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Datei
interrupt_Haendler.c
0x0002) == 0x0002) { /* In slave Transmitter/Receiver mode, when using DMA, the update of the buffer base address and the buffer size should be done before clearing ADDR flag. In fact, the only period when the slave has control on the bus(SCL is stretched so master can not initiate transfers) is the period
in „STM32 Cortex Timer behindert I2C Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Motortreiber_diskret.pdf
36V 36V +24V Stift1PB1 24V S1D D1 23V 23V 2 U1 4 36V C1 C3 C5 1 2 +Vin +Vo -24V Stift1PB2 1 R16 DCDC4 100n 470u 1 470u 1 1R13 1 1 C15 2 R36 1 R33 1 1 C16 1 C19 C6 R23 22u35V R27 T12 R43 22u35V 1 24V/12V 3 10u50V +24V Stift1PB3 1 C2 C4 10k 1k 2 +Mot1 2 1k 10k gnd galgnd 22u35V 1 470u 1470u 2 Q14
in „Motoransteuerung - 24vdc / max. 500W“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
MPHexEditor.pas
first row property ShowRuler: boolean read FShowRuler write SetShowRuler default False; (* number base (i.e. radix) for the ruler display (2-16), tells the component which number format to use when drawing the ruler *) property RulerNumberBase: byte read FRulerNumberBase write SetRulerNumberBase default
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PDF
SPEC-CSTNE16M0VH3L000R0.pdf
Document No. JGC42-8869B P. 1/16 製品仕様書 Specification of Piezoelectric Ceramic Resonator 決定年月日 Issue Date : April 23, 2019 1. 品番 Part Number 当 社 品 番 Murata Part Number テーピング品 CSTNE16M0VH3L000R0 Taping バラ品 Bulk CSTNE16M0VH3L000B0 2. 適
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Datei
sheeva-boot-3.5.7-initrd.txt
/ \__| ** MARVELL BOARD: SHEEVA PLUG LE U-Boot 1.1.4 (Jul 14 2009 - 06:46:57) Marvell version: 3.4.16 U-Boot code: 00600000 -> 0067FFF0 BSS: -> 006CF120 Soc: MV88F6281 Rev 3 (DDR2) CPU running @ 1200Mhz L2 running @ 400Mhz SysClock = 400Mhz , TClock = 200Mhz DRAM CAS Latency = 5 tRP = 5 tRAS = 18 tRCD=6 DRAM CS[0] base 0x00000000 size 256MB DRAM CS[1] base 0x10000000 size 256MB DRAM Total size 512MB 16bit width Flash: 0 kB Addresses 8M - 0M are saved for the U-Boot usage. Mem malloc Initialization (8M - 7M): Done
in „Sheevaplug brauche eine Einführung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mclock8_16F88.asm
expredded or implied ; Bob Blick February 18, 2002 ;-------- ;Prozessor festlegen, includefile list p=16F88; 16C84 radix hex include "p16f88.inc"; "p16c84.inc" ;Deine Config-words findest Du bei MPLAB8.92 im Menü "Configure" __CONFIG _CONFIG1, _XT_OSC & _CP_OFF & _MCLRE_ON & _WDTE_OFF & _LVP_OFF ; weitere
in „programm für pic16f84 auf 16f88 umstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVX_cx7r.pdf
0.50±0.25 0.50±0.25 (in.) (0.006±0.002) (0.010±0.006) (0.014±0.006) (0.020±0.010) (0.020±0.010) WVDC 16 16 25 50 10 16 25 50 100 10 16 25 50 100 200 10 16 25 50 100 200 500 Cap 100 A (pF) 150 A 220 A C 330 A C G G J J J J J J K 470 A C G G J J J J J J K 680 A C G G J J J J J J K 1000 A C G G J J J J J
in „Ist die Kapazität frequenzabhängig?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Gardasoft-Manual-PP16xx-v017.pdf
, Safety, (or Section 4, Sicherheit, or Section 5, Sécurité) and , and that you have checked the PP16xx fulfils your requirements. Throughout this manual, all versions of the controller will be referred to as the PP16xx, unless specified otherwise. Mount the PP16xx (see Section 6, Mounting the PP16xx
in „Konstantstromquelle, LEDs“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LOADER.HTM
/li> <li>Protected-mode <ul> <li>CS: set to 8 (2nd GDT entry) with access to the whole 4GB range (base=0, limit=4GB, 32-bit code)</li> <li>DS, ES, SS: set to 16 (3rd GDT entry) with access to the whole 4GB range (base=0, limit=4GB, 32-bit data)</li> <li>ESP: set to the top of 640KB (ESP=000A0000h),</
in „Pollin Netbox“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BLE_Module_Specifications.pdf
Pin14 P11 I/O Pin15 P10 I/O Pin16 P07 I/O Tel:+86-(755)-8632 9829 E-mail:sales@szrfstar.com Website: http://en.szrfstar.com 4 Single Mode Bluetooth Smart Modules Specifications Pin17 P06 I/O Pin18 P05 I/O Pin19 P04 I/O Pin20 P03 I/O
in „Datenblatt für Bluetooth module von Shenzhen RF-Star Technology“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Apex_PA03.pdf
mounting precautions. +V EQUIVALENT 8 11BAL Q1 Q4 SCHEMATIC BAL 12 D1 Q2 Q3 Q6Q7 Q9 D2 Q12 Q5 4 Q14 Q16 + DOWNT 9 7 Q17 Q18 COMP Q19 OUT 1 – Q20 Q20 10 6 A B Q22 Q24 – 3 –SHUT + DOWN Q30 D3 2 Q31 Q29 Q32 Q26 Q34 D4 –V 5 APEX MICROTECHNOLOGY CORPORATION • TELEPHONE (520) 690-8600 • FAX (520) 888-3329 •
in „Hochleistungs-Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mod_input_circuit.pdf
280R/4x22R 125 3.12 279.05 1.92 150 3.44 307.67 2.77 DST1202B PP-150 Probe 175 3.48 311.25 2.87 200 3.16 282.63 2.03 10 2.52 225.39 0.07 100 2.84 254.01 1.11 280R/4x22R 125 2.92 261.16 1.35 DST1202B 150 2.72 243.28 0.73 TT-HF512 175 2.6 232.54 0.34 Probe 200 2.36 211.08 -0.50 10 3.08 229.56 0.23 100 3.28
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PDF
MAX6603.pdf
CONDITIONS MIN TYP MAX UNITS Supply Voltage VCC 3.0 5.5 V Input Over Voltage V RS1+, RS1-, RS2+, RS2- 16 V RS 3.9 5.5 Supply Current I mA CC Sink current during overvoltage fault 36.2 47.1 VRS1+ = VRS1 -= VRS2+ = VRS2-= +16V CURRENT SOURCES Excitation Current EXC (Note 2) 0.58 1.0 1.12 mA Excitation-Current
in „Temperaturmessung mit Mikrocontroller im Batteriebetrieb“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1007_IdentPro_Manual-identMX_V1.1.pdf
orientation referred to the orientation of the transponders. (See appendix A for part illustrations.) Page 16 of 48 IdentPro GmbH User Manual identMX V1.1 To mount the reader system to a pole, first connect the base bracket to the enclosure. Than connect the pole bracket to the enclosure. Use the clamping bracket
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PDF
Kamera_FAC940L.pdf
10 ST2 3 ST1 11 GENL.-GND 4 Fernsteuerung TXD_B 12 Fernsteuerung TXD_A 5 GENL. /NV 13 -UBATT 6 -(F)BAS/C 14 GND 7 (F)BAS 15 GND 8 +(FBAS)/Y Tabelle 2: Steckerbelegung Objektivstecker VSS-Objektiv Galvanometer Springblende ER-Objektiv Steckerstift 1 +12 V DC - Dämpfung +12 V DC Steckerstift 2 + Dämpfung
in „Kamera FAC940 verkauf“ · Markt ·
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Datei
non_blocking_timed_block.h
1000/60 = 71.58 min // uint32_t millis() rolls over after 2^32 /1000/60/60/24 = 49.710 days // uint16_t micros() 4µs tick, rolls over after 2^16 /1000 = 65.535 ms // uint16_t millis() rolls over after 2^16 /1000 = 65.535 sec // refresh time stamp +=t, if a more exact repeated time period is needed //
in „c prog, usefull macros, u32->f, f->u32, better do/while block“ · Mikrocontroller und Digitale Elektronik ·
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Datei
journalctl.txt
kernel: 3 base 080000000 mask FC0000000 write-back Mär 31 15:34:29 T400 kernel: 4 base 100000000 mask FC0000000 write-back Mär 31 15:34:29 T400 kernel: 5 base 0BDE00000 mask FFFE00000 uncachable Mär 31 15:34:29 T400
in „ArchLinux mountet Bootpartition nicht“ · PC Hard- und Software ·
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Datei
FT800_commands.h
_t range); void ft800_cmd_scrollbar(int16_t x0, int16_t y0, int16_t w0, int16_t h0, uint16_t options, uint16_t val, uint16_t size, uint16_t range); void ft800_cmd_slider(int16_t x1, int16_t y1, int16_t w1, int16_t h1, uint16_t options, uint16
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Datei
eeprom.h
Schnittstelle */ void e2p_Init_I2C(); /* Einzel Byte Lese/Schreib Funktionen */ uint8_t e2p_Write_Byte(uint16_t, uint8_t); uint8_t e2p_WriteMultiBytes(uint16_t, uint8_t*, size_t); uint8_t e2p_Read_Byte(uint16_t); uint8_t e2p_Read_MultiBytes(uint8_t*, uint16_t, size_t); /* Multibyte Lese/Schreib Funktionen */ uint8_t e2p_Read_MultiBytes(uint8_t*, const uint16_t, size_t const); uint8_t e2p_PageWrite(uint8_t*, uint16_t,uint16_t); /* E2PROM Löschen und I2C Bus ein/aus schalten */ uint8_t e2p_Erase_EEPROM(); void e2p_DeInit_I2C(); #endif /* EEPROM_H_INCLUDED
in „Organisation der Header und Includes“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0900766b80eaef6e.pdf
V23054D13B110 4-1419172-5 12 4.7 18 1‘108 130 V23054D15B112 6-1422019-5 12.5 5.4 21.5 845 185 V23054D16C110 4-1393812-2 16 7 25.5 948 270 V23054D17B110 4-1393812-3 16 7 25.5 948 270 V23054D17B110 4-1393812-4 20 10.5 31 1‘026 390 V23054D19B110 4-1393812-6 20 10.5 31 1‘026 390 V23054D19C110 4-1393812-7 20
in „Suche Daten zu Kammrelais von Siemens“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TI_VCO.pdf
the amplifier output are rectified and stored in the 5 μF capacitor. This potential is fed to the base of Q3. Q3's collector current will vary with the difference between its base and emitter voltages. Since the emitter voltage is fixed by the LM313 1.2V reference, Q3 performs a comparison function and its collector current modulates Q1's base voltage. Q1, an emitter follower, provides servo controlled drive to the Q2 oscillator. If the emitter of Q2 is opened up and driven by a control voltage, the amplitude of the circuit output may be
in „VCO Simulation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TI_VCO.pdf
the amplifier output are rectified and stored in the 5 μF capacitor. This potential is fed to the base of Q3. Q3's collector current will vary with the difference between its base and emitter voltages. Since the emitter voltage is fixed by the LM313 1.2V reference, Q3 performs a comparison function and its collector current modulates Q1's base voltage. Q1, an emitter follower, provides servo controlled drive to the Q2 oscillator. If the emitter of Q2 is opened up and driven by a control voltage, the amplitude of the circuit output may be
in „VCO Simulation“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
blink.s
RCC_APB1PCENR # Takt für Timer 2 einschalten lw x11,0(x10) ori x11,x11,0x00000001 sw x11,0(x10) li x10,R16_TIM2_PSC # Prescaler auf 7999 (0x1F3F) setzen: 24MHz/(3*8000) => Taktfrequenz=1000Hz li x11,7999 sw x11,0(x10) li x10,R16_TIM2_BASE # Reload-Value und Counter-Value setzen (bestimmt die Interrupt-Frequenz) li x11,250 sw x11,44(x10) # speichern in R16_TIM2_ATRLR sw x11,36(x10) # speichern in R16_TIM2_CNT li x10,R16_TIM2_CTLR1 # Reload-Funktion einschalten und rückwärts zählen lw x11,0(x10) ori x11,x11,0x0090 sw x11,0(x10) li x10,R16_TIM2_DMAINTENR
in „RISCV (CH32V003): GNU Assembler übersetzt "CALL" nicht korrekt (oder bin ich nur zu doof?)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ESP32-PoE_Rev_I.pdf
F Rclass CLASS V RTN POK G VFB=0.805V SS510/100V/5A/0.85V/DO214AB(SMC) 3 R 0 o C25 Single 10/100 BASE-TX 28 TXN NRST 19 10k/R0402 R25 0 4.42k/1%/1/16W/R0402 IBIAS(FB)=10nA 12pF/50V/5%/COG/C0R02 / % 2 Filter Connector Module 2x1000pF/2KV 0 +3.3VLAN 1 4 4 1 V GND/NC 7 0 31 RXP C21 NA(10uF/6.3V/20%/X5R
in „Ollimex ESP32-POE - zu heiß im POE-Betrieb“ · Mikrocontroller und Digitale Elektronik ·
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PDF
62522_FHT8V_2_km_um.pdf
ELVjournal 4/05 3 Bau- und Bedienungsanleitung +3V +3V D1 7 0 3 2 6 7 0 0 7 7 R 1 R 2 R 2 R 1 R 2 C16 PS1 + 1 3 BUZ T9 10u BCW67C 16V g 5 8 u R 1 2 4 8 0 h R 1 a w RS-05F PZ1 HFE1 r T5 D4 +Ub b Reflexkoppler C11 ü BC848C T1 Data r 9 2 LL4148 100n e R 1 BC848C t Sound- SMD GND t s Transducer HFE868-3V
in „Welcher µC wurde hier verbaut? Heizkörperregler SmartHome“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IPodProtocol.c
#include "project.h" uint8_t Length; uint8_t CheckSum; uint8_t Counter; uint16_t DataSum; //IPod Simple Remote Protocol: //Referece: http://www.adriangame.co.uk/ipod-acc-pro.html //Message Format: // 0xFF, 0x55, Length, Mode, Command, Parameter(s), Checksum // <-Header-> // <--
in „XMEGA + iPod“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IPodProtocol.c
#include "project.h" uint8_t Length; uint8_t CheckSum; uint8_t Counter; uint16_t DataSum; //IPod Simple Remote Protocol: //Referece: http://www.adriangame.co.uk/ipod-acc-pro.html //Message Format: // 0xFF, 0x55, Length, Mode, Command, Parameter(s), Checksum // <-Header-> // <--
in „Atmega16 mit iPod kommunizieren lassen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usart_stm32f4xx.c
DMA_StructInit(&DMA_InitStruct); DMA_InitStruct.DMA_Channel = DMA_Channel_4; DMA_InitStruct.DMA_PeripheralBaseAddr = (uint32_t)&(USART2->DR); DMA_InitStruct.DMA_Memory0BaseAddr = (uint32_t) &dma_buffer; DMA_InitStruct.DMA_DIR = DMA_DIR_MemoryToPeripheral; DMA_InitStruct.DMA_BufferSize = DMA_BUFFERLEN; DMA_InitStruct.DMA_PeripheralInc
in „STM32: Sendepuffer für USART“ · Mikrocontroller und Digitale Elektronik ·
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Datei
HD44780_.h
<static_assert.h> // #include <delay.h> // #include <pinlist2_.h> // namespace Mcucpp { class LcdBase { protected: static void Delay() { delay_us<200, F_CPU>(); } }; template< class RS, class RW, class E, class D4, class D5, class D6, class D7, uint8_t LINE_WIDTH=8, uint8_t LINES =2 > //*********************** class Lcd: public LcdBase { //********* using DataBus = IO::PinList2<D4, D5, D6, D7> ; using LcdPins = IO::PinList2<RS, RW, E, D4, D5, D6, D7> ; public: static uint8_t LineWidth() { return LINE_WIDTH; } static uint8_t Lines(
in „Ausführbarer Code im .h File ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RJLB-239TC1-A1_RJPLB-203TC1-replacement_20100805.pdf
NUMBER:RD-SD-RJLB-239TC1(PU) DATE : 2010/08/05 R(REV:A1) Single 10/100 BASE-TX Filtered Connector Module MODELNO. : RJLB-239TC1 Features: ◎ RoHS Compliant ◎ Fully shielded magnetics protect data from internally generated digital noise ◎ Reduces the overall length of the signal
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Datei
icache.vhd
waitrequest avalon_master_readdata : in std_logic_vector(15 downto 0) := (others => '0'); -- .readdata 16 bits word size -> gleich wie sdram controller clock_in_clk : in std_logic := '0'; -- clock_in.clk reset_in_reset : in std_logic := '0' -- reset_in.reset ); end entity icache; architecture rtl of icache
in „warum Registers Added for RAM Pass-Through Logic wenn kein gleichzeitiger Zugriff?“ · FPGA, VHDL & Co. ·
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Bild
Logikanalysator-Screenshot eines SPI-Protokolls
Single Run Mode: Repeated Trigger: Normal Buffer: 10 Source: Digital 100MHz 16 bits DIO 0..15 Pulse Protocol Position: 164.825 us Samples: Default Rate: 7.692 MHz Base: 50 us/div Done 4096 samples at 7.692 MHz 2024-06-12 15:58:32.647 (16/16bit) Name Pin T SPI MOSI DIO 0 Select
in „LCD Controller S1D13781 über SPI mit STM32F407-DISC1“ · Mikrocontroller und Digitale Elektronik · · Oszi-Bilder
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PDF
SPEC-CSTCC2M00G53-R0.pdf
Document No. JGC42-8788 P. 1/16 製品仕様書 Specification of Piezoelectric Ceramic Resonator 決定年月日 Issue Date : March 21, 2017 1. 品番 Part Number 当 社 品 番 Murata Part Number テーピング品 Taping CSTCC2M00G53-R0 バラ品 CSTCC2M00G53-B0 Bulk 2. 適 用 Scope
in „Frage zu Kennzeichung von Resonatoren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STEPPII_55_56_LT_hardware_manual_ver_1.01.pdf
after having started and detected these inappropriate conditions. 6.1.2 Power supply pins (14, 15 and 16) on the 16-pin connector One VC+ pin of the 16-pin connector is dedicated to connect the supply voltage, 3 GND pins are recommended for grounding. The BAT ON/OFF pin serves for charging the internal
in „Frage an die GPS- ( Ortungsspezialisten)“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Google-Suchergebnisse für Raspberry Pi 500 Angebote
17:50 Raspi 500+ 16gb - Google Suche Raspberry Pi PI500+DE Raspberry Pi... 299,00 € Conrad.de Raspberry Pi 500+ Kit (DE), 4x 2,4GHz, 16GB... 459,50 € 494 € reichelt.de Raspberry Pi PI500+EN 500+ 16GB 4 x 2.4GHz 299,00 € voelkner.de Raspberry Pi 500+ Unit, DE-Layout |... 289,00 € BerryBase Raspberry Pi 500+ (DE) 244,33 € + mehr idealo Preisverg Google Baidu Bing Yahoo StartPage DuckDuckGo
in „Raspi 5 Spekulation“ · Offtopic · · Screenshots
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PDF
opa541.pdf
..... 16 6.5 Electrical Characteristics........................................... 5 11.2 Community Resources.......................................... 16 11.3 Trademarks......................................
in „Audio Endstufe selber bauen nur NPN“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Kompass_CMPS03.pdf
demonstriert den I2C Mode. Hier der Anschluß von unten an CMPS03 ein wenig vergrößert: Seite 5 von 16 Deutsche und Englische Dokumentation - www.robotikhardware.de '################################################### 'cmps03_an_rncontrol.bas.bas 'für 'RoboterNetz Board RN-CONTROL (ab Version 1.1) 'und
in „uint8_t* konvertieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Viper12A.pdf
Supply Current DD1 IFB=0.5mA; ID=50mA (Note 1) 4.5 mA Switching D RST Restart Duty Cycle (See fig. 3) 16 % V DD Undervoltage VDDoff Shutdown Threshold (See fig. 2 & 3) 7 8 9 V VDDon V DD Start Up Threshold (See fig. 2 & 3) 13 14.5 16 V V DD Threshold V DDhyst Hysteresis (See fig. 2) 5.8 6.5 7.2 V V DD Overvoltage
in „LiIon 18650 Ladegerät für zwei Parallel“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tw28_report.txt
0x4005 : SC_AMP_LOW 0x00 : : : : : : : : : 0x4006 : SC_AMP_HIGH 0x00 : : : : : : : : : 0x4007 : S_OFS_BASE 0x00 : : : : : : : : : 0x4008 : C_OFS_BASE 0x00 : : : : : : : : : 0x4009 : SC_OFS_LIM 0x00 : : : : : : : : : 0x400a : SC_OFS_TH 0x00 : : : : : : : : : 0x400b : SC_BAL_BASE 0x00 : : : : : : : : : 0x400c : SC_BAL_LIM 0x00 : : : : : : : : : 0x400d : SC_BAL_TH 0x00 : : : : : : : : : 0x400e : SC_PH_BASE 0x00 : : : : : : : : : 0x400f : SC_PH_LIM 0x00 : : : : : : : : : 0x4010 : SC_PH_TH 0x00 : : : : : : : : : 0x4011 : Z_PH_TH 0x00 : : : : : : : : : 0x4012 : S_OFS_COR 0x00 : : : : : : : : : 0x4013 : S_OFSA_COR
in „iC-TW28 C-Code.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
non_blocking_timed_block.h
1000/60 = 71.58 min // uint32_t millis() rolls over after 2^32 /1000/60/60/24 = 49.710 days // uint16_t micros() 4µs tick, rolls over after 2^16 /1000 = 65.535 ms // uint16_t millis() rolls over after 2^16 /1000 = 65.535 sec // refresh time stamp +=t, if a more exact repeated time period is needed //
in „c prog, usefull macros, u32->f, f->u32, better do/while block“ · Mikrocontroller und Digitale Elektronik ·
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Datei
standard.dio.txt
=0.4798 Cjo=4.023E-11 Vj=0.6144 M=0.3297 Fc=0.5 Iave=250M Vpk=15 Mfg=NXP Type=ZENER) .model BZX384B16 D(Is=1.13E-14 N=1.103 BV=16 IBV=0.005 Rs=0.4798 Cjo=3.509E-11 Vj=0.6502 M=0.3378 Fc=0.5 Iave=250M Vpk=16 Mfg=NXP Type=ZENER) .model BZX384B18 D(Is=1.13E-14 N=1.103 BV=18 IBV=0.005 Rs=0.4798 Cjo=3.17E
in „Hilfe bei LTSpice nötig!“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
xlltemac_example_intr_sgdma.c
TemacSgDmaIntrExample(XIntc * IntcInstancePtr, XLlTemac * TemacInstancePtr, XLlDma * DmaInstancePtr, u16 TemacDeviceId, u16 TemacIntrId, u16 DmaRxIntrId, u16 DmaTxIntrId); int TemacSgDmaIntrSingleFrameExample(XLlTemac * TemacInstancePtr, XLlDma * DmaInstancePtr); int TemacSgDmaIntrCoalescingExample(XLlTemac
in „Xilinx, TemacSgDmaIntrCoalescingExample()“ · FPGA, VHDL & Co. ·
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PDF
vitrohm-crf-wirewound-safety-resistor-datasheet.pdf
330 CRF250 Blister tape 5,7 16,7 24 2,0 8 7,6 1000 CRF300 CRF300 CRF300 15(inch) CRF400 6,0 21,4 32 2,0 12 8,1 CRF400 33,4 37,4 100 380 CRF400 Blister tape Ordering Code for SMD: CRF 300 J K - ZB- 150R UL Serie * Power rating Tol. Pack-Code TCR Forming type R Value Special J = ±5% K = Blister - Base on ZB- Z version UL = UL Version Tape Reel spec. This type CRF is also available in a different pre-forming, as shown below, other’s upon request. THOUGH HOLE VERSION Axial Goal Post (AG-) Axial Goal
in „Neff Steuerplatine Leiterbahnen abgerissen.“ · Platinen ·
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PDF
an90f.pdf
accessory circuits. Changes necessitated by the grounded anode operation lardecreaseinnoise.Figure16showsjust20 A P-P noise, about 0.001% of the 2A DC laser current. Fundamental appear on the schematic. A = 20 A/DIV AC COUPLED ONLEVELC 2 s/DIV AN90 F14 Figure 16. Figure 15’s Output Noise Measures 20P-P
in „Mosfet Laser Treiber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOSFET-Basics_AN-9010.pdf
1. High input impedance - voltage controlled device - easy to drive. To maintain the on-state, a base drive current which is 1/5th or 1/10th of collector current is required for the current controlled device (BJT). And also a larger reverse base drive current is needed for the high speed turn-off of the current controlled device (BJT). Due to these charac- teristics base drive circuit design becomes complicated and expensive. On the other hand, a voltage controlled MOSFET is a switching device which is driven by a channel at the semicon- ductor’s surface due to the
in „MOSFET ohne Body-Diode“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RJPLB203TC1.pdf
NUMBER:RD-SDRJPLB-203TC1 DATE : 2008/02/04 R(REV:A4) Single 10/100 BASE-TX Filtered Connector Integrated LED (PoE ) MODEL NO. : RJPLB-203TC1 Features: ◎ RoHS Compliant ◎ Fully shielded magnetics protect data from internally generated digital noise ◎ Reduces the overall
in „Suche Quelle für 10/100 Base-TX POE-Ethernet RJ45-Buchse mit Übertragern und Gleichrichtern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lpc24xx_externalmemory.pdf
*/ dwtemp = *((volatile INT32U *)(SDRAM_CS0_BASE | 0x00008800)); /* 4 burst, 2 CAS latency */ #ifdef SDRAM_CS1_CONFIG_32BIT dwtemp = *((volatile INT32U *)(SDRAM_CS1_BASE | 0x00011000)); /* 4 burst, 2 CAS latency */ #endif #ifdef SDRAM_CS1_CONFIG_16BIT wtemp = *((volatile INT16U *)(SDRAM_CS1_BASE | 0x00008C00)); /* 8 burst, 2 CAS latency */ #endif EMCDINAMICCTRL = 0x00000000; /* Issue NORMAL command */ EMCDYNAMICCFG0 = 0x00085500; /* 128MB, 4Mx32, 4 banks, row=12, column=8
in „LCD Timings - SVGA - LPC2478“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lpc24xx_externalmemory.pdf
*/ dwtemp = *((volatile INT32U *)(SDRAM_CS0_BASE | 0x00008800)); /* 4 burst, 2 CAS latency */ #ifdef SDRAM_CS1_CONFIG_32BIT dwtemp = *((volatile INT32U *)(SDRAM_CS1_BASE | 0x00011000)); /* 4 burst, 2 CAS latency */ #endif #ifdef SDRAM_CS1_CONFIG_16BIT wtemp = *((volatile INT16U *)(SDRAM_CS1_BASE | 0x00008C00)); /* 8 burst, 2 CAS latency */ #endif EMCDINAMICCTRL = 0x00000000; /* Issue NORMAL command */ EMCDYNAMICCFG0 = 0x00085500; /* 128MB, 4Mx32, 4 banks, row=12, column=8
in „LPC24xx Timing Diagramm für Memory Controller?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
F30x_Blinky.c
0xcc; // Timer2 counter sfr16 PCA0CP1 = 0xe9; // PCA0 Module 1 Capture/Compare sfr16 PCA0CP2 = 0xeb; // PCA0 Module 2 Capture/Compare sfr16 PCA0 = 0xf9; // PCA0 counter sfr16 PCA0CP0 = 0xfb; // PCA0 Module 0 Capture/Compare //---
in „Programmierproblem SiLabs C8051F300“ · Mikrocontroller und Digitale Elektronik ·
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Datei
F30x_Blinky.c
0xcc; // Timer2 counter sfr16 PCA0CP1 = 0xe9; // PCA0 Module 1 Capture/Compare sfr16 PCA0CP2 = 0xeb; // PCA0 Module 2 Capture/Compare sfr16 PCA0 = 0xf9; // PCA0 counter sfr16 PCA0CP0 = 0xfb; // PCA0 Module 0 Capture/Compare //---
in „Brauche Hilfe beim Programmiern von Silab MCU“ · Mikrocontroller und Digitale Elektronik ·