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RS0012.pdf
together 1/3 : COM1~5, COM6~10 and COM11~16 1/4 : COM1~4, COM5~8, COM9~12 and COM13~16 1/5 : COM1~3, COM4~6, COM7~9, COM10~12 and COM13~16 1/6 : COM1~2, COM3~4, COM5~6, COM7~8, COM9~10, COM11~16 1/7 : COM1~2, COM3~4, COM5~6, COM7~
in „Brauche Hilfe Oled Display 2x16 EA W162-X3LG“ · Mikrocontroller und Digitale Elektronik ·
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Datei
vl6180x.c
Adresse) { VL6180x_writetRegister(I2C_Port,Adresse, VL6180X_SYSTEM_FRESH_OUT_OF_RESET, 0x00); delay_ms(10); // SR03 empfohlenen Einstellungen aus AN4545 VL6180x_writetRegister(I2C_Port,Adresse,0x0207, 0x01); delay_ms(10); VL6180x_writetRegister(I2C_Port,Adresse,0x0208, 0x01); delay_ms(10); VL6180x_writetRegister
in „STM32F1 Probleme mit Frings I2C-Bus Routine“ · Mikrocontroller und Digitale Elektronik ·
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lpc1769_imu_v2.pdf
+ - 1 1 2 3 4 5 6 7 8 - J V 0 3 - 1 3 5 7 9 + H D T W +3V3 2 4 A F S I R21 GPIO2 C 1 A 2 4 6 8 1 V 10k 1 2 . C T 3 4 1 . A 1 3 IC1 5 6 LPC1768or LPC1769 A 1 U 7 8 S L 4 TRST_N 9 10 95 P1.0/ENET-TXD0 P0.0/CAN_RX1/TXD3/SDA1 46 S 2 TDI 94 P1.1/ENET-TXD1 P0.1/CAN_TX1/RXD3/SCL1 47 3 TMS/SWDIO 93 P1.4/ENET-TX_EN
in „Schaltplan Prüfung/Kritik LPC1769 + IMU + Bluetooth“ · Mikrocontroller und Digitale Elektronik ·
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am79c961.pdf
CHARACTERISTICS: SERIAL EEPROM Parameter Symbol Parameter Description Test Conditions Min Max Unit SR1 EESK High Time 790 ns SR2 EESK Low Time 790 ns SR3 EECS EEDI From EESK 15 15 ns SR4 EECS, EEDI and SHFBUSY 15 15 ns From EESK SR5 EECS Low Time 1590 ns SR6 EEDO Setup to EESK 35 ns SR7 EEDO Hold From
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Datei
fet140_uart07_09600.c
CHAR; // 8-bit character, SWRST=1 UTCTL0 |= SSEL0; // UCLK = ACLK UBR00 = 0x03; // 9600 from 1Mhz UBR10 = 0x00; // UMCTL0 = 0x4A; // Modulation UCTL0 &= ~SWRST; // Initialize USART state machine IE1 |= URXIE0 + UTXIE0; // Enable USART0 RX/TX interrupt IFG1 &= ~UTXIFG0; // Clear inital flag on POR _BIS_SR
in „MSP430 Problem mit uart“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sample_code_main.c.txt
#include "stm32f10x.h" volatile unsigned int TimeTick=0; volatile unsigned int oneMsTick=0; void TIM3_IRQHandler(void) { //debugging: one high-pulse on GPIO A3 GPIOA->BSRR = GPIO_Pin_3; GPIOA->BRR = GPIO_Pin_3; TimeTick++; oneMsTick++; TIM3->SR = (uint16_t)~TIM_IT_Update; //statement with no effect (but on volatile variable , so it cannot be optimized out completely) //does not change target size, but changes behaviour for optimization O3 (
in „STM32: Timer-ISR löst 2x aus - Fehler im Flag-Reset bei Optimierung O3“ · Mikrocontroller und Digitale Elektronik ·
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HyperX_Cloud_Headset_de.pdf
IV M F O M FORO R AU O PUSA GG M M CO U MALD R IO ING C 53 CEse S NC UP EG AM EM T H AludHad LHI E SR O - S UP EHyprC B O FIC P D O LD ROR S AA E A B ADII BEH O C HyperX Cloud Headset Game without pain. Pain“. Der gepolsterte Kopfbügel des HyperX™ Cloud, die Ohrpolster aus sich Deinem Kopf superweich
in „Wie Mikrofon anpassen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
quantum_mac_sa.31m__sa.33m__and_sa.35m_datasheet.pdf
to peak]: ≥17 years @ 40°C (Ground, fixed, GF) Storage and transport (non operating): Per Telcordia SR-332, Issue 1: SA.35m SA.33m SA.31m Temperature: -55°C to +100°C (0°C to 70°C) ≤7E-11 ≤1E-10 ≤7E-10 ≥20 years @ 40°C (Ground, fixed, uncontrolled) Vibration (non-operating Connector: 5 Pins match standard OCXO configurations (-10°C to 75°C) ≤1E-10 ≤1.5E-10 ≤1E-9 unpackaged): 10.9 grms @ 1 hour/axis Accuracy at shipment: <±5E-11 (25°C) Pin 1: Input frequency control per MIL-STD-810, figure Pin 2*: Baseplate (connect to GND externally
in „Bezugsquelle Rubidium Standard Referenz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f4x7_eth.c
ETH_AutomaticPadCRCStrip = ETH_AutomaticPadCRCStrip_Disable; /* half-duplex mode retransmission Backoff time_limit = 10 slot times*/ ETH_InitStruct->ETH_BackOffLimit = ETH_BackOffLimit_10; /* half-duplex mode Deferral check disabled */ ETH_InitStruct->ETH_DeferralCheck = ETH_DeferralCheck_Disable; /* Receive all frames
in „Olimex STM32E407, FreeRTOS und lwip“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
ADCH =$05 .equ ADCL =$04 .equ I2DR =$03 .equ I2AR =$02 .equ I2SR =$01 .equ I2BR =$00 .equ TWDR =$03 .equ TWAR =$02 .equ TWSR =$01 .equ TWBR =$00 ;***** Bit Definitions ;GICR (former GIMSK) .equ INT1 =7 .equ INT0 =6 .equ IVSEL =1 ; interrupt vector select .equ IVCE
in „DMX Dimmerpack bauen“ · Mikrocontroller und Digitale Elektronik ·
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ti_aktiv_filter_sloa088.pdf
and R 1 4pf c 1 2 4pfcC 1 2 and obtain 2 1.618·1.5·10 *9 * Ǹ ǒ1.618·1.5·10 *9 Ǔ * 4·1·820·10 *12 ·1.5·10*9 R + + 1.87 kW 1 4p·50·10 ·820·10 *12·1.5·10 *9 2 1.618·1.5·10 *9 ) Ǹ ǒ1.618·1.5·10 *9 Ǔ * 4·1·820·10 *12 ·1.5·10*9 R 2 + + 4.42 kW 4p·50·10 ·820·10
in „OP-Schaltung: Rechteck zu Sinus“ · Analoge Elektronik und Schaltungstechnik ·
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MCP2551.pdf
reces) Recessive output current -2 +2 mA -2V < VCAHL,CANH) < +7V, I(CANL)(reces) 0V <VDD < 5.5V D9 -10 +10 mA -5V < VCANL,CANH) < +40V, 0V <VDD < 5.5V D10 VO CANH ) CANH dominant output voltage 2.75 4.5 V VTXD = 0.8V D11 V OCANL ) CANL dominant output voltage 0.5 2.25 V VTXD = 0.8V D12 VDIFF(r)(o) Recessive
in „CAN-BUS - Nur empfangen - Was mache ich mit dem TXD Pin am Tranceiver??“ · Mikrocontroller und Digitale Elektronik ·
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sony_str-de485_service_brazil.pdf
paraligaroaparelho. A mensagemS. F. CLR aparece dB ( ( ( L F E ) ) ) kHz e o aparelho inicializa. SL S SR mft. MHz PASSO DE CANAL AM 9 kHz/10 kHz [MULTICHANNELDECODING],[DigitalCinemaSound],SOUND MODO DE SELE O FIELD [A.F.D.], [MODE], [2CH] e [SET UP] LED acendem. * Tanto o passo 9 kHz quanto o passo10 kHz
in „Reparaturanleitung Sony STR-DE585 FM STEREO/FM-AM RECEIVER Surround“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f2xx_rcc.h
15)) #define IS_RCC_PLLI2SN_VALUE(VALUE) ((192 <= (VALUE)) && ((VALUE) <= 432)) #define IS_RCC_PLLI2SR_VALUE(VALUE) ((2 <= (VALUE)) && ((VALUE) <= 7)) /** * @} */ /** @defgroup RCC_System_Clock_Source * @{ */ #define RCC_SYSCLKSource_HSI ((uint32_t)0x00000000) #define RCC_SYSCLKSource_HSE ((uint32_t)0x00000001
in „STM32F2xx USART weigert sich“ · Mikrocontroller und Digitale Elektronik ·
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ne5532.pdf
600 V swing VCC〉 = 〉 18 V 30 32 R L 600 , TA= 25⋅C 15 50 Large-signal differential voltage V O = 〉 10 V TA= Full range 10 AVD V/mV amplification R L 2 k , TA= 25⋅C 25 100 V = 〉 10 V O TA= Full range 15 Small-signal differential voltage Avd amplification f = 10 kHz 2.2 V/mV R L 600 VO = 〉 10 V 140 BOM
in „NF Vorverstärker mit Ne5532 WIE ?“ · Analoge Elektronik und Schaltungstechnik ·
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L9473.pdf
10% to 95% load 300 mV LR V Speed Regulation 15A load, 2000 to 20,000 grpm 100 mV SR V F-ON Output Saturation Voltage F = 6A, GO = 14.0V, case= 750 mV 25°C V Output Saturation Voltage I = 5A, V = 13.5V,
in „Suche Bauteil L9473“ · Mikrocontroller und Digitale Elektronik ·
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Datei
extint.c
uart_putc(59); //; uart_putc(49); //1 uart_putc(59); //; uart_putc(59); //; uart_puts(itoa(gyroADC[ROLL],s,10)); uart_putc(59); //; uart_puts(itoa(gyroADC[PITCH],s,10)); uart_putc(59); //; uart_puts(itoa(gyroADC[YAW],s,10)); uart_putc(59); //; uart_puts(itoa(accADC[ROLL],s,10)); uart_putc(59); uart_puts(itoa(accADC[PITCH],s,10)); uart_putc(59); uart_puts(itoa(accADC[YAW],s,10)); uart_putc(59); uart_puts("0"); //0 uart_putc(13); //CR uart_putc(10); //LF } return 0; } */
in „sei() - und das Programm läuft nicht“ · Mikrocontroller und Digitale Elektronik ·
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SMAJx.pdf
IT V ID@VWM VC@ I PPM IPPM Min. Max. WM UNI BI V V mA V μA V A SMAJ5.0A SMAJ5.0CA 4 AE WE 6.40 7.07 10 5.0 800 9.2 43.5 SMAJ6.0A SMAJ6.0CA AG WG 6.67 7.37 10 6.0 800 10.3 38.8 SMAJ6.5A SMAJ6.5CA AK WK 7.22 7.98 10 6.5 500 11.2 35.7 SMAJ7.0A SMAJ7.0CA AM WM 7.78 8.60 10 7.0 200 12.0 33.3 SMAJ7.5A SMAJ7.5CA
in „Was für ein Bauteil ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
EMS_Adapter.xml
s5vXqA7Xo+OKrmCD8dyL5KXAyD6rv2oF89O+t2cK9LoGbOX1H8dNmJUtJmq0KDHwyb01t6kBmTMaSwAHeGrwuJJuOm93h1kvDgrj/P9SR6HamfGfJnbcCm3xYSM8ZIrPyLT/mNSsrTirlq9a+3QJo0mXQEtno0n10IaB8pMuYQXCGDlRg72Go0H8l8gCxAvj8ZOv2e1pj39e1pRnhT11vFIDHNrIms7OvDbl7myiWh+gGIm354rKTucdm268/cYa72DlgeXuD01q33Cna+77b6JqLNRhqFeTQSpd4ch3ceFZvnxb9DSMRNxTuyT
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Datei
EMS_Adapter.xml
s5vXqA7Xo+OKrmCD8dyL5KXAyD6rv2oF89O+t2cK9LoGbOX1H8dNmJUtJmq0KDHwyb01t6kBmTMaSwAHeGrwuJJuOm93h1kvDgrj/P9SR6HamfGfJnbcCm3xYSM8ZIrPyLT/mNSsrTirlq9a+3QJo0mXQEtno0n10IaB8pMuYQXCGDlRg72Go0H8l8gCxAvj8ZOv2e1pj39e1pRnhT11vFIDHNrIms7OvDbl7myiWh+gGIm354rKTucdm268/cYa72DlgeXuD01q33Cna+77b6JqLNRhqFeTQSpd4ch3ceFZvnxb9DSMRNxTuyT
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MIC6211.pdf
dB PSRR Power Supply Rejection Ratio V S= ±2.5V to ±15V 65 110 dB A Large Signal Voltage Gain V = ±10V 25 180 V/mV VOL O VOUT Maximum Output Voltage Swing ±12.5 ±14 V B Bandwidth 2.5 MHz W SR Slew Rate 6 V/µs I Output Short Circuit Current Sourcing or sinking 30 50 mA SC IS Supply Current 1.3 2.0 mA
in „Einstellbarer Linearregler - in etwa so?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2015-02_retrofit-led_d.pdf
scheNiederspannungserzeugnisse(NEV; takt mit spannungsführende Teilen Inverkehrbringen gemäss NEV SR734.26) entsprechen, damit einInver- ■■Aufbau ■■ LED-Röhren, die eine gefährliche kehrbringen zulässig ist. Die im Jahr ■■Wärmebeständigkeit Durchgangspannung zwischen den bei- 2010 im Bulletin 10/2010
in „Leuchtstoffröhre durch LED ersetzen“ · Haus & Smart Home ·
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PDF
datasheetTD310.pdf
LOGIC INPUT (all inputs) VIH High Input Voltage 2 V VIL Low Input Voltage 0.8 V IIH High Input Current 10 pA I Low Input Current 10 pA IL Propagation Delay (10% input to10% output) ns tdH, eH Output Rise 200 400 dL, eL Output Fall 60 400 T min. Tamb Tmax. tii Input Inhibiting Time 100 ns dd Differential
in „Mosfet Treiber (low side) mit current sense Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheetTD310.pdf
LOGIC INPUT (all inputs) VIH High Input Voltage 2 V VIL Low Input Voltage 0.8 V IIH High Input Current 10 pA I Low Input Current 10 pA IL Propagation Delay (10% input to10% output) ns tdH, eH Output Rise 200 400 dL, eL Output Fall 60 400 T min. Tamb Tmax. tii Input Inhibiting Time 100 ns dd Differential
in „Geteilte Spannungsversorgung von Arduino, IC und Power-LEDs blockiert Funktionsfaehigkeit“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pic24h_1.s
, 0x2C60 , 0x2A00 , 0x27C0 .word 0x2580 , 0x2350 , 0x2120 , 0x1F10 , 0x1D10 .word 0x1B10 , 0x1930 , 0x1750 , 0x1590 , 0x13E0 .word 0x1230 , 0x10A0 , 0x0F20 , 0x0DB0 , 0x0C50 .word 0x0B00 , 0x09C0 , 0x0890 , 0x0780 , 0x0670 .word 0x0580 , 0x04A0 , 0x03D0 , 0x0320 , 0x0270
in „DSPic33 Einführung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
lpc111x.h
#define BIT6 (1 << 6) #define BIT7 (1 << 7) #define BIT8 (1 << 8) #define BIT9 (1 << 9) #define BIT10 (1 << 10) #define BIT11 (1 << 11) #define BIT12 (1 << 12) #define BIT13 (1 << 13) #define BIT14 (1 << 14) #define BIT15 (1 << 15) #define BIT16 (1 << 16) #define BIT17 (1 << 17) #define BIT18 (1 << 18
in „LPC1114FN28 und GPIO“ · Mikrocontroller und Digitale Elektronik ·
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TSC2003.pdf
Into Power-Down Mode After Finishing Conversion (If PD0 = 0) Exit HS-Mode and Enter F/S Mode D11 D10 D9 D8 D7 D6 D5 D4 A D3 D2 D1 D0 0 0 0 0 N P 16 Bits + Ack S = START = Master Controls Bus Sr = REPEATED START P = STOP = Slave Controls Bus FIGURE 14. High-Speed I C Mode Conversion Cycle. TSC2003 17
in „Hilfe mit Touchscreen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WISMO218_AT_Commands_User_Manual-Rev001.pdf
April 24, 2009 WISMO218 AT Command Manual Clarification When +CSMS <service> is set to 0, all received SR are automatically acknowledged before +CDS is sent to TE. When +CSMS <service> is set to 1, SR has to be acknowledged to network thanks to +CNMA commands. Depending of <mode>, <mt> and channel status
in „wavecom wismo218 guthaben auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HRP-450-spec.pdf
FUNCTION DC OK SIGNAL PSU turn on : 3.3 ~ 5.6V ; PSU turn off : 0 ~ 1V FAN CONTROL (Typ.) Load 20±10% or RTH2≧50℃ Fan on WORKING TEMP. -40 ~ +70℃ (Refer to "Derating Curve") WORKING HUMIDITY 20 ~ 90% RH non-condensing ENVIRONMENT STORAGE TEMP., HUMIDITY -40 ~ +85℃, 10 ~ 95% RH non-condensing TEMP. COEFFICIENT ±0.03%/℃ (0 ~ 50℃) VIBRATION 10 ~ 500Hz, 5G 10min./1cycle, 60min. each along X, Y, Z axes SAFETY STANDARDS UL62368-1,TUV BS EN/EN62368-1, AS/NZS62368.1,EAC TPTC 004 approved SAFETY & WITHSTAND VOLTAGE I/P-O/P:3KVAC I/P-FG:2KVAC O/P-FG
in „Meanwell HRP-450-5 Kurzschluss Primärseite“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LP171WP4-TLB1.pdf
60 60% Wet Bulb 50 H m Storage Temperature [℃] i 40% i 40 y 30 % Operation ) 20 H 10 20 % ] 0 10% -20 0 10 20 30 40 50 60 70 80 Dry Bulb Temperature [℃] Ver. 1.0 Mar. 13, 2007 5 / 27 LP171WP4 Liquid Crystal Display Product Specification 3. Electrical Specifications 3-1. Electrical Characteristics
in „Display VGA --> lvds: LP171WP4 TLB1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC547_datasheet.pdf
260 BC546B/547B/548B 240 330 500 BC547C/548C 450 600 900 Noise Figure NF dB (C = 0.2 mA,CE = 5.0 V,SR = 2 kW, BC546 — 2.0 10 f = 1.0 kHz, f = 200 Hz) BC547 — 2.0 10 BC548 — 2.0 10 Note 1: I is value for which I = 11 mA a= 1.0 V. B C CE 2 Motorola Small–Signal Transistors, FETs and Diodes Device Data BC546, B BC547, A, B, C BC548, A, B, C 2.0 1.0 I VCE =10V 0.9 TA=25⋅C G 1.5 T =25⋅C T A 0.8 E ) V BE(sat) C B=10 R 1.0 S 0.7 U L C 0.8 V 0.6 VBE(on)V CE =10V C E D G 0.5 E 0.6 T L O 0.4 A , R 0.4 V 0.3 O , 0.3 0.2 F VCE(sat) C B=10 h 0.1 0.2 0 0.2 0.5 1.0
in „NPN mit PNP Transistor ersetzen für SHARP Pocket-Interface?“ · Mikrocontroller und Digitale Elektronik ·
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AiMS2000.pdf
1 2 3 4 5 6 7 8 3 3 +3V3 - + - 1 1 2 3 4 5 6 7 8 C9 - J C22 C21 C1 C2 C7 C10 V 0 10uF 100nF10nF 100nF10nF 100nF10nF 3 RX3 - 1 3 5 7 9 + H D 2 4 6 T W +3V3 A F S I R21 GPIO2 C A 2 4 6 8 1 V 10k 1 2 . C R 3 4 1 . A 1 3 5 IC1 5 6 LPC1768or LPC1769 A 1 U 3 7 8 S L TX3 3 4 TRST_N
in „Schaltplan Prüfung/Kritik LPC1769 + IMU + Bluetooth“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OP184_284_484.pdf
1.0 mA 125 mV Output Current OUT ±6.5 mA POWER SUPPLY Power Supply Rejection Ratio PSRR V S 2.0V to 10V, −40°C ≤TA≤ +125°C 76 dB Supply Current/Amplifier SY V O 2.5V, −40°C ≤T A +125°C 1.45 mA SupplyVoltage Range VS 3 36 V DYNAMIC PERFORMANCE Slew Rate SR RL= 2 kΩ 1.65 2.4 V/μs SettlingTime tS To 0.01%
in „Bestellbezeichnung OP184ESZ / OP184FSZ“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ca3140-a.pdf
Output Voltage (See Figures 2, 8) VOM + 3 3 V VOM - 0.13 0.13 V Maximum Output Current: Source IOM+ 10 10 mA I Sink OM - 1 1 mA Slew Rate (See Figure 31) SR 7 7 V/s Gain-Bandwidth Product (See Figure 30) f 3.7 3.7 MHz T Supply Current (See Figure 32) I+ 1.6 1.6 mA Device Dissipation P 8 8 mW D FN957
in „OpAmp Ausgang schwingt mit 50Hz (oder 100)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
440Hz.lst
Ausgang, für das Datenrichtungsregister 9/ 302 : 8D 81 1A STA PADD ; Direktionsregister PADD: "OUT" 10/ 305 : A9 FF M1 LDA #$FF ; FF als DATEN, für das Datenregister 11/ 307 : 8D 80 1A STA PAD ; PAD: "FF" (später "00") 12/ 30A : 20 18 03 JSR SUB ; JumpToSubRoutine Zeitverzögerung DELAY. 13/ 30D : A9 00
in „Einfache CPU, einfacher Rechner, nur zum Lernen, Erfahrung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Arduino_Project_Handbook_25_Practical_Projects_to_Get_You_Started.pdf
breadboards 1 half-size breadboard 1 mini breadboard 50 male-to-male jumper wires 11 • p roject 0 10 female-to-male jumper wires 30 220-ohm resistors 10 330-ohm resistors 1 470-ohm resistor 1 10k-ohm resistor 1 1M-ohm resistor 40 5 mm LEDs: red, green, yellow, blue (10 of each color) 1 50k-ohm potentiometer
in „LED Driver mit µC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0900766b80d6fc8d.pdf
20 ns RE High to Output High Z RHZ 50 ns CE High to Output High Z CHZ 50 ns RE High Hold Time REH 10 ns Output High Z to RElow tIR 0 ns CE Access Time CEA 25 ns WE High to RE low tWHR 60 ns RE or CE High to Output Hold tOH 10 ns Device Resetting Time (Read / Program / Erase) tST 5/10/500(1) us Write
in „NAND auslesen und schreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS-TWN4-MultiTech-LEGIC-42_DocRev14.pdf
peer-to-peer mode - initiator, NFC Tag 2, 3, 4 ISO15693: EM4x33 , EM4x35 , HID iCLASS , HID iCLASS SE/SR , ICODE SLI, LEGIC Advant, 3) 4) M24LR16/64, SRF55Vxx (my-d vicinity) , Tag-it, PicoPass LEGIC Prime: LEGIC Prime AWID, Cardax, CASI-RUSCO, Deister , EM4100, 4102, 4200 , EM4050, 4150, 4450, SUPPORTED TRANSPONDERS 9) 9) 9) 10) 10) 10) 9) 6) 4550, EM4305 , FDX-B , EM4105 , HITAG 1 , HITAG 2 , HITAG S , ICT , IDTECK, (STANDARD) 125 KHZ , Isonas , Keri, Miro, Nedap , PAC , Pyramid, Q5, T5557, T5567, T5577, TIRIS/HDX , 9) 134.2
in „Erbitte Hilfe bei RFID Projekt Tierchip von Streunerkatzen auslesen“ · Offtopic ·
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PDF
OP_INA2126PA.pdf
PORTABLE, BATTERY OPERATED SYSTEMS INA2126 9 VIN 2 6 + – 3 V O= (VIN VIN G 40kΩ 7 G = 5 +80kΩ V+ RG 10kΩ 7 RG INA126 VIN 3 4 6 + – 10kΩ 8 VO= (VIN VIN G – 1 40kΩ G = 5 +0kΩ VIN RG 40kΩ 5 10kΩ + 15 R G VIN 11 V = (V+ – V ) G 10kΩ 14 O IN IN 40kΩ 80kΩ 1 G = 5 + RG 10kΩ 10 – 2 RG VIN 40kΩ 5 13 10kΩ 4 – VIN
in „OPV Signal von µV Bereich verstärken“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLV2462.pdf
, V DD = 5 V (unless otherwise noted) PARAMETER TEST CONDITIONS TA † MIN TYP MAX UNIT 25°C 0.9 1.6 SR Slew rate at unity gain VO(PP) = 2 V, C L 160 pF, Full V/µs RL= 10 kΩ 0.8 range f = 100 Hz 25°C 14 Vn Equivalent input noise voltage nV/√Hz f = 1 kHz 25°C 11 n Equivalent input noise current f = 100
in „frage zu einfachem uC Ohmmeter“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Spi_Unit.vhd
signal lfsr_q: std_logic_vector (7 downto 0); signal lfsr_c: std_logic_vector (7 downto 0); signal Clk_sr: std_logic_vector(2 downto 0); begin ---------------------------------------------- ---------------------------------------------- process(Spi_CLK,SPI_EN,Spi_CLK_counter) begin if(Spi_CLK'event and Spi_CLK
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Datei
0221-TS-_antwort_empfangen_512-Test.c
unsigned char rx_daten[5]; //unsigned char rx_daten[8]; unsigned char rx_daten[512]; char tmp_string[10]; unsigned char daten1, daten2, daten3, daten4,daten5,daten6,daten7,d3[512],d2[512],d1[512],ZeitOB=0xFF,ZeitUB=0xFF; unsigned int sector=619,k; const unsigned char config_E32[] = { 0xC0, // sichert die
in „512 Byte-Sektor einer SD-Karte mit E32-868T drahtlos übertragen“ · Mikrocontroller und Digitale Elektronik ·
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energies-15-09251.pdf
Approach 50 Previous Approach Proposed Algorithm Proposed Algorithm Non-linear 40 Non-linear 30 30 20 20 10 10 0 0 0 10 20 30 40 50 0 10 20 30 40 50 (a) (b) Figure 8. Parameter estimation of the CT Arc. Blue line shows the % error in parameters estimation using previous approach. % error in parameters estimation
in „Batterieheizung durch Ripplestrom“ · Fahrzeugelektronik ·
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PDF
RB551V-30.pdf
1cyc. GN e w G N SR 10 AVE : 8.60A S R 10 AC R e A C PAD t P A R 5 N R F o F N 0 1 1 10 100 FSMDISPERSION MAP NUMBER OF CYCLES FSM-CYCLE CHARACTERISTICS www.rohm.com © 201▯ ROHM Co., Ltd. All rights reser3/5. 2015.01 -
in „Hilfeee Ich suche eine Diode!!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
00643b.pdf
+= step >> 2; 5. Fixed predictor computes new predicted sample if(code & 8) predsample -= diffq; (sr) by adding the old predicted sample (p ) to the predicted difference (q ) else predsample += diffq; 6. Check for overflow of the new predicted sample if(predsample > 32767) predsample = 32767; (sr).sr
in „Messdaten Kompression“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
boot.txt
snoopy@snoopy-desktop) (gcc version 4.2.0 20070413 (prerel ease) (CodeSourcery Sourcery G++ Lite 2007q1-10)) #232 Sat Jun 20 00:39:27 CEST 2009 CPU: ARM926EJ-S [41069265] revision 5 (ARMv5TEJ), cr=00057177 Machine: Atmel AT91SAM9260-EK Memory policy: ECC disabled, Data cache writethrough Clocks: CPU 198 MHz
in „Siemens S65 Ls020 Linux Framebuffer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
boot2.txt
snoopy@snoopy-desktop) (gcc version 4.2.0 20070413 (prerel ease) (CodeSourcery Sourcery G++ Lite 2007q1-10)) #232 Sat Jun 20 00:39:27 CEST 2009 CPU: ARM926EJ-S [41069265] revision 5 (ARMv5TEJ), cr=00057177 Machine: Atmel AT91SAM9260-EK Memory policy: ECC disabled, Data cache writethrough Clocks: PLLA overclocked
in „Siemens S65 Ls020 Linux Framebuffer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
at91_twi.h
Slave Address */ #define AT91_TWI_IADR 0x0c /* Internal Address Register */ #define AT91_TWI_CWGR 0x10 /* Clock Waveform Generator Register */ #define AT91_TWI_CLDIV (0xff << 0) /* Clock Low Divisor */ #define AT91_TWI_CHDIV (0xff << 8) /* Clock High Divisor */ #define AT91_TWI_CKDIV (7 << 16) /* Clock Divider */ #define AT91_TWI_SR 0x20 /* Status Register */ #define AT91_TWI_TXCOMP (1 << 0) /* Transmission Complete */ #define AT91_TWI_RXRDY (1 << 1) /* Receive Holding Register Ready */ #define AT91_TWI_TXRDY (1 << 2) /* Transmit
in „At91SAM9G20 TWI und PDC - gelesene Bytes in falscher Reihenfolgen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f4x7_eth_conf.h
Delay /* User can provide more timing precise _eth_delay_ function ex. use Systick with time base of 10 ms (as done in the provided STM32F4x7xx demonstrations) */ #else #define _eth_delay_ ETH_Delay /* Default _eth_delay_ function with less precise timing */ #endif /* Uncomment the line below to allow
in „STM32-E407 Ethernet / UDP“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.vhd
RX_STATE_RECEIVE, RX_STATE_READ_STOP_BIT , RX_STATE_STOP); signal rx_state : rx_state_t := RX_STATE_IDLE; -- SR to sync in RX data signal rx_in : std_logic_vector(2 downto 0); signal rx_data_in : std_logic_vector(WIDTH-1 downto 0) := (others => '0'); signal prescaler : integer range 0 to OVERSAMPLING_RATIO-1 :
in „[Anfänger] RS232 Modul in VHDL - Kritik erwünscht“ · FPGA, VHDL & Co. ·