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PDF
CD00277537.pdf
continued) Max (1) Symbol Parameter Conditions f Typ Unit HCLK 55 °C 85 °C 105 °C Supply MSI clock, 65 kHz 65 kHz 40 70 70 80 current in Sleep MSI clock, 524 kHz Range 3, 524 kHz 60 90 90 100 DD mode, V =1.2V µA (Sleep) CORE code MSI clock, 4.2 MHz VOS[1:0] = 11 4.2 MHz 210 250 250 260 executed from Flash
in „SPI-Schnittstelle Befehl: SPI_I2S_SendData(spi2, data)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPACE_VECTOR_MODULATION_AND_CONTROL.pdf
)⋅ ⋅dq + a K p (5-27) , g Kn+ d + Asin(q ) + I∫sin(q +f )⋅ ⋅dq b K n which results in the expression i = −3⋅I ⋅cos(f ) ⋅[2⋅(4⋅K + 2⋅d − 4)⋅ A −d 2 2 − A ⋅p ⋅( K − K )+ NP 4⋅p ⋅ A⋅K ⋅K n n p (5-28
in „Literatur für Raumzeigermodulation“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RTC_AVR.pdf
AVR operates in Power- down mode, with only the asynchronous timer running from an external 32.768 kHz crystal. The software Real Time Clock (RTC) is is implemented using a 8-bit Timer/Counter with Overflow Interrupt. The software controls the Overflow Interrupt to count clock and calendar variables
in „Läuft der Timer während seinem Interrupt weiter?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Tiny15L.pdf
← PC + k + 1 None 1/2 BRSH k Branch if Same or Higher if (C = 0) then PC ← PC + k + 1 None 1/2 BRLO k Branch if Lower if (C = 1) then PC ← PC + k + 1 None 1/2 BRMI k Branch if Minus if (N = 1) then PC ← PC + k + 1 None 1/2 BRPL k Branch if Plus if (N = 0) then PC ← PC + k + 1 None 1/2 BRGE k Branch if Greater or Equal, Signed if (N ⊕ V= 0) then PC ← PC + k + 1 None 1/2 BRLT k Branch if Less Than Zero, Signed
in „Frequenzschalter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206.pdf
XR-2206 R3 10K 25K 1mF + VCC 1mF VCC 5.1K 5.1K Figure 2. Basic Test Circuit 6 26 ÎÎÎÎÎTriangle 70⋅C Max. s 5 Package l ÎÎÎÎÎÎÎÎÎÎ Dissipation V 22 e ÎÎÎÎÎÎÎÎÎÎ 1KW g 4 l ÎÎÎÎÎÎÎÎÎÎ Sinewave ) o A 2K W t 3ÎÎÎÎÎÎÎÎÎÎ
in „Funktionsgenerator mit XR2206“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XR2206.pdf
XR-2206 R3 10K 25K 1mF + VCC 1mF VCC 5.1K 5.1K Figure 2. Basic Test Circuit 6 26 ÎÎÎÎÎTriangle 70⋅C Max. s 5 Package l ÎÎÎÎÎÎÎÎÎÎ Dissipation V 22 e ÎÎÎÎÎÎÎÎÎÎ 1KW g 4 l ÎÎÎÎÎÎÎÎÎÎ Sinewave ) o A 2K W t 3ÎÎÎÎÎÎÎÎÎÎ
in „XR2206 Sinus Generator“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206v103.pdf
XR-2206 R3 10K 25K 1mF + VCC 1mF VCC 5.1K 5.1K Figure 2. Basic Test Circuit 6 26 ÎÎÎÎÎTriangle 70⋅C Max. s 5 Package l ÎÎÎÎÎÎÎÎÎÎ Dissipation V 22 e ÎÎÎÎÎÎÎÎÎÎ 1KW g 4 l ÎÎÎÎÎÎÎÎÎÎ Sinewave ) o A 2K W t 3ÎÎÎÎÎÎÎÎÎÎ
in „Funktionsgenerator XR2206; Tastverhältins des Rechtecksignals ändern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206v103.pdf
XR-2206 R3 10K 25K 1mF + VCC 1mF VCC 5.1K 5.1K Figure 2. Basic Test Circuit 6 26 ÎÎÎÎÎTriangle 70⋅C Max. s 5 Package l ÎÎÎÎÎÎÎÎÎÎ Dissipation V 22 e ÎÎÎÎÎÎÎÎÎÎ 1KW g 4 l ÎÎÎÎÎÎÎÎÎÎ Sinewave ) o A 2K W t 3ÎÎÎÎÎÎÎÎÎÎ
in „Signalgenerator XR2206 Spanungsgesteuerte Amplitudenverstellung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206CP.pdf
XR-2206 R3 10K 25K 1mF + VCC 1mF VCC 5.1K 5.1K Figure 2. Basic Test Circuit 6 26 ÎÎÎÎÎTriangle 70⋅C Max. s 5 Package l ÎÎÎÎÎÎÎÎÎÎ Dissipation V 22 e ÎÎÎÎÎÎÎÎÎÎ 1KW g 4 l ÎÎÎÎÎÎÎÎÎÎ Sinewave ) o A 2K W t 3ÎÎÎÎÎÎÎÎÎÎ
in „XR2206 - split supply“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XR2206v103.pdf
XR-2206 R3 10K 25K 1mF + VCC 1mF VCC 5.1K 5.1K Figure 2. Basic Test Circuit 6 26 ÎÎÎÎÎTriangle 70⋅C Max. s 5 Package l ÎÎÎÎÎÎÎÎÎÎ Dissipation V 22 e ÎÎÎÎÎÎÎÎÎÎ 1KW g 4 l ÎÎÎÎÎÎÎÎÎÎ Sinewave ) o A 2K W t 3ÎÎÎÎÎÎÎÎÎÎ
in „Sinusfrequenz mittels Gleichspannung einstellen XR2206“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_XR2206.pdf
XR-2206 R3 10K 25K 1mF + VCC 1mF VCC 5.1K 5.1K Figure 2. Basic Test Circuit 6 26 ÎÎÎÎÎTriangle 70⋅C Max. s 5 Package l ÎÎÎÎÎÎÎÎÎÎ Dissipation V 22 e ÎÎÎÎÎÎÎÎÎÎ 1KW g 4 l ÎÎÎÎÎÎÎÎÎÎ Sinewave ) o A 2K W t 3ÎÎÎÎÎÎÎÎÎÎ
in „Funktionsgenerator mit XR2206 - Ausgangssignale sind unsauber“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Arduino_Galaxy_vs_blackhole_fast.ino
[k_Force]) * (sx_vorher[l_Force] - sx_vorher[k_Force]) + (sy_vorher[l_Force] - sy_vorher[k_Force]) * (sy_vorher[l_Force] - sy_vorher[k_Force]) + (sz_vorher[l_Force] - sz_vorher[k_Force]) * (sz_vorher[l_Force
in „Astrosimulationen/Galaxienkollision mit Arduino“ · Projekte & Code ·
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PDF
JBT6K71-AS_A__v1.42_2006-02-07_E.PDF
JBT6K71-AS(A) TOSHIBA CMOS Digital Integrated Circuit Silicon Monolithic JBT6K71-AS (A) 256-Output Source Driver with On-Chip RAM and Power Supply System for Low-Temperature Poly-Si TFT-LCD The JBT6K71-AS(
in „LCD aus Benq EL71 Handy“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A020BL01.pdf
n O e e i d F s d n t d U tv v O l E a a i tv e t n e l L r L i e t e e r L n L t I p e I d t d 5 k l a k l S t m v tv v U o I I . r i v P F t r v t o t . F 0 N N t N N t S S D S S D V H V H ALL RIGHTS STRICTLY RESERVED. ANY PORTION OF THIS PAPER SHALL NOT BE REPRODUCED, COPIED, OR TRANSFORMED TO ANY
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PDF
AMT1001.pdf
values <0.5 %RH/yr value may be higher. See manual application store information. 7.2 Temperature NTC10K temperature sensor is a thermistor. Temperature sensor parameters shown in Table 3. Table 3: 10K NTC B.3435 technical parameters Specification Rated zero power B Dissipation Thermal time Rated Power
in „AMT1001 Temperatur-/Feuchtigkeitssensor RPi3B+“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM350-D.PDF
please refer to our Tape and Reel Packaging SpecificationsBrochure, BRD8011/D. V in 310 310 230 120 5.6K 6.3V 170 K 160 . 12K 6 5.0pF K K 200 13K 1 2 1 3 1 6.8K 5 1 6.3V 3 30 30 6 pF pF 2.4K 105 K K 0 1 190 3 5 1 5 12.5K 4 0.45 V out Adjust Figure 2. Representative Schematic Diagram VCC V OH− VOL Line Regulation
in „Einstellbare Last erzeugen für Netzteil-Test“ · PC Hard- und Software ·
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Datei
ATTiny861_VGA_asm.bas
'-------------------- ' 'Mikrocontroller: ATTiny861 'Frequenz: 24,576 MHz 'PORTB.0 = HSync (über 1k Ohm an HSync) 'PORTB.1 = Monochromsignal (über 100 Ohm an R, G & B) 'PORTB.2 = VSync (über 1k Ohm an VSync) 'PORTA = Data 0 - 7 / Adr 0 - 7 'PORTB.3 = Adr 8 'PORTB.6 = WriteClk $regfile = "ATTiny861.
in „EEPROM-lese-Routine "veräppelt" mich“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datenblatt-pam8403.pdf
% 1 0.5 0.5 0.2 0.2 0.1 0.1 0.05 Po=1 2.W5W 0.05 Po=2 0W.5W 0.02 0.02 0.01 0.01 20 50 100 200 500 1k 2k 5k 10k 20k 20 50 100 200 500 1k 2k 5k 10k 20k Hz Hz V =DD, R =4 ,Gain =L18.5dΩ V =DD, R =8 ,Gain =L18.5dBΩ Power Analog Microelectronics,Inc English:www.poweranalog.com :www.power-analog.com 03/2007
in „PAM8403 Stereo (Kopfhörer) zu Mono (Lautsprecher) - wie?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
nacrt_main_board_rev10a_coulomb.pdf
GRID-L GRID-L CN9, pin 10 CN9, pin 9 P4 C120 W14 HCT1-Current 10nF R193 controller MOV3 285V AC 665K R155 R131 LEM 561KN20 HY-50P/SP21 665k 665k 6 R184 665K R148 R136 5 1 RY3 665k 665k 4 3 R195 R149 R129 155 832HA-1A-F-C 665k 665k 2 665K Ohm 12 V relay C121 40A 10nF 1 285V AC R43 R8 R147 C33 R135 30K
in „SUCHE Transistor KGF75N65KDF“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Raspi_temp_Sender.ino
Martin Harizanov (harizanov.com) to work with DS18B20 // To use with DS18B20 instead of TMP36, a 4K7 resistor is needed between the Digital 9 and Digital 10 of the ATTiny (Vdd and DQ) // To get this to compile follow carefully the discussion here: http://arduino.cc/forum/index.php?topic=91491.0 //
in „RFM 12B SP Rev.1 mit 5V oder nicht ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UKW_Berichte_Inhalt_2017-2019.pdf
Substrat auflöten 67 - 71 Bernd Kaa, DG 4 RBF Breitbandverstärker für 73 - 81 Alexander Meier, 100 kHz bis 18 GHz DG 6 RBP Strahlende Kabel 83 - 96 Olaf Schilperoort Empfängerbau mit 50 Ohm-Baugruppen (="Gainblocks") 99 - 109 Gunthard Kraus, Teil 3: Die 23-cm-Version DG 8 GB Fundstelle Internet 111
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PDF
G6RN_0911.pdf
current rating: 8 A). Low profile (0.39 W x 1.12 L x 0.59 H inches) High dielectric strength of 4 kV with 8 mm creepage/ clearance. Sealed plastic construction. R C XVDE Ideal for switching contactors, solenoids and motors. RoHS Compliant. Ordering Information Classification Structure Contact material
in „[V]erkaufe günstige, neue, Relais von Omron (10A@250VAC)“ · Markt ·
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PDF
Meanwell_S-100F-spec.pdf
IMMUNITY Compliance to EN61000-4-2,3,4,5,6,8,11, EN55024, light industry level, criteriaA MTBF 314.9K hrs min. MIL-HDBK-217F (25 ) OTHERS DIMENSION 199*98*38mm (L*W*H) PACKING 0.65Kg; 20pcs/14.2Kg/0.8CUFT NOTE 1. All parameters NOT specially mentioned are measured at 230VAC input, rated loadof ambient
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PDF
cd4016b.pdf
MATERIALS INFORMATION www.ti.com 3-Jun-2022 TAPE AND REEL INFORMATION REEL DIMENSIONS TAPE DIMENSIONS K0 P1 W B0 Reel Diameter Cavity A0 A0 Dimension designed to accommodate the component width B0 Dimension designed to accommodate the component length K0 Dimension designed to accommodate the component
in „Schalter für 3 Spannungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SMPD_MOSFET_and_IGBTs_Product_Brief.pdf
commented Dr. Nathan Zommer, Founder and CEO of IXYS C Corporation, regarding the recently released 1kV/30A Q3 HiperFET™ Power MOSFET in the SMPDpackage. “Ourlighterproductsuselessmaterial,requirelessenergytoship,andresult in lower weight products for our customers, a critical desired feature in a lot
in „IXYS Bauteil / Keine Info gefunden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
cd4007ub.pdf
MATERIALS INFORMATION www.ti.com 3-Jun-2022 TAPE AND REEL INFORMATION REEL DIMENSIONS TAPE DIMENSIONS K0 P1 W B0 Reel Diameter Cavity A0 A0 Dimension designed to accommodate the component width B0 Dimension designed to accommodate the component length K0 Dimension designed to accommodate the component
in „CMOS: NAND bauen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P4SMA_LIF.PDF
Derating Curve s e r 10 100 e )P (P S W n ( e % 80 A e u e M w C a P o n S e )Pc 60 4 l 1 PPe P P r P k w i 40 e o n - P a P l e P P D 20 0.2x0.2" (5.0x5.0mm) k e Copper Pad Area P 0.1 0 0.000001 0.00001 0.0001 0.001 0 25 50 75 100 125 150 175 d -Pulse Width (sec.) TAAmbient temperature (ºC) Figure 3 -
in „Warum noch KFZ-Relais?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DTC114.pdf
Characteristic Symbol Min Typ Max Unit Output Voltage (off) V OH 4.9 — — Vdc (V = 5.0 V, V = 0.5 V, R = 1.0 k ) DTC114E CC B L DTC124E DTC144E DTC114Y DTC123E DTC143E (VCC = 5.0 V,BV = 0.05 V,LR = 1.0 k ) DTD113E (VCC = 5.0 V,BV = 0.25 V,LR = 1.0 k ) DTC114T DTC143T DTC143Z Input Resistor DTC114E R1 7.0 10 13
in „Transistor mit Vorwiderstand (Digitaltransistor) in TO92 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
loa3serie.pdf
A 1 A --- --- --- --- Umweltbedingungen Lagerung DIN EN 60721-3-1 Klimatische Bedingungen Klasse 1K3 Mechanische Bedingungen Klasse 1M2 Temperaturbereich -20...+60 °C Feuchte <95% r.F. Transport DIN EN 60721-3-2 Klimatische Bedingungen Klasse 2K2 Mechanische Bedingungen Klasse 2M2 Temperaturbereich
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PDF
744830007215-1020826.pdf
Hole Pattern: [mm] Electrical Properties: Properties Test conditions Value Unit Tol. Inductance 10 kHz/ 0.1 mA L 2x0.7 mH ±30% 1 2 O 2,6 Rated Current @ 70 °C I 21.5 A max. R 4 3 DC Resistance @ 20 °C R DC 2x3.8 mΩ max. , 4 3 Rated Voltage 50 Hz UR 760 V (AC) max. 25,0 ±0,5 0 , ± 5 Insulation Test Voltage
in „Induktion Datenblatt angaben“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
sanduhr_1.html
const byShade = [[], [], [], []]; for (let i = 0; i < N; i++) byShade[shade[i]].push(i); for (let k = 0; k < 4; k++) byShade[k] = Int32Array.from(byShade[k]); /* ================= Nachbarschaftsgitter ================= */ const CELL = 2 * R0 * 1.15 + 0.02, INV_CELL = 1 / CELL; const GX = Math.ceil(
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PDF
r5421n.pdf
Capacitance C3 18) Output Delay of Short protection vs. Capacitance C2 R1=100Ω, C1=0.1µF, C3=0.01µF, R2=1kΩ V DD=3.8V→4.3V(R1=100Ω, C1=0.1µF, R2=1kΩ, C2=0.1µF) 10000 2 ) s1.8 µ e n r1.6 t h c1000 -1.4 o e1.2 P O r f 1 h 100 y S l0.8 o D a u0.6 e 10 t0.4 t u u O0.2 u 0 O 1 0 0.05 0.1 0.15 0.2 0.25 0.001 0.01
in „Li-Ion Schutzschaltung für MagLite Mod“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD7741_7742.pdf
2 Parameter Min Typ Max Units Conditions/Comments DC PERFORMANCE Integral Nonlinearity fCLKIN= 200 kHz 3 0.012 % of Span 4 fCLKIN= 3 MHz 3 0.012 % of Span f = 6.144 MHz 0.024 % of Span V > 4.8 V CLKIN DD Offset Error 40 mV Gain Error 0 +0.8 +1.6 % of Span Offset Error Drift 30 V/°C Gain Error Drift
in „max Inputfrequenz des VFC AD7741“ · Mikrocontroller und Digitale Elektronik ·
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PDF
50-555Circuits.pdf
graph and where it crosses the 0.1u line, is the answer. The result is approx 900Hz. Suppose R1 = 10k, R2 = 100k and C = 1u Using the formula on the graph, the total resistance = 10 + 100 + 100 = 210k The scales on the graph are logarithmic so that 210k is approximately near the first "0" on the 100k
in „20 Volt Signal zu 12 Volt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
476733_1.pdf
R = 50Ω -60 PIN 12 TO 3 VCC = 4.5V GND = -4.5V -8 -80 VEE = -4.5V RL = 50Ω PIN 12 TO 3 -10 -100 10K 100K 1M 10M 100M 10K 100K 1M 10M 100M FREQUENCY (Hz) FREQUENCY (Hz) FIGURE 12. CHANNEL ON BANDWIDTH (HC/HCT4051) FIGURE 13. CHANNEL OFF FEEDTHROUGH (HC/HCT4051) 0 0 VCC = 4.5V V CC= 2.25V -2 GND = -4.5V
in „Pinbelegung 74HC4053 - 4053“ · Mikrocontroller und Digitale Elektronik ·
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PDF
edip240-7.pdf
EEP_WP In H: Write Protect for int. EEPROM 39 N.C. not connected open-drain with internal pullup 20..50k eingehaltenwerden,kanneinByte 20 TEST IN IN (Power-On) L: Testmode 40 N.C. not connected SBUF Out OUT L: data in sendbuffer mit bis zu 400 kHz übertragen werden. Hinweis: Die Pins BA0..2, SA0..2, DPOM
in „Edip240-7 Touchscreen läuft nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S8264A_B_C_E.pdf
+25°C), Accuracy : ±30 mV (−5°C to +55°C) • Overcharge hysteresis voltage n (n = 1 to 4) −0.520 ±0.210 V, −0.390 ±0.160 V, −0.260 ±0.110 V, −0.130 ±0.06 V, None (2) Delay times for overcharge detection can be set by an internal circuit only (external capacitors are unnecessary) (3) Output control function
in „IC-Identifikation: Q5A + KK9“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SSM2019.pdf
C H VS= 15V 90 V GAIN 10 n 80 V GAIN = 1 – –25 I 70 G S 10 A E – 60 L D E O E f = 1kHz OR 10kHz N 50 V I A A20 T = 25 C N E E A E P 40 - R L 2k G 1 I T VS= 15V T 30 K L A15 V 20 P I R 10 0.1 1 10 100 1k 0 10 100 1k 10k 100k 1M 100 1k 10k 100k 1M GAIN FREQUENCY – Hz FREQUENCY – Hz TPC
in „Wie arbeitet der SM2019 Vorverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
3193_datasheet.pdf
Va 3 7 + 20K 6 2 CA3193 +15V R R - R 1 R 4 1K V 1 2 7 -15V R 1 - 6 VOUT 3 10K CA3193 R R▯+▯∆R R2 1K R3 3 9K V 2 + RL 10K R4 4 20K +15V -15V R 2 - 7 4 ALL▯RESISTANCE▯VALUES▯ARE▯IN▯OHMS. 6 9K CA3193 3 + VOUT R 4
in „OP Temperatursteuerung von 1984 verstehen und Reparieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DA6180D_003.pdf
V, Vin=20 mVrms 45 Stand-By Current DDoff See note below. 0.1 A Input Frequency Range fIN 40 100 kHz Minimum Input Voltage V IN min 0.4 1 Vrms Maximum Input Voltage VIN max 20 mVrms Receiver Input Resistance R RFI Differential Input, 700 k Receiver Input Capacitance C RFI f=40 kHz…77.5 kHz 0.6
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PDF
74HC_HCT4851.pdf
if the switch clamping current rating is observed. [3] For SO16 packagetoterates linearly with 8 mW/K above 70 °C. For TSSOP16 package:toterates linearly with 5.5 mW/K above 60 °C. For DHVQFN16 packages:toterates linearly with 4.5 mW/K above 60 °C. 74HC_HCT4851 All information provided in this document
in „4051 Analog-Multiplexer, PullUps?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IL300.pdf
mW/ ° F P2 F K3—Transfer Gain Forward Current lf 60 mA The Transfer Gain is the ratio of the Forward Gain to the Servo Surge Current lpk 250 mA gain, i.e., K3 = K2/K1. (Pulse width <10 s) K3—Transfer Gain Linearity
in „Analoge Optokopplung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssm2404.pdf
2 V rms, A f = 1 kHz, R L 100 k , with 80 kHz Filter) REV. B –3– SSM2404 9.5 9.0 M V – 8.5 TA= 25°C G VS= 12V I f = 20kHz W S 8.0 E A L 7.5 O V U 7.0 P U O 6.5 6.0 100 1k 10k 100k LOAD RESISTANCE – Figure 8. Output Voltage
in „Audio Switch IC gesucht (4066 Alternative)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC34064P-005.pdf
typically 340 ▯A at 4.59▯V. The equations are accurate to 〉 10% with R less than 150 ▯ and R between 1.5 k▯ and 10 k▯▯ H L Figure 10. Low Voltage Microprocessor Reset with Additional Hysteresis http://onsemi.com 4 MC34064, MC33064, NCV33064 + 1.0k + 2 (2) - 2 (2) Power Supply 1 (1) 1 (1) - - - Solar + + Cells
in „Brownout detector beim MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BM83_Embedded_Mode_Reference_Circuit_PCB.pdf
2 203UIP PC0603 0603 50V 0603 50V P00603 R27 P1_3 333SDAUIP CL8 10k TEST_MODE PI303 OUTMR P0 P80 I2S Test Header (OPTIONAL) PR0603NP 15uH CJ4 PR P2 1% P0_0 IP03PWRDN GND_SUB PI301 DR1 DRLN 1104JIP R28 R29 27 16 RFS1 RFS1N 2204JIP 4.7k 4.7k PC MCLK1 PI307XTI CONFIG PU316
in „BM83SM1-00TA Blootoh Audio“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAS6180C.pdf
Frequency DCF77 Germany 77.5 kHz 77.503 kHz HGB Switzerland 75 kHz 75.003 kHz MSF United Kingdom 60 kHz 60.003 kHz WWVB USA 60 kHz 60.003 kHz JJY Japan 40 kHz and 60 kHz 40.003 kHz and 60.003 kHz BPC China 68.5 kHz 68.505 kHz The
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PDF
LF-SMCJ.pdf
to 150 °C • IEC-61000-4-2 ESD • Pb-free E3 means 2nd StorageTemperature Range T STG -65 to 175 °C 30kV(Air), 30kV (Contact) level interconnect is TypicalThermal Resistance Junction R θJL 15 °C/W • ESD protection of data Pb-free and the terminal to Lead lines in accordance with finish material is tin(
in „Welches Bauteil ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
opa847.pdf
otherwise noted. A G L PHOTODIODE TRANSIMPEDANCE SETTLING TIME FREQUENCY RESPONSE 0.25 89 G = +20V/V RF= 20kΩ C = 10pF 0.20 RL= 100Ω CFAdjusted [20log 20kΩ] D ) V = 2V Step Ω 86 ( 0.15 O B C D 20pF e 0.10 ( CD= 100pF CD= 50pF l i 83 V 0.05 G a e i 0 n 80 0.01µF 20kΩOPA847 V f d O t –0.05 e n m 77 20kΩ r –0.10
in „ADC für OPA847“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Ablerex_ESx000_AS3100_09TH0459_2.pdf
09TH0459-AS3100_2 Information for Production testing: Visual Inspection Dielectric Testing: AC to PE: 1,1kVac or 1,6kVdc, 1s AC/DC to USER: 1,35kVac or 1,9kVdc, 1s DC to PE: 1,35kVac or 1,9kVdc, 1s AC to DC: 1,35kVac or 1,9kVdc, 1s Performance test Not required explicit by the standard, but recommended by
in „Wechselrichter effekta es 5000 streikt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
oki-ml380_000.pdf
Horizontaler 9 09 HT Tabulatorsprung Horizontaltabulatoren 27 68 1B 44 ESC D setzen n1...kn 00 n 1.. k 00 n1... k NUL Horizontaltabulatoren 27 68 0 1B 44 00 ESC D NUL löschen Vertikaler 11 0B VT Tabulatorsprung Vertikaltabulatoren setzen 27 66 1B 42 ESC B n ... n 0 n ... n 00 n ... n NUL 1 k 1 k 1 k Tabulatoren
in „USB zu RS232“ · Mikrocontroller und Digitale Elektronik ·