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LP171WE2-TLA4.pdf
8 E 1000 1110 Characteristic 31 1F Blue X = 0.145 2 5 0010 0101 32 20 Blue Y =0.135 2 2 0010 0010 33 21 White X =0.313 5 0 0101 0000 34 22 White Y =0.329 5 4 0101 0100 35 23 Established Timing I =00h(If not used) 0 0 0000 0000 Established 36 24 Established Timing II =00h(If not used) 0 0 0000 0000 Timings
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PDF
huuang.pdf
) STX ADDR FUNC LEN DATA LRC END “:” “0” “1” “0” “2” “0” “3” “0” “0” “0” “B” “B” “8” “3” “7” “CR” “LF” 3AH 30H 31H 30H 32H 30H 33H 30H 30H 30H 42H 42H 38H 33H 37H 0DH 0AH Calculate LRC: 01H+02H+03H+00H+0BH+B8H=C9H C9H subtracted from 100H: 37H So the sent data is following:3AH 30H 31H 30H 32H 30H 33H 30H 30H 30H 42H 42H 38H 33H 37H 0DH 0AH 3.2 RTU Mode Quiet ADDR FUNC LEN D (n-1~D(0) CRC Quiet >50ms >50ms ⑴ Quiet: the time of no data is more than 50 ms ⑵ ADDR:Communication address, 8-bit data ⑶ FUNC:Function code, 8-bit data
in „87Hz-Schaltung Dreieck Vorteile?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
huuang.pdf
) STX ADDR FUNC LEN DATA LRC END “:” “0” “1” “0” “2” “0” “3” “0” “0” “0” “B” “B” “8” “3” “7” “CR” “LF” 3AH 30H 31H 30H 32H 30H 33H 30H 30H 30H 42H 42H 38H 33H 37H 0DH 0AH Calculate LRC: 01H+02H+03H+00H+0BH+B8H=C9H C9H subtracted from 100H: 37H So the sent data is following:3AH 30H 31H 30H 32H 30H 33H 30H 30H 30H 42H 42H 38H 33H 37H 0DH 0AH 3.2 RTU Mode Quiet ADDR FUNC LEN D (n-1~D(0) CRC Quiet >50ms >50ms ⑴ Quiet: the time of no data is more than 50 ms ⑵ ADDR:Communication address, 8-bit data ⑶ FUNC:Function code, 8-bit data
in „Frequenzumrichter und Motor für meine Drehbank“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IMOR100E-01E_010.pdf
INITialize:ALL Initializes all memory App-27 MENU Group :MENU? Queries all menu screen settings. App-33 :MENU:ACCumulate Sets/queries the accumulate display App-33 :MENU:CHARt Sets/queries the chart speed when the mode is in realtime+App-33 mode :MENU:CPRint Sets/queries contents of the channel print App-33 :MENU:FORMat Sets/queries the display format App-33 :MENU:GAUGe Sets/queries contents of the gage print App-33 :MENU:GRID Sets/queries the grid setting App-33 App-10 IM OR100E-01E Appendix 1.2 Commands
in „Yokogawa OR100E/OR122 wofür?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
OZ960_O2MICRO.pdf
VDDA = 5V; (2) Vdim = 2V; LPWM = 50k Supply current ION (3) - 4.4 5.5 mA Ca=Cb=Cc=Cd=2nF HF = 60kHz; LF = 185Hz SST current See Table 1, page 6 CTIMR current See Table 1, page 6 NDR-PDR Output Output resistance Rp Current source - 27 - Ω Output resistance Rn Current sink - 14 - Ω OZ960-DS-1.6 Page 5 OZ960
in „Ic´s (unbekannt) für den Tft monitor gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OZ960.pdf
VDDA = 5V; (2) Vdim = 2V; LPWM = 50k Supply current ION (3) - 4.4 5.5 mA Ca=Cb=Cc=Cd=2nF HF = 60kHz; LF = 185Hz SST current See Table 1, page 6 CTIMR current See Table 1, page 6 NDR-PDR Output Output resistance Rp Current source - 27 - Ω Output resistance Rn Current sink - 14 - Ω OZ960-DS-1.6 Page 5 OZ960
in „BenQ FP71Bildschirm fällt nach einiger Zeit aus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IQP_500_GSM.pdf
IQP500 notwendig ist, zu erzielen wird auf der Hauptplatine entweder ein Spannungswandler vom Typ LF40ABV, oder aber eine Diode des Typs N5400 verwendet. Der Nachteil der Diode ist die hohe Lastabhängigkeit der Ausgangsspannung. Der Nachteil des Reglers seine schlechte Verfügbarkeit. Die Diodenlösung
in „IQP 500 GSM Bildübertragung Tonerätzverfahren“ · Projekte & Code ·
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Datei
Nixie_main_v3.c
File: Nixie_main.c * Author: N. Brent Burns * Compiler: XC8 v1.43 * * Started: February 25, 2018, 9:33 PM (while drunk) * * Info: This .C code is for a 12-Hour Nixie Tube Clock circuit. * This PIC determines/controls/outputs the accurate 1Hz clock signal. * It also correctly determines and feeds time
in „Compiler Error beim Build für PIC16F15325“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Nixie_main_v3__-_Kopie.c
File: Nixie_main.c * Author: N. Brent Burns * Compiler: XC8 v1.43 * * Started: February 25, 2018, 9:33 PM (while drunk) * * Info: This .C code is for a 12-Hour Nixie Tube Clock circuit. * This PIC determines/controls/outputs the accurate 1Hz clock signal. * It also correctly determines and feeds time
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PDF
OZ960.pdf
VDDA = 5V; (2) Vdim = 2V; LPWM = 50k Supply current ION (3) - 4.4 5.5 mA Ca=Cb=Cc=Cd=2nF HF = 60kHz; LF = 185Hz SST current See Table 1, page 6 CTIMR current See Table 1, page 6 NDR-PDR Output Output resistance Rp Current source - 27 - Ω Output resistance Rn Current sink - 14 - Ω OZ960-DS-1.6 Page 5 OZ960
in „Monitor defekt!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Slave_mode.pdf
194.064MHz 7D 11 224.096MHz 12N 31 195.936MHz 8A 12 225.648MHz 12B 32 197.648MHz 8B 13 227.36MHz 12C 33 199.36MHz 8C 14 229.072MHz 12D 34 201.072MHz 8D 15 230.784MHz 13A 35 202.928MHz 9A 16 232.496MHz 13B 36 204.64MHz 9B 17 234.208MHz 13C 37 206.352MHz 9C 18 235.776MHz 13D 38 208.064MHz 9D 19 237.488MHz
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PDF
SlavemodeSPEC_eng.pdf
194.064MHz 7D 11 224.096MHz 12N 31 195.936MHz 8A 12 225.648MHz 12B 32 197.648MHz 8B 13 227.36MHz 12C 33 199.36MHz 8C 14 229.072MHz 12D 34 201.072MHz 8D 15 230.784MHz 13A 35 202.928MHz 9A 16 232.496MHz 13B 36 204.64MHz 9B 17 234.208MHz 13C 37 206.352MHz 9C 18 235.776MHz 13D 38 208.064MHz 9D 19 237.488MHz
in „DAB+ Modul KeyStone 8650“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ID-2LA__ID-12LA__ID-20LA2013-4-10.pdf
Parity, 1 stop bit. Output = CMOS (Push Pull) 0-Vdd STX (02h) DATA (10 ASCII) CHECK SUM (2 ASCII) CR LF ETX (03h) Example for Calculation of Checksum for ASCII Suppose the output Data is 0C000621A58E Here the actual data is 0C,00,00,06,21,A5 and the checksum is 6E Using binary we Exclusive OR the bit columns
in „ID-12LA RFID Reader Datenauswertung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC16C550-05.pdf
I C S T C N D D D D D V R D D C N 4 4 4 4 4 4 4 4 4 3 3 3 NC 1 36 NC D5 2 35 MR D6 3 34 OUT1 D7 4 33 DTR RCLK 5 32 RTS NC 6 31 OUT2 SC16C550IB48 RX 7 30 INT TX 8 29 RXRDY CS0 9 28 A0 CS1 10 27 A1 CS2 11 26 A2 BAUDOUT 12 25 NC 3 4 5 6 7 8 9 0 1 2 3 4 1 1 1 1 1 1 1 2 2 2 2 2 002aaa093 C L L W W S R R
in „Probleme beim Senden SC16c550“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SMD_Catalog.pdf
zero-bias schottky p32 PDTC143XT Phi N SOT23 pnp dtr 4k7+10k t32 PDTC143XT Phi N SOT23 pnp dtr 4k7+10ks 33 MUN5333DW1 Mot DP SOT363 npn/pnp dtr 4k7+47k 33 DTA143XE Roh N EMT3 pnp dtr 4k7+10k 50V 100mA 33 DTA143XUA Roh N SC70 pnp sw 4k7+10k bias res 50V 100mA 33 DTA143XKA Roh N SC59 pnp sw 4k7+10k bias res 50V 100mA 33 MMBD1404 Nat B SOT23 dual cc Si diode 200V 100mA 33 Gali-33 MC AZ SOT89 DC-4GHz MMIC amp 19dB gain 33V PZM33NB1 Phi C SOT346 33 300mW zener 33Y BZV49-C33 Phi O SOT89 33V 1W zener 34 MUN5334DW1 Mot DP
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
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PDF
MCS51LB.pdf
37 P0.2 / AD2 P1.4 5 36 P0.3 / AD3 VSS Port 1 P1.5 6 35 P0.4 / AD4 P1.6 7 34 P0.5 / AD5 P1.7 8 8051 33 P0.6 / AD6 RST RST 9 32 P0.7 / AD7 Port 2 RXD / P3.0 10 8052 31 EA / VPP 8051 TXD / P3.1 11 30 ALE / PROG EA INT0 / P3.2 12 8052 Port 3 INT1 / P3.3 13 29 PSEN T0 / P3.4 14 28 P2.7 / A15 XTAL1 T1 / P3.5
in „MCS51-Kurs sinnvoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC16F1939.pdf
4 3 2 1 0 3 2 1 0 C C C D D D D C C C C R R R R R R R R R R R 4 3 2 1 0 98 7 6 5 4 RC7 1 4 4 4 4 4 33 3 3 3 3 RD4 2 33 RA6 RD5 32 RA7 3 31 VSS RD6 4 PIC16F1939 30 VSS RD7 5 29 NC VSS 6 PIC16LF1939 28 VDD VDD 7 27 RE2 VDD 8 26 RE1 RB0 9 25 RE0 RB1 10 24 RA5 RB2 11 23 RA4 1 1 1 11 1 1 1 2 2 2 B CB B B
in „MPLAB delay und xtalfreq richtig benutzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MPLINK_TUTORIAL.pdf
5.1 Highlights ......................................................................................33 5.2 Overview .......................................................................................33 5.3 Building the Application .................................................................35
in „Anfängerfrage zu Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA8924.pdf
g 1 S 8 w 2 m PCB version 4 1-2002 h 0 c o L6 C38 C35 W d C21 c U1 C8 l o a s C20 s C14 C11 - L5 C33 D J4 J3 Z1 p C27 C26 w e On r a Out2 Out1+ V GND V S1 m DD SS p TDA8920/21/22/23/24TH In1 In2 Off i state of D art e r Top silk screen Top copper 0 C25 C1 C34 R11 C39 C23 C9 C36 C32 C3 R5 C10 C15 C22
in „Schaltregler 24V/15A gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STEVAL-3DP001V1_Manual.pdf
...................................................................................................33 Figure 19: wifictrl.html web page ..............................................................................................................34 Figure 20: Main window of Pronterface...............
in „3D-Drucker Board bzw CNC-Board mit STM32F401“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
74HC_HCT123_Nexperia.pdf
0.1 - 0.1 V IO = 20 A; V CC = 6.0 V - 0 0.1 - 0.1 - 0.1 V IO = 4 mA; V CC = 4.5 V - 0.15 0.26 - 0.33 - 0.4 V I = 5.2 mA; V = 6.0 V - 0.16 0.26 - 0.33 - 0.4 V O CC II input leakage V I V CC or GND; V CC = 6.0 V - - 0.1 - 1.0 - 1.0 A current ICC supply current V =IV CC or GND; I O 0 A; - - 8.0 - 80
in „Dauer-Trigger verbieten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
uniTFT050-A.pdf
Applikationsbeispiele 28 RS232V24- VerbindungzueinemPC 28 RS485- Bussystem 28 SPI 29 I²C 31 USB 32 SD CARD 33 VideoEingang/ Kamera 33 AnalogInput 34 Pulsweitenmodulation(PWM) 35 Input/Output(I/O) 36 Pulsweitenmodulation(PWM) 36 TechnischeÄnderungvorbehalten. Seite2 Wir übernehmenkeineHaftungfür Druckfehler undApplikationsbeispiele
in „Probleme mit übertragung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_uniTFT_050-A.pdf
Applikationsbeispiele 28 RS232V24- VerbindungzueinemPC 28 RS485- Bussystem 28 SPI 29 I²C 31 USB 32 SD CARD 33 VideoEingang/ Kamera 33 AnalogInput 34 Pulsweitenmodulation(PWM) 35 Input/Output(I/O) 36 Pulsweitenmodulation(PWM) 36 TechnischeÄnderungvorbehalten. Seite2 Wir übernehmenkeineHaftungfür Druckfehler undApplikationsbeispiele
in „Display am Attiny 841“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Programmer_Manual.pdf
Programmer Table of Contents Table 2-22: Save and Recall commands . . . . . . . . . . . . . . . . 2-33 Table 2-23: Status and Error commands . . . . . . . . . . . . . . . 2-33 Table 2-24: Trigger commands . . . . . . . . . . . . . . . . . . . . . . . 2-35 Table 2-25: Vertical commands . . . . . . . .
in „Tektronix über R232 auslesen ABER FFT und nicht Waveform“ · Mikrocontroller und Digitale Elektronik ·
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Datei
kueche_2.lst
lcd_clear 000058 308d cpi r24, $0D 000059 f081 breq gp_cr 00005a 308a cpi r24, $0A 00005b f061 breq gp_lf 00005c 3280 cpi r24, $20 00005d f068 brlo gpret 00005e 3880 cpi r24, $80 00005f f0c0 brlo gpdraw 000060 3980 cpi r24, $90 000061 f020 brlo gprow 000062 3a80 cpi r24, $A0 000063 f440 brsh gp_hi 000064
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PDF
54600-Series_Datasheet__5968-8152EN_.pdf
Bandwidth 20 MHz 500 MHz 150 MHz 250 MHz 50 MHz Probe Risetime (Calculated) < 17.5 ns < 700 ps < 2.33 ns < 1.4 ns < 7 ns Attenuation Ratio 1:1 10:1 10:1 100:1 1000:1 Input Resistance 1 MΩ 2.2 MΩ 10 MΩ 66.7 MΩ 100 MΩ (when terminated into 1 MΩ) Input Capacitance Approx. 70 pF Approx. 12 pF Approx. 15
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PWM-Controller_ICE2QS01.pdf
outstanding controller for quasi- resonant flyback converter in the market. Typical Application W D Lf Cbus Snubber p W O Cf VO 85 ~ 265 VAC s RVCC DVCC C C R R O VCC ZC2 ZC1 D ~D D W a r1 r4 C ZC ZC HV VCC ZC C PS Power Cell Q1 R b1 Gate OUT CDS Zero Crossing Detectionriver GND PWM Rb2 Rovs1 Controller
in „Ausfall Netzteil HAMEG HMO3524“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN00022_COMPASS.pdf
.................................................................................................. 33 Figure 26 Analog 8-segment compass ............................................................................................................... 35 Figure 27 Analog high resolution compass.........
in „Fluglage messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN00022_COMPASS.pdf
.................................................................................................. 33 Figure 26 Analog 8-segment compass ............................................................................................................... 35 Figure 27 Analog high resolution compass.........
in „Schwächste Signale aus dem Rauschen herausholen. Verständliche Erklärung gesucht.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN00022_COMPASS.pdf
.................................................................................................. 33 Figure 26 Analog 8-segment compass ............................................................................................................... 35 Figure 27 Analog high resolution compass.........
in „elektronischen Kompass bauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN00022_COMPASS.pdf
.................................................................................................. 33 Figure 26 Analog 8-segment compass ............................................................................................................... 35 Figure 27 Analog high resolution compass.........
in „Problem mit Kompass Achsen (Mega644p + HMC5883L)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC16F1503.pdf
is beneficial for applica- tions that stay in Sleep mode for long periods of time. Note: The PIC16LF1503 does not have a con- The Normal mode is beneficial for applications that figurable Low-Power Sleep mode. need to wake from Sleep quickly and frequently. PIC16LF1503 is an unregulated device and is
in „Versorgungsspannung vom PIC mit PIC messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F405-7x.pdf
▯▯ 633 ▯▯ ▯▯ ▯▯ ▯▯ ▯▯ 633 633 ▯▯ªΩ▯RESISTOR▯OR▯SOLDERING▯BRIDGE▯ ▯▯▯▯6 PRESENT▯FOR▯THE▯34-▯▯&▯▯XXX 33 CONFIGURATION▯▯NOT▯PRESENT▯IN▯THE ▯▯▯ ▯▯ ▯▯ ▯▯ 34-▯▯&▯XX▯CONFIGURATION▯ ▯ ▯▯ 6 633 $$ 6 33 4WO▯▯▯Ω RESISTORS▯CONNECTED▯TO▯▯▯ ▯633 ▯FOR▯34-▯▯&▯▯XX ▯6 ▯FOR▯THE▯34-▯▯&▯▯XX 6$$ 6 ▯▯$$▯FOR▯34-▯▯&▯XX 33 33
in „STM32 DCMI (Kamera) Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tca8418.pdf
continued) T A 25°C (unless otherwise noted) 44 44 V CC= 3.6 V V CC= 3.3 V T A -40°C TA= -40°C ) ) A33 m 33 ( TA= 25°C ( TA= 25°C E C U TA= 85°C U T A 85°C S S I I t22 t 22 e e r r C C e e r r u o S11 S 11 0 0 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.0 0.1 0.2 0.3 0.4 0.5 0.6 V CCP- VOH(V) VCCP- VOH(V) Figure 13
in „Keypad 3x4 (am Tasmota o.ä.)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6291174.pdf
JA 1/16W R452 401 105 3901 MT-GLAZE 33 JA 1/16W R5281 401 105 1402 MT-GLAZE 150 JA 1/16W R453 401 105 3901 MT-GLAZE 33 JA 1/16W R5284 401 105 3901 MT-GLAZE 33 JA 1/16W R454 401 105 3901 MT-GLAZE 33 JA 1/16W R5286 401 105 0504 MT-GLAZE 1K
in „Sanyo LCD Beamer PLC- XU30 defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SAF_C515C-LM.pdf
pins are used for ground connections of the I/O ports during normal, idle, and power-down mode. VCC1 33 – Supply voltage for internal logic This pins is used for the power supply of the internal logic circuits during normal, idle, and power down mode. VSS1 34 – Ground (0 V) for internal logic This pin
in „SAF C515C LM auslesen verzweiflung :(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
steuerzeichen.pdf
SYMBOL FOR tabulation HORIZONTAL TABULATION 010 0x0a ctrl J 09689 0x25d9 e2 97 99 ◙ INVERSE WHITE LF line feed Zeilenvorschub 09226 0x240a e2 90 8a SYMBOL FOR CIRCLE LINE FEED 011 0x0b ctrl K 09794 0x2642 e2 99 82 ♂ MALE SIGN VT vertical tabulation Vertikaltabulator09227 0x240b e2 90 8b SYMBOL FOR VERTICAL
in „konsolenanwendung zeilenumbruch zeile hoch“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcdFonts.h
, 0}, // ( 8)010 BS {0, 0, 0, 0, 0, 0, 0, 0}, // ( 9)011 TAB {0, 0, 0, 0, 0, 0, 0, 0}, // ( 10)012 LF {0, 0, 0, 0, 0, 0, 0, 0}, // ( 11)013 VT {0, 0, 0, 0, 0, 0, 0, 0}, // ( 12)014 FF {0, 0, 0, 0, 0, 0, 0, 0}, // ( 13)015 CR {0, 0, 0, 0, 0, 0, 0, 0}, // ( 14)016 SO {0, 0, 0, 0, 0, 0, 0, 0}, // ( 15)017
in „Funktionsparameter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PWM_20schemes_20for_20BLDC.pdf
for target application. This 2.5”x3.5” piggy-back control board shown in Fig. 3.1 is based on TMS320LF2406 (TI) DSP. In addition, the software can also be configured for various sinusoidal operation such as simulated sinusoidal operation from Hall sensor feedback, phase current controlled sinusoidal operation
in „Diskrete H-Brücke“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Calgary_OLED_Module_Application_Instruction.pdf
Command: Set Contrast Control (in Hex) Initial Luminance, cd/m2 Elegance Yellow Spring Green 20 1C 0E 40 33 25 60 52 47 Table 3: Recommended Initialization Command for Different Luminance Settings Grayscale The SSD0323 employs a pulse width modulation to control grayscale. The pulse width of each gray level
in „Osram Pictiva OLED - Welche Kondensatoren???“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xtr115.pdf
REFERENCE VOLTAGE vs TEMPERATURE OVER-SCALE CURRENT vs TEMPERATURE 0.1 34 With External Transistor ) ) 33 ( 0 A e ( a n 32 o r V+ = 36V V u c–0.1 e 31 e a V+ = 7.5V e S e r 30 R–0.2 v V+ = 24V ∆ O 29 –0.3 28 –75 –50 –25 0 25 50 75 100 125 –75 –50 –25 0 25 50 75 100 125 Temperature (°C) Temperature (°C) VREGVOLTAGE
in „HIH 4000 an XTR115 0.4 V - 4.20mA“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SC17_GENERAL_MAG_98_1.pdf
sensor with V = 5 V handbook, full pagoffset sensitivityS adjustment R7 R9 adjustment R2 R5 2.4 k 33 k R1 500 k 140 k R12 100 k 150 k KMZ10B R3 22 k R6 R11 3 2 8 KTY82-210 IC1 2 op-amp 1 22 k 6 4 op-amp 7 VO= 0.2 V to 4.8 V 1 3 4 TLC2272 5 (with resistive load R4 greater than 10 k ) 14 k R8 R10 C1 2.4 k 33 k 10 nF MBH687 Fig.11 Basic application circuit with temperature compensation and offset adjustment. 1998 Jun 12 10 Philips Semiconductors Magnetic field sensors General Further information for advanced
in „OPV umschaltbar zwischen Invertieren/Nichtinvertieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SC17_GENERAL_MAG_98_1.pdf
sensor with V = 5 V handbook, full pagoffset sensitivityS adjustment R7 R9 adjustment R2 R5 2.4 k 33 k R1 500 k 140 k R12 100 k 150 k KMZ10B R3 22 k R6 R11 3 2 8 KTY82-210 IC1 2 op-amp 1 22 k 6 4 op-amp 7 VO= 0.2 V to 4.8 V 1 3 4 TLC2272 5 (with resistive load R4 greater than 10 k ) 14 k R8 R10 C1 2.4 k 33 k 10 nF MBH687 Fig.11 Basic application circuit with temperature compensation and offset adjustment. 1998 Jun 12 10 Philips Semiconductors Magnetic field sensors General Further information for advanced
in „Typical Application Circuit - Kondensatoren wechselbar?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_MAG_98_1.pdf
sensor with V = 5 V handbook, full pagoffset sensitivityS adjustment R7 R9 adjustment R2 R5 2.4 k 33 k R1 500 k 140 k R12 100 k 150 k KMZ10B R3 22 k R6 R11 3 2 8 KTY82-210 IC1 2 op-amp 1 22 k 6 4 op-amp 7 VO= 0.2 V to 4.8 V 1 3 4 TLC2272 5 (with resistive load R4 greater than 10 k ) 14 k R8 R10 C1 2.4 k 33 k 10 nF MBH687 Fig.11 Basic application circuit with temperature compensation and offset adjustment. 1998 Jun 12 10 Philips Semiconductors Magnetic field sensors General Further information for advanced
in „Suche einen Magnetfeldsensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
kmz11b1.pdf
sensor with V = 5 V handbook, full pagoffset sensitivityS adjustment R7 R9 adjustment R2 R5 2.4 k 33 k R1 500 k 140 k R12 100 k 150 k KMZ10B R3 22 k R6 R11 3 2 8 KTY82-210 IC1 2 op-amp 1 22 k 6 4 op-amp 7 VO= 0.2 V to 4.8 V 1 3 4 TLC2272 5 (with resistive load R4 greater than 10 k ) 14 k R8 R10 C1 2.4 k 33 k 10 nF MBH687 Fig.11 Basic application circuit with temperature compensation and offset adjustment. 1998 Jun 12 10 Philips Semiconductors Magnetic field sensors General Further information for advanced
in „Strom-Messung + PIC16C76“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_MAG_98_1.pdf
sensor with V = 5 V handbook, full pagoffset sensitivityS adjustment R7 R9 adjustment R2 R5 2.4 k 33 k R1 500 k 140 k R12 100 k 150 k KMZ10B R3 22 k R6 R11 3 2 8 KTY82-210 IC1 2 op-amp 1 22 k 6 4 op-amp 7 VO= 0.2 V to 4.8 V 1 3 4 TLC2272 5 (with resistive load R4 greater than 10 k ) 14 k R8 R10 C1 2.4 k 33 k 10 nF MBH687 Fig.11 Basic application circuit with temperature compensation and offset adjustment. 1998 Jun 12 10 Philips Semiconductors Magnetic field sensors General Further information for advanced
in „Magnet und Hallsensor als Türkontakt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_MAG_98_1.pdf
sensor with V = 5 V handbook, full pagoffset sensitivityS adjustment R7 R9 adjustment R2 R5 2.4 k 33 k R1 500 k 140 k R12 100 k 150 k KMZ10B R3 22 k R6 R11 3 2 8 KTY82-210 IC1 2 op-amp 1 22 k 6 4 op-amp 7 VO= 0.2 V to 4.8 V 1 3 4 TLC2272 5 (with resistive load R4 greater than 10 k ) 14 k R8 R10 C1 2.4 k 33 k 10 nF MBH687 Fig.11 Basic application circuit with temperature compensation and offset adjustment. 1998 Jun 12 10 Philips Semiconductors Magnetic field sensors General Further information for advanced
in „Magnetfeldsensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_MAG_98_1.pdf
sensor with V = 5 V handbook, full pagoffset sensitivityS adjustment R7 R9 adjustment R2 R5 2.4 k 33 k R1 500 k 140 k R12 100 k 150 k KMZ10B R3 22 k R6 R11 3 2 8 KTY82-210 IC1 2 op-amp 1 22 k 6 4 op-amp 7 VO= 0.2 V to 4.8 V 1 3 4 TLC2272 5 (with resistive load R4 greater than 10 k ) 14 k R8 R10 C1 2.4 k 33 k 10 nF MBH687 Fig.11 Basic application circuit with temperature compensation and offset adjustment. 1998 Jun 12 10 Philips Semiconductors Magnetic field sensors General Further information for advanced
in „KMZ51 Sensor - Reset frequenz“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
hardware_t.cpp
Quick_Measure_Threshold_btn_select = 1; // Display settings GridColorArrayPos = 1; // Normal Grid 33 % GridColor_Val = GridColorArray[GridColorArrayPos]; // GridColor Gray //BF not used GridColorArrayPos_Delayed = 1; // Delayed Grid 33 % //BF not used GridColor_Val_Delayed = 0x15; // GridColore Gray
in „Wittig(welec) DSO W20xxA Open Source Firmware (Teil3)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32E230xx_Datasheet_Rev1.5.pdf
................................................................................... 62 (1) Table 4-33. Standard SPI characteristics ............................................................................................. 63 (1) Table 4-34. I2S characteristics ....................................
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·