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PDF
TRW-24G.pdf
250kbps 23 mA Supply current two channels IVDD 25 mA 1000kbps Sensitivity at RX SENS 0.1%BER(@250kbps) -90 dB Sensitivity at RX SENS -80 dB 0.1%BER(@1000kbps) Part No. Description TRW-24G High frequency Transceiver module (GFSK) 2.4GHz WENSHING TRW -2.4GHz Radio Transeceiver 1 WENSHING TRW -2.4GHz Radio Transeceiver
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PDF
LT1019.pdf
presently available including AD580, AD581, ■ A/D and D/A Converters REF-01, REF-02, MC1400, MC1404 and LM168. ■ Precision Regulators ■ Constant Current Sources , LTC and LT are registered trademarks of Linear Technology Corporation. All other trademarks are the property of their respective owners. ■ V/F
in „Hochgenaue 2.5V Referenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Intersil_ICL8052_ICL8068_ICL71C03.pdf
DIGIT BLANKING ON OVERRANGE 16 ICL8052A/ICL71C03, ICL8068A/ICL71C03 +5V 16kΩ 1kΩ 56kΩ 2 + 8 7 0.22µF LM311 - 1 30kΩ 3 4 R fOSC = 0.45/RC 16kΩ 37.5kΩ 390pF C 100pF FIGURE 12. CMOS OSCILLATOR FIGURE 13. LM311 OSCILLATOR D S 2N5461 D S 2N5458 0.22µF +15V -15V 100K -BUF IN BUF OUT -INT IN INT OUT REF OUT 6
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PDF
AgilentImpedance_Measurment_Handbook.pdf
to the Cp. After the resonance frequency, the phase angle of impedance is a negative value around –90° because the capacitive reactance of Cp is dominant. The 5-8 inductor frequency response in Ls – Rs measurement mode is shown in Figure 5-12 (b). The mea- sured inductance (Lm) rapidly increases as the
in „Niedrige Induktivität messen, wie?“ · HF, Funk und Felder ·
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PDF
SCH.pdf
LCD_Data_20 36 GND C7 92 D20 LD21 30 LCD_Data_21 X- 37 X1 SDCORD 91 D21 LD22 29 LCD_Data_22 Y- 38 Y1 104 90 28 LCD_Data_23 X+ 39 89 D22 LD23 49 LCD_LDEN Y+ 40 X2 RD 121 D23 LDEN(DEN) 43 LCD_VSYNC Y2 WR 120 E(RD) LFRAME(VSYNC) 44 LCD_HSYNC 4.3_TFT RS 122 RM/(WR) LLINE(HSYNC) 45 LCD_DCLK D/C LSHIFT(DCLK) CS
in „Open407I-C (Board für STM32) mit OV9655 (Kameramodul) auf 5"-Touchdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Support-Schematic.PDF
100n 10n C VR1 R13 1 i TL431B 10K Power output A D V P03 M PIVR102N 32 GND Perpt11 2 Perpt2V S R0 G u LM1086CT-3.3 Perpt33 4 Perpt4VV R14 V Perpt55 6 Perpt6.3V 100K Perpt77 8 Perpt8. V SCR-IC-ONON R2 I 33 SCR-LIGHT-ON0ON V3 Header 4X2 SIPO-INN PIIC3014 PIIC3015 B INK-DISABLEABLE P I I C 3 0 8 A P I I C
in „Projekt: Schachcomputer mit OLED-Display, Gehäuse aus Holz (open source)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OZ965.pdf
both floating and grounded secondary designs variable pulse width voltage directly from the +5v • 90% efficiency vs. typical 75% efficiency of supply. The resultant primary drive current is conventional designs alternately reversing with zero-voltage-switching. Because of the transformer leakage inductance
in „Background-Beleuchtung für TFT-Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tl431.pdf
(8,50) 0.748 (19,00) 0.748 (19,00) 0.433 (11,00) 0.217 (5,50) 0.689 (17,50) 0.335 (8,50) 0.114 (2,90) 0.094 (2,40) 0.114 (2,90) 0.169 (4,30) DIA 0.094 (2,40) 0.146 (3,70) 0.266 (6,75) 0.234 (5,95) 0.512 (13,00) 0.488 (12,40) TAPE & REEL 4040001-3/C 10/01 NOTES: A. All linear dimensions are in inches
in „Spannungsteiler hohe oder niedrige Widerstände besser?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lmh6642.pdf
100 ns PART NUMBER PACKAGE BODY SIZE (NOM) (2) • Output Short Circuit Protected LMH6642 SOT-23 (5) 2.90 mm × 1.60 mm • No Output Phase Reversal with CMVR Exceeded SOIC (8) 4.90 mm × 3.91 mm (1) LMH6643 SOIC (8) 3.00 mm × 3.00 mm Slew rate is the average of the rising and falling slew rates VSSOP (8) (2Output
in „Funkentstörung mobiler Kopfhörerverstärker“ · HF, Funk und Felder ·
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PDF
oncilla_schaltplaene.pdf
R9 1N4448 C1 R9 150pF 130R 150pF 130R CR4 CR4 1N4448 V+ 1N4448 V+ IN_- Q1A Q1B V+ IN_- Q1A Q1B V+ LM394 LM394 LM394 LM394 Q8 Q8 2 R16 MJE181 2 R16 MJE181 VR1 3.16k VR1 3.16k 1N753A CR2 CR1 1N753A 1N4448 1N4448 CR9 CR11 R13 CR9 CR11 R13 IN_+ 1 CR15 1N4448 1N4448 301R IN_+ 1 CR15 1N4448 1N4448 301R 1N4448
in „Unbekannter Geräteeinschub (Impulszähler)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Aim_TTi_QL_Series_II_Service_Manual_48511-1740.pdf
Over-current trip. Ripple & Noise: <2mV rms, 10mVp-p (20MHz bandwidth) Load & Line Regulation: <1·0% for a 90% load change; 0·1% for a 10% line change. Status Indication: Current limit lamp. Current overload trip indication. Meter Specifications: Voltage Meter: Resolution 10mV, accuracy ± 0.5% ±10mV (use SET
in „wegen Aim TTi Netzteil Qualität“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
AddressSanitizer.txt
==unpoisoning: 0x7fffffff8b60 2580 Sofort-Restart Frame pos: 0.200s Mag: -37.11 Mean: -52.95 sum: -90.06 Max magnitude: -37.1 dB mag -37 size 1200 ==3269==poisoning: 0x7fffffff8b60 2580 ==3269==unpoisoning: 0x7fffffff8b60 2580 Frame pos: 0.200s Mag: -35.10 Mean: -53.50 sum: -88.60 Max magnitude: -35.1
in „Tipps zur Speicheranalyse gesucht“ · Mikrocontroller und Digitale Elektronik ·
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lmh6629.pdf
A V 10, 2V step 1600 SR Slew rate A = 4, 2V step, V/μs V 530 COMP Pin = LO A = 10, 2V step, 10% to 90%, V 0.90 WSON-8 package A = 10, 2V step, 10% to 90%, SOT-23-5 r /ft Rise/fall time V 0.95 package A = 4, 2V step, 10% to 90%, ns V 2.8 COMP Pin = LO, (Slew Rate Limited) T Settling time A = 10, 1V step
in „Ausgangswiderstand in OPV Datenblatt“ · HF, Funk und Felder ·
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ESR_ELV.pdf
„ESR” und am „C” eine des Kondensators einwandfreiarbeitet.Diesäußertsichdann Phasenverschiebungvon90°.DerSchein- R z. B. so, dass das Gerät nur kurz scheinbawiderstand (Z) des Kondensators (ohne p einwandfrei arbeitet, aber bald einfach biBerücksichtigungvonLsundRp)setztsich auf die Standby-Funktion
in „ESR berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
STSTW1-lshw.txt
ds_cpl vmx est tm2 ssse3 cx16 xtpr pdcm sse4_1 sse4_2 movbe popcnt tsc_deadline_timer aes rdrand lahf_lm 3dnowprefetch epb tpr_shadow vnmi flexpriority ept vpid tsc_adjust smep erms dtherm ida arat cpufreq configuration: cores=4 enabledcores=4 id=0 threads=4 *-logicalcpu:0 description: Logical CPU physical
in „WiFi Installation SurtTab W1 EFI-32bit-Linux“ · PC Hard- und Software ·
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Elektronische_Last_3.pdf
1 2 3 4 5 6 7 8 A A +10V 4 8 8 8 8 C108 C110 C112 C114 C116 20A== 1,65V Frontplatte EXT 90k9 10 IC103C 100n 100n 100n 100n 100n 0-10V == 0-20AX101-1 I/U-OUT 8 C109 C111 C113 C115 C117 0-20A== 0-5V X101-2 R105 9 X101-3 15k7 1 4 4 4 4 100n 100n 100n 100n 100n GND TLC274P N 5 IC103B GND +10V
in „Elektronische Last: Referenz für ADC und DAC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Support-Schematic.PDF
TL431 R13 1u 1u 1 C 10K Power output GND GND A P I V R 1REF3 G3 M N R2 GND Ioruu1 1 2 Poruu2V S 40 A LM1086CT-3.3 Ioruu3 3 4 Poruu4V R14 Ioruu5 5 6 Poruu6.3V 100K Ioruu7 7 8 Poruu8.3V SCR-IC-ONON 42 12 I 3 SCR-LIGHT-ON0ON Header 4X2 SIPO-IN PIIC3014 PIIC3015 B INK-DISABLEBLE P I I C 3 0 8 A P I I C 3 0
in „Zufällige Ausgangsspannungen bei TXB0108PWR“ · Mikrocontroller und Digitale Elektronik ·
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LTS6NP.pdf
resistance U C Supply voltage (±5 %) 5 V IC Current consumption @ U = 5 C Typical 28 + I S2)(Vout )LmA ●● Extended measuring resistance. Advantages Accuracy - Dynamic performance data X Accuracy @ I , T = 25 °C ±0.2 % ●● Excellent accuracy P N A ●● Very good linearity Accuracy with R ,I M , TP N25A°C
in „Strommessung für 400mA“ · Analoge Elektronik und Schaltungstechnik ·
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ina105.pdf
50 k (4) Voltage Range Differential ±10 V Common-Mode ±20 V Common-Mode Rejection(5) T = T to T 80 90 86 100 72 dB A MIN MAX OFFSET VOLTAGE RTO (6), (7) Initial 50 250 500 V vs Temperature 5 20 5 10 V/°C vs Supply ±VS= 6V to 18V 1 25 15 V/V vs Time 20 V/mo OUTPUT NOISE VOLTAGE RTO (6), (8) B = 0.01Hz
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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BWP_LF_EE_2019_WEB.pdf
zugeordnet. Einen Überblick gibt Tabelle 13. 3XS XXS XS S M L XL XXL A +++ η < 62 η < 62 η < 69 η < 90 η < 163 η < 188 η < 200 η < 213 wh wh wh wh wh wh wh wh A++ 53 <η wh 62 53< ηwh< 62 61< ηwh< 69 72 <ηwh< 90 130< ηwh< 150<ηwh< 160< ηwh< 170<ηwh< 163 188 200 213 A + 44 <η < 53 44< η < 53 53< η < 61
in „Berechnung Energieeffizienzklasse bei einem Haus“ · Haus & Smart Home ·
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LT1170.pdf
Current IFB 50 A Sink 25 40 70 A BV Output Switch Breakdown 3V≤ V IN MAX, LT1170/LT1171/LT1172 65 90 V Voltage I = 1.5mA LT1170HV/LT1171HV/LT1172HV 75 90 V SW LT1172S8 60 80 V VSAT Output Switch LT1170 0.15 0.24 “On” Resistance (Note 1) LT1171 0.30 0.50 LT1172 0.60 1.00 Control Voltage to Switch LT1170
in „Bei Schaltregler nur Minimum- und Maximum-PowerSwitchStrom angegeben“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A501_LCW_E6SG.pdf
Lambertian Emitter (120°) Technologie: ThinGaN ® technology: ThinGaN ® optischer Wirkungsgrad: 38 lm/W bei 3500 K optical efficiency: 38 lm/W at 3500 K Gruppierungsparameter: Lichtstärke, Farbort grouping parameter: luminous intensity, Verarbeitungsmethode: für alle color coordinates SMT-Bestücktechniken
in „LED ganz einfach dimmen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
HWMonitor.txt
-------------------------------------------- LPCIO Vendor ITE LPCIO Model IT8720 LPCIO Vendor ID 0x90 LPCIO Chip ID 0x8720 LPCIO Revision ID 0x8 Config Mode I/O address 0x2E Config Mode LDN 0x4 Config Mode registers 00 01 02 03 04 05 06 07 08 09 0A 0B 0C 0D 0E 0F 00 00 00 00 00 00 00 00 04 00 00 00 00
in „Gibt Festplatte langsam Geist auf?“ · PC Hard- und Software ·
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PDF
Hantek_Tekway_Voltcraft_DSO_hw1007.pdf
EINT9 PIT10010EINT9/GPG1 K12 RnB PIUG6010FCLE/GPA17 VD12/GPD4 PIUR4010P4 VD13 L 2 VD4 PIJ900015 16 PIJ90VD36 PM110010EINT16/GPG8 VDDOP()3.3V) PIT12010K12 7 COJ90 PIR101401 U10_2SN74LVC2G04 PIR12010GFRnB NAND CTRL VD13/GPD5/USBTXDN1 PIUP5010R4 VD14 COC100 6 PIL109 VD2DS PIJ900017 18 PIJ900018 GPG10 PIN10010EINT17
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HBD855-D_Thyristor_Theory.pdf
= −0.5 A/ms I = 50 mA I = 50 mA I = 50 mA I GK= 50 mA I = 50 mA TM RM RM RM RM RM GT = 1 mA IGT = 90 mA di/dt = −0.5 A/ms di/dt = −0.5 A/ms di/dt = −0.5 A/ms di/dt = −0.5 A/ms R GK = 100 di/dt = −0.5 A/ms VDX = 50 V VDX = 150 V IGT = 90 mA IGT = 90 mA IGT = 90 mA IGT = 90 mA IGT = 900 mA IGT = 90 mA
in „Ansteuerschaltung Thyristor und Triac“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PPS5330_KM_G_080303.pdf
R40 - 4 K 2 1 2 0 8 3 K BC848C 3 0 + 5 10K 4K7 100R 7 + R 2 -UA BCW66H R R 1 10u 8 R 1 R 1 B 5 25V B LM358 4 K + Stromregler R 2 TLV274 C27 + IC4 C22 C24 C25 3 K 4 2 10K Standby 2 R 1 R 2 33u T11 - 100p 4p7 10p -5V 16V + 1 SMD SMD SMD BC848C D8 3 A C29 + R45 BAT43 TLV274 L2 22K o H 470p/MD Sollwert - 0
in „Labornetzteil ELV PPS 5330 Fehlerdiagnose“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rscalc2.c
// modified 2008 by frogbite to use parametric input and output // to compile with gcc: gcc -ldl -lm rscalc2.c -o rscalc2 // 02.01.2011 Update time output like "1200" without ":" #include <stdio.h> #include <math.h> #include <stdlib.h> #include <time.h> #include <string.h> void usage(char* pname) {
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Datei
soc_log.txt
instance /system_tb/dut/ddr0/ctrl0/clkgen/dcm_fx/ is left unconnected. WARNING:Simulator:12 - Port CLK90 of module DCM in instance /system_tb/dut/ddr0/ctrl0/clkgen/dcm_fx/ is left unconnected. WARNING:Simulator:12 - Port CLKDV of module DCM in instance /system_tb/dut/ddr0/ctrl0/clkgen/dcm_fx/ is left unconnected
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Datei
main.c
/////////////////////////////////////////////////////////////////////////////////////// //#define LM75 0x90 // TWI Adresse des LM75 //-> MyTwi PortExpander Adresse - Name "myTWI" /////////////////////////////////////////////////////////////////////////////////////// /////////////////////////////////
in „MyAVR Port Expander Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SERVICE_MANUAL_270200-SL227_SL230.pdf
Program Eprom 090194 ** BC560 TO92 LN Pnp Transistor 653371 * <10 VOCE UMANA 8’> 070556 * 20K Lin (90deg. Stroke) Potentiometer 110282 * 3.6V 60mAh Nicd Battery 080156 ** 1N4002 1A 100V Rectifier Diode 653370 * <9 FLAUTO A CAMINO 8’> 171020 Pedal Support 100595 * DISP2 Digital Sound Processor 075595
in „AHLBORN ORGEL SL 230 keine Funktion“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA111_BB.pdf
| pF Input Common-Mode Range V DIFF 0V ±10 ±12 V Common-Mode Rejection VCM = ±10V, RS= 1k G = 1 80 90 75 dB G = 10 96 110 90 dB G = 100 106 115 100 dB G = 1000 106 115 100 dB BIAS CURRENT ±2 ±20 pA OFFSET CURRENT ±0.1 ±10 pA NOISE VOLTAGE, RTI G = 1000, S = 0 f = 100Hz 13 nV/√Hz f = 1kHz 10 nV/√Hz f
in „INA111 als Verstärker für Solarzelle?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina111.pdf
| pF Input Common-Mode Range V DIFF 0V ±10 ±12 V Common-Mode Rejection VCM = ±10V, RS= 1k G = 1 80 90 75 dB G = 10 96 110 90 dB G = 100 106 115 100 dB G = 1000 106 115 100 dB BIAS CURRENT ±2 ±20 pA OFFSET CURRENT ±0.1 ±10 pA NOISE VOLTAGE, RTI G = 1000, S = 0 f = 100Hz 13 nV/√Hz f = 1kHz 10 nV/√Hz f
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EC20-9822_SK9822-2020__LED_Datasheet.pdf
R 0.00 400 450 500 550 600 650 700 750 800 Wavelength(nm) Typical RadiationPattern 160° 0 30° 60° 90° 90 75 60 45 30 15 0 0.20.4 0.6 0.8 1.0 RadiationAngle 9 / 16 Document No.: SPC / SK9822-EC20 Rev. No.: 05 www.normandled.com S h e n z h e n N o rm a n d E l e c tr o n ic C o .,L td 14. Packaging Standard
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PDF
LED-RGB-SK6812RGBP8.pdf
Optical Characteristics: SK6812RGBP8 12MA Color Dominate avelength(nm) Luminance(mcd) luminous flux(lm) Red 620-625 400-700 1.0-2.0 Green 520-530 1000-1500 3.0-4.0 Blue 460-470 200-400 0.5-1.0 10. The IC electrical parameters (unless otherwise specified, TA=-20 ~ +70 ℃, VDD=4.5 ~ 5.5V, VSS=0V): Parmeter
in „RGBW Led Stripe 12V LED Typ unbekannt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
9808035.pdf
tolerance carbon-composition or film units. Equivalent parts can be substituted. U401, U402, U403—LM358 op amp R420, R423—PC-mount trim pots, 5 k or control, 5 k or 10 k suitable. If a 10 D403, D406—6.2 V Zener diodes, 1 W 10 k suitable turn pot is used for R3, R4 is not C401—Metal film or Mylar, 1.0
in „Oszilloskop als Spectrum analyzer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Metrawatt-MA_5D.pdf
3.557.067.01 2 --I-- f - . - •• • '.;.1; R1 R1 M-Wld O,25W 9000 0,1% 3.561.025.2_,-_. R2 R2 M-Wid 0,25W 90Q,0,1% 3.561.025.11 r - - - - - R3 R3 M-Wid 0,5W 9Q 0,1% 3.561.025.61 i - i- R4 R4 Spulenwid komplett 0,9Q 0,1% 2.634.009R01 . f - R5 R5 Shunt 90mQ 3.542.051.01.- R6 R6 Shunt 20mQ 3.542.050P01t, .....
in „S: DMM mit dB-Anzeige“ · Markt ·
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PDF
Metrawatt-MA_5D.pdf
3.557.067.01 2 --I-- f - . - •• • '.;.1; R1 R1 M-Wld O,25W 9000 0,1% 3.561.025.2_,-_. R2 R2 M-Wid 0,25W 90Q,0,1% 3.561.025.11 r - - - - - R3 R3 M-Wid 0,5W 9Q 0,1% 3.561.025.61 i - i- R4 R4 Spulenwid komplett 0,9Q 0,1% 2.634.009R01 . f - R5 R5 Shunt 90mQ 3.542.051.01.- R6 R6 Shunt 20mQ 3.542.050P01t, .....
in „Metrawatt MA5D Abgleichanleitung A DC Bereich“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
X9C103.pdf
Wiper Stable 500 µs (7) R CC V CCPower-up Rate 0.2 50 V/ms A.C. TIMING CS t CYC CI tIL tIH tIC CPH 90% 90% INC 10% tID tDI tF tR U/D IW (8) VW MI Notes: (6) Typical values are forT = 25°C and nominal supply voltage. A (7) This parameter is periodically sampled and not 100% tested. (8) MI in the A.C.timing
in „Präzisionsspannungsquelle mit mindestens 100 Abstufungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCIM_FINAL.pdf
Transfor er L C C CR 1 A 2 2 V Lr + Vg D S CR C 1 - G L C v C CR V -1 m 2 2 +v1 + -v2 L r + Vg D S Lm CR C - 1 - L C1 1:1 C 2 CR 2 V Lr + CCo parison of Three Transfor ers Types +B S forward converter flyback B S converter (large gap) 2B S H new converter (no gap) -B S Hybrid-S itching AC-DC Rectifer
in „Warum werden Cùk Wandler so wenig eingesetzt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NASA_Technical_Note_D-822.pdf
8.89687 8.9_ 8.99196 9.0_97k 9,0_768 9.1_78 _:_ 9.E_ 9.L_102 k_o 9.8=2_599_1 9.876__ 9-9_70_9 9.&97791 I90.50_5928 i90.,507850l9O.6l2_5I_k190:_'_29_ i90.72L5=5_ l90T7556 1o. _C,8_, zo._)o_ ].o._ 10._.95_ zo.5_o lo,6oo8 zo.65_8 :to.70TO 10.76o_, ].o,8]._8 _o _._zS:_ _ ._:_gz _._a_ z_.sBo7 _z.6_68 zz.69_z _
in „Komplexe Berechnung auf µC - geschickte Annäherung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pico-datasheet_1_.pdf
video, SD Card and I2S audio) Temperature (°C) Temperature (°C) -25 25 85 -25 25 85 #1 84.8 83.4 87.3 90.9 87.8 93.1 #2 87.5 89.9 89.8 93.4 94.1 94.0 #3 84.4 86.2 86.9 90.6 92.9 91.3 Mean 85.6 86.5 88.0 91.6 91.6 92.8 NOTE Includes current consumed by VGA board (e.g. I2S DAC) in addition to the Raspberry
in „Raspberry Pi Pico PIO (JESUS)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
68332_test.pdf
SIZ1 Y1 8MHz 83 65 PQ0 XTAL PQS0/MISO PQ1 PE[0..7] OUT 8 85 EXTAL PQS1/MOSI 66 PQ2 87 XFC PQS2/SCK 67 90 CLKOUT PQS3/PCS0/SS 68 PQ3 B PQS4/PCS1 69 PQ4 PQ[0..7] B 38 VSTBY PQS5/PCS2 70 PQ5 VCC R6 4k7 71 PQ6 R4 4k7 94 PQS6/PCS3 75 PQ7 R3 4k7 93 BERR PQS7/TxD 92 HALT RESET RESET 76 S S S S S S S S S S S S
in „Motorola MC68332 und BD32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PC814.pdf
Ic IF=+ 1mA 0.2 -3.0 mA vc,=5v Collector-emitter V IF=+20mA 0.1 0.2 v saturation voltage CEbat) Ic=lmA Isolation resistance RiSO DC500V 5XlO’O 10” - n Transfer 40 to 6O%RH charac- r teristics Floating capacitance c-f v=o, f=lMHz 0.6 1.0 pF Cut-off frequency fc Vc,=5V, Ic=2mA 15 80 - kHz R,=lOO R, -3dB
in „Suche Optokoppler, bitte um Hilfe!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PC817.pdf
current Ic I,=5mA.VcE=5V 2.5 - 30 mA Collector-emitter VCEfsat) 1,=2omA 0.1 0.2 v saturation voltage Ic=lmA Isolation resistance R IS0 DC500V 5XlO’O 1o’l - Q Transfer 40 to 6O%FW charac- teristics Floating capacitance cf v=o, f=lMHz 0.6 1.0 pF 80 - kHz Cut-off frequency fc vc,=5v, Ic=2mA - R,=lOO R, -3dB
in „Ist dieser Optokoppler geeignet? ( PC817 )“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD8307.pdf
Completemultistagelogarithmicamplifier AD8307 92dB dynamic range:–75 dBmto +17 dBm BAND GAP REFERENCE VPS 7 7.5mA AND BIASING 6 ENB to –90dBm usingmatchingnetwork Singlesupplyof2.7Vminimumat 7.5mAtypical SIX 14.3dB 900MHz 5 INT +INP AMPLIFIER STAGES DCto 500MHz operation, ±1dB linearity INP 8 MIRROR Slope of 25 mV/dB, intercept of −84 dBm
in „logarithmic detector“ · Mikrocontroller und Digitale Elektronik ·
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PDF
velleman_hps5_oscilloscope.pdf
Alkaline type AA or Ni Cd / NiMH rechargeable ( 5 pcs required) Charge current for rechargeable batteries 90mA Battery life Up to 20h with Alkaline batteries Operating temperature 0 to 50°C (32 to 122°F) Dimensions 105x220x35mm (4.13x7.95x1.38”) Weight 395g (14oz.) ex. Batteries 6 PersonalScope TM SAFETY and
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Datei
Konsolenausgabe.txt
/atmega88pb avr/lib/avr4/atmega8515 avr/lib/avr4/atmega8535 avr/lib/avr4/atmega8hva avr/lib/avr4/at90pwm1 avr/lib/avr4/at90pwm2 avr/lib/avr4/at90pwm2b avr/lib/avr4/at90pwm3 avr/lib/avr4/at90pwm3b avr/lib/avr4/at90pwm81 avr/lib/avr5/ avr/lib/avr5/at90can32 avr/lib/avr5/at90can64 avr/lib/avr5/at90pwm216 avr/lib/avr5/at90pwm316 avr/lib/avr5/at90pwm161 avr/lib/avr5/at90scr100 avr/lib/avr5/at90usb646 avr/lib/avr5/at90usb647 avr/lib/avr5/at94k avr/lib/avr5/ata5702m322 avr/lib/avr5/ata5782 avr/lib/avr5/ata5790 avr/lib/avr5
in „cannot read spec file 'device-specs/specs-atmega4808'“ · Mikrocontroller und Digitale Elektronik ·
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PDF
asus-p701-unlocked.pdf
7 AC_VCC 6 VSUS_ON PMB3904 7 +3VSB 15 +AP2310 +3V SI4835BDY 14 SUSB_ON 21 +VCCP +3V 15 16 +2.5V C LM358+ C 24 VCORE H_CPURST# 29 15 +5V NB 910GM PMBT2222 DOTHAN CPU PM_PWROK 23 26 +1.8V_DUAL 16 VID[0..5] +1.5V LM358+ # 15 +5V AP70T03 25 G S R _ P T _ P (PLT_RST# is 34--41 RTCCLK(=1mS) AC_VCC R later
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PDF
ISL6753.pdf
( 1 10 220pF z D 100pF ( - c m e 100 d e e 100 F D RTD= 10k 50k 10 100k 0 10 20 30 40 50 60 70 80 90 100 100.1 1 10 RTD (kohms) CT (nF) FIGURE 3. DEADTIME (DT) vs CAPACITANCE FIGURE 4. CAPACITANCE vs FREQUENCY Pin Descriptions RTD - This is the oscillator timing capacitor discharge VDD - VDD is the
in „Warum FET-Ansteuerung mit Trafo?“ · Analoge Elektronik und Schaltungstechnik ·
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STM32H7-Disco_full.PDF
08.12.2019 Sheet of File: Z:\PCB\..\STM32H7-Disco.SchDDrawn By: 1 2 3 4 5 6 7 8 1 2 3 4 5 6 7 8 R95 PR51 PI90 A GND A 1 R96962 1 R97 2 PI90 PR62 PR71 PI90 2k0 1k0 PI9098PR82 PR919PI90 NLPD70SPI10M S I U121 R1000 R10 1 PD7_SPI1_MOSI 1PI21 DS Q0 PU21 PI11 P122 PR00 PI00 PG9_SPI1_MISO PG11_SPI1_CLKC 1PI21 PU21
in „STM32H7-Disco erster Test“ · Mikrocontroller und Digitale Elektronik ·