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LGM11.44..._Gasfeuerungsautomat_Basisdokumentation.pdf
Gateway zu RVA46... / RVA47... OCI12 nach Vereinbarung kann das Zündkabel ebenfalls bezogen werden AGL11.A98 Kompaktgasregelstrecke VDA... 16/84 Siemens Building TechnologieBasisdokumentation CE1P7618de Landis & Staefa Division 1 Anwendung 19.06.2000 1.3 Anschlussbelegungsplan FS HZ FS BW F B2 M B3 B4 B9
in „Schaltplan/Hilfe bei Steuerung Eurola OC“ · Haus & Smart Home ·
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Datei
ft4232_1ok.txt
module. [ 0.904185] PCI: CLS 0 bytes, default 64 [ 0.906163] hw perfevents: enabled with armv7_cortex_a15 PMU driver, 7 counters available [ 0.908380] Initialise system trusted keyrings [ 0.908636] workingset: timestamp_bits=14 max_order=19 bucket_order=5 [ 0.919795] FS-Cache: Netfs 'nfs' registered for
in „FT232 bleibt im Suspend“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ft4232_1ok.txt
module. [ 0.904185] PCI: CLS 0 bytes, default 64 [ 0.906163] hw perfevents: enabled with armv7_cortex_a15 PMU driver, 7 counters available [ 0.908380] Initialise system trusted keyrings [ 0.908636] workingset: timestamp_bits=14 max_order=19 bucket_order=5 [ 0.919795] FS-Cache: Netfs 'nfs' registered for
in „FT232 bleibt im Suspend“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS830E_8Bit_60MHz__BB.pdf
Voltage, OH = 50 A) +2.8 V Output Capacitance 5 pF ACCURACY (External Reference, 2Vp-p, Unless Otherwise Noted) Zero Error (Referred to –FS) at 25°C –2.5 ±0.25 +2.5 %FS Zero Error Drift (Referred to –FS) ±53 ppm/°C Gain
in „Oszilloskop mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD694.pdf
/0.4 0.3/0.05 0.8/0.4 µA/V Trim Range, 4 mA Zero 2.0 4.8 2.0 4.8 mA Span Nominal Transfer Function Input FS = 2 V 8.0 8.0 mA/V Input FS = 10 V 1.6 1.6 mA/V Transfer Function Error from Nom, Input FS = 2 V, 10 V ±0.1 ⴞ0.3 ±0.05
in „Wie funktionieren Sensoren mit einem Sromausgang“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
= SAI_FS_STARTFRAME; hsai_BlockA2.FrameInit.FSPolarity = SAI_FS_ACTIVE_LOW; hsai_BlockA2.FrameInit.FSOffset = SAI_FS_FIRSTBIT; hsai_BlockA2.SlotInit.FirstBitOffset = 0; hsai_BlockA2.SlotInit.SlotSize = SAI_SLOTSIZE_DATASIZE
in „Probleme beim Debuggen mit SW4STM32 und und F7Disco“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX196-MAX198.pdf
0.200 -20 fSAMPLE = 100kHz S / ( I Y 0.150 F 11.5 6 I B -40 O A 0.100 ( E 9 I D B L 0.050 T -60 U 11.0 1 O L N L 0 M I X A A -80 C G E A T-0.050 E 10.5 I -100 -0.100 M -0.150 -120 10.0 0 1000 2000 3000 4000 0 25 50 1 10 100 DIGITAL CODE FREQUENCY (kHz) INPUT FREQUENCY
in „12 bit AD- und DA-Wandler (parallel) gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LIS331DLH.pdf
Dummy register REFERENCE rw 26 010 0110 00000000 STATUS_REG r 27 010 0111 00000000 OUT_X_L r 28 010 1000 output OUT_X_H r 29 010 1001 output OUT_Y_L r 2A 010 1010 output OUT_Y_H r 2B 010 1011 output OUT_Z_L r 2C 010 1100 output OUT_Z_H r 2D 010 1101 output Reserved (do not modify) 2E - 2F Reserved INT1
in „Messen mit LIS331DLH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ads1220.pdf
1.00 600 IDAC = 1000 µA 0.75 IDAC = 500 µA 500 ) IDAC = 100 µA ( 0.50 o 400 E 0.25 ) g µ i 0.00 (D00 t V a IA M–0.25 200 C D–0.50 Gain = 64, 128 I 100 –0.75 Gain = 1 to 16 –1.00 0 PGA Disabled –40 –20 0 20 40 60 80 100
in „ADS1220 Temperatur SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OP184_284_484.pdf
Open-LoopGainandPhasevs.Frequency(NoLoad) Figure21.Closed-LoopGainvs.Frequency(2kΩLoad) 2500 60 VS= 3V 50 RL= 2kΩ T = 25°C A 2000 40 ) ) V d 30 / ( ( I I 1500 A 20 A VS= ±15V G G –10V < VO< +10V O 10 P RL= 2kΩ O O - - 1000 D 0 N S E O –10 O V S +5V L +1V < V < +10V C 500 O –20 R L 2kΩ 9 0 –30 0 9 9 0 0 0 –40 0 –50 –25 0 25
in „Bestellbezeichnung OP184ESZ / OP184FSZ“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PS-ITG-3200-00-01.4.pdf
to VDD, T =25°C. A Parameter Conditions Min Typical Max Unit Note GYRO SENSITIVITY Full-Scale Range FS_SEL=3 ±2000 º/s 4 Gyro ADC Word Length 16 Bits 3 Sensitivity Scale Factor FS_SEL=3 14.375 LSB/(º/s) 3 Sensitivity Scale
in „STK600 / Atmega 2560 per TWI mit ITG-3200 verbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IPB026N06N.pdf
leakage current IGSS VGS =20 V, VDS=0 V - 10 100 nA Drain-source on-state resistance R DS(on) VGS =10 V, ID=100 A - 2.3 2.6 mW VGS =6 V, D =25 A - 3.0 3.9 Gate resistance R G - 1.3 1.95 W |VDS|>2|ID|RDS(on)max Transconductance g fs I =100 A 80 160 - S
in „Gatebeschaltung Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm3421.pdf
µF X7R 10% 25V MURATA GRM21BR71E105KA01L 1 CF 0.1 µF X7R 10% 25V MURATA GRM21BR71E104KA01L 0 C DNP FS 4 CIN 6.8 µF X7R 10% 50V TDK C5750X7R1H685K 4 CO 10 µF X7R 10% 50V TDK C4532X7R1H106K 1 C 47 pF COG/NPO 5% 50V AVX 08055A470JAT2A OV 1 CT 1000 pF COG/NPO 5% 50V MURATA GRM2165C1H102JA01D 1 D1 Schottky
in „Spule Dimensonierung Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2N3819.pdf
Conductance vs. Gate-Source Cutoff Voltage vs. Gate-Source Cutoff Voltage 20 10 500 100 g rDS@ ID =1 mA, VGS = 0 V s– ) g @ V = 10 V, V = 0 V ) IDSS F ( os DS GS g A 16 8 r e 400 f = 1 kHz 80 s ( w n – n d t O e T s t u 12 g 6 a e 300 DS 60 u C fs s - g C a o O os o D d e d n u r c t 8 4 a o 200 40 a r
in „2N3819 Rdson Frage DB“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ff.h
on the caller's STACK. / / The working buffer occupies (_MAX_LFN + 1) * 2 bytes. When enable LFN, / a Unicode handling functions ff_convert() and ff_wtoupper() must be added / to the project. */ #define _FS_RPATH 0 /* When _FS_RPATH is set to 1, relative path feature is enabled and f_chdir, / f_chdrive
in „HC8SX Filestruktur in RAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
device_list_hilo_all03_v9-12.pdf
MX27L1000 MX27L256 MX27L4000 MX27L512 <<NEC>> 27C4000D D27/C256 D27128 D2716 D2732 D2732A D2732B D2764 D27C1000/A D27C1001/A D27C1024/A D27C2001 D27C240 D27C256A D27C4001 D27C4002 D27C4096 D27C512 D27C64 D27C8001
in „PROM programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BSS169.pdf
g fs I =0.14 A 0.10 0.19 - S D Rev. 1.0 page 2 2003-03-26 BSS169 Parameter Symbol Conditions Values Unit min. typ. max. D ynamic characteristics Input capacitance C - 51 68 pF iss V GS=-10 V, VDS =25 V, Output
in „Strombegrenzung mit Fet um Akku zu laden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ad835.pdf
250 MHz,VoltageOutput a 4-Quadrant Multiplier AD835 FEATURES FUNCTIONAL BLOCK DIAGRAM Simple: Basic Function is W = XY + Z Complete: Minimal External Components Required Very Fast: Settles to 0.1% of FS in 20 ns X1 X = X1 –
in „Verständnisfrage: Multiplikative Mischung und PSK“ · HF, Funk und Felder ·
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Datei
can_sd.c
warten = 0;warten<100000;warten++) nop(); } void init_counter(void) { // Timer 0 konfigurieren TCCR0A = (1<<WGM01); // CTC Modus TCCR0B = 0b00000101; // Prescaler 8 // ((1000000/8)/1000) = 125 OCR0A = 84; // Compare Interrupt erlauben TIMSK0 |= (1<<OCIE0A); } int main(void) { FATFS fs; FIL datei; S8 a; U16 count, warten; UINT written; BYTE kack; init_counter(); sei(); PORTB = 1; DDRB = 0b00001110; DDRA = 0xFF; PORTA = 0b11111110; PORTC = 0xFF; DDRC = 0xFF; f_mount(0, &fs); for(warten=0;warten<1;warten
in „ISR(SPI_STC_vect) wird nicht verlassen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F107.pdf
with the IEC 1000-4-2 standard. ● FTB: A Burst of Fast Transient voltage (positive and negative) is applied tDDV and VSS through a 100 pF capacitor, until a functional disturbance occurs. This test is compliant with
in „STM32-comStick USB-Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPCA8048-H_Toshiba.pdf
= 4.3 mΩ (typ.) 0 0 0 0 • High forward transfer admittance: |Y | = 1fs S (typ.) 5 5.0 ± 0.2 6 • Low leakage current: I = 10 μA (max) (V = 60 V) 0 . DSS DS 0 • Enhancement mode: V th = 1.3 to 2.3 V (V DS = 10 V, I D 1.0 mA) S 0.05S . 0 . Absolute Maximum Ratings (Ta = 25
in „WER KENNT DIESES 10S BMS von 36V Lion Akku vom Hersteller GW.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ad7706.pdf
1), this bit should be set to a “0.” This bit sets up the appropriate scaling currents for a given operating frequency and also chooses (along with FS1 and FS0) the output update rate for the device. If this bit is not set correctly
in „ADC7706 - Kommunikationsproblem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
complete-log.txt
0x12091000-0x12091fff] pci 0000:00:09.1: BAR 0: set to [mem 0x12091000-0x12091fff] (PCI address [0x1209 1000-0x12091fff]) pci 0000:00:0a.0: BAR 1: assigned [mem 0x12092000-0x12092fff] pci 0000:00:0a.0: BAR 1: set to [mem 0x12092000-0x12092fff] (PCI address [0x1209 2000-0x12092fff]) pci 0000:00:08.0: BAR 5:
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
QUADSPI_BK1_NCS PG11 ------> ETH_TX_EN PC11 ------> SDMMC1_D3 PC10 ------> SDMMC1_D2 PA12 ------> USB_OTG_FS_DP PI4 ------> SAI2_MCLK_A PG10 ------> SAI2_SD_B PD3 ------> DCMI_D5 PA11 ------> USB_OTG_FS_DM PI5 ------> SAI2_SCK_A PI7 ------> SAI2_FS_A PI6 ------> SAI2_SD_A PG9 ------> DCMI_VSYNC PD2 ------>
in „Game of Life läuft nur eine Runde!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ads122c04.pdf
temperature detector (RTD) applications. The output current of the current sources can be programmed to 10 µA, 50 µA, 100 µA, 250 µA, 500 µA, 1000 µA, or 1500 µA using the respective bits (IDAC[2:0]) in the configuration register. Each current source can be connected to any of the analog inputs (AINx) as well
in „ads122C04 ADC 24Bit“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mmc_stm32f1.c
/*---------------------------------------------------------*/ /* User provided RTC function for FatFs module */ /*---------------------------------------------------------*/ /* This is a real time clock service to be called back */ /* from FatFs module. */ #if !FF_FS_NORTC && !FF_FS_READONLY uint32_t
in „STM32F103 Bluepill mit 128kb lässt sich nicht flashen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
journalctl.txt
0x00000000000fffff] reserved Mär 31 15:34:29 T400 kernel: BIOS-e820: [mem 0x0000000000100000-0x00000000bd6a0fff] usable Mär 31 15:34:29 T400 kernel: BIOS-e820: [mem 0x00000000bd6a1000-0x00000000bd6a6fff] reserved Mär 31 15:34:29 T400 kernel: BIOS-e820: [mem 0x00000000bd6a7000-0x00000000bd7b6fff] usable Mär
in „ArchLinux mountet Bootpartition nicht“ · PC Hard- und Software ·
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Datei
main.c
USART1_RX PG11 ------> ETH_TX_EN PC11 ------> SDMMC1_D3 PC10 ------> SDMMC1_D2 PA12 ------> USB_OTG_FS_DP PI4 ------> SAI2_MCLK_A PG10 ------> SAI2_SD_B PD3 ------> DCMI_D5 PA11 ------> USB_OTG_FS_DM PI5 ------> SAI2_SCK_A PI7 ------> SAI2_FS_A PI6 ------> SAI2_SD_A PG9 ------> DCMI_VSYNC PD2 ------>
in „32F746Disco, SW4STM32, kompiliert, nach kleiner Änderung aber nicht.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ads1118.pdf
-001 ±4000 V (ESD) discharge Charged-device model (CDM), per JEDEC specification JESD22-C101 (2) ±1000 (1) JEDEC document JEP155 states that 500-V HBM allows safe manufacturing with a standard ESD control process. (2) JEDEC document JEP157 states that 250-V CDM allows safe manufacturing with a standard
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PDF
ads1118.pdf
-001 ±4000 V (ESD) discharge Charged-device model (CDM), per JEDEC specification JESD22-C101 (2) ±1000 (1) JEDEC document JEP155 states that 500-V HBM allows safe manufacturing with a standard ESD control process. (2) JEDEC document JEP157 states that 250-V CDM allows safe manufacturing with a standard
in „SPI-Kommunikation Atmega644 - ADS1118“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LIS3D.pdf
electrical specifications LIS3DH 2 Mechanical and electrical specifications 2.1 Mechanical characteristics (a) Vdd = 2.5 V, T = 25 °C unless otherwise noted Table 3. Mechanical characteristics (1) Symbol Parameter Test conditions Min. Typ. Max. Unit FS bit set to 00 ±2.0 FS Measurement range (2) FS bit set to
in „SPI immer gleiche Antwort“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LIS3DH.pdf
electrical specifications LIS3DH 2 Mechanical and electrical specifications 2.1 Mechanical characteristics (a) Vdd = 2.5 V, T = 25 °C unless otherwise noted Table 3. Mechanical characteristics (1) Symbol Parameter Test conditions Min. Typ. Max. Unit FS bit set to 00 ±2.0 FS Measurement range (2) FS bit set to
in „Accelerometer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tl431.pdf
to 70 4A & no Sb/Br) TL431ACPKG3 ACTIVE SOT-89 PK 3 1000 Green (RoHS CU SN Level-2-260C-1 YEAR 0 to 70 4A & no Sb/Br) TL431ACPSR ACTIVE SO PS 8 2000 Green (RoHS CU NIPDAU Level-1-260C-UNLIM 0 to 70 T431A & no
in „Analogeingang: Problem bei Überlast“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
compile_Tasmota_stable_in_docker_container.txt
/build/tasmota32-DE/libd0a/lvgl/extra/libs/freetype/lv_freetype.c.o Compiling .pio/build/tasmota32-DE/libd0a/lvgl/extra/libs/fsdrv/lv_fs_fatfs.c.o Compiling .pio/build/tasmota32-DE/libd0a/lvgl/extra/libs/fsdrv/lv_fs_posix.c.o Compiling .pio/build/tasmota32-DE/libd0a/lvgl/extra/libs/fsdrv/lv_fs_stdio.c.o Compiling .pio/build/tasmota32-DE/libd0a/lvgl/extra/libs/fsdrv/lv_fs_win32.c.o Compiling .pio/build/tasmota32-DE/libd0a/lvgl/extra/libs/png/lodepng.c.o Compiling
in „Dlock 11827 und Tasmota - compilieren für FW-Update“ · Haus & Smart Home ·
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PDF
BSP149_Rev1.1.pdf
-S4295 E6906: 1000 pcs/reel BSP149 sorted in VGS(th)ands 1) Maximum ratings, at T =j5 °C, unless otherwise specified Parameter Symbol Conditions Value Unit Continuous drain current I T =25 °C 0.66 A D A TA=70 °C 0.53
in „BF246B probleme“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPCA8028-H_datasheet_en_20080122.pdf
w 1000 (1) Device mounted on a glass-epoxy board (a) (Note 2a) (2) Device mounted on a glass-epoxy board (b) (Note 2b) (2) c (3) Tc=25℃ n 100 d (1) p m ) l / 10 a ° r ( h h (3) t rt 1 e s a T 0.1 Single - pulse 00.0001 0.001 0.01 0.1 1 10 100 1000 Pulse width t (s) w P – Ta P – Tc D D 3.0 (1) Device mounted on a glass-epoxy 50 ) board (a) (Note 2a) ) W (1) (2) Device mounted on a glass-epoxy W ( 2.5 board (b) (Note 2b) ( t =10s 40 P PD 2.0 n
in „Ersatz für TPCA8028-H“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f103.cpp
CAN message */ // typedef enum {CAN_50KBPS, CAN_100KBPS, CAN_125KBPS, CAN_250KBPS, CAN_500KBPS, CAN_1000KBPS} BITRATE; /* Real speed for bit rate of CAN message */ uint32_t SPEED[6] = {50*1000, 100*1000, 125*1000, 250*1000, 500*1000, 1000*1000}; /* Symbolic names for formats of CAN message */ // typedef
in „Arduino Blue Pill & CAN mit SN65HVD230“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA163_datasheet.pdf
VO= 5Vrms 60 R = 10k G = 1000 L G = 1000 50 ) 40 ) 0.01 B G = 100 ( ( 30 N a + G = 100 G 20 H G = 10 T 10 0.001 G = 10 0 G = 1 G = 1 10 20 0.0001 10k 100k 1M 10M 20 100 1k 10k 20k Frequency (Hz) Frequency (Hz) NOISE VOLTAGE (RTI
in „Frage zu Schutzdioden“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
CanKnoten.txt
Schreibe ins Setup Reg. // Gain = 1 für Potigeber write_to_ad(0X64); // config Setup-Reg: // MD1 MD0 CLK FS1 FS0 _B/U BUF FSYNC // 0 1 1 0 0 1 0 0 // Self Calibration Mode, Takt = 2,5 MHz, // Output Update Rate = 50Hz ==> t=20ms while (_DRDY) { // warten bis A/D-Wandler fertig; waitms(180); // Calibration
in „WINAVR produziert falschen Code“ · Mikrocontroller und Digitale Elektronik ·
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Datei
hulltest.py
OAB makes a counter-clockwise turn, # negative for clockwise turn, and zero if the points are collinear. def cross(o, a, b): return (a[0] - o[0]) * (b[1] - o[1]) - (a[1] - o[1]) * (b[0] - o[0]) # Build lower hull
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Datei
main.c
GPIO_SPEED_FREQ_LOW; HAL_GPIO_Init(ACP_RST_GPIO_Port, &GPIO_InitStruct); /*Configure GPIO pin : OTG_FS_OC_Pin */ GPIO_InitStruct.Pin = OTG_FS_OC_Pin; GPIO_InitStruct.Mode = GPIO_MODE_EVT_RISING; GPIO_InitStruct.Pull = GPIO_NOPULL; HAL_GPIO_Init(OTG_FS_OC_GPIO_Port, &GPIO_InitStruct); /*Configure GPIO
in „STM32CubeIDE: bekomme blinky läuft nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f103.cpp
stm32f103.h" #define DEBUG 0 /* Real speed for bit rate of CAN message */ uint32_t SPEED[6] = {50*1000, 100*1000, 125*1000, 250*1000, 500*1000, 1000*1000}; typedef struct { uint16_t baud_rate_prescaler; /// [1 to 1024] uint8_t time_segment_1; /// [1 to 16] uint8_t time_segment_2; /// [1 to 8] uint8_t
in „Arduino Blue Pill CAN bibliothek“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dmf5000.pdf
Block Diagram D0 COM. DRV. LCDP T6961B D7 ___ WR CONTROL __ RD LSI __ CE T6963C SEG.DRV. _ C/D T7778A _____ *1 HALT ______ RESET NOTE *2 FS *1: For DMF5001N, 5002N, 5003N series only. *2: For DMF5005N, 5010N series only. 8K BYTE *3: DMF5003N, 5010N S.RAM are already included. *4: Available for DMF5001N
in „Optrex DMF50126“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dmf5000.pdf
Block Diagram D0 COM. DRV. LCDP T6961B D7 ___ WR CONTROL __ RD LSI __ CE T6963C SEG.DRV. _ C/D T7778A _____ *1 HALT ______ RESET NOTE *2 FS *1: For DMF5001N, 5002N, 5003N series only. *2: For DMF5005N, 5010N series only. 8K BYTE *3: DMF5003N, 5010N S.RAM are already included. *4: Available for DMF5001N
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PDF
HS8845.pdf
and more extensive. Here is a brief description of HS����. �、�, in line with USB�.� specifications: one to four, the upstream port supports high-speed (HS) and full-speed (FS) channels, downstream ports support HS, ,FS and low-speed
in „Wie funktioniert ein "USB2/3 Hub"?“ · PC Hard- und Software ·
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PDF
rfm63dw.PDF
following screenshot shows the plot of the SAW filter used on the reference design: 0 -10 -20 ] -30 B [ i a -40 n t A-50 -60 -70 -80 400 600 800 1000 1200 1400 1600 1800 2000 Frequency [MHz] Figure 59: 915 MHz SAW Filter Plot 0 -10 -20 ] -30 [ n t -40 u e A -50 -60 -70 -80 400 600 800 1000 1200 1400 1600 1800
in „JDY-40 ein neuer Geniestreich aus China?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Temperatur_DS18B20.ino
**** bool setupWIFI() { WiFi.mode(WIFI_STA); // explicitly set mode, esp defaults to STA+AP delay(1000); Serial.println("\n Starting"); pinMode(_BoardTaster, INPUT); // add a custom input field int customFieldLength = 40; const char* custom_radio_str = "<br/><label for='customfieldid'>Custom Field Label
in „ESP Temperaturmodul mit DS18B20 und Web-Ansicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
57267-Beruehrungsloser_Taster_km.pdf
änderung ist die Tatsache, dass sich die das eine sich nähernde Hand verursacht, Stromaufnahme:..6 μA (typ., Last aus) DielektrizitätderHandwesentlichvonder undbeiÜbereinstimmungeineSchalthand- Laststrom: ......................max. 200 mA Dielektrizität der Luft unterscheidet. lungausgelöst.LangsameÄnderungender
in „Edisen Ee301P“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
stdbool.h> #include <string.h> #include <stdio.h> #include "ff.h" #include "mp3_decoder.h" FATFS FatFs; /* FatFs work area needed for each volume */ FIL Fil; /* File object needed for each open file */ void find_image_file (void); void main(void) { // Initialize the device SYSTEM_Initialize(); LCD_Initialisierung
in „Problem mit VS1053“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
stdbool.h> #include <string.h> #include <stdio.h> #include "ff.h" #include "mp3_decoder.h" FATFS FatFs; /* FatFs work area needed for each volume */ FIL Fil; /* File object needed for each open file */ void find_image_file (void); void main(void) { // Initialize the device SYSTEM_Initialize(); LCD_Initialisierung
in „Problem mit VS1053“ · Mikrocontroller und Digitale Elektronik ·