[15:8] ARG6 SERVICE_ID[23:16] 140 Rev. 1.8 AN649 Bit D7 D6 D5 D4 D3 D2 D1 D0 ARG7 SERVICE_ID[31:24] ARG8 COMP_ID[7:0] ARG9 COMP_ID[15:8] ARG10 COMP_ID[23:16] ARG11 COMP_ID[31:24] Name Function Sets the type of service list to start.
in „Wie UKW & DAB Empfänger selber machen?“ · Mikrocontroller und Digitale Elektronik ·
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H8-325.pdf
Timing of Input Capture Flag (ICF) Setting............................................................140 iii 7.4.6 Setting of FRC Overflow Flag (OVF).....................................................................141 7.5 Interrupts...................................................................
in „Programmer für HD6473258P10 selber bauen“ · Mikrocontroller und Digitale Elektronik ·
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13504_TM_X19AQ00214.pdf
AB12 MA10 134 AB11 MA7 47 135 46 AB10 MA0 136 AB9 MA6 45 137 44 AB8 MA1 138 AB7 43 139 MA5 42 AB6 MA2 140 AB5 41 MA4 141 AB4 40 142 MA3 39 AB3 COREVDD 143 NC NC 38 144 37 NC NC D E I M W W W S P A V D D D D D D N N A A A S R B D E E R T O T D S B B B B B B B B B B B DB B B DBDB S N N C C 2 1 B0 # # # #
in „[V] Displaycontroller Epson SED1354 (800*600)“ · Markt ·
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doc7707.pdf
transmission complete */ while(!(SPSR & (1<<SPIF))) ; } Note: 1. See “About Code Examples” on page 7. 140 AT90USB82/162 7707F–AVR–11/10 AT90USB82/162 The following code examples show how to initialize the SPI as a Slave and how to perform a simple reception. (1) Assembly Code Example SPI_SlaveInit: ; Set
in „AVR (AT90USB162) - Sleep Mode und PCINT“ · Mikrocontroller und Digitale Elektronik ·
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ARTA-user-manual.pdf
(or energy time curve - ETC), 4. Cumulative spectrum, spectral decay curve (CSD) and burst decay (BD), 5. Energy decay curve and acoustical room parameters, 6. Speech modulation transfer function (MTF) 7. Speech transmission index (STI and RASTI). These analyses can be activated from the submenu Analysis
in „Empfehlung für Audio-Meßgeräte gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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M30201F6SP.pdf
16 03B916 03F9 16 03BA16 03FA 16 03BB16 03FB 16 03BC16 03FC 16 Pull-up control register 0 (PUR0) 03BD16 03FD 16 Pull-up control register 1 (PUR1) 03BE16 03FE 16 Port P1 drive control register (DRR) 03BF16 03FF 16 Note: This register is only exist in flash memory version. Figure 1.8. Location of peripheral
in „Biete Mitsubishi / Renesas M30201F6SP aus der M16C60 Serie“ · Mikrocontroller und Digitale Elektronik ·
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manual42.pdf
force (JxB)Lorentz force is the force produced by a magnetic field acting upon a current: Z FLorentz= J×BdV (2.15) Many devices (e.g. voice coil actuators) produce forces in a fashion that can be evaluated using this integral. • Lorentz torque (rxJxB) This selection computes the torque about (0,0) resulting
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STC89C51RC-english.pdf
S A2 0.15 0.155 0.160 C 0.008 - 0.015 D 2.025 2.060 2.070 E1 0.540 0.60.545C 0.550 L 0.120 0.130 0.140 b1 0.015 - 0.021 b 0.045 - 0.067 eθ 0.630 0.650 0.690 0 0 7 15 UNIT: INCH 1 inch = 1000mil NOTE: 1.JEDEC OUTLINE :MS-011AC STC MCU Limited. website:www.STCMCU.com 17 www.STCMCU.com Mobile:(86)13922809991
in „Einstieg in 8051 - Atmels AT89S52 oder?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AtMega644P_Datasheet.pdf
on the OC2x pin. Setting the COM2x1:0 bits to two will produce a non-inverted PWM. An inverted PWM 140 ATmega644 2593O–AVR–02/12 ATmega644 output can be generated by setting the COM2x1:0 to three. TOP is defined as 0xFF when WGM2:0 = 3, and OCR2A when MGM2:0 = 7 (See Table 15-4 on page 147). The actual
in „Alkoholmessgerät programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmega644.pdf
on the OC2x pin. Setting the COM2x1:0 bits to two will produce a non-inverted PWM. An inverted PWM 140 ATmega644 2593O–AVR–02/12 ATmega644 output can be generated by setting the COM2x1:0 to three. TOP is defined as 0xFF when WGM2:0 = 3, and OCR2A when MGM2:0 = 7 (See Table 15-4 on page 147). The actual
in „SPI-Kommunikation Atmega644 - ADS1118“ · Mikrocontroller und Digitale Elektronik ·
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stc12c5a60s2-english.pdf
S A2 0.15 0.155 0.160 C 0.008 - 0.015 D 2.025 2.060 2.070 E1 0.540 0.60.545C 0.550 L 0.120 0.130 0.140 b1 0.015 - 0.021 b 0.045 - 0.067 eθ 0.630 0.650 0.690 0 0 7 15 UNIT: INCH 1 inch = 1000mil NOTE: 1.JEDEC OUTLINE :MS-011AC STC MCU Limited. website:www.STCMCU.com 23 www.STCMCU.com Mobile:(86)13922809991
in „STC12C5A60S2 (a.k.a 80C51) programieren mit mySmartUSB light“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STC12C5A60S2-english.pdf
S A2 0.15 0.155 0.160 C 0.008 - 0.015 D 2.025 2.060 2.070 E1 0.540 0.60.545C 0.550 L 0.120 0.130 0.140 b1 0.015 - 0.021 b 0.045 - 0.067 eθ 0.630 0.650 0.690 0 0 7 15 UNIT: INCH 1 inch = 1000mil NOTE: 1.JEDEC OUTLINE :MS-011AC STC MCU Limited. website:www.STCMCU.com 23 www.STCMCU.com Mobile:(86)13922809991
in „STC 8051 EEPROM zugriff“ · Mikrocontroller und Digitale Elektronik ·
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esp32-c3_technical_reference_manual_en.pdf
memory protection address register. 0x3BC R/W pmpaddr13 Physical memory protection address register. 0x3BD R/W pmpaddr14 Physical memory protection address register. 0x3BE R/W pmpaddr15 Physical memory protection address register. 0x3BF R/W 1.8.5 Register Description PMP unit implements all pmpcfg0-3 and
in „Mit dem ESP32C3 laufen lernen“ · Mikrocontroller und Digitale Elektronik ·
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esp32-c3_technical_reference_manual_en.pdf
memory protection address register. 0x3BC R/W pmpaddr13 Physical memory protection address register. 0x3BD R/W pmpaddr14 Physical memory protection address register. 0x3BE R/W pmpaddr15 Physical memory protection address register. 0x3BF R/W 1.8.5 Register Description PMP unit implements all pmpcfg0-3 and
in „ESP32C3 > PLL“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sfr32c83.h
A5 */ #pragma ADDRESS ps6_addr 03bcH /* Function select register A6 */ #pragma ADDRESS ps7_addr 03bdH /* Function select register A7 */ #pragma ADDRESS p6_addr 03c0H /* Port P6 register */ #pragma ADDRESS p7_addr 03c1H /* Port P7 register */ #pragma ADDRESS pd6_addr 03c2H /* Port P6 direction register
in „Timer funktioniert nicht ( M32C83 )“ · Mikrocontroller und Digitale Elektronik ·
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MEGA48V_88V_168V.pdf
running in asynchronous mode, see “8-bit Timer/Counter2 with PWM and asynchronous operation” on page 140 for details. 10.4 Power-down mode When the SM2..0 bits are written to 010, the SLEEP instruction makes the MCU enter power- down mode. In this mode, the external oscillator is stopped, while the external
in „analog comparator interrupt probleme mit atmegas“ · Mikrocontroller und Digitale Elektronik ·
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HAL_STM32F1.pdf
defines HAL_CAN_ERROR_ACK Acknowledgment error HAL_CAN_ERROR_BR Bit recessive error HAL_CAN_ERROR_BD Bit dominant error HAL_CAN_ERROR_CRC CRC error HAL_CAN_ERROR_RX_FOV0 Rx FIFO0 overrun error HAL_CAN_ERROR_RX_FOV1 Rx FIFO1 overrun error HAL_CAN_ERROR_TX_ALST0 TxMailbox 0 transmit failure due to arbitration
in „CAN auf STM32F4“ · Mikrocontroller und Digitale Elektronik ·
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S1D13504_MF1072-04.pdf
MA10 AB11 134 47 MA7 AB10 135 46 MA0 AB9 136 45 MA6 AB8 137 44 MA1 AB7 138 43 MA5 AB6 139 42 MA2 AB5 140 41 MA4 AB4 141 40 MA3 AB3 142 39 COREV DD NC 143 38 NC NC 144 37 NC 0 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 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 1 1 1 2 2 2 2 2 2 2 2 2 2 3 3 3 3 3 3 3 2 1
in „[V] Displaycontroller Epson SED1354 (800*600)“ · Markt ·
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atmega2560_2561.pdf
Examples” on page 9. The assembly code example returns the TCNTn value in the r17:r16 register pair. 140 ATmega640/1280/1281/2560/2561 2549I–AVR–07/06 ATmega640/1280/1281/2560/2561 The following code examples show how to do an atomic write of the TCNTn Register contents. Writing any of the OCRnA/B/C or
in „Ethernet Buchse“ · Mikrocontroller und Digitale Elektronik ·
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mega644.pdf
on page 157. For details on clock sources and prescaler, see ”Timer/Counter Prescaler” on page 152. 140 8011O–AVR–07/10 ATmega164P/324P/644P 14.4 Counter Unit The main part of the 8-bit Timer/Counter is the programmable bi-directional counter unit. Figure 14-2 shows a block diagram of the counter and
in „AVR Controller braucht zu viel Strom“ · Mikrocontroller und Digitale Elektronik ·