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LTC660.pdf
70 80 90 100 0 10 20 30 40 50 60 70 80 90 100 LOAD CURRENT (mA) LOAD CURRENT (mA) LOAD CURRENT (mA) LTC660 • TPC07 LTC660 • TPC08 LTC660 • TPC09 3 LTC660 W U TYPICAL PERFORMANCE CHARACTERISTICS (Using Test Circuit in Figure 1) Output Voltage Drop Output Voltage vs Load Current vs Oscillator Frequency
in „Schaltplankontrolle EVG-Dimmer -PWM, OpAmp und Ladungspumpe“ · Analoge Elektronik und Schaltungstechnik ·
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LTC4627A.pdf
Cathode B, L2 Anode B, L2 Internal Circuit Diagrams A.LTS-4301 B.LTS-4801 C.LTD-4608 D.LTD-4708 9-138 E.LTC-4624 F.LTC-4724 S G.LTC-4627 H.LTC-4727 Y A L P I D Absolute Maximum Rating at Ta=25 Red Parameter AlGaAs Red Bright Red Green Yellow Orange Unit Power Dissipation Per Segment 75 40 75 60 75 mW Peak
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ADM660_8660.pdf
supply. This inverting scheme is ideal for generating a negative rail in single power supply The ADM660 is a pin compatible upgrade for the MAX660, systems. Only two small external capacitors are needed for the MAX665, ICL7660, and LTC1046. charge pump. Output currents up to 50 mA with greater than 90%
in „[V] 48St. AnalogDevice ADM660 SMD CMOS Switched-Capacitor Voltage Converters / Inverts or Doubles“ · Markt ·
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ltc485.pdf
SOLDER DIP/PLATE (1.143 – 1.651) 0.125 OR TIN PLATE LEADS 3.175 0.014 – 0.026 0.100 MIN (0.360 – 0.660) (2.54) BSC J8 1298 OBSOLETE PACKAGE LTC485ff 10 LTC485 U PACKAGE DESCRIPTIO N8 Package 8-Lead PDIP (Narrow .300 Inch) (Reference LTC DWG # 05-08-1510) 0.400* (10.160) MAX 8 7 6 5 0.255 0.015* (6.477
in „IR mit langer Leitung“ · Mikrocontroller und Digitale Elektronik ·
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LTC_201.pdf
LTC201A/LTC202/LTC203 Micropower, Low Charge Injection, Quad CMOS Analog Switches U FEATURES DESCRIPTIO ■ Micropower Operation The LTC 201A, LTC202, and LTC203 are micropower, ■ Single 5V or ±15V Supply
in „Meßverstärker für 1/f-Rauschen 0.1 - 10 Hz“ · Analoge Elektronik und Schaltungstechnik ·
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LTC224210fc.pdf
3.3V ADC, LVDS Outputs 890mW, 67.7dB SNR, 84dB SFDR, 64-Pin QFN LTC2220-1 12-Bit, 185Msps, 3.3V ADC, LVDS Outputs 910mW, 67.7dB SNR, 80dB SFDR, 64-Pin QFN LTC2221 12-Bit, 135Msps, 3.3V ADC, LVDS Outputs 660mW, 67.8dB SNR, 84dB SFDR, 64-Pin QFN LTC2224 12-Bit, 135Msps, 3.3V ADC, High IF Sampling 630mW, 67.6dB SNR, 84dB SFDR, 48-Pin QFN LTC2230 10-Bit, 170Msps, 3.3V ADC, LVDS Outputs 890mW, 61.2dB SNR, 78dB SFDR, 64-Pin QFN LTC2231 10-Bit, 135Msps, 3.3V ADC, LVDS Outputs 660mW, 61.2dB SNR, 78dB SFDR, 64-Pin QFN LTC2240-10 10-Bit, 170Msps
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
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lt1025_datasheet.pdf
SUPPLY VOLTAGE SIMPLE AMPLIFIER THERMOCOUPLE 15V 5V SINGLE SUPPLY THERMOCOUPLE E, J, K, T LTKA0x LTKA0x LTC1050 VL LT1012 LT1012 LTC1052 LT1001 LT1001 LT1006 0 TLT1/6 TM T5/6TH LTC1050 TEMPERATURE (°C) LTC1052 LT1025 • G05 LT1006 Figure 5. Offset Curve Fitting R, S LTKA0x LTC1050 LTC1050 LT1012 LTC1052 LTC1052
in „Abgastemperatursensor mit LT1025“ · Mikrocontroller und Digitale Elektronik ·
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10134fd.pdf
APPLY TO SOLDER DIP/PLATE (1.143 – 1.651) 3.175 OR TIN PLATE LEADS MIN .014 – .026 .100 (0.360 – 0.660) (2.54) BSC J8 0801 J Package 14-Lead CERDIP (Narrow .300 Inch, Hermetic) (Reference LTC DWG # 05-08-1110) .785 .200 .005 (19.939) .300 BSC (5.080) (0.127) MAX (7.62 BSC) MAX MIN 14 13 12 11 10 9 8
in „LT1013 Unterschied D und P Package“ · Analoge Elektronik und Schaltungstechnik ·
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LT1006.pdf
please see the LT1078/LT1079 data sheet. ■ 4mA to 20mA Current Loop Transmitters ■ Active Filters , LTC and LT are registered trademarks of Linear Technology Corporation. U TYPICAL APPLICATIO LT1006 Single Supply, Micropower Sample and Hold Distribution of Input Offset Voltage 9V 20 VS= 5V, 0V 18 A =
in „Probleme mit Peakdetector“ · Mikrocontroller und Digitale Elektronik ·
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LT1014.pdf
50MHz Thermal rms to DC Converter 5V Single Supply Dual Instrumentation Amplifier 100k* +5V +5V 1/2 LTC1043 0.01 5 8 2 – +INPUT 6 5 + 10k* 10k* 1/2 LT1013 7 OUTPUT A 30k* 30k* LT1014 1 6 10k 3 + 2 – +5V 4 R2 6 – 4 1µF 1µF 1µF 300Ω* LT1014 7 3 100k* 10k* 5 + R1 11 –INPUT 18 15 10k* 0.01 13 – 14 1/2 LTC1043
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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LT6752_Figure_12_Page_23.pdf
LTC6752/LTC6752-1/ LTC6752-2/LTC6752-3/ LTC6752-4 280MHz, 2.9ns Comparator Family with Rail-to-Rail Inputs and CMOS Outputs Features Description nn ® Very High Toggle Rate: 280MHz TheLTC 6752isafamilyofveryhighspeedcomparators
in „sehr kurzen Impuls detektieren“ · Analoge Elektronik und Schaltungstechnik ·
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LTC6752.pdf
LTC6752/LTC6752-1/ LTC6752-2/LTC6752-3/ LTC6752-4 280MHz, 2.9ns Comparator Family with Rail-to-Rail Inputs and CMOS Outputs Features Description nn ® Very High Toggle Rate: 280MHz TheLTC 6752isafamilyofveryhighspeedcomparators
in „Impulsverlängerung mit RC-Glied“ · Analoge Elektronik und Schaltungstechnik ·
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LT1513_data_en.pdf
Constant-Voltage/Constant-Current Supply easily programmed for all battery types. Transducer Excitation , LTC and LT are registered trademarks of Linear Technology Corporation. Universal Input CCFL Driver U TYPICAL APPLICATION MaximumCharging Current WALL L1A* ADAPTER • C2** 2.4 INPUT + C3 7 4.7 F D1 † 2.2
in „6V Bleigel-Akku mit 12V/230mA Solarpanel laden“ · Mikrocontroller und Digitale Elektronik ·
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LT1082.pdf
LEAD DIMENSIONS APPLY TO SOLDER MIN75 DIP/PLATE OR TIN PLATE LEADS 0.014 – 0.026 0.100 (0.360 – 0.660) (2.54) J8 1298 BSC OBSOLETE PACKAGE sn1082 1082fas 10 LT1082 U PACKAGE E R PTI D SC I O N8 Package 8-Lead PDIP (Narrow .300 Inch) (Reference LTC DWG # 05-08-1510) 0.400* (10.160) 0.300 – 0.325 0.045
in „Boost Converter 2MHz 50V“ · Mikrocontroller und Digitale Elektronik ·
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Clock_LTC1064.pdf
LTC1064-2 mit Taktgenerator DS1077-100 und 74AC161 (:8) Tiefpass-Grenzfrequenzen (-3dB) in Hz Teiler Presc. /1 Presc. /2 Presc. /4 Presc. /8 Presc. /1 Presc. /2 Presc. /4 Presc. /8 DIV1 LTC1064 /50 LTC1064
in „Digital verstellbarer Analoger Filter“ · Analoge Elektronik und Schaltungstechnik ·
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Datasheet_LT3433.pdf
80V, 50mA Low Noise Linear Regulator VIN 1.5V to 80V, VOUT(MIN) = 1.28V, Q = 30 A, SD < 1 A, MS8E LTC3412/LTC3414 2.5A (IOUT), 4MHz Synchronous Step-Down DC/DC Converters VIN 2.5V to 5.5V, VOUT(MIN)= 0.8V, IQ= 60 A, SD < 1 A, TSSOP16E LTC3414 4A (IOUT), 4MHz Synchronous Step-Down DC/DC Converter VIN 2.3V to 5.5V, VOUT(MIN)= 0.8V, IQ= 64 A, SD < 1 A, TSSOP20E LTC3727/LTC3727-1 36V, 500kHz High Efficiency Step-Down DC/DC Controllers VIN 4V to 36V, VOUT(MIN) = 0.8V, Q = 670 A, I < 20 A, QFN32, SSOP28 SD LT3430/LT3431 60V, 2.75A (IOUT), 200kHz/500kHz High Efficiency
in „Burst Mode Lt3433“ · Analoge Elektronik und Schaltungstechnik ·
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EVG_Dimmer_PWM.pdf
R15 2 3 3 10k 10k + 1 OUT_3 6 R7 C7 C11 2 Ladungspumpe für negative Spannung GND 5 1uF 1uF - U10 +5V LTC660 2 8 5 V+ VOUT -5V 1 10k 3 1 BOOST GND GND GND 2 RV3 u 3 CAP+ C30 C32 u 3 1 C 7 OSC 100uF 100uF 1 C GND C26 C29 100uF 100uF 6 LV N CAP- 4 +5V G GND GND 3 GND GND GND Elkos: Z.B.: Reichelt PAN 16SEPC100M
in „Schaltplankontrolle EVG-Dimmer -PWM, OpAmp und Ladungspumpe“ · Analoge Elektronik und Schaltungstechnik ·
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LT1170.pdf
standby operation. components.ThemanualcanalsobeusedfortheLT1170/LT1171/LT1172byfactoringinthehigher , LTC and LT are registered trademarks of Linear Technology Corporation. frequency. A CAD design programcalled SwitcherCAD is also available. SwitcherCAD is a trademark of Linear Technology Corporation. O
in „Bei Schaltregler nur Minimum- und Maximum-PowerSwitchStrom angegeben“ · Analoge Elektronik und Schaltungstechnik ·
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ICL7660.pdf
98% Typical Power-Conversion Efficiency 1 pin compatible with the industry-standard ICL7660 and 0 LTC1044. Operation is guaranteed from 1.5V to 10V with Invert, Double, Divide, or Multiply Input Voltages 4 no external diode over the full temperature range. They BOOST Pin Increases Switching Frequencies
in „neg. Spannung mit Z-Diode erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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ICL7660-MAX1044.pdf
98% Typical Power-Conversion Efficiency 1 pin compatible with the industry-standard ICL7660 and 0 LTC1044. Operation is guaranteed from 1.5V to 10V with Invert, Double, Divide, or Multiply Input Voltages 4 no external diode over the full temperature range. They BOOST Pin Increases Switching Frequencies
in „OP Spannung 1,82V bei Min.“ · Mikrocontroller und Digitale Elektronik ·
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kicad_8450_dcm_liste_neu_v3.pdf
ADC, Serial IO, SO-16 LTC1598CG Micropower 12-bit 8 Channel ADC, Serial IO, SSOP-24 LTC1598IG Micropower 12-bit 8 Channel ADC, Serial IO, SSOP-24 LTC1664CGN Quad Micropower 10-bit DAC, Standard, SSOP-16 LTC1664CN Quad Micropower
in „KiCAD Eeschema, Bibliotheksdokumentation *.dcm als PDF-Datei“ · Platinen ·
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AoE3_chapter9.pdf
0.04 5 i,q q TPS6040x - - • - inv 1.6-5.5 track 10 3 60 20-250 0.06-0.4 5 osc variable (’60400) MAX660 • • - - inv, x2 1.5-5.5 track 6.5 5 100 10 or 80 0.12 5 regulated r LTC3260 - - - • dual LDO 4.5-32 1.2-32 & -1.2 to -320.03 12 50 200 4 15 HV dual reg split supply LT1054 • • - - inv 3.5-15 –Vin or
in „Labornetzgerät - Fragen zum Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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PSpice_LibraryguideOrCAD.pdf
Operational Amplifier LT318A LT318A/LT LIN_TECH.OLB Linear Technology Corp. Operational Amplifier LTC1047 LTC1047/LT LIN_TECH.OLB Linear Technology Corp. Operational Amplifier LTC1049 LTC1049/LT LIN_TECH.OLB Linear Technology Corp. Operational Amplifier LTC1050 LTC1050/LT LIN_TECH.OLB Linear Technology Corp. Operational Amplifier LTC1050A LTC1050A/LT LIN_TECH.OLB Linear Technology Corp. Operational Amplifier LTC1051 LTC1051/LT LIN_TECH.OLB Linear Technology Corp. Operational Amplifier LTC1052 LTC1052/LT LIN_TECH.OLB Linear Technology
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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LT1014CN_DN.pdf
Fully Floating Modification to 4-mA to 20-mA Current-Loop Transmitter With 8-Bit Accuracy 5 V 1/2 LTC1043 6 5 5 + 8 IN+ 1/4 7 2 1 µF LT1014 OUT A 1 µF 6 3 − 4 R2 IN− 18 15 R1 1/2 LTC1043 7 8 3 IN+ + 11 1/4 1 OUT B 1 µF LT1014 1 µF 2 12 − R2 13 14 IN− 0.01 µF R1 NOTE A: V IO= 150 µV, VD = (R1/R2) + 1
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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Magazin_Bauteile.pdf
Farnell 375-5992 0,572 5,72 3 1 Printbuchse 2,54mm einreihig Fischer Elektronik Farnell 162-9139 10,660 10,66 4 4 5 4 Spannungspegelumsetzer TXB0104 SMD Texas Instruments Farnell 312-0964 1,710 6,84 4 5 1 1 4 Quarz SMD ABM3-14.7456MHZ-D2Y-T 14,7456 MHz, 20ppm 18pF ABRACON Farnell 246-7790 0,489 1,96 2
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cyc_c5v1-1299412.pdf
) 6 — LT1083 Linear 5 5.0 7.5 — LT1084 Linear 5 5.0 5 — LT1085 Linear 5 5.0 3 Inexpensive solution LTC1649 Switching 22 3.3 15 Selectable output LTC1775 Switching 17 5.0 5 — Note to Table 12–5: (1) A 3.3-V VINrequires a 3.3-V supply to the regulator’s input and 2.5-V supply to bias the transistors. Altera
in „BMW Nightvision (FLIR PathfindIR) "Wärmebildkamera"“ · Mikrocontroller und Digitale Elektronik ·
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Sager_D87P_Service_Manual_Part4.pdf
R_SSHD0 R_SSHD0 5 4 AD[0:31] R_SHD15 7 2 R_SSHD15 R_SSHD1 6 3 t [18,27,29,30,3AD[0:31] I R_PHD[0:15] R660 R655 4.7K R_SHD1 6 3 R_SSHD1 R_SSHD3 7 2 AD0 49 I 60 R_PHD0 10K VCC3 R_SHD14 5 4 R_SSHD14 R_SSHD2 8 1 a AD1 48 BAD0 PBDSD0 62 R_PHD1 R_SIORDY R654 22 R_SSIORDY AD2 46 BAD1 / PBDSD1 65 R_PHD2 R_SSIORDY
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file.pdf
that degradation aggravates substantially with higher temperature. While the capacity fade after ca. 660 days of storage lies between 2% and 4% at 10°C, the capacity fade at 55°C amounts to 9–17%. However, the capacity fade does not double for every 10°C of temperature increase, as it is often considered
in „Pedelec: Akku und Controller verklebt - ist das rechtens ?“ · Fahrzeugelektronik ·
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STC15-English.pdf
- 0.180 4.191 - 4.572 A1 0.020 - - 0.508 - - A2 0.147 - 0.158 3.734 - 4.013 b1 0.026 0.028 0.032 0.660 0.711 0.813 b 0.013 0.017 0.021 0.330 0.432 0.533 c 0.007 0.010 0.0013 0.178 0.254 0.330 D 0.650 0.653 0.656 16.510 16.586 16.662 E 0.650 0.653 0.656 16.510 16.586 16.662 e 0.050BSC 1.270BSC Gd 0.590
in „Testbericht Elektronische Last“ · Analoge Elektronik und Schaltungstechnik ·
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esp32-c3_technical_reference_manual_en.pdf
28.4.4 Generating SCL Pulses in Idle State 659 28.4.5 Synchronization 659 28.4.6 Open-Drain Output 660 28.4.7 Timing Parameter Configuration 661 28.4.8 Timeout Control 662 28.4.9 Command Configuration 663 28.4.10 TX/RX RAM Data Storage 664 28.4.11 Data Conversion 665 28.4.12 Addressing Mode 665 28.4.13
in „Mit dem ESP32C3 laufen lernen“ · Mikrocontroller und Digitale Elektronik ·
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esp32-c3_technical_reference_manual_en.pdf
28.4.4 Generating SCL Pulses in Idle State 659 28.4.5 Synchronization 659 28.4.6 Open-Drain Output 660 28.4.7 Timing Parameter Configuration 661 28.4.8 Timeout Control 662 28.4.9 Command Configuration 663 28.4.10 TX/RX RAM Data Storage 664 28.4.11 Data Conversion 665 28.4.12 Addressing Mode 665 28.4.13
in „ESP32C3 > PLL“ · Mikrocontroller und Digitale Elektronik ·
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Funkschau_Inhalt_1980-1990.pdf
Halbleiter-Holding 87/12/16 Thyristor mit eingebautem Kurzschluß-Schalter 87/2/14 TI kooperiert mit LTC 87/13/21 Tonträgermarkt '86 87/15/18 Triax in Deutschland aktiv 87/15/12 Tuner wertet RDS-Signale aus 87/16/14 TV-Gerät unpfändbar 87/10/15 TV-Sat 1 muß weiter warten 87/2/16, 87/2/18 Übergang zwischen