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Application_Note__HVAC__rev1.1.pdf
100~120Hz operation as 50~60Hz input AC source • Power quality is poor. THD is 40~50% at 220Vac 160mA 160mA 50mA 20mA 20mA 20mA 3V Vdc 200V 340VVdc 200V 340V Vdc [ (1) IV curve / Single LED ] [ (2) Multi Chip IV ] [(3) Resistor add IV ] Current dc Vdc 160mA 340V 200V 50mA 20mA Time AC 240V 60Hz Voltage
in „Samsung Hochvolt AC LED Erfahrungen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lmc6001.pdf
Parameter Typical Units LMC6001AI LMC6001BI LMC6001CI S Supply Current V = 5V, V O 1.5V 450 750 750 750 900 900 900 μA + max V = 15V, V O 7.5V 550 850 850 850 950 950 950 AC Electrical Characteristics Limits in standard typeface ensured for T J 25°C and limits in boldface type apply at the temperature extremes
in „Selbstbau Picoamperemeter.“ · Analoge Elektronik und Schaltungstechnik ·
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Kompass_HMC6343.pdf
protocol sent by the master, and the slave device (HMC6343). Note that angular outputs are in tenths of a degree (0-3600 heading, ±0-900 tilt). After the master device sends the 7-bit slave address, the 1-bit Read/Write, and gets the 1-bit slave device acknowledge bit returned; the next one to three sent
in „I2C + Honeywell HMC6343 3-Achs Sensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Transistor_Dual_PushPull_ZXTC2045E6.pdf
0.10 0.05 T A A2 1.00 1.30 1.10 M E1 E A3 0.70 0.80 0.75 R b 0.35 0.50 0.38 c 0.10 0.20 0.15 O D 2.90 3.10 3.00 F e - - 0.95 N e1 - - 1.90 I b E 2.70 3.00 2.80 E a1 E1 1.50 1.70 1.60 C e1 L 0.35 0.55 0.40 N a - - 8° A a1 - - 7° V All Dimensions in mm D A2 A1 A A3 Seating Plane a L e c Suggested Pad Layout Please see AP02001 at http://www.diodes.com/datasheets/ap02001.pdf for the latest version. C1 Dimensions Value
in „Push/Pull in spannungsgeregelter Stromquelle / Frage zur Auslegung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UCN5804.pdf
/DRIVER S 5 TYPICAL INPUT CIRCUIT T A R = 6.0°C/W W θJT VDD I 4 O T A I IN S D 3 R E W SUFFIX 'B', = 43°C/W O θJA P 2 G A K Dwg. EP-010-5 A P 1 E B SUFFIX 'LBθJA= 63°C/W A W TYPICAL OUTPUT DRIVER O 0 L 25 50 75 100 125 150 A TEMPERATURE
in „Welchen einfachen Schrittmotortreiber?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ucn5804b.pdf
/DRIVER S 5 TYPICAL INPUT CIRCUIT T A R = 6.0°C/W W θJT VDD I 4 O T A I IN S D 3 R E W SUFFIX 'B', = 43°C/W O θJA P 2 G A K Dwg. EP-010-5 A P 1 E B SUFFIX 'LBθJA= 63°C/W A W TYPICAL OUTPUT DRIVER O 0 L 25 50 75 100 125 150 A TEMPERATURE
in „Schrittmotoren ansteuern mit UCN5804b“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UCN5804B.pdf
/DRIVER S 5 TYPICAL INPUT CIRCUIT T A R = 6.0°C/W W θJT VDD I 4 O T A I IN S D 3 R E W SUFFIX 'B', = 43°C/W O θJA P 2 G A K Dwg. EP-010-5 A P 1 E B SUFFIX 'LBθJA= 63°C/W A W TYPICAL OUTPUT DRIVER O 0 L 25 50 75 100 125 150 A TEMPERATURE
in „Schrittmotor mit AT90S4433“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Microwave_Oven_Inverter_HV_Power_Supply.pdf
circuit does with this information. 4. The mains filter capacitor (C702) is very small – only 4uF. In a “normal” switching supply, there is usually 220 or 470 uF in this position. 5. Q701 that does all the hard work is a very heavy duty IGBT – a GT60N90 - 900V @ 60 A. Q702 forms some sort of flywheel circuit
in „Mikrowelle mit weniger als 700 (Nenn-)Watt gesucht__Wieviel gemessene Watt benötigt Eure Mikrowelle?“ · Haus & Smart Home ·
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PDF
XBSM6T_DATA_E.pdf
37.1 39 41.0 1 53.9 11.1 69.7 57 10.0 900 (6) SM6T39AY 0.5 1 33.3 37.1 39 41.0 1 53.9 11.1 69.7 57 10.0 900 SM6T68A/CA 0.5 1 58.1 64.6 68 71.4 1 92 6.5 121 33 10.4 625 SM6T75A/CA 0.5 1 64.1 71.3 75 78.8 1 103 5.8 134 30 10.5 575 SM6T100A/CA
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1808131746_Diodes-Incorporated-DMN5L06VAK-7_C260916.pdf
Channel Temperature vs. Drain Current 10 TA= 25°C Pulsed E E C R U ( U ( O E O C - N - N I A I AT A S A I D = 280mA D S D S C E C E T R T R A T T T S A S T ) S ,n - ( N ( N D O D O R R 1 ID, DRAIN CURRENT (A) VGS,GATE SOURCE VOLTAGE (V) Fig. 5 Static Drain-Source On-Resistance Fig. 6 Static
in „Suche N Mos Dual in SOT563“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Relay-driver_DRDNB21D.pdf
F 1.0 F = 100mA 1.25 F = 150mA 2.5 µA VR= 75V 50 µA VR= 75V, TJ= 150°C Reverse Current (Note 7) IR 30 µA V = 25V, T = 150°C 25 R J nA VR= 20V Total Capacitance CT 4.0 pF VR= 0, f = 1.0MHz Reverse Recovery Time
in „Jalousie Steuerung mit Kleinspannung+ESP32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
FFT_Projekt.ino
binary.h" LiquidCrystal_I2C lcd(0x27, 16, 2); LedControl lc=LedControl(12,11,10,1); const int MIC_PIN = A0; const unsigned short SAMPLES = 128; const double SAMPLING_FREQ = 4096; const unsigned short FREQ_SAMPLE_AMOUNT = 5; double noise_reject_limit = 550; double mic_value = 0; double avg_freq = 0; double
in „Arduino Frequenzerkennung scheitert an Einbindung einer DOT Matrix“ · Mikrocontroller und Digitale Elektronik ·
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TSL237-E21.pdf
Operation . . . 2.7 V to 5.5 V ▯ Stable 200 ppm/⋅C Temperature Coefficient ▯ Interfaces Directly to a Microcontroller 1 2 3 GND V DD OUT Description The TSL237 light-to-frequency converter combines a silicon photodiode and a current-to-frequency converter on a single monolithic CMOS integrated circuit
in „Frequenzzähler + digitales Filter mit pic10“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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tps3847.pdf
POWER SUPPLY V(VCC) Input supply voltage range 4.5 18 V V Minimum V (VCC)voltage for valid I = 1 µA, V = 400 mV 0.8 V VO output(1) OL OL TJ= 25°C, V (VCC)= 18 V 380 nA I Supply current (into VCC pin) Output not T = 25°C 750 nA (VCC) connected J –40°C ≤ TJ≤ +85°C 900 nA MONITORED THRESHOLD Negative
in „Spannungsüberwachung 12V ohne uC“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
light_ws2812.c
clockless WS2811/2812 protocol. */ // Timing in ns #define w_zeropulse 350 //350 #define w_onepulse 900 //900 #define w_totalperiod 1250 //1250 // Fixed cycles used by the inner loop #define w_fixedlow 2 #define w_fixedhigh 4 #define w_fixedtotal 8 // Insert NOPs to match the timing, if possible #define
in „ws2812 mit atmega32“ · Mikrocontroller und Digitale Elektronik ·
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JWCO_KM_Serie_Elko.pdf
靜電容量範圍 Capacitance Tolerance 靜電容量允許偏差 ±20%(120Hz,+20℃) ±20%(120Hz,+20℃) Leakage Current LC≤0.01CV or 3(μA) Which is greater.(After 2 minutes applicationLC≤0.03CV+10 or 3(μA) after 2 minutes application of DC rated voltage at +20 漏電流 rated voltage at +20 ℃) ℃ Working Voltage(v) 6.3 10 16 25 35 50 63 100 tan
in „SonOff S20 Leben, wirken und widerbelebung. :-)“ · Haus & Smart Home ·
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5484BN-BADC-AGJA-XR-MS_v3.pdf
Electro-Optical Characteristics (Ta=25℃) Parameter Symbol Min. Typ. Max. Unit Condition Iv mcd I =20mA Luminous Intensity 720 ----- 1450 F Viewing Angle 2θ1/2 ----- X:110 Y:40 ----- deg IF=20mA Peak Wavelength λp ----- 468 ----- nm IF=20mA λd 465 ----- 475 nm I =20mA Dominant Wavelength F Spectrum Radiation Bandwidth Δλ ----- 26 ----- nm IF=20mA Forward Voltage VF 2.8 3.2 3.6 V IF=20mA I μA V =5V Reverse Current R ----- ----- 50 R Bin Range of Luminous Intensity Bin Code Min. Max. Unit Condition G2 720 860 H1 860 1030 mcd F =20mA H2 1030 1210
in „Led-Multiplexing Problem mit Strom“ · Analoge Elektronik und Schaltungstechnik ·
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AD8307.pdf
14.3 dB, with a −3 dB bandwidth of 900 MHz. The input stability, very high dynamic range, and a frequency range is fully differential and at a moderately high impedance (1.1 kΩ encompassing audio through IF to UHF makes
in „logarithmic detector“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Read_Save_CMU_Config_Experiments.txt
cat ./CMU/TABLES/GETTAB.SCR ============================ ; get EEPROM tables from all boards eep_e2a auc auc\eep_auc.asc eep_e2a auc -idx1 auc\eep_auc2.asc eep_e2a adc adc\eep_adc.asc eep_e2a adc -idx1 adc\eep_adc2.asc eep_e2a fe fe\eep_fe.asc eep_e2a rxtx rxtx\eep_rxtx.asc eep_e2a rxtx -idx1 rxtx\rxtx2.asc eep_e2a cor cor\eep_cor.asc eep_e2a cor -idx1 cor\eep_cor2.asc eep_e2a ref ref\eep_ref.asc eep_e2a dig dig\eep_dig.asc eep_e2a iqif iqif\iqif.asc >find . -name \*.ASC ./CMU/TABLES/REF/EEP_REF.ASC ./CMU/TABLES
in „Option B41 bei einer CMU200 nachrüsten.“ · HF, Funk und Felder ·
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MCP73837.pdf
Temp = +25°C ) 108 VDD= 5.2V A1100 A 106 (1050 ( 104 t n e1000 e 102 u 950 u 100 C 900 C 98 g g a 850 a 96 h 800 C 94 C 750 92 700 90 4.5 4.8 5.0 5.3 5.5 5.8 6.0 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 Supply Voltage (V) Ambient
in „Verständnissfrage - MCP73837“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LAN9354_Fail_Report_2022-03-17_14-03-19.pdf
Std. 802.3ae Specification Model: 1130A Serial: US49490597 Probe (Channel 1) Head: E2678A/B Atten: Not Calibrated, Using Default Atten (1.0000E+01) Skew: Not Calibrated, Using Default Skew Model: User Defined Probe
in „Ethernet Compliance Test failLAN9354“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CD00003634_HSS.pdf
Electrical specifications Figure 13. I vs T Figure 14. On-state resistance vs V LIM case CC Ilim (A) Ron (mOhm) 1 1000 0.9 900 Vcc=13V Iout=0.25A 0.8 800 0.7 700 0.6 600 Tc= 150°C 0.5 500 0.4 400 0.3 300 Tc= 25°C 0.2 Tc= -40°C 200 0.1 100 0 0 -50 -25 0 25 50 75 100 125 150 175 5 10 15 20 25 30 35 40
in „POWER SSO 12 Kriechstrecken“ · Mikrocontroller und Digitale Elektronik ·
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rd15hvf1-1.pdf
PARAMETER CONDITIONS LIMITS UNIT MIN TYP MAX. DSS Zero gate voltage drain currVDS=17V, VGS=0V - - 100 uA GSS Gate to source leak current VGS=10V, VDS=0V - - 1 uA VTH Gate threshold Voltage VDS=12V, DS=1mA 1.5 2.0 2.5 V Pout1 Output power VDD=12.5V, Pin=0.6W, 15 18 - W Drain efficiency f=175MHz,Idq=0.5A 55 60 - % ηD1 Pout2 Output power VDD=12.5V, Pin=3W, 15 18 - W ηD2 Drain efficiency f=520MHz,Idq=0.5A 50 55 - % Load VSWR tolerance VDD=15.2V,Po=15W(PinControl) No destroy - f=175MHz,Idq=0.5A,Zg=5Ω Load VSWR=20:1(All Phase) Load VSWR tolerance VDD=15.2V,Po=15W(PinControl) No destroy - f=520MHz,Idq=0.5A
in „RD15HVF1 Fake oder nicht Fake das ist hier die Frage ;)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADNS-3090_DS_S_V1.0_20130514144306.pdf
▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯E^ͲϯϬϵϬ▯▯,ŝŐŚͲWĞƌĨŽƌŵĂŶĐĞ▯KƉƚŝĐĂů▯DŽƵƐĞ▯^ĞŶƐŽƌ FrameCapture This is a fast way to download a full array of pixel values To read a single frame, read a total of 900 bytes.The next from a single frame. This mode disables navigation and 636 bytes will be approximately 2/3
in „STM32F4: SPI: MISO Flanken zeigen komisches Verhalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADNS-3090_DS_S_V1.0_20130514144306.pdf
▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯▯E^ͲϯϬϵϬ▯▯,ŝŐŚͲWĞƌĨŽƌŵĂŶĐĞ▯KƉƚŝĐĂů▯DŽƵƐĞ▯^ĞŶƐŽƌ FrameCapture This is a fast way to download a full array of pixel values To read a single frame, read a total of 900 bytes.The next from a single frame. This mode disables navigation and 636 bytes will be approximately 2/3
in „STM32F4: Datenübertragung extrem langsam“ · Mikrocontroller und Digitale Elektronik ·
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PDF
omnivision_man_lp06xx_rev0_0611.pdf
components. Electrical The power requirement for any of the units in the family is +12 volts DC with a maximum current of 1.25 amps; however, the typical current drain will be about 900 milliamps. Power can be supplied through the 10-pin edge connector or through an optional power input connector. Signals
in „[S] BU806 - Darlington Schalttransistor für Zeilenendstufe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Big_Motor1.pdf
load factor I T J = 1/4 Weight level L N N 2 2 PA kW Motor type Product code r/min 100% 75% 50% Cos A S /N Nm TITN Tb/TN GD kgm kg dB 3000 r/min = 2 poles 400 V 50 Hz CENELEC-design 0.37 M3BP 71 MA 2 2768 74.8 74.7 71.0 0.78 0.91 4.5 1.27 2.2 2.3 0.000390 11 58 0.55 M3BP 71 MB 2 2813 77.8 78.3 76.0 0.79
in „Drehmoment beim Drehstrommotor im Anlauf berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Weidezaun_S04_ELV50.pdf
D4x10mm VR37 3357799 Farnell Vishay 9 w C2 0 2 D9 P 20MA9903 32V-10V 2ADO35 Bü10SPri0C Sek155/94Vac 0,5mA0k 470k m nc0,22u 63V 10n 2 4 5 e 800Wdg 32mH ZY200 JP1 Diac ER900 32V-10V 2ADO35 Bü24S2960 ST.com 2x 470k 350V RI40 high voltage resistor Glas 2W 2000V 3000Vmax D5,8x15mm 2,24€/10 4 C3 6 S 200:1000 Ü=1:5 80s R8 ER900 2 H1 Glimmlampe 0,24€ 0,5mA Zünd 94VAC Brenn 55 VAC, 390 kOhm D4,0x10,5mm 33G652 Buerklin.com 2 C9 16/75mARM15/17,5x5 83D796+83D780+83D800 <t 20M D10 R9 1k 3 *THR1 D6 Neon Bulb 4x10mm1,79€/25 G BL1
in „Weidezaun gegen Schnecken mit Netztrafo und Rohr DN160 für Hobbygärtner“ · Projekte & Code ·
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PDF
pd4c-usb-kurzanleitung.pdf
49 89 900 686-50 beschädigen. • PD4-C5918M4204-E: 38,1±0,025 85622 Feldkirchen, Deutschland info@nanotec.de • Verbauen Sie geeignete Schaltungen (z.B. Stützkondensator), Falls der Sicherungswert sehr nahe an
in „Jumperkabel mit grösserer Litze verbinden (Schrittmotor/Arduino)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pd4c-usb-kurzanleitung.pdf
49 89 900 686-50 beschädigen. • PD4-C5918M4204-E: 38,1±0,025 85622 Feldkirchen, Deutschland info@nanotec.de • Verbauen Sie geeignete Schaltungen (z.B. Stützkondensator), Falls der Sicherungswert sehr nahe an
in „Mit 100mA elektromagnetisches Ventil ansteuern ausreichend?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZXRE330.pdf
= 5mA ±20 — — R ΔVR/ΔT Average Reverse Breakdown Voltage IR= 100µA -40 to +85°C ±15 ±150 ppm/°C Temperature Coefficient IR= 10µA ±15 — — 25°C 0.2 — 2uA <IR< 100uA -40 to +85°C — 0.6 ΔV R Reverse Breakdown Change With Current mV 25°C 10 — 100uA < R < 5mA -40 to +85°C — 20 RMIN Minimal Operating Current — 1 2 µA ZR Dynamic Output Impedance IR= 2mA, f = 120Hz,AC= 0.1R 2 — Ω I = 100µA en Noise Voltage R 55 — µVRMS 10Hz < f < 10kHz VR Long Term
in „Spannungsreferenz 3,3v gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
45890.pdf
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
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
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
in „Frequenzgenerator für 200V Vss“ · Mikrocontroller und Digitale Elektronik ·
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PDF
op-amp_bootstrapping__high_output_voltage_.pdf
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
in „Hochspannungs OPV Fehler/Vorschlag?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Read_Save_CMU_Config_Experiments.txt
cat ./CMU/TABLES/GETTAB.SCR ============================ ; get EEPROM tables from all boards eep_e2a auc auc\eep_auc.asc eep_e2a auc -idx1 auc\eep_auc2.asc eep_e2a adc adc\eep_adc.asc eep_e2a adc -idx1 adc\eep_adc2.asc eep_e2a fe fe\eep_fe.asc eep_e2a rxtx rxtx\eep_rxtx.asc eep_e2a rxtx -idx1 rxtx\rxtx2.asc eep_e2a cor cor\eep_cor.asc eep_e2a cor -idx1 cor\eep_cor2.asc eep_e2a ref ref\eep_ref.asc eep_e2a dig dig\eep_dig.asc eep_e2a iqif iqif\iqif.asc >find . -name \*.ASC ./CMU/TABLES/REF/EEP_REF.ASC ./CMU/TABLES
in „Option B41 bei einer CMU200 nachrüsten.“ · HF, Funk und Felder ·
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PDF
Bours_0603.pdf
Reproductive Harm www.P65Warnings.ca.gov *RoHS Directive 2015/863, Mar 31, 2015 and Annex. **Bourns considers a product to be “halogen free” if (a) the Bromine (Br) content is 900 ppm or less; (b) the Chlorine (Cl) content is 900 ppm or less; and (c) the total Bromine (Br) and Chlorine (Cl) content is 1500 ppm
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PDF
bc557.pdf
BC558 – 2.0 10 Small–Signal Current Gain hfe – (C = –2.0 mAdc, CE = 5.0 V, f = 1.0 kHzBC557 125 – 900 A Series Device 125 – 260 B Series Devices 240 – 500 C Series Devices 450 – 900 Note 1:CI = –10 mAdc on the constant base current characteristics, which yieCds the point CE== –1.0 V., V http://onsemi.com
in „bc557 kennlinie im datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DMP10H400SEQ-838150.pdf
4. Typical Transfer Characteristic and Gate Voltage 0.5 2.1 Ω C ( VGS-10V 150℃ N 1.9 C A N 0.4 125℃ S VGS-10V, ID=-5.0A A S 1.7 S E S 85℃ - ) E N E 1.5 - 0.3 O I N C L O 25℃ R M 1.3 C U R R 0.2 S O 1.1 VGS-4.5V, D =-5.0A U N ( S A N -55℃ R 0.9 A 0.1 , R N D S 0.7 ) D ( R 0.5 D 0 R -50 -25
in „Externe Festplatte durch falsches Netzteil zerstört“ · PC Hard- und Software ·
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PDF
Osram_LW_P4SG.pdf
Type Color of Luminous Luminous 1) page 18 2) page 18 Emission Intensity Flux Ordering Code IF = 20 mA IF = 20 mA IV (mcd) Φ V (mlm) !LW P4SG-V2AB-5K8L-1 white 900 ...1800 4050 (typ.) Q65110A6933 top mount !LW P4SG-V2AB-5K8L-1 white 900 ...1800 4050 (typ.) Q65110A6932 reverse mount !Abgekündigt nach OS-PD
in „Conrad 181801 - LED-Leiste mit NiMH Akkus betreiben“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STM.pdf
15 M54/M74HC299/323 Plastic DIP20 (0.25) MECHANICAL DATA mm inch DIM. MIN. TYP. MAX. MIN. TYP. MAX. a1 0.254 0.010 B 1.39 1.65 0.055 0.065 b 0.45 0.018 b1 0.25 0.010 D 25.4 1.000 E 8.5 0.335 e 2.54 0.100 e3 22.86 0.900 F 7.1 0.280 I 3.93 0.155 L 3.3 0.130 Z 1.34 0.053 P001J 11/15 M54/M74HC299/323 Ceramic DIP20 MECHANICAL DATA mm inch DIM. MIN. TYP. MAX. MIN. TYP. MAX. A 25 0.984 B 7.8 0.307 D 3.3 0.130 E 0.5 1.78 0.020 0.070 e3 22.86 0.900 F 2.29 2.79 0.090 0.110 G 0.4 0.55 0.016 0.022 I 1.27 1.52 0.050 0.060 L 0.22 0.31 0.009 0.012 M 0.51 1.27 0.020 0.050 N1 4° (min
in „74HC299 8-bit PIPO Shift Register“ · Mikrocontroller und Digitale Elektronik ·
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PMT_handbook_v4E.pdf
A ( ) 10 Y % I ( I C S N N I S F T F 1 BIALKALI N E PHOTOCATHODE I U A T R A D U O Q 0.1 H A C CATHODE RADIANT SENSITIVITY QUANTUMEFFICIENCY 0 200 300 400 500 600 700 800 900 1000 WAVELENGTH (nm) THBV4
in „Suche nach geeignetem OpAmp als Impedanzwandler“ · Analoge Elektronik und Schaltungstechnik ·
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Diff_Ampl_AD8476-877860.pdf
kHz 39 39 nV/√Hz GAIN 1 1 V/V Gain Error RL= ∞ 0.02 0.04 % Gain Drift −40°C ≤ T ≤ +125°C 1 1 ppm/°C A Gain Nonlinearity VOUT= 4 V p-p 5 5 ppm OFFSET AND CMRR 2 Differential Offset 50 200 50 500 µV vs. Temperature −40°C ≤ TA≤ +125°C 900 900 µV Average TC −40°C ≤ TA≤ +125°C 1 4 1 4 µV/°C vs. Power Supply
in „5V Differentielles Signal erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
hope.c
der Kabelwiderstände Rka und Rki ------------------------------------------------*/ /* Rka -------*/ a=1-(((Vml/Vms2)-1)/((Vml/Vms1)-1)); b=((Vml/Vms2)-1)*((1/(Rsa*((Vml/Vms1)-1)))-(1/Rsi)); c=((Rma*Rsa*((Vml/Vms2)-1))-Rsi*Rsa-Rsi*Rma)/(Rsi*Rma*Rsa); t=b+c; Rka=a/t; /* Rki -------*/ e=(Rsa*Rma)/(Rsa+Rma
in „Atmega88 region text overflowed by 156 bytes“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bourns-PTC-MF-R.pdf
Resettable Fuses Product Dimensions (see previous page for dimensions) Style 1 Style 2 Style 3 Style 4 A E A E A E A E B B B B D C D D D C C C NOTE: Kinked lead option is NOTE:Also available with available for board standoff. straight leads. Contact Contact factory for details. factory for details. Thermal
in „Batteriehalter mit unbekannten Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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Screenshot eines Onlineshops für ein LED-Netzteil
Produkte suchen... Ausgangsspannung, DC: 6-42V Leistung: 10W Eingangsspannung: 230V Strom: wählbar 180mA; 200mA; 250mA; 300mA; 350mA; 400mA; 450mA; 500mA; 600mA; 700mA; 900mA; 1000mA; 1050mA; 1200mA; 1400mA; 1500mA Schutzart: IP20 Dimmbar: JA, 0/1-10V; DALI; TRIAC
in „Suche geeigntes Netzteil für 3x LED-Downlights Konstanstrom 250mA“ · Haus & Smart Home · · Screenshots
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Diagramm der DC-Strommessung
DC-Strommessung 900,00mA 800,00mA 700,00mA 600,00mA 500,00mA 400,00mA 300,00mA 200,00mA 100,00mA 0,00mA 1 2 3 4 5 6 7 M-4630 M-3650B
in „Altes Multimeter M-3650B, ein Traum!“ · Analoge Elektronik und Schaltungstechnik · · Diagramme
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Oszilloskop-Messung eines Stromverlaufs
Basisschaltung_vorb.raw Ic(Q1) Ib(Q1) 10.945µA 10.940µA 10.935µA 10.930µA 10.925µA 10.920µA 10.915µA 10.910µA 10.905µA 10.900µA 10.895µA 10.890µA 0ms 3ms 6ms 9ms 12ms 15ms 18ms 21ms 24ms 27ms 30ms 33ms
in „Dimensionierung Basisschaltung“ · Analoge Elektronik und Schaltungstechnik · · Oszi-Bilder
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Datei
logfile.txt
1947 cfi_probe(): Could not probe bank Error: flash.c:219 get_flash_bank_by_num(): auto_probe failed -900 Info: options.c:50 configuration_output_handler(): flash bank '#0' is out of bounds Info: jtag.c:1389 jtag_examine_chain(): JTAG device found: 0x1f0f0f0f (Manufacturer: 0x787, Part: 0xf0f0, Version:
in „OpenOCD und Olimex Board SAM7-LA2“ · Mikrocontroller und Digitale Elektronik ·
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hoka.pdf
Xplore. Restrictions apply. LEM 25/10wwa l shunt PEM CWT 15 -100 0 100 200 300 400 500 600 700 800 900 1000 time (ns) Relabveerrorsi=n(IsH-1,)/(20A). andfiltered with low-MHzsat 50 1 ° 7 ’ ’ ’ ’ ’ I Fig.IO. Current probe prototype 1-0- I I , putation of the relative error the output signal of a specific 0 100 200 300 400 500 600 700 800 900 1000 timet(ns) probe was chosen. Fig. 12. Current probe comparison,trailing edge2.5 kA/ps D. Measurements current measuring principle. Two different current measurement setups have been used. One is
in „100kHz Signal analog einlesen (16bit) und verarbeiten“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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MOSFET_N_Dual_DMT3020LSD_LowRDS_SOIC8.pdf
1.Typical Output Characteristic Figure 2. Typical Transfer Characteristic E C ) N ) 0.03 Ω 0.1 ( E A C C V N0.025 N D A V = 4.5V T 0.08 I GS I A S E E 0.02 R I = 7.0A - N 0.06 D O O E0.015 VGS= 10V E C R ID= 9.0A U U 0.04 O O - 0.01 - I I A R 0.02 D0.005 D ,) N ( S D D 0 R 0 R 0 2 4 6 8 10 12 14 16
in „Unerwünschter Peak beim Ausschalten eines Kleinsignal-MOSFET“ · Analoge Elektronik und Schaltungstechnik ·