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PDF
ADC_LTC1865.pdf
INFORMATION VCC VCC IC2B VCC IC3A IC4B 74AC74 IC6D IC2A 74AC74 74AC08 4 5 V V IC5C IC4A 74AC74 10 9 PRE Q CC IC1A CC 74AC86 74AC32 74AC08 4 5 12 PRE Q 2 D 74AC74 2 PRE Q CLK 11 D CLK 3 CLK 4 5 D vCLK 1 6 DATA IN 2 PRE Q CLK 3 CLK 13 CLR Q 8 CLR
in „LTC1865 Halber Messbereich“ · Mikrocontroller und Digitale Elektronik ·
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Datei
log_2107.txt
144 11 212 14 42 128 128 129 153 128 1 173 85 1 138 38 160 0 160 162 160 41 117 167 242 88 0 6 96 1 180 0 0 0 0 0 2 80 56 169 3 1 5 101 0 5 182 DATA: 25.403494 A8 0E 00001110 A9 : 101 0 5 5 45 1 155 DATA: 25.411243 AA FF 11111111 AB : 0 0 172 0 DATA: 27.146261 A8 1C 00011100 A9 : 3 1 5 101 0 5 182 DATA
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PDF
toshiba_satellite_l755.pdf
/6.3V_8X 10U/6.3V_8X AC31 VCC35 VCCIO33 C11 AK20 VAXG40 3 AC30 VCC36 VCCIO34 B14 AK18 VAXG41 R B2A 10/07 AC29 VCC37 VCCIO35 B12 AK17 VAXG42 AC28 VCC38 VCCIO36 A14 AJ24 VAXG43 D AC27 VCC39 VCCIO37 A13 AJ23 VAXG44 D AC26 VCC40
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nightsky_arx15.pdf
AC11 RSVD J38 D30 VSS VSS J17 AJ28 VSS VSS AR34 P5 VSS VSS AC13 RSVD K34 D31 VSS VSS J19 AJ29 VSS VSS AR35 P8 VSS VSS AC27 RSVD K38 D32 VSS VSS J22 AJ32 VSS VSS AR38 P10 VSS VSS AC29 RSVD R35 c D33 J25
in „SMD TGAJ TVS Diode USB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TI_TPS92360_Led_Treiber.pdf
Duty Cycle Figure 8-5. Efficiency vs Dimming Duty Cycle SW (20 V/DIV) SW (20 V/DIV) VOUT(100 mV/DIV, AC coupled) V (100 mV/DIV, AC coupled) OUT Inductor0 mA/DIV) Inductor0 mA/DIV) LED(9 mA/DIV) LED(9 mA/DIV) Time = 1 µs/DIV Time = 1 µs/DIV Figure 8-6. Switching-Dimming Duty = 100% Figure 8-7. Switching-Dimming
in „VIN am Konstantstromtreiber?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
74HC4094_74HCT4094_PHI.pdf
195 245 295 ns 2.0 Fig.7 CP to QP 23 39 49 59 4.5 n 18 33 42 50 6.0 PHL/ PLH propagation delay 58 180 225 270 ns 2.0 Fig.8 STR to QPn 21 36 45 54 4.5 17 31 38 46 6.0 t / t 3-state output enable time 55 175 220 265 ns 2.0 Fig.9 PZH PZL OE to QPn 20 35 44 53 4.5 16 30 37 45 6.0 PHZ/ PLZ 3-state output
in „HC4094 Schieberegsiter Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PS-54132-058_1_C.pdf
54132-**39 LEAD FREE ** Refer to the drawing. 3. RATINGS Item Standard 50 V Rated Voltage(MAXIMUM) [AC( rms) / DC] 0.5 A Rated Current(MAXIMUM) *1 Ambient Temperature Range. -20 +85°C *1 *1 . Including terminal temperature rise. REV. A B C SHEET 1 8 1 8 1 8 REVISE ON PC ONLY TITLE: 0.5mm PITCH FPC CONNECTOR
in „Connector Firma Molex“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
74HC_HCT4094_CNV_2.pdf
195 245 295 ns 2.0 Fig.7 CP to QP 23 39 49 59 4.5 n 18 33 42 50 6.0 PHL/ PLH propagation delay 58 180 225 270 ns 2.0 Fig.8 STR to QPn 21 36 45 54 4.5 17 31 38 46 6.0 t / t 3-state output enable time 55 175 220 265 ns 2.0 Fig.9 PZH PZL OE to QPn 20 35 44 53 4.5 16 30 37 45 6.0 PHZ/ PLZ 3-state output
in „Takt vor einem Schieberegister invertieren, zwecks Anpassung an SPI-Mode des Masters“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UMW-SMBJ.pdf
) of 260 °C • AEC-Q101 qualified available 0.060(1.52) 0.030(0.76) - Automotive ordering code: base P/NHE3 or P/NHM3 0.008(0.2) 0(0) 0.220(5.59) 0.205(5.21) MECHANICAL DATA Case: SMB (DO-214AA) Dimensions in inches and
in „TVS Diode gefälscht?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM4250.PDF
Semiconductor National Semiconductor National Semiconductor 1111 West Bardin Road EuropeFax: ( 49) 0-180-530 85 86 13th Floor, Straight Block, Tel: 81-043-299-2309 Arlington, TX 76017 Emaila cnjwge tevm2.nsc.com Ocean Centre, 5 Canton Rd. Fax: 81-043-299-2408 Fax: 1(800) 737-7018 EnglisTel: ( 49) 0-180-532 78 32 Hong Kongui, Kowloon ItaliaTel: (49) 0-180-534 16 803 58Fax: (852) 2736-9960 Nationaldoesnotassumeanyresponsibilityforuseofanycircuitrydescribed,nocircuitpatentlicensesareimpliedandNationalreservestherightatanytimewithoutnoticetochangesaidcircuitryandspecifications
in „Appliaktion mit DDR OPV B176“ · Analoge Elektronik und Schaltungstechnik ·
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4600x.pdf
Ohms Code Ohms Code Ohms Code Ohms Code Ohms Code Popular Resistance Values (104 Circuit)** 10 100 180 181 1,800 182 15,000 153 120,000 124 22 220 220 221 2,000 202 18,000 183 150,000 154 Resistance 27 270 270 271 2,200 222 20,000 203 180,000 184 Ohms Code 33 330 330 331 2,700 272 22,000 223 220,000
in „Bauteil Kondensatornetzwerk Bezeichnung "4X"?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
asus-p701-unlocked.pdf
AC18 D20 A11 V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V V AC16 VCC4 D22 VCORE +VCCP A14 VSS4 VSS157 AC14 VCC5 E5 A17 VSS5 VSS156 AC12 VCC6 E7 A20 VSS6 VSS155 AC10 VCC7 E9 A23 VSS7 VSS154
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PDF
Klimafestigkeit60086.pdf
in Eingangs- spannung kreisenvonOptokopplern AC-14 6 1,1 0,7 6 1,1 0,7 2 10 6 AC-13 Steuern von Halbleiterlast mitTransformatortrennung AC-15 10 1,1 0,3 10 1,1 0,3 2 10 6 AC-14 Steuern kleiner elektromagnetischer Last (max. 72 VA) AC-15 Steuern elektromagnetischer
in „Welchen Kondensator als Ersatz?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Clock_LTC1064.pdf
182 91 363 182 91 45 345 725 362 181 91 362 181 91 45 346 723 361 181 90 361 181 90 45 347 720 360 180 90 360 180 90 45 348 718 359 180 90 359 180 90 45 349 716 358 179 90 358 179 90 45 350 714 357 179 89 357 179 89 45 351 712 356 178 89 356 178 89 45 352 710 355 178 89 355 178 89 44 353 708 354 177
in „Digital verstellbarer Analoger Filter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Storm_Matrixtastatur_Datasheet.pdf
Current (contacts) 50 mA (max) 50 mA (max) Keytop Travel 1.4mm (nominal) 1.4mm (nominal) Actuating Force 180gm (nominal) 180gm (nominal) Connector 0.1” Pitch, gold plated square 0.1” Pitch, gold plated square pin, male with locking ramp pin, male White Back Light N/A Current limited to n x 10mA @ Vf Power
in „Neue Storm 4x4 Matrixtastatur mit roter Hintergrundbeleuchtung“ · Markt ·
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PDF
btb04-600sldatasheet.pdf
of A2 referenced to A1. THERMAL RESISTANCE Symbol Parameter Value Unit Rth (j-c) Junction to case (AC) 3 °C/W Rth (j-a) Junction to ambient 60 °C/W 2/5 BTB04-600SL PRODUCT SELECTOR Part Number Voltage Sensitivity Type Package BTB04-600SL 600V 10 mA Standard TO-220AB ORDERING INFORMATION BT B 04 - 600
in „BTB04-600A ersetzen durch BTB600SL“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tl074.pdf
Table 1. Absolute maximum ratings Value Symbol Parameter Unit TL074M, AM, BM TL074I, AI, BI TL074C, AC, BC (1) V CC Supply voltage ±18 V (2) V i Input voltage ±15 V (3) Vid Differential input voltage ±30 V Ptot Power dissipation 680 mW Thermal resistance junction to ambient (4) (5) R thja DIP14 80 °C/
in „Nichtinvertierter Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
utf8_demo.c
, // ASCII-177 0xE2,0x96,0x93, // ASCII-178 0xE2,0x94,0x82, // ASCII-179 0xE2,0x94,0xA4, // ASCII-180 0xE2,0x95,0xA1, // ASCII-181 0xE2,0x95,0xA2, // ASCII-182 0xE2,0x95,0x96, // ASCII-183 0xE2,0x95,0x95, // ASCII-184 0xE2,0x95,0xA3, // ASCII-185 0xE2,0x95,0x91, // ASCII-186 0xE2,0x95,0x97, // ASCII
in „Cursorpositionierung, Farben und Codepage 437 Ausgabe im Linuxterminakl“ · Projekte & Code ·
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PDF
dogxl160-7_Datenblatt.pdf
disable Display(sleep) (12) Set DisplayEnable 0 1 0 1 0 1 1 1 C2 C2=1: enable Display(exit from sleep) AC0: 0=stop increment at end ,1=warp around (13) Set RAM Address Control 0 1 0 0 0 1 AC[2..0] AC1: 0=column, 1=page increment AC2: Set page increment: 0= +1, 1= -1 1 1 1 1 0 1 0 0 (30) Set Window Start
in „Zeichnen eines Punktes mit LCD_Plot_Point“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dogxl160-7.pdf
disable Display(sleep) (12) Set DisplayEnable 0 1 0 1 0 1 1 1 C2 C2=1: enable Display(exit from sleep) AC0: 0=stop increment at end ,1=warp around (13) Set RAM Address Control 0 1 0 0 0 1 AC[2..0] AC1: 0=column, 1=page increment AC2: Set page increment: 0= +1, 1= -1 1 1 1 1 0 1 0 0 (30) Set Window Start
in „LCD Display defekt oder einstellungen ändern ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA1558.pdf
GENERAL DESCRIPTION • Load dump protection The TDA1558Q is a monolithic integrated class-B output • AC and DC short-circuit-safe to ground and V amplifier in a 17-lead single-in-line (SIL) plastic power P package. The device contains 4 x 11 W single-ended or • Thermally protected 2 x 22 W BTL amplifiers
in „TDA1558 Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UHP-1000_Netzteil.pdf
TB1 2 3 . 3 8 2 5 TB3 9 1 7 1 4 5 6 SVR 2 14 4-ψ4.2 L=6 CN80 120 0 2 tc 4 tc : Max. Case Temperature AC Input Terminal(TB1) Pin NO.Assignment DC Output Terminal (TB2,TB3) Pin NO.Assignment Pin No. Assignment Terminal Max mounting torque Pin No. Assignment Terminal Max mounting torque 1 AC/L 2 DECA 1,2,3 +V (MW) 8Kgf-cm AC/N T42-ES11-03 13.8Kgf-cm 4,5,6 -V NEL-400 3 ※Control Pin No.Assignment(CN80): HRS DF11-14DP-2DS or equivalent 2 1 Mating Housing HRS DF11-14DS or equivalent Terminal HRS DF11-**SC or equivalent 14 13
in „Wie mit einem attiny/atxmega eine analoge Ausgansspannung erzeugen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Display_DOG_XL_160-7.pdf
DisplayEnable 0 1 0 1 0 1 1 1 C2 C2=0: disable Display(sleep) C2=1: enable Display(exit from sleep) AC0: 0=stop increment at end ,1=warp around (13) Set RAM Address Control 0 1 0 0 0 1 AC[2..0] AC1: 0=column, 1=page increment AC2: Set page increment: 0= +1, 1= -1 (30) Set Window Start Column 0 1 1 1 1
in „LCD Display 4x20 zu Graphik Display 128x64“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HM1507-3.06_Service_Manual_11-11-2005_EN.pdf
Interface Input impedance: 1MΩ II 15pF Peak detect: 20ms – 5μs/div. HZ70 Opto-Interface Inputcoupling: DC-AC-GD (ground) Operatingmodes: A or B, alternate A/B Output formats(HO79-6): PCL, Post Script Inputvoltage: max. 400V (DC + peak AC) X-MAG. x10 (±5%): 10ns/div. HPGL, EPSON Delay line: approx. 70ns Bandwidth
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PDF
HCNR200.pdf
D1 V -15 V EE1 1N4150 EE2 Figure 17. Precision Analog Isolation Amplifier. C3 10 pf C1 10 pf R6 R7 180 K 50 K R2 D1 180 K R4 - 680 GAIN + OC1 OC1 OC1 PD2 - PD1 LED VMAG VIN R1 + 50 K BALANCE OC2 OC2 OC2 PD1 + LED PD2 - R5 R3 D2 680 180 K C2 10 pf Figure 18. Bipolar Isolation Amplifier. 13 C3 10 pf C1 10 pf R5 R6 180 K 50 K D1 D3 - GAIN + OC1 - R4 PD2 R1 680 K VMAG V 220 K OC1 + IN PD1 R2 R3 10 K 4.7 K LED + D2 - D4 - + V CC C2 10 pf + - R7 6.8 K R8 2.2 K VSIGN OC2 6N139 Figure 19. Magnitude/Sign Isolation Amplifier
in „Spannung messen mit Arduino von zwei nicht verbundenen Batteriebänken (Segelboot)“ · Mikrocontroller und Digitale Elektronik ·
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N73_RM-132_schematics_v1.pdf
B3 Address/Data I/O NC_BGA AB1 EMINT(1:0) A3 ETMPipeB2 NOR NC_BGA AB23 AVILMA, BETTY 0 D20 RetuInt AC1 1 H22 TahvoInt B4 NC_BGA U14 B5 NC_BGA AC2 GND VSSDSP1 B6 NC_BGA AC22 GND U17 VSSDSP2 B7 NC_BGA AC23 GND P20 VSSDSP3 B8 B1 G21 VSSMCU1 NC_BGA GND G16 B9 NC_BGA B2 GND VSSMCU2 B10 NC_BGA B23 GND H7 VSSA
in „[V] 30 5x7 LED-Matrixen, Nokia N73 Handy-Teile“ · Markt ·
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PDF
AD603.pdf
–10 dB to +30 dB gain range, R = 500 Ω, and C = 5 pF, unless A S G L L otherwise noted. 40 4 225 3 180 30 2 135 1 90 GAIN s ) 20 ) 0 45 e B B g ( ( –1 0 e I 10.7MHz I ( A A PHASE E G 10 G –2 –45 A H –3 –90 P 100kHz 0 –4 –135 –5 –180 4 –6 –225 7 –10 - - –0.6 –0.4 –0.2 0 0.2 0.4 0.6 5 100k 1M 10M 100M
in „AD603 Output matching“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Powersoft_DigiMod_1000_schematic.pdf
F F F 1 7 7 7 R27 9 2 0 3 0 5 0 CN1 1 C CN9 N 1 . 1 . 1 . CN8 2P PH7.5mm R26 330▯± 1% C 72P 1.27mm 180° C C 0 C 0 C 0 72P 1.27mm 180° TP3 U3 330▯± 1% U7 D18 V 1 2 R25 1 8 1 1 8 2 0.45A/85V 2 1 8 % - - - - - 1 1.00K▯ ±1% TP13 NC NC D S R 1 0 1 N N N N N 9 1 CN3 1 2 7 2 7 C55 U ▯ 0 2 C C C C C C 2 CN17
in „Powersoft DigiMod 1500 Endstufe - DC Offset am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Z5U_Datenblatt.PDF
t 2.5 DC voltage reduces both the capacitance and dissipation e factor while the application of an AC voltage within a r P 0 reasonable range tends to increase both capacitance and e dissipation factor readings. If a high enough AC voltage is n -2.5 applied, eventually it will reduce capacitance just
in „Vielschicht statt Elko + Keramik“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
qt1081_1r0.04-15735.pdf
Tdf Response time - Fast mode 6 ms Tdn Response time - Normal mode 20 ms Tdl Response time - LP mode 180 ms 180ms LP setting Tdr Release time - all modes 20 ms End of touch 4.4 DC Specifications Vdd = 5.0, Ta = recommended, Cx = 5pF, Cs = 1nF; circuit of Figure 1.1 unless noted Parameter Description Min
in „Schlatung mit qt1081“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan einer Lötstation
J2 AC N/PE/L, F1 Fuse, T1 2x12V/2A, D1 1N4001, C1 470uF/25V, SW1A ON/OFF, J3 ESD-Connect, Heater, J1, Temp.sensor, R35 10K, RV4, B1K Temp.select, R36 1K, D2 1N4148, Q4 2SC945, RV1 2K, D3 1N4148, D4 1N4148,
in „Neue Spitze für Westfalia - Lötstation von ca. 1992“ · Mechanik, Gehäuse, Werkzeug · · Schaltpläne
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PDF
LM2595.pdf
/25 220/10 220/10 1 15 68 L30 180/35 180/35 220/10 150/16 5 40 100 L29 180/35 120/35 100/16 120/16 9 68 L21 180/16 180/16 220/10 150/16 0.5 20 150 L19 120/25 1200/25 100/16 100/20 40 150 L19 100/25 100/25 68/20 68/25 15 47 L31 220/25 220/25 68/20 120/20 18 68 L30 180/35 120/25 68/20 120/20 1 30 150 L36 82/25 82/25 68/20 100/20 12 40 220 L35 82/25 82/25 68/20 68/25 15 68 L21 180/25 180/25 68/20 120/20 0.5 20 150 L19 82/25 82/25 68/20 100/20 40 330 L26 56/25 56/25
in „Schaltregler LM2595“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX1674-MAX1676.pdf
VIN 2.4V A 2V TO 3V VOUT 3.3V VOUT 1V/div IOUT 2V/div M 200mA/div / 5 7 6 V 2V/div VOUT 50mV/div 1 AC COUPLED AC X LOAD 100mV/div COUPLED 100mA A 10µs/div 5µs/div 500µs/div / 4 7 6 Pin Description 1 PIN X MAX1674 MAX1676 NAME FUNCTION A MAX1675 M Dual-Mode™ Feedback Input. Connect to GND for +5.0V output
in „MAX1674: LED an LBO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1045-D.pdf
AN1045/D Series Triacs In AC High Voltage Switching Circuits http://onsemi.com By George Templeton Thyristor Applications Engineer APPLICATION NOTE INTRODUCTION Edited and Updated This paper describes the series connection of triacs
in „Zwei Triacs in Reihe - warum?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX3949_Datenblatt.pdf
zeros + 2 - 1 PRBS + 72 ones. Maxim Integrated 7 www.maximintegrated.com MAX3949 11.3Gbps, Low-Power, AC-Coupled Laser Driver AC Test Setup VCC 4.7kΩ VBIAS0.9VTO2.1V 0.1µF L A L S V S S S I CCT C B VCCT VCC 0.01µF VCC 2.2µH 100Ω 0.01µF 0.1µF 40Ω 25Ω 50Ω MAX3949 50Ω 0.01µF 100nH 16Ω VCCT Z0=50Ω TIN+ 39Ω
in „MAX3949 über I2Can Arduino wird nicht gefunden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX712_MAX713_MAX.pdf
node are thermistor configuration . M placed as close as possible to the CC pin on the DC IN = Sony AC-190 +9VDC at 800mA AC-DC adapter / MAX712/MAX713 and that their leads are of minimum PGM0 = V+, PGM1 = REF, PGM2 = REF, PGM3 = REF 2 length. The CC node is a high-impedance point, so do R1 = 200, R2
in „Akku-/Batteriekapazität messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD8606.pdf
OutputVoltageSwingLowvs.Temperature Figure17.OutputImpedancevs.Frequency 100 225 120 VS= ±2.5V VS= 5V 80 180 110 R L 2kΩ C L 20pF 60 Φ = 64° 135 100 M 40 90 90 ) e )20 45 r B 80 d g ( ( D 70 I 0 0 ( R A S M –20 –45 A C60 H P 50 –40 –90 –60 –135 40 1 30 1 –80 –180 1 1 2 7 –100 –225 0 20 0 10k 100k 1M 10M 40M
in „Aktives Filter (Differential), Uref“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
harman_kardon_hkts200-230_hkts210-230_sub.pdf
88mm (4-11/32" x 10-11/32" x 3-15/32" ) Weight 1.5kg (3.3 lb) HKTS 210SUB Subwoofer Power requirement AC 100–120V, 50/60 Hz, 200W (USA) AC 220–240V, 50/60 Hz, 200W (EU) Amplifier Power 200 watts RMS Woofer 8" (200mm) woofer, sealed enclosure External Trigger Input Voltage 3 ~ 30 volts AC/DC Dimensions (
in „Überspannung Herman Kardon Subwoofer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN00022_COMPASS.pdf
computed, depending on the actual states of Vx and Vy: (Vx = 0,Vy > 0) = 270° (Vx = 0,Vy < 0) = 90° Vy 180° (Vx > 0,Vy > 0) = 360° (arctan Vx )× (11) (Vx > 0,Vy < 0) = (arctan Vy )×80° Vx Vy 180° (Vx < 0) =180° (arctan )× V x Equations (11) are based on the convention, that the azimuth is counted clockwise
in „Fluglage messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN00022_COMPASS.pdf
computed, depending on the actual states of Vx and Vy: (Vx = 0,Vy > 0) = 270° (Vx = 0,Vy < 0) = 90° Vy 180° (Vx > 0,Vy > 0) = 360° (arctan Vx )× (11) (Vx > 0,Vy < 0) = (arctan Vy )×80° Vx Vy 180° (Vx < 0) =180° (arctan )× V x Equations (11) are based on the convention, that the azimuth is counted clockwise
in „Schwächste Signale aus dem Rauschen herausholen. Verständliche Erklärung gesucht.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN00022_COMPASS.pdf
computed, depending on the actual states of Vx and Vy: (Vx = 0,Vy > 0) = 270° (Vx = 0,Vy < 0) = 90° Vy 180° (Vx > 0,Vy > 0) = 360° (arctan Vx )× (11) (Vx > 0,Vy < 0) = (arctan Vy )×80° Vx Vy 180° (Vx < 0) =180° (arctan )× V x Equations (11) are based on the convention, that the azimuth is counted clockwise
in „elektronischen Kompass bauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN00022_COMPASS.pdf
computed, depending on the actual states of Vx and Vy: (Vx = 0,Vy > 0) = 270° (Vx = 0,Vy < 0) = 90° Vy 180° (Vx > 0,Vy > 0) = 360° (arctan Vx )× (11) (Vx > 0,Vy < 0) = (arctan Vy )×80° Vx Vy 180° (Vx < 0) =180° (arctan )× V x Equations (11) are based on the convention, that the azimuth is counted clockwise
in „Problem mit Kompass Achsen (Mega644p + HMC5883L)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Confidentiality_Letter.pdf
Request for Confidentiality Date: __2014/10/27______ Subject: Confidentiality Request for: _____2AC7Z-ESP8266EX Pursuant to FCC 47 CRF 0.457(d) and 0.459 and IC RSP-100, Section 10, the applicant requests that a part of the subject FCC application be held confidential. Type of Confidentiality Requested
in „Wlan2Serial Modul für 5 euro“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xmega_a1.pdf
5 SYNC ADC0 ADC0 ADC0 AC0 AC0 AREF PB1 6 SYNC ADC1 ADC1 ADC1 AC1 AC1 PB2 7 SYNC/ASYNC ADC2 ADC2 ADC2 AC2 DAC0 PB3 8 SYNC ADC3 ADC3 ADC3 AC3 AC3 DAC1 PB4 9 SYNC ADC4 ADC4 ADC4 AC4 TMS PB5 10 SYNC ADC5 ADC5 ADC5 AC5 AC5 TDI PB6
in „Welchen Wert hat der Pull-up-Widerstand dieses XMega?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Technical-Information-Interfacing-with-VE-Bus-products-MK2-Protocol-3-14.pdf
on the <Frame type> . <Frame type> Action Reply format 0 Request DC info. Info frame (DC) 1 Request AC L1 info. Info frame (AC) 2 Request AC L2 info. Info frame (AC) 3 Request AC L3 info. Info frame (AC) 4 Request AC L4 info (rare). Info frame (AC) 5 Request MasterMultiLED frame. MasterMultiLED frame
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Datei
DDS.vhd
00D6CC91", 10 => x"00EEAA47", 11 => x"010687F3", 12 => x"011E6593", 13 => x"01364326", 14 => x"014E20AC", 15 => x"0165FE24", 16 => x"017DDB8B", 17 => x"0195B8E2", 18 => x"01AD9627", 19 => x"01C5735A", 20 => x"01DD5078", 21 => x"01F52D82", 22 => x"020D0A75", 23 => x"0224E752", 24 => x"023CC416", 25 => x
in „DDS mit DE0-Nano Board nur niedrige Frequenzen?“ · FPGA, VHDL & Co. ·
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Datei
chac.zel.htm
tuba @@4 !!127] TGX++ |177 duration /2 F2Dd F3D FD |178 FD E E3D1 C b Ea# |179 Eb2 D C^3b1 a g Cf |180 C^g2 b C# Bag Abf GCe |181 F2Dd1 f F3Db1 a g FDf |182 E2Dg1 e E3Ca1 g f ECe |183 AC^f FDd BDgg@ AC Gb Fa |184 Eg Df C3e4a@ D |185 D2fa@ a3fd afd |186 a2fc^ a3fc4 af |187 b2gb@ b3ge bge |188 Cga2@ Df
in „zel, der Midi-Compiler, ist nach 10 Jahren wieder auferstanden“ · Offtopic ·
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PDF
hut1_12v2.pdf
15.16 21A AC Undo Sel 15.16 21B AC Copy Sel 15.16 21C AC Cut Sel 15.16 21D AC Paste Sel 15.16 21E AC Select All Sel 15.16 21F AC Find Sel 15.16 220 AC Find and Replace Sel 15.16 221 AC Search Sel 15.16 222 AC Go
in „USB HID Descriptor Spotify-Steuerung STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
512202-sp-01-en-Regelbares_Netzgeraet_3620.pdf
IC101 LM336 SWITCH R104 470K 5% CFR IC102 1458 Bv D101 R103 R123 C108 R105 1K5 5% CFR IC103 1458 SEC AC ZD3 SUPPLY TO DVM R106 3K3 1% C101 220/35V - R107 560 5% CFR C102 1000/16V PR101 PR104 R108 22K 1% C103 10 KPF D107 R110 IC101 D104 R109 100 5% C104 100/16V C101 R102 R104 R105 R119 R107 R110 100 5% C105 1/100V Bv R111 4K7 + 3K9 5% C106 1/100V SEC AC C109 ZD4 SUPPLY TO DCM C107 10 KPF IC102 B 8 R112 10K 5% 5 IC102A LD102 LD101 3 + + SW1 R113 1K2 5% C108 100/16V PT402 - 7 1 R114 10K 5% C109 100/16V PT404 CC CV TO CURRENT METER SIGNAL +VE R115 180K
in „Netzteil Voltcraft PS-3620“ · Analoge Elektronik und Schaltungstechnik ·
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SensorMeasurements.m
H)); grid on; xlabel('Frequency / Hz'); ylabel('Magnitude / dB'); title('Frequency Response at 8V_{ac} and 60cm distance, maximum at circa 40.4kHz'); angle = -90:5:90; ampl = [570 560 540 500 430 390 320 265 190 145 100 73 55 49 45 47 47 42 43]*0.001; ampl = [fliplr(ampl(2:length(ampl))) ampl]; ampl
in „Ultraschallsensoren des HC-SR04 Moduls“ · Projekte & Code ·