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PDF
ADXL202E.pdf
11.3 11.8 12.3 12.8 13.3 13.8 PERCENT DUTY CYCLE/g PERCENT DUTY CYCLE/g TPC 8. X-Axis Sensitivity at X , V = 3 V TPC 11. X-Axis Sensitivity at X , V = 5 V OUT DD OUT DD 20 25 18 16 20 S14 S T T A A P12 P 15 O F T10 T N N C 8 C 10 R R P 6 P 4 5 2 0 0 9.50 9.90 10.4 10.8 11.3 11.8 12.2 12.7 10.6 11.0
in „Noise Performance“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LENOVO_THINKPAD_YOGA_900-13ISK_LCFC_NM-A411_BYG40_Rev1.0.pdf
CL KOUT_PCIE_P1 CLKOUT_ITPXDP_N E43 TP90 TESTPAD 21 CK_REQ_SSD_N AT7 GPP_B6/SRCCLKREQ1# CLKOUT_ITPXDP_P TP89 BA17 D41 GPD8/SUSCLK SUS_CLK 20,21 C41 CL KOUT_PCIE_N2 E37 XTAL24_IN SRCCLKREQ2_N AT8 CLKOUT_PCIE_P2 XTAL24_IN XTAL24_OUT GPP_B7/SRCCLKREQ2
in „Notebook Leistungsteil reparatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ME8311-Microne.pdf
INV (pin 3), the auxiliary voltage is sampled at the V03 www.microne.com.cn Page 5 of 12 ME8311 middle of the demagnetization and it is hold until the next sampling. The sampled voltage is compared with V REF (2.0V) and the error is amplified. The
in „Schaltkreis 8311A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PIC16F1503.pdf
registers can be written to at any time. the PWM output. Equation 22-2 is used to calculate the PWM pulse All PWM outputs associated with Timer2 are set when width. TMR2 is cleared. Each PWMx is cleared when TMR2 Equation 22-3 is
in „Versorgungsspannung vom PIC mit PIC messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DOC004015493.pdf
±3.0% ±8.0% ±1.5% ±3.0% -3,+4% SETUP, RISE TIME 1800ms, 30ms/230VAC 3500ms, 30ms/115VAC at full load HOLD UP TIME (Typ.) 30ms/230VAC 20ms/115VAC at full load VOLTAGE RANGE Note.6 90 ~ 264VAC 127 ~ 370VDC FREQUENCY RANGE 47 ~ 63Hz POWER FACTOR (Typ.) PF>0.93/230VAC PF>0.98/115VAC at full load
in „Willtek Schlumberger Stabilock 4031 4032“ · HF, Funk und Felder ·
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PDF
Anleitung.pdf
74HC 244 www.reichelt.de/ 1 MAX232 IC2 MAX 232 CPE www.reichelt.de/ 1 Spannungsregler 7805 IC3 µA 7805 www.reichelt.de/ 1 Brückentreiber 293D IC4 L 293 D www.reichelt.de/ 1 Controller AT90S8535 PLCC IC5 AT 90S8535 PLCC www.reichelt.de/ 1
in „AVR_Ctrl mit BasCom programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmel_AVR_Lernunterlage_v2.pdf
........................................................4 2. AVR-Microcontroller AT90S8515..............................................................................5 2.1 Allgemeines..........................................................................
in „Programmer incl. neuem Code für Atmel AN910“ · Projekte & Code ·
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PDF
stepping_motor_Mdrive__OM-MD_V06.28.2002__e.pdf
changed. For example: Setting the FS parameter to 511 would configure the MDrive such that it will be at maximum velocity when the potentiometer is at 1/2 of its full deflection. Test the settings by pulling the Stop/Start input to ground by means of a switch or sinking output. Turn the potentiometer between
in „Alter Stepper-Treiber über ISP an USB parametrieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tl431book.pdf
2 π R 2 2 R 2 G 0 (13) R 1 If we apply these expressions to the 43-° phase boost at 1 kHz associated with a 22-dB gain at the same frequency, we obtain the following component values, assuming R is 10
in „Sperrwandler Dimensionierung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STM103.pdf
RAM 10 KB RAM 20 KB RAM 20 KB RAM 48 KB RAM 64 KB RAM 64 KB RAM 144 5 × USARTs 4 × 16-bit timers, 2 × basic timers 100 2 3 × USARTs 3 × SPIs, 2 × I, 2 × I2Cs 2 × USARTs 3 × 16-bit timers USB, CAN, 2 × PWM timers 64 2 × SPIs, 2 × I, USB, 3 × ADCs, 2 × DACs, 1 × SDIO 2 × 16-bit t2mers CAN, 1 × PWM timer
in „STM32 2 Versorgungsspannungen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6206.pdf
dissipation using PWM current control driving two loads, for two different driving types: One full bridge ON at a time (Figure 18) in which only one load at a time is energized. Two full bridges ON at the same time (
in „l6206 Datenblatt Fehler?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPS63031.pdf
SLVS696–OCTOBER 2008 EFFICIENCY EFFICIENCY vs vs OUTPUT CURRENT OUTPUT CURRENT 100 100 V = 3.6 V, V = 2.5 V VI= 3.6 V,OV = 2.5 V 90 I O 90 V I 2.4 V, O = 2.5 V 80 80 VI= 3.6 V,OV = 4.5 V 70 V = 2.4 V, V = 4.5 V 70 I O % V = 3.6 V, V = 4.5 V % 60 - 60 I O y c c V = 2.4 V, V = 4.5 V e 50 V = 2.4 V, V = 2.5
in „Spannungspeaks / Ripple durch Schaltregler. Abhilfe?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MW-BIC-2200.pdf
at full load n AC VOLTAGE RANGE 180 ~ 264VAC FREQUENCY RANGE 47 ~ 63Hz POW ER FACTOR (Typ.) 0.98/230VAC at full load EFFICIENCY (Typ.) Note.5 90% 93% 93% 93% INPUT AC CURRENT (Typ.) 11A/230VAC INRUSH CURRENT
in „LifePo4 mit Labornetz laden und gleichzeit entladen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NUVOTON_M058_M0516.pdf
0 AIN5 I/O These pins which are AIN0~AIN7for the 12 bits ADC function used. NC 2 P1.6 MISO_0 AIN6 I/O The RXD1/TXD1 pins are for UART1 function used. NC 3 P1.7 SPICLK0 AIN7 I/O NC 19 P2.0 PWM0 AD8 D, I/O NC 20 P2.1 PWM1 AD9 D, I/O 14 21 P2.2 PWM2 AD10 D, I/O PORT2: Port 2 is an 8
in „ARM Cortex M0 NUVOTON M058ZBN auslesen / flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SG3525ANG.pdf
O Out A PWM s 11 ADJ. RT c A 1.0k 6 i l 1.5k Deadtime l 1.0k, 1.0W a 0.009 Ramp 7 t (2) 100▯ o 5 r 14 0.1 0.001 B Out B Comp 10k 9 12 1 = V PWM GND IO 0.01 2 = 1(+) 50▯A Softstart 3 = 1(-) 1 8 1 + 2 2 1 5.0▯F -
in „Gegentaktwandler Überschwingen im Leerlauf“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NXP_Semiconductors-TDF8530TH_N2_118-datasheet.pdf
voltage P1 PGND1 7 G channel 1 power ground BOOT2N 8 bootstrap capacitor for channel 2 negative OUT2N 9 O channel 2 negative PWM output OUT2P 10 O channel 2 positive PWM output BOOT2P 11 bootstrap capacitor for channel 2 positive BOOT3P 12 bootstrap
in „Fehlersuche Hochtöner defekt VCDS Fehlercode“ · Fahrzeugelektronik ·
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PDF
LRS-350-SPEC.PDF
±0.5% ±0.5% ±0.5% ±0.5% ±0.5% LOAD REGULATION Note.5±2.5% ±2.5% ±2.0% ±1.0% ±0.5% ±0.5% ±0.5% ±0.5% SETUP, RISE TIME 1300ms, 50ms/230VAC 1300ms,50ms/115VAC at full load HOLD UP TIME (Typ.) 16ms/230VAC 12ms/115VAC at full load VOLTAGE RANGE 90 ~ 132VAC /
in „Strombegrenzung für Solar-Laderegler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT8609_StepDown.pdf
Mode Operation) Burst Mode Operation) Burst Mode Operation) 100 100 100 VIN= 12V 90 95 90 V IN= 12V VIN= 12V 80 90 80 70 VIN= 24V 85 70 ) ) VIN= 24V ) VIN = 24V ( 60 ( 80 ( 60 C C C E 50 E 75 E 50 C C C F 40 F 70 F 40 E E E 30 65 30 20 60 20 L = 2.2µH L = 2.2µH 10 f = 700kHz 55 SW =
in „LT8609 MSOP Platine. Ich bekomms einfach nicht hin.“ · Platinen ·
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SDC7500_EN.pdf
8, 11 C1, C2 Output transistor collector January,2010 Rev1.0 1/7 ○2012 Shaoxing Devechip Microelectronics Co.,Ltd www.sdc-semi.com Data sheet Voltage Mode PWM Controller SDC7500 9,10 E1, E2 Output transistor emitter
in „Wechselrichter defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
iAQ-2000_interface_V33_high_I2C_12_09.pdf
0 Date Approved by Reg. no. Version Page 03.12.2009 MH/HU PA1 1 (4) iAQ-2000 interface description 2 This document describes the readout of the iAQ-2000 sensor module with I C, RS232 TTL, analog and PWM interface. 2 Chapter 1: I C Chapter 2: PWM Chapter 3: RS232 TTL Chapter 4: Analog output 0...5V During
in „Geruchssensor - Air Wick Fresh Matic“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A200-DATASHEET_MAX756_757.pdf
TOP VIEW 2V toOUT SHDN 1 8 LX 2 7 150 F OUTPUT 3/5 MAX756 GND 5 22 H 5V at 200mA REF 3 6 OUT LBI or 4 5 1 8 1N5813.3V at 300mA LBO LBI SHDN LX 100 F DIP/SO MAX756 2 3/5 OUT 6 1 8 SHDN LX FB 2 7 GND 3 4 LOW-BATTERY
in „MAX756-Schlechter Wirkungsgrad“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A200-DATASHEET_MAX756_757.pdf
TOP VIEW 2V toOUT SHDN 1 8 LX 2 7 150 F OUTPUT 3/5 MAX756 GND 5 22 H 5V at 200mA REF 3 6 OUT LBI or 4 5 1 8 1N5813.3V at 300mA LBO LBI SHDN LX 100 F DIP/SO MAX756 2 3/5 OUT 6 1 8 SHDN LX FB 2 7 GND 3 4 LOW-BATTERY
in „Step-Up Wandler MAX756“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Atmel-42005-8-and-16-bit-AVR-Microcontrollers-XMEGA-E_Manual.pdf
[7:0] 88 +0x07 CH7MUX CH7MUX[7:0] 88 +0x08 CH0CTRL ROTARY QDIRM[1:0] QDIEN QDEN DIGFILT[2:0] 90 +0x09 CH1CTRL - - - - - DIGFILT[2:0] 90 +0x0A CH2CTRL - - - - - DIGFILT[2:0] 90 +0x0B CH3CTRL - - - - - DIGFILT[2:0] 90 +0x0C CH4CTRL - - - - - DIGFILT[2:0] 90 +0x0D CH5CTRL - - - - - DIGFILT[2:0] 90 +0x0E CH6CTRL - - - - - DIGFILT[2:0] 90 +0x0F CH7CTRL - - - - - DIGFILT[2:0] 90 +0x10 STROBE STROBE[7:0] 91 +0x11 DATA DATA[7:0] 91 +0x12 DFCTRL PRESCFILT[3:0] FILTSEL PRESC[2:0] 91 XMEGA E MANUAL 93
in „ATxmega8E5 - ADC Gain Korrektur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STC15-English.pdf
/PWMFLT� can be switched between P2, P3, and P4 0 PWM2/PWM3/PWM4/PWM5/PWMFLT on [P3.7/PWM2, P2.1/PWM3, P2.2/PWM4, M C P2.3/PWM5, P2.4/PWMFLT] 1 PWM2/PWM3/PWM4/PWM5/PWMFLT on [P2.7/PWM2_2, P4.5/PWM3_2, P4.4/ C PWM4_2, P4.2/PWM5_2, P0.5/
in „Testbericht Elektronische Last“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
msp-m_map-m_1pi.pdf
/ GlobalMSP 5 ◆ All 2-carrier TV Audio standards with NICAM – “Visual MSP” application No Demodulator MAP 0 ◆ (Very) High deviation modes HDEV2, 3 ◆ Micronas Audio Evaluation Board D/A or PWM output MSP/MAP 1 ◆ Automatic
in „suche Datenblatt/Pinbelegung für Micronas MAP5401“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NSI45060JD-D.pdf
Figure14 isatypical responseof LuminancevsDutyCycle. 6000 5000 ) 4000 Figure 11. E N Dimming using PWM N000 The dimming of an LED string can be easily achieved by M 2000 placing a BJT in series with the CCR (Figure 12). I 1000 Lux Linear 00 10 20 30 40 50 60 70 80 90 100 DUTY CYCLE (%) Figure 14. Luminous
in „Strombegrenzungs-IC?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCF7922ATT.pdf
MIN MAX UNIT Operating temperature range -40 +85 °C Storage temperature range -55 +125 °C Voltage at any I/O and BATpin to SS -0.5 3.6 V Voltage at PAOUT pin to SS -0.5 7.2 V Voltage at any I/O pin tSSV -0.5 V BAT+0.3 V Peak output current port P1x and P2x 15 mA Latch-up current, Note 1 100 mA ESD,
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SPACE_VECTOR_MODULATION_AND_CONTROL.pdf
rich variety of techniques, can be roughly divided, as shown in Figure 2.2. MULTILEVEL MODULATIONS FUNDAMENTAL PWM FREQUENCY SWITCHING SINUSOIDAL SPACE PWM VECTOR PWM Figure 2.2. Multilevel modulation techniques. 12 2.1 Multilevel Topologies Although definitions may vary,
in „Literatur für Raumzeigermodulation“ · Mikrocontroller und Digitale Elektronik ·
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Datei
8515def.inc
8515def.inc" ;* Title : Register/Bit Definitions for the AT90S8515 ;* Date : 2010-02-25 ;* Version : 2.35 ;* Support E-mail : avr@atmel.com ;* Target MCU : AT90S8515 ;* ;* DESCRIPTION ;* When including this file in the assembly program file, all I/O register
in „STK500 und UART“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M30201F6SP.pdf
clock fC BCLK CM05 CM02 CM07=1 Interrupt request level judgment output S Q WAIT instruction R b c 1/2 1/2 1/2 1/2 1/2 a CM06=0 CM17,CM16=11 CM06=1 CM06=0 CM17,CM16=10 d CM06=0 CM0i : Bit i at addre16 0006 CM17,CM16=01 CM1i : Bit i at addre16 0007 WDCi : Bit i at addres16000F CM17,CM16=00 Details of divider
in „Biete Mitsubishi / Renesas M30201F6SP aus der M16C60 Serie“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1734.pdf
Current (50mA) PROG 3.6 3.6 1.6 VPROG = 2.5V VCC = 8V V CC= 5V TA = 25°C 1.4 TA= 25°C 3.5 R PROG= 7.5k 3.4 PNP = FCX589 VCC = 8V 1.2 ) 3.4 ) A A 3.2 ) 1.0 ( ( ( P3.3 P O 0.8 O O P IP VCC = 4.55V I 3.0 V 3.2 0.6 0.4 3.1 2.8 LIMITS AT 25mV DUE
in „akku mit solar aufladen, kommt das IC: LT1734L dafür in Frage?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Dokumentation.pdf
|(1 << COM1B0) |(1 << WGM12)|(1 << WGM11); // PWM1 konfiguration (9-Bit) [S.105] TCCR1B = (1 << WGM12); // Prescaler 1 (kein Prescaler) [S.108] OCR0 = 0x00; // PWM2 [S.80] ICR1 = 0x0000; TIFR0 = (1 << TOV1) | (1 << TOV0);1 << COM01);/// lösche Counter1+0 overflow flag [S.79] TCCR2 = (1 << COM21) |(1 << WGM20)|(1 << WGM21); // PWM3 konfiguration (8-Bit) [S.123] TCNT2 = 0x00; // Counter Register für Timer2 laden OCR2 = 0x00; // Compare Timer2 Register für Timer2 löschen OCR1A =
in „Vielen Dank!“ · Mikrocontroller und Digitale Elektronik ·
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SAM7-EX256_Rev_C-sch.pdf
PB20/PWM1/PCK0 65 LCD_BL 3.3V BL_PWR EXT SPI1_CS0 49 PA21/TF/SPI1_NPCS0/PGMD9 66 PB21 VREF SCK1 50 PA22/TK/SPI1_SPCK/PGMD10 PB21/PWM2/PCK1 67 PB22/WP 10 VLED 3.3V MOSI1 55 PB22/PWM3/PCK2 69 PB23/CP 2 1 MISO1
in „SPI-Initialisierung von zwei Geräte über den gleichen Bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D351049D.pdf
; 70pcs/13.3Kgs/0.71CUFT 1. All parameters NOT specially mentioned are measured at 230VAC input, rated loadof ambient temperature. NOTE 2. Ripple & noise are measured at 20MHz of bandwidth by using a 12" twisted pair-wire terminated with a 0.1uf & 47uf parallel capacitor. 3. Tolerance
in „LEDS hinter Konstantstromquelle dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430f5529.pdf
90h 90h 90h USCI_A/B 2 04h 04h 04h 04h 04h 04h 04h 04h 90h 90h 90h 90h 90h 90h 90h 90h ADC12_A 2 10h 10h 10h 10h 10h 10h 10h 10h D1h D1h D1h D1h D1h D1h D1h D1h 1Ch 1Ch 1Ch 1Ch 1Ch 1Ch 1Ch 1Ch COMP_B 2
in „Fragen zu ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Master-thesis_Wenzel-Maier_final-version.pdf
(analog ground) GND reference potential (ground) HS1 switching note at synchronous converter (full-bridge) HS2 switching note at high-low selection circuit (full-bridge) L1 Line1 at synchronous converter (full-bridge) L2 Line2 at high-low selection circuit (full-bridge)
in „Platinfuchs IIa: Isolierter, bidirektionaler 45W DC/DC Wandler zum Laden/Entladen eines Liion-Akkus“ · Projekte & Code ·
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PDF
lm5642.pdf
CHARACTERISTICS (continued) Efficiency vs Load Current Efficiency vs Load Current Using Vds Sense Ch.2 = 3.3V, Ch.1 = Off Ch.2 = 1.8V, Ch.2 = Off 100 100 V IN24V V = 24V 90 IN 90 VIN 36V 80 VIN 36V % % ( 80 ( 70 C C I I I I 60 F 70 F E E 50 60 40 50 30 0 1 2 3 4 5 0 1 2 3 4 5 6 7 LOAD CURRENT (A) LOAD
in „Komisches Verhalten von LM5642MTCX“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LGT8F328P.pdf
In this case, the pin must be set to output via DDD3. At the same time, OC2B is also the PWM mode of Timer 2 Type output pin PCINT19: Pin Change Interrupt 19 INT0 / OC3B / AC0O / PCINT18 - Port D pin 2 INT0: External interrupt input 0 OC3B: Timing counter
in „Neue 8-Bit Tinys vorgestellt: 417/814/816/817“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AT90USB1287_AVRS5.c
/* * AT90USB1287_AVRS5.c * * Created: 26.12.2011 20:55:11 * Author: Christian Balnuweit * Project: LFS-Projekt */ #include <avr/io.h> #include <avr/interrupt.h> #include <util/delay.h> #include "usb_serial.h
in „Problem mit unterschiedlichen Prescalern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UCC27210.pdf
Matching TMON From HO OFF to LO ON 3 11 UCC27210 TMOFF From LO OFF to HO ON 3 11 T From HO OFF to LO ON 2 9.5 ns MON UCC27211 TMOFF From LO OFF to HO ON 2 9.5 Switching Parameters: Output Rise and Fall Time t LO rise time C = 1000 pF, from 10% to 90% 4 7.2 12 R LOAD R HO rise time 4 7.2 12 ns F LO fall time
in „"Pseudo-CMOS Input" oder "TTL Input"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CD00161566.pdf
85 °C (6 suffix versions) N END Endurance A 10 - - kcycles TA= –40 to +105 °C (7 suffix versions) (2) 1 kcycle at TA= 85 °C 30 - - (2) RET Data retention 1 kcycle at TA= 105 °C 10 - - Years 10 kcycles(2at T = 55 °C 20 - - A 1. Based on characterization, not tested in production. 2. Cycling performed
in „[F] STM32F103: Lastkondensatoren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LoopController-V3.pdf
16p SCL cs2 C C B B A A 1 2 1 2 L H L H L H CL/GND DAC R42 R45 PWM Tiefpass (f = 10 kHz): GNDD GNDA 1M 1M C30 = 1 / (2 Pi * f * R30) = 16 pF cs3 R41 1M Shared DAC pins P3.0-P3.2 Soll The range of analog signals
in „Reglermodul für mechatronische Systeme“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Driver_Library_user_guide.pdf
() in order to configure multiple I2C pins at once. Returns: None. 13.2.2.6 PinTypePWM Configures the specified PWM pin to function as a PWM pin. Prototype: void PinTypePWM(unsigned long ulName) Parameters: ulName is one of the valid names
in „I2C Display Steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
APPCHP7.pdf
duration, separated by 30 s. The −100×1.25 peakjunctiontemperaturewilloccurattheendofeachburst = 21.2°C at time t = x= 140 s. To be able to add the various effects of the pulses at this time, all the pulses, both positive and Tj= Tmb T j −mb 75+21.2 = 96.2°C negative, must end at time t x. Positive pulses
in „2N3055 , was sind aktuelle Alternativen ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP7.pdf
duration, separated by 30 s. The −100×1.25 peakjunctiontemperaturewilloccurattheendofeachburst = 21.2°C at time t = x= 140 s. To be able to add the various effects of the pulses at this time, all the pulses, both positive and Tj= Tmb T j −mb 75+21.2 = 96.2°C negative, must end at time t x. Positive pulses
in „Lineares Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM3410.pdf
FB ΔV FB IN Feedback Voltage Line Regulation VIN 2.7V to 5.5V - 0.06 - %/V FB Feedback Input Bias Current - 0.1 1 µA F Switching Frequency LM3410-X 1200 1600 2000 kHz SW LM3410-Y 360 525 680 D LM3410-X 88 92 - MAX Maximum Duty Cycle LM3410-Y 90 95 -
in „Feedback Spannung vom LM3410“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
consumption in Standby mode versus temperature at V = 3.3 V and 3.6 V DD Standby mode 3.5 3 A ( 2.5 n t 2 3.3 V p u 1.5 3.6 V n o 1 C 0.5 0 -45 25 70 90 110 Temperature (°C) Typical current consumption The MCU is placed under the following conditions
in „ARM Audio Spektrum Analyser“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
2021_11_09_Projektierungshandbuch_de.pdf
PWS 332 DWUS 25 LI16TES 400 4,2 WWSP 442 UP 75-25PK / DWV PWD750 / - 25 LI16I-TUR LI 20TES 400 4,2 WWSP 442 UPH 90-32 / DWV 32 PWD 750 / - LI 24TES 400 4,2 WWSP 442 UPH 90-32 / DWV 32 PWD 750 / - LI 28TES 400 4,2 WWSP 442 UPH 90-32
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PDF
tps63031_buckboost.pdf
V I O 90 90 V I 2.4 V, O = 2.5 V 80 80 V = 3.6 V, V = 4.5 V I O 70 VI= 2.4 V,OV = 4.5 V 70 - 60 VI= 3.6 V,OV = 4.5 V - 60 y y n n VI= 2.4 V,OV = 4.5 V i 50 VI= 2.4 V,OV = 2.5 V i 50 i i E 40 E 40 30 30 20 20
in „TPS63031 Beschaltungs-Frage“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tps63031.pdf
V I O 90 90 V I 2.4 V, O = 2.5 V 80 80 V = 3.6 V, V = 4.5 V I O 70 VI= 2.4 V,OV = 4.5 V 70 - 60 VI= 3.6 V,OV = 4.5 V - 60 y y n n VI= 2.4 V,OV = 4.5 V i 50 VI= 2.4 V,OV = 2.5 V i 50 i i E 40 E 40 30 30 20 20
in „Seltsames SMD-Pad“ · Platinen ·