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Read_Save_CMU_Config_Experiments.txt
AUX1: 0.00 AUX2: 0.00 AUX3: 0.00 #================================================= # ID min. (V) max. (V) FMDV (V) act #================================================= 1: 1 4.700 5.200 4.972 2 2: 1 4.700 5.200 4.973 130 3: 2 -5.200 -4.650 -4.876 2 4: 2 -5.200 -4.650 -4.876 130 5: 3 -5.200 -4.700
in „Option B41 bei einer CMU200 nachrüsten.“ · HF, Funk und Felder ·
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LT1302_2Cells_to_5V_600mA.pdf
............N8 PACKAGE S8 PACKAGE LT1302CS8-5 MaximumPower Dissipation............................ 700mW 8-LEAD PDIP 8-LEAD PLASTIC SO *FIXED VERSION S8 PART MARKING Operating Temperature Range.................... 0°C to 70°C PINS 1 AND 8 ARE INTERNALLY Storage Temperature Range............... –65°C
in „Welcher DC-DC-Converter“ · Mikrocontroller und Digitale Elektronik ·
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lt1153.pdf
A 25°C, C =T0.1 F, V SD = 0V unless otherwise noted. LTC1153C SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS V Supply Voltage 4.5 18 V S IQ Quiescent Current OFF VS= 5V, VIN 0V 8 20 A IQ Quiescent Current ON VS= 5V, VIN 5V 85 120 A IQ Quiescent Current ON VS=12V, VIN 5V 180 400 A V INH Input High Voltage
in „TPS61175 Overccurent Protection Mode“ · Analoge Elektronik und Schaltungstechnik ·
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lt1302-1605370.pdf
............N8 PACKAGE S8 PACKAGE LT1302CS8-5 MaximumPower Dissipation............................ 700mW 8-LEAD PDIP 8-LEAD PLASTIC SO *FIXED VERSION S8 PART MARKING Operating Temperature Range.................... 0°C to 70°C PINS 1 AND 8 ARE INTERNALLY Storage Temperature Range............... –65°C
in „[V] Konvolut (16) ältere LinearTech StepUps LT1302, 1305, SO8 (10€)“ · Markt ·
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PDF
lt1302.pdf
............N8 PACKAGE S8 PACKAGE LT1302CS8-5 MaximumPower Dissipation............................ 700mW 8-LEAD PDIP 8-LEAD PLASTIC SO *FIXED VERSION S8 PART MARKING Operating Temperature Range.................... 0°C to 70°C PINS 1 AND 8 ARE INTERNALLY Storage Temperature Range............... –65°C
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
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LIFEPO4_18650FPZ_DB.pdf
Conditions 0.05$▯" at 3.65V V2.2 Weight ğ"QQSPY▯▯▯H 12C (88.4%) 2.0 Internal 1.8 Resistance ğ▯▯NΩ max. at 1000Hz 1.6 Charging Voltage ğ▯▯▯▯ ▯▯▯▯7 0 200 400 600 800 1000 1200 Ambient ğCharging ğ▯▯▯ j▯▯▯ ¥ Temperature Capacity / mAh Range Discharging ğ▯▯▯ j▯▯▯ ¥ Storage ğ▯▯ j▯▯▯ ¥ 3.Battery drawing 18.2
in „Fest integrierte Balancer Schaltung mit Tiefentladeschutz“ · Analoge Elektronik und Schaltungstechnik ·
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16389fg.pdf
CM = VOUT= half supply, unless otherwise noted. (Note 4) LT1638C/LT1639C, LT1638I/LT1639I MIN TYP MAX SYMBOL PARAMETER CONDITIONS UNITS V Input Offset Voltage LT1638 N, S Packages 200 600 μV OS 0°C ≤ T ≤ 70°C l 850 μV –40°C ≤ T ≤ 85°C l 950 μV A LT1639 N, S Packages 300 700 μV 0°C ≤ A≤ 70°C l 950 μV
in „Alternative gesucht zu OpAmp“ · Analoge Elektronik und Schaltungstechnik ·
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DS1337-DS1337C.pdf
(VCC = 1.8V to 5.5V, TA= -40°C to +85°C.) (Note 1) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Input Leakage ILI (Note 2) -1 +1 µA I/O Leakage LO (Note 3) -1 +1 µA Logic 0 Output (VOL = 0.4V) OL (Note 3) 3 mA Active Supply Current I (Note 4) 150 µA CCA Standby Current ICCS (Notes 5, 6)
in „Aufwecken mit Low-Level“ · Mikrocontroller und Digitale Elektronik ·
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TechNotes_V3.1_Mini-ITX_D3003-S.pdf
Requirements for 19-24V operation Requirements for 19-24V operation Nominal operating range 19 - 24V Max. operating range (19V -15%) - (24V +10%) Ripple / noise max. 400mV (PP) Max. input current: 5A The DC power supply input provides a capacitive load of 700µF which has to be covered by the AC adapter
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LED_white.pdf
上述发光强度的测试允许公差为±10% Electrical / Optical Characteristics at Ta=25° C 电性与光学特性 Parameter(参数) Symbol Min. Typ. Max. Units Test Conditions (符号) (最小) (平均) (最大) (单位) 测试条件 Forward Voltage 正向电压 VF 2.8 - - 3.4 V F=20mA Reverse Current IR - - - - 10 μA VR = 5V 反向电流 X - - 0.3045 - - - - F=20mA Color Coordinates 色度坐标 Y -
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74C00_FairchildSemiconductor.pdf
Characteristics” provides 4 Power Dissipation (PD) conditions for actual device operation. 7 M Dual-In-Line 700 mW Small Outline 500 mW M • 0 0 DC Electrical Characteristics C 4 Min/Max limits apply across the guaranteed temperature range unless otherwise noted 7 M Symbol Parameter Conditions Min Typ Max Units
in „Oszi v. SUN Motortester zeigt nur kurz einen Punkt.“ · Analoge Elektronik und Schaltungstechnik ·
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048_Relaisschaltungen_fuer_Bastler.pdf
110 1250 3 4 111 110 1250 6 5 IV 110 1250 8 7 V 1900 5000 9 10 4.2. Flachrelais 48 Technische Daten max. Spulenbelastung 5 W max. Spannung der Kontaktfedern gegeneinander 100 V bzw. 200V Anspreehzeit 8 bis 60 ms Abfallzeit 8 bis 250 ms 4.3. Mittleres Rundrelais Technische Daten max. Spulenbelastung f,
in „Bistabilen Zustand mit einem Taster (12v dc)“ · Analoge Elektronik und Schaltungstechnik ·
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PCF7922ATT.pdf
dBm RL ~ 700 ACON = “1111”, PAM = ‘00’ RL ~ 700 -11.5 -4 3 dBm ACON = “0000”, PAM = ‘10’ -45 dBm Power Amplifier, XEN = 1, TXON = 1 at 25°C, Note 4 2015 May 11 68 Confidential NXP Semiconductors Product Specification KEECART PCF7922ATT SYMBOL PARAMETER CONDITION MIN TYP MAX UNIT POUT Output power ACON = “1111”, PAM = ‘10’ f = 315 MHz, matched into 50 RL ~ 200 6.8 8.5 10.2 dBm TX RL ~ 700 2.7 4.0 5.1 dBm ACON = “1111”, PAM = ‘00’ RL ~ 700 -15 -7 1 dBm POUT Output
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irf540n.pdf
otherwise specified) J Parameter Min. Typ. Max. Units Conditions V(BR)DSS Drain-to-Source Breakdown Voltage 100 ––– ––– V VGS = 0V,DI = 250µA ∆V /∆T Breakdown Voltage Temp. Coefficient––– 0.12 ––– V/°C Reference to 25°C, I = 1mA (BR)DSSJ D RDS(on
in „Mosfet vor negativer Spannung / Wechselspannung schützen“ · Mikrocontroller und Digitale Elektronik ·
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IRL1004.pdf
W/°C VGS Gate-to-Source Voltage ± 16 V EAS Single Pulse Avalanche Energy 700 mJ AR Avalanche Current 78 A E Repetitive Avalanche Energy 20 mJ AR dv/dt Peak Diode Recovery dv/dt 5.0 V/ns TJ Operating Junction and -55 to + 175 T Storage Temperature Range STG °C Soldering Temperature
in „Mosfet als Schalter 100W“ · Analoge Elektronik und Schaltungstechnik ·
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FB180SA10.pdf
W/°C VGS Gate-to-Source Voltage ± 20 V EAS Single Pulse Avalanche Energy 700 mJ AR Avalanche Current 180 A EAR Repetitive Avalanche Energy 48 mJ dv/dt Peak Diode Recovery dv/dt 5.7 V/ns TJ Operating Junction and -55 to + 150 °C T Storage Temperature Range STG VISO Insulation
in „Strom bis 200A schalten mit Power MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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irfiz34n.pdf
from case ) Mounting torque, 6-32 or M3 screw 10 lbf in (1.1N m) Thermal Resistance Parameter Typ. Max. Units RθJC Junction-to-Case 4.1 °C/W RθJA Junction-to-Ambient 65 7/9/04 IRFIZ34N Electrical Characteristics @ T = 25°C (unless otherwise specified) J Parameter Min. Typ. Max. Units Conditions V(BR)
in „Mosfet Treiber Baustein“ · Analoge Elektronik und Schaltungstechnik ·
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IRL1004_IR.pdf
W/°C VGS Gate-to-Source Voltage ± 16 V EAS Single Pulse Avalanche Energy 700 mJ AR Avalanche Current 78 A E Repetitive Avalanche Energy 20 mJ AR dv/dt Peak Diode Recovery dv/dt 5.0 V/ns TJ Operating Junction and -55 to + 175 T Storage Temperature Range STG °C Soldering Temperature
in „Schon wieder: Verpolungsschutz-MOSFET und LogicLevel-FET gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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IRL1004_IR.pdf
W/°C VGS Gate-to-Source Voltage ± 16 V EAS Single Pulse Avalanche Energy 700 mJ AR Avalanche Current 78 A E Repetitive Avalanche Energy 20 mJ AR dv/dt Peak Diode Recovery dv/dt 5.0 V/ns TJ Operating Junction and -55 to + 175 T Storage Temperature Range STG °C Soldering Temperature
in „Schon wieder: Verpolungsschutz-MOSFET und LogicLevel-FET gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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LT3575.pdf
of several of these transformers. affect the input and output currents, making it hard to 14 14 14 MAX POUT MAXIMUM MAX POUT MAXIMUM MAXIMUM MAX POUT 12 OUTPUT 12 OUTPUT 12 OUTPUT 10:1 7:1 POWER 7:1 4:1 POWER POWER 2:1 ) 5:1 ) 3:1 ) ( 10 4:1 ( 10 5:1 ( 10 E E E 3:1 1:1 W 8 3:1 W 8 2:1 W 8 P P P U 6 2
in „LT3575 Simulation Problem Ausgangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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SensorMeasurements.m
100 73 55 49 45 47 47 42 43]*0.001; ampl = [fliplr(ampl(2:length(ampl))) ampl]; ampl = 20*log(ampl/max(ampl)); figure(2); plot(angle, ampl); grid on; xlabel('Angle / \circ'); ylabel('Attenuation / dB'); title('Attenuation over angle, -3dB at circa \pm15\circ'); figure(3); pp(angle/180*pi, ampl, [-60 0], 'ThetaStartAngle', 90); ylabel('Attenuation / dB'); dist = 0.3:0.1:1.8; dist_att = [1150 900 700 580 500 420 370 330 300 275 225 250 200 200 110 165]*0.001; dist_att = 20*log(dist_att/input_amp); figure(4); plot(dist, dist_att); grid on; xlabel('Distance / m'); ylabel('Attenuation / dB'); title
in „Ultraschallsensoren des HC-SR04 Moduls“ · Projekte & Code ·
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Datei
SensorMeasurements.m
100 73 55 49 45 47 47 42 43]*0.001; ampl = [fliplr(ampl(2:length(ampl))) ampl]; ampl = 20*log10(ampl/max(ampl)); figure(2); plot(angle, ampl); grid on; xlabel('Angle / \circ'); ylabel('Attenuation / dB'); title('Attenuation over angle, -3dB at circa \pm20\circ'); figure(3); pp(angle/180*pi, ampl, [-25 0], 'ThetaStartAngle', 90); ylabel('Attenuation / dB'); dist = 0.3:0.1:1.8; dist_att = [1150 900 700 580 500 420 370 330 300 275 225 250 200 200 110 165]*0.001; dist_att = 20*log10(dist_att/input_amp); figure(4); plot(dist, dist_att); grid on; xlabel('Distance / m'); ylabel('Attenuation / dB'); title
in „Ultraschallsensoren des HC-SR04 Moduls“ · Projekte & Code ·
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Datei
ultras.c
* 9d -> 200 * 10d -> 250 * 11d -> 300 * 12d -> 350 * 13d -> 400 * 14d -> 500 * 15d -> 600 * 16d -> 700 */ u8 us_setGain(u8 usaddr, u8 gain) { u8 ret = i2c_start(usaddr + I2C_WRITE); if (!ret) { ret = i2c_write(1); //register 1 is to write gain if (ret) { i2c_stop(); return US_STATE_ERROR; } ret = i2c_write
in „Bibliothek für Ultraschallsensoren SRF10 und SRF08“ · Projekte & Code ·
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PDF
vitrohm_series_bwf_-_201703.pdf
55 … +175 Thermal Resistance [KW ]1 140 80 Insulation Resistance 4 [MΩ] > 10 IEC60115-1 clause 4.6 Max. Working Voltage [V]RMS DielectricWithstanding Voltage [V] 700 1000 IEC115-1 clause4.7 (1[min]) RMS DIMENSIONS [mm] 3 1 2 o v Type Historical P/N: L ±0,2 Ø D ±0,2 Ø d ±0,02 R | BWF110 BWF237 - 0 9,9
in „Was für ein Bauteil ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APT1608QBC-D-65281.pdf
ELECTRICAL / OPTICAL CHARACTERISTICS at T =25°C A Value Parameter Symbol Emitting Color Unit Typ. Max. Wavelength at Peak Emission IF= 20mA Ȝpeak Blue 460 - nm Dominant WavelengthʳI F 20mA Ȝdom [1] Blue 465 - nm Spectral Bandwidth at 50% ĭ REL MAX ʳF = 20mA ǻȜ ▯ Blue 25 - nm Capacitance C Blue 100 -
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Raspberry_Pi.pdf
GPU und FPU des RPI vom Hersteller Broadcom. Die CPU arbeitet mit 32 Bit und einer Taktfreuenz von 700 Mhz. Die CPU (ARM1176JZFS) ist von der Archtektur ein ARM11 Prozessor der ARM v6 Familie. Der Prozessor hat auch eine FPU (Floating Point Unit) zur schnellen Gleitkommaberechnung, die aber derzeit nur
in „Raspberry PI XBMC installieren unter Raspbian“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R1_und_R2.pdf
CRCW2010 2010 RR 5025M Zero-Ohm-Resistor: Rmax.= 20 m, max.at 70 °C = 6.0 A 1.0 500 ± 100 ± 1 1R0 to 10M E24; E96 CRCW2512 2512 RR 6332M ± 200 ± 5 E24 Zero-Ohm-Resistor: R = 20 m, I at 70 °C = 7.0 A max. max. Notes These resistors do not feature a limited
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VNS1NV04DTR.pdf
Symbol Parameter Test Conditions Min Typ Max Unit Forward gfs*) V DD=13V; ID=0.5A 2 S Transconductance C OSS Output Capacitance V DS=13V; f=1MHz; V INV 90 pF SWITCHING Symbol Parameter Test Conditions Min Typ Max Unit d(on) Turn-on Delay Time
in „[V] Highside-Schalter“ · Markt ·
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PDF
Switch.pdf
größere Mengen als aufgelistet, bitte telefonisch ein Angebot einholen. MOUSER Panasonic Gehäuse- Max. Kontakt- Stückpreis LAGER-NR. Teile-Nr. typ Stromwert (mA)Lastspann. (V) anordnung 1 25 50 100 Durchsteckmontage-Typ 769-AQV101 AQV101 DIP-6 700 40 1 Form A 769-AQV102 AQV102 DIP-6 600 60 1 Form A
in „Ausfallursache Printtaster DeLonghi Kaffeeautomat?“ · Mikrocontroller und Digitale Elektronik ·
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drv8350f_7_.pdf
0101b = 350 mA 0110b = 400 mA 0111b = 450 mA 1000b = 550 mA 1001b = 600 mA 1010b = 650 mA 1011b = 700 mA 1100b = 850 mA 1101b = 900 mA 1110b = 950 mA 1111b = 1000 mA 3-0 IDRIVEN_HS R/W 1111b 0000b = 100 mA 0001b = 100 mA 0010b = 200 mA 0011b = 300 mA 0100b = 600 mA 0101b = 700 mA 0110b = 800 mA 0111b
in „BLDC-Motor: Überspannung beim Bremsen trotz Durchschaltung aller Low-Side-MOSFETs?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
led.pdf
0.20 (0.197 ± 0.008)1) 8.71 ± 0.20 1.14 ± 0.20 (0.343 ± 0.008) (0.045 ± 0.008) 1.85 (0.073) 0.70 (0.02MAX. MAX. 31.60 (1.244). CATHODE LEAD 1.00 0.50 ± SQ. TYP. (0.039). (0.020 ± 0.004) 5.80 ± 0.20 (0.228 ± 0.008) CATFLAT (0.100 ± 0.015) NOTES: 1. ALL DIMENSIONS ARE IN MILLIMETERS (INCHES). 2. LEADS ARE
in „led dimmerschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4560.pdf
Electrical/Optical Characteristics at T = 25 A C AlGaAs Red Device Series HDSP- Parameter Symbol Min. Typ. Max. Units Test Conditions 315 600 IF= 1 mA A10X 3600 IF= 5 mA 330 650 IF= 1 mA F10X, G10X 3900 IF= 5 mA 390 650 I = 1 mA [1,2] F E10X Luminous Intensity/Segment V cd (Digit Average) 3900 IF= 5 mA 400 700
in „7 Segment LED datenblatt suche für EAGLE“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
T ) S −65°C to +150°C C CD40192BC, CD40193BC −40°C to +85°C Power Dissipation (P D) D Dual-In-Line 700 mW Note 1: “Absolute Maximum Ratings” are those values beyond which 4he safety of the device cannot be guaranteed. They are not meant to 0mply Small Outline 500 mW that the devices should be operated
in „CMOS zähler. Wie anschließen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
JWCO_KM_Serie_Elko.pdf
rated voltage at +20 漏電流 rated voltage at +20 ℃) ℃ Working Voltage(v) 6.3 10 16 25 35 50 63 100 tan δ(max) 0.24 0.2 0.16 0.15 0.14 0.12 0.12 0.1 Dissipaiom Factor (tan δ) 損失角正切值 Working Voltage(v) 160 200 250 350 400 450 500 (120Hz,+20℃) tan δ(max) 0.2 0.2 0.2 0.25 0.25 0.25 0.25 For capacitance value >1000μF, add 0.02 per another 1000μF 標稱容量值超過1000uF,則每增加1000uF,損失角正切值增加0.02 Impedance ratio max. at 120 Hz 阻抗比最大值 Low Temperature characteristics Working Voltage(V) 6.3 10 16 25 35 50 63 100 160 200 250 350 400 450 500 Z(-40℃)/ Z(+20℃) 10 8 6 4 3 3 3 3 - - - - - - - 溫度特性 阻抗比( ) Z(-25℃)/ Z(+20℃
in „SonOff S20 Leben, wirken und widerbelebung. :-)“ · Haus & Smart Home ·
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PDF
PBL3717A.PDF
, V = 5V, T = 25 C unless otherwise specified) S SS amb Symbol Parameter Test Conditions Min. Typ. Max. Unit Vs Supply Voltage (pin 3, 14) 10 46 V Vss Logic Supply Voltage (pin 6) 4.75 5.25 V I Logic Supply Current (pin 6) 7 15 mA ss IR Reference Input Current (pin 11) VR= 5V 0.75 1 mA LOGIC INPUTS ViL
in „Schrittmotor mit PBL3717A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILX551B_E_.pdf
Mode in use Pin condition S/H Pin 4 SHSW Yes GND No VDD2 Input Capacity of Pins Item Symbol Min. Typ. Max. Unit Input capacity of φCLK pin CφCLK — 10 — pF Input capacity of φROG pin CφROG — 10 — pF Recommended Input Pulse Voltage Item Min. Typ. Max. Unit Input clock high level 4.5 5.0 5.5 V Input clock
in „AD Wandler ~ 2 Mhz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILX551B.PDF
Mode in use Pin condition S/H Pin 4 SHSW Yes GND No VDD2 Input Capacity of Pins Item Symbol Min. Typ. Max. Unit Input capacity of φCLK pin CφCLK — 10 — pF Input capacity of φROG pin CφROG — 10 — pF Recommended Input Pulse Voltage Item Min. Typ. Max. Unit Input clock high level 4.5 5.0 5.5 V Input clock
in „Problem mit ILX551B (CCD-Sensor)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PA94U_M.pdf
3) -VS V S V TEMPERATURE, pin solder, 10s max. 260 °C TEMPERATURE, junction (Note 2) 150 °C TEMPERATURE RANGE, storage −40 85 °C OPERATING TEMPERATURE RANGE, case −25 85 °C The PA94 is constructed from MOSFET transistors. ESD handling procedures
in „Netzstrom-Verzerrungen sichtbar machen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SPEC-2400__LV_and_C__L_-_May_2013_.pdf
accuracy compliance. specification)/ °C. DC FLOATING VOLTAGE: Output can be floated up to ±250VDC MAX. OUTPUT POWER: 22W, four quadrant source or sink operation. from chassis ground. REMOTE SENSE: Up to 1V drop per load lead. SOURCE/SINK LIMITS: MODEL 2400, 2400-C: ±21V @ ±1.05A, ±210V @ ±105 mA. COMPLIANCE
in „Messunsicherheiten Keithly 2400 Sourcemeter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
3260.pdf
4.04 0.062 1.57 45° 0.058 45° 1.47 0.122 3.10 0.117 2.97 45° 45° 0.085 1 2 3 0.031 2.16 1 2 3 0.79 MAX MAX 0.640 0.0173 16.26 0.44 0.600 0.0138 15.24 0.35 SEE NOTE 0.0189 SEE NOTE 0.48 0.0142 0.36 0.050 1.27 BSC BSC Dwg. MH-014E in Dwg. MH-014E mm Surface-Mount Lead Form (Suffix '-TL') ±0.005 ±0.13 MAX02 0MAX1 0.004 0°–8° 0.10 0°–8° MAX 0MIN0 MAX MIN1 FLAT Dwg. MH-015 in FLAT Dwg. MH-015 mm NOTES: 1. Tolerances on package height and width represent allowable mold offsets. Dimensions given are measured at
in „Schaltnetzteil TNY Ersatztyp Kompatibel ?“ · Analoge Elektronik und Schaltungstechnik ·
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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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PDF
B400_NTC-02_Serie.pdf
) and (2) are interchangeable with an = {1.05 × 1.0089 – 1 } × 100% = 5.9345% ( ≈ 5.93% ) error of max. 0.005 °C in the range 25 °C to 125 °C and max. 0.015 °C in the range −40 °C to +25 °C . ∆T = -- = -- - = 1.167 °C ( ≈ 1.17 °C) TC 5.08 A NTC with a R -v25ue of 10 kΩ has a value of 32.56 kΩ between
in „Temperatur Messung mit Mega8 und NTC-Widerstand 4,7k“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
B400_NTC-02_Serie.pdf
) and (2) are interchangeable with an = {1.05 × 1.0089 – 1 } × 100% = 5.9345% ( ≈ 5.93% ) error of max. 0.005 °C in the range 25 °C to 125 °C and max. 0.015 °C in the range −40 °C to +25 °C . ∆T = -- = -- - = 1.167 °C ( ≈ 1.17 °C) TC 5.08 A NTC with a R -v25ue of 10 kΩ has a value of 32.56 kΩ between
in „NTC Berechnung nach Steinhart and Hart, 2. Gleichung geht nicht!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPS2115A.pdf
5.5 V, and RILIM 400 Ω, unless otherwise noted. TPS2114A TPS2115A PARAMETER TEST CONDITIONS MIN TYP MAX MIN TYP MAX UNIT T J 25°C, L = 500 mA, I(IN1)VI(IN2)5.0 V 120 140 84 110 mΩ T = 25°C, I = 500 mA, V = V = 3.3 V 120 140 84 110 mΩ J L I(IN1) I(IN2) Drain-source on-state T J 25°C, L = 500 mA, I(IN1)
in „Speisung umschalten“ · Analoge Elektronik und Schaltungstechnik ·
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MC10EP31-D.PDF
CHARACTERISTICS, PECL (VCC = 3.3 V,EE = 0 V (Note 1)) −40°C 25°C 85°C Symbol Characteristic Min Typ Max Min Typ Max Min Typ Max Unit EE Power Supply Current 26 34 44 26 35 45 28 37 47 mA V OH Output HIGH Voltage (Note 2) 2165 2290 2415 2230 2355 2480 2290 2415 2540 mV V OL Output LOW Voltage (Note 2)
in „Rechtecksignal mit Anstiegszeit < 1 ns für Oszi- und Tastkopf-Tests“ · HF, Funk und Felder ·
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PDF
AN1010.pdf
14 11 21 PD1 (TX) 22 pF EXTAL 7 TxD 13 12 20 PD0 (RX) + 1 10 M 8 MHz CTS C1 MC68HC11A1 XTAL 8 DSR 3 MAX232 52-PIN PLCC + 4 22 pF DCD DTR C2 5 3 MODA 0 V 15 2 GND MODB V RESET 17 2 + 6 DD 0 V C3 C4 26 4.7 k 1 µF + 0 V 0.1 µF C1, C2, C3, C4 — 22 mF, 25-V aluminum or tantalum CERAMIC +5 V Note: To improve
in „Programm zum MC68HC11 auslesen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps61046.pdf
zero ESR, the minimum capacitance needed for a given ripple can be calculated by: I K D C OUT OUT MAX SW K VRIPPLE (5) Where: D MAX = maximum switching duty cycle V RIPPLE= peak to peak output voltage ripple The ESR impact on the output ripple must be considered if tantalum or aluminum electrolytic
in „Ruhestrom Spannungswandler DC DC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XCL213-XCL214.pdf
<E-2> <E-3> <C-1> <E-5> <E-6> <E-7> VOLTAGE <E-1> <E-2> <E-3> <C-1> <E-5> <E-6> <E-7> V MIN. TYP. MAX. V MIN. TYP. MAX. V MIN. TYP. MAX. V MIN. TYP. MAX. OUT(T) IN OUT(T) IN 0.80 0.784 0.800 0.816 2.70 71 119 166 2.25 2.205 2.250 2.295 3.75 140 200 260 0.85 0.833 0.850 0.867 2.70 72 121 169 2.30 2.254
in „1.5A regulator Built-in Step-Down micro DC/DC Converters“ · Mikrocontroller und Digitale Elektronik ·
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100652_Dimmer_list_DE.pdf
Modell-Nr.: 100652-14-01) Marke und Modell-Nr. Leistungsbereich Spannung Dimmbereich - Min. Dimmbereich - Max. Busch-jaeger 6523 2 - 100W 230V/ 50Hz 5,38% 93,00% Busch-jaeger 2247 500W 230V/ 50Hz 5,57% 98,00% Niko 310-016 60 - 250W 230V/ 50Hz 5,80% 103,00% Everflourish Efp700D13 50 - 300W 230V/ 50Hz 5,58% 100,00%
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ODD-42WB.pdf
signal • Low capacitance ELECTRO-OPTICAL CHARACTERISTICS AT 25°C PARAMETERS TEST CONDITIONS MIN TYP MAX UNITS 2 Active Area 9.91mm x 4.28mm 42 mm Responsivity, R @ 450nm 0.20 0.28 A/W Dark Current, Idr VR= 10V 11 25 nA Reverse Breakdown Voltage, V I = 10A 25 60 Volts R R Capacitance, C VR= 10V 85 pF Rise
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