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rf_physics.pdf
fhfe pb hfecut-off frequency Power gain in common-base configuration (b-cut-off frequency, f ) G b pe The frequency at which the modulus of the current Power gain in common-emitter configuration amplification factor (fe) has decreased below 0.707 Gps times the frequency (1 kHz) Power gain in common-source
in „Transistorparameter Erklärung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
doc8017.pdf
timer. 4 AVR446 8017A-AVR-06/06 AVR446 Figure 2-6. Speed profile vs. stepper motor pulses/speed ω sl pe ee d ed sp des i t0 t1 t2 t3 t δt = c0 t c1 t c2 t θ t 2.3.1 Exact calculations of the inter-step delay The first counter delayc0 as well as succeeding counter delays c n are given by (see appendix for
in „Atmel Appnote AVR446 Hilfe lineare Geschwindigkeit“ · Mikrocontroller und Digitale Elektronik ·
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AVR446.pdf
timer. 4 AVR446 8017A-AVR-06/06 AVR446 Figure 2-6. Speed profile vs. stepper motor pulses/speed ω sl pe ee d ed sp des i t0 t1 t2 t3 t δt = c0 t c1 t c2 t θ t 2.3.1 Exact calculations of the inter-step delay The first counter delayc0 as well as succeeding counter delays c n are given by (see appendix for
in „Atxmega Timer“ · Mikrocontroller und Digitale Elektronik ·
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MSP430F5438IPZ.pdf
8Ah 0Ch 0Ch 0Ch 0Ch 0Ch 0Ch Memory 2 2 86h 86h 86h 86h 86h 86h Memory 3 2 0Eh 0Eh 0Eh 0Eh 0Eh 0Eh 30h 30h 30h 30h 30h 30h (1) NA = Not applicable 88 Submit Documentation Feedback Copyright © 2009–2010, Texas Instruments Incorporated MSP430F543x,MSP430F541x www.ti.com SLAS612C –AUGUST 2009–REVISED MARCH
in „Strombelastbarkeit MSP430“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mc9s12ne64.h
28 _MCHASH1.Bits.MCHASH_28 #define MCHASH1_MCHASH_29 _MCHASH1.Bits.MCHASH_29 #define MCHASH1_MCHASH_30 _MCHASH1.Bits.MCHASH_30 #define MCHASH1_MCHASH_31 _MCHASH1.Bits.MCHASH_31 #define MCHASH1_MCHASH_16_MASK 1 #define MCHASH1_MCHASH_17_MASK 2 #define MCHASH1_MCHASH_18_MASK 4 #define MCHASH1_MCHASH_19_
in „Hilfe MC9S12NE64 interrupt programmierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Forum.PDF
I2Cs.I2C1.SCL IPtde7GPIO4 GPIO28 PIpede0 100k 1% 1206 P20 PR0 ComputeModuleF SCL PImtde1GPIO6 GPIO30 PIpede4 100k 1% 1206 PImede4CAM0_CP CAM1_CP Pouol1 PImtde3GPIO7 GPIO31 PIpede6 PImede4CAM0_CN CAM1_CN Pouol1 GND PImede6CAM0_DP0 CAM1_DP0 Pouol15 Display (altern.) i i Display (pri) PImtde7GPIO8 GPIO32
in „Raspberry Pi Compute Module 3 (Carrier Board)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ATmega324P.xml
Application Protection Mode 4: LPM prohibited in Application Section</TEXT> </TEXT7> <TEXT8> <MASK>0x30</MASK> <VALUE>0x30</VALUE> <TEXT>Boot Loader Protection Mode 1: No lock on SPM and LPM in Boot Loader Section</TEXT> </TEXT8> <TEXT9> <MASK>0x30</MASK> <VALUE>0x20</VALUE> <TEXT>Boot Loader Protection Mode 2: SPM prohibited in Boot Loader Section</TEXT> </TEXT9> <TEXT10> <MASK>0x30</MASK> <VALUE>0x00</VALUE> <TEXT>Boot Loader Protection Mode 3: LPM and SPM prohibited in Boot Loader Section</TEXT> </TEXT10> <TEXT11> <MASK>0x30</MASK> <VALUE>0x10</VALUE> <TEXT>Boot Loader Protection
in „M324def.inc gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ATmega324PA.xml
Application Protection Mode 4: LPM prohibited in Application Section</TEXT> </TEXT7> <TEXT8> <MASK>0x30</MASK> <VALUE>0x30</VALUE> <TEXT>Boot Loader Protection Mode 1: No lock on SPM and LPM in Boot Loader Section</TEXT> </TEXT8> <TEXT9> <MASK>0x30</MASK> <VALUE>0x20</VALUE> <TEXT>Boot Loader Protection Mode 2: SPM prohibited in Boot Loader Section</TEXT> </TEXT9> <TEXT10> <MASK>0x30</MASK> <VALUE>0x00</VALUE> <TEXT>Boot Loader Protection Mode 3: LPM and SPM prohibited in Boot Loader Section</TEXT> </TEXT10> <TEXT11> <MASK>0x30</MASK> <VALUE>0x10</VALUE> <TEXT>Boot Loader Protection
in „M324def.inc gesucht“ · Mikrocontroller und Digitale Elektronik ·
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AN-693.pdf
positN cycles of its output signals during each complete shaft the shaft, if an absolute position of 30,000 counts is specifiedrevolution. completion of the move the absolute position of the shaft will be 30,000 counts (i.e. 30,000 counts relative to zero). The example prograBy definition, two signals
in „Einfacher Weg von Quadratursignal => Spannung für Position und Drehzahl“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Baldor_VS1MX_VFD_Manual.pdf
1 Control Terminal Descriptions Terminal Signal Description 1 +24VDC (@ 100 mA) 2 Digital In1 (8 - 30 VDC) 3 Digital In2 (8 - 30 VDC) 4 Digital In3 (8 - 30 VDC) / Analog In2 (0 - 10 VDC, 0 - 20mA or 4 - 20mA) 5 +10VDC (@ 10 mA) Reference for Potentiometer (1kohm minimum) 6 Analog In1 (0 - 10 VDC, 0 -
in „Frequenzumformer“ · Analoge Elektronik und Schaltungstechnik ·
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rtc8564.pdf
Temperature [ C ] +240 C Max. 10 s ± 1 s +235 ° ± 5°C +200 ° RTC - 8564 NB ( SON-22pin ) +150 C ± 10 C 90 s± 30 s 30 s± 10 s Pre-heating area Stable Melting area time [ s ] Page - 14 MQ - 322 - 04 Application Manual Distributor AMERICA EPSON ELECTRONICS AMERICA, INC. HEADQUARTER 150 River Oaks Parkway, San Jose
in „Frage zu RTC8564 / Genaue RTC mit integr. Quarz gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
liste.lst
MCUCSR = 0x34 .equ TCCR0 = 0x33 .equ TCNT0 = 0x32 .equ OSCCAL = 0x31 .equ OCDR = 0x31 .equ SFIOR = 0x30 .equ TCCR1A = 0x2f .equ TCCR1B = 0x2e .equ TCNT1H = 0x2d .equ TCNT1L = 0x2c .equ OCR1AH = 0x2b .equ OCR1AL = 0x2a .equ OCR1BH = 0x29 .equ OCR1BL = 0x28 .equ ICR1H = 0x27 .equ ICR1L = 0x26 .equ TCCR2
in „Adressierung eines LUT mit Z-Register“ · Mikrocontroller und Digitale Elektronik ·
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PDF
teXet_TF-127_Service_manual.pdf
Humidity -30℃/30 min ~ +85℃/30 min for a total 100 Thermal Shock cycles, Start with cold temperature and end Note 4 with high temperature Frequency range:10~55Hz Stroke:1.5mm Vibration Test Sweep:10Hz~55Hz~10Hz 2
in „Photo-Rahmen als Farbdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32_general-purpose_timer_cookbook_en.DM00236305.pdf
schema of arbitrary waveform generation using DMA-burst . . . . . . . . . . . . . . . . 49 Figure 30. Arbitrary waveform generator application: targeted waveform . . . . . . . . . . . . . . . . . . . . . . 50 Figure 31. Waveform generation data pattern stored in microcontroller memory . . . . . . .
in „STM32 Timer Cookbook PWM - Beispiel 6.2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Applnote.pdf
schema of arbitrary waveform generation using DMA-burst . . . . . . . . . . . . . . . . 49 Figure 30. Arbitrary waveform generator application: targeted waveform . . . . . . . . . . . . . . . . . . . . . . 50 Figure 31. Waveform generation data pattern stored in microcontroller memory . . . . . . .
in „PWM Signalerzeugung“ · Mikrocontroller und Digitale Elektronik ·
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MLX90614ESF-BAA.pdf
...................................................................................................30 11.1 Use of the MLX90614 thermometer in SMBus configuration ..........................................................................................................30 11.2 Use of multiple MLX90614s
in „Wärmebildkamera für Arme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F407VGT6.pdf
the EXTIx external interrupt. 0000: PA[x] pin 0001: PB[x] pin 0010: PC[x] pin 0011: PD[x] pin 0100: PE[x] pin 0101: PF[x] pin 0110: PG[x] pin 0111: PH[x] pin 1000: PI[x] pin 9.2.4 SYSCFG external interrupt configuration register 2 (SYSCFG_EXTICR2) Address offset: 0x0C Reset value: 0x0000 0000 31 30 29
in „ARM Controller "richtig" programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F407VGT6.pdf
the EXTIx external interrupt. 0000: PA[x] pin 0001: PB[x] pin 0010: PC[x] pin 0011: PD[x] pin 0100: PE[x] pin 0101: PF[x] pin 0110: PG[x] pin 0111: PH[x] pin 1000: PI[x] pin 9.2.4 SYSCFG external interrupt configuration register 2 (SYSCFG_EXTICR2) Address offset: 0x0C Reset value: 0x0000 0000 31 30 29
in „STM32F4 pointer Frage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
beginner_de.pdf
Digit, BCD.............................................................................................30 Gepackte BCD-Ziffern.................................................................................................30 Zahlen im ASCII-Format.........................................................
in „Langzeittimer für Anfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_beginner_de.pdf
Digit, BCD.............................................................................................30 Gepackte BCD-Ziffern.................................................................................................30 Zahlen im ASCII-Format.........................................................
in „Anfang, aber wie?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
beginner_de.pdf
Digit, BCD.............................................................................................30 Gepackte BCD-Ziffern.................................................................................................30 Zahlen im ASCII-Format.........................................................
in „kommentierter Befehlssatz in deutsch ATmega16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
beginner_de.pdf
Digit, BCD.............................................................................................30 Gepackte BCD-Ziffern.................................................................................................30 Zahlen im ASCII-Format.........................................................
in „Spannungsveränderung schaltet Relais für ca. 30Sek->nur wi“ · Analoge Elektronik und Schaltungstechnik ·
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Manual_netX_Program_Reference_Guide_Rev02_GB.pdf
– PIO Input Register 0x00100900 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 e r VAL s r Bits Name Description R/W Default 31 reserved - R 0x00 30:0 VAL PIO[30:0] input values R 0x00 PIO_OUT – PIO Output Register 0x00100904 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 d v e VAL e r Bits Name Description R/W Default 31 reserved - R 0 30:0 VAL PIO[30:0] output values R/W 0x00 PIO_OE – PIO
in „netX500 mit ARM-Kern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SMD-PHILIPS_1999.pdf
SOD27 (DO35) 2Y4 BZV49-C2V4 SOT89 1N5059 PH 1N5059 SOD57 2Y7 BZV49-C2V7 SOT89 1N5060 PH 1N5060 SOD57 30 PH BZD23-C30 SOD81 1N5061 PH 1N5061 SOD57 30 PH BZD27-C30 SOD87 1N5062 PH 1N5062 SOD57 300 PH BZD23-C300 SOD81 1N5817 1N5817 SOD81 300 PH BZD27-C300 SOD87 1N5818 1N5818 SOD81 30Y BZV49-C30 SOT89 1N5819
in „Datenbuch Valvo 1977 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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sed1335.pdf
period 100 — 125 — ns tW VCE HIGH-level t – 50 — C – 50 — ns pulsewidth VCE CE VCE LOW-level 2tC – 30 — 2tC– 30 — ns pulsewidth tCYR Read cycle time 3tC — 3tC — ns Address setup time to VA0 to tASC t – 70 — tC– 100 — ns VA15 falling edge of VCE Address hold time from CL = 100 tAHC 2tC – 30 — 2tC– 40
in „Extrem schwere Frage“ · Mikrocontroller und Digitale Elektronik ·
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esp32-c3_technical_reference_manual_en.pdf
-C3 TRM (Version 1.1) Submit Documentation Feedback Contents GoBack 30.3.2 CDC-ACM Firmware Interface Functional Description 744 30.3.3 USB-to-JTAG Interface 745 30.3.4 JTAG Command Processor 745 30.3.5 USB-to-JTAG Interface: CMD_REP usage example 746 30.3.6 USB-to-JTAG
in „Mit dem ESP32C3 laufen lernen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
esp32-c3_technical_reference_manual_en.pdf
-C3 TRM (Version 1.1) Submit Documentation Feedback Contents GoBack 30.3.2 CDC-ACM Firmware Interface Functional Description 744 30.3.3 USB-to-JTAG Interface 745 30.3.4 JTAG Command Processor 745 30.3.5 USB-to-JTAG Interface: CMD_REP usage example 746 30.3.6 USB-to-JTAG
in „ESP32C3 > PLL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Fragen_und_Antworten_zur_fachlichen_Pruefung_fuer_Funkamateure_BAPT_1988.pdf
- 1 .2 .3 gi:gFn:atLegi:ä:n:h:rt:i:F:ä:=a#:::e:n#:::rcmf::ksFeTTe suchm ? L. q Australia this is DL30E calling (etwa 3mal wiederholm) and DL30E is listening. - 5 - 1 .2 .4 Auf welche Artm könnm Sie eine Amateurfunk-Verbindling beginnm? L.::#::i::äi#i:#::#i7o¥t:gäLruf. - 1 0 - 1 .2 .5 gi: #ietattä3i3ä
in „Neuer Fragenkatalog für die Amateurfunkprüfung“ · HF, Funk und Felder ·
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Datei
CMD_bm002_bm201.lst
),A 6871 30B2 C9 RET 6872 30B3 E6 07 L1013: AND 07H 6873 30B5 21 44 25 LD HL,2544H 6874 30B8 85 ADD A,L 6875 30B9 30 01 JR NC,L0941 6876 30BB 24 INC H 6877 30BC 6F L0941: LD L,A 6878 30BD 7E LD A,(HL) 6879 30BE
in „DDR Schach-Computer Chess Master Diamond reparieren (Dauerton)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADXL345.pdf
Output Change in x-Axis 0.20 2.10 g Output Change in y-Axis −2.10 −0.20 g Output Change in z-Axis 0.30 3.40 g POWER SUPPLY Operating Voltage Range (V )S 2.0 2.5 3.6 V Interface Voltage Range (V DD I/O VS≤ 2.5 V 1.7 1.8 V S V VS≥ 2.5 V 2.0 2.5 V S V Supply Current Data rate > 100 Hz 145 μA Data rate <
in „mega8 und ADXL345 an Fleury Soft- I2C / TWI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
go-SSD1325.pdf
Display OfDisplay Offset (A2h)=18 COM0 ROW0 ROW28 ROW0 ROW28 COM1 ROW1 ROW29 ROW1 ROW29 COM2 ROW2 ROW30 ROW2 ROW30 COM3 ROW3 ROW31 ROW3 ROW31 : : : : : : : : : : COM23 ROW23 ROW51 ROW23 ROW51 COM24 ROW24 ROW52 ROW24 ROW52 COM25 ROW25 ROW53 ROW25 ROW53 COM26 ROW26 ROW54 ROW26 - : : : : : : : : : : COM49
in „Wie Dc/Dc-Wanlder aktivieren? (Display)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
go-SSD1325.pdf
Display OfDisplay Offset (A2h)=18 COM0 ROW0 ROW28 ROW0 ROW28 COM1 ROW1 ROW29 ROW1 ROW29 COM2 ROW2 ROW30 ROW2 ROW30 COM3 ROW3 ROW31 ROW3 ROW31 : : : : : : : : : : COM23 ROW23 ROW51 ROW23 ROW51 COM24 ROW24 ROW52 ROW24 ROW52 COM25 ROW25 ROW53 ROW25 ROW53 COM26 ROW26 ROW54 ROW26 - : : : : : : : : : : COM49
in „Densitron OLED“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F429_Reference_Manual.pdf
the EXTIx external interrupt. 0000: PA[x] pin 0001: PB[x] pin 0010: PC[x] pin 0011: PD[x] pin 0100: PE[x] pin 0101: PF[x] pin 0110: PG[x] pin 0111: PH[x] pin 1000: PI[x] pin 9.2.4 SYSCFG external interrupt configuration register 2 (SYSCFG_EXTICR2) Address offset: 0x0C Reset value: 0x0000 0000 31 30 29
in „USB-C Dual-Role-Device DRD mit integriertem OTG FS PHY“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32_Reference_manual.pdf
the EXTIx external interrupt. 0000: PA[x] pin 0001: PB[x] pin 0010: PC[x] pin 0011: PD[x] pin 0100: PE[x] pin 0101: PF[x] pin 0110: PG[x] pin 0111: PH[x] pin 1000: PI[x] pin 9.2.4 SYSCFG external interrupt configuration register 2 (SYSCFG_EXTICR2) Address offset: 0x0C Reset value: 0x0000 0000 31 30 29
in „STM32F4 Timer Triggered DMA SPI – NSS Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ATmega8.xml
Application Protection Mode 4: LPM prohibited in Application Section</TEXT> </TEXT7> <TEXT8> <MASK>0x30</MASK> <VALUE>0x30</VALUE> <TEXT>Boot Loader Protection Mode 1: No lock on SPM and LPM in Boot Loader Section</TEXT> </TEXT8> <TEXT9> <MASK>0x30</MASK> <VALUE>0x20</VALUE> <TEXT>Boot Loader Protection Mode 2: SPM prohibited in Boot Loader Section</TEXT> </TEXT9> <TEXT10> <MASK>0x30</MASK> <VALUE>0x00</VALUE> <TEXT>Boot Loader Protection Mode 3: LPM and SPM prohibited in Boot Loader Section</TEXT> </TEXT10> <TEXT11> <MASK>0x30</MASK> <VALUE>0x10</VALUE> <TEXT>Boot Loader Protection
in „AVR Code Wizard“ · Projekte & Code ·
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PDF
STR751FR0T6.pdf
frequency MHz SSP1 8 SSP0 14 r(SCK) SPI clock rise time SSP1 33 SSP0 11 tf(SCK) SPI clock fall time SSP1 30 tw(SCKH) SSP0 19 t SCK high and low time w(SCKL) SSP1 30 NSS low to Data Output SSP0 0.5SCK+15ns tNSSLQV MOSI valid time SSP1 0.5SCK+30ns SSP0 0.5SCK+15ns CPHA = 0 t SCK last edge to NSS high SSP1 0.5SCK+30ns SCKNSSH SSP0 t +15ns ns CPHA = 1 SCK SSP1 t +30ns SCK SSP0 15 t SCK trigger edge to data SCKQV output MOSI valid time SSP1 30 SSP0 0 SCKQX SCK trigger edge to data output MOSI invalid time SSP1 0 Data
in „DAB Radio mit ARM Prozessor, HD44780 Display (BlueTinum BT-H1801)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m32def.inc
MCUCSR = 0x34 .equ TCCR0 = 0x33 .equ TCNT0 = 0x32 .equ OSCCAL = 0x31 .equ OCDR = 0x31 .equ SFIOR = 0x30 .equ TCCR1A = 0x2f .equ TCCR1B = 0x2e .equ TCNT1H = 0x2d .equ TCNT1L = 0x2c .equ OCR1AH = 0x2b .equ OCR1AL = 0x2a .equ OCR1BH = 0x29 .equ OCR1BL = 0x28 .equ ICR1H = 0x27 .equ ICR1L = 0x26 .equ TCCR2
in „Probleme mit KontrollerLab und Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
88E1111_DS.pdf
‘1’ (e.g. reg: 0x9140, to perfor, softreset) E Register829I= 0x0007 (points to page 7 or R0gistcr 30) F Registe4 N0.3 = ‘1’ (e.g. reg 30: 0x080c)13 n O RegisterC30.1 = ‘1’ (e.g. reg30: 0x00d2)02 Regisier 30) L RegiftLL 29 = 0x0012 (points to pageo1A of RegisSer 30) V RezzVEer 30.0 = ‘1’ (e.g. reg30:
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PDF
PSpice_LibraryguideOrCAD.pdf
MRH30N/125C BIPOLAR.OLB Bipolar Transistor MRH30N MRH30N/125C/RAD BIPOLAR.OLB Bipolar Transistor MRH30N MRH30N/27C BIPOLAR.OLB Bipolar Transistor MRH30N MRH30N/27C/RAD1 BIPOLAR.OLB Bipolar Transistor MRH30N MRH30N/27C/RAD2 BIPOLAR.OLB Bipolar Transistor MRH30N MRH30N/27C/RAD3 BIPOLAR.OLB Bipolar Transistor MRH30N MRH30N/75C BIPOLAR.OLB Bipolar Transistor MRH30P MRH30P BIPOLAR.OLB Bipolar Transistor MRH30P MRH30P
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
slau049f.pdf
R11 002A7h 0FF12h 0xxxxh 0FF12h 0xxxxh 0FA34h 0xxxxh 0FA34h 0xxxxh 0FA32h 05BC1h 0FA32h 05BC1h 0FA30h 0xxxxh 0FA30h 0xxxxh 002A8h 0xxh 002A8h 0xxh 002A7h 012h 002A7h 05Bh 002A6h 0xxh 002A6h 0xxh 3-14 RISC 16-Bit CPU Addressing Modes 3.3.6 Indirect Autoincrement Mode The indirect autoincrement mode is
in „Umrechnung: C-Code->Assembler-Code->Cycles“ · Mikrocontroller und Digitale Elektronik ·
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PDF
572727.pdf
. . . . . . . . . .29 . . 2 2.86 Ob S. (Firma: 1984now) (observer) . . . . . . . . . . . . . . . . 30 2.87 Hans W. (Firma: Wilhelm.Consulting) (hans-) . . . . . . . . . . 30 2.88 Ob S. (Firma: 1984now) (observer) . . . . . . . . . . . . . . . . 30 2.89 Hans W. (Firma: Wilhelm.Consulting) (hans-) . .
in „Wirklich nutzbare Alternative zu Word un Excel?“ · PC Hard- und Software ·
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PDF
dds_ds558.pdf
0.47506 -20 0 Peak Spur = -118.1732dB -40 LUT Precision = 20 PACC Precision = 32 05-Mar-2002 17:08:30 -60 d -72 dB -80 -84 dB -100 -118 dB -120 -140 -0.5 -0.25 0 0.25 0.5 Frequency Figure 12: Taylor Series Corrected DDS – Single-Tone Test, f = 47506 0 X-Ref Target - Figure 13 0 start sweep = 0.0313 end
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Datei
oe2chl.txt
09 c1 3a c1 ed 71 a8 ef 14 b4 0c 00 50 05 90 2c |..:..q......P..,| 00002600 08 c1 3a c1 ed 71 a8 ef 30 e7 02 c1 ed f5 f0 90 |..:..q..0.......| 00002610 2c 0c a2 f6 d1 30 a2 f0 d1 30 a2 f1 d1 30 a2 f2 |,....0...0...0..| 00002620 d1 30 a2 f3 d1 30 a2 f4 d1 30 a2 f5 d1 30 61 e3 |.0...0...0...0a.| 00002630
in „LED Laufschrift Software“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OCH582B_PUHZ_P200_250YKA_R1_.pdf
60 L 60 V NC-60 V NC-60 E E E E R 50 R 50 U NC-50 U NC-50 S S E E P 40 P 40 D NC-40 D NC-40 N N O 30 O 30 S S D NC-30 D NC-30 A A B 20 APPROXIMATE B 20 APPROXIMATE E THRESHOLD OF E THRESHOLD OF A HEARING FOR NC-20 A HEARING FOR NC-20 T NOISENUOUS T NOISENUOUS O 10 O 10 63 125 250 500 1000 2000 4000
in „Unbekannter Bauteil Mitsubishi Klima“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
preis2024.pdf
Enviroment Meter 5035 ISO 127,08 8467 PeakTech PC Oscilloscope 1330 ISO 166,72 8459 Petrotest DCP 30 TG Demulgierverhalten ISO 55,50 8312 Petrotest DCP 5 003-0598 TG Demulgierverhalten ISO 55,50 7799 Philips PE1536 Labornetzgerät ISO 106,16 6953 Philips PM 2360 E Oszilloskop ISO 119,44 6954 Philips
in „PeakTech 365eff“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
devlist.txt
531 D1 PAL10016P4-2 . .0) 532 D1 PAL10016P8 . . .0) 533 D1,P2 PAL10016P8-3 . .0) 534 D1,P2 PAL10016PE8 . . .0) 535 D1,P2 PAL10016PE8-3 . .0) 536 D1,P2 PAL10016RD8 . . .0) 537 D1 PAL10016RM4 . . .0) 538 D1 PAL1016C4 . . . .0) 539 D1,P2 PAL1016C4-2 . . .0) 540 D1,P2 PAL1016P4 . . . .0) 541 D1 PAL1016P4A
in „PROM lesen /schreiben / Programmiergerät“ · Mikrocontroller und Digitale Elektronik ·
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m3s_v2-0.pdf
0xc7 , 0x25 , 0x7b , 19 0x3a , 0x64 , 0x86 , 0xd8 , 0x5b , 0x05 , 0xe7 , 0xb9 , 20 0x8c , 0xd2 , 0x30 , 0x6e , 0xed , 0xb3 , 0x51 , 0x0f , 21 0x4e , 0x10 , 0xf2 , 0xac , 0x2f , 0x71 , 0x93 , 0xcd , 22 0x11 , 0x4f , 0xad , 0xf3 , 0x70 , 0x2e , 0xcc , 0x92 , 23 0xd3 , 0x8d , 0x6f , 0x31 , 0xb2 , 0xec ,
in „API-Feedback / Protokollfeedback: Kommunikationsstack für serielle Bussysteme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6291174.pdf
FOCUS - 34 51 IC801 50 IC5501 SUB CPU ZOOM MOTOR DRIVE MOTOR 3 4 ZOOM + 3 1 4 29 M ZOOM - 4 7 5 3 30 POWER BOARD MAIN BOARD -39- Control Port Functions System Control & I/O Port Table (IC801) Pin No. Name Function Name Function I/O Action 1 PE5/D5 POWER_SW Power_SW O H: On 2 PE6/D6 SYS SW Peripheral
in „Sanyo LCD Beamer PLC- XU30 defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BMP581.pdf
140.00 140.00 130.00 120.00 100.00 80.00 50.00 35.00 S O 16 80.00 80.00 80.00 70.00 70.00 50.00 45.00 30.00 32 45.00 45.00 40.00 40.00 40.00 35.00 30.00 20.00 64 20.00 20.00 20.00 20.00 20.00 20.00 15.00 15.00 128 10.00 10.00 10.00 10.00 10.00 10.00 10.00 5.00 Table 8: Maximum nominal ODR setting per OSR
in „Datenlogger Pendeluhr“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Lenovo_schematic.pdf
N USB30_TX_R_P1 6 6 5 5 USB30_TX_R_P1 D D _ _ 3 3 1 1 - 2 - 2 8 2 2 @ 2 2 @ 5 5 AZ1045-04F_DFN2510P10E-10-9 A A 3 3 L9 For EMC USB30_RX_N1 3 3 4 4 USB30_RX_R_N1 USB30_RX_P1 2 1 USB30_RX_R_P1 2 1 +USB_VCCA DLW21SN900HQ2L_4P C62 1 2 @ 1U_0603_25V6M L10 USB30_TX_C_N1 3 3 4 4 USB30_TX_R_N1 C63 1 2 @ 470P_0402_50V7K USB30_TX_C_P1 2 1 USB30_TX_R_P1 2 1 JUSB2 ME@ DLW21SN900HQ2L_4P USB30_TX_P1 C64 1 2 .1U_0402_10V6-K USB30_TX_C_P1 R68 1 @ 2 0_0402_5% USB30_TX_R_P1
in „Pin Belegung bei dem Chip“ · Mikrocontroller und Digitale Elektronik ·