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PDF
A200_MCP1407-EP_MIC.pdf
with 4.5V <= V DD <= 18V. 120 80 10,000 pF 10,000 pF 70 8,200 pF 100 8,200 pF 4,700 pF 4,700 pF ) 2,500 pF )60 1,000 pF n 80 n 2,500 pF 6,800 pF e 1,000 pF (50 i 60 6,800 pF m40 T T s 40 l30 R F 20 20 10 100 pF 100 pF 0 0 4 6 8 10 12 14 16 18 4 6 8 10 12 14 16 18 Supply Voltage (V) Supply Voltage (V)
in „Treiber für IRF1404 ?“ · Mikrocontroller und Digitale Elektronik ·
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xfft_ds260.pdf
Ignored when C_USE_FLT_PT = 1 C_HAS_ROUNDING Rounding mode. 0,1 rounding_modes: truncation => 0, Ignored when C_USE_FLT_PT = 1 convergent_rounding => 1 After a state structure has been created, it can be used as many times as
in „Implementierung der XILINX FFT-Core“ · FPGA, VHDL & Co. ·
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PDF
MCS51LB.pdf
-- P PSW CDh TH2 CCh TL2 CBh RCAP2H CAh RCAP2L C8h TF2 EXF2 RCLK TCLK EXN2 TR2 C_T CP_R T2CON B8h PT2 PS PT1 PX1 PT0 PX0 IP B0h RD WR T1 T0 INT1 INT0 TXD RXD P3 A8h EA ET2 ES ET1 EX1 ET0 EX0 IE A0h P2 99h SBUF 98h SM0 SM1 SM2 REN TB8 RB8 TI RI SCON 90h T2EX T2 P1 8Dh TH1 8Ch TH0 8Bh TL1 8Ah TL0 89h
in „MCS51-Kurs sinnvoll?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
inhalt.html
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in „was bedeutet DC1 DC3 DC15“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IHW20N120R2.pdf
voltage V CE 1200 V DC collector current IC A 40 TC = 25°C TC = 100°C 20 Pulsed collector current,pt limited byjmax ICpuls 60 Turn off safe operating area (V ≤ 1200V, T ≤ 175°C) - 60 CE j Diode forward current IF TC = 25°C 40 TC = 100°C 20 Diode pulsed current, t limited by T I 30 p jmax Fpuls Diode
in „IGBT Vergleichstyp“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INFINEON-IGP06N60T-DS-V02_03-EN.pdf
600 V j DC collector current, limited byjmax 12 TC= 25C IC TC= 100C 6 A Pulsed collector current,pt limited byjmax ICpuls 18 - 18 Turn off safe operating area, CE = 600V, Tj= 175C, tp= 1µs Gate-emitter voltage V GE 20 V Short circuit withstand time) tSC 5 s VGE = 15V, V CC 400V, T j 150C Power
in „Verständnisproblem mit Wärmewiederstand“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LITTELFUSE_TVS_DIODE_1_5KE_DATASHEET.pdf
Reflow Condition Lead–free assembly p P -Temperature Min (T s(min) 150°C Ramp-up Critical Zone TLtoPT Pre Heat -Temperature Max (T s(max) 200°C L tL T -Time (min to max) (s ) 60 – 180 secs es(max) t Average ramp up rate (LiquidusTemp (T )A e Ramp-down 3°C/second max ps(min) to peak e Preheat T T S(max
in „230V Schutz mit TVS Diode, Auswahl Diode“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elektronische_Last_6.pdf
S BAT42 +10V X104-1 E 5k IC105 -5V X104-2 12 1Y0 S1 11 D106 +5V X104-3 13 1Y1 GND X104-4 N MUR3040PT V+ X104-5 G V+ 2 2Y0 S2 10 ISET ISET ISET IN+ X116-1 1 2Y1 + INPUT GND 5 9 X116-2 Controller INT/EXT 3 3Y0 S3 IRFP250N IRFP250N IRFP250N IRFP250N C127 INT/EXT X105-5 TEMP 3Y1 6 Q101 Q102 Q103 Q104 6
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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Elektronische_Last_7.pdf
S BAT42 +10V X104-1 E 5k IC105 -5V X104-2 12 1Y0 S1 11 D106 +5V X104-3 13 1Y1 GND X104-4 N MUR3040PT V+ X104-5 G V+ 2 2Y0 S2 10 ISET ISET ISET IN+ X116-1 1 2Y1 + INPUT GND 5 9 X116-2 Controller INT/EXT 3 3Y0 S3 IRFP250N IRFP250N IRFP250N IRFP250N C127 INT/EXT X105-5 TEMP 3Y1 6 Q101 Q102 Q103 Q104 6
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elektronische_Last_8.pdf
Netzteil +10V X104-1 AR113 IC106 -5V X104-2 S 12 1Y0 S1 11 D106 +5V X104-3 13 1Y1 GND X104-4 N E5k MUR3040PT V+ X104-5 G V+ 2 2Y0 S2 10 ISET ISET ISET IN+ X116-1 1 2Y1 + INPUT 1k4 R114 5 9 X116-2 Controller INT/EXT 3 3Y0 S3 IRFP250N IRFP250N IRFP250N IRFP250N C129 INT/EXT X105-5 TEMP GND 3Y1 6 Q101 Q102 Q103
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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Elektronische_Last_5.pdf
BAT42 B +10V X103-1 5k 0 -5V X103-2 E 100k k 1 D106 +5V X103-3 6 0 R GND X103-4 N 1 K101 R125 1 MUR3040PT V+ X103-5 G V+ 8 HighRes 10k ISET ISET ISET IN+ X116-1 HRES X106-1 BC547 GND + INPUT GND 1 NC X106-2 R126 T102 X116-2 Controller INT/EXT X104-5 INT/EXT IRFP250N IRFP250N IRFP250N IRFP250N C126 W TEMP
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
QIACHIP_RX480E-4_receiver_module_Instructions_manual_433.92MHz_152.pdf
<=5mA Working Voltage : DC3.3~5V Working Frequency: 433.92MHz Support encoding chip model: EV1527, PT2262 (Others can be customized,but at least 1000pcs) Function Pin-out instructions: GND : groud or negative pole +V : DC3.3~5V input D0: Data output D1: Data output D2: Data output D3: Data output VT:
in „Klingel mit 100 Melodien - last minute Weihnachtsgeschenk“ · Projekte & Code ·
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GPG320X240-NFNDSCW3_B_.pdf
Customer / 客戶名稱 Product No. GPG320X240-NFNDSCW3 (GM0128) Customer s Signature(s): 客戶確認簽章: Prepared Check-PT Approval-PT Check-QA Final Approval 國 喬 光 電 科 技 股 份 有 限 公 司 Grand Pacific Optoelectronics Corp. Tel: 886-3-579-5669 · Fax: 886-3-579-5697 · www.gpo.com.tw GPG320X240- NFNDSCW3 (Vers. B) Page 1 /23 Version
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PDF
STK5Q4U362J-E-D.PDF
RATINGS (Notes 1, 2) Rating Symbol Conditions Value Unit Supply voltage V VP to NU, NV, NW, surge < 500 V (Note 3) 450 V CC Collector-emitter voltage V max VP to U, V, W ; U to NU ; V to NV ; W to NW 600 V CE VP, U, V, W, NU, NV, NW terminal current ±10 A Output current Io VP, U, V, W, NU, NV, NW terminal
in „Ersatz für ON-Semi STK5Q4U362J-E / STK5Q4U363J-E bzw. passt da NFAQ1060L33T / NFAQ1060L36T“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
3GW_22048_1_2009.05.20.09.50.48_14403_EN.pdf
Random Vibration Probe Compensator Front-panel pins Output Amplitude: 5 V Operating 0.31 G RMSfrom 5 to 500 Hz, 10 minutes each axis, Frequency: 1 kHz 3 axes, 30 minutes total Nonoperating 2.46 G RMSfrom 5 to 500 Hz, 10 minutes each axis, Kensington Style Rear-panel security slot connects to standard 3 axes
in „Tektronix DPO 2012“ · Markt ·
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PDF
3GW_22048_1_2009.05.20.09.50.48_14403_EN.pdf
Random Vibration Probe Compensator Front-panel pins Output Amplitude: 5 V Operating 0.31 G RMSfrom 5 to 500 Hz, 10 minutes each axis, Frequency: 1 kHz 3 axes, 30 minutes total Nonoperating 2.46 G RMSfrom 5 to 500 Hz, 10 minutes each axis, Kensington Style Rear-panel security slot connects to standard 3 axes
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PDF
Agilent_ADNS-2051_-_153206449.pdf
LED Current LED Typ–15% 630/R1 Typ+15% A Refer to Figure 11, see table - below. (fault mode)nt LED 500 A R1 < 200 . REF_A (normal mode) VREFA 3.3 V 1.5 K to 3.0 V or GND, c PD = low. REF_A (power down mode) VREFA 3.3 V 1.5 K to 3.0 V or GND, y PD = high. 100 Typical LED Current Table R1 Value k 15 18
in „USB Maus mit USART auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
l7987.pdf
board) 2.5 ESD protection Table 4. ESD protection Symbol Test condition Value Unit HBM 2 KV ESD CDM 500 V DocID025589 Rev 3 7/37 37 Electrical characteristics L7987 3 Electrical characteristics All the population tested at TJ= 25 °C, V IN= V CC = 24 V and V EN =3 V unless otherwise specified. Table 5.
in „L7987, wie Output regeln?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Aim_TTi_QL_Series_II_Service_Manual_48511-1740.pdf
Full Load No Load Load Up 15V 5A 6ms 6ms 25V/4A 10ms 6ms Up 35V 3A 20ms 7ms 56V/2A 40ms 15ms Up 35V 500mA 200ms 40ms 56V/500mA 300ms 60ms Down 15V 5A 6ms 250ms 25V/4A 10ms 400ms Down 35V 3A 25ms 600ms 56V/2A 50ms 800ms Down 35V 500mA 120ms 600ms 56V/500mA 200ms 800ms Ripple and Noise Normal mode voltage
in „wegen Aim TTi Netzteil Qualität“ · Analoge Elektronik und Schaltungstechnik ·
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T83C5121.PDF
Serial port Priority bit Refer to PSH for priority level. Timer 1 overflow interrupt Priority bit 3 PT1L Refer to PT1H for priority level. External interrupt 1 Priority bit 2 PX1L Refer to PX1H for priority level. 1 PT0L Timer 0 overflow interrupt Priority bit Refer to PT0H for priority level. External
in „[V] 1 Stange ältere (ca. 56St) Atmel AT89C5121 mit Interface für Chipkarten/ SIM (9€)“ · Markt ·
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PDF
T83C5121.PDF
Serial port Priority bit Refer to PSH for priority level. Timer 1 overflow interrupt Priority bit 3 PT1L Refer to PT1H for priority level. External interrupt 1 Priority bit 2 PX1L Refer to PX1H for priority level. 1 PT0L Timer 0 overflow interrupt Priority bit Refer to PT0H for priority level. External
in „[V] noch 1 Stange ältere (60St) Atmel AT89C5121 mit Interface für Chipkarten/ SIM (9€)“ · Markt ·
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PDF
BC639_BCP56_BCX56.pdf
= 0 A - - 100 nA current hFE DC current gain VCE = 2 V IC= 5 mA 63 - - IC= 150 mA 63 - 250 [1] IC= 500 mA 40 - - DC current gain V = 2 V CE h selection -10 I = 150 mA 63 - 160 FE C hFE selection -16 IC= 150 mA 100 - 250 VCEsat collector-emitter C = 500 mA; I B 50 mA [1]- - 500 mV saturation voltage VBE base-emitter voltage VCE = 2 V; C = 500 mA [1]- - 1 V C c collector capacitance VCB = 10 V;I E i e 0 A; - 6 - pF f = 1 MHz fT transition frequency VCE = 5 V; C = 50 mA; 100 180 - MHz f = 100 MHz [1] Pulse test:pt ≤ 300 s; δ = 0.02. BC639_
in „Alternative BC327 und 337“ · Analoge Elektronik und Schaltungstechnik ·
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Petra-M10_Einblick_offen.html
background-color:#666;width:100%}.KkFss:hover .irc_idim{display:block}.irc_pdft{color:#aaa;font-size:16px}a.irc_pt{color:rgba(255, 255, 255, .87);display:block;font-size:20px;line-height:30px;max-height:60px;overflow:hidden;text-decoration:none;text-overflow:ellipsis;white-space:normal;word-wrap:break-word}a.irc_pt
in „Lampentaster gesucht“ · Markt ·
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PDF
Moog-Valves-D633_D634-Catalog-de.pdf
Volumenstrom-Steuerung (Drosselventil) in A und B zulässig 5 bis 400 mm /s Y-Anschluß erforderlich, wenn Druck pT > 50 bar im Tank- Systemfilter Hochdruckfilter (ohne Bypass, jedoch mit Verschmutzungs- anschluß T Um die 3-Wege-Funktion zu erhalten, ist wahlweise A oder anzeige) im Hauptstrom möglichst direkt vor
in „Totzeit in hydraulischer Regelstrecke“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
5082-2350.pdf
Ratio vs. Frequency TA=25°C. at 1 rnA Current. 155 iii :!! w "' ." w CI) z IF '30Mfiz I--+--+-+~- + PtO-11.0 mWB RL =100 n 5 L - ~ ~ ~ ~ ~ ~ ~ ~ L - ~ ~ ~ ~ 0.1 10 100 FREOUENCY (GHzl LOCAL OSCILLATOR POWER (mWI Figure 3. Typical Noise Figurevs. Frequency. The mount is Figure 4. Single Sideband Noise
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PDF
SFH4544-Datasheet.pdf
mA, t p 20 ms IF= 1 A, tp= 100 µs e, min[mW / sr] Ie, max[mW / sr] Ie, typW / sr] SFH 4544-CW 250 500 1580 SFH 4544-DW 400 800 2530 SFH 4544-EW 630 1250 3980 Note: Measured at a solid angle of Ω = 0.001 sr Only one group in one packing unit (variation lower 2:1). Anm.: gemessen bei einem Raumwinkel
in „Max. Strom für IR-LED für NEC-Code“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LRTB_GVTG_15_.pdf
27 Type Color of Emission Luminous Intensity IF = 20 mA I (mcd) V red true green blue LRTB GVTG red 500 …1250 true green 1250 …3150 blue 250 …630 Bestellinformation Ordering Information Typ Bestellnummer Type Ordering Code LRTB GVTG-U5V5-1+A5B5-29+S9T9-49 Q65111A3112 Anm: Die oben genannten Typbezeichnungen
in „LRTBGVT erstellen(LTspice)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NEC_AC08DSMA.pdf
RATINGS Parameter Symbol AC08DSMA AC08FSMA Unit Remarks Non-repetitive Peak Off-state Voltage V DSM 500 700 V − Repetitive Peak Off-state Voltage V DRM 400 600 V − Effective On-state Current T(RMS) 8 (TC= 88°C) A Refer to Figure 11 and 12. Surge On-state Current TSM 80 (50 Hz 1 cycle) A Refer to Figure
in „Triac am atmega anstelle MOC3041 und BTA08-400“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BC847BS_2xnpn.pdf
collector capacitance E = e = 0;CB = 10 V; f = 1 MHz − − 1.5 pF Ce emitter capacitance C = c = 0;EB = 500 mV; f = 1 MHz − 11 − pF f transition frequency I = 10 mA; V = 5 V; f = 100 MHz100 − − MHz T C CE Note 1. Pulse test: t 300 s; δ ≤ 0.02. p 1999 Apr 28 3 Philips Semiconductors Product specification NPN
in „BC547 matched“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UMW-SMBJ.pdf
800 65.2 9.2 SMBJ6.0A(CA) KG KG 6.67 7.37 10 6.0 800 58.3 10.3 SMBJ6.5A(CA) KK AK 7.22 7.98 10 6.5 500 53.6 11.2 SMBJ6.8A(CA) 8A 8C 6.45 7.14 10 5.80 1000 57.1 10.5 SMBJ7.0A(CA) KM KM 7.78 8.60 10 7.0 200 50.0 12.0 SMBJ7.5A(CA) KP AP 8.33 9.21 1.0 7.5 100 46.5 12.9 SMBJ8.0A(CA) KR AR 8.89 9.83 1.0 8.0
in „TVS Diode gefälscht?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HP-2900.pdf
Current tance 5082- Outline V (V) V (mV) I (mA) I (nA) at V (V) C (pF) BR F F R R T 2303 15 20 400 35 500 15 1.0 2900 15 10 400 20 100 5 1.2 Test IR = 10 A F = 1 mA VR= 0 V Conditions f =1.0 MHz Note: Effective Carrier Lifetime (τ) for all these diodes is 100 ps maximum measured with Krakauer method at
in „Ostern- Vielleicht mal wieder Detektorempfänger ?“ · HF, Funk und Felder ·
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AVREinsteiger.html
border-collapse:collapse; border-spacing:0; empty-cells:show } td, th { vertical-align:top; font-size:10pt;} h1, h2, h3, h4, h5, h6 { clear:both } ol, ul { margin:0; padding:0;} li { list-style: none; margin:0; padding:0;} <!-- "li span.odfLiEnd" - IE 7 issue--> li span. { clear: both; line-height:0; width
in „AVR Einsteiger Kit“ · Mikrocontroller und Digitale Elektronik ·
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LS0208UD06.pdf
Humidity/Temperature Under Operation A Temperature 40°C – 2°C E Relative Humidity 93% – 2% R Time 500h P O P N 2. Optical Specification E L A E 2.1. Measurement Conditions B R 2.1.1.General Measurement Conditions V Unless specified, the following test conditions are valid: E H Room Temperature 23 (+
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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PDF
SerialComInstruments_Doku.pdf
/ Instrument #90 SendString(44,i); // Instrument #44 SendString(60,i * 2); // Instrument #60 delay(500); } } Programm-Oberfläche Es sind noch nicht alle beschriebenen Features der Software freigegeben. Die Beschreibung bezieht sich daher möglicherweise auch auf zur Zeit noch nicht verfügbare Optionen
in „Projekt: Virtuelle Instrumente an serielle Schnittstelle“ · Projekte & Code ·
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PDF
vti_sca100t-2.pdf
LEAK Vdd 1.5 SPI Interface AC Characteristics Parameter Condition Min. Typ. Max. Units Output load @500kHz 1 nF SPI clock frequency 500 kHz Internal A/D conversion time 150 µs Data transfer time @500kHz 38 µs VTI Technologies Oy Subject to changes 4/18 www.vti.fi Doc. nr. 8261800 Rev.A SCA100T Series
in „MSP430 SPI 11BIT !?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SCA100T_inclinometer_datasheet_8261800A.pdf
LEAK Vdd 1.5 SPI Interface AC Characteristics Parameter Condition Min. Typ. Max. Units Output load @500kHz 1 nF SPI clock frequency 500 kHz Internal A/D conversion time 150 µs Data transfer time @500kHz 38 µs VTI Technologies Oy Subject to changes 4/18 www.vti.fi Doc. nr. 8261800 Rev.A SCA100T Series
in „HCS12 - SPI Schnittstelle programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SCA100T_inclinometer_datasheet_8261800A.pdf
LEAK Vdd 1.5 SPI Interface AC Characteristics Parameter Condition Min. Typ. Max. Units Output load @500kHz 1 nF SPI clock frequency 500 kHz Internal A/D conversion time 150 µs Data transfer time @500kHz 38 µs VTI Technologies Oy Subject to changes 4/18 www.vti.fi Doc. nr. 8261800 Rev.A SCA100T Series
in „SCA100T-D02 SPI Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Thyristor_Triac_App_Note__by_Littlefuse.pdf
, 2= 2.2 k, 2 W Q 1 2N2646 60 Hz R3= 2.2 k, 1/2 W Q 2 Q4010L5 R4= Thermistor, approx. 5 k T1= Dale PT 10-101 at operating temperature or equivalent 240V ac 3 A 500 k 0.1 µF 400V 200 µH Q6006LTH R = 10 k Potentiometer D = 200 V Diode 50/60 Hz 5 1-4 R6= 5 M Potentiometer D 5 20 V Zener R7= 100 k, 1/2 W
in „Ansteuerschaltung Thyristor und Triac“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Littelfuse_App_Note_AN1003.pdf
, 2= 2.2 k, 2 W Q 1 2N2646 60 Hz R3= 2.2 k, 1/2 W Q 2 Q4010L5 R4= Thermistor, approx. 5 k T1= Dale PT 10-101 at operating temperature or equivalent 240V ac 3 A 500 k 0.1 µF 400V 200 µH Q6006LTH R = 10 k Potentiometer D = 200 V Diode 50/60 Hz 5 1-4 R6= 5 M Potentiometer D 5 20 V Zener R7= 100 k, 1/2 W
in „Phasenanschnittsteuerung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
an1003.pdf
W Q 2 Q2010L5 120 V ac 12 A 250 k 0.1 µF 200 V100 µH Q2015L9 R4= Thermistor, approx. 5 k T 1 Dale PT 10-101 60 Hz at operating temperature or equivalent R5= 10 k Potentiometer D 1-4= 200 V Diode 240 V ac 3 A 500 k 0.1 µF 400 V200 µH Q4004L4 R6= 5 M Potentiometer D 5 20 V Zener 50/60 Hz R7= 100 k, 1/
in „hysteresefreie Phasenanschnittsteuerung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Configuration_adv.h
define PLR_ENABLED_DEFAULT false // Power Loss Recovery enabled by default. (Set with 'M413 Sn' & M500) //#define BACKUP_POWER_SUPPLY // Backup power / UPS to move the steppers on power loss //#define POWER_LOSS_RECOVER_ZHOME // Z homing is needed for proper recovery. 99.9% of the time this should be
in „Ender3 Z-Achse fährt mit Marlin nur nach oben“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
Datenblatt_SAB-C167CR-LM_SiemensSemiconductorGroup.pdf
F03E E 1F PWM Module Period Register 3 0000 H H H PSW b FF10 88 CPU Program Status Word 0000 H H H PT0 F030H E 18H PWM Module Up/Down Counter 0 0000H PT1 F032H E 19H PWM Module Up/Down Counter 1 0000H PT2 F034H E 1AH PWM Module Up/Down Counter 2 0000H PT3 F036H E 1BH PWM Module Up/Down Counter 3 0000H
in „Ersatz für alten Hitach H8/3337 µP?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
an920-d.pdf
mA, Iout2= 500 mA Δ = 2.0 mV or ± 0.008% Output Ripple V out1 Vin 15 V, Iout1= 500 mA, I out2= 500 mA 125 mV p−p Line Regulation V out2 Vin 14.5 to 18 V, Iout1= 500 mA, Iout2= 500 mA Δ = 10 mV or ± 0.042% Load Regulation V out2 Vin 15 V, Iout2= 100 to 500 mA, Iout1= 500 A Δ = 5.0 mV or ± 0.021% Output Ripple V out2 Vin 15 V, Iout1= 500 mA, I out2= 500 mA 140 mV p−p Efficiency Vin 15 V, Iout1= 500 mA, I out2= 500 mA 77.2% This tracking regulator provides
in „MC34063 als Step Up arbeitet nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN920-D_MC34063_Theory_and_Applications_.pdf
mA, Iout2= 500 mA = 2.0 mV or 〉 0.008% Output Ripple V out1 Vin 15 V, Iout1= 500 mA, Iout2= 500 mA 125 mV p–p Line Regulation V out2 Vin 14.5 to 18 V, out1= 500 mA, Iout2= 500 mA = 10 mV or 〉 0.042% Load Regulation V out2 Vin 15 V, Iout2= 100 to 500 mA, Iout1= 500 A = 5.0 mV or 〉 0.021% Output Ripple V out2 Vin 15 V, Iout1= 500 mA, Iout2= 500 mA 140 mV p–p Efficiency Vin 15 V, Iout1= 500 mA, Iout2= 500 mA 77.2% This tracking regulator provides
in „Schaltregler MC34063 - Wie berechnet man CT?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN920-D.PDF
mA, Iout2= 500 mA = 2.0 mV or 〉 0.008% Output Ripple V out1 Vin 15 V, Iout1= 500 mA, Iout2= 500 mA 125 mV p–p Line Regulation V out2 Vin 14.5 to 18 V, out1= 500 mA, Iout2= 500 mA = 10 mV or 〉 0.042% Load Regulation V out2 Vin 15 V, Iout2= 100 to 500 mA, Iout1= 500 A = 5.0 mV or 〉 0.021% Output Ripple V out2 Vin 15 V, Iout1= 500 mA, Iout2= 500 mA 140 mV p–p Efficiency Vin 15 V, Iout1= 500 mA, Iout2= 500 mA 77.2% This tracking regulator provides
in „Frage zu Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC34063_AN920-D.PDF
mA, Iout2= 500 mA = 2.0 mV or 〉 0.008% Output Ripple V out1 Vin 15 V, Iout1= 500 mA, Iout2= 500 mA 125 mV p–p Line Regulation V out2 Vin 14.5 to 18 V, out1= 500 mA, Iout2= 500 mA = 10 mV or 〉 0.042% Load Regulation V out2 Vin 15 V, Iout2= 100 to 500 mA, Iout1= 500 A = 5.0 mV or 〉 0.021% Output Ripple V out2 Vin 15 V, Iout1= 500 mA, Iout2= 500 mA 140 mV p–p Efficiency Vin 15 V, Iout1= 500 mA, Iout2= 500 mA 77.2% This tracking regulator provides
in „Spule für Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN920-D.pdf
mA, Iout2= 500 mA Δ = 2.0 mV or ± 0.008% Output Ripple V out1 Vin 15 V, Iout1= 500 mA, I out2= 500 mA 125 mV p−p Line Regulation V out2 Vin 14.5 to 18 V, Iout1= 500 mA, Iout2= 500 mA Δ = 10 mV or ± 0.042% Load Regulation V out2 Vin 15 V, Iout2= 100 to 500 mA, Iout1= 500 A Δ = 5.0 mV or ± 0.021% Output Ripple V out2 Vin 15 V, Iout1= 500 mA, I out2= 500 mA 140 mV p−p Efficiency Vin 15 V, Iout1= 500 mA, I out2= 500 mA 77.2% This tracking regulator provides
in „Spannungsregelung mit Step-Up/Down Regler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN920-D_MC34063_Theory_and_Applications_.pdf
mA, Iout2= 500 mA = 2.0 mV or 〉 0.008% Output Ripple V out1 Vin 15 V, Iout1= 500 mA, Iout2= 500 mA 125 mV p–p Line Regulation V out2 Vin 14.5 to 18 V, out1= 500 mA, Iout2= 500 mA = 10 mV or 〉 0.042% Load Regulation V out2 Vin 15 V, Iout2= 100 to 500 mA, Iout1= 500 A = 5.0 mV or 〉 0.021% Output Ripple V out2 Vin 15 V, Iout1= 500 mA, Iout2= 500 mA 140 mV p–p Efficiency Vin 15 V, Iout1= 500 mA, Iout2= 500 mA 77.2% This tracking regulator provides
in „MC34063 Strombegrenzung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN920-D.PDF
mA, Iout2= 500 mA Δ = 2.0 mV or ± 0.008% Output Ripple V out1 Vin 15 V, Iout1= 500 mA, Iout2= 500 mA 125 mV p−p Line Regulation V out2 Vin 14.5 to 18 V, out1= 500 mA, Iout2= 500 mA Δ = 10 mV or ± 0.042% Load Regulation V out2 Vin 15 V, Iout2= 100 to 500 mA, Iout1= 500 A Δ = 5.0 mV or ± 0.021% Output Ripple V out2 Vin 15 V, Iout1= 500 mA, Iout2= 500 mA 140 mV p−p Efficiency Vin 15 V, Iout1= 500 mA, Iout2= 500 mA 77.2% This tracking regulator provides
in „Suche Buck-Boost für LiIon-Spannung auf 3,3V“ · Analoge Elektronik und Schaltungstechnik ·
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BC546_547_3.pdf
current − 200 mA BM peak base current − 200 mA Ptot total power dissipation Tamb≤ 25 °C; note 1 − 500 mW Tstg storage temperature −65 +150 °C T junction temperature − 150 °C j Tamb operating ambient temperature −65 +150 °C Note 1. Transistor mounted on an FR4 printed-circuit board. 1999 Apr 15 2 Philips
in „Rätselhafter Transistor“ · Mikrocontroller und Digitale Elektronik ·