-
Datei
DS_5_GPS_V09-NMEA.c
P1.5 P1.6 Interruptfreigabe P1IES = 0x60; // auf H/L Flanke an P1.5 und P1.6 festlegen Init2(); _BIS_SR(LPM0_bits + GIE); // Enter LPM0 w/ interrupt } void GPS_starten(void) { unsigned int i; P2DIR |= BIT0; // für LED P2.0 P2OUT |= BIT0; // LED rot P2.0 AUS P1DIR |= BIT7; // für LED P1.7 P1OUT |= BIT7;
in „MSP430F149 NMEA String mit UART1 empfangen und auswerten“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
L272_Power_OPV.pdf
Ib Input Bias Current 0.3 2.5 A Vos Input Offset Voltage 15 60 mV os Input Offset Current 50 250 nA SR Slew Rate 1 V/ s B Gain-bandwidth Product 350 kHz R i Input Resistance 500 k Gv O. L. Voltage Gain f = 100Hz 60 70 dB f = 1kHz 50 dB eN Input Noise Voltage B = 20kHz 10 V IN Input Noise Current B = 20kHz
in „Treiberbaustein für DC-Motor“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
l272.pdf
Ib Input Bias Current 0.3 2.5 A Vos Input Offset Voltage 15 60 mV os Input Offset Current 50 250 nA SR Slew Rate 1 V/ s B Gain-bandwidth Product 350 kHz R i Input Resistance 500 k Gv O. L. Voltage Gain f = 100Hz 60 70 dB f = 1kHz 50 dB eN Input Noise Voltage B = 20kHz 10 V IN Input Noise Current B = 20kHz
in „Suche Empfehlung für passenden Vollbrücken IC“ · Analoge Elektronik und Schaltungstechnik ·
-
Bild
Schaltplan mit ATtiny85, LEDs und MOSFET
White5mm, D2 LED White5mm, D3 LED White5mm, D4 LED White5mm, C7 0.1µF-100V, LEDd1 AL5809 20mA, R5 150, R6 10k, Q1 IRLB3813PBF, C2 1µF, R7 1M, D5 1N4148, signal, PIR MH-SR602, GND
in „ATtiny85, energiesparende Schaltung mit PIR und LED FadeIn/FadeOut (Newbie)“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
-
Bild
Leiterplatte eines Schaltnetzteils mit Bauteilen
H=0MM, L801, C801, H=20MM, JW1, COMPONENT RECORD, TOTAL COMPONENT: 18, JUMP WIRE: 10, (et), CN861, 2AC02 A01, C609, R609, H=21MM, L601, H=21MM, 1J-20329-221, ASET 1533, T601, D701, 06, SR, 07, E182832 VOL2, CCI 15YD SZ, 94V-0, H=15MM, IC702, L701, C612, R605, IC602, CN501, C605, L602
in „Identifikation Bauteil“ · Analoge Elektronik und Schaltungstechnik · · Platinenfotos
-
Bild
Banner DXM Logic Block und Software-Konfiguration
1 Output Q PNP Discrete Out 1 Input 2 PNP Discrete In 2 PNP Discrete Out 2 AND OR XOR NOT NAND NOR SR Flip Flop D Flip Flop T Flip Flop JK Flip Flop Data Store 1 bis 10 BANNER DXM50-LB-MPA-2P LOGIC BLOCK PGM Comms PWR In 1 D1 OUT D In 2 D2 In 2 A
in „Neue Bauteile: wasserfest, innovativ oder klassisch?“ · Mikrocontroller und Digitale Elektronik · · Screenshots
-
PDF
TSL45315.pdf
lux (Notes 3 & 4) −15°C to 0°C −0.25 0 Temperature coefficient % / °C 0°C to 70°C −0.20 0 TCNTRL = 10 96 100 104 TCNTRL = 01 192 200 208 Integration time ms TCNTRL = 00 384 400 416 TCNTRL = 10, PSAVESKIP = 0 (Note 5) 110.4 115 119.6 TCNTRL = 01, PSAVESKIP = 0 (Note 5) 220.8 230 239.2 Total cycle time
in „Kommunikation mit TSL45315“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AT89S8253-24PU.pdf
Clock Cycle Time 4tCLCL ns tSHSL Clock High Time tSCK/2 - 25 ns tSLSH Clock Low Time tSCK/2 - 25 ns tSR Rise Time 25 ns tSF Fall Time 25 ns t Serial Input Setup Time 10 ns SIS t Serial Input Hold Time 10 ns SIH t Serial Output Hold Time 10 ns SOH t Serial Output Valid Time 35 ns SOV 27 3286I–MICRO–10/05
in „AT89S8253-24PU ersetzen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Verfuegbare_Teile.pdf
Nr. Hersteller Artikelnummer Stück Netto Brutto (20%) 1 Siemens 3RV1021 - 1HA10 10 280 336 2 Siemens 3RV1021 - 0FA10 5 130 156 3 Siemens 3RV1021 - 0EA10 10 260 312 4 Siemens 3RV1021 - 0GA10 3 78 93.6 5 Siemens 3RV1021 - 0JA10 18 486 583.2 6 Siemens 3RV1021 - 4BA10 13 416 499.2 7
in „[V] Diverses Elektromaterial. Lagerauflösung.“ · Markt ·
-
PDF
rudi_____RX-V4A_TSR-400.pdf
P 6 G 6 0 XSMT 7 CAPM 2.2/10 14 0 1 L 1 6 1 7 6 4 s 1 4 C649 DA_SR DA_SR G 0.1/10 M 2 L S 0 G 1 u R633 FMT 6 5VNEG C664 C670 13 0 P C863 3.1A Rated L L 0 L 1 L o 4.7K 1 2.2/16 R648 2200P AGND L 2 L609 B B 6 0.1/10 2 n DA_WCK LRCK
in „Test in der Schaltung STR3A400“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
config.h
/* * config.h * * Created on: 29.10.2010 * Author: STAT07 */ #ifndef CONFIG_H_ #define CONFIG_H_ //ADC Int1.1V #define ADC_REF_1V ((1<<REFS1)|(1<<REFS0)) //eeporm adressen #define EE_M_Sr 0x03 #define EE_M_PM 0x04 #define EE_M_Max 0x05
in „optimize Os / O0“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
ls.txt
tty1 tty19 tty28 tty37 tty46 tty55 tty7 vcs vcsa3 watchdog1 cdrw dvdrw kvm net rfkill snapshot tty10 tty2 tty29 tty38 tty47 tty56 tty8 vcs1 vcsa4 zero char fb0 log network_latency rtc snd tty11 tty20 tty3 tty39 tty48 tty57 tty9 vcs2 vcsa5 console fd loop-control network_throughput rtc0 sr0 tty12 tty21
in „chroot: failed to run command ‘/mnt/bin/bash’: No such file or directory“ · PC Hard- und Software ·
-
PDF
PIC_18F8722_Data_Sheet.pdf
(SMP = 0) bit 7 bit 0 Input Sample (SMP = 0) SSPxIF Interrupt Flag Next Q4 Cycle SSPxSR to after Q2↓ SSPxBUF DS39646C-page 212 © 2008 Microchip Technology Inc. PIC18F8722 FAMILY 19.3.8 OPERATION IN POWER-MANAGED 19.3.10 BUS MODE COMPATIBILITY MODES Table 19-1 shows the compatibility between
in „PIC 18F6527 mit 32MHz Takten“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AVR300.pdf
Normal And Fast Mode serial interface consisting of one data Microcontroller • Supports Both 7-Bit and 10-Bit (SDA) and one clock (SCL) line. By Addressing using open drain/collector outputs, the • Supports the Entire AVR IC bus supports any fabrication process Microcontroller Family (CMOS, bipolar and more
in „I2C Read Byte Problem in ASM“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
can.c
Semiconductor * All rights reserved. * * History * 2009.05.27 ver 1.00 Prelimnary version, first Release * 13.10.2010 ver 1.1 Änderung bezüglich CAN2 *****************************************************************************/ #include "lpc17xx.h" #include "type.h" #include "can.h" /* Receive Queue: one queue
in „sprintf mehrfach“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AVR300.pdf
Normal And Fast Mode serial interface consisting of one data Microcontroller • Supports Both 7-Bit and 10-Bit (SDA) and one clock (SCL) line. By Addressing using open drain/collector outputs, the • Supports the Entire AVR IC bus supports any fabrication process Microcontroller Family (CMOS, bipolar and more
in „I²C über SPI an ATtiny ?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AVR300.pdf
Normal And Fast Mode serial interface consisting of one data Microcontroller • Supports Both 7-Bit and 10-Bit (SDA) and one clock (SCL) line. By Addressing using open drain/collector outputs, the • Supports the Entire AVR IC bus supports any fabrication process Microcontroller Family (CMOS, bipolar and more
in „Hilft Pullup Signal auf Ground zuziehen?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AVR300.pdf
Normal And Fast Mode serial interface consisting of one data Microcontroller • Supports Both 7-Bit and 10-Bit (SDA) and one clock (SCL) line. By Addressing using open drain/collector outputs, the • Supports the Entire AVR IC bus supports any fabrication process Microcontroller Family (CMOS, bipolar and more
in „I2C / TWI EEPROM 24C02B“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
tl431book.pdf
associated with a 22-dB gain at the same frequency, we obtain the following component values, assuming R is 10 k : 1 C 1 2.35 nF C = 550 pF 2 R 1 10 k R 2 155 k dB 60.0 |G(s)| 40.0 fz= 435 Hz fp= 2.3 kHz 20.0 22 dB 0 3 -20.0 Deg. ° 130 arg G(s) 120 110 43° 100 90.0 4 10 100 frequency in hertz 10k 100k Figure
in „Sperrwandler Dimensionierung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Handbuch_SE4942_Eprom_Programmer_pdfa-2b_150dpi.pdf
After complement Abb. 2 - 10 Komplementbildung 2- 10-3 Einfügefunktion Mit dieser Funktion werden die ED-Daten im bestimmten Adressenfeld eingefügt. FA < SP ZA 7FFF bdn vdn-ı 7FFF 7FFE ZZvan ZA D —_ —_ VE ZZ RZ BD:ZZ FA AZ BDO FAZ
-
PDF
bq24618.pdf
ISET1 input sets the maximum fast-charging current. Battery charge current is sensed by resistor R SR connected between SRP and SRN. The full-scale differential voltage between SRP and SRN is 100 mV. Thus, for a 10-mΩ sense resistor, the maximum charging current is 10 A. The equation for charge current is: I = VISET1 CHARGE 20 ´ R SR (2) VISET1, the input voltage range of ISET1, is from 0 V to 2 V. The SRP and SRN pins are used to sense voltage across R SR using the default value of 10 mΩ. However, resistors of other values can also
in „Li-Ion - Charger & Balancing“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ReicheltLM_2678.pdf
1 C8 100 1 C6 1 C8 1 C8 33 1 C8 1 C10 2 C10 47 1 C8 1 C9 2 C10 15 to 20 68 1 C8 1 C9 2 C10 100 1 C8 1 C9 1 C10 33 2 C9 2 C11 2 C11 47 1 C10 1 C12 1 C11 20 to 30 68 1 C9 1 C12 1 C11 100 1 C9 1 C12 1 C11 10 4 C13 8 C12 15 3 C13 5 C12 22 No
in „Fragen dem Schaltregler LM2678-ADJ“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
_LM2678.pdf
1 C8 100 1 C6 1 C8 1 C8 33 1 C8 1 C10 2 C10 47 1 C8 1 C9 2 C10 15 to 20 68 1 C8 1 C9 2 C10 100 1 C8 1 C9 1 C10 33 2 C9 2 C11 2 C11 20 to 30 47 1 C10 1 C12 1 C11 68 1 C9 1 C12 1 C11 100 1 C9 1 C12 1 C11 10 4 C13 8 C12 15 3 C13 5 C12 22 No
in „Schaltregler - starke Lastschwankungen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
DimmerModul.pdf
R1 R2 R7 R8 D5 OK1 VCC L 220k 270k 22 1 4 10k g X3-1 1N4007 ZEROX u R M R k 2 3 r 4 4 s PC817 e B1 1N4007 GND V N D6 T2 X3-2 BC857BSMD R 0 0 1 T1 0 BC857BSMD PE 1 1 V C1 X3-3 0 R 0 D . 5 1 Z 4 470n B PE N 6 4 W n 0 0 k R11 z SR1 4 R 1 3 IGN e H
in „230V Dimmer-Modul für µC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX3030-MAX3033.pdf
A SWITCHING E ( ( 20 ( N 60 N N 1.5 – E E E M U TA= +25°C U 15 U Y Y Y P 40 P P 1.0 A U TA= 0°C U 10 U S S S X 20 0.5 5 3 0 0 0 0 3 0 1 2 3 4 0.1k 1k 10k 100k 1M 10M 100M 0.1k 1k 10k 100k 1M 10M SUPPLY VOLTAGE (V) DATA RATE (bps) DATA RATE (bps) 3 MAX3030E E MAX3030E/MAX3032E MAX3031E/MAX3033E DRIVER
in „SPI mit RS485-Übertragung: Problem mit zu langen Propagation-Delays“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
datasheet.pdf
unless otherwise specified) Symbol Parameter Test Conditions Min. Typ. Max. Unit Vs Supply Voltage 〉 10 〉 45 V I Quiescent Drain Current Stand-by Mode 8 mA d Play Mode 10 14 Ib Input Bias Current 0.2 1 A Vos Input OffsetVoltage 1 〉 10 mV Ios Input OffsetCurrent 100 200 nA G Open Loop Voltage Gain f = 100 Hz 90 dB v f = 10 kHz 60 eN Input Noise Voltage R G 600 3 V B = 20 Hz to 20 kHz SR Slew Rate 10 V/ s d Total Harmonic Distortion G v= 26 dB, Po= 40 W f = 1 kHz 0.004 % f = 20 kHz 0.03 % V opp Output Voltage Swing 60 Vpp
in „TDA7250 Audio-Driver“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
digitast.pdf
profile Hand soldering, After 5 x 10 operations: ≤ 100 mΩ 350˚C for 3 seconds Insulation Resistance ≥10 Ω0 Capacitance At f= 10 kHz: ≤ 0.8 pF ≤ 2.5 ms Operating speed 400 mm/s BounceTime (15.75/s) OperatingTemperature -25ºC to 85ºC Ordering
in „itt shadow digitast alt?“ · Markt ·
-
PDF
VK16K33Datasheet.pdf
transfer format Data byte of I C D7 D6 D5 D4 D3 D2 D1 D0 K8 K7 K6 K5 K4 K3 K2 K1 KS0 0 0 0 K13 K12 K11 K10 K9 K8 K7 K6 K5 K4 K3 K2 K1 KS1 0 0 0 K13 K12 K11 K10 K9 K8 K7 K6 K5 K4 K3 K2 K1 KS2 0 0 0 K13 K12 K11 K10 K9 KEY MATRIX CONFIGURATION An example of key matrix configurations is shown below. When pressing
in „VK16K33 vs HT16K33“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
DS1307.pdf
Timekeeper Registers ADDRESS BIT 7 BIT 6 BIT 5 BIT 4 BIT 3 BIT 2 BIT 1 BIT 0 FUNCTION RANGE 00h CH 10 Seconds Seconds Seconds 00–59 01h 0 10 Minutes Minutes Minutes 00–59 10 12 1–12 02h 0 Hour 10 Hours Hours +AM/PM 24 PM/ Hour 00–23 AM 03h 0 0 0 0 0 DAY Day 01–07 04h 0 0 10 Date Date Date 01–31 05h 0 0 0 10 Month Month 01–12 Month 06h 10 Year Year Year 00–99 07h OUT 0 0 SQWE 0 0 RS1 RS0 Control — 08h–3Fh RAM 00h–FFh 56 x 8 0 = Always reads back as 0. 8 of 14 2 DS1307 64 x 8, Serial, I C Real-Time Clock
in „[V] noch 2 x 10St. Dallas RTC DS1307Z (SO8) abzugeben“ · Markt ·
-
PDF
DS1307.pdf
Timekeeper Registers ADDRESS BIT 7 BIT 6 BIT 5 BIT 4 BIT 3 BIT 2 BIT 1 BIT 0 FUNCTION RANGE 00h CH 10 Seconds Seconds Seconds 00–59 01h 0 10 Minutes Minutes Minutes 00–59 10 12 1–12 02h 0 Hour 10 Hours Hours +AM/PM 24 PM/ Hour 00–23 AM 03h 0 0 0 0 0 DAY Day 01–07 04h 0 0 10 Date Date Date 01–31 05h 0 0 0 10 Month Month 01–12 Month 06h 10 Year Year Year 00–99 07h OUT 0 0 SQWE 0 0 RS1 RS0 Control — 08h–3Fh RAM 00h–FFh 56 x 8 0 = Always reads back as 0. 8 of 14 2 DS1307 64 x 8, Serial, I C Real-Time Clock
-
PDF
ds1307.pdf
Timekeeper Registers ADDRESS BIT 7 BIT 6 BIT 5 BIT 4 BIT 3 BIT 2 BIT 1 BIT 0 FUNCTION RANGE 00h CH 10 Seconds Seconds Seconds 00–59 01h 0 10 Minutes Minutes Minutes 00–59 10 12 1–12 02h 0 Hour 10 Hours Hours +AM/PM 24 PM/ Hour 00–23 AM 03h 0 0 0 0 0 DAY Day 01–07 04h 0 0 10 Date Date Date 01–31 05h 0 0 0 10 Month Month 01–12 Month 06h 10 Year Year Year 00–99 07h OUT 0 0 SQWE 0 0 RS1 RS0 Control — 08h–3Fh RAM 00h–FFh 56 x 8 0 = Always reads back as 0. 8 of 14 2 DS1307 64 x 8, Serial, I C Real-Time Clock
in „Probleme mit DS1307 und dessen Zeitausgabe“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
tim2.cpp
benutzt //============================= #include "../includes.hpp" volatile static uint16_t CCR1_Val = 10; // 100us volatile static uint16_t CCR2_Val = 100; // 1ms volatile static uint16_t CCR3_Val = 1000; // 10ms volatile static uint16_t CCR4_Val =10000; // 100ms static uint16_t capture = 0; volatile static
in „STM32 Probleme mit Watchdog“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
Freq [5] = 2994; Freq [6] = 2620; Freq [7] = 2329; // 450 Hz Freq [8] = 2096; Freq [9] = 1905; Freq [10] = 1747; // 600 Freq [11] = 1612; Freq [12] = 1497; Freq [13] = 1397; // 750 Freq [14] = 1310; Freq [15] = 1233; // 850 Freq [16] = 1164; Freq [17] = 1103; Freq [18] = 1048; Freq [19] = 998; Freq [20
in „MSP430 F5529 Wobbel-Generator“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LM2594HVM-5.0_Datenblatt.pdf
Series Capacitor Series 595D Series Capacitor (V) (µF/V) (µF/V) (µF/V) (µF/V) 1.2 220/25 220/25 0 220/10 220/10 0 4 180/25 180/25 4.7 nF 100/10 120/10 4.7 nF 6 82/25 82/25 4.7 nF 100/10 120/10 4.7 nF 9 82/25 82/25 3.3 nF 100/16 100/16 3.3 nF 1 2 82/25 82/25 2.2 nF 100/16 100/16 2.2 nF 1 5 82/25 82/25 1.5
in „Idee für ein ||transportables|| Handyladegerät“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
SA07.pdf
Holding current — 1.0 — 25 — 25 — 1.0 mA 1.Connect 1k resistor between gate to cathode. 2.Minimum value SR1FM L υ trg 0 t 22k υ trg C C 47n + V CM C M i1 i5 − 1 5 1k iG iG 10 0 t 2 10k SAOX iG 4 3 47n 10n i1 IP 470470 0 t Fig. 1 Test circuit tw i5 0 t Fig. 2 The voltage and current waveforms SA120 1 2 3 4
in „Hilfe bei Vergleichstyp SA07“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
FHKU70.pdf
Repetition: < +/-0.25% Signalanschluss: OpencollectorNPN O-Ring: MVQ(Silikon) Temperaturbereich: -10°Cbis+65°C Signalspannung: 0VGND FPM(Viton)/EPDMaufAnfrage 14°Fbis149°F Signalbelastung: max.20mA Turbine: PVDF Druckbereich: 20barbei20°C 290psi/68°F Leckstrom: max.10µA Magnete: KeramikSrFeO Anschlüsse
in „Durchflussmesser an Atmega32“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
FHKU70.pdf
Repetition: < +/-0.25% Signalanschluss: OpencollectorNPN O-Ring: MVQ(Silikon) Temperaturbereich: -10°Cbis+65°C Signalspannung: 0VGND FPM(Viton)/EPDMaufAnfrage 14°Fbis149°F Signalbelastung: max.20mA Turbine: PVDF Druckbereich: 20barbei20°C 290psi/68°F Leckstrom: max.10µA Magnete: KeramikSrFeO Anschlüsse
in „Durchflusssensor“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
2080-um001_-en-e.pdf
User Manual Micro810 Programmable Controllers Catalog Numbers 2080-LC10-12AWA,2080-LC10-12QWB,2080-LC10-12QBB,2080-LC10-12DWD ImportantUserInformation Solid-state equipmenthas operational characteristicsdiffering from those ofelectromechanicalequipment. Safety Guidelines
-
PDF
Taz_Altium_Version.pdf
SCK TX2RTS PIIC57 (INT0/OC3B/OC4B)PD2 PII1A32 D2_ CP2515_INT D2_MCP2515_I PIC503 INT OSC2 PIIC58 PI10 PI10 1 D3_RG+ 12 9 CLKO VCCIO 2 GND (INT1/OC2B)PD3 IPCA01 PIC502 RX0BF OSC1 PIIC59 0 CO1 uP1COL (XCK0/T0)PD4 PIICA02 BIn1 PIC501 RX1BF VSS PII501 1 C 1 2 0 9 90A1CIIP COC 1 20 (OC0B/T1)PD5 10 AIn1 GND
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
tl072.pdf
noise voltageSR = 20 Ω f = 10 Hz to 10 kHz 4 μV In Equivalent input noise currentSR = 20 Ω f = 1 kHz 0.01 pA/√Hz V rms = 6 V I AVD = 1 THD Total harmonic distortion R L 2 kΩ RS ≤ 1 kΩ 0.003% f = 1 kHz 6.25 Switching
in „Verstärkerschaltung läuft nicht wie gewollt“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Geiger_PIC18F2550.pdf
and through space. Light, radio, and and Carbon-14 are weak beta emitters of28.8yearssoabout77%oftheSr-90ife microwaves are types of radiation. Large amounts of man-made Sr-90s. fromanuclearweapontestin1945has The kind of radiation discussed in were produced during atmospheric already decayed. this article
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LIS3LV02DQ28.pdf
range 3 FS bit set to 0 ±2.0 g FS bit set to 1 ±6.0 g FSAcc Full-scale accuracy Full-scale = 2g FS-10% FS FS+10% g Full-scale = 6g FS-15% FS FS+15% g Dres Device Resolution Full-scale = 2g 1.0 mg BW=50Hz So Sensitivity Full-scale = 2g, 12 1024 LSB/g bit representation 0g-Offset Zero-g Level Offset Full-scale
in „"Halbleiterkreisel"“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LIS3LV02DQ28.pdf
range 3 FS bit set to 0 ±2.0 g FS bit set to 1 ±6.0 g FSAcc Full-scale accuracy Full-scale = 2g FS-10% FS FS+10% g Full-scale = 6g FS-15% FS FS+15% g Dres Device Resolution Full-scale = 2g 1.0 mg BW=50Hz So Sensitivity Full-scale = 2g, 12 1024 LSB/g bit representation 0g-Offset Zero-g Level Offset Full-scale
in „Beschleunigungssensor für ca +/-6g in alle 3 Achsen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
The_International_System_of_Units_sp330.pdf
2: 10 12 tera T 10 ⫺9 nano n Telecommunications 9 ⫺12 and electronics. The 10 giga G 10 pico p 10 6 mega M 10 ⫺15 femto f names and symbols 3 ⫺18 for the prefixes 10 kilo k 10 atto a corresponding to 2 , 2
in „Stromangabe in der Einheit At?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PSpice_LibraryguideOrCAD.pdf
JDIODE.OLB Zener Diode MZL343 MZL343 JDIODE.OLB Zener Diode RD100EB RD100EB JDIODE.OLB Zener Diode RD10EB RD10EB JDIODE.OLB Zener Diode RD10EB1 RD10EB1 JDIODE.OLB Zener Diode RD10EB2 RD10EB2 JDIODE.OLB Zener Diode RD10EB3 RD10EB3 JDIODE.OLB Zener Diode RD10FB RD10FB JDIODE.OLB Zener Diode RD10FB1 RD10FB1 JDIODE.OLB Zener Diode RD10FB2 RD10FB2 JDIODE.OLB Zener Diode RD10FB3 RD10FB3 JDIODE.OLB Zener Diode RD10MB RD10MB JDIODE.OLB Zener Diode RD10MB1 RD10MB1 JDIODE.OLB Zener Diode RD10MB2 RD10MB2 JDIODE.OLB Zener Diode RD10MB3 RD10MB3
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
TFDS6F.pdf
Peak wavelength of emission λ p 850 900 nm Transmitter radiant intensity, Ie V cc5.0 V 100 140 200 mW/sr within 30° cone R =3.3 S Transmitter, angle of half intensity α +/-24 ° Transmitter input voltage, low V IL 0 0.8 V high VIH 2.4 Vcc Optical output rise/fall time tr f 10 35 ns 2 Receiver detection threshold
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
timer clock 12e6 / 8 = 1.5e6 => CYCLES 15 000 ~= 100Hz //langsam steigen/fallen #define SET_PWM_HZ 10 #define SKIP_STEPS (MEASURE_HZ / SET_PWM_HZ) int skipStepCounter; float factor_plus; float factor_minus; float factor_currently; float brightness; void FaultRoutine(void); void ConfigWDT(void); void
in „MSP430G2553 PWM flackert beim Verstellen der Pulsweite“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
#include "stm32f4xx.h" #include "stm32f4xx_tim.h" #include "stm32f4xx_dma.h" uint16_t LED_PIN_SET[10] = { GPIO_Pin_5, 0x0000, GPIO_Pin_5, 0x0000 ,GPIO_Pin_5, 0x0000 ,GPIO_Pin_5, 0x0000 ,GPIO_Pin_5, 0x0000 }; uint16_t LED_PIN_READ[10] = {0,0, 0,0, 0,0, 0,0, 0,0}; void TIM3_Config() { TIM_TimeBaseInitTypeDef
in „STM32F4 + Timer 3 + DMA1 schreibt nicht ins ODR => TEIF“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
bma020.c
PA.04 SPI_NSS --> MACH ICH PER HAND PA.05 SPI_SCK PA.06 SPI_MISO PA.07 SPI_MOSI als Alternate Mode: 10 AF: SPI1, AF5 -->Reference Manual an allen Eingängen Pullups aktivieren PA.11 als Ausgang */ GPIOA->MODER |= 0x0040AA00; GPIOA->AFR[0] |= 0x55550000; GPIOA->PUPDR |= 0x00405500; } /******************
in „STM32F4: BMA020 per SPI“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
eth_conf.h
to another, so the user have to update this value depending on the used external PHY */ #define PHY_SR ((uint16_t)31) /* Value for DP83848 PHY */ /* The Speed and Duplex mask values change from a PHY to another, so the user have to update this value depending on the used external PHY */ #define PHY_DUPLEX_SPEED_STATUS_MASK ((uint16_t)0x001C) #define PHY_100BTX_FULL (18) #define PHY_100BTX_HALF (8) #define PHY_10M_FULL (14) #define PHY_10M_HALF (4) /* Exported macro ------------------------------------------------------------*/ /* Exported functions ------------------------------------------------------- */ #
in „stm32f4xx lan8720 uip“ · Mikrocontroller und Digitale Elektronik ·