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hd44780u.pdf
VLCD VCC1/5 VLCD V2 VCC1/2 VLCD VCC2/5 VLCD V3 VCC1/2 VLCD VCC3/5 VLCD V4 V –3/4 VLCD V –4/5 VLCD CC CC V5 V –VLCD V –VLCD CC CC V CC(+5 V) VCC (+5 V) VCC VCC R R V1 V1 R V2 R V2 VLCD R VLCD V3 R V3 V4 R V4 R R V5 V5 VR VR –5 V –5 V 1/4 bias 1/5 bias (1/8, 1/11 duty cycle) (1/16, duty cycle) Figure
in „Falsche Zeichen bei LCD-Ausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd44780u.pdf
VLCD VCC1/5 VLCD V2 VCC1/2 VLCD VCC2/5 VLCD V3 VCC1/2 VLCD VCC3/5 VLCD V4 V –3/4 VLCD V –4/5 VLCD CC CC V5 V –VLCD V –VLCD CC CC V CC(+5 V) VCC (+5 V) VCC VCC R R V1 V1 R V2 R V2 VLCD R VLCD V3 R V3 V4 R V4 R R V5 V5 VR VR –5 V –5 V 1/4 bias 1/5 bias (1/8, 1/11 duty cycle) (1/16, duty cycle) Figure
in „2. Zeile LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780U.pdf
VLCD VCC1/5 VLCD V2 VCC1/2 VLCD VCC2/5 VLCD V3 VCC1/2 VLCD VCC3/5 VLCD V4 V –3/4 VLCD V –4/5 VLCD CC CC V5 V –VLCD V –VLCD CC CC V CC(+5 V) VCC (+5 V) VCC VCC R R V1 V1 R V2 R V2 VLCD R VLCD V3 R V3 V4 R V4 R R V5 V5 VR VR –5 V –5 V 1/4 bias 1/5 bias (1/8, 1/11 duty cycle) (1/16, duty cycle) Figure
in „444780 LCD 5x10 klappt nicht richtig!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD44780.pdf
VLCD VCC1/5 VLCD V2 VCC1/2 VLCD VCC2/5 VLCD V3 VCC1/2 VLCD VCC3/5 VLCD V4 V –3/4 VLCD V –4/5 VLCD CC CC V5 V –VLCD V –VLCD CC CC V CC(+5 V) VCC (+5 V) VCC VCC R R V1 V1 R V2 R V2 VLCD R VLCD V3 R V3 V4 R V4 R R V5 V5 VR VR –5 V –5 V 1/4 bias 1/5 bias (1/8, 1/11 duty cycle) (1/16, duty cycle) Figure
in „Ist der HD44780 nun 8 oder 16 Zeichen lang?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TSL220.PDF
TYP MAX UNIT VOM Peak output voltage R L 50 k 3 4 V I Supply current C = 100 pF, E = 0 7.5 10 mA CC e operating characteristics at V CC = 5 V, T A 25 ⋅C (see Figure 1) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT Ee= 125 W/cm ,2 λ = 880 nm, C = 100 pF 50 150 250 kHz o Output frequency Ee= 0, C = 100
in „timer 2 interrupt?“ · Mikrocontroller und Digitale Elektronik ·
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VCR-SAT1.pdf
3 CC1052 1,5n CR1052 CC1262 470 0 + C CC1203 C B C 4 p 7 C 0 C 1 2 4 1 8 1 2 T C 4,7k A 7 1 V 8 A 0 0 8 1 CR1072 CR1073 1,6V 0 1 8,2n CC1053 A P 470p C 4 R 5 6 470p C 1 B 0 5 LEVELR 5 1 AGCL 24,3V L l 7 1
in „Lieber OSD LC74776, zeig mir ein Bild“ · Mikrocontroller und Digitale Elektronik ·
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Datei
build_console.txt
Discovery_CoOS\Debug\bin [mkdir] Created dir: C:\CooCox\CoIDE\workspace\STM32F4_Discovery_CoOS\Debug\obj [cc] 27 total files to be compiled. [cc] arm-none-eabi-gcc -mcpu=cortex-m4 -mfpu=fpv4-sp-d16 -mfloat-abi=softfp -mthumb -Wall -ffunction-sections -Os -std=c99 -g -c -D__FPU_USED -DSTM32F4XX -DUSE_STDPERIPH_DRIVER
in „STM32F4 CoOS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
C_fuer_PIC.pdf
downgeloadete Datei (bei mir im Ordner C:\temp) löschen, da sie nicht mehr benötigt wird. 2.2. Einbindung von CC5X in MPLAB Schritt 1: Download von CC5X (Version 3.2): Eine freie Version des C-Compiler CC5X kann kostenlos unter www.bknd.com/cc5x/index.shtml downgeloadet werden. Link „A FREE edition of CC5X is available
in „cc5x und PIC 16F628 / 88 problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD61202U.pdf
840 HD61202U Absolute Maximum Ratings Item Symbol Value Unit Note Supply voltage V –0.3 to +7.0 V 2 CC V V – 17.0 to V + 0.3 V 3 EE1 CC CC VEE2 Terminal voltage (1) VT1 V – 0.3 to V + 0.3 V 4 EE CC Terminal voltage (2) VT2 –0.3 to V + 0.3 V 2, 5 CC Operating temperature T –20 to +75 °C opr Storage temperature
in „seltsames Grafik Display verhalten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lauflicht1.vhd
l_sseg_an2 => sseg_an2, l_sseg_an3 => sseg_an3, l_sseg_ca => sseg_ca, l_sseg_cb => sseg_cb, l_sseg_cc => sseg_cc, l_sseg_cd => sseg_cd, l_sseg_ce => sseg_ce, l_sseg_cf => sseg_cf, l_sseg_cg => sseg_cg); end Lauflicht_Impl; ------------------------------------------------------------------------- library
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PDF
90s1200.pdf
otherwise noted) (Continued) Symbol Parameter Condition Min Typ Max Units V ACIO Analog Comparator V CC= 5V 40.0 mV Input Offset Voltage V in V CC/ 2 IACLK Analog Comparator V CC = 5V -50.0 50.0 nA Input Leakage Current V = V / 2 in CC t Analog Comparator V = 2.7V 750.0 ns ACPD CC Propagation Delay V CC
in „Unterschied zwischen einzelnen avr´s“ · Mikrocontroller und Digitale Elektronik ·
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Datei
HP_Test.c
// Datei: HP_Test.c (Hauptprogramm) // Compiler: CC5X #include <C:\CC5X\16F676.H> // Controller-Definition #include "project.h" // KonstantenDefinition & Deklarationen #include "LCD_Funktionen.c" // Configurations-Word #pragma config |= 0b.11.0000.0111.0010
in „PIC16F676 LCD_Init“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3703fc.pdf
9 10µF MBR1100 1% GND BGRTN CC3 C VCC 2200pF 1µF 3703 TA01 Single Input Supply 12V/5A Output Step-Down Converter 100Ω 10k * FZT600 V IN 15V TO 80V 12V + 22µF D 25V B 1 16 BAS19 MODE/SYNC VIN + CIN CMDSH-3 RSET 25k 2 15 68µF R C1 SET BOOST 100V 10k 3 LTC3703 14 M1 COMP TG C Si7852DP C C2 CC1 B L1 1000pF 470pF 4 13 0.1µF 8µH VOUT FB SW 12V RMAX 12k 5A R2 5 I V 12 8.06k MAX CC COUT + 1% 6 11 RF10Ω 270µF INV DRV CC 16V CSS M2 0.1µF 7 10 Si7852DP R R1 RUN/SS BG CDRVCC D1 C2 113k 8 9 10µF MBR1100
in „Längs- oder Querregler 40V 250W als Überspannungsschutz für Tiefstellsetzer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
slaa123.pdf
is fed to the analog circuitry. 4 Solid State Voice Recorder Using Flash MSP430 SLAA123 R13 82 AV CC DV + CC R11 C9 56K 47 F C8 0.1 F Audio 4 6 Vcc Input R12 + 3 IC3 5 C10 SW1 6K8 4.7 F SPST 2 TPA721 8 + 8Ohm 1 7 Speaker AV SS DV SS Figure 4. Audio Power Amplifier 2.3 Digital Hardware AV DV DV C12 CC CC C14 CC Analog 0.1 F 0.1 F Voice Input + + DVcc P6.0 C13 C15 R15 A0 18K 4.7 F 4.7 F 64 1 RESET R14 59 100K P1.4 58 16 C11 Record 0.1 F XT2IN Button 53 Ceramic IC4 Resonator 52 3.58MHz XT2OUT MSP430F149
in „Nur ein einfacher Gong“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC1257.pdf
4.75V to 15.75V, internal or external reference (2.475V V V – 2.7V), unless otherwise noted. A MIN MAX CC REF CC SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS Power Supply VCC Positive Supply Voltage For Specified Performance 4.75 15.75 V ICC Supply Current 4.75V V CC 5.25V 350 600 A 4.75V V CC 15.75V 800
in „Elektrometer - Rückkopplung dimensionieren?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CRC16.pas
($0000,$C0C1,$C181,$0140,$C301,$03C0,$0280,$C241,$C601,$06C0,$0780, $C741,$0500,$C5C1,$C481,$0440,$CC01,$0CC0,$0D80,$CD41,$0F00,$CFC1, $CE81,$0E40,$0A00,$CAC1,$CB81,$0B40,$C901,$09C0,$0880,$C841,$D801, $18C0,$1980,$D941,$1B00,$DBC1,$DA81,$1A40,$1E00,$DEC1,$DF81,$1F40, $DD01,$1DC0,$1C80,$DC41,$1400,$D4C1,$D581,$1540,$D701,$17C0,$1680, $D641,$D201,$12C0,$1380,$D341,$1100,$D1C1,$D081,$1040,$F001,$30C0, $3180,$F141,$3300,$F3C1,$F281,$3240,$3600,$F6C1,$F781,$3740,$F501, $35C0,$3480,$F441,$3C00,$FCC1,$FD81,$3D40,$FF01,$3FC0,$3E80,$FE41, $FA01,$3AC0,$3B80,$FB41,$3900,$F9C1
in „Ideen um CRC-Routine zu beschleunigen? (AVR, gcc)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
moxa-eds-205a-series-datasheet.pdf
industrial applications. The EDS-205A Series is also compliant with PROFINET Conformance Class A (CC-A), making these switches suitable for PROFINET networks. Specifications Ethernet Interface 10/100BaseT(X) Ports (RJ45 connector) EDS-205A/205A-T: 5 EDS-205A-M-SC/M-ST/S-SC Series: 4 All models support
in „[V] Diverse Moxa Industrie Switche und Access Points“ · Markt ·
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PDF
DA-Converter.pdf
C C Distributors for availability and specifications. Infrared (15 sec.) 220˚C 8 3 Supply Voltage (CC) 17 VDC 2 Voltage at Any Digital Input V to GND CC Operating Conditions Voltage at REF Input ±25V Temperature Range TMIN≤TA≤TMAX Storage Temperature Range −65˚C to +150˚C Part numbers with “LCN” suffix
in „Problem mit DA-Wandler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ADC1.txt
#include <c:\cc5\cc5xfree\16f876a.h> #pragma config |= 0b.11.111101.11.00.10 #define LCD_RS 0b.00000001 #define LCD_CS 0b.00001000 #pragma char PORTQ @ PORTB #include "delay20.c" #include "lcd.c" void delay_mks( char
in „Float-Variablen...“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TestTest.c
Funktionen ************* // ************************************************************* //#include <C:\cc5\16F627A.H> #include <C:\Program Files (x86)\bknd\CC5X\int16CXX.H> // ************************************************************* // *********** Einstellung Konfiguration Prozessor *********** // *
in „Interrupt PIC16F627A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
updated_COUNT7DEC.pdf
1k 1k P A#A # P10 P1 PI0 BC847 P1 D3 P6 47k PT P0 P1 PD0PD0 P RESETT PI0 T30 C13 B5819WS PC 2N700P1100n R1 PT PI C14P0 A_B P BO B P10 P1 PI0 T9 CR63 PC1u PR 47k P3 BC847 100k R64 C3 PT PI 1k P347n PT P CAR YY PT T31 P1 R14 T10 P31 2N7002 C15 P C#C # P10 PP4 PI0 BC847 PT P1100n 47k C4 PT P4100n CR PT P DO D P6065P6 PI2 T32 47k BC847 P6CC PT 100n P6 Title Size Number Revision A4 Date: 03.05.2019 Sheetof File: C:\HFET\..\4AND_Carry_Compare.SchDoDcrawn By: PI P R21 R22 100k 10k PI P1 P3 P YO Y R23 T15 P6 P21 PR0PIPI51 2N7002 R24 T16 100k
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PDF
resteliste_2.pdf
74HCT4051 50 DIL16 TTL 5,00 € 74LS123 50 SO16 TTL 5,00 € 93C66BN6 25 DIL8 Serial EEPROM 3,00 € AD1100A 10 SO8 Analog Devices ADUM1100 iCoupler 5,00 € AM28F020A 10 DIL32 256K *8 Flash 3,00 € AQY212SZ 20 SO4 Panasonic Photomos Relais 15,00 € AT45DB081B-TU 10 BGA DATAFLASH SERIAL 20MHZ 8MB 18,00 € AT89C51CC01
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PDF
XC6216.pdf
260 360 1300 1700 3.9 3.822 3.978 3.861 3.939 260 360 1300 1700 4.0 3.920 4.080 3.960 4.040 220 320 1100 1500 4.1 4.018 4.182 4.059 4.141 220 320 1100 1500 4.2 4.116 4.284 4.158 4.242 220 320 1100 1500 4.3 4.214 4.386 4.257 4.343 220 320 1100 1500 4.4 4.312 4.488 4.356 4.444 220 320 1100 1500 4.5 4.410 4.590 4.455 4.545 220 320 1100 1500 4.6 4.508 4.692 4.554 4.646 220 320 1100 1500 4.7 4.606 4.794 4.653 4.747 220 320 1100 1500 4.8 4.704 4.896 4.752 4.848 220 320 1100 1500 4.9 4.802 4.998 4.851 4.949 220 320 1100 1500 9/29 XC6216
in „Suche Spannungsregler mit kleinem Ruhestrom <<2mA“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XC6216.pdf
260 360 1300 1700 3.9 3.822 3.978 3.861 3.939 260 360 1300 1700 4.0 3.920 4.080 3.960 4.040 220 320 1100 1500 4.1 4.018 4.182 4.059 4.141 220 320 1100 1500 4.2 4.116 4.284 4.158 4.242 220 320 1100 1500 4.3 4.214 4.386 4.257 4.343 220 320 1100 1500 4.4 4.312 4.488 4.356 4.444 220 320 1100 1500 4.5 4.410 4.590 4.455 4.545 220 320 1100 1500 4.6 4.508 4.692 4.554 4.646 220 320 1100 1500 4.7 4.606 4.794 4.653 4.747 220 320 1100 1500 4.8 4.704 4.896 4.752 4.848 220 320 1100 1500 4.9 4.802 4.998 4.851 4.949 220 320 1100 1500 9/29 XC6216
in „Suche Linearregler 5V für ca. 100uA minimal / 100mA max.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Entfernungsmessung_mit_MSP.pdf
is accurately measured by the MSP430. Assuming the speed of sound in air at room temperature to be 1100 ft/s, the MSP430 computes the distance between the system and the subject and displays it using a two-digit static LCD driven by its integrated LCD driver. The distance is displayed in inches with an
in „Suche Transreceiver Ultraschallkapseln mit 80° Detektionswinkel“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Brennenstuhl_RC_3600_Codes.txt
from:https://github.com/sui77/rc-switch/pull/4) (using original Timing) : 101001 00 0110 0010 1010 1100 0xA462AC 1on 101001 11 0111 1100 1011 1100 0xA77CBC 1off (invert this) 101011 01 1010 0110 0000 0101 0xADA605 2on 101000 01 0101 1010 0100 0101 0xA15A45 2off (invert this) 101000 00 1100 1001
in „Brennenstuhl Protokoll dekodieren“ · Softwareentwicklung ·
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PDF
IDF_V30_Spec.pdf
Do not move connectors!" .END_NOTES .PLACEMENT cs13_a pn-cap C1 4000.0 1000.0 100.0 0.0 TOP PLACED cc1210 pn-cc1210 C2 3000.0 3500.0 0.0 0.0 TOP PLACED cc1210 pn-cc1210 C3 3200.0 1800.0 0.0 0.0 BOTTOM PLACED cc1210 pn-cc1210 C4 1400.0 2300.0 0.0 270.0 TOP PLACED cc1210 pn-cc1210 C5 1799.5 3518.1 0.0
in „Eagle 3D Darstellung“ · Platinen ·
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PDF
ATtiny26.pdf
(3) V CC+0.5 V Clock Selected (2) V IL2 Input Low Voltage RESET pin -0.5 0.2V CC V (3) V IH2 Input High Voltage RESET pin 0.9VCC V CC+0.5 V (2) V IL3 Input Low Voltage RESET pin as I/O -0.5 0.2V CC V (3) V IH3
in „ATtiny26(L) Analog-Digital-Wandler ( ADC ) Datenblattübersetzung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
T83C5121.PDF
V CC CC ICC LI VCC V CC VCC P0 RST EA (NC) XTAL2 CLOCK SIGNAL XTAL1 VSS PLCC52 configuration All other pins are disconnected. Figure 53. I CC Test Condition, Power-down Mode VCC V CC CC LI VCC VCC V CC P0
in „[V] 1 Stange ältere (ca. 56St) Atmel AT89C5121 mit Interface für Chipkarten/ SIM (9€)“ · Markt ·
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PDF
T83C5121.PDF
V CC CC ICC LI VCC V CC VCC P0 RST EA (NC) XTAL2 CLOCK SIGNAL XTAL1 VSS PLCC52 configuration All other pins are disconnected. Figure 53. I CC Test Condition, Power-down Mode VCC V CC CC LI VCC VCC V CC P0
in „[V] noch 1 Stange ältere (60St) Atmel AT89C5121 mit Interface für Chipkarten/ SIM (9€)“ · Markt ·
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PDF
swra228c.pdf
DesignNote DN023 868 MHz, 915 MHz and 955 MHz Inverted F Antenna By Fredrik Kervel Keywords CC10xx CC11xL CC110x PCB Antenna CC111x 868 MHz CC112x 915 MHz CC1150 955 MHz CC1175 Inverted F Antenna CC1100E IFA 1 Introduction This document describes a PCB antenna a medium
in „Bitte Hilfe bei Antennenanpassung 2.4GHz“ · HF, Funk und Felder ·
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PDF
Resources_TI_Design_Note_DN023.pdf
DesignNote DN023 868 MHz, 915 MHz and 955 MHz Inverted F Antenna By Fredrik Kervel Keywords CC10xx CC11xL CC110x PCB Antenna CC111x 868 MHz CC112x 915 MHz CC1150 955 MHz CC1175 Inverted F Antenna CC1100E IFA 1 Introduction This document describes a PCB antenna a medium
in „STM32WLE5CCU6 LoRa-Antennenendesign review“ · HF, Funk und Felder ·
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Datei
Test.asm
0, 0, 1, // 0100, 0101, 0110, 0111 659: 1, 0, 0, 1, // 1000, 1001, 1010, 1011 660: 0, 1, 1, 0 // 1100, 1101, 1110, 1111 661: }; 662: 663: return nibbleParity[i&0x0F] ^ nibbleParity[i>>4]; 02C8 00F3 MOVWF 0x73 02C9 0873 MOVF 0x73, W 02CA 00F1 MOVWF 0x71 02CB 3004 MOVLW 0x4 02CC 36F1 LSRF 0x71, F 02CD 0B89 DECFSZ 0x9, F 02CE 2ACC GOTO 0x2cc 02CF 0871 MOVF 0x71, W 02D0 3E63 ADDLW 0x63 02D1 3182 MOVLP 0x2 02D2 000A CALLW 02D3 3182 MOVLP 0x2 02D4 00F2 MOVWF 0x72 02D5 0873 MOVF 0x73, W 02D6 390F ANDLW 0xf 02D7 3E63 ADDLW 0x63 02D8 3182 MOVLP
in „PIC16 Anweisungen wegoptimiert“ · Mikrocontroller und Digitale Elektronik ·
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PDF
89C51CC01C-SLSUM.pdf
Enable interrupt by Message Object 0 - disable IT. 6-0 IECH14:8 1 - enable IT. IECH14:8 = 0b 0000 1100 -> Enable IT’s of message objects 11 and 10. see Figure 41. Reset Value: x000 0000b 96 T89C51CC01 4129E–8051–03/02 T89C51CC01 Table 64. CANIE2 Register CANIE2 (S:C3h) CAN Enable Interrupt Message Object
in „Bit Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRG4BC30U_IR.pdf
Charge (turn-on) — 50 75 IC= 12A Q Gate - Emitter Charge (turn-on) — 8.1 12 nC V = 400V See Fig.8 ge CC Qgc Gate - Collector Charge (turn-on) — 18 27 V GE= 15V t Turn-On Delay Time — 17 — d(on) r RiseTime — 9.6 — ns TJ= 25°C t Turn-Off Delay Time — 78 120 I = 12A, V = 480V d(off) C CC f FallTime — 97 150
in „Ersatz für IGBT G4BC30W“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
slau213a.pdf
connecting to a number of on-board components and interfaces as shown in Figure 2. Wireless LCD Analog CC1100/ Out 2420/2500 EMK Interface Buzzer 2 3 - FG4618 R G A J Microphone 2 F2013 A J Capacitive Buttons Touch Pad Figure 2: Experimenter’srd Block Diagram Wireless communication is possible through the
in „MSP430FG4618 und der UART?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430FG4618_-_F2013_Experimenter___s_Board_-_slau213a.pdf
connecting to a number of on-board components and interfaces as shown in Figure 2. Wireless LCD Analog CC1100/ Out 2420/2500 EMK Interface Buzzer 2 3 - FG4618 R G A J Microphone 2 F2013 A J Capacitive Buttons Touch Pad Figure 2: Experimenter’srd Block Diagram Wireless communication is possible through the
in „msp430xG46x_usart1_19200.c "tested"?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT3756.pdf
50 75 100 125 –50 –25 0 25 50 75 100 125 V IN(V) TEMPERATURE (°C) TEMPERATURE (°C) 37561 G10 INTV CC Current Limit INTV CC Voltage vs V IN vs Temperature INTV CC Voltage vs Temperature 8 20 7.4 A 18 6 ( 7.3 I ) I ) ( T 16 ( C 4 N C 7.2 T R T V U 14 I C C 2 T 7.1 I 12 0 10 7.0 0 20 40 60 80 100 –50 0
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PDF
slau330a.pdf
. The following radio daughter cards are compatible with the MSP-EXP430F5529 Experimenter Board: • CC1100EMK/CC1101EMK – Sub-1-GHz radio • CC2500EMK – 2.4-GHz radio • CC2420EMK/CC2430EMK – 2.4-GHz 802.15.4 [SoC] radio • CC2520EMK/CC2530EMK – 2.4-GHz 802.15.4 [SoC] radio • CC2520 + CC2591 EM (if R4 and
in „Frage zu Schaltung (TI MSP430)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slau330a.pdf
. The following radio daughter cards are compatible with the MSP-EXP430F5529 Experimenter Board: • CC1100EMK/CC1101EMK – Sub-1-GHz radio • CC2500EMK – 2.4-GHz radio • CC2420EMK/CC2430EMK – 2.4-GHz 802.15.4 [SoC] radio • CC2520EMK/CC2530EMK – 2.4-GHz 802.15.4 [SoC] radio • CC2520 + CC2591 EM (if R4 and
in „MSP430 ADC sehr merkwürdige Werte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SN75176B_TEX.pdf
RECEIVER vs HIGH-LEVEL OUTPUT VOLTAGE FREE-AIR TEMPERATURE † vs HIGH-LEVEL OUTPUT CURRENT 5 V = 5 V 5 4.5 CC VID= 200 mV 4.5 VID= 0.2 V – OH = –440 A TA= 25⋅C e 4 – a e 4 l 3.5 a V l 3.5 u 3 V t u 3 u 2.5 t l u 2.5 v l V = 5.25 V L 2 v CC h L 2 V = 5 V i 1.5 h CC H i 1.5 – 1 H V CC = 4.75 V O – V 0.5 O 1 V
in „Welcher Bus für mein Projekt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
treiber.pdf
RECEIVER vs HIGH-LEVEL OUTPUT VOLTAGE FREE-AIR TEMPERATURE † vs HIGH-LEVEL OUTPUT CURRENT 5 V = 5 V 5 4.5 CC VID= 200 mV 4.5 VID= 0.2 V – OH = –440 A TA= 25⋅C e 4 – a e 4 l 3.5 a V l 3.5 u 3 V t u 3 u 2.5 t l u 2.5 v l V = 5.25 V L 2 v CC h L 2 V = 5 V i 1.5 h CC H i 1.5 – 1 H V CC = 4.75 V O – V 0.5 O 1 V
in „RS485 mit SN65176B“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SN75176B.pdf
RECEIVER vs HIGH-LEVEL OUTPUT VOLTAGE FREE-AIR TEMPERATURE † vs HIGH-LEVEL OUTPUT CURRENT 5 V = 5 V 5 4.5 CC VID= 200 mV 4.5 VID= 0.2 V – OH = –440 A TA= 25⋅C e 4 – a e 4 l 3.5 a V l 3.5 u 3 V t u 3 u 2.5 t l u 2.5 v l V = 5.25 V L 2 v CC h L 2 V = 5 V i 1.5 h CC H i 1.5 – 1 H V CC = 4.75 V O – V 0.5 O 1 V
in „STM32 UART Kommunikation -> Langsamer uC Tod“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_AT89S52.PDF
Output Low Voltage VOL1 (Port 0, ALE, PSEN) IOL = 3.2 mA 0.45 V I = -60 µA, V = 5V ± 10% 2.4 V OH CC V Output High Voltage I = -25 µA 0.75 V V OH (Ports 1,2,3, ALE, PSEN) OH CC I = -10 µA 0.9 V V OH CC IOH = -800 µA, VCC= 5V ± 10% 2.4 V Output High Voltage VOH1 (Port 0 in External Bus Mode) IOH = -300
in „AT89S52 Port 0 als I/0-Port“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_AT89S52.PDF
Output Low Voltage VOL1 (Port 0, ALE, PSEN) IOL = 3.2 mA 0.45 V I = -60 µA, V = 5V ± 10% 2.4 V OH CC V Output High Voltage I = -25 µA 0.75 V V OH (Ports 1,2,3, ALE, PSEN) OH CC I = -10 µA 0.9 V V OH CC IOH = -800 µA, VCC= 5V ± 10% 2.4 V Output High Voltage VOH1 (Port 0 in External Bus Mode) IOH = -300
in „serielle Ausgaben auf AT89S52 Baud-Raten-Generator startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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atmega8China.pdf
LSB 单极性转换 1 LSB 增益误差 VREF= 4V, CC= 4V ADC 时钟 = 200 kHz 单极性转换 1 LSB 偏置误差 VREF= 4V, CC= 4V ADC 时钟 = 200 kHz 转换时间 连续转换 13 260 µs 时钟频率 50 1000 kHz AV 模拟电压 V - 0.32) V + 0.33) V CC CC CC V 参考电压 2.0 AV V REF CC V 模拟电压 GND V V IN REF 输入带宽 38.5
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AT89S8252_Datasheet_doc0401.pdf
.. 15.0 mA DC Characteristics The values shown in this table are valid for T = -40AC to 85°C and V CC = 5.0V ± 20%, unless otherwise noted. Symbol Parameter Condition Min Max Units VIL Input Low-voltage (Except EA) -0.5 0.2 CC - 0.1 V VIL1 Input Low-voltage (EA) -0.5 0.2 CC - 0.3 V V Input High-voltage (Except XTAL1, RST) 0.2 V + 0.9 V + 0.5 V IH CC CC V Input High-voltage (XTAL1, RST) 0.7 V V + 0.5 V IH1 CC CC V Output Low-voltage (1) I = 1.6 mA 0.5 V OL OL (Ports 1,2,3) VOL1 Output Low-voltage (1) OL = 3.2 mA 0.5 V (Port 0, ALE, PSEN) VOH Output
in „lichtschranke mit zählfunktion einer umdrehung“ · Mikrocontroller und Digitale Elektronik ·
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AT89S8252.pdf
.. 15.0 mA DC Characteristics The values shown in this table are valid for T = -40AC to 85°C and V CC = 5.0V ± 20%, unless otherwise noted. Symbol Parameter Condition Min Max Units VIL Input Low-voltage (Except EA) -0.5 0.2 CC - 0.1 V VIL1 Input Low-voltage (EA) -0.5 0.2 CC - 0.3 V V Input High-voltage (Except XTAL1, RST) 0.2 V + 0.9 V + 0.5 V IH CC CC V Input High-voltage (XTAL1, RST) 0.7 V V + 0.5 V IH1 CC CC V Output Low-voltage (1) I = 1.6 mA 0.5 V OL OL (Ports 1,2,3) VOL1 Output Low-voltage (1) OL = 3.2 mA 0.5 V (Port 0, ALE, PSEN) VOH Output
in „UART_ Werte empfangen???“ · Mikrocontroller und Digitale Elektronik ·
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AT89S8252.pdf
.. 15.0 mA DC Characteristics The values shown in this table are valid for T = -40AC to 85°C and V CC = 5.0V ± 20%, unless otherwise noted. Symbol Parameter Condition Min Max Units VIL Input Low-voltage (Except EA) -0.5 0.2 CC - 0.1 V VIL1 Input Low-voltage (EA) -0.5 0.2 CC - 0.3 V V Input High-voltage (Except XTAL1, RST) 0.2 V + 0.9 V + 0.5 V IH CC CC V Input High-voltage (XTAL1, RST) 0.7 V V + 0.5 V IH1 CC CC V Output Low-voltage (1) I = 1.6 mA 0.5 V OL OL (Ports 1,2,3) VOL1 Output Low-voltage (1) OL = 3.2 mA 0.5 V (Port 0, ALE, PSEN) VOH Output
in „I2C Anschluß AT89S8252“ · Mikrocontroller und Digitale Elektronik ·
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doc0401.pdf
.. 15.0 mA DC Characteristics The values shown in this table are valid for T = -40AC to 85°C and V CC = 5.0V ± 20%, unless otherwise noted. Symbol Parameter Condition Min Max Units VIL Input Low-voltage (Except EA) -0.5 0.2 CC - 0.1 V VIL1 Input Low-voltage (EA) -0.5 0.2 CC - 0.3 V V Input High-voltage (Except XTAL1, RST) 0.2 V + 0.9 V + 0.5 V IH CC CC V Input High-voltage (XTAL1, RST) 0.7 V V + 0.5 V IH1 CC CC V Output Low-voltage (1) I = 1.6 mA 0.5 V OL OL (Ports 1,2,3) VOL1 Output Low-voltage (1) OL = 3.2 mA 0.5 V (Port 0, ALE, PSEN) VOH Output
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