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AAT3113.pdf
Operating Junction Temperature Range -40 to 150 °C T Maximum Soldering Temperature (at leads, 10 sec) 300 °C LEAD Electrical Characteristics The specs are applied over the full operation temp. range, otherwise specification are at room temp. (25°C) VIN = 3.3V, unless otherwise noted. Symbol Description
in „LCD Hintergrundbeleuchtung dimmen mit PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX4890E-MAX4892E.pdf
(LED_ to _LED_) .…………………… ±40mA Lead Temperature (soldering, 10s).................................+300°C 8 Peak Current (A_ to _B_) 4 (pulsed at 1ms, 10% duty cycle) ……………………. ±240mA Current into Any Other Pin................................................±20mA X A Continuous Power Dissipation AT +70
in „MAX4890E Eagle Lib“ · Platinen ·
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Voltageinverter.pdf
related to inductor based con-rsion efficiency at 200 mA verters. With an operating current of only 300 μA and oper-table oscillator d ating efficiency greater than 90% at most loads, the LM2662/Hz/150 kHz LM2663 provides ideal performance for batte■y(LM2663) low current shutdown mode a tems. The LM2662
in „Das große ADC Quiz“ · Mikrocontroller und Digitale Elektronik ·
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sct2210.pdf
5V - 100 150 ns Delay Time VIH V DD (“H” to “L”) OE/ - OUTn PHL3 V = GND - 30 60 ns CLK - SDO PHL IL - 15 20 ns CLK t REXT = 900 20 - - ns W(CLK) RL= 180 Pulse Width LA/ W(L) CL = 10 pF 20 - - ns OE/ W(OE) 50 ns Hold Time for LA/ H(L) 5 - - ns Setup Time for LA/ S(L) 5 - - ns Output Rise Time of OUT
in „[V] 50 x 16bit LED-Konstantstrom-Schieberegister, SCT2210CSTG“ · Markt ·
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U210b.pdf
3 –V S 14.7 16.8 V DC supply current –V S13.0 V Pin 3 –IS 1.2 2.5 3.0 mA Reference voltage source –IL= 10 mA Pin 13 –V Ref 8.6 8.9 9.2 V –I = 5 mA Pin 13 –V 8.3 9.1 V L Ref Temperature coefficient Pin 13 –TC VRef 0.5 mV/K Voltage monitoring Turn–on threshold Pin 3 –V 11.2 13.0 V SON Turn–off threshold
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74LVX245.pdf
Package Description l 74LVX245M M20B 20-Lead Small Outline Integrated Circuit (SOIC), JEDEC MS-013, 0.300” Wide 74LVX245SJ M20D 20-Lead Small Outline Package (SOP), EIAJ TYPE II, 5.3mm Wide a n 74LVX245MTC MTC20 20-Lead Thin Shrink Small Outline Package (TSSOP), JEDEC MO-153, 4.4cm Wide Devices also available
in „5V Pegel auf 3V bringen“ · Mikrocontroller und Digitale Elektronik ·
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1n4008.pdf
.6 S T1.0 A N U N R E E E O R N R .4 F U .4 T U .2 G C N C J = 25 A Single Phase T .1 Pulse Width=300uS R .2 Half Wave 60Hz S 1% Duty Cycle V Resistive or I .04 A Inductive Load .02 0 .01 0 25 50 75 100 125 150 175 .6 .8 1.0 1.2 1.4 1.5 AMBIENT TEMPERATURE, ( ) INSTANTANEOUS FORWARD VOLTAGE, (V) ) A
in „P-Mosfet Schaltung richtig ausgelegt“ · Analoge Elektronik und Schaltungstechnik ·
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MCP41010.pdf
Trigger High-Level Input VoltagVIH 0.7VDD — — V Schmitt Trigger Low-Level Input VoltageV — — 0.3V V IL DD Hysteresis of Schmitt Trigger Inputs VHYS — 0.05VDD — Low-Level Output Voltage V OL — — 0.40 V IOL= 2.1 mA, DD = 5V High-Level Output Voltage V OH VDD - 0.5 — — V IOH = -400 µA,DD = 5V Input Leakage
in „Widerstand regeln“ · Mikrocontroller und Digitale Elektronik ·
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11195c.pdf
Trigger High-Level Input VoltagVIH 0.7VDD — — V Schmitt Trigger Low-Level Input VoltageV — — 0.3V V IL DD Hysteresis of Schmitt Trigger Inputs VHYS — 0.05VDD — Low-Level Output Voltage V OL — — 0.40 V IOL= 2.1 mA, DD = 5V High-Level Output Voltage V OH VDD - 0.5 — — V IOH = -400 µA,DD = 5V Input Leakage
in „DC-DC Wandler mit MCP42010“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mcp41xxx.pdf
Trigger High-Level Input VoltagVIH 0.7VDD — — V Schmitt Trigger Low-Level Input VoltageV — — 0.3V V IL DD Hysteresis of Schmitt Trigger Inputs VHYS — 0.05VDD — Low-Level Output Voltage V OL — — 0.40 V IOL= 2.1 mA, DD = 5V High-Level Output Voltage V OH VDD - 0.5 — — V IOH = -400 µA,DD = 5V Input Leakage
in „Schaltregler, Feedback und Op Amp“ · Analoge Elektronik und Schaltungstechnik ·
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LM2576-D.pdf
L68 L47 5.0 0.3 0.4 0.5 0.6 0.8 1.0 1.5 2.0 2.5 3.0 7.00.3 0.4 0.5 0.6 0.8 1.0 1.2 1.5 2.0 2.5 3.0 IL, MAXIMUM LOAD CURRENT (A) IL, MAXIMUM LOAD CURRENT (A) Figure 18. LM2576−3.3 Figure 19. LM2576−5 60 60 ( 35 ( 40 E 30 H1500 E 35 A A 30 H1500 L 25 H1000 L H1000 V H680 H470 V 25 H680 T 20 H330 H220 H150
in „Platine als Kühlkörper“ · Platinen ·
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PDF
LM2576_On.PDF
L68 L47 5.0 0.3 0.4 0.5 0.6 0.8 1.0 1.5 2.0 2.5 3.0 7.00.3 0.4 0.5 0.6 0.8 1.0 1.2 1.5 2.0 2.5 3.0 IL, MAXIMUM LOAD CURRENT (A) IL, MAXIMUM LOAD CURRENT (A) Figure 18. LM2576−3.3 Figure 19. LM2576−5 60 60 ( 35 ( 40 E 30 H1500 E 35 A A 30 H1500 L 25 H1000 L H1000 V H680 H470 V 25 H680 T 20 H330 H220 H150
in „Ruhige negative Spannung“ · Analoge Elektronik und Schaltungstechnik ·
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tlc5916.pdf
Low-to-high propagation delay time, CLK to SDO 12 20 30 ns t High-to-low propagation delay time, CLK to OUTn 300 365 ns PHL1 PHL2 High-to-low propagation delay time, LE(ED1) to OUTn 300 365 ns PHL3 High-to-low propagation delay time, OE(ED2) to OUTn 300 365 ns t High-to-low propagation delay time, CLK to SDO 12
in „Current Sink in Current Source transformieren“ · Analoge Elektronik und Schaltungstechnik ·
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TLC5916.pdf
Low-to-high propagation delay time, CLK to SDO 12 20 30 ns t High-to-low propagation delay time, CLK to OUTn 300 365 ns PHL1 PHL2 High-to-low propagation delay time, LE(ED1) to OUTn 300 365 ns PHL3 High-to-low propagation delay time, OE(ED2) to OUTn 300 365 ns t High-to-low propagation delay time, CLK to SDO 12
in „Gesucht: LED-Treiber 8 LED (100mA-200ma)“ · Mikrocontroller und Digitale Elektronik ·
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Thread
Stuttgart 21
auf keiner einzigen Lok der DB vorhanden ist. Die Nachrüstung soll, wenn ich mich recht erinnere, ~ 300.000 EUR je Lok kosten. Außerdem sollen die Oberleitungen komplett in der Planung fehlen.
versiegt ist, kamen die Mittel mal vorübergehend aus Bagdad und im Moment verhandle ich mit Kim Jong Il, ob er mir statt des bescheuerten Mineralwassers eine ordentliche Pulle Schnaps täglich finanziert.
Offtopic ·Hel S. · ·275 Antworten
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IR21844.pdf
SupplyVoltage 1100 1100 900 900 ) s ( 700 ( 700 e Max. e Max. t u a 500 Typ. a 500 Typ. D D Min. Min. 300 300 100 100 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 o Temperature(C) Supply Voltage(v) Figure 9A. Deadtime vs. Temperature Figure 9B. Deadtime vs. SupplyVoltage www.irf.com 9 IR2184 4 ( )(S)&(PbF
in „Simulation IR2183 Halbbrückentreiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ir2183.pdf
Deadtime Waveform Definitions 6 www.irf.com IR2183(4 )(S & PbF ) )500 )500 n ( y400 y400 e e D D Max. i 300 i300 a Max. a Typ. a200 a200 o Typ. r P P o100 o100 n r u T T 0 0 -50 -25 0 25 50 75 100 125 10 12 14 16 18 20 Temperature(C) Supply Voltage(V) Figure 4A. Turn-on Propagation Delay Figure 4B. Turn-on
in „Simulation IR2183 Halbbrückentreiber“ · Analoge Elektronik und Schaltungstechnik ·
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DAC7552.pdf
IODD(3) 2.7 5.5 V DD(normal operation) DAC active and excluding load current V DD= 3.6 V to 5.5 V 300 440 V = 2.7 V to 3.6 V VIH= IOVDD and VIL GND 250 400 µA DD DD (all power-down modes) V DD= 3.6 V to 5.5 V 0.2 2 VIH= IOVDD and VIL GND µA V DD= 2.7 V to 3.6 V 0.05 2 POWER EFFICIENCY OUT DD LOAD =
in „Problem mit DAC7552“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CP2102.pdf
Full Speed (D+ Pull-up) 1.425 1.5 1.575 k Low Speed (D- Pull-up) Output Rise Time TR Low Speed 75 — 300 ns Full Speed 4 — 20 Output Fall Time TF Low Speed 75 — 300 ns Full Speed 4 — 20 Receiver Differential Input Sensitivity VDI | (D+) - (D-) | 0.2 — — V Differential Input Common V CM 0.8 — 2.5 V Mode Range Input Leakage Current IL Pullups Disabled — < 1.0 — µA *Note: Refer to the USB Specification for timing diagrams and symbol definitions. Rev. 1.8 9 CP2102/9 Table 8. EPROM Electrical Characteristics Parameter Test Condition
in „USB to UART CP2102 Schema“ · Mikrocontroller und Digitale Elektronik ·
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CP2102-9.pdf
Full Speed (D+ Pull-up) 1.425 1.5 1.575 k Low Speed (D- Pull-up) Output Rise Time TR Low Speed 75 — 300 ns Full Speed 4 — 20 Output Fall Time TF Low Speed 75 — 300 ns Full Speed 4 — 20 Receiver Differential Input Sensitivity VDI | (D+) - (D-) | 0.2 — — V Differential Input Common V CM 0.8 — 2.5 V Mode Range Input Leakage Current IL Pullups Disabled — < 1.0 — µA *Note: Refer to the USB Specification for timing diagrams and symbol definitions. Rev. 1.8 9 CP2102/9 Table 8. EPROM Electrical Characteristics Parameter Test Condition
in „[V] 25St. Silabs CP2102N (QFN24) USB to UART Bridge (10St für 12€)“ · Markt ·
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KS0073.pdf
Fall Time tR, F - - 100 with Extension Clock Setup Time t 500 - - ns SU1 Driver Data Setup Time t 300 - - SU2 (refer to Figure 24) Data Hold Time t 300 - - DH M Delay Time t -1000 - 1000 DM V IH1 RS V IL1 t1 su1 R/W VIL1 V IL1 tw t1 tf VIH1 VIH1 E V IL1 VIL1 V IL1 su2 th2 r VIH1 VIH1 DB0 - DB7 VIL1
in „Eigene Zeichen bei LCD mit KS0073 für blöde“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LB084S02-TD01.pdf
Voltage VCC 3.0 3.3 3.6 V High Level V 0.7VCC - VCC V Digital Input Signal IH Low Level V 0 - 0.3VCC V IL Source Driver Supply Voltage VDD TBD (10.0) TBD V Hi VGH TBD (19.5) TBD V Gate Driver TFT Lo VGL TBD (-4.5) TBD V V1 ~ V7 0.4AVDD - AVDD-0.1 Gamma DC V Correction Voltage V8 ~ V14 0.1 - 0.6VDD Color
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PDF
NHD-0420CW-AY3-587980.pdf
Model Y- Yellow 3- 2.4V~5.5V Supply Voltage Newhaven Display International, Inc. 2661 Galvin Ct. Elgin IL, 60124 Ph: 847-844-8795 Fax: 847-844-8796 www.newhavendisplay.com nhtech@newhavendisplay.com nhsales@newhavendisplay.com Document Revision History Revision Date Description Changed by 0 12/15/2014 Initial
in „NHD-0420CW-AY3 4x20 Zeilen OLED in Betrieb nehmen“ · Mikrocontroller und Digitale Elektronik ·
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AN-3004.pdf
L CURRENT 3 CROSSING 4 I = GT+ II CIRCUIT RG MT1 R L V–ACROSS TRIAC DRIVER POWER TRIAC MAIN TRIAC IL Figure 7. Basic Driving Circuit – Triac Driver, Triac and Load Figure 8. Waveforms of a Basic Driving Circuit REV. 4.00 5/7/02 3 AN-3004 APPLICATION NOTE UnintendedTrigger DelayTime Figure 9 shows the
in „MOC3063 vs MOC3063M“ · Analoge Elektronik und Schaltungstechnik ·
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MBM29LV800.pdf
Cycle Time — Min. 70 90 120 ns tAVQV tACC Address to Output Delay CE = VIL Max. 70 90 120 ns OE = V IL tELQV CE Chip Enable to Output Delay OE = V IL Max. 70 90 120 ns tGLQV OE Output Enable to Output Delay — Max. 30 35 50 ns tEHQZ DF Chip Enable to Output High-Z — Max. 25 30 30 ns tGHQZ DF Output Enable
in „650Stk. Flashbausteine 29LV800 1Mx8 / 512k x16, 3,3V“ · Markt ·
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TC4050BP.pdf
stage inverters for TC4049B and two stage inverters for TC4050B. TC4049BFN, TC4050BFN Weight DIP16-P-300-2.54A : 1.00 g (typ.) SOP16-P-300-1.27A : 0.18 g (typ.) SOL16-P-150-1.27 : 0.13 g (typ.) 1 2007-10-01 TC4049,4050BP/BF/BFN Pin Assignment TC4049B TC4050B Circuit Diagram 1/6 TC4049B 1/6 TC4050B Absolute
in „Ersatztyp zum LVX125“ · Mikrocontroller und Digitale Elektronik ·
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matching_network_design_non_foster_impedances.pdf
Inductive-T completes the match to 50Ω Dualizer – For the tee and pi L networks shown Zin ω 2Lo2/ ZL – If Z iL the frequency-dependent Inductor-T Dualizer resistance 2 ZL=k ω and if we want the input impedance Z to in be the real and constant value R , oe choose Lo2= kR o (also used in coupled-resonator filter
in „Richtwirkung einer Loopantenne erhöhen“ · HF, Funk und Felder ·
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PDF
T533N.PDF
A²s I²t-value T vjT vj maxP = 10 ms 551 10³ A²s Kritische Stromsteilheit DIN IEC 60747-6 (dT /dcr 300 A/µs critical rate of rise of on-state current f = 50 Hz, PLM = 40mW, t rise 0,5µs Kritische Spannungssteilheit T = T , v = 0,67 V (dv /dt) 2000 V/µs vj vj maxD thDRM D cr critical rate of rise of off-state
in „Fährgarten Johannstadt ab 17 Uhr (Biergartentreff Dresden 2023)“ · Offtopic ·
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PDF
Infineon-T1800N-DS-v03_01-en_de.pdf
max. A 0,892407 on-state characteristic B 0,000272 C -0,031311 D 0,010084 T vj25°C, v =D12 V I max. 300 mA Zündstrom GT gate trigger current Zündspannung T vj25°C, v =D12 V V GT max. 2,5 V gate trigger voltage T = T , v = 12 V I max. 10 mA Nicht zündender Steuerstrom vj vj max D GD gate non-trigger current
in „Schutzschaltung (Crowbar) Dimensionierung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pt2257.pdf
PT2257 APPLICATION CIRCUIT ORDER INFORMATION Part Number Package Type Top Code PT2257-D 8-Pin, DIP, 300mil PT2257-D PT2257-S 8-Pin, SOP, 150mil PT2257-S PIN CONFIGURATION PIN DESCRIPTION Pin Name I/O Description Pin No. LIN I Left input channel 1 Connect a capacitor to audio source Left output channel
in „Wie Audiosignal/Lautstärke via Microcontroller kontrollieren (digitaler potentiometer?)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCD3311C_3312C_2.pdf
PACKAGE TYPE NUMBER NAME DESCRIPTION VERSION PCD3311CP DIP14 plastic dual in-line package; 14 leads (300 mil) SOT27-1 PCD3311CT SO16 plastic small outline package; 16 leads; body width 7.5 mm SOT162-1 PCD3312CP DIP8 plastic dual in-line package; 8 leads (300 mil) SOT97-1 PCD3312CT SO8 plastic small outline
in „Tipsend2 Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tlc1549_.pdf
for the clock input signal to fall from V min to V max or to rise from Vmin. In the vicinity of IH IL IL IH normal room temperature, the devices function with input clock transition time as slow ass for remote data-acquisition applications where the sensor and the A/D converter are placed several feet
in „10 Bit ADC (seriell) wie TLC1549 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lmx1602.pdf
Input Current V IH= VCC = 3.6V −1.0 1.0 µA I Low-Level Input Current V = 0V; V = 3.6V(2) −1.0 1.0 µA IL IL CC IH OSC INInput Current V IH= VCC = 3.6V 100 µA IL OSC INInput Current V IL0V; V CC = 3.6V −100 µA O OSC OUT Out(3) Current Magnitude Logic (1)e V CC |200| µA (sink/source) = 3.6V V OUT= V CC/2 Crystal Mode |300| µA (1) V CC= 2.7V V High-Level Output Voltage I = −500 µA V −0.4 V OH OH CC VOL Low-Level Output Voltage IOL = 500 µA 0.4 V MICROWIRE TIMING CS Data to Clock Set Up Time See SERIAL DATA INPUT TIMING
in „Software <> Funkgerät, Kommunikation“ · HF, Funk und Felder ·
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PDF
TJA1020.pdf
A recessive (VINH= VBAT; V LIN= VBAT; V = V ; NWAKE BAT V TXD= 0 V; VNSLP= 0 V) standby mode; bus 300 900 2000 A dominant (VBAT = 12 V; V INH= 12 V; LIN= 0 V; V = 12 V; NWAKE V TXD= 0 V; V NSLP= 0 V); note 3 low slope mode; bus 100 400 1000 A recessive (VINH= VBAT; V LIN= VBAT; V NWAKE = VBAT; V TXD
in „[S] MCP2004 LIN Tranceiver oder andere gesucht“ · Markt ·
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PDF
MCP1403.pdf
Current PK — 4.5 — A VDD = 18V (Note 2) Latch-Up Protection With- I — >1.5 — A Duty cycle ≤ 2%, t ≤ 300 µsec. REV stand Reverse Current Switching Time (Note 1) Rise Time tR — 15 28 ns Figure 4-1, Figure 4-2 CL= 2200 pF Fall Time tF — 18 28 ns Figure 4-1, Figure 4-2 CL = 2200 pF Delay Time D1 — 40 48 ns
in „MOSFET mit Treiber Verständnisproblem“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
20002019c.pdf
2006-2016 Microchip Technology Inc. MCP1406/07 Functional Block Diagram (1) VDD Inverting 130 µA 300 mV Output Output Non-Inverting Input Effective 4.7V MCP1406 Inverting Input C = 25 pF MCP1407 Non-Inverting GND Note 1: Unused inputs should be grounded. 2006-2016 Microchip Technology Inc. DS20002019C-page
in „Pulsschweisgerät mit Auto Batt Schaltungs Verbesserung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC14006B.pdf
14.95 — 14.95 15 — 14.95 — ÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎl V IL Vdc (VO = 4.5 or 0.5 Vdc) 5.0 — 1.5 — 2.25 1.5 — 1.5 ÎÎÎÎÎÎÎ(VÎ = 9.0 or 1.0 Vdc)ÎÎÎÎÎÎÎ 10 — 3.0 — 4.50 3.0 — 3.0 O ÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ 15 — 4.0 — 6.75 4.0 — 4.0 ÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎvelV
in „Platine Bedieneinheit mit Oszi durchmessen“ · Platinen ·
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PDF
Carel-NTC.pdf
**) L =* Fig.2.h * = voir tableau des références présent dans le barème des prix; (**) = 100, 200, 300. NB: blocage câble par passe-fil PG7 – IP68 appliqué à l’extrémité hexagonale. Il existe le kit complet cuvette + presse-étoupe. • Raccord à compression avec ogive en métal – Réf. 1309589AXX 29.5 10
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PDF
INK1002_RGB_LED__GEINK1002RGB_.pdf
clamp voltage VCC CLAMP VIN=7.5V 5.1 5.4 5.6 V Minimum Constant Current Output Time IOH VINV oIHV ,IL -- 2.5 -- uS Input Current IIN VIN=VDD or GND -- -- ±1 uA VIH 0.8*VDD -- VDD V Input Voltage Level VIL TA=-40~125℃ GND -- 0.2*VDD V Output Voltage Regulation %dV OUT -- ±1 -- %/V VCC4~5.5V,V OUT Line Regulation %dV CC between 1.0V and -- ±1 -- %/V 3.0V Pull Down Resistance R INLOW R LIN -- 300 -- KΩ www.gree-leds.com sales@gree-led.com Block Diagramronic Ltd INK1002 RGB LED (GEINK1002RGB) PIN Function Description Fig2, INK1002 Block Diagram PI1 No NNCE No Connection Description 3 VGND Groundwer
in „[V] LED-Strips: 48 LEDs mit LPD8806 und 60 LEDs WS2812“ · Markt ·
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PIO_Schnittstellenspezifikation__1_.pdf
100 Hz 0001 <SHIFT> B2 100 Bd 300 Hz 0010 <SHIFT> B3 200 Bd 600 Hz 0011 <SHIFT> B4 500 Bd 1,5 kHz 1010 <SHIFT> B5 1000 Bd 5 kHz 1011 <SHIFT> B6 2000 Bd 7,5 kHz 0100 <SHIFT> B7 2000 Bd 15 kHz 0101 <SHIFT> B8 2000 Bd 30 kHz 0110 <SHIFT
in „AEG - Telefunken E1800 mit PIO 1200 Schnittstelle.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIO_Schnittstellenspezifikation__2_.pdf
100 Hz 0001 <SHIFT> B2 100 Bd 300 Hz 0010 <SHIFT> B3 200 Bd 600 Hz 0011 <SHIFT> B4 500 Bd 1,5 kHz 1010 <SHIFT> B5 1000 Bd 5 kHz 1011 <SHIFT> B6 2000 Bd 7,5 kHz 0100 <SHIFT> B7 2000 Bd 15 kHz 0101 <SHIFT> B8 2000 Bd 30 kHz 0110 <SHIFT
in „AEG - Telefunken E1800 mit PIO 1200 Schnittstelle.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TL7705ACP.pdf
Conditions Min. Typ. Max. Unit tpi Pulse Width at SENSE Input V ihV ityp0.04 x Vi 0.9 s V = V –0.04 x V iL ityp i tpi Pulse Width at RESIN Input 0.4 s tpo Pulse Width at Output C T 0.1 F 0.65 1.3 2.6 ms t Propagation Delay Time from RESIN C = 100pF, V = 5V, R = 4.7k 1 s pdHL L s L to RESET tr/f Rise/Falltime
in „AVR programmieren mit TwinAVR funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IS15BAFP4CF_Wide36x24Bicolor-1663383.pdf
VDD 4.5 5.0 5.5 Supply Voltage LCD Circuit VLC 7.1 7.3 7.5 H V IH 0.7V DD — V DD Input Voltage L V IL 0 — 0.3 V DD LCD H V OH D OUT, OH = 500 μ A VDD –0.5 — — Output Voltage L VOL D OUT, IOL = 500 μ A — — 0.5 Logic Circuit IDD fscp= 1.0MHz — — 500 Power LCD Circuit ILC fLP 2.4kHz V = 7.3LC — 500 2,000
in „Datenblatt für NKK IS-15F2 SmartSwitch“ · Mikrocontroller und Digitale Elektronik ·
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Thread
Selbstbau Mikrofon Array für Akkordeon
keine Erfahrungswerte. Andere Hersteller geben für die teuren Varianten z.B. 67 dB @ 1 kHz an - < 300 € - Montage von außen via Klettband, oder Klemmvorrichtung, oder von innen unter die Abdeckung, auch z.B. via Klettband - das Audiosignal wird per XLR oder TRS Stecker zu einem https://focusrite.com
N4IgjCBcpgHAzFUBjKAzAhgGwM4FMAaEAeygG0R4AWeAVgAZaQBdIgBwBcoQBlDgJwCWAOwDmIAL5EAbPHpIQqSJlyES5EFTAB2bdKasQnbnyFjJRMAE5YVhUpX4ipSBXnMpIALQAme1AEAVzUXCgNPL0RoRQD%2BYOcNMHcIu2ilIJDElgkcoA >> >> Hmm das Instrument lebt von den obertönen. Denke bis 20 kHz sollte es >> schon gehen. > Obertöne liegen aber nicht bei 20 kHz, die sind mitten im Hörbereich. > Mag sein. Denke
Analoge Elektronik und Schaltungstechnik ·Jan K. · ·54 Antworten
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PDF
LMD18200_-_HBr__cke.pdf
10 mA (max) Current Sense Output IOUT e 1A (Note 8) 377 325/300 mA (min) 425/450 mA (max) Current Sense Linearity 1A s IOUT s 3A (Note 7) g 6 g 9 % Undervoltage Lockout Outputs turn OFF 9 V (min) 11 V (max) T JW Warning Flag Temperature Pin 9s 0.8V, Le 2 mA 145
in „LMD18200 current sense Charakteristik. Erfahrung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MLX90609_standard_datasheet.pdf
MLX90609EEA-E2 E (-40°C to 85°C) EA (CLCC32) E2 ±150 °/s MLX90609EEA-R2 E (-40°C to 85°C) EA (CLCC32) R2 ±300 °/s Note: Other Full Scale Ranges can be provided. Please contact Melexis. Functional Diagram General Description The MLX90609 Angular Rate Sensor is a full gyroscopic system. A single SMD package contains
in „[AVR] MLX90609 Temperatur berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD66002.pdf
A 1 resistance VCC– V EE= 6 to 8V R — — 7.5 k I = 100 A 1 ON2 ON VCC– V EE= 8 to 17V Input leakage IL1 CL1, CL2, M, SHL, E, –5 — 5 A VIN = VCCGND current (1) DIOL, DIOR, DR, DL, FCS, TEST1, and TEST2 Input leakage IL2 V1 to V4 –25 — 25 A VIN = VCCV EE current (2) Consumption GND1 — — — 1.0 mA CL2= 2.5
in „Grafikdisplay 480x64 UMS-7024AN-G“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0005359_MLX90609_standard_datasheet.pdf
MLX90609EEA-E2 E (-40°C to 85°C) EA (CLCC32) E2 ±150 °/s MLX90609EEA-R2 E (-40°C to 85°C) EA (CLCC32) R2 ±300 °/s Note: Other Full Scale Ranges can be provided. Please contact Melexis. Functional Diagram General Description The MLX90609 Angular Rate Sensor is a full gyroscopic system. A single SMD package contains
in „SPI ansteuerung von Gyro“ · Mikrocontroller und Digitale Elektronik ·
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ICL7660.pdf
. . . . . . . . . . . 20 A for VMaximum Lead Temperature (Soldering, 10s). . . . . . . . . . . . .300 C Output Short Duration (V ≤ 5.5V) . . . . . . . . . . . .Continuous SUPPLY (SOIC - Lead Tips Only) Operating Conditions Temperature Range ICL7660M. . . . . . . . . . . . . . . . . . . . . . . . . .
in „LCD Kaputt?“ · Mikrocontroller und Digitale Elektronik ·
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LX200_Classic_RS232_Pinout.PDF
Youwlllalsoneed a or25-pin FS.232 connector, whichevaryour compulor us€slor lh€serialpon, Al oi lheabove il6ms are avallablal most oleclronics hardwaro storos. 220 lFkoyl$= w'THENa$-'1,:[iw{':PAINI$1,a$:FeMGOwosl Fig,29 shows lhe 1X200 pircuis ior lho 6nine lelephono 240 lFk6yl$="o TFENa!= ]l:MorPBINT n1,a
in „rs232 Übertragung hängt fest“ · Mikrocontroller und Digitale Elektronik ·