-
PDF
eGC.pdf
PIIC20IO_L66P_SCP1_0 gpmc_wait2PIIC10Y14 PIIC20C4 PIIC10V14 SPI IO_L1P_HSWAPEN_0 gpmc_wait3 I2 XC6SLX25 AM3505-ZER COR1 R17 Resistor I04.7 kOhm GND GPMC_CTRL D Title D Size Number Revision A4 Date: 29.03.2012 Sheet of File: C:\Users\..\ARM_MEM.SchDoc Drawn By: 1 2 3 4 1 2 3 4 5 6 7 8 VTT 2 3 4 5 6 7 8
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Spec_Inkontinenzsensor_ATtiny461A.pdf
0x80 128 .. + xxx + R/W 0x48 72 0x90 144 1001 .. + xxx + R/W ATtiny26 analog 0-3, PCF8591, PCF8591, LM75, 0x50 80 0xA0 160 1010 .. + xxx + R/W LM75, DS1631 DS1631 ATtiny261 analog 0-7 ATtiny261 binär 0-7, 0x58 88 0xB0 176 1011 .. + xxx + R/W AM2320 ATtiny26 binär 0-7 E/S0-Block Typ A 0x60 96 0xC0 192
-
Datei
makefile.txt
22. # make clean = Clean out built project files. 23. # 24. # make coff = Convert ELF to AVR COFF. 25. # 26. # make extcoff = Convert ELF to AVR Extended COFF. 27. # 28. # make program = Download the hex file to the device, using avrdude. 29. # Please customize the avrdude settings below first! 30. #
in „Problem mit compilen mit headerdatei usw“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TSL26xR.pdf
. . . . . . . . . . −25°C to 85°C Storage temperature range, T stg . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . −25°C to 85°C Lead temperature 1,6 mm (1/16 inch) from
in „Suche Ersatz für TSL260R-LF Lichtsensor“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PCIM_FINAL.pdf
of Su of Instantaneous Input Po ers of Three Phases is Constant Three Phases is Constant PIN 1.5 1.25 p p p 1 1 2 3 0.75 0.5 0.25 0 0 60 120 180 240 300 360 Instantaneous Input Power is Constant Instantaneous Input Po er is Constant pINt) P IN 0 t P INconstant IInstantaneousOututput Po er is Constant
in „Warum werden Cùk Wandler so wenig eingesetzt?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
sboa059.pdf
be bipolar signals (with respect to –15 floating ground). With +V = 30V and V = 15V,Zoperation –50 –25 0 25 50 75 100 125 is similar to standard split supply operation. The load current (a) Temperature (°C) in this circuit, however, flows to the floating ground where it will add to the zener diode current
in „Schalter welcher bei 4 Volt bei einer Spannung von 0.75 -4V schaltet bauen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
lme49600.pdf
LME49600 www.ti.com SNAS422D –JANUARY 2008–REVISED MARCH 2008 LM E49600 H ighPerform ance,H ighFidelity,H ighC urrentA udioB uffer Check for Samples: LME49600 FEATURES APPLICATIONS • Pin-selectable bandwidth and quiescent • Headphone amplifier output drive stage current
in „Kopfhörerverstärker in Studioqualität gesucht“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
lcm5334.pdf
type: Not available Cable type: 40860021 System: 486-586LCD/S, FPUM-3 and AC-2 Display driver: SHA LM64C35P Status: Verified Display CN1 CPU (JPLCD) Function Pin no. Pin no. Function Remarks FLM 1 11 VSYNC M 2 7 M /DISP OFF 3 4 ENVCC CL1 4 10 HSYNC VSS 5 12 GND CL2 6 13 SHFCLK VSS 7 14 GND UD0 8 36 P14
in „LCD-Display: wie ansteuern? unbekannter Typ“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
15W_LED_RGB.pdf
document is subject to change without notice. 1 NPT LED 15W HIGH POWER RGB LED Flux Characteristics (T j= 25°C ;FI = 300m) Wave Length Luminous Color Ordering Code (nm) Flux(lm) 620~630 Red 100~150 520~530 Green 200~300 NPT5RGB102007 Blue 460~470 070~100 Note: NPT maintains a tolerance of +/- 4% on flux measurements
in „Re: [Sammelbestellung] 6 Pin 3W Power RGB LED“ · Markt ·
-
PDF
30W_LED_RGB.pdf
document is subject to change without notice. 1 NPT LED 30W HIGH POWER RGB LED Flux Characteristics (T j= 25°C ;FI = 700m) Wave Length Luminous Color Ordering Code (nm) Flux(lm) 620~630 Red 620~630 520~530 Green 750~850 NPT10RGB627520 Blue 460~470 200~250 Note: NPT maintains a tolerance of +/- 4% on flux measurements
in „Re: [Sammelbestellung] 6 Pin 3W Power RGB LED“ · Markt ·
-
PDF
LM13600_Messung5.pdf
Nr. V log (V ) V IN 10 IN OUT 1 -0,0001 -4,0000 1,3393 LM13600 Logarithmic Amplifier 2 -0,0005 -3,3010 1,2673 3 -0,0048 -2,3188 0,9629 VOUT / V 4 -0,0069 -2,1612 0,8857 5 -0,0365 -1,4377 0,4828 1,4 6 -0,0497 -1,3036 0,4035 7 -0,0727 -1,1385 0,3031 8 -0,1108
in „Low-Cost-Logarithmierer Transistoren?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LM13600_Messung5.pdf
Nr. V log (V ) V IN 10 IN OUT 1 -0,0001 -4,0000 1,3393 LM13600 Logarithmic Amplifier 2 -0,0005 -3,3010 1,2673 3 -0,0048 -2,3188 0,9629 VOUT / V 4 -0,0069 -2,1612 0,8857 5 -0,0365 -1,4377 0,4828 1,4 6 -0,0497 -1,3036 0,4035 7 -0,0727 -1,1385 0,3031 8 -0,1108
in „Genauen Logarithmierer aufbauen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
BOM.pdf
CRCW080520R0FKEA" "1" "20Ohm" "1%" "0.125W" "0805" "Cbp" "Kemet" "C0603C104K3RACTU" "1" "100nF" "0Ohm" "25V" "0603" "Cin" "MuRata" "GRM32ER61C226KE20L" "3" "22uF" "2mOhm" "16V" "1210" "Cramp" "Yageo America" "CC0805KRX7R9BB332" "1" "3.3nF" "0Ohm" "50V" "0805" "Csep" "Kemet" "C0805C225K4RACTU" "2" "2.2uF"
in „Kennt sich wer mit Sepic-Wandlern aus?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Binaeruhr.pdf
0 1 2 3 4 5 6 7 8 9 +5V A U2 +5V A J3 1 LM7805 3 +5V 10kΩ IN OUT R1 J2 Betriebsspannung C4 C3 GND MCRL 7...15V 100nF VDD 6 polige Stiftleiste HDR1X2 330nF 2 GND PGD Anschluss für den PGC PGM Programmer (PICkit3) +5V U1 ICSP B B MCLR RB7 RA0 RB6
in „Seminarprojekt Binäruhr, passenden µC gesucht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
XL4016_Step_Down_Buck_DC_DC_Converter.pdf
Connection Diagram Page 2 1. Specifications Input Voltage Range 5V to 40V DC Output Voltage Range 1.25V to 35V DC (adjustable) Operating Current Range 0.2A to 8A (adjustable) Load regulation +/- 1% Voltage Regulation +/- 1% Maximum Output Power 250W (load) Operating Temperature -40°C to +85°C Dimensions
in „150W 12A Step down Converter -- Synchroner Converter ?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Nixie_Uhr.pdf
angeschlossen? Welcher PNP? -NPN richtig angeschlossen? 2N2222A geeignet? 1 2 3 4 +5V 1 2 3 4 GND 4 D 220R LM324N 2 G DCF77 1 ATMEGA328V-10P D 220R R40 3 N G R16 IC3A 1 1 PC6(/RESET/PCI14) (PCI8/ADC0)PC0 23 P Reed Schalter S 1 (PCI9/ADC1)PC1 24 PT N 22 AGND (PCI10/ADC2)PC2 25 T S S2 21 AREF (PCI11/ADC3)PC3 26
in „Nixie Uhr: Sind K155ID1 und Transistoren richtig angeschlossen?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMV7235_39.PDF
O LM February 20e2 V n 7 D 3 a 5 LMV7235/LMV7239 n L/ P M 45ns, Ultra Low Power, Low Voltage, Rail-to-Rail Input u 7 h 2 Comparator with Open-Drain/Push-Pull Output P 9 General Description Features u 4 The
in „Welche SMD-ICs sind dies?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
an-978_Bootstrap.pdf
occur when the high side power device is on.IfVswerekeptcontinuouslyat400Vtheywouldtypicallybe0.06mWat25°C,goingto2.25mWat125°C.Theselosseswould be virtually zero if S is grounded, as in a push-pull or similar topology. www.irf.com 5 AN978a d) High voltage switching losses (P D(hv)sw comprise two terms,
in „IR2184 half bridgde driver / Ist PWM-Signal begrenzt?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
OURDSO_V2.pdf
LVDS29n, DM0T/(DM1T0/BWS#1T0) 180 S_D6 ON/OFF 0 OUT A11 I/O9 IO, LVDS29p 3 GND OUT 2 1 C58 GND C46 S_A12 25 A12 I/O10 31S_D10 IO, LVDS28n 181 S_D9 330u 104 22u 104 104 47u S_A13 26 A13 I/O11 32S_D11 IO, LVDS28p 182 S_D5 LM2596S-3.3 1 S_A14 27 A14 I/O12 35S_D12 IO, LVDS26p, DQ1T0/DQ1T9 185 S_D10 D1 S_A15 42
in „Oszilloskop aus STM32 und FPGA“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
FN8222.pdf
7.62) Ref. 0.020 (0.51) Half Shoulder Width On All End Pins Optional 0.145 (3.68) Seating 0.128 (3.25) Plane 0.150 (3.81) 0.025 (0.64) 0.125 (3.18) 0.015 (0.38) 0.065 (1.65) 0.045 (1.14) 0.110 (2.79) 0.020 (0.51) 0.090 (2.29) 0.016 (0.41) 0.325 (8.25) .073 (1.84) 0.300 (7.62) Max. 0° Typ. 0.010 (0.25
in „digitales Poti gesucht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
spartan7.pdf
LX3 C73 C72 TCK-044_3.3u 10u 10u D GND GND 2.2u_3A_ IHLP1212BZER2R2M11 3A_BEAD C122 COM P$4 GND 10u 25V 10u 25V10u 2NV 20 20_ROSC 19_FB3 19 7 1 C115 C116 C119 G LM2663M 10n 5 n 22u 22u 2 0 C120 C103 GND R24 C 1 D R 1 47uGND P$1 GND -VOUT P$5 BEAD z 18_COMP3 18 N 15k D 10u 25V 10u 25V-15V25V H G N GND
in „FPGA Board mit FT2232H und Spartan7“ · Projekte & Code ·
-
PDF
Board_SolarAVR_2.pdf
DIS1 TUXGR_16X2_R2 R7 LCD DISPLAY 16x2 220K 3 IC2A 1 R R5 2 D C N N C O S / 0 1 2 3 4 5 6 7 C C 10K LM324N G V C R R E D D D D D D D D N N 1 2 3 4 5 6 7 8 9 0 2 3 4 5 6 R1 D 11 4 +5V V 1 1 1 1 1 1 1 N V + 12R G 5 GNGDGDGDND GND + E GND GND S 2k R1 A Solarzelle, 9V/ 109mA1 MEGA8-P GND J D1 +5V 1 23 VCC 1N4004 IN OUT PC6(/RESET) PC0(ADC0) 24 GND D 22 PC1(ADC1) 25 GND 1 N 21 AGND PC2(ADC2) 26 C1 IC4 C2 G 20 AREF PC3(ADC3) 27 LP2950ACZ-5.0 AVCC PC4(ADC4/SDA) 28 10nF 220uF +5V PC5(ADC5/SCL) +5V C4 9 PB6(XTAL1/TOSC1) at 100nF 10 2 u PB7(XTAL2/TOSC2) PD0(RXD) 3 K
in „Solarspeisung/ Akkuladereglung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
spi_level_shifter.pdf
1 2 3 4 5 6 3 +5V 3 Temperature Measurement Vcc selct + 6 5 +3V3 5 k 4 3 R 4 A 2 1 1,49V @ 25°C A +1V8 10mV/°K JP1 X4-1 X4-2 3 C IC4 6 V V Sensor S3 1 0 + reset LM3355Z R 1 1 3 2 4 C7 + 3 C8 Digital Sensors 1 1 1 1 1 9 8 1 7 6 5 4 3 2 0,47uF 1 0 Diolan R R R R R R R S 1 R R R R R R R 100nF X1
in „SPI Level Shifter - Pegel wird nicht erreicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
triggers.pdf
555 timer chip is also widely available on the Internet. My favorite is the National Semiconductor LM555 Timer specification sheet that is downloadable at www.national.com/ds/LM/LM555.pdf . 555 timer chips are available in a bipolar and a CMOS version (see Figure 1-16). The CMOS ver- sion is typically
in „Mit AVR Digicam auslösen? Relais alternative?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
FAN7621-36163.pdf
0.9 0.9 -50 -25 0 25 50 75 100 -50 -25 0 25 50 75 100 Temp ( C) Temp ( C) Figure 14. CON Pin Enable Voltage vs. Temperature Figure 15. OCP Voltage vs. Temperature © 2009 Fairchild Semiconductor Corporation www.fairchildsemi.com
in „Verbindung einer Leuchtdiode mit einem Fototransistor erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Heizung.pdf
5 4 3 1N4004 R7 D7 9 D9 100n C3 4.7u 2 1 k R + 1 1N4004 1Heizung 1N4004 D1 IC1 C2 100n 8 10 3 2 R8 LM317 1 C12 TR1 +20u/64V R3 R4 R5 R6 1 R k 2 k BAT54 BAT54 BAT54 C1 7 1 2 1 D3 D4 D5 6 2 IC3 100n 100n D8 R1 1 20 C7 820R T1 T2 RESET VCC R17 7 24V 230V C4 2 19 R9 RxD R2 R28 PD0 (RxD) (SCK) PB7 10k 39k
in „PWM-Ansteuerung Heizkabel“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ultraschallsensor1.pdf
4 4 3 3 3 3 3 3 3 3 4 5 6 7 2 7 6 5 4 3 2 1 0 1 0 V P P P P P P P P P P P P P P P P 5 + k 1 2 R 1 LM2901N 4 49 32 2 50 PA2 PD7 31 5 PA1 PD6 4 51 PA0 PD5 30 IC1A - 52 VCC P PD4 29 X 53 GND 5 PD3 28 X 54 3 27 2 2 - 55 ADC7/TDI/PF7 A PD2 26 h R 1 0 56 ADC6/TDO/PF6 G INT0/PD1 25 O W T ADC5/TMS/PF5 M ICP1
in „Valeo Ultraschall-Abstands-Sensor – Signal-Reingeneering“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ultraschallsensor1.pdf
4 4 3 3 3 3 3 3 3 3 4 5 6 7 2 7 6 5 4 3 2 1 0 1 0 V P P P P P P P P P P P P P P P P 5 + k 1 2 R 1 LM2901N 4 49 32 2 50 PA2 PD7 31 5 PA1 PD6 4 51 PA0 PD5 30 IC1A - 52 VCC P PD4 29 X 53 GND 5 PD3 28 X 54 3 27 2 2 - 55 ADC7/TDI/PF7 A PD2 26 h R 1 0 56 ADC6/TDO/PF6 G INT0/PD1 25 O W T ADC5/TMS/PF5 M ICP1
in „MOSFET und Arduino /“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Schaltplan.pdf
t e K2 R 2 +5V +5V +5V s e F 6 F IN DOUT F K9 K10 K14 R R K1X02 0 + C n N n 1 0 4 0 G 5 0 D 1 C 1 LM7805 C 1 r +5V L A z C D B t o S S +12V D C I 1 0 +5V +5V S R 1 M K3 K18 0 X s K K e R O I t I C O S I K s M S M C M S R 470 K5 K6 R2 Video K11 K17 1K Sync R3 0 1 2 3 4 5 6 B B B P P P P P P P P P P K15
in „AVR Tiny Basic Computer mit ATMega1284“ · Projekte & Code ·
-
PDF
ads122c04.pdf
= 128, DR = 20 SPS DR = 20 SPS DR = 2000 SPS Gain = 128, DR = 2000 SPS 100 100 -50 -25 0 25 50 75 100 125 -50 -25 0 25 50 75 100 125 Temperature (qC) Temperature (qC) PGA disabled PGA enabled Figure 22. DC CMRR vs Temperature Figure 23. DC CMRR vs Temperature 2000 2.051 AVDD = 3.3 V )
in „ads122C04 ADC 24Bit“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LMC6482.pdf
65 65 dB Rejection Ratio VO e b2.5V 67 62 60 min VCM Input Common-Mode Va e 5V and 15V Vb b 0.3 b 0.25 b 0.25 b 0.25 V Voltage Range For CMRR t 50 dB 0 0 0 max Va a 0.3V V a a 0.25 V a a 0.25 Va a 0.25 V a a a V V V min A Large Signal R e 2 kX Sourcing 666 140 120 120 V/mV V L Voltage Gain (Notes 7, 13
in „Differenzverstärker als Gleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMC6482.pdf
65 65 dB Rejection Ratio VO e b2.5V 67 62 60 min VCM Input Common-Mode Va e 5V and 15V Vb b 0.3 b 0.25 b 0.25 b 0.25 V Voltage Range For CMRR t 50 dB 0 0 0 max Va a 0.3V V a a 0.25 V a a 0.25 Va a 0.25 V a a a V V V min A Large Signal R e 2 kX Sourcing 666 140 120 120 V/mV V L Voltage Gain (Notes 7, 13
in „messen der Netzspannung am Mega32“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMC6482.pdf
65 65 dB Rejection Ratio VO e b2.5V 67 62 60 min VCM Input Common-Mode Va e 5V and 15V Vb b 0.3 b 0.25 b 0.25 b 0.25 V Voltage Range For CMRR t 50 dB 0 0 0 max Va a 0.3V V a a 0.25 V a a 0.25 Va a 0.25 V a a a V V V min A Large Signal R e 2 kX Sourcing 666 140 120 120 V/mV V L Voltage Gain (Notes 7, 13
in „Wechselstrom messen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LMC6482.pdf
65 65 dB Rejection Ratio VO e b2.5V 67 62 60 min VCM Input Common-Mode Va e 5V and 15V Vb b 0.3 b 0.25 b 0.25 b 0.25 V Voltage Range For CMRR t 50 dB 0 0 0 max Va a 0.3V V a a 0.25 V a a 0.25 Va a 0.25 V a a a V V V min A Large Signal R e 2 kX Sourcing 666 140 120 120 V/mV V L Voltage Gain (Notes 7, 13
in „Transkonduktanz Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMC6482.pdf
65 65 dB Rejection Ratio VO e b2.5V 67 62 60 min VCM Input Common-Mode Va e 5V and 15V Vb b 0.3 b 0.25 b 0.25 b 0.25 V Voltage Range For CMRR t 50 dB 0 0 0 max Va a 0.3V V a a 0.25 V a a 0.25 Va a 0.25 V a a a V V V min A Large Signal R e 2 kX Sourcing 666 140 120 120 V/mV V L Voltage Gain (Notes 7, 13
in „Audio-Signal-Erkennung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMC6482.pdf
65 65 dB Rejection Ratio VO e b2.5V 67 62 60 min VCM Input Common-Mode Va e 5V and 15V Vb b 0.3 b 0.25 b 0.25 b 0.25 V Voltage Range For CMRR t 50 dB 0 0 0 max Va a 0.3V V a a 0.25 V a a 0.25 Va a 0.25 V a a a V V V min A Large Signal R e 2 kX Sourcing 666 140 120 120 V/mV V L Voltage Gain (Notes 7, 13
in „Suche OVP Schaltung für ideale Diode“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LMC6482.pdf
65 65 dB Rejection Ratio VO e b2.5V 67 62 60 min VCM Input Common-Mode Va e 5V and 15V Vb b 0.3 b 0.25 b 0.25 b 0.25 V Voltage Range For CMRR t 50 dB 0 0 0 max Va a 0.3V V a a 0.25 V a a 0.25 Va a 0.25 V a a a V V V min A Large Signal R e 2 kX Sourcing 666 140 120 120 V/mV V L Voltage Gain (Notes 7, 13
in „Gleichrichteschaltung mittels op“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMC6482.pdf
65 65 dB Rejection Ratio VO e b2.5V 67 62 60 min VCM Input Common-Mode Va e 5V and 15V Vb b 0.3 b 0.25 b 0.25 b 0.25 V Voltage Range For CMRR t 50 dB 0 0 0 max Va a 0.3V V a a 0.25 V a a 0.25 Va a 0.25 V a a a V V V min A Large Signal R e 2 kX Sourcing 666 140 120 120 V/mV V L Voltage Gain (Notes 7, 13
in „Leistungsaufnahme 220V erkennen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LMC6482.pdf
65 65 dB Rejection Ratio VO e b2.5V 67 62 60 min VCM Input Common-Mode Va e 5V and 15V Vb b 0.3 b 0.25 b 0.25 b 0.25 V Voltage Range For CMRR t 50 dB 0 0 0 max Va a 0.3V V a a 0.25 V a a 0.25 Va a 0.25 V a a a V V V min A Large Signal R e 2 kX Sourcing 666 140 120 120 V/mV V L Voltage Gain (Notes 7, 13
in „Strommessung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LMC6482.pdf
65 65 dB Rejection Ratio VO e b2.5V 67 62 60 min VCM Input Common-Mode Va e 5V and 15V Vb b 0.3 b 0.25 b 0.25 b 0.25 V Voltage Range For CMRR t 50 dB 0 0 0 max Va a 0.3V V a a 0.25 V a a 0.25 Va a 0.25 V a a a V V V min A Large Signal R e 2 kX Sourcing 666 140 120 120 V/mV V L Voltage Gain (Notes 7, 13
in „Synchrongleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMC6482.pdf
65 65 dB Rejection Ratio VO e b2.5V 67 62 60 min VCM Input Common-Mode Va e 5V and 15V Vb b 0.3 b 0.25 b 0.25 b 0.25 V Voltage Range For CMRR t 50 dB 0 0 0 max Va a 0.3V V a a 0.25 V a a 0.25 Va a 0.25 V a a a V V V min A Large Signal R e 2 kX Sourcing 666 140 120 120 V/mV V L Voltage Gain (Notes 7, 13
in „Betrag bilden mit OpAmp“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMC6482.pdf
65 65 dB Rejection Ratio VO e b2.5V 67 62 60 min VCM Input Common-Mode Va e 5V and 15V Vb b 0.3 b 0.25 b 0.25 b 0.25 V Voltage Range For CMRR t 50 dB 0 0 0 max Va a 0.3V V a a 0.25 V a a 0.25 Va a 0.25 V a a a V V V min A Large Signal R e 2 kX Sourcing 666 140 120 120 V/mV V L Voltage Gain (Notes 7, 13
in „LED-VU-Meter von ELV - komme beim Nachbar nicht weiter“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
VFD_Clock_Assembly_Manual_rev_3.pdf
following tools and materials will be required to assemble the clock: • A good quality soldering iron (25-40W) with a small tip (2-3 mm). • Thin solder wire with no-clean flux. Do not use any flux or grease. • A set of small screwdrivers. • A small wire cutter for electronics. • A wire stripper. • Long nose
in „ESP32 DevKit-C“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
grasshopper_schematic.pdf
-TX_FRAME_SYNC/TIMER1-A1) PC24(LCDC-MODE/MACB1-RX_CLK) C9 PC24[1] [1,6] LED6 54 53 [1,6] LED3 P8 PA25(SSC0-TX_DATA/TIMER1-B0) PC25(LCDC-PWR) B9 PC25[1] [1,6] LED7 56 55 [1,6] LED4 R8 PA26(SSC0-RX_DATA/TIMER1-B1) PC26(LCDC-DATA0/MACB1-TX_ER) G8 PC26 [1] [1,6] LED8 58 57 GND [1,6] LED5 K9 PA27(SPI1-NPCS3
in „Grasshopper Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ISA-AD_guide.pdf
into a single analog-to-digital converter of 8-bit resolution. The external connector is a typical DB-25F. It works as eight channel analog input, a three channel logical (binary) output and a power supply connector for external “fan-out” box. Over-voltage protection should be implemented in the “fan-out
in „automatisches wechsel von Input und Output“ · FPGA, VHDL & Co. ·
-
PDF
17PW20-1.PDF
R872 D855 +12V BC858B A_DIM 2 4 n 0 Q841 C 1 5 2 10k 0 u V D_DIM R874 C 1 1 3 VCC1 TCET110G 47R 27k LM 317T R873 C849 A/D_DIM _SEL 4 I IC828 V 7 5 A VCC2 1 2 C _ 3 VIN VOUT2 10R 1 D819 2n2 R876 5 F ADJ R968 R953 00 8 C847 TL431SAM F2 50V 30k V 8 7 BC848B 1 1k 51 C +24V ST_BY 6 R 4 Q835 7 9 7 k ON/OFF
in „LCD-TV und Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
700185_wiesmeier_christoph_2016.pdf
. . 22 2.7.2.2 Induktives Cell Balancing . . . . . . . . . . . . . . 23 3 Verwendete Technologien 25 3.1 Universal Serial Bus (USB) . . . . . . . . . . . . . . . . . . . . . . . . 25 3.1.1 USB Grundlagen . . . . . . . . . . . . . . . . . . . . . . . . . 25 3.1.1.1 Versionen und Profile . . . . . . .
in „2A 1s Li-ion Lader + Protection“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LiveDesign_Schematics.pdf
A6 SW_USER2 G12 IO,LVDS57n IO,LVDS80p N10 IO24 VCCIO3 SRAM0_D5 M4 B5 DIG0_SEG5 MOUSECLOCK G16 P12 IO25 M12 VCCIO3 GND V3 SRAM0_D4 M5 IO,LVDS7n IO,DPCLK2 (DQS1T) F8 DIG1_SEG2 MOUSEDATA G15 IO,LVDS58p IO M11 P18 VCCIO3 GND V18 SRAM0_A9 M2 IO,LVDS7p(DQ1L3) IO,LVDS25n G8 DIG5_SEG1 G14 IO,LVDS58n IO,LVDS77n
-
PDF
schaltplan.pdf
MEGA8-P G A 1 23 M 1 . 1 . PC6(/RESET) PC0(ADC0) + V R 2 R 2 PC1(ADC1) 24 - 26V R8 K 22 GND PC2(ADC2) 25 1 R 1 100nF 21 AREF PC3(ADC3) 26 0 + R 5 20 AVCC PC4(ADC4/SDA) 27 0 - R16 2 C5 PC5(ADC5/SCL) 28 0 1 5K 1 3 1 + 3 1 4 9 - 1 0 SIGNAL P$2 AD_ODER_DC1 12V PB6(XTAL1/TOSC1) 2 R9 C15 C14 C13 R 1 N AC_ODER_DC_IN1
in „Displaytech 162 und 162A geht nicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LT8646S_single.pdf
23.5V 1 7.5k 30 VC 2 RV1 D D D D D D 200k GND GND C6 CSS1 N N N N N N T C C C C 3 R11 0.47µ/100V 10n/25V C7 G G G G G G R N N N N 0R opt. opt. 330p/50V 3 3 3 3 3 3 2 3 7 2 2 NP GND U2 GND GND VBUS GND GND RT1 GND LM317_3PinPackage BIAS = 10.56V 100k f_sw = 440kHz 3 2 VI VO BIAS J A R12 1 7.5k C GND C R13
in „Handling mit DC/DC buck/boost oder step down - was mache ich falsch?“ · Analoge Elektronik und Schaltungstechnik ·