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PDF
bluenrg-2.pdf
not bypassed), then: – ADC RAW is DATA_CONV_MSB – FS_16(32) = FS_16(64) = 35442 – FS_16(100) = FS_16(200) = 41260 • If SKIP is 1 (filter bypassed), then: – ADC RAW is DATA_CONV_LSB – FS_16(32) = FS_16(64) = 32768 – FS_16(100) = FS_16(200) = 38147 • V REF represents the digital core power supply, typicREFVvalue
in „DC/DC-Wandler im ST BlueNRG-2 - Wofür?“ · Mikrocontroller und Digitale Elektronik ·
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Spektrumanalyse eines Signals auf einem Spektrumanalysator
RIGOL 22:43:52 2026-02-08 Local Status Ref -15.01 dBm Att 10 dB Auto Skal. Peak Skal./Div -16 1.00 dB Ref Pegel TRIG Free -17 -15.01 dBm SWP Cont Input Atten -18 10 dB Auto Manuell Corr -19 Auto Skal. S.T. Skal./Div -20 1.00 dB PA -21 Skalier Typ -22 Lin C.W. Einheit -23 dBm Blank Log -24 Blank Ref Offset -25 0.00 dB Start Freq 1.0000 MHz VBW 1.000 MHz Stop Freq 200.00 MHz SWT 10.000 ms 1/2
in „HP461 - Verstärker 20/40dB“ · HF, Funk und Felder · · Oszi-Bilder
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PDF
ad620.pdf
G E GAIN = 10 A I N N E 20 E R G 10 E T P O 10 V GAIN = 100, 1,000 GAIN = 1000 BW LIMIT 0 1 –400 –200 0 +200 +400 1 10 100 1k 10k 100k INPUT OFFSET CURRENT – pA FREQUENCY – Hz Figure 3. Typical Distribution of Input Offset Current Figure 6. Voltage Noise Spectral Density vs. Frequency, (G = 1–1000)
in „Verständnisproblem Beschaltung Instrumentenverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
C8051F53x.pdf
°C ambient (REFLV = 0) V 25 °C ambient (REFLV = 1)DDV= 2.6 V 2.15 2.2 2.25 V Short-Circuit Current REF — 2.5 — mA V Temperature Coefficient — 33 — ppm/°C REF Load Regulation Load = 0 to 200 µA to GND — 10 — ppm/µA V REFTurn-on Time 1 4.7 µF, 0.1 µF bypass — 21 — ms V REFTurn-on Time 2 0.1 µF bypass —
in „[V]erkaufe 35 µC von Silabs C8051F531 (TSSOP-20)“ · Markt ·
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PDF
C8051F531.pdf
°C ambient (REFLV = 0) V 25 °C ambient (REFLV = 1)DDV= 2.6 V 2.15 2.2 2.25 V Short-Circuit Current REF — 2.5 — mA V Temperature Coefficient — 33 — ppm/°C REF Load Regulation Load = 0 to 200 µA to GND — 10 — ppm/µA V REFTurn-on Time 1 4.7 µF, 0.1 µF bypass — 21 — ms V REFTurn-on Time 2 0.1 µF bypass —
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PDF
LD03-23BxxR2.pdf
76 3000 LD03-23B09R2 9V/333mA 78 1200 UL/CE/CB 3W LD03-23B12R2 12V/250mA 78 1200 LD03-23B15R2 15V/200mA 79 680 LD03-23B24R2 24V/125mA 79 220 Note: * Use suffix ”A2S” for chassis and suffix ”A4S” for DIN-Rail mounting. Input Specifications Item Operating Conditions Min. Typ. Max. Unit AC input 85 --
in „230 Volt PCB-Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
JMTK4004A.pdf
Temperature V BR(DSS) RDS(on) 1.3 2.5 1.2 2.0 1.1 1.5 1.0 1.0 0.9 Tj ℃ ) 0.5 Tj ℃ ) 0 -100 -50 0 50 100 150 200 -100 -50 0 50 100 150 200 Figure 9: Maximum Safe Operating Area Figure 10: Maximum Continuous Drain Current vs. Case Temperature D(A ) 150 ID(A) 104 Limited by RDS(on) 120 103 10μs 90 102 100μs 1ms
in „Bauteil Identifikation SMD erwünscht => MosFet?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX31855.pdf
fSCL 5 MHz SCK Pulse-High Width t 100 ns CH SCK Pulse-Low Width tCL 100 ns SCK Rise and Fall Time 200 ns CS Fall to SCK Rise t 100 ns CSS SCK to CS Hold 100 ns CS Fall to Output Enable DV 100 ns t 40 ns CS Rise to Output Disable TR SCK Fall to Output Data Valid DO 40 ns CS Inactive Time (Note 3) 200
in „Thermoelementcontroller MAX31855 conversion time“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lueftersteuerung.bas
oder 2) Temperatursensor = 1 Dim Luefter As Byte 'wie viele lüfter gibt es (1 oder 2) Luefter = 1 Dim Ref_u As Integer 'Referencespannung messen und hier eintragen Ref_u = 5.22 'Variablen RPM messen Dim Rpm1 As Word Dim Rpm2 As Word Dim Rpm11 As Word Dim Rpm22 As Word Dim Rpm1_temp As Word Dim Rpm2_temp
in „Bascom, AVR Lüftersteuerung, Falsche Drehzahl mit High-Side-PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
semi_eng_apv.pdf
AQZ 205D PeakAC, DC100V PeakAC, DC1.8A 24 V AC AC/ 48 V DC DC type AQZ 207D PeakAC, DC200V PeakAC, DC0.9A 48 V AC 100 V DC 120 V AC AQZ 204D PeakAC, DC400V PeakAC, DC0.45A 200 V DC 4) Power photoMOS High Capacity type (1 Form A) Absolute maximum rating Recommended load voltage Load voltage Load current DC AQZ192 60 V DC 10 A DC 5, 12, 24 V DC type AQZ 197 200 V DC 5 A DC 100 V DC 12 V AC AQZ 202G PeakAC, DC60V Peak AC, DC 6 A 5, 12, 24 V DC 24 V AC AC/ AQZ 205G PeakAC, DC100V Peak AC, DC 4 A 48 V DC DC type AQZ 207G PeakAC, DC200V Peak AC, DC 2 A 48 V AC
in „Gibt es Optokoppler mit Öffner Kontakt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADS1293_3_Kanal_24BIT_EKG_SPI_.pdf
expected ADC output code can be calculated as follows: é 3.5 VTEST 1ù ADC OUT = ê± 2 V + 2úADC MAX ë REF û (2) In Equation 2, the positive or negative DC test signal V TEST = V REF/12. Note that this test mode is not a gain calibration since TEST and V REF are generated by the same reference; however,
in „EKG-IS ADS1293 rückt keine Messwerte raus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
e1529_k8v.pdf
DDR400 2 DoubleSide - SingleSide DDR400 2 - SingleSide SingleSide DDR333 2 - SingleSide DoubleSide DDR200 2 - DoubleSide SingleSide DDR200 2 - DoubleSide DoubleSide DDR200 2 DoubleSide - DoubleSide DDR400 3 SingleSide SingleSide SingleSide DDR333 3 SingleSide SingleSide DoubleSide DDR200 3 SingleSide DoubleSide SingleSide DDR200 3 SingleSide DoubleSide DoubleSide DDR200 3 DoubleSide SingleSide SingleSide DDR333 3 DoubleSide SingleSide DoubleSide DDR200 3 DoubleSide DoubleSide SingleSide DDR200 3 DoubleSide DoubleSide DoubleSide
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LTC1257.pdf
ADC with Shutdown 22 F 5V CH0 VCC CS 8 ANALOG • D INPUT CHANNELS • OUT • LTC1296 CLK P CH7 D IN COM REF+ REF– SSO 50k 50k 5V 74HC04 0.1 F V D CC IN 100 CLK VOUT LTC1257 LOAD 0.1 F GND V REF DOUT V D CC IN 100 CLK VOUT LTC1257 LOAD 0.1 F GND V REF DOUT 1257 TA02 12-Bit Single 5V Control Systemwith Shutdown
in „Elektrometer - Rückkopplung dimensionieren?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
esp8266_hardware_design_guidelines_en.pdf
17 VDDPST P Digital/IO Power Supply (1.8V ~ 3.3V) 18 SDIO_DATA_2 I/O Connects to SD_D2 (Series R: 200Ω); SPIHD; HSPIHD; GPIO 9 19 SDIO_DATA_3 I/O Connects to SD_D3 (Series R: 200Ω); SPIWP; HSPIWP; GPIO 10 20 SDIO_CMD I/O Connects to SD_CMD (Series R: 200Ω); SPI_CS0; GPIO 11 21 SDIO_CLK I/O Connects to SD_CLK (Series R: 200Ω); SPI_CLK; GPIO 6 22 SDIO_DATA_0 I/O Connects to SD_D0 (Series R: 200Ω); SPI_MSIO; GPIO 7 23 SDIO_DATA_1 I/O Connects to SD_D1 (Series R: 200Ω); SPI_MOSI; GPIO 8 Espressif 4/30 2018.12 1. ESP8266EX
in „MCP1700-3302 mit ESP8266“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps62200.pdf
REVISED JUNE 2015 www.ti.com 7.2 Functional Block Diagram VI Current Limit Comparator + Undervoltage _ REF Lockout Bias Supply + Skip Comparator Soft Start _ REF V V(COMP) 1 MHz I Oscillator P-Channel Power MOSFET Comparator S Driver + R SW Sawtooth _ Control Shoot-Through Generator Logic Logic Comparator
in „Schaltregler für 1,2 V (oder 1,5 V ?) aus Li-Ion-Akku“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CLU048-1212C4_P3811.pdf
are the values when the LED is used within the range of the derating curve in this data sheet. *2. Refer to 3. Outline drawing for Tc measurement point. *3. D.C. Current :Tj= Tc + Rj-c × Pi 3 Ref.CE-P3811 11/16 2-3. Chromaticity Characteristics ( Rated current, Tj=85C) Oval parameter Nominal Center Point
in „COB LED Betrieb“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RPS-500-spec.pdf
Built-infa499.2W 499.5W 500.4W 499.2W 499.5W 500.4W 499.2W PEAKPOWER(3sec.) 550W RIPPLE&NOISE(max.) Note.200mVp-p 200mVp-p 200mVp-p 200mVp-p 200mVp-p 200mVp-p 200mVp-p OUTPUT VOLTAGEADJ.RANGE(mainoutput)1.4~12.6V 14.3~15.8V 17.1~18.9V 22.8~25.2V 25.6~28.4V 34.2~37.8V 45.6~50.4V VOLTAGETOLERANCE Note.3±3.0%
in „Trafo für PCB gesucht.“ · Analoge Elektronik und Schaltungstechnik ·
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Rückseite eines Hewlett-Packard Messgeräts
OPERATE AT CREATER THAN 132 VAC WITH 400 Hz AC LINE) LINE 150 VA MAX FUSE 3A 230V SELECT 115V 120V 200V 240V NOM FREQ 400 Hz 60 Hz MAX 1.4A 0.80A CAUTION: VOLTAGE FOR SERVICEABLE PARTS INSURE INSTRUMENT REFERRING TO QUALIFIED PERSONNEL HP-IB METRIC! THIS INSTRUMENT USES ENGLISH HARDWARE CONSULT MANUAL CAUTION: REFER TO SERVICE MANUAL BEFORE REMOVING ANY COVER HEWLETT-PACKARD USA SER 2948A03658 OPT 001 10 MHz EXT REF IN 5V PK MAX REF OUT DIGITAL PORT OUTPUTS HIGH 1 LOW HIGH 2 LOW WARNING: FOR CONTINUOUS PROTECTION
in „[V] HP 8904A Signalgenerator DC-600KHz, zweikanal.“ · Markt · · Fotos
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PDF
W5500_ds_v110e.pdf
configures the time for sending LCP echo request. The unit of time is 25ms. Ex) in case that PTIMER is 200, 200 * 25(ms) = 5000(ms) = 5 seconds PMAGIC (PPP Link Control Protocol Magic number Register) [R/W] [0x001D] [0x00] PMAGIC configures the 4bytes magic number to be used in LCP echo request. Ex) PMAGIC
in „Schaltung W5500“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s8232_e30.pdf
2.70V±100mV 0.300V±20mV 1.0 sec Available S-8232AGFT 4.25V±25mV 4.05±50mV 2.20V±80mV 2.40V±100mV 0.200V±20mV 1.0 sec Available S-8232AHFT 4.25V±25mV 4.05±50mV 2.20V±80mV 2.40V±100mV 0.300V±20mV 1.0 sec Available S-8232AIFT 4.325V±25mV 4.325V *1,2 2.40V±80mV 3.00V±100mV 0.300V±20mV 1.0 sec Unavailable
in „Li-Ion-Anschlussbezeichnungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ISL9301_fn6435.pdf
Block Diagram To USB or AC AdatVIN To sstem load 1000 VOUT IOUT RILIM IBAT 1 VBAT 1000 Cell1 IREF ILIM REF 1 VOUT VOUT_REF Die Temp IBAT_REF 142 o VCC VBAT Push 2S to turn on VBAT IBAT VBAT_REF IREF 1V Die Temp BATT ON 115 o BATON BATT FF TIME COMP S Q SHUTDOWN SHUTDOWN R VIN RTIME VBAT POR PPM CTRL 0.2V
in „Handyakku (3.6V) laden per LadeIC (4,2V)“ · Mikrocontroller und Digitale Elektronik ·
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AD2S90.pdf
Positive voltage w.r.t. AGND indicates in- 3 2 1 20 19 creasing angle. FSD = 375 rps. DATA 4 PIN 1 18REF 18 REF Converter reference input. Normally derived IDENTIFIER from resolver primary excitation. REF = 2 V SCLK 5 AD2S90 17VEL CS 6 TOP VIEW 16CLKOUT rms nominal. Phase shift w.r.t. COS and SIN A 7 (
in „Resolver Anschließen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DSO-1062D_User_Manual_Ver0.pdf
Options Settings Comments Waveforms CH1 Source CH2 off Select a waveform display to store. MATH off RefA REF Select the reference location to store or recall a waveform. RefB Save Save the source waveform to the selected reference location. Operation Ref on Ref off Display or remove the reference waveform
in „Voltcraft DSO-1062D“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GL9540_ServiceManual.pdf
S 2 200-25L97 IC Digltal ul7,U18 74HC4024N S I 200-25]-52 IC Dtgftal ul9 cD4015BCt{ S 1 200-25596 IC Dfgttal u20 Natlonal S I 200-2526L IC Digltal u2L 7493 S 2 200-253L6 IC Dlgiral 74HC4049N S I 200-43200 Crystal
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PDF
IP_Protocol_AVR-Xx100.pdf
came from a controller. The RESPONSE should be sent within 200ms of receiving the request COMMAND. *The form of RESPONSE presupposes that it is the same as that of EVENT. Basic specificatio: The command by ASCII CODE, parameter expression *ASCII CODE which can
in „Mit Raspberry über TCP/IP auf AV-Receiver zugreifen und auf Events reagieren“ · Softwareentwicklung ·
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PDF
295012fd-2954584.pdf
) 0.25 × 45° PACKAGE 0.56 ± 0.05 CHAMFER OUTLINE (2 SIDES) 4 1 (DDB8) DFN 0905 REV B 0.25 ± 0.05 0.200 REF 0.75 ±0.05 0.25 ± 0.05 0.50 BSC 0.50 BSC 2.20 ±0.05 2.15 ±0.05 (2 SIDES) (2 SIDES) 0 – 0.05 RECOMMENDED SOLDER PAD PITCH AND DIMENSIONS BOTTOM VIEW—EXPOSED PAD NOTE: 1. DRAWING CONFORMS TO VERSION
in „[V] 5St. Push Button On/Off Controller LTC2950 (9€)“ · Markt ·
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PDF
295012fd-2954584.pdf
) 0.25 × 45° PACKAGE 0.56 ± 0.05 CHAMFER OUTLINE (2 SIDES) 4 1 (DDB8) DFN 0905 REV B 0.25 ± 0.05 0.200 REF 0.75 ±0.05 0.25 ± 0.05 0.50 BSC 0.50 BSC 2.20 ±0.05 2.15 ±0.05 (2 SIDES) (2 SIDES) 0 – 0.05 RECOMMENDED SOLDER PAD PITCH AND DIMENSIONS BOTTOM VIEW—EXPOSED PAD NOTE: 1. DRAWING CONFORMS TO VERSION
in „[V] 3St. Push Button On/Off Controller LTC2950 (7€)“ · Markt ·
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Display eines Spektrumanalysators mit Menüauswahl
BW: 20 kHz Demod Time: 72 ms Avg | Hold: >10/10 LPF: Off HPF: Off BPF: Off RF Spectrum Scale 10 dB Ref 0 dBm Center: 64.009 MHz #RBW: 1 MHz AF Spectrum Scale 10 dB Ref 40 dBm Start: 0 Hz AF RBW: 200 Hz Mode Select Spectrum Analyzer IQ Analyzer EMI Demod Vector Signal Analyzer Real-Time Spectrum Analyzer Phase Noise Analyzer Demod Waveform Scale 20 % Ref 0 % Max Hold 100.00 % -99.92 % 99.96 % 77.75 % -13.31 dBm 9.984 kHz 41.46 dB 0.845 % 0.000 % Stop: 20 kHz Alignment Completed 22:36 2026-03-11
in „EmbeddedWorld 2026, Tag 3 – Messtechnik, Software und mehr“ · Mikrocontroller und Digitale Elektronik · · Fotos
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PDF
L6207_AN.pdf
I /n I /n OCD 1A 2A COMPARATOR RENA EN A (1A 2A)/n CENA INTERNAL REF OPEN-DRAIN - 1.2V OCD A R 40 TYP.) + OVER TEMPERATURE I REF PROGCLA, R . CLA 18/53 AN1762 APPLICATION NOTE This sensed current is compared to an internally generated reference (adjustable through theexternal
in „Schrittmotor mit L6207“ · Mikrocontroller und Digitale Elektronik ·
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PDF
en.CD00004482.pdf
I /n I /n OCD 1A 2A COMPARATOR RENA EN A (1A 2A)/n CENA INTERNAL REF OPEN-DRAIN - 1.2V OCD A R 40 TYP.) + OVER TEMPERATURE I REF PROGCLA, R . CLA 18/53 AN1762 APPLICATION NOTE This sensed current is compared to an internally generated reference (adjustable through theexternal
in „Treiberstufe fuer Faulhaber Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430f5529.pdf
MDB 3 Channel Registers EEM (L: 8+2) USCI0,1 ADC12_A JTAG/ TA0 TA1 TA2 TB0 USCI_Ax: 12 Bit SBW UART, 200 KSPS REF COMP_B Interface MPY32 Timer_A Timer_A Timer_A Timer_B RTC_A CRC16 IrDA, SPI 5 CC 3 CC 3 CC 7 CC 16 Channels 12 Channels Registers Registers Registers Registers USCI_Bx: (14 ext/2 int) SPI,
in „Fragen zu ADC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Test3.c
Auswertung durch ADC */ /**********************************************/ uint16_t adcmessung(uint8_t ref_und_mux) { uint16_t messwert; uint8_t i; ADMUX = ref_und_mux; ADCSRA = (1<<ADEN); /* "Dummy-Readout" nach Aktivierung des ADCs. "Warm-up". Ein Wert */ /* wird eingelesen und dann wieder verworfen. *
in „Tasterabfrage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
netgear-fs108-benutzerhandbuch.pdf
Ethernet specifications limit the length of cable between hubs and PCs to 100 meters (m) for a total of 200 meters. By adding Fast Ethernet switches between hubs, a network is expanded by 200 meters with the addition of each switch. The illustration below shows two NETGEAR Model FE108 Fast Ethernet Hubs integrated
in „[V] Netgear 8-fach Switch FS 108 + 18 Stk. Netzwerk-/Patchkabel“ · Markt ·
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PDF
sony_str-ks360_ks360s_ver-1.0_sm.pdf
JL3004 L3223 P P P P 3 TP3012 IC3004 T T T T T 11 (11) G 1-878-451- (CHASSIS) • Semiconductor Location Ref. No. Location Ref. No. Location Ref. No. Location Ref. No. Location D1000 F-6 IC1013 C-6 IC3007 E-12 Q3006 B-13 D1003 D-5 IC1014 F-5 IC3008 E-11 Q3007 B-11 D1005 D-5 IC1200 B-6 IC3009 E-10 Q3008 B-10
in „Sony STR KS360S Verstärker geht auf Standby, LED blinkt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SLR2016.PDF
Write A0 Address A1 Decoder SLR/SLO/SLG/SLY2016 2–215 Design Considerations For further information refer to Siemens Appnotes 18 and 19. For details on design and applications of the SLX2016 in An alternative to soldering and cleaning the display modules multiple display systems, refer to Appnote 15 in
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PDF
irfh5300pbf.pdf
Details http://www.irf.com/technical-info/appnotes/an-1136.pdfprint and stencil recommendation, please refer to application noteAN-1136: For more information on package inspection techniques, please refer to application noteAN-1154: http://www.irf.com/technical-info/appnotes/an-1154.pdf Note: For the most current drawing please refer to IR website at: http://www.irf.com/package/ 7 www.irf.com © 2015 International Rectifier Submit Datasheet Feedback May 19, 2015 IRFH5300PbF PQFN 5x6 Part Marking INTERNATIONAL RECTIFIER LOGO DATE
in „Beschaltung Mosfet für Brushless-Regler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AVR_Product_Update_November_2002.pdf
Programming - - 4,10-bit 11,10-bit - ADC 2 2 PWM - - 1 4 - Timers 1 1 2 2 1 Typical Applications Please refer to Section 4.4 Development Tools Software AVR Studio AVR Studio AVR Studio AVR Studio AVR Studio Starter Kits STK500 STK 500, AVRISP STK 500, AVRISP STK500,AVRISP STK500 ICE200,ICE10 ICE200,ICE10 ICE
in „Veraltete AVR's ?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LEM_HLSR-Uebersicht.pdf
/0 2.5V or ref0.8V DC-400 (-3dB) 1 -40...+105 SMD SMD n 2 HLSR 32-SM 1) 32 ± 80 O/L + 3.3/0 1.65V or ref0.460V DC-400 (-3dB) 1 -40...+105 n n n 1 HLSR 32-P/SP33 HLSR 32-SM/ 32 ± 80 O/L + 3.3/0 1.65V or ref0.460V DC
in „Strommessung über Shunt / MOSFET ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LD1117.pdf
Regulation Ta = 25°C 30ms Pulse 0.01 0.1 %/W Table 11: Electrical Characteristics Of LD1117 (ADJUSTABLE) (refer to the test circuits, TJ= 0 to 125°C, C O 10 µF unless otherwise specified) Symbol Parameter Test Conditions Min. Typ. Max. Unit V Reference Voltage V - V = 2 V I = 10 mA T = 1.238 1.25 1.262 V ref
in „Probleme mit 12 Volt Spannungsversorgung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
nFET_ZXM61N02FTA.pdf
Tj:stg -55 to +150 °C THERMAL RESISTANCE PARAMETER SYMBOL VALUE UNIT Junction to Ambient (a) R θJA 200 °C/W Junction to Ambient (b) R θJA 155 °C/W NOTES (a) For a device surface mounted on 25mm x 25mm FR4 PCB with high coverage of single sided 1oz copper, in still air conditions (b) For a device surface
in „Kann diese Schaltung den 74HC132 killen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EEEHA1V100WR.pdf
Endurance Capacitance change Within ±20 % of the initial value (6.3 V.DC of miniature : ±30 %) tan d < 200 % of the initial limit DC leakage current Within the initial limit After storage for 1000 hours at +105 °C±2 °C with no voltage applied and then being stabilized Shelf life at +20 °C, capacitors shall
in „Hoher ESR von (Reichelt) SMD Elkos“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
73758.pdf
Series Fig.13 Response Time vs. Load Resistance Fig.14 Test Circuit for Response Time 500 V CEV IC=2mA 200 Input 100 Ta=25˚C VCC Output 50 tr R ) Input R D L Output 10% µ 20 tf e 90% i 10 VCE t t e d s n 5 r tf p e 2 d R 1 ts Please refer to the conditions in Fig.13. 0.5 0.2 0.1 0.01 0.1 1 10 50 Load resistanceLR
in „PC817 Hilfe wiederstände bestimmen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Hauptplatine.pdf
Sheet: Reference Sheet: PLL and DDS Sheet: Harmonic Filter Sheet: Output Amp and Leveling J2 Ext. Ref. RF in 1 Ext-Ref Ref-Out Ref-In PLL-Out RF-In RF-Out RF-In RF-Out 1 out 2 2 GND GND SDA SDA SDA SDA FSW-A FSW-A ATT-D0 ATT-D0 SCK SCK FSW-B ATT-D1 SLE SCK SLE SCK FSW-C FSW-B ATT-D2 ATT-D1 SLE SLE FSW-C ATT-D2 CS-Ref-PLL CS-Ref-PLL CS-DDS CS-DDS ATT-D3 ATT-D3 CS-M-PLL ATT-LE Unlvld Int-Sel CS-M-PLL M-Lock ATT-LE Unlvld Int-Sel M-Lock B Ext-Sel Ext-Sel Ref-Lock Ref-Lock DDS-Reset DDS-Reset PLL-Mux PLL-Mux Level-Ctrl
in „Oszillator YIG 1,9-4,4 GHz Avantek ASF-9882/7841“ · HF, Funk und Felder ·
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PDF
ADS1293_3_Kanal_24BIT_EKG_SPI_Dez_2014.pdf
expected ADC output code can be calculated as follows: é 3.5 VTEST 1ù ADC OUT = ê± 2 V + 2úADC MAX ë REF û (2) In Equation 2, the positive or negative DC test signal V TEST = V REF/12. Note that this test mode is not a gain calibration since TEST and V REF are generated by the same reference; however,
in „Warum soll ADS1293 mit einem 4,096 MHz Quarz betrieben werden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HA-2540.pdf
for high speed Data • Wideband Amplifiers Acquisition Systems. • High Speed Sample-Hold Circuits Refer to Application Note AN541 and Application Note AN556 for more information on High Speed Op Amp • Fast, Precise D/A Converters applications. Ordering Information For a lower power version of this product
in „HA-2540 Operationsverstärker wird warm“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
NTPmonitor Software-Screenshot mit Netzwerk-Latenz-Diagrammen
Taylor, Edinburgh Host: 192.168.177.1 NTP: stratum: 2 Poll: 2048s, prcsn: 2^-6s Delay: 31ms, dsprsn: 200ms Ref: ntp2.rwtth-aachen.de 20:46:04,92997 reference 21:36:25,58791 priginate 21:36:25,58791 rceive 21:36:25,58791 transmit 21:36:25,58791 return/ Offset: 0,0ms Host: 192.168.177.12 (status: unknown
in „GPS-Uhr & NTP-Server auf einem ESP32-P4“ · Projekte & Code · · Screenshots
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Datei
TV_ADC.asm
#################################################### ; ADMUX ADC Multiplexer Selection Register ; REFS1:0: Reference Selection Bits ; REFS1 REFS0 Voltage Reference Selection ; 0 0 AREF, Internal Vref turned off ; 0 1 AVCC with external capacitor at AREF pin ; 1 0 Internal 1.1V Voltage Reference with
in „ATmega1284P ADC Initialisierung Probleme - Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SIWARD-XTL581100-J96-011_C211356.pdf
µW [2] Frequency Stability : Item Symbol MIN. TYP. MAX. Unit Condition Tolerance dF/Fo -10 10 ppm Refer to Center Frequency @25±3℃ Stability Over Temperature dF/F25 -10 10 ppm Refer to Operating Temperature Aging dF/F25 -2 2 ppm Per Year dF/Fo: Frequency Deviation Refer to Center Frequency dF/F25: Frequency Deviation Refer to 25 ℃ Frequency SPEC. NO.: J96-011 [3] Electrical Performance : Item Symbol MIN. TYP. MAX. Unit Condition Equivalent Series Resistance ESR 80 Ω @Series Shunt Capacitance C0 5 pF Insulation Resistance
in „Atmega328P Quartz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Abluftsteuerung.pdf
1 2 3 4 5 6 Power Input: 5V DC J2 +5V F1 Barrel_Jack 200mA 1 TP1 TestPoint 2 D3 C1 1N4001 10uF +5V A A TP2 TestPoint GND GND GND R7 10kOhm +5V U2B LM2904 R3 R4 TP3 U2A TP6 LM2904 5 Current Transformator: 10kOhm 10kOhm TestPoint TP5 + TestPoint 8 Vacuumschmelze
in „Abluftsteuerung mit Nachlauf“ · Mikrocontroller und Digitale Elektronik ·
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L6219.pdf
All Inputs - - 0.8 V IN(H) Input Current VIN = 2.4V - <1 20 A IN(L) Input Current VIN = 0.84V - -3 -200 A V REF Reference Voltage Operating 1.5 - 7.5 V SS(ON) TotalLogic Supply Current o = 1 = 0.8V, No Load - 64 74 mA ISS(OFF) TotalLogic Supply Current o = 1 = 2.4V, No Load - 10 14 mA COMPARATORS VREF
in „Schrittmotor“ · Mikrocontroller und Digitale Elektronik ·