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Datei
main.c
--------------------------- void Wobbel (void) { if (Saegezahn ==0) { if ( Wobbel_Dir == 1 && i != MAX ) { i++; } else if ( Wobbel_Dir == 1 && i == MAX ) { i--; Wobbel_Dir = 0; } if ( Wobbel_Dir == 0 && i != MIN ) { i--; } else if ( Wobbel_Dir == 0 && i == MIN) { i++; Wobbel_Dir = 1; } } // else { if
in „kein definiertes Verhalten in der ISR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dmx-pwm24.c
enc_last; // encoder state volatile int8_t enc_delta; // encoder position volatile uint8_t pwm_cnt_max=1; // count limit volatile uint8_t pwm_sync; // update now possible volatile uint16_t dmx_base; uint8_t dmx_data[DMX_SIZE]; PWM_t pwm_data[PWM_CHANNELS]; PWM_t pwm_setting_tmp[PWM_CHANNELS+1]; // PWM
in „C - Ersatz von switch case.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
488,490,491,493,495,496,498,500,501,503,505,506,508,510,511,513,515,517,518,520,522,524,526,527,529,531,533,535,537,538,540,542,544,546,548,550,552,554,556,557,559,561,563,565,567,569,571,573,575,577,580,582,584,586,588,590,592,594,596,599,601,603,605,607,609,612,614,616,618,621,623,625,627,630,632,634,637,639,641,644,646,649,651,653,656,658,661,663,666,668,671,673,676,678,681,683,686,689,691,694,696,699,702,704,707,710,713,715,718,721,723,726,729,732,735,738,740,743,746,749,752,755,758,761,764,767,770,773,776,779,782,785,788,791,794,798,801,804,807,810,813,817,820,823,827,830,833,837,840,843,847,850,854,857,860,864,867,871,875,878,882,885,889,892,896,900,903,907,911,915,918,922,926,930,934,938,941,945,949,953,957,961,965,969,973,977,981,986,990,994,998,1002,1006,1011,1015,1019,1023
in „HSV RGB Led Dimmer, C Code & Video & Doku“ · Projekte & Code ·
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Datei
main.c
23] = 838; Freq [24] = 806; // 1300 Freq [25] = 776; Freq [26] = 749; Freq [27] = 723; Freq [28] = 699; Freq [29] = 676; // 1550 Freq [30] = 655; Freq [31] = 635; Freq [32] = 616; Freq [33] = 599; // 1750 Freq [34] = 582; Freq [35] = 566; Freq [36] = 552; Freq [37] = 537; Freq [38] = 524; // 2000 int
in „MSP430 F5529 Wobbel-Generator“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan.pdf
P7.3 A6 P4.3B6 D3 C6 3 P7.4 A7 P4.4B7 D4 C7 4 GND 8 P7.5 A8 P4.5B8 D5 C8 GND GND P7.6 A9 P4.6B9 D6 C9 MAX699CPA P7.7 A10 P4.710 D7 C10 GND P8.0 A11 P1.011 E C11 C C P8.1 A12 P1.112 A0 C12 D 2 4 V D G1 X1 V P8.2 A13 P1.213 A1 C13 G 1 3 C 3 GND G 1 IC8 + C11 P8.3 A14 P1.314 C14 G V C 6 2 TXD-RS232 IC5 +C13
in „80C537 System“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN2654.pdf
192 ps per inch. See Table 3. Table 3. Trace Lengths and Propagation Delays Length (Inches) Min (ns) Max (ns) SDRAM 1 5.112 0.716 0.982 SDRAM 2 4.980 0.697 0.956 SDRAM 3 5.020 0.703 0.964 SDRAM 4 4.993 0.699 0.959 PowerQUICC II 8.500 1.190 1.632 Using the SDRAM and fanout buffer data sheets, timing analysis
in „EBI-Routing des LPC2478“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6203.pdf
THERMAL DATA Value Symbol Parameter Unit L6201 L6201PS L6202 L6203 Rt Thermal Resistance Junction-pins max 15 – 12 – h j-pins Rth j-caseThermal Resistance Junction Case max. – – – 3 °C/W Rth j-amb Thermal Resistance Junction-ambient max. 85 13 (*) 60 35 (*) Mounted on aluminium substrate. ELECTRICAL CHARACTERISTICS
in „Schrittmotorsteuerung verbessern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cd00000089-1795323.pdf
THERMAL DATA Value Symbol Parameter Unit L6201 L6201PS L6202 L6203 Rt Thermal Resistance Junction-pins max 15 – 12 – h j-pins Rth j-caseThermal Resistance Junction Case max. – – – 3 °C/W Rth j-amb Thermal Resistance Junction-ambient max. 85 13 (*) 60 35 (*) Mounted on aluminium substrate. ELECTRICAL CHARACTERISTICS
in „[V] Motortreiber 2x L6203 Multivatt11 und 5x Siemens TLE4205“ · Markt ·
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PDF
cd00000089-1795323.pdf
THERMAL DATA Value Symbol Parameter Unit L6201 L6201PS L6202 L6203 Rt Thermal Resistance Junction-pins max 15 – 12 – h j-pins Rth j-caseThermal Resistance Junction Case max. – – – 3 °C/W Rth j-amb Thermal Resistance Junction-ambient max. 85 13 (*) 60 35 (*) Mounted on aluminium substrate. ELECTRICAL CHARACTERISTICS
in „[V] 2St. DMOS Full Bridge L6203 Multiwatt 11 Gehäuse“ · Markt ·
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PDF
l6203.pdf
DATA Value Symbol Parameter Unit L6201 L6201PS L6202 L6203 Rth j-pinsThermal Resistance Junction-pins max 15 – 12 – Rth j-caseThermal Resistance Junction Case max. – – – 3 ⋅C/W Rth j-amb Thermal Resistance Junction-ambient max. 85 13 (*) 60 35 (*) Mounted on aluminium substrate. ELECTRICAL CHARACTERISTICS
in „L6203 und 100% Einschaltdauer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6203.pdf
DATA Value Symbol Parameter Unit L6201 L6201PS L6202 L6203 Rth j-pinsThermal Resistance Junction-pins max 15 – 12 – Rth j-caseThermal Resistance Junction Case max. – – – 3 ⋅C/W Rth j-amb Thermal Resistance Junction-ambient max. 85 13 (*) 60 35 (*) Mounted on aluminium substrate. ELECTRICAL CHARACTERISTICS
in „Eingangsfrequenz Vollbrückentreiber L6203“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6202_L6203_STM.pdf
DATA Value Symbol Parameter Unit L6201 L6201PS L6202 L6203 Rth j-pinsThermal Resistance Junction-pins max 15 – 12 – Rth j-caseThermal Resistance Junction Case max. – – – 3 ⋅C/W Rth j-amb Thermal Resistance Junction-ambient max. 85 13 (*) 60 35 (*) Mounted on aluminium substrate. ELECTRICAL CHARACTERISTICS
in „L6203 DMOS Full Bridge Driver testen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
KONTAKT_LR_Sicherheitsdatenblatt.pdf
Wirkung, inhalativ 2035 mg/m³ DNEL/DMEL (Allgemeinbevölkerung) Langfristige - systemische Wirkung, oral 699 mg/kg Körpergewicht/Tag Langfristige - systemische Wirkung, inhalativ 608 mg/m³ Langzeit - systemische Wirkung, dermal 699 mg/kg Körpergewicht/Tag 1-Ethoxypropan-2-ol; 2PG1EE; 1-Ethoxy-2-propanol; Propylenglycol-monoethylether
in „Leiterplattenreinigung(Flussmittelreste entfernen)? Isoprop ist zu schwach, was kann man beimischen?“ · Platinen ·
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Datei
main.c
Zähler mit Startwert = 0 (0...65535) unsigned int tx = 0; // Aktions-Merker für Timer unsigned int MAX = 38; // oberes Ende beider Arrays unsigned int MIN = 0; // unteres Ende beider Arrays unsigned int Wobbel_Dir = 1; // Schrittrichtung // 0 : Rückwärts // 1 : Vorwärts unsigned int i = 18; int Freq[
in „Rote LED an Port 1.0 will nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PHI.pdf
KTY81-110 KTY81-120 RESISTANCE RESISTANCE ( ) TEMP. ( ) TEMP. (°C) (°F) (%/K) ERROR ERROR MIN. TYP. MAX. (K) MIN. TYP. MAX. (K) −55 −67 0.99 475 490 505 ±3.02 470 490 510 ±4.02 −50 −58 0.98 500 515 530 ±2.92 495 515 535 ±3.94 −40 −40 0.96 552 567 582 ±2.74 547 567 588 ±3.78 −30 −22 0.93 609 624 638 ±2.55
in „Genauere Messung der Temperatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA_7294_V_100W_VERSTAERKER.pdf
/16 TDA7294 THERMAL DATA Symbol Description Value Unit R th j-caseThermal Resistance Junction-case Max 1.5 ⋅C/W ELECTRICAL CHARACTERISTICS (Refer to the Test Circuit V = 〉 35V,SR = 8 , G =L30dB; V R g= 50 ; Tamb =25⋅C, f = 1 kHz; unless otherwisespecified. Symbol Parameter Test Condition Min. Typ. Max
in „100W-Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FGA5065ADF.pdf
5 6 Symbol Parameter FGA5065ADF Unit 5 o A R JC(IGBT) Thermal Resistance, Junction to Case, Max. 0.56 C/W D R (Diode) Thermal Resistance, Junction to Case, Max. 1.71 oC/W F JC — R JA Thermal Resistance, Junction to Ambient, Max. 40 oC/W 6 5 Package Marking and Ordering Information 0 V Part Number
in „Inverter Schweißgerät, Alternative IGBTs kompatibel? (Datenblätter inside)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TDA7293.pdf
must be o.038 C/W (@ max am- bient temperatureof 50 C). The use of the modular application lets very high As the above value is pratically unreachable; a power be delivered to very low impedance loads. high efficiency system
in „Kann mir jemand helfen. Wer ist der Hersteller der Audio Boards "YUANJING"“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
schiebereg.pdf
Tamb (°C) TEST CONDITION SYMBOL PARAMETER +25 −40 to +85 −40 to +125 UNIT V CC (V) WAVEFORMS min typ max min max min max PHL PLH propagation delay − 52 160 − 200 − 240 ns 2.0 Fig.7 SHCP to 7 Õ − 19 32 − 40 − 48 4.5 − 15 27 − 34 − 41 6.0 PHL PLH propagation delay − 55 175 − 220 − 265 ns 2.0 Fig.8 STCP to
in „wie steuer ich nen sn7447 mit avr an??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT595_CNV_3.pdf
Tamb (°C) TEST CONDITION SYMBOL PARAMETER +25 −40 to +85 −40 to +125 UNIT V CC (V) WAVEFORMS min typ max min max min max PHL PLH propagation delay − 52 160 − 200 − 240 ns 2.0 Fig.7 SHCP to 7 Õ − 19 32 − 40 − 48 4.5 − 15 27 − 34 − 41 6.0 PHL PLH propagation delay − 55 175 − 220 − 265 ns 2.0 Fig.8 STCP to
in „LCD DEM20485 in gerade Zeile springen (c't-Bot)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTZ1000afe_reference.pdf
: http://www.linear.com/packaging/ lectrical Characteristics (Note 2) PARAMETER CONDITIONS MIN TYP MAX UNITS Zener Voltage l = 5mA, (V + VBE ) I = 100µA 7.0 7.2 7.5 V l = 1mA, (V + VBE ) IQ1 = 100µA 6.9 7.15 7.45 V Z Z Q1 Q1 Zener Change with Current 1mA ≤ IZ< 5mA 80 240 mV Zener Leakage Current V =
in „Elektronikbuch“ · Offtopic ·
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PDF
TDA7294S.PDF
Pout is 200W The typical junction-to-case thermal resistance of (MusicPower). the TDA7294S is 1 oC/W (max=1.5 C/W). To avoid that, in worst case conditions, the chip temperature exceedes 150 oC, the thermal resis- APPLICATION NOTE: (ref. fig.7) tance of the heatsink must be 0.038 C/W (@ max ambient temperature
in „TDA7294 tiefes lautes Brummen wenn kein Audiosignal“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
w78c31B.pdf
10 RXD W78C31B Figure B PACKAGE DIMENSIONS 40-pin DIP Dimension in iDimension in mm Symbol Min.Nom. Max. Min.Nom. Max. A 0.210 5.334 1 0.010 0.254 A 0.150.160 A 2 0.150 3.81 3.934.064 B 0.0160.010.0220.4060.450.559 B 1 0.0480.050.0541.2191.271.372 0.0080.010.0140.2030.254.356 D c D 2.052.070 52.252.58
in „Formel für Kondensatoren für Quartz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt.pdf
(°C) (°F) (%/K) Resistance ( ) Temperature Resistance ( ) Temperature error (K) error (K) Min Typ Max Min Typ Max −55 −67 0.99 475 490 505 ±3.02 470 490 510 ±4.02 −50 −58 0.98 500 515 530 ±2.92 495 515 535 ±3.94 −40 −40 0.96 552 567 582 ±2.74 547 567 588 ±3.78 −30 −22 0.93 609 624 638 ±2.55 603 624
in „KTY82/120,215“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
2_FracNEON.txt
399 400 .max_iterations_1234 401 VMOV R0,S8 ;check if pixel 1 reach max iter (Q2.1 -> S8) 402 TST R0,#&80000000 ;check sign bit 403 BEQ max_iterations_234 ;not ? -> check Pixel 2,3,4 404 405 ADD R4,R4,R12 406 ADD
in „Raspberry Pi als "dicker" Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1019.pdf
0, T = 25°C, unless otherwise noted. IN OUT J LTC1019A LTC1019 SYMBOL PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS VOUT Load Regulation Series 0 ≤I OUT ≤ 10mA* 0.02 0.05 0.02 0.05 mV/mA ( ) OUT Mode (Notes 3, 4) 0.08 0.08 mV/mA ( ) Load Regulation, 1mA ≤ I SHUNT ≤ 10mA (Notes 4, 5) Shunt Mode 2.5V
in „Referenz Chip LT1019 / Heizung“ · 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
AV02-0923EN-DS-ATF-55143-08Jun20120.pdf
100 DS I Gate Current [5] mA 1 GS P Total Power Dissipation [3] mW 270 diss P RF Input Power [5] in max. (Vds=2.7V, Ids=10mA) dBm 10 (Vds=0V, Ids=0mA) dBm 10 T ChannelTemperature °C 150 CH T StorageTemperature °C -65 to 150 STG Thermal Resistance [4] °C/W 235 jc ESD (Human Body Model) V 200 ESD (Machine
in „LNA Entwicklung von 10 MHZ bis 6 GHZ“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1006.pdf
Sinking Current operation with a full set of specifications at 5V. ■ Guaranteed Offset Voltage: 50µV Max Specifications at ±15V are also provided. ■ Guaranteed Low Drift: 1.3µV/°C Max The LT1006 has a low offset voltage of 20µV, drift of ■ Guaranteed Offset Current: 0.5nA Max 0.2µV/°C, offset current of
in „Probleme mit Peakdetector“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1019.pdf
25°C. VIN 15V, I OUT = 0 unless otherwise noted. LT1019A LT1019 SYMBOL PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS Output Voltage Tolerance 0.02 0.05 0.02 0.2 % TC Output Voltage LT1019C (0°C to 70°C) ● 3 5 5 20 ppm/°C Temperature Coefficient LT1019I (–40°C to 85°C) ● 3 10 5 20 ppm/°C (Note 3)
in „Hochgenaue 2.5V Referenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CM8888S.pdf
voltages Parameter Symbol Value or electric fields; however, precautions Power Supply Voltage V 6.0V Max should be taken to avoid application of (VDD -VSS DD voltages higher than the maximum rating. Voltage on any Pin Vdc -0.3V to V DD+0.3V Current on any Pin I 10mA Max Note: DD Exceeding these ratings
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PDF
verfahren_zur_darstellung_von_segelflugpolaren.pdf
Eigensinken lässt sich folgendermaßen berechnen: ( A.2.1 ) ( Annäherung ) Ws = [ B C ] + 2 C ebest A Ws = -0,699... m/s ebest 8 Über die Steigung der Tangente lässt sich auch das beste Gleiten ermitteln. Es gilt E = - M -1 Max ( A.3 ) ( Annäherung ) E = 1 Max 4AC − B In unserem Beispiel hieße das: E = 42,023... Max Ein sehr realistischer Wert. 2. Verbesserte Darstellungsform von Polaren Es soll nun ein Weg gefunden werden, möglichst viele Werte einer Flugvermessung mathematisch zu erfassen und praktisch nutzen
in „AVR: Interpolation? Splines?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
life.lst
00 00 [14] 111 ld ix,#0 0013 DD 39 [15] 112 add ix,sp 0015 F5 [11] 113 push af 114 ;life.c:63: k = MAX_ZELLEN; 0016 21 F4 01 [10] 115 ld hl,#0x01F4 0019 E3 [19] 116 ex (sp), hl 117 ;life.c:64: do { 001A 118 00101$: 119 ;life.c:65: x = prng(MAX_X); 001A 21 4F 00 [10] 120 ld hl,#0x004F 001D E5 [11] 121
in „Conways Game of Live zu langsam auf Z80“ · Softwareentwicklung ·
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PDF
W78E051C40DL_4170039.pdf
W78E051C 10. PACKAGE DIMENSIONS 10.1 40-pin DIP Symbol Dimension in inch Dimension in mm Min. Nom. Max. Min. Nom. Max. A 0.210 5.334 A 1 0.010 0.254 A 2 0.150 0.155 0.160 3.81 3.937 4.064 0.016 0.018 0.022 0.406 0.457 0.559 B 0.048 0.050 0.054 1.219 1.27 1.372 B 1 c 0.008 0.010 0.014 0.203 0.254 0.356
in „Winbond W78E051 programmieren - kennt ihr compiler? woher ISP?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74hct595.pdf
register with output latches; 3-state AC WAVEFORMS handbook, full pagewidth 1/max V SH_CP input M t W tPLH tPHL 90% Q7' output VM 10% t t TLH THL MSA699 74HC595: VM= 50%; VI= GND to CC. 74HCT595: VM= 1.3 V;IV = GND to 3 V. Fig.7 Waveforms showing the clock (SH_CP) to output (Q7Õ)
in „74HC595 wie steuert man das latch an?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC595_Philips.pdf
register with output latches; 3-state AC WAVEFORMS handbook, full pagewidth 1/max V SH_CP input M t W tPLH tPHL 90% Q7' output VM 10% t t TLH THL MSA699 74HC595: VM= 50%; VI= GND to CC. 74HCT595: VM= 1.3 V;IV = GND to 3 V. Fig.7 Waveforms showing the clock (SH_CP) to output (Q7Õ)
in „Definierter Einschaltzustand beim 74HC595“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC595_Shiftregister.pdf
register with output latches; 3-state AC WAVEFORMS handbook, full pagewidth 1/max V SH_CP input M t W tPLH tPHL 90% Q7' output VM 10% t t TLH THL MSA699 74HC595: VM= 50%; VI= GND to CC. 74HCT595: VM= 1.3 V;IV = GND to 3 V. Fig.7 Waveforms showing the clock (SH_CP) to output (Q7Õ)
in „Unterschied 74HCT595, 74HC595“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT595.pdf
register with output latches; 3-state AC WAVEFORMS handbook, full pagewidth 1/max V SH_CP input M t W tPLH tPHL 90% Q7' output VM 10% t t TLH THL MSA699 74HC595: VM= 50%; VI= GND to CC. 74HCT595: VM= 1.3 V;IV = GND to 3 V. Fig.7 Waveforms showing the clock (SH_CP) to output (Q7Õ)
in „74HC595 und ATtiny13 Lauflicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSAIH000309343.pdf
circuit frequency is a typ. value, and the max. value indicates the maximum operability. S1D15721 Series Technical Manual (Rev.2.1) EPSON 61 9. DC CHARACTERISTICS Table 9.2 Specified value Applicable Item Symbol Conditions Unit Min. Typ. Max. pin
in „Pollin Display VL-FS-COG-VLGEM1277-01“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPS3510P.pdf
FACTOR TA= 70°C TA= 85°C POWER RATING ABOVE T A 25°C POWER RATING POWER RATING P 1092 mW 8.74 mW/°C 699 mW 568 mW D 730 mW 5.84 mW/°C 467 mW 379 mW recommended operating conditions at specified temperature range MIN NOM MAX UNIT Supply voltageDDV 4 15 V PSON, VS5, VS33 7 Input voltagI, V VDD + 0.3 V V PGI (max = 7 V) FPO 15 Output volta,eOV V PGO 7 FPO 20 Output sink curreO,sink mA PGO 10 Supply voltage rising rime, t See Note 2 1 ms Operating free-air temperature Aange, T –40 85 °C NOTE 2: V DD rising and
in „TPS3510 mit Datemblatt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1_AMD_Rev_Guide_Family_15h_Mod_00h-0Fh.pdf
silicon revision to Overview and Tables 2-8. Added Mixed Processor Revision Support. Added errata #685, #699, #704, #707, #708, #727, #734, #739, and #759. Updated erratum #668. August 2012 3.16 Added errata #737, #740, #742, #744. and #745; Updated erratum #709. May 2012 3.12 Added AMD Opteron ™ 3200 Series
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PDF
8174_WireBushing_EK00_III_de.pdf
Leitungsdurchführung E9 zusammen gefasst > Ausführungen – schraubbar – steckbar E9 > Für Spannungen bis max. 1000 V > Für Leitun2squerschnitte bis 70 mm E9 e E9 l t w w E9 w Reihe 8174 E9 03163E00 E9 Die Aderleitungsdurchführungen dienen zur Leitungsverbindung zwischen Gehäusen der Zündschutzart „Druckfeste
in „Kabel aus Druckgehäuse herauszuführen“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
e-pm.pdf
1 minute's application of rated voltage, leakage current is not moreCV = 1000 : I = 0.1CV+40 (µA) max. (1 minute's) Leakage current than 0.03CV or 4 (µA), whichever is greater. CV > 1000 : = 0.04CV+100 (µA) max. (1 minute's) I For capacitance of more than 1000µF, add 0.02 for every increase of 1000µF
in „LOW ESR Elkos“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1014.pdf
Precision Specs It is no longer necessary to compromise specifications, Guaranteed Offset Voltage 150 V Max. whilesavingboardspaceandcost,ascomparedtosingle Guaranteed Low Drift 2 V/°C Max. operational amplifiers. Guaranteed Offset Current 0.8nA Max. Guaranteed High Gain TheLT1014’slowoffsetvoltageof50 V,
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
10134fd.pdf
0.686 – 1.143) DIA 45o PIN 1 .305 – .335 .028 – .034 (7.747 – 8.509) (0.711 – 0.864) .040 .050 .200 (MAX16) .165 – .185 (5.080) (MAX70) (4.191 – 4.699) TYP REFERENCE SEATING GAUGE PLANE PLANE PLANE .500 – .750 .110 – .160 (12.700 – 19.050) (2.794 – 4.064) .010 – .045* INSULATING (0.254 – 1.143) STANDOFF
in „LT1013 Unterschied D und P Package“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Lambdacontroller_ai_claude_2.ino
int serial_counter = 0; uint16_t CJ125_Status = 0; // PID int dState = 0; int iState = 0; const int iMax = 250; const int iMin = -250; const float pGain = 120.0; const float iGain = 0.8; const float dGain = 10.0; // ----------------------------- // Lambda- und O2-Tabellen (Platzhalter) // -------------
in „Bosch CJ125 mit AVR AT90CAN64“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lambdacontroller_ai_claude.txt
int serial_counter = 0; uint16_t CJ125_Status = 0; // PID int dState = 0; int iState = 0; const int iMax = 250; const int iMin = -250; const float pGain = 120.0; const float iGain = 0.8; const float dGain = 10.0; // ----------------------------- // Lambda- und O2-Tabellen (Platzhalter) // -------------
in „Bosch CJ125 mit AVR AT90CAN64“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT.pdf
LECTR AL CHAICCTERIST ICS T j 25°C, V = INV, unless otherwise noted. PARAMETER CONDITIONS MIN TYP MAX UNITS Switch “Off” Leakage LT1074 VIN ≤ 25V, SW = 0 5 300 A V = V V = 0 (Note 7) 10 500 A IN MAX, SW LT1076 VIN = 25V, SW = 0 150 A V = V V = 0 (Note 7) 250 A IN MAX, SW Supply Current (Note 2) V FB2.5V
in „Prinzipielle Fragen zum Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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LT1074.pdf
LECTR AL CHAICCTERIST ICS T j 25°C, V = INV, unless otherwise noted. PARAMETER CONDITIONS MIN TYP MAX UNITS Switch “Off” Leakage LT1074 VIN ≤ 25V, SW = 0 5 300 A V = V V = 0 (Note 7) 10 500 A IN MAX, SW LT1076 VIN = 25V, SW = 0 150 A V = V V = 0 (Note 7) 250 A IN MAX, SW Supply Current (Note 2) V FB2.5V
in „LT1074HV wozu Pin VC Datenblatt strange“ · Mikrocontroller und Digitale Elektronik ·
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MT8880.pdf
ACTIVE (Hz) 3.579545 MHz INPUT %ERROR SPECIFIED ACTUAL Figure 12 - Common Crystal Connection L1 697 699.1 +0.30 Microprocessor Interface L2 770 766.2 -0.49 The MT8880C/C-1 employs a microprocessor L3 852 847.4 -0.54 interface which allows precise control of transmitter L4 941 948.0 +0.74 and receiver
in „Ansteuerung µC->MT8880“ · Mikrocontroller und Digitale Elektronik ·