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MITSUBISHI_CV-0MW7B51.pdf
+ 22 OUT2- IN2- 19 SHORT CIRCUIT PROTECTION 18 I2CEN 15 11 12 17 10 SVR ST-BY S_GND 2,26 1,27 1 MUTE /HE PW_GND TAB 10 5 6 2 IC401 YSS943-VZ 2 , ~ 4 2 6 1 4 122 ClkGen MicomIF 18 PLL 19 insidememoryaccesscircuit Registor 133,135 (firmwaredownloader) InternalOperationClock
in „Verstärker reparieren“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
m8def.inc
Flag 1A .equ ICF1 = 5 ; Input Capture Flag 1 ; TCCR1A - Timer/Counter1 Control Register A .equ WGM10 = 0 ; Waveform Generation Mode .equ PWM10 = WGM10 ; For compatibility .equ WGM11 = 1 ; Waveform Generation Mode .equ PWM11 = WGM11 ; For compatibility .equ FOC1B = 2 ; Force Output Compare 1B .equ FOC1A
in „AVR8ASM TWI Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
Flag 1A .equ ICF1 = 5 ; Input Capture Flag 1 ; TCCR1A - Timer/Counter1 Control Register A .equ WGM10 = 0 ; Waveform Generation Mode .equ PWM10 = WGM10 ; For compatibility .equ WGM11 = 1 ; Waveform Generation Mode .equ PWM11 = WGM11 ; For compatibility .equ FOC1B = 2 ; Force Output Compare 1B .equ FOC1A
in „AVR8ASM TWI Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
Flag 1A .equ ICF1 = 5 ; Input Capture Flag 1 ; TCCR1A - Timer/Counter1 Control Register A .equ WGM10 = 0 ; Waveform Generation Mode .equ PWM10 = WGM10 ; For compatibility .equ WGM11 = 1 ; Waveform Generation Mode .equ PWM11 = WGM11 ; For compatibility .equ FOC1B = 2 ; Force Output Compare 1B .equ FOC1A
in „AVR8ASM TWI Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
Flag 1A .equ ICF1 = 5 ; Input Capture Flag 1 ; TCCR1A - Timer/Counter1 Control Register A .equ WGM10 = 0 ; Waveform Generation Mode .equ PWM10 = WGM10 ; For compatibility .equ WGM11 = 1 ; Waveform Generation Mode .equ PWM11 = WGM11 ; For compatibility .equ FOC1B = 2 ; Force Output Compare 1B .equ FOC1A
in „AVR8ASM TWI Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
Flag 1A .equ ICF1 = 5 ; Input Capture Flag 1 ; TCCR1A - Timer/Counter1 Control Register A .equ WGM10 = 0 ; Waveform Generation Mode .equ PWM10 = WGM10 ; For compatibility .equ WGM11 = 1 ; Waveform Generation Mode .equ PWM11 = WGM11 ; For compatibility .equ FOC1B = 2 ; Force Output Compare 1B .equ FOC1A
in „AVR8ASM TWI Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
Flag 1A .equ ICF1 = 5 ; Input Capture Flag 1 ; TCCR1A - Timer/Counter1 Control Register A .equ WGM10 = 0 ; Waveform Generation Mode .equ PWM10 = WGM10 ; For compatibility .equ WGM11 = 1 ; Waveform Generation Mode .equ PWM11 = WGM11 ; For compatibility .equ FOC1B = 2 ; Force Output Compare 1B .equ FOC1A
in „AVR-Mikrocontrollertechnik-Kursus in Assembler besprechung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
Flag 1A .equ ICF1 = 5 ; Input Capture Flag 1 ; TCCR1A - Timer/Counter1 Control Register A .equ WGM10 = 0 ; Waveform Generation Mode .equ PWM10 = WGM10 ; For compatibility .equ WGM11 = 1 ; Waveform Generation Mode .equ PWM11 = WGM11 ; For compatibility .equ FOC1B = 2 ; Force Output Compare 1B .equ FOC1A
in „AVR-Mikrocontrollertechnik-Kursus in Assembler besprechung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ff.c
/* Pointer to LFN */ UINT seq /* Sequence number */ ) { BYTE ns[8], c; UINT i, j; WCHAR wc; DWORD sr; mem_cpy(dst, src, 11); if (seq > 5) { /* On many collisions, generate a hash number instead of sequential number */ sr = seq; while (*lfn) { /* Create a CRC */ wc = *lfn++; for (i = 0; i < 16; i++) { sr = (sr << 1) + (wc & 1); wc >>= 1; if (sr & 0x10000) sr ^= 0x11021; } } seq = (UINT)sr; } /* itoa (hexdecimal) */ i = 7; do { c = (seq % 16) + '0'; if (c > '9') c += 7; ns[i--] = c; seq /= 16; } while
in „Problem mit VS1053“ · Mikrocontroller und Digitale Elektronik ·
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zxld1366.pdf
LEDs -10% 0 10 20 30 40 50 60 Supply Voltage (V) ZXLD1366 Efficiency L=68μH 100% 01 LEDs 95% 03 LEDs 05 LEDs 90% 07 LEDs 85% 09 LEDs 11 LEDs 13 LEDs % 80% ( 15 LEDs c e 75% i f 70% E 65% 60% 55% 50% 0 10 20 30
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LiveDesign_Schematics.pdf
C14C SOFT_TDO SOFT_TDO AudioR AudioR 10K 10K 10K 10K VCC 470uF 16V 10nF 10nF 10nF 10nF 220nF 220nF 10nF 220nF 10nF 220nF HARD_TMS KBDATA HARD_TMS HARD_TCK KBCLOCK KBDATA SOFT_TMS HARD_TMS TP1C (TMS) C1C HARD_TCK HARD_TDI KBCLOCK SOFT_TCK HARD_TCK
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Si_4322.pdf
30 seconds (Note 4) 0.995 1 1.005 ms 6 twake-up Programmable wake-up time 1 8.4*10 ms C in, D Digital input capacitance 2 pF tr, f Digital output rise/fall time 15 pF pure capacitive load 10 ns tr, f ,ckout Clock output rise/fall time 10 pF pure capacitive load 15 ns fckout, slow Slow
in „RFM01 NIRQ immer high“ · Mikrocontroller und Digitale Elektronik ·
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A020BL01.pdf
Non-operation 7 Electrostatic discharge ±200V,200pF(0Ω), once for each terminaNon-operation Frequency range : 10~55Hz Non-operation 8 Vibration Sweep : 10~55Hz~10Hz JIS C7021, 2 hours for each direction of X,Y,Z condition A (6 hours for total) O 9 Mechanical shock 3 times for each direction s e JIS C7021,ion U
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bq24725.pdf
cycle-by- cycle under-current and over current detection. The SRP and SRN pins are used to sense R SR with default value of 10mΩ. However, resistors of other values can also be used. For a larger sense resistor, a larger sense voltage is given, and a higher regulation accuracy; but, at the expense of
in „[V] 3St TI LiIon Lade/ Batterie-Management Chips: BQ24725RG und BQ24072RG“ · Markt ·
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Last_board_mixed.pdf
u C 1 C 1 C 1 + + + IC901 IC902 IC903 8 VCC 8 VCC 8 VCC VOUT 5 VOUT 5 VOUT 5 2 CAP+ 2 CAP+ 2 CAP+ 10uF C911 C912 C901 +C902 LV 6 C904 +C905 LV 6 C907 +C908 LV 6 4 CAP- 4 CAP- 4 CAP- C910 + 100nF 100pF B 100nf np 10uF np OSC 7 100nf np 10uF np OSC 7 100nF 10uF OSC 7 B 3 GND 3 GND 3 GND np TL7660CDR np
in „Schaltplankontrolle Last- + HMI-Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IS51Basic.ASM
SR01 AJMP CMNDLK SR01: MOV A,R5 ;GET TYPE JZ SGT1 ;EXIT IF ZERO MOV CSTKA,R0 ;POP THE STACK CPL A ;OPTION TEST, 00H, 55H, 0FFH, NOW 55H JNZ SGT1 ;MUST BE GOSUB RET ;NORMAL FALL THRU EXIT FOR NO MATCH ;
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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opa381.pdf
R F 1M Ω CF= 0.5pF n100 n100 a 90 C = 3pF a G R F 100kΩ F G 90 RF= 100k C F 2pF c 80 c 80 n 70 R = 10kΩ C = 8pF n 70 R = 10kΩ d 60 F F d F p p 60 CF= 5pF i 50 i 50 s 40 s 40 a 30 a T T 30 20 CSTRAY(parasitic) = 0.2pF 20 CSTRAY(parasitic) = 0.2pF 10 10 100 1k 10k 100k 1M 10M 100M 100 1k 10k 100k 1M 10M
in „Transimpedanzverstärker - Widerstand & Latenz?“ · Analoge Elektronik und Schaltungstechnik ·
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AD694.pdf
Voltage 0.8 0.8 V 4 mA Off: Min Pin 9 Voltage 3.0 2.5 3.0 2.5 V VOLTAGE REFERENCE Output Voltage: 10 V Reference 9.960 10.000 10.040 9.980 10.000 10.020 V Output Voltage: 2 V Reference 1.992 2.000 2.008 1.996 2.000 2.004 V TMIN to TMAX4 30 50 20 30 ppm/°C vs. Load, REF= 2 V, 10 V 0.15 0.50 0.15 0.50
in „Wie funktionieren Sensoren mit einem Sromausgang“ · Analoge Elektronik und Schaltungstechnik ·
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ina326.pdf
, –3dB BW G = 1 to 1k 1 kHz (4) Slew Rate SR VS= +5V, All Gains, L = 100pF Filter Limited Settling Time , 0.1% S 1kHz Filter, G = 1 toO1k, V = 2V Ltep, C = 100pF 0.95 ms 0.01% 1.3 ms 0.1% 10kHz Filter, G = 1 toO1k, V = 2VLstep, C = 100pF 130 µs
in „Spannungsmesserbau mit XMega128“ · Mikrocontroller und Digitale Elektronik ·
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sht4x.pdf
tolerances in the range of T = 0 °C … 80 °C are given in Figure 6, Figure 7, Figure 8, and Figure 9. Figure 10 SHT40 |typ. Delta %RH| SHT41 |typ. Delta %RH| 100 3 100 ) 90 ) 90 2 R 80 2 R 80 ( ( y 70 y 70 d 60 d 60 m 50 1.8 m 50 1.8 u u e 40 e 40 t 30 t 30 l 20 l 20 R 2 R 10 10 2 0 3 0 0 10 20 25 30 40 50 60
in „Trockenschrank für Elektronik wie funktioniert es?“ · Mechanik, Gehäuse, Werkzeug ·
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sht4x.pdf
tolerances in the range of T = 0 °C … 80 °C are given in Figure 6, Figure 7, Figure 8, and Figure 9. Figure 10 SHT40 |typ. Delta %RH| SHT41 |typ. Delta %RH| 100 3 100 ) 90 ) 90 2 R 80 2 R 80 ( ( y 70 y 70 d 60 d 60 m 50 1.8 m 50 1.8 u u e 40 e 40 t 30 t 30 l 20 l 20 R 2 R 10 10 2 0 3 0 0 10 20 25 30 40 50 60
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IL300app.pdf
- 0 0 e o 0.2 e n t 0.1 n dB o p o PHASE s u 0.0 s-5 -45 R - –0.1 R e t –0.2 a o –0.3 d h V –0.4 i-10 -90 P p - –0.5 m Ø –0.6 A –0.15 –0.10 –0.05 0.00 0.05 0.10 0.15 -15 -135 Vin - Input Voltage - V 102 103 10 4 10 5 10 6 Figure 30. Transistor unipolar photoconductive isola- F - Frequency - Hz tion amplifier
in „Grüne LED leuchtet schon bei ca 10 uA?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Configuration.h
FRONT of the Nozzle has a Negative Y offset * * Some examples: * #define NOZZLE_TO_PROBE_OFFSET { 10, 10, -1 } // Example "1" * #define NOZZLE_TO_PROBE_OFFSET {-10, 5, -1 } // Example "2" * #define NOZZLE_TO_PROBE_OFFSET { 5, -5, -1 } // Example "3" * #define NOZZLE_TO_PROBE_OFFSET {-15,-10, -1 } //
in „Ender3 Z-Achse fährt mit Marlin nur nach oben“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
Telit_Easy_GPRS_User__Guide_r9.pdf
Communications S.p.A. written authorizatpage 2 of 90ghts Reserved Easy GPRS User Guide 80000ST10028 r9, 2010-10-04 SW Version 7.02.xx7 / 7.03.xx2 10.00.xx3 Reproduction forbidden without Telit Communications S.p.A. written authorizationpage 3 of 90s Reserved Easy GPRS User Guide 80000ST10028 r9, 2010-10-04 DISCLAIMER
in „Probleme mit AT-Befehlen für GPRS Datenübertragung TELIT 864“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ET-TFT240320TP-3_2RevB_Eng_.pdf
TFT240320TP 3.2REV.BwithMCUARM7#LPC2138(3.3V). Howtoconnectwith5VMCU Jump For MCU 5V VCC+5V VCC+5V 10K J2(Header1x20) +5V 1 GND VCC PEN VTSC 3 GND3 4 10K 5 SDI H 6 PB2(MOSI) RESET WR/SCL H 7 PB1(SCK)) LCDCS H 9 PB5 RBL H 10 PB7 X+ 12 Y+ 13 Y 14 22pF Touch SCLK 15 PD4 XTAL1 Touch TCCS 17 PD7 Touch BUSY
in „TFT ILI9341 SPI modus ohne D/C pin HILFE!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
802.3-2008_section2.pdf
SR8 Output data timing as require27.3.1.1.3 TXP:M by 100BASE-TX SR9 Output data timing as require27.3.1.1.3 T4P:M by 100BASE-T4 SR10 Output amplitude as required 27.3.1.1.1 T2P:M by 100BASE-T2 SR11 Output
in „Kommunikation uC mit PHY“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
basic_wifi_application.c
pucIP_Addr[3] = ascii_to_char(usBuffer[8], usBuffer[9]); pucIP_DefaultGWAddr[0] = ascii_to_char(usBuffer[10], usBuffer[11]); pucIP_DefaultGWAddr[1] = ascii_to_char(usBuffer[12], usBuffer[13]); pucIP_DefaultGWAddr[2] = ascii_to_char(usBuffer[14], usBuffer[15]); pucIP_DefaultGWAddr[3] = ascii_to_char(usBuffer
in „Probleme mit CC3000 auf dem MSP-EXP430FG4618“ · Mikrocontroller und Digitale Elektronik ·
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vig_2008.pdf
10 4 x 10-16 4 x 10-17 e i -13 -15 -17 -18 O m 0.1 2 x 10 2 x 10 6 x 10 4 x 10 ( 0 2 x 10-13 2 x 10-15 2 x 10-17 2 x 10-19 A comparative table for AT and other non-thermal-transient compensated cuts of
in „Was ist drin im Quarzoszillator?“ · Analoge Elektronik und Schaltungstechnik ·
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BST-BMA220-DS000-05.pdf
.......................................................................... 57 10 LEGAL DISCLAIMER........................................................................................................................... 58 10.1 ENGINEERING SAMPLES ..................................................................................................................... 58 10.2 PRODUCT USE ................................................................................................................................... 58 10.3 APPLICATION EXAMPLES AND HINTS ..............
in „Beschleunigungsensor Bosch BMA220“ · Mikrocontroller und Digitale Elektronik ·
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N79A8211.pdf
-D16R 4KB/128B 128B 14 6-10bit 2 2% -40+85℃ DIP-16 N79A8211-D08R 4KB/128B 128B 6 4-10bit 1 2% -40+85℃ DIP-8 N79A8211-D20 4KB/128B 128B 18 8-10bit 2 30% DIP-20 -40+85℃ N79A8211-S20 4KB/128B 128B 18 8-10bit 2 30% -40+85℃ SOP-20 N79A8211-D16 4KB/128B 128B 14 6-10bit 2 30% -40+85℃ DIP-16 N79A8211-D08 4KB/128B 128B 6 4-10bit 1 30% -40+85℃ DIP-8 N79A8211A-D20R 4KB/128B 128B 18 4-10bit 2 2% -40+85℃ DIP-20 N79A8211A-S20R 4KB/128B 128B 18 4-10bit 2 2% -40+85℃ SOP-20
in „Induktionskochfeld hacken / optimieren“ · Haus & Smart Home ·
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uP1542-DS-F00A0.pdf
Loop DC Gain AO Guaranteed by Design 55 70 -- dB Gain-Bandwidth Product GBW Guaranteed by Design -- 10 -- MHz Slew Rate SR Guaranteed by Design 3 6 -- V/us Transconductance 600 800 1000 uA/V Output SourceCurrent VFB< V REF 80 120 -- uA Output Sink Current VFB> V REF 80 120 -- uA Input Offset Voltage -
in „Ersatz Mosfet für ein Defektes Nas System“ · Analoge Elektronik und Schaltungstechnik ·
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AN_106f.pdf
10µF 1µF 100Ω – 750Ω* IN2 OUT RTN 470Ω EN GND 50Ω 10k 22Ω 5.62Ω* 1k A = 10 10k 90.9Ω* TRIM A = 1 200k A = 100 100Ω 5V –5V TRIM TRIM 5V 10k 0.1µF S1 S2 GAIN FS OUTPUT TRIM NOTES* Q1 = 2N6485. GROUND CASE
in „Netzspannung messen.“ · Mikrocontroller und Digitale Elektronik ·
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sloa069.pdf
C O C E = 2 1− 2πF O )L S O A capacitor’s series self-resonant frequency FSR is defined as: 1 F = SR 2π L C S O The Q, or sharpness of the resonance characteristic, is given by the expression: X − X Q = C L ESR R P 2 How (Not) to Decouple High-Speed Operational Amplifiers SLOA069 At the capacitor’s
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haupt.pdf
der gleichen Stelle, wobei folgende Anordnung vorgegeben war: 11 Gitternetzlinie 1 Gitternetzlinie 2 10 9 8 m 7 i i 6 s P y 5 4 3 2 1 0 2 4 6 8 10 x-Position in m Abb. 3.10: Gitternetzlinienanordnung bei Simulation mit 2 Empfangsdetektoren 3.3 Positionsbestimmung mit 2 Gitternetzlinien 57 Bei den nachfolgend
in „Verstaerker mit inverser charakteristik“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
journalctl.txt
docks/bays count: 3) Mär 31 15:34:29 T400 kernel: ACPI: PCI Interrupt Link [LNKA] (IRQs 3 4 5 6 7 9 10 *11) Mär 31 15:34:29 T400 kernel: ACPI: PCI Interrupt Link [LNKB] (IRQs 3 4 5 6 7 9 10 *11) Mär 31 15:34:29 T400 kernel: ACPI: PCI Interrupt Link [LNKC] (IRQs 3 4 5 6 7 9 10 *11) Mär 31 15:34:29 T400 kernel: ACPI: PCI Interrupt Link [LNKD] (IRQs 3 4 5 6 7 9 10 *11) Mär 31 15:34:29 T400 kernel: ACPI: PCI Interrupt Link [LNKE] (IRQs 3 4 5 6 7 9 10 *11) Mär 31 15:34:29 T400 kernel: ACPI: PCI Interrupt Link [LNKF] (IRQs 3 4 5 6 7 9 10 *11) Mär 31 15:34:29 T400
in „ArchLinux mountet Bootpartition nicht“ · PC Hard- und Software ·
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PDF
GD32VF103_Datasheet_Rev1.0.pdf
26 37 37 37 37 EXMC - - - - - - - - EXTI 16 16 16 16 16 16 16 16 Units 2 2 2 2 2 2 2 2 C A Channels 10 10 10 10 10 10 10 10 DAC 2 2 2 2 2 2 2 2 Package QFN36 LQFP48 9 GD32VF103 Datasheet 2.2. Block diagram Figure 2-1. GD32VF103 block diagram JTAG POR/PDR C o e Flash Flash RISC_V Ibus Memory PLL CPU C
in „RISC-V: Wird das was?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32VF103_Datasheet_Rev1.0.pdf
26 37 37 37 37 EXMC - - - - - - - - EXTI 16 16 16 16 16 16 16 16 Units 2 2 2 2 2 2 2 2 C A Channels 10 10 10 10 10 10 10 10 DAC 2 2 2 2 2 2 2 2 Package QFN36 LQFP48 9 GD32VF103 Datasheet 2.2. Block diagram Figure 2-1. GD32VF103 block diagram JTAG POR/PDR C o e Flash Flash RISC_V Ibus Memory PLL CPU C
in „STM32F103C8T6 => GD32VF103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet__ICM-20948_.pdf
............................................................................................... 62 10.10 ODR_ALIGN_EN............................................................................................................................................ 63 10.11 ACCEL_SMPLRT_DIV_1................
in „20948 I2C <-> SPI?“ · Mikrocontroller und Digitale Elektronik ·
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FAT_Beschreibung.pdf
nichts. 0x1FE Signatur (55h AAh) Notiz Gerhard Brünner Thema Datum Seite FileAllocation Table 22.06.10 10 von 34 Das Formatierungstool zeigte nach Beendigung der Formatierung folgende Vollzugsmeldung: DieseAngaben können wir nun anhand des Boot-Sektor-Auszugs bestätigten: • Cluster-Size: 32 Sektoren je
in „Beschreibung des FAT12/FAT16 Dateisystems“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3901090614.pdf
are given below. Device Settling time, sec Typical noise, °C rms Spike limit MLX90614AAA, BAA, DAA 0.10 0.05 100% MLX90614ABA, BBA 0.14 0.07 100% MLX90614ACC, BCC 0.14 0.18 100% MLX90614ACF, BCF 1.33 0.10 50% MLX90614DCH, DCI, BCH, BCI 0.65 0.10 80% Table 8: factory default IIR and FIR configuration, settling
in „Erste Schritte mit TWI“ · Mikrocontroller und Digitale Elektronik ·
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AND8399-D.PDF
10 14 110 18 106 22 102 16 I 98 30 X 94 34 38 90 86 42 82 46 78 50 74 54 70 66 62 58 Figure 10. Example of 1/8 Microstepping with Offset http://onsemi.com 6 AND8399/D Table 1. MICROSTEP POSITIONS FOR DIFFERENT
in „Puls aus Sinuswelle herausrechnen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
version_1p3_assembler.asm
SR01 AJMP CMNDLK SR01: MOV A,R5 ;GET TYPE JZ SGT1 ;EXIT IF ZERO MOV CSTKA,R0 ;POP THE STACK CPL A ;OPTION TEST, 00H, 55H, 0FFH, NOW 55H JNZ SGT1 ;MUST BE GOSUB RET ;NORMAL FALL THRU EXIT FOR NO MATCH ;
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BASIC131-PS3.a51
SR01 AJMP CMNDLK SR01: MOV A,R5 ;GET TYPE JZ SGT1 ;EXIT IF ZERO MOV CSTKA,R0 ;POP THE STACK CPL A ;OPTION TEST, 00H, 55H, 0FFH, NOW 55H JNZ SGT1 ;MUST BE GOSUB RET ;NORMAL FALL THRU EXIT FOR NO MATCH ;
in „Spaß mit Kloeckner-Moeller PS3 in BASIC(?)“ · Projekte & Code ·
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PDF
Lichtsensor_I2C_bh1750fvi-e.pdf
≧ 1.8V SCL, SDA Input ‘L’ Voltage 2 VI2 - - DVI – 1.26 V 1.65V ≦ DVI < 1.8V SCL, SDA, ADDR IH - - 10 µA Input ‘H’ Current SCL, SDA, ADDR IL - - 10 µA Input ‘L’ Current 2 I C SCL Clock Frequency SCL - - 400 kHz I C Bus Free Time BUF 1.3 - - µs I C Hold Time ( repeated ) HDSTA 0.6 - - µs START Condition
in „BH1750 per I²C an ATmega32 - low Byte immer nur 255“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IS51Basic133.a51
SR01 AJMP CMNDLK SR01: MOV A,R5 ;GET TYPE JZ SGT1 ;EXIT IF ZERO MOV CSTKA,R0 ;POP THE STACK CPL A ;OPTION TEST, 00H, 55H, 0FFH, NOW 55H JNZ SGT1 ;MUST BE GOSUB RET ;NORMAL FALL THRU EXIT FOR NO MATCH ;
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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PDF
RF12.pdf
on Ttx_rx_SYNT_ON Receiver turnover during TX/RX change with 10 MHz 425 us time step Receiver Synthesizer and crystal oscillator on Trx_tx_SYNT_ON -Transmitter during RX/TX change with 10 MHz 300 us turnover time step AC Characteristics (Others) Symbol Parameter
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PDF
RFM12.pdf
on Ttx_rx_SYNT_ON Receiver turnover during TX/RX change with 10 MHz 425 us time step Receiver Synthesizer and crystal oscillator on Trx_tx_SYNT_ON -Transmitter during RX/TX change with 10 MHz 300 us turnover time step AC Characteristics (Others) Symbol Parameter
in „RF12 Funkmodul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RF12.pdf
on Ttx_rx_SYNT_ON Receiver turnover during TX/RX change with 10 MHz 425 us time step Receiver Synthesizer and crystal oscillator on Trx_tx_SYNT_ON -Transmitter during RX/TX change with 10 MHz 300 us turnover time step AC Characteristics (Others) Symbol Parameter
in „RFM 12 Wake-Up und start nach POR“ · HF, Funk und Felder ·
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PDF
CY8C4147AZI.pdf
5 P2.3 5 P2.3 6 P2.4 6 P2.4 6 P2.4 7 P2.5 7 P2.5 7 P2.5 8 P2.6 8 P2.6 8 P2.6 9 P2.7 9 P2.7 9 P2.7 10 VSSD 11 NC Document Number: 002-19966 Rev. *H Page 10 of 44 PSoC 4:PSoC4100SPlusDatasheet 64-TQFP 44-TQFP 48-TQFP Pin Name Pin Name Pin Name 12 P6.0 10 P6.0 13 P6.1 14 P6.2 15 P6.4 16 P6.5 17 VSSD 10
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PCA9626.pdf
02 Ñ 31 August 2009 30 of 47 NXP Semiconductors PCA9626 24-bit Fm+ I C-bus 100 mA 40 V LED driver 10. Application design-in information up to 40 V VDD = 2.5 V, 3.3 V or 5.0 V 10 k 10 k 10 k(1) I2C-BUS/SMBus MASTER VDD SDA SDA LED0 SCL SCL LED1 LED2 OE OE LED3 PCA9626 LED light bar up to 40 V LED4 LED5
in „Probleme mit PCA9626 und I2C“ · Mikrocontroller und Digitale Elektronik ·