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PDF
saft-ls14250-technical-data-sheet.pdf
1300 clean, cool (preferably not 1200 exceeding +30 C), dry and 1100 +20°C 1000 ventilated. ) +70°C A 900 m 800 ( - 20°C Warning t 700 c 600 l Fire, explosion and burn hazard. a a 500 l Do not recharge, short circuit, C 400 - 40°C crush, disassemble, heat above 300 100 C (212 F), incinerate, 200 100 or
in „Low Power Schaltung mit High-Power Peaks“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Compact506.pdf
degree Celsius, maximum PD Short-term Repeatability 20 8 µRad PD Output Signal (Common Mode) 300 (@20mA) 900 (@60mA) µA (at specified LED current) PD Output Signal (Differential Mode) 20 (@20mA) 60 (@60mA) µA per degree (at spec. LED current) Mass 12.8 13.3 Grams * Specifications in parenthesis indicate Compact
in „UV-Laserdrucker“ · Platinen ·
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Datei
flashdump.txt
00000038: 91CF POP R28 Pop register from stack +00000039: 918F POP R24 Pop register from stack +0000003A: 900F POP R0 Pop register from stack +0000003B: BE0F OUT 0x3F,R0 Out to I/O location +0000003C: 900F POP R0 Pop register from stack +0000003D: 901F POP R1 Pop register from stack +0000003E: 9518 RETI Interrupt
in „avr-gcc erzeugt keine IntVec-Tabelle?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bc547.pdf
=5mA 200 600 mV VBE(sat) Base-Emitter Saturation Voltage IC=10mA, B =0.5mA 700 mV I =100mA, I =5mA 900 mV C B VBE(on) Base-Emitter On Voltage VCE=5V, C =2mA 580 660 700 mV VCE=5V, C =10mA 720 mV T Current Gain Bandwidth Product VCE=5V, C =10mA, f=100MHz 300 MHz Cob Output Capacitance VCB=10V, E =0,
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bc547.pdf
=5mA 200 600 mV VBE(sat) Base-Emitter Saturation Voltage IC=10mA, B =0.5mA 700 mV I =100mA, I =5mA 900 mV C B VBE(on) Base-Emitter On Voltage VCE=5V, C =2mA 580 660 700 mV VCE=5V, C =10mA 720 mV T Current Gain Bandwidth Product VCE=5V, C =10mA, f=100MHz 300 MHz Cob Output Capacitance VCB=10V, E =0,
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bc547.pdf
=5mA 200 600 mV VBE(sat) Base-Emitter Saturation Voltage IC=10mA, B =0.5mA 700 mV I =100mA, I =5mA 900 mV C B VBE(on) Base-Emitter On Voltage VCE=5V, C =2mA 580 660 700 mV VCE=5V, C =10mA 720 mV T Current Gain Bandwidth Product VCE=5V, C =10mA, f=100MHz 300 MHz Cob Output Capacitance VCB=10V, E =0,
in „Displaybeleuchtung mit PWM dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
18481_BC547_data.pdf
=5mA 200 600 mV VBE(sat) Base-Emitter Saturation Voltage IC=10mA, B =0.5mA 700 mV I =100mA, I =5mA 900 mV C B VBE(on) Base-Emitter On Voltage VCE=5V, C =2mA 580 660 700 mV VCE=5V, C =10mA 720 mV T Current Gain Bandwidth Product VCE=5V, C =10mA, f=100MHz 300 MHz Cob Output Capacitance VCB=10V, E =0,
in „NPN Transistor Kennlinie verstehen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BC547.pdf
=5mA 200 600 mV VBE(sat) Base-Emitter Saturation Voltage IC=10mA, B =0.5mA 700 mV I =100mA, I =5mA 900 mV C B VBE(on) Base-Emitter On Voltage VCE=5V, C =2mA 580 660 700 mV VCE=5V, C =10mA 720 mV T Current Gain Bandwidth Product VCE=5V, C =10mA, f=100MHz 300 MHz Cob Output Capacitance VCB=10V, E =0,
in „Arduino. Transistor schaltet nicht richtig“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC547B.pdf
=5mA 200 600 mV VBE(sat) Base-Emitter Saturation Voltage IC=10mA, B =0.5mA 700 mV I =100mA, I =5mA 900 mV C B VBE(on) Base-Emitter On Voltage VCE=5V, C =2mA 580 660 700 mV VCE=5V, C =10mA 720 mV T Current Gain Bandwidth Product VCE=5V, C =10mA, f=100MHz 300 MHz Cob Output Capacitance VCB=10V, E =0,
in „Basiswiderstand richtig berechnet?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BC547_datasheet.pdf
=5mA 200 600 mV VBE(sat) Base-Emitter Saturation Voltage IC=10mA, B =0.5mA 700 mV I =100mA, I =5mA 900 mV C B VBE(on) Base-Emitter On Voltage VCE=5V, C =2mA 580 660 700 mV VCE=5V, C =10mA 720 mV T Current Gain Bandwidth Product VCE=5V, C =10mA, f=100MHz 300 MHz Cob Output Capacitance VCB=10V, E =0,
in „Frage zur Berechnung von Basiswiderstand BC547B mit Motor 5V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
45890.pdf
OP90* BIP 125µV 4nA 1V 0V 0.8V 0.01V 20mA 20KHz 0.012V/µs 36V OP97* BIP 30µV 30pA 1V 1V 1V 1V 20mA 900KHz 0.2V/µs 40V *Device is immune to potential phase reversal. TABLE 5 - SOME COMPOSITE-FRIENDLY OP AMPS AND THEIR KEY PARAMETERS part # type VOS IB+ V IHRH VIHRL V OHRH VOHRL IOUT GBP SR maxV S AD825* FET 1mV 10pA 1.5V 1.5V 1.6V 1.6V 26mA 46MHz 140V/µs 36V OP97* BIP 30µV 30pA 1V 1V 1V 1V 20mA 900KHz 0.2V/µs 40V AD811* CF 3mV 2µA 2V 2V 3V 3V 100mA 140MHz 2500V/µs 36V AD815* CF 10mV 2µA 1.5V 1.5V 1V 1V 750mA 120MHz 900V/µs 36V *Device is immune to potential phase reversal.
in „Schaltung Spannungsverstärkung in -5 - 5V out -50 - 50V ??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Bootstrapping_your_op_amp_yields_wide_Voltage_Swings.pdf
OP90* BIP 125µV 4nA 1V 0V 0.8V 0.01V 20mA 20KHz 0.012V/µs 36V OP97* BIP 30µV 30pA 1V 1V 1V 1V 20mA 900KHz 0.2V/µs 40V *Device is immune to potential phase reversal. TABLE 5 - SOME COMPOSITE-FRIENDLY OP AMPS AND THEIR KEY PARAMETERS part # type VOS IB+ V IHRH VIHRL V OHRH VOHRL IOUT GBP SR maxV S AD825* FET 1mV 10pA 1.5V 1.5V 1.6V 1.6V 26mA 46MHz 140V/µs 36V OP97* BIP 30µV 30pA 1V 1V 1V 1V 20mA 900KHz 0.2V/µs 40V AD811* CF 3mV 2µA 2V 2V 3V 3V 100mA 140MHz 2500V/µs 36V AD815* CF 10mV 2µA 1.5V 1.5V 1V 1V 750mA 120MHz 900V/µs 36V *Device is immune to potential phase reversal.
in „Frequenzgenerator für 200V Vss“ · Mikrocontroller und Digitale Elektronik ·
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PDF
op-amp_bootstrapping__high_output_voltage_.pdf
OP90* BIP 125µV 4nA 1V 0V 0.8V 0.01V 20mA 20KHz 0.012V/µs 36V OP97* BIP 30µV 30pA 1V 1V 1V 1V 20mA 900KHz 0.2V/µs 40V *Device is immune to potential phase reversal. TABLE 5 - SOME COMPOSITE-FRIENDLY OP AMPS AND THEIR KEY PARAMETERS part # type VOS IB+ V IHRH VIHRL V OHRH VOHRL IOUT GBP SR maxV S AD825* FET 1mV 10pA 1.5V 1.5V 1.6V 1.6V 26mA 46MHz 140V/µs 36V OP97* BIP 30µV 30pA 1V 1V 1V 1V 20mA 900KHz 0.2V/µs 40V AD811* CF 3mV 2µA 2V 2V 3V 3V 100mA 140MHz 2500V/µs 36V AD815* CF 10mV 2µA 1.5V 1.5V 1V 1V 750mA 120MHz 900V/µs 36V *Device is immune to potential phase reversal.
in „Hochspannungs OPV Fehler/Vorschlag?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LCM-60-spec_2-1.pdf
SPECIFICATION MODEL LCM-60 SELECTABLECURRENT Note.300mA 600mA 700mA 900mA 1050mA 1400mA DC VOLTAGE RANGE 2 ~ 90V 2 ~ 90V 2 ~ 86V 2 ~67V 2 ~57V 2 ~ 42V RATED POWER 60.3W RIPPLECURRENT ±5% OUTPUT RIPPLE& NOISE (max.)Note.2700mVp-p NOLOADOUTPUTVOLTAGE(max.) 95V 73V CURRENT
in „LED Raumbeleuchtung flimmerfrei dimmen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ISP.txt
A400n2800+A400n2000-A500n2800+A500n2000-A600n2800+A600n2000-A700n2800+A700n2000-A800n2800+A800n2000-A900n2800+A900n2000-AA00n2800+AA00n2000-AB00n2800+AB00n2000-AC00n2800+AC00n2000-AD00n2800+AD00n2000-AE00n2800+AE00n2000-AF00n2800+AF00n2000-B000n2800+B000n2000-B100n2800+B100n2000-B200n2800+B200n2000-B300n2800
in „Warum ließt AtmelStudio vor Programmieren?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4560.pdf
reference only. Do not exceed absolute maximum ratings. 5. The yellow (HDSP-A800) and Green (HDSP-A900) displays are categorized for dominant wavelength. The category is designated by a number adjacent to the luminous intensity category letter. 13 AlGaAs Red Figure 1. Maximum Allowable Figure 2. Forward
in „7 Segment LED datenblatt suche für EAGLE“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HF-Praxis_5-2015_I.pdf
Gesamtkompression beginnt. Der Phasenverzögerung des • Reduziert spektrale Verbrei[1] B. Slade, "AmplifierAlpha- „A 900-nm CMOS Doherty Klasse-AB-Verstärkers macht terunginSignalenmithohem betSoup:Part1,BasicsofClass power amplifier with minimum einenplötzlichenSprung,wenn Spitze-zu-Mittelwert- Lei- A,AB,BandCamplifiers
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PDF
pollin_D350712D.pdf
by EN61000-4-6 (10Veff, AM 80%, 1kHz from 150kHz – 80MHz) A RF fields: Radiated RF: ENV50204:1995 A 900MHz, 20V/m, pulse 50% 5.2 Vibration and shock MECHANICAL STRESS Shock: 20G, 11ms, half sine (x/y direction) 15G, 11ms, half sine (z direction) Vibration: 1.2G, 10 – 55Hz, sinus Sweep: 1 minute/octave
in „Conrac Power Supply 150W“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D350712D.pdf
by EN61000-4-6 (10Veff, AM 80%, 1kHz from 150kHz – 80MHz) A RF fields: Radiated RF: ENV50204:1995 A 900MHz, 20V/m, pulse 50% 5.2 Vibration and shock MECHANICAL STRESS Shock: 20G, 11ms, half sine (x/y direction) 15G, 11ms, half sine (z direction) Vibration: 1.2G, 10 – 55Hz, sinus Sweep: 1 minute/octave
in „Laderegelung mit Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D350712D.PDF
by EN61000-4-6 (10Veff, AM 80%, 1kHz from 150kHz – 80MHz) A RF fields: Radiated RF: ENV50204:1995 A 900MHz, 20V/m, pulse 50% 5.2 Vibration and shock MECHANICAL STRESS Shock: 20G, 11ms, half sine (x/y direction) 15G, 11ms, half sine (z direction) Vibration: 1.2G, 10 – 55Hz, sinus Sweep: 1 minute/octave
in „Woran erkenne ich den Steckertryp bei einer fertigen Baugruppe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS1293_3_Kanal_24BIT_EKG_SPI_.pdf
1.16 64 0xC35000 80 16 1.02 0.85 128 0xC35000 40 8 0.79 0.64 4 0xF30000 1067 215 3.41 3.04 6 0xE6A900 711 145 2.74 2.42 8 0xF30000 533 110 2.38 2.07 12 0xE6A900 356 70 1.96 1.70 6 0xF300 4267 870 0.238 16 0xF30000 267 55 1.71 1.48 32 0xF30000 133 27 1.25 1.07 64 0xF30000 67 13 0.94 0.79 128 0xF30000
in „EKG-IS ADS1293 rückt keine Messwerte raus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS1293_3_Kanal_24BIT_EKG_SPI_Dez_2014.pdf
1.16 64 0xC35000 80 16 1.02 0.85 128 0xC35000 40 8 0.79 0.64 4 0xF30000 1067 215 3.41 3.04 6 0xE6A900 711 145 2.74 2.42 8 0xF30000 533 110 2.38 2.07 12 0xE6A900 356 70 1.96 1.70 6 0xF300 4267 870 0.238 16 0xF30000 267 55 1.71 1.48 32 0xF30000 133 27 1.25 1.07 64 0xF30000 67 13 0.94 0.79 128 0xF30000
in „Warum soll ADS1293 mit einem 4,096 MHz Quarz betrieben werden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRL1004.pdf
L VDS 1800 I J D D.U.T. m TOP 32A y1500 55A RG + r BOTTOM 78A -VDD e E I e1200 4.5V AS c p 0.01 n a 900 v e Fig 12a. Unclamped Inductive Test Circuit l u 600 e g i 300 , V S (BR)DSS A E 0 p 25 50 75 100 125 150 175 Starting T , Junction Temperature ( C) VDD J Fig 12c. Maximum Avalanche Energy V DS Vs.DrainCurrent
in „Mosfet als Schalter 100W“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
LCD_DRV.LST
SOURCE LINE # 75 0006 ?C0019: ; SOURCE LINE # 76 0006 AB00 R MOV R3,t 0008 AA00 R MOV R2,t+01H 000A A900 R MOV R1,t+02H 000C 120000 E LCALL ?C?CLDPTR 000F FF MOV R7,A 0010 6010 JZ ?C0021 ; SOURCE LINE # 77 0012 120000 R LCALL _lcd_data ; SOURCE LINE # 78 0015 7401 MOV A,#01H 0017 2500 R ADD A,t+02H 0019
in „Display Ansteuerung mit ISR auf 8051“ · Projekte & Code ·
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PDF
bq24072.pdf
BQ24073, BQ24074, BQ24075, BQ24079 www.ti.com SLUS810N – SEPTEMBER 2008 – REVISED OCTOBER 2021 1200 mA 900 mA T U IO 400 mA 0 mA 900 mA II 500 mA 0 mA 500 mA A IB 0 mA -300 mA 3.8 V DPPM Loop Active Supplement Mode 3.7 V ~3.6 V T O V Figure 9-4. BQ24072 DPPM and Battery Supplement Modes (V OREG = VBAT +
in „[V] 3St TI LiIon Lade/ Batterie-Management Chips: BQ24725RG und BQ24072RG“ · Markt ·
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PDF
hdsp_a103.pdf
Typicalspecificationforreferenceonly.Donotexceedabsolutemaximumratings. 5.Theyellow(HDSP-A800)andGreen(HDSP-A900)displaysarecategorizedfordominantwavelength.Thecategoryisdesignatedbyanumberadjacentto theluminousintensitycategoryletter. 15 AlGaAs Red Figure 1. Maximum Allowable Figure 2. Forward Current vs. Average
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PDF
Walfront-DC-Boost_Manual.pdf
the "OK" button output, you can charge the battery. 4, the effective power P = input voltage V * 15A, 900W nominal refers to the maximum power the module under specific operating conditions, at different input voltage, the maximum output power is limited by the maximum input current limit decline. such
in „Step up von 18v (M.ta Akku) auf 55V Led“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Walfront-DC-Boost_Manual.pdf
the "OK" button output, you can charge the battery. 4, the effective power P = input voltage V * 15A, 900W nominal refers to the maximum power the module under specific operating conditions, at different input voltage, the maximum output power is limited by the maximum input current limit decline. such
in „Step Up Converter nach Led Treiber?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bat54.pdf
mA 240 IF= 1 mA 320 (2) VF Forward voltage drop Tj= 25 °C IF= 10 mA 400 mV IF= 30 mA 500 IF= 100 mA 900 1. Pulse tesp: t = 5 ms, < 2% 2. Pulse tesp: t = 380 µs, < 2% Table 5. Dynamic characteristics Test conditions Symbol Parameter Min. Typ. Max. Unit C Diode capacitance V R 1 V, F = 1 MHz 7 10 pF
in „AEG Lavatherm IH67680IH schaltet sporadisch ab“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tps61046.pdf
V IN3.6 V, V OUT = 12 V, T J –40°C to 125°C, unless otherwise noted. 0.4 1100 0.35 1000 ) A 0.3 ( A 900 n 0.25 ( r i u i n 0.2 t 800 w e d 0.15 r u C 700 S 0.1 600 0.05 0 500 -40 -20 0 20 40 60 80 -40 -20 0 20 40 60 80 100 120 Temperature (°C) Temperature (°C) D001 D001 V IN= 3.6 V V IN= 3.6 V, VOUT
in „Ruhestrom Spannungswandler DC DC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF1404.pdf
www.irf.com 5 IRF1404 15V J500 m D ( TOP 49A g 101A L DRIVER 1200 BOTTOM 121A VDS n E h R G D.U.T + c -VDD a900 IAS A a 20V v tp 0.01Ω A l600 u Fig 12a. Unclamped Inductive Test Circuit P V(BR)DSS l n tp S300 , S A E 0 25 50 75 100 125 150 175 Starting T , Junction Temperature( C) J IAS Fig 12c. Maximum Avalanche
in „MOSFET wird sehr heiß“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AH31.pdf
Information is allowed. Test Standard 3.2 Operating Conditions (1) Temperature Cycles JESD22-A104-A 900 PRESSURE COOKER JESD22-A110-B i 80 Salt Spray DIN-50021ss i 70 u 60 Elevated Atmosphere JESD22-A101-B v 40 Top of Swiss mountain - e 30 R 20 Cellular Phone - 10 Tab Water - -30 -20 -10 1Ambient temperature
in „Nachhilfe Taktfrequenzen / Feuchtigkeitssensor AH31 von Sensirion“ · Mikrocontroller und Digitale Elektronik ·
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Datei
changes.asm
text:0000A8F4 CMP R3, #0 .text:0000A8F8 BNE loc_A904 .text:0000A8FC BL Measure_ShowTime .text:0000A900 BL Zoom_ShowRtcTime .text:0000A904 .text:0000A904 loc_A904 ; CODE XREF: pth_scan_keyboard+558 .text:0000A904 LDR R3, =dword_40501C .text:0000A908 LDR R2, [R3] .text:0000A90C MOV R3, 0x989680 .text:0000A918
in „Tekway/Hantek/Voltcraft MSO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BA6162.pdf
V – 80 (BA6129AF) Output current 1 IOUT1 mA – 40 (BA6162 / BA6162F) Output current 2 IOUT2 – 200 A 900 1 (BA6162) Power dissipation Pd 550 2 (BA6129AF) mW (BA6162F) Operating temperature Topr – 20 ~ + 75 °C Storage temperature Tstg – 40 ~ + 125 °C IOUT1indicates the output currenCCoside, anOUT2the output
in „DS1210 als Ersatz für BA6162?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1300.pdf
IR drops along supply and ground lines and are especially demanding on alkaline batteries. By in- A900 ( stalling an R1 and C3 as shown in Figure 4, the switch N800 currentintheLT1300islimitedto400mAuntilthe15 A R C700 flowingoutoftheI LIM pinchargesupthe0.1 Fcapaci- H600 tor. Input current is held to
in „Regulierte 3.3v spannung bei 3.7v batterie?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
eBUS_Stuttgart_041201_eBUS_Only.PDF
100305020100 programs operationaldatarequestfromburnertoheatingcontrol I/O - check pump control 0310050001A900 flame control operationaldatatransmissiontoheatingcontrol adjust mixer valves 0310050308010C7E25833C6E.... eBUS - operationaldatatransmissiontoburnercontrol eBUS - communication communication 100305010505A9013F85FF8415
in „eBus CRC Berechnung nachvollziehen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mt7623n-bananapi-bpi-r2.dts.txt
0x00 0x700>; #address-cells = <0x02>; #size-cells = <0x02>; ranges; status = "okay"; pcie-phy@1a14a900 { reg = <0x00 0x1a14a900 0x00 0x700>; clocks = <0x35>; clock-names = "ref"; #phy-cells = <0x01>; status = "okay"; phandle = <0x32>; }; }; usb@1a1c0000 { compatible = "mediatek,mt7623-xhci\0mediatek,
in „ADC- und DAC-Experimente mit PCF8591 auf Banana Pi SBCs (WiringPi, i2c-tools)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CSI93C86.pdf
provided for stresses up to 100 mA on address and data CC+1V.rom –1V to V (5) Standby Current 2ISB )=0 A (<900nA) for 93C46/56/52/66, (ISB )=2 A for 93C86. Doc. No. 25056-00 2/98 M-1 2 93C46/56/57/66/86 PIN CAPACITANCE Symbol Test Max. Units Conditions (3) COUT OUTPUT CAPACITANCE (DO) 5 pF V OUT=OV (3) CIN
in „asm Code für EEPROM 93C86“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0046274001518549145.pdf
at 80℃ 80% 60% 70% 50% 60% D 40% 500mA D 50% 500mA T T 600mA 30% 600mA 40% 700mA 30% 700mA 20% 900mA 900mA 20% 10% 1050mA 1050mA 1400mA 10% 1400mA 0% 0% 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% LOAD LOAD (230Vac Input) (277Vac Input) POWER FACTOR (PF) CHARACTERISTIC
in „PWM-Signal 24V 500Hz wandeln in 10V PWM“ · Haus & Smart Home ·
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PDF
Clock_jitter_analyzed_in_the_Time_Domain_Part_2.pdf
transformer); hence, theoretically the phase noise should be integrated to ~1 GHz (rolling off at 3 dB at a 900-MHz offset). This would result in ~1.27 ps of sampling-clock jitter and would reduce the SNR at f = 1 GHz to ~42.8 dBFS! CDCE72010 IN The actual SNR measurement was quite a bit better than that, as
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Datei
tfrec-d-dump.txt
4a55 0 94aa 1 2954 0 4aaa 1 9554 0 2aa9 0 52a9 0 a552 0 4aa4 0 9548 0 2a90 0 5520 0 aa40 0 5480 0 a900 0 5200 0 a400 0 4800 0 9000 0 2000 0 4000 0 8000 0 0000 0 5552 0 aaa4 0 5548 0 aa90 0 5520 0 aa40 0 5480 0 a900 0 5200 0 a400 0 4800 0 9000 0 2000 0 4000 0 8000 0 0000 1 0000 1 0000 0 0001 0 0001 0
in „SDR-Dekoder für TFA KlimaLogg Pro/IT+ Temperatursensoren“ · Projekte & Code ·
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PDF
ZN427.pdf
250 ns Clock pulse width BD 500 - - ns Maximum clock frequency 900 1000 - kHz See note 1 Note 1: A 900kHz clock gives a conversion time of 10 s (9 clock periods). 2 ZN427 GENERAL CIRCUIT OPERATION The ZN427 utilises the successive approximation technique. to1. Thisprocedureisrepeatedforalleightbits.
in „A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
zn427E.pdf
250 ns Clock pulse width BD 500 - - ns Maximum clock frequency 900 1000 - kHz See note 1 Note 1: A 900kHz clock gives a conversion time of 10 s (9 clock periods). 2 ZN427 GENERAL CIRCUIT OPERATION The ZN427 utilises the successive approximation technique. to1. Thisprocedureisrepeatedforalleightbits.
in „Austauschtyp gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CMT2210LC_433MHz_OOK_Receiver.pdf
duty cycle receiving mode, please refer to the figure below for details. 3.8 mA 3.8 mA 2.0 mA 2.0 mA 900 uA 300 nA 520 uA 300 nA 520 uA PUP SLEEP XTAL TUNE RX SLEEP XTAL TUNE RX State TSTART-UPms) TRX2 s) TRESET ms) TRX 2 s) Figure 10-1. Chip Operating Timing and Current Consumption in Duty Cycle Mode
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Datei
qaxe_flash_stm32L.txt
0x800a700 erased (size: 0x100) -> Flash page at 0x800a800 erased (size: 0x100) -> Flash page at 0x800a900 erased (size: 0x100) -> Flash page at 0x800aa00 erased (size: 0x100) -> Flash page at 0x800ab00 erased (size: 0x100) -> Flash page at 0x800ac00 erased (size: 0x100) -> Flash page at 0x800ad00 erased
in „10W Bitcoin miner mit 450GH/s für Raspberry Pi“ · Projekte & Code ·
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PDF
tps65136.pdf
= 100 mA 200 M2 MOSFET on-resistance sw = 100 mA 400 rDS(on) mΩ M3 MOSFET on-resistance sw = 100 mA 900 M4 MOSFET on-resistance I = 100 mA 600 sw SW Switch current limit (M2) Vin 3.7 V 620 700 940 mA Vin 2.5 V 720 830 1120 P Output power V – V ≤ 10 V; V = 2.9 V 750 mW out pos neg in s Switching frequency
in „OLED Sammelbestellung“ · Markt ·
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PDF
TPS_Datasheet.pdf
300, 6.8 685 A(1800) T(1800) B(600,1200) B(600,1000) C(500,600,700) D(150,400,500) 500,600) C(700) A(900,1800) B(500,800), C(500) B(500,1000) A(1500) (M) D(125,300) 10 106 R(3000) R(1000,1500,3000) P(2000) T(800,1000) C(500,700) C(300,500) E(200), Y(250) E(400,500) T(1000,2000) W(500,600) W(500) A(1000
in „Was für besondere Kondensatoren sind das??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX4508-MAX4509.pdf
1000 o 1100 o 600 o 0 900 / 1000 V+ = +9V / V+ = +15V / V+ = +4.5V 4 5 V- = -15V 5 8 800 V- = -4.5V A 900 A 500 A M M +125°C M / 700 800 +85°C M V+ = +10V 700 V+ = +12V 400 ) 600 V- = -10V ) V+ = +15V ) A ( V+ = +15V ( 600 ( O500 O V+ = +20V O300 +70°C R V- = -15V R 500 R X 400 V+ = +30V +25°C 400 200
in „Messsystem mit PhotoMOS“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
vishayHVTantal.pdf
1.125 0.600 XTV397*018P0A 560 15 12 1.5 165 227 330 20 - 85 + 20 + 35 50 550 1.125 0.600 XTV567*018P0A 900 15 12 1.5 165 227 330 20 - 85 + 20 + 35 68 694 1.125 1.100 XTV907*018P0A 1800 15 12 1.5 165 227 330 20 - 85 + 20 + 35 82 694 1.125 1.100 XTV188*018P0A 20 WVDC AT + 85 °C 28 17.5 13 10.0 30 45 60 85
in „Tantal für 400V“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
channel_scan_raw.txt
1 C11 29 1807868252 00 1946107301 00DC 1B 2 15 73104619 72819005 801100624050B50000053700000000D16A900D43 0D43 1 Listening CH30 and 70 Listening CH31 and 71 Listening CH32 and 72 Listening CH33 and 73 Listening CH34 and 74 Listening CH35 and 75 C11 35 2120634976 00 1946107301 0058 0B 0 15 73104619 72819005
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·