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PDF
pcd8544.pdf
the Absolute Maximum Rating System (IEC 134); see notes 1 and 2. SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VDD supply voltage note 3 −0.5 +7 V V supply voltage LCD note 4 −0.5 +10 V LCD Vi all input voltages −0.5 VDD + 0.5 V SS ground supply current −50 +50 mA I,OI DC input or output current −10 +10
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PDF
PCD8544_1.pdf
the Absolute Maximum Rating System (IEC 134); see notes 1 and 2. SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VDD supply voltage note 3 −0.5 +7 V V supply voltage LCD note 4 −0.5 +10 V LCD Vi all input voltages −0.5 VDD + 0.5 V SS ground supply current −50 +50 mA I,OI DC input or output current −10 +10
in „MSP430F2013 steuert Nokia-3310-Display an“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD8544_-_3310_Display_Controler.pdf
the Absolute Maximum Rating System (IEC 134); see notes 1 and 2. SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VDD supply voltage note 3 −0.5 +7 V V supply voltage LCD note 4 −0.5 +10 V LCD Vi all input voltages −0.5 VDD + 0.5 V SS ground supply current −50 +50 mA I,OI DC input or output current −10 +10
in „Atmega8 Nokia 3310 Display und AVR-Studio“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5510LCD_datasheet.pdf
the Absolute Maximum Rating System (IEC 134); see notes 1 and 2. SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VDD supply voltage note 3 −0.5 +7 V V supply voltage LCD note 4 −0.5 +10 V LCD Vi all input voltages −0.5 VDD + 0.5 V SS ground supply current −50 +50 mA I,OI DC input or output current −10 +10
in „Probleme mit Taktversorgung auf Steckbrett“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5510LCD_datasheet.pdf
the Absolute Maximum Rating System (IEC 134); see notes 1 and 2. SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VDD supply voltage note 3 −0.5 +7 V V supply voltage LCD note 4 −0.5 +10 V LCD Vi all input voltages −0.5 VDD + 0.5 V SS ground supply current −50 +50 mA I,OI DC input or output current −10 +10
in „[PIC]Probleme bei SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD8544_-_3310_Display_Controler.pdf
the Absolute Maximum Rating System (IEC 134); see notes 1 and 2. SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VDD supply voltage note 3 −0.5 +7 V V supply voltage LCD note 4 −0.5 +10 V LCD Vi all input voltages −0.5 VDD + 0.5 V SS ground supply current −50 +50 mA I,OI DC input or output current −10 +10
in „Display Nokia 5110“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HarmanKardon-SUBTS18_actsub.pdf
Line In), Single input Speaker/Hi Level Input 3.4 Vrms 2.4 - 4.8 To Rated Power driven 30 Hi Level Max. Input Voltage 32 Vrms Nominal Freq., Min. Volume Signal to Noise Ratio SNR-A-Weighted 85 dB 82 relative to rated power A-Weighting filter SNR-unweighted 62 dB 59 relative to rated power 22k filte SNR rel. 1W-unweighted 64 dB 59 relative to 1W Output 22k filte Volume @max, using RMS Residual Noise Floor 1.2 mVrms 3.0 reading DMM/VOM (or A/P) Volume @max, w/ A/P Swept Bandpass Measurement (Line Residual Noise Floor 0.8 mVrms 2.0 freq.+ harmonics) Input Impedanc e Line
in „[gelöst] Wer kennt diese Bauteile (Feldeffekttransistor)?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TemperatursensorAnleitung.pdf
5.1 Relative Humidity Table 1:AM2320 relative humidity performance table parameter condition mi typ max unit n resolution 0.1 %RH Range 0 99.9 %RH Accuracy 25℃ ±3 %RH Repeatability ±0.1 %RH Interchangeability Completely interchangeable Figure 2: 25 ℃ relative humidity of maximum errorAM2320 Response time
in „Raspberry Pi - Modbus RTU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia5110.pdf
the Absolute Maximum Rating System (IEC 134); see notes 1 and 2. SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VDD supply voltage note 3 −0.5 +7 V V supply voltage LCD note 4 −0.5 +10 V LCD Vi all input voltages −0.5 VDD + 0.5 V SS ground supply current −50 +50 mA I,OI DC input or output current −10 +10
in „Nokia 5110 ansteuern für newbie“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EM6126_DS.pdf
required capacitor: 1μF on V LCD, 100nF on VDD1,2and V HV Parameter Symbol Test conditions Min. Typ. Max. Units Supply Current Sleep mode IDD T A 25°C, Sleep = 1 100 nA Sleep mode IHV T A 25°C, Sleep = 1 0.8 μA Normal LCD refresh mode IDD T A 25°C, (note 1) 17 22 μA Normal LCD refresh mode IHV T A 25°C
in „LCD mit SPI ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OnlinePotentiometerHandbook-1.pdf
backlash, 12, 128 fa,tors, dial, 72 offset. 73 Kiln, 150 ove rtravel, 128 KUR Killapot, 193 parameter, 127 mounting. 127 l-Pad atlenuator, 109 running torque. 128 Lateral Tunout, 129 starting torque, 127 Leadserewaetuator, 167 Tunout, 129 Lead, avoid pulling, 189 runout, pilot diameter, 129 lighting level
in „Unterschied zwischen Präsizionstrimmer und Spindeltrimmer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datasheet_IVT-S_V1.02.pdf
(max. time) 5min ±120 ±320 ±730 ±1100 ±2700 A 30s ±200 ±430 ±860 ±1400 ±3200 A 10s ±300 ±600 ±1000 ±2000 ±4300 A 1s ±900 ±1600 ±2700 ±5500 ±11300 A 200ms ±2000 ±3600 ±6000 ±12000 ±24000 A 5.3.Current measurement
in „Strommessung bis 60V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
10350.pdf
external clock, PWM output...). Table 30. TIM characteristics Symbol Parameter Conditions Min Typ Max Unit t t w(ICAP)in Input capture pulse time 2 CK_TIM 55/77 Electrical parameters STR71xF Table 30. TIM characteristics Symbol Parameter Conditions Min Typ Max Unit 1 t t Timer resolution time PCLK2
in „ARM7TDMI 32-bit RISC CPU - STR 712 FR2 T6 zu verkaufen“ · Markt ·
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Datei
PPS5330_hack_V1.4.c
FALSE 0 #define Vref 2.50 float Vout = 0; uint8_t enc_value = 0; int8_t enc_delta = 0; // -128 ... 127 int8_t last; volatile uint8_t timer_max = 0; volatile uint8_t counter_h = 0; volatile uint8_t ADW_flag = 0; uint8_t Mess_phase = 0; uint8_t Mess_type = 0; uint8_t Timer0_run_flag = 0; uint8_t Standby_flag
in „PPS5330 Labor-Netzteil hack“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Daten.txt
------------------------------------------------------------ Processor 1 ID = 0 Number of cores 6 (max 6) Number of threads 6 (max 6) Name AMD FX-6100 Codename Zambezi Specification AMD FX(tm)-6100 Six-Core Processor Package Socket AM3+ (942) CPUID F.1.2 Extended CPUID 15.1 Core Stepping OR-B2 Technology
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YAMAICHI_TS-Katalog-2017_01_2.pdf
Max. Grid Size 7 x 17 NP276-25626-* Max. Grid Size 16 x 16 Max. Body Size 14 x 22 Max. Body Size 21 x 21 Max. Pin Count 119 Max. Pin Count 256 BASE SOCKET 49.4 X 49.4 BASE SOCKET 49.4 X 49.4 NP276-37206-* Max. Grid Size 20 x 20 NP276-40009-* Max. Grid Size 20 x 20 Max. Body Size 27 x 27 Max. Body Size 27 x 27 Max. Pin Count 372 Max. Pin Count 400 56 SPECIFICATIONS AND DRAWINGS ARE SUBJECT TO ALTERATION WITHOUT
in „TSOP-66 Sockel zum testen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nRF2401rev1_1.pdf
Conditions: VDD = +3V, VSS = 0V, T = - 40ºC to +A85ºC Symbol Parameter (condition) Notes Min. Typ. Max. Units Operating conditions VDD Supply voltage 1.9 3.0 3.6 V TEMP Operating Temperature -40 +27 +85 ºC Digital input pin V IH HIGH level input voltage VDD- 0.3 VDD V V IL LOW level input voltage Vss
in „Externe Antenne für Funkmodul TRW24G“ · HF, Funk und Felder ·
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PDF
bq2085.pdf
StateOfCharge( ) is more likelybetween50%and60%.Thebq2085setsMaxError( )to100%onafullreset.Thebq2085setsMaxError( ) to 2% on completion of a learning cycle, unless the bq2085 limits the learning cycle to the +512/-256 mAh maximum adjustment values. If the learning cycle is limited, the bq2085 sets MaxError( ) to 8% unless MaxError( ) was already below 8%. In this case MaxError( ) does not change. The bq2085 increments MaxError( ) by 1% after four increments of CycleCount( ) without a learning cycle
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MMA8452Q.pdf
100 Hz 44 ODR = 200 Hz 85 ODR = 400 Hz 165 ODR = 800 Hz 165 Current during Boot Sequence, 0.5 mSec max VDD = 2.5V Idd Boot 1 mA duration using recommended Bypass Cap Value of Capacitor on BYP Pin -40°C 85°C Cap 75 100 470 nF VDD = 2.5V, VDDIO = 1.8V STANDBY Mode Current @25°C ddStby 1.8 5 μA STANDBY
in „Beschl-Sensor mit i2C reagiert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST_70-780_Service_Manual.pdf
175 100 BR222 49 147 C33019 156 161 C57016 169 82 D60005 316 78 ASIS11 109 110 BR159 25 149 BR223 127 144 C34021 127 128 C60001 288 105 D60006 321 82 ASIS12 159 151 ASIS13 79 115 BR160 62 86 BR224 23 115 C34041 116 160 C60002 335 43 D60007 306 81 ASIS14 147 91 BR161 79 125 BR225 70 44 C34063 156 155
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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IQmath_Quickstart.pdf
containing a radix character. Valid Input strings: “12.23456”, “-12.23456”, “0.2345”, “0.0” , “0” , “127” , “-89” Output The first unrecognized character ends the string and returns zero. If the input string converts to a number greater then the max/min values for the given Q value, then the returned value
in „PID Regler in Q15 Format“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT_Comand_set_2.pdf
time. S103 1 1..7 Boot Mode on cold boot. S126 ? 0 .. 0xFFFF Primer for changing to Multipoint mode S127 ? 0 .. 0xFFFF 0x100 for At mode 0x200 for Multipoint mode Other values are reserved S500 0 0..1 Authentication for outgoing connections. Set to 1 to Enable Authentication. S501 0 0..1 Encryption for
in „Ezurio Bluetooth-Modul => PC erkennt es nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INN3977CQ.pdf
winding helps reduce radiated K = K = (1 – D) x T/ t = V × (1 – D ) / ((V – V ) × D ) EMI. P DP OR MAX MIN DS MAX 4. Shield windings can also be used to improve conducted and It is recommended that a K close to 0.9 at the minimum expected DC radiated EMI margins. P bus voltage should be used for most
in „Frage zu PowerInc INN3977CQ“ · Analoge Elektronik und Schaltungstechnik ·
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S7200SH.pdf
255 0 bis 255 0 bis 255 0 bis 255 Aufrufe/Unterprogramme 0 bis 63 0 bis 63 0 bis 63 0 bis 63 0 bis 127 Interruptprogramme 0 bis 127 0 bis 127 0 bis 127 0 bis 127 0 bis 127 Steigende/fallende Flanken 256 256 256 256 256 PID-Regler 0 bis 7 0 bis 7 0 bis 7 0 bis 7 0 bis 7 Schnittstellen Schnittstelle 0
in „SPS Step 7-Micro/win v4.0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS4272_F1.pdf
OPERATING CONDITIONS (AGND = 0 V; all voltages with respect to ground.) Parameters Symbol Min Nom Max Units DC Power Supplies: Positive Analog VA 4.75 5.0 5.25 V Positive Digital VD 3.1 3.3 5.25 V Positive Logic VL 2.37 3.3 5.25 V Ambient Operating Temperature (Power Applied) Commercial Grade TA -10
in „darf der Chip so warm werden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS4272.pdf
OPERATING CONDITIONS (AGND = 0 V; all voltages with respect to ground.) Parameters Symbol Min Nom Max Units DC Power Supplies: Positive Analog VA 4.75 5.0 5.25 V Positive Digital VD 3.1 3.3 5.25 V Positive Logic VL 2.37 3.3 5.25 V Ambient Operating Temperature (Power Applied) -CZZ -10 - +70 °C -DZ,
in „was ist "ATAPI channel mixing" Warum kein Ausgangssignal?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfid.c
unsigned char wgetch() { while(havech()==0&&(ttime<2)); return getch(); } unsigned char spu[25]; // max linelength +5 char for appends unsigned char getstr() { unsigned char co=0,c; while (1) { if(ttime>20)return 0; if(havech()) { c=getch(); if(c==27)return 0; if(c==13){spu[co]=0;return co;} if(c==10){spu[co]=0;return co;} if(c==8){if(co>0)co--;else c=7;} else if((c>127)||(c<32))c=7; if(co>18)c=7; if(c>31)spu[co++]=c; putch(c); } } } /* buffer to read the tag */ unsigned char res[12]; unsigned char tres[12]; /* buffer to calculate 4xx5 serialnumber */ unsigned char
in „RFID HTRC110“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Seriel.asm
subi DISPLAY_DAT,48 ; aus ASC Zahl machen - SPALTE*(10hoch1) cpi DISPLAY_DAT,2 ; über 1 ?? Spalte bis max ->16 Zeichen brlo Code_Locate_W2 ; außerhalb dann ABBRUCH,keine ZEICHENAUSGABE rjmp End_SerIn ; sprungweite zu kurz Code_Locate_W2: tst DISPLAY_DAT breq Code_Locate_S2 ; Null dann direkt 2Wert lesen
in „ATMEGA 8535 probleme mit LCD“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Seriel.asm
subi DISPLAY_DAT,48 ; aus ASC Zahl machen - SPALTE*(10hoch1) cpi DISPLAY_DAT,2 ; über 1 ?? Spalte bis max ->16 Zeichen brlo Code_Locate_W2 ; außerhalb dann ABBRUCH,keine ZEICHENAUSGABE rjmp End_SerIn ; sprungweite zu kurz Code_Locate_W2: tst DISPLAY_DAT breq Code_Locate_S2 ; Null dann direkt 2Wert lesen
in „ATMEGA 8535 probleme mit LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2011-01_digitale_Senderliste_mit_Frequenzen_1_.pdf
125 Juwelo TV deutsch 626 256 K40 div. Deutsche 126 kabel eins deutsch 618 256 K39 ProSiebenSat.1 127 Kanal 7 türkisch 626 256 K40 türkisch 128 Kanal Avrupa türkisch 674 256 K46 türkisch 129 Kapital Network (WT) kroatisch 762 256 K57 kroatisch 130 KiKa deutsch 394 64 S32 ZDFvision 131 Kinowelt (WT)
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Exportrelevante_Spannungsangaben_und_Netzformen_in_Nordamerika.pdf
Spannungsgleichheit [%] = Schlupf in% zunehmend abnehmend Volllast-Drehzahl leicht abnehmend leicht zunehmend (max. Abweichung von der Anzugsstrom - 10% + 10% durchschnittlichen Spannung) 100 x unterschiedlich je nach unterschiedlich je nach (durchschnittliche Spannung) Volllaststrom Motorgröße und Auslegung Motorgröße
in „Welteite Absicherung der Haus- und Industrienetze“ · Haus & Smart Home ·
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PDF
Teileliste-04-18-2233.pdf
EUR 0,02 EUR 126 Widerstand, Metallschicht 220 kOhm 0207, 0,6 W, 1% METALL 220K 10 0,05 EUR 0,02 EUR 127 Widerstand, Metallschicht 270 kOhm 0207, 0,6 W, 1% METALL 270K 9 0,05 EUR 0,02 EUR 128 Widerstand, Metallschicht 330 kOhm 0207, 0,6 W, 1% METALL 330K 10 0,05 EUR 0,02 EUR 129 Widerstand, Metallschicht
in „Bauelemente abzugeben“ · Markt ·
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PDF
Teileliste-04-19-1539.pdf
EUR 0,02 EUR 126 Widerstand, Metallschicht 220 kOhm 0207, 0,6 W, 1% METALL 220K 10 0,05 EUR 0,02 EUR 127 Widerstand, Metallschicht 270 kOhm 0207, 0,6 W, 1% METALL 270K 9 0,05 EUR 0,02 EUR 128 Widerstand, Metallschicht 330 kOhm 0207, 0,6 W, 1% METALL 330K 10 0,05 EUR 0,02 EUR 129 Widerstand, Metallschicht
in „Bauelemente abzugeben“ · Markt ·
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PDF
Teileliste-04-19-1957.pdf
EUR 0,02 EUR 126 Widerstand, Metallschicht 220 kOhm 0207, 0,6 W, 1% METALL 220K 10 0,05 EUR 0,02 EUR 127 Widerstand, Metallschicht 270 kOhm 0207, 0,6 W, 1% METALL 270K 9 0,05 EUR 0,02 EUR 128 Widerstand, Metallschicht 330 kOhm 0207, 0,6 W, 1% METALL 330K 10 0,05 EUR 0,02 EUR 129 Widerstand, Metallschicht
in „Bauelemente abzugeben“ · Markt ·
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PDF
Teileliste-04-20-1111.pdf
EUR 0,02 EUR 126 Widerstand, Metallschicht 220 kOhm 0207, 0,6 W, 1% METALL 220K 10 0,05 EUR 0,02 EUR 127 Widerstand, Metallschicht 270 kOhm 0207, 0,6 W, 1% METALL 270K 9 0,05 EUR 0,02 EUR 128 Widerstand, Metallschicht 330 kOhm 0207, 0,6 W, 1% METALL 330K 10 0,05 EUR 0,02 EUR 129 Widerstand, Metallschicht
in „Bauelemente abzugeben“ · Markt ·
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PDF
datasheet_funk-v24_JDY41__ps_2370JDY-41-Manual.pdf
MCU 3. Technical parameters Type JDY-41 Color Green Working frequency band 2.4G Transmitting power Max 12db Working temperature -40℃ - 80℃ Receiving sensitivity -96db Transmission distance 160m Working voltage 2.2V-3.6V TX current 40mA RX current 24mA Sleep current 10uA Communication interface Standard
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PDF
JDY-41-Manual.pdf
MCU 3. Technical parameters Type JDY-41 Color Green Working frequency band 2.4G Transmitting power Max 12db Working temperature -40℃ - 80℃ Receiving sensitivity -96db Transmission distance 160m Working voltage 2.2V-3.6V TX current 40mA RX current 24mA Sleep current 10uA Communication interface Standard
in „ESP32 Star Netzwerk“ · Mikrocontroller und Digitale Elektronik ·
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PDF
10_278_AC_DC200-31.pdf
R19 R20 R21 R22 R23 VT13 VT14 VT15 VT16 VT17 VT18 VT19 VT20 VT21 VT22 Z4 15 13 CON1 2.5X191.8 14 2.5X127.8 VT12 11 AC/DC200/200II/200P(T) 12 2.5X81.2 PN-07-A1 D1 R13 R12 Z3 2005.09 C6 R11 9 C5 10 2.5X191.8 8 7 2.5X127.8 2.5X81.2 6 C2 C4 C3 2.5X81.2 5 3 VT11 2.5X127.8 4 C1 2 2.5X191.8 1 VT1 VT5 Z2 VT6 VT7
in „Stahlwerk WIG AC/DC 200 Puls: Bei AC kein Lichtbogen“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
lm5165.pdf
an inductance that is larger than L using Equation 20 where V is the maximum input supply F(min) IN(max) voltage for the application, ON(min)is 180 ns, and IL(max)is the maximum allowed peak inductor current. VIN(max) tON(min) LF(min) IL(max) (20) Choose an inductor with saturation current rating above
in „Stromverbrauch Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
20002234D.pdf
4 N(MAX) Limit VOUT Accuracy VOUT % -3 — +3 % Includes Line and Load Regulation; V = 1.5V IN Line Regulation VOUT/VOUT) -1 0.01 1 %/V VIN= 1.5V to 3V /V | I = 25 mA IN OUT Load Regulation VOUT /VOUT| -1 0.01 1 % IOUT= 25 mA to 100 mA; V = 1.5V IN Maximum Duty Cycle DC MAX 88 90 — % Switching Frequency SW 425 500 575 kHz EN Input Logic High VIH 90 — — %of V IN IOUT= 1 mA EN Input Logic Low VIL — — 20 %of V IN IOUT= 1 mA EN Input Leakage Current I — 0.005 — µA V = 5V ENLK
in „NRF24L01+ durch MCP1640 gestört?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
802.3-2008_section2.pdf
xmit ⇐ ENABLE pma_type ⇐ T4 link_status ⇐ OK link_max_timer_done link_max_timer_done ( cnt_link =127 ) + link_control=SCAN_FOR_CARRIER + (pma_carrier = ON ) NOTE—The variables link_control and link_status are designated as link_control_[T4] and link_status
in „Kommunikation uC mit PHY“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
DDS.vhd
= DIN_CNT_MAX-1) then ROMADDR <= ADDRESS; -- clocked address --> BRAM end if; end if; end process; -- 1 clock cycle latency caused by BROM process begin wait until rising_edge(CLK); if BCK = '1' then if (DIN_CNT = DIN_CNT_MAX-1) then SIGN <= ACCUM(ACCUM'left); end if; end if; end process; QUADRANT <= ACCUM(ACCUM'left-1); RESULT <= signed(sine_LUT(ROMADDR)); ADDRESS <= to_integer(ACCUM(ACCUM'high-2 downto ACCUM'high-11))
in „DDFS von Lothar Miller ich steh aufm Schlauch“ · FPGA, VHDL & Co. ·
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PDF
GD32F103xx_Datasheet_V2.5.pdf
PCLK2 0xx NO CLK ÷1,2,4,8,16 108 MHz max to APB2 100 CK_SYS peripherals CK_OUT0 Peripheral enable 101 CK_IRC8M 110 CK_HXTAL 111 /2 CK_PLL ADC CK_ADCX toADC0,ADC1,ADC2 Prescaler ÷2,4,8,12,16 14 MHz max CKOUT0SEL[2:0] Legend: HXTAL: High speed
in „Unterschiede CS32F103C8T6 und STM32F103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tas5558-eight_channel_audio_processor_with_PWM_Output.pdf
Signals over recommended operating conditions (unless otherwise noted) STANDARD MODE FAST MODE UNIT MIN MAX MIN MAX SCL SCL clock frequency 0 100 0 400 kHz Hold time (repeated) START condition. After HD-STA 4 0.6 μs this period, the first clock pulse is generated. LOW LOW period of the SCL clock 4.7 1.3 μs
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PDF
ATMEGA_128.pdf
FOC3A FOC3B FOC3C - - - - - 132 ($8B) TCCR3A COM3A1 COM3A0 COM3B1 COM3B0 COM3C1 COM3C0 WGM31 WGM30 127 ($8A) TCCR3B ICNC3 ICES3 - WGM33 WGM32 CS32 CS31 CS30 130 ($89) TCNT3H Timer/Counter3 - Counter Register High Byte 132 ($88) TCNT3L Timer/Counter3 - Counter Register Low Byte 132 ($87) OCR3AH Timer/
in „ATMEGA128 Board im Neuhold Newsletter 2/2011“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VAR-DT6CUSTOMBOARD_SCH_V1_1_Doc_V1_2.pdf
Connectors BASE_PER_3V3 UART3-RS232 BASE_PER_3V3 BASE_PER_3V3 BASE_PER_3V3 BASE_PER_3V3 U117 U114 MAX3232D 5 VDD RST 1 1 c1+ C178 C177 uSD CARD R134 R133 D R122 C164 4 C188 2 10K 1uF 100nF 10K D 10K MR V+ 1uF 2 3 100nF 3 C189 GND RST UART_ENABLE 5 c1- 100nF 3 SDMMC2_CD J101 3,8 RESET# C165 MIC2775 16
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PDF
lm25576.pdf
Absolute Maximum Ratings over operating free-air temperature range (unless otherwise noted) (2) MIN MAX UNIT V to GND 45 V IN BST to GND 60 V PRE to GND 45 V SW to GND (Steady State) –1.5 V BST to CC 45 V SD, VCCto GND 14 V BST to SW 14 V OUT to GND Limited Vin V SYNC, SS, FB, RAMP to GND 7 V Storage
in „[V] 15 ST. Stepdown SIMPLE SWITCHER LM2596S-12V , 3A, 400kHz, TO263 (alle 18€)“ · Markt ·
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ATMega16.pdf
to eight bits. In phase correct PWM mode the counter is incremented until the counter value matches MAX. When the counter reaches MAX, it changes the count direction. The TCNT0 value will be equal to MAX for one timer clock cycle. The timing diagram for the phase correct PWM mode is shown on Figure 33
in „DCF auf INT0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmega8.pdf
contains timing data for basic Timer/Counter operation. The figure shows the count sequence close to the MAX value. 70 ATmega8(L) 2486Z–AVR–02/11 ATmega8(L) Figure 28. Timer/Counter Timing Diagram, No Prescaling clkI/O clkTn (clI/O1) TCNTn MAX - 1 MAX BOTTOM BOTTOM + 1 TOVn Figure 29 shows the same timing
in „Mikrocontroller und 15'' TFT LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RV-3032-C7_App-Manual-rev1.3.pdf
...................................................................................................127 7.1. ABSOLUTE MAXIMUM RATINGS........................................................................................................127 7.2. OPERATING PARAMETERS....................................
in „ATtiny85 + Uhrenquarz mit 10 pF CL: Kondensatoren“ · Analoge Elektronik und Schaltungstechnik ·