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1776fs.pdf
1.255 V 1.215 1.265 V I FB Pin Input Bias Current 600 1500 nA IN g m Feedback Amplifier Transconductance lc = 10 A 400 650 1000 mho 200 1500 mho ISRC SNK Feedback Amplifier Source or Sink Current 60 100 170 A 45 220 A V CL Feedback Amplifier Clamp Voltage 2.0 V
in „Stromausfall Datensicherung auf EEprom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet.hk_la1836_172985.pdf
adjustments (adjustment-free MPX VCO: ceramic resonator adopted) • Tuning indicator pin (Can be used as a narrow-band stop signal and as a muting output driver.) • Variable FM stop sensitivity and band SANYO: DIP30SD • Variable AM stop sensitivity • Built-in AM local oscillator buffer unit: mm • Variable
in „Pioneer SX-303RDS Stereo / Filterproblem C defekt im Filter“ · Analoge Elektronik und Schaltungstechnik ·
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FQ44N10F.pdf
DS T On Characteristics V GS(th) Gate Threshold Voltage VDS = VGS, D = 250 µA 2.0 -- 4.0 V R DS(on) Static Drain-Source On-Resistance VGS = 10 V,DI = 21.75 A -- 0.03 0.039 Ω g Forward Transconductance V = 40 V, I = 21.75 A (Note 4) -- 30 -- S FS DS D Dynamic Characteristics C
in „suche mosfet 100V so-8“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BUK7514-55A.pdf
VGS = 5 V; R GS = 50 Ω; T mb = 25 ˚C energy Normalised Power Derating 120 PD% 1000 110 100 ID/A 90 RDS(ON)=VSD/ID tp= 1us 80 100 70 10us 60 100us 50 40 10 DC 1ms 30 10ms 20 100ms 10 0 11 10 100 0 20 40 60 80 100 120 140 160 180 VSD/V Tmb / C Fig.1. Normalised power dissipation. Fig
in „Wärmewiderstandsberechnung FET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BUK_7514-55.pdf
VGS = 5 V; R GS = 50 Ω; T mb = 25 ˚C energy Normalised Power Derating 120 PD% 1000 110 100 ID/A 90 RDS(ON)=VSD/ID tp= 1us 80 100 70 10us 60 100us 50 40 10 DC 1ms 30 10ms 20 100ms 10 0 11 10 100 0 20 40 60 80 100 120 140 160 180 VSD/V Tmb / C Fig.1. Normalised power dissipation. Fig
in „Brauche Hilfe bei Motoransteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRFP450B-1.pdf
Threshold Voltage DS GS D 2.0 -- 4.0 V RDS(on) Static Drain-Source On-Resistance V GS = 10 V,DI = 7.0 A -- 0.31 0.39 Ω gFS Forward Transconductance V DS = 40 V,DI = 7.0 A (Note 4) -- 14 -- S Dynamic Characteristics Ciss Input Capacitance V DS = 25 V, GS = 0 V, -- 2900 3800 pF C Output Capacitance -- 260
in „Suche IRFP 450B“ · Markt ·
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PDF
MTP12P10_D-.pdf
, J = 100°C) − 3.8 Forward Transconductance (VDS = 15 V,DI = 6.0 A) gFS 2.0 − mhos DYNAMIC CHARACTERISTICS Input Capacitance C iss − 920 pF (VDS = 25 V, GS = 0, f = 1.0 MHz) Output Capacitance See Figure 10 C oss − 575 Reverse Transfer Capacitance C rss − 200 SWITCHING
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AD7401.pdf
,V OL 0.4 V max IO= +200 μA POWER REQUIREMENTS V 4.5/5.25 V min/V max DD1 VDD2 3/5.5 V min/V max 6 IDD1 12 mA max V DD1 = 5.25V 7 IDD2 8 mA max V DD2 = 5.5V 4 mA max V DD2 = 3.3V 1Temperature range is −40°C to +85°C. 2All voltages
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Datei
module.c
Templ33_MeasID != Templ69_MB else if(gbGiverStatus == 6){gbStatusCode = 0x07;} // Statuscode : 0x0A --> TEDS Messbereichsinfo ungültig --> Stellung/Verstärkung oder MaxElecValue else if(gbGiverStatus == 7){gbStatusCode = 0x0A;} // Statuscode an AD2010 senden SendStatuscodeToAD2010(); break; } else
in „Atmega644 EEPROM Initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sja1000_beschreibung.pdf
CanSetInterruptFlags(unsigned long BaseAdr, unsigned char interrupt enable); #endif KAPITEL 7. SOURCE-CODE 63 sja1000.c /* This is a RTLinux-module for SJA1000-based CAN-cards. This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the
in „AVR und SJA1000 CAN Controller??“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
None * * Overview: The USB specifications allow some types of USB * peripheral devices to wake up a host PC (such * as if it is in a low power suspend to RAM state). * This can be a very useful feature in some * USB applications, such as an Infrared remote * control receiver. If a user presses the
in „GPIB-nach-USB-Konverter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT3582-12_Datasheet.pdf
which 0110 001 OR 0 0 00000b2:b0 0 b7:b0 0 prohibits subsequent changes to the configuration. The 1000 101 configuration can still be read through the I2C bus and FROMMASTER TO SLAVE A: ACKNOWLEDGE (LOW) FROMSLAVE TO MASTER A: NOT ACKNOWLEDGE (HIGH) theRSTandSWOFFbitsoftheCMDRregister(described R: READ
in „Stromverbrauch einer Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Wetterstation.ino
ESP8266WiFi.h> #include <Wire.h> #include <Adafruit_Sensor.h> #include <Adafruit_BME280.h> #include "FS.h" // WLAN definitions const char* ssid = "Wetterstation"; const char* password = ""; // set to "" for open access point w/o passwortd // Create an instance of the server on Port 80 WiFiServer server
in „ESP8266 arduino maximale String grösse ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
si3459bdv.pdf
0.216 Drain-Source On-State Resistance RDS(on) Ω VGS = - 4.5 V,DI = - 1.9 A 0.240 0.288 Forward Transconductance a g V = - 15 V, I = - 2.2 A 4 S fs DS D Dynamic b Input Capacitance C iss 350 Output Capacitance C oss VDS = - 30 V, GS = 0 V, f = 1 MHz 40 pF C Reverse Transfer
in „SMD Bauteil identifizieren "*"“ · Analoge Elektronik und Schaltungstechnik ·
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Diskreter_Leistungverst_rker_mit_OPVs__-_AN47.pdf
LTAN47 • TA76 Figure 76. A Full Differential, Parallel Path Amplifier. Gain is 1000, with 38MHz Bandwidth. Delay is Inside 7.5ns and Rise Time Under 7ns information to A3 at a trimmed gain of 100. In this case Figure 77 shows the circuit’s response to a 60ns, 2.5mV output amplifier A3 is a differential gain block with a amplitude pulse (Trace A). The X1000 output (Trace B) nominal committed gain of 10. This change is necessi- responds cleanly, with
in „Projekt: DDS basierter Funktionsgenerator mit AD5930“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LGP42-10LF_EAY60869402_PLHF-L923A.pdf
Nominal Frequency 50 / 60 Hz Frequency Variation Range 47 Hz to 63 Hz Phase Single Leakage Current 0.7mA_peak. (100Vac ~ 240Vac) Surge Immunity ± 4kV / 1000ns / 0˚ to 360˚ Hold-up Time More than 20ms at 100Vac and maximum output load Lightning Surge 2kA Normal, Common Mode 80A zero-pk max Inrush Current
in „LG Inverter Kapazitator abgebrannt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1LTC2641_2642.pdf
32,767/32,768) 1111 1111 1111 11xx V (8,191/8,192) 1111 1111 1111 xxxx V (2,047/2,048) REF REF REF 1000 0000 0000 0001 V REF(1/32,768) 1000 0000 0000 01xx V REF(1/8,192) 1000 0000 0001 xxxx V REF(1/2,048) 1000 0000 0000 0000 0V 1000 0000 0000 00xx 0V 1000 0000 0000 xxxx 0V 0111 1111 1111 1111 –V (1/32,768
in „AVR ISP mkII sagt Kurzschluss zwischen SCK & MOSI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BMA150_DataSheet_Rev1.4_14Jan2008.pdf
only or in EEPROM). This first writing is possible because only CSB, SCK and SDI are required for a write sequence and the 3 bit timing diagrams are identical in three-wire and four-wire configuration. Since EEPROM has limited write cycle lifetime (minimum 1000 cycles specified) it is recommended to
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MAX961-MAX999.pdf
3.0 3.5 4.0 4.5 5.0 5.5 6.0 1 10 100 1000 10,000 1 10 100 1000 10,000 SUPPLY VOLTAGE (V) SOURCE CURRENT (µA) SINK CURRENT (µA) MAX961/MAX963 MAX962/MAX964 MAX997/MAX999 SUPPLY CURRENT PER COMPARATOR SUPPLY CURRENT PER COMPARATOR SUPPLY CURRENT
in „Komparator gesucht bis 20 Mhz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1425.pdf
0.4 M -2.0 0.2 ) 0.2 ( -3.0 B 0 B E ( ( U N -0.2 N 0 L -4.0 I -0.4 D P A -5.0 -0.6 -0.2 -6.0 -0.8 -0.4 -7.0 -1.0 -1.2 -0.6 -8.0 0 200 400 600 800 1000 0 200 400 600 800 1000 0.01 0.1 1 10 100 1000 10,000 CODE CODE BANDWIDTH (MHz) INTERMODULATION DISTORTION SIGNAL-TO-NOISE
in „SRam und ADC extern takten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OP196_296_496_empfehlung_aus_AAN_105-03_.pdf
. Closed-Loop Gain vs. Frequency TPC 23. PSRR vs. Frequency 1000 6 V = ⴞ2.5V 900 S 5 VIN= 5V p-p 800 V S ⴞ2.5V V A V= 1 ⍀ TA = 25ⴗC – R = 100k⍀ – G L C700 I 4 N W A600 S E ACL = 10 U P500 P 3 I U T400 O P M T A CL= 1 U 2 O300 I A 200 M 1 100 0 0 100 1k 10k 100k 1M
in „OPV: Invertierer mit dual Supply?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Playtronic_NTL05-_Netzgeraet.pdf
Digitat- 1 DI 198-MARK-KLASSE: EINE KLASSE FUR SICH!! i-f,"=r:-iircIm SreER '- r.^ a 2 wahlwelse auloElisch oder manuell um_ r rr -$:-.{t":fO schallbareMeRsleller 3s "'' a 3-stellige,uchtslark,18mm LED-Gro0anzeige tffii ? 6: '-" " * ':.. a 1/1ooc Aufldsung, [y'eRbereich -55oC bis +1000c
in „Playtronic ptm elektronik - NTL05 - Handbuch- o. Serviceunterlagen gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EB_104.pdf
R7 — 10 Ohms.0W C16 — 1000 pF Ceramicctrolytic C R8 — 2.0 k C17, C18 — Two 0.1 F, 100 V Ceramic each, (ATC 200/823 or C R R9, R21, R22, R23, R24 — 10 k equivalent) R R10 — 8.2 k D1, D2, D3, D4 — 1N4148 A R15, R16, R17, R18 —
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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HX8340-B_T__DS_preliminary_v01_080313.pdf
VSSD VSSD VSSD VSSD DUMMY 6 DUMMY 7 DUMMY 8 DUMMY 9 DUMMY 10 DUMMY 11 C11A C11A C11A C11A C11A C11A C11A C11A C11B C11B C11B C11B C11B C11B C11B VPP_OTP VPP_OTP VPP_OTP VPP_OTP VPP_OTP VPP_OTP DUMMY 12 DUMMY 14 DUMMY 15 DUMMY 16 DUMMY 17 C12A C12A C12A C12A C12A C12B C12B C12B
in „SAMMELBESTELLUNG: 2"2 TFT Display mit 16bit digital interface“ · Markt ·
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FQPF6N90C.pdf
Voltage VDS = V GS, D = 250 µA 3.0 -- 5.0 V RDS(on) Static Drain-Source On-Resistance VGS = 10 V, D = 3 A -- 1.93 2.3 Ω gFS Forward Transconductance VDS = 50 V, D = 3 A (Note 4) -- 5.5 -- S Dynamic Characteristics C iss Input Capacitance
in „Suche MOSFET und passenden Treiber mit galvanischer Trennung für Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
91201.pdf
Gate-Source Voltage V GS ± 20 e T C= 25 °C 70 Continuous Drain Current V GSat 10 V T = 100 °C ID 70 A C Pulsed Drain Current DM 520 Linear Derating Factor 2.0 W/°C b Single Pulse Avalanche Energy E AS 1000 mJ Repetitive Avalanche Current AR 70 A a Repetitive Avalanche Energy E AR 30 mJ Maximum Power
in „Transistor für PWM 30V 50A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1912111437_INJOINIC-IP6518-NEW_C432569.pdf
上升电压 10.5 V 输入欠压阈值 VIN-UV 下降电压 10.2 V 上升电压 34 V 输入过压阈值 VIN-OV 下降电压 32 V 输入静态电流 IQ VIN=12V,VOUT=5V@0A 2 mA 待机电流 standbyVIN=10V 230 uA 功率开关系统 上管导通电阻 R DS(ON) 50 mΩ V1.4 http://www.injoinic.com/ 4 / 13 Copyright © 2017, Injoinic Corp. IP6518 下管导通电阻 RDS(ON) 40 mΩ 开关频率 FS 200 KHz 输出系统 输出电压 VOUT 3 5 20 V
in „36V DC to USB-C PD Controller 20V/5V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NDM3000.pdf
Voltage Figure 14. P-Channel Breakdown Voltage Variation with Temperature. Variation with Temperature. 1000 1000 800 800 500 500 ) F C iss F C iss ( 300 ( E E 300 N N T 200 C oss A C C I 200 oss A A A P C C 100 f = 1 MHz 100 f = 1 MHz V = 0V C rss V = 0V C GS GS rss 50 0.1 0.2 0.5 1 2 5 10 30 50 0.1 0.2 0.5
in „L298 Nachfolger???“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32F350xx_DS_v1.1.pdf
high-level control functions between the audiovisual products linked with HDMI cables. GD32F350xx contain a HDMI-CEC controller which has an independent clock domain and can wake up the MCU from deep-sleep mode on data reception. 3.17 Universal serial bus on-the-go full-speed (USB OTG FS) One USB device/
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32F350xx_DS_v1.1.pdf
high-level control functions between the audiovisual products linked with HDMI cables. GD32F350xx contain a HDMI-CEC controller which has an independent clock domain and can wake up the MCU from deep-sleep mode on data reception. 3.17 Universal serial bus on-the-go full-speed (USB OTG FS) One USB device/
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX3293-MAX3295.pdf
500Ω, 2000 ns 4 CL = 100pF M Driver Disable Time from Low tLZ Figures 4, 5; S1 closeL, R = 500Ω, 1000 ns CL = 100pF A Driver Disable Time from High HZ Figures 4, 5; S2 closeL, R = 500Ω, 1000 ns X CL = 100pF Device-to-Device Propagation Same power supply, maximum temperature 3 900 ns 2 Delay Matching
in „Stromaufnahme eines RS422-Receivers anhand von Datenblatt ermitteln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADIS16250.pdf
. 0 | Page 7 of 20 ADIS16250 TYPICAL PERFORMANCE CHARACTERISTICS 4 0.5 3 2 1 ) σ + 1 ) ° ° ( 0 ( 0 A A B µ B –1 σ – 1 –2 –3 –4 2 –0.5 5 –50 –35 –20 –5 10 25 40 55 70 85 100 - 0 500 1000 1500 2000 2500 3000 - 0 0 TEMPERATURE (°C) 0 TIME (Minutes) 0 Figure7.Biasvs.Temperature Figure10.Biasvs.Time 4 2.0
in „ADIS16250 Gyro Code von Hersteller?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADIS16250.pdf
. 0 | Page 7 of 20 ADIS16250 TYPICAL PERFORMANCE CHARACTERISTICS 4 0.5 3 2 1 ) σ + 1 ) ° ° ( 0 ( 0 A A B µ B –1 σ – 1 –2 –3 –4 2 –0.5 5 –50 –35 –20 –5 10 25 40 55 70 85 100 - 0 500 1000 1500 2000 2500 3000 - 0 0 TEMPERATURE (°C) 0 TIME (Minutes) 0 Figure7.Biasvs.Temperature Figure10.Biasvs.Time 4 2.0
in „Probleme mit Code für Gyro ADIS16250“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADIS16250.pdf
. 0 | Page 7 of 20 ADIS16250 TYPICAL PERFORMANCE CHARACTERISTICS 4 0.5 3 2 1 ) σ + 1 ) ° ° ( 0 ( 0 A A B µ B –1 σ – 1 –2 –3 –4 2 –0.5 5 –50 –35 –20 –5 10 25 40 55 70 85 100 - 0 500 1000 1500 2000 2500 3000 - 0 0 TEMPERATURE (°C) 0 TIME (Minutes) 0 Figure7.Biasvs.Temperature Figure10.Biasvs.Time 4 2.0
in „Drift bei Gyro ADIS16250“ · Mikrocontroller und Digitale Elektronik ·
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PDF
001016774-da-01-en-IC_8BIT_SHFT_REG_SN74HC595N_PDIP_16_TID.pdf
V Q AQ ,HI OL= 6 mA 0.17 0.26 0.4 0.33 Q H′IOL = 5.2 mA 0.15 0.26 0.4 0.33 Q −Q , I = 7.8 mA 6 V 0.15 0.26 0.4 0.33 A H OL II VI= V CC or 0 6 V ±0.1 ±100 ±1000 ±1000 nA IOZ VO= V CCor 0, QA−Q H 6 V ±0.01 ±0.5 ±10 ±5 µA
in „Schieberegister SN54HC595 mit Atmel atmega 88 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
53131a_53132a_bedienungsanleitung_deutsch_komprimiert.pdf
DUTrcycLEt | ≡ J 1 ∏<MUT≡1 | ∣ ∏4P0SWDTHf j $VOLTPEAKS2 |N t j ⅛ -√- χ41j ∏:⅛ENEDΓWIDTH 1 :. ■ . 3 H P 53131A/132A32A Univer sal Count r e Gate & ExtArm j ≡ M M MEASURE » ⅛ ⅛ ⅛ z l irι ,3 GATE:TIME RUN j⅞jjkJg 4tW ≡ RUN jGΛT⅛TC> j-⅜ ⅛ ..H... START: fS ii≡ iΠ H i ≡* ¾ a ⅛ ⅝ ι⅛ r⅛ ⅞ﮏa⅝⅛⅛π⅛M s ∞ STOP: s ≈ -----
in „[V] HP/Agilent 53131a/53132a Bedienungsanleitung deutsch“ · Markt ·
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PDF
ISO1050.pdf
650 mV Vhys Hysteresis voltage IT+– VIT–) 150 mV V High-level output voltage with Vcc = 5V IOH = –4 mA, See Figure 6 VCC – 0.8 4.6 V OH I = –20 A, See Figure 6 V – 0.1 5 OH CC IOL= 4 mA, See Figure 6 VCC – 0.8 3.1 VOH High-level output voltage with Vcc1 = 3.3V V IOL= 20 A, See Figure 6 VCC – 0.1 3.3 I
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PDF
tlc5620.pdf
CHARACTERISTICS RELATIVE GAIN RELATIVE GAIN vs vs FREQUENCY FREQUENCY 0 10 –2 0 –4 –10 d –6 d – – i –8 i a G –20 e e i –10 t l l –30 e –12 R – – VDD = 5 V G –14 G –40 TA= 25°C V = 2 Vdc + 0.5 V VDD = 5 V Input Code = 255pp –16 T = 25°C VA = 1.25 Vdc + 2 V –50 –18 ref pp Input Code = 255 –20 –60 1 10 100 1000 1 10 100 1000 10000 f – Frequency – kHz f – Frequency – kHz Figure 13 Figure 14 APPLICATION INFORMATION TLC5620 _ VO DACA + DACB • • R • DACD NOTE A: Resistor R w 10 kΩ Figure 15. Output Buffering Scheme 10 POST
in „DAC Schieberegister“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CU40026.pdf
CU40026SCPB-S20A VACUUM FLUORESCENT DISPLAY MODULE SPECIFICATION MODEL :CU40026SCPB-S20A CUSTOMER SPECIFICATION NO. :DS-31-0000-01 ISSUE DATE Sep . 21,1987 No: OF PRESENTATION REVISION :Jan. 14.1988 :May 23,1988 PUBLISHED
in „[S] VFD 2x20 datenblatt (cu200211mcpb s31a)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
66712.pdf
and Character Patterns (ROM Code: A02) Lower UpBits000 0001 0010 0011 0100 0101 0110 0111 1000 1001 1010 1011 1100 1101 1110 1111 Bits RAM xxxx0000 (1) CG xxxx0001 (2) CG xxxx0010 RAM (3) CG RAM xxxx0011 (4) RAM xxxx0100 (5) CG xxxx0101
in „ds89c420 @ 32mhz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SANMOTION_R_M0006890N.pdf
R2AA13050H 550 1.2 R2AA13050D 550 1.5 R2AA13120B 1200 2.2 Q1AA10100D 1000 2.5 Q1AA10150D 1500 3.0 Q1AA12100D 1000 2.5 AC Q2AA08075D 750 2.0 40 200V Q2AA08100D 1000 2.5 Q2AA10100H 1000 2.5 Q2AA10150H 1500 3.0 NF30 shape 15A 05 Q2AA13100H 1000 2.5 Manufactured by Q2AA13150H
in „Servoregler/Servoverstärker Verständnislücke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
iPhone_4_schem.pdf
BCLK 3 17 11PP1V8_ALWAYS 1% PCM2_I2S_FS A3 I2S2_LRCLK 3 17 ** LAYOUT: PLACE NEXT TO H3 1/32W 17 8HP_PCM1_I2S_BCLK F4 PCM1_I2S_CLK 1 01005 17 8HP_PCM1_I2S_LRCLK E3 PCM1_I2S_FS PCM2_I2S_DI B2 I2S2_DOUT 3 17 R56 E2 A6 1%1K C 17 8HP_PCM1_I2S_DOUT
in „iphone 4 smd abgebrochen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
marantz-sr8200-9200-service-manual.pdf
. NO COLOR (FORPCS) (MJI) F853 /U FUSE,T2A250VTR5NO.19374 FS20200210 F854 /N/S 482207152002 FUSE,T2.0A250VTR5 FS20200200 F854 /U FUSE,T2A250VTR5NO.19374 FS20200210 L901 /N/S 482224273843 EMIFILTER,DSS306-91-F-223Z FM12223010 L911 /N/S 482224273843
in „MARANZ RC3200 datenkabel belegung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
system_stm32f4xx.c
| PF3 <-> FMC_A3 | PG3 <-> FMC_A13 | | PD8 <-> FMC_D13 | PE7 <-> FMC_D4 | PF4 <-> FMC_A4 | PG4 <-> FMC_A14 | | PD9 <-> FMC_D14 | PE8 <-> FMC_D5 | PF5 <-> FMC_A5 | PG5 <-> FMC_A15 | | PD10 <-> FMC_D15 | PE9 <-> FMC_D6 | PF12 <-> FMC_A6 | PG9 <-> FMC_NE2 | | PD11 <-> FMC_A16 | PE10 <-> FMC_D7 | PF13 <-> FMC_A7 |-----------------+ | PD12 <-> FMC_A17 | PE11 <-> FMC_D8 | PF14 <-> FMC_A8 | | PD13 <-> FMC_A18 | PE12 <-> FMC_D9 | PF15 <-
in „STM32F103 Bluepill mit 128kb lässt sich nicht flashen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
system_stm32f4xx.c
| PF3 <-> FMC_A3 | PG3 <-> FMC_A13 | | PD8 <-> FMC_D13 | PE7 <-> FMC_D4 | PF4 <-> FMC_A4 | PG4 <-> FMC_A14 | | PD9 <-> FMC_D14 | PE8 <-> FMC_D5 | PF5 <-> FMC_A5 | PG5 <-> FMC_A15 | | PD10 <-> FMC_D15 | PE9 <-> FMC_D6 | PF12 <-> FMC_A6 | PG9 <-> FMC_NE2 | | PD11 <-> FMC_A16 | PE10 <-> FMC_D7 | PF13 <-> FMC_A7 |-----------------+ | PD12 <-> FMC_A17 | PE11 <-> FMC_D8 | PF14 <-> FMC_A8 | | PD13 <-> FMC_A18 | PE12 <-> FMC_D9 | PF15 <-
in „stm32f411re timer clock speed ermitteln?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
behringer_eurolive_b112d_sm.pdf
P0AEA:02: {1.0}()] 2 2.0000 C11-17001-62050 DIODE;MUR1620CT;ULTRAFAST RECTIFIER [P0AEA:02: {2.0}()] 8A;200V;TO220AB;BRAND:ON SEMICONDUCTOR 3 1.0000 C12-03300-15043 DIODE;ZD15V0;BZX85C15;DO41 [P0AEA:02: {1.0}()] 4 2.0000 C13-08210-30802 DIODE;RECTIFIER;1000V;HER308 REEL;3A;DO201AD [P0AEA:02: {2.0}()] 5
in „Behringer B112D Funktionsweise Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tps62933-1.pdf
Feedback Product Folder Links: TPS62933 TPS62933 www.ti.com SLUSEA4 – JUNE 2021 1400 1400 1200 1200 1000 1000 z 800 z 800 k k (W W fS 600 f 600 Vin=6V 400 Vin=12V 400 Vin=19V 200 Vin=24V 200 Fsw=500kHz Vin=30V Fsw=1200kHz 0 0 0.001 0.005 0.02I-Load (A)0.2 0.5 1 2 3 4 6 8 10 12 14 16 Vin (A)2 24 26 28 30
in „TI Buck TPS62933.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD7609.pdf
.110 11 D +FSR – (–FSR) )10 ±5V RANGE C000...001 LSB = 218 ( 9 C000...000 Y D111...111 L 8 ±10V RANGE A E 7 E 100...010 S 6 100...001 H 5 100...000 - P –FS + 1/2LSB0V – 1LSB +FS – 3/2LSB 7 4 ANALOG INPUT 0 3 AVCC, DRIVE= 5V Figure37.AD7609TransferCharacteristic 2 f = 200kSPS 1 T = 25°C The LSB size is
in „Unterschiedliches Verhalten innerhalb der gleichen IC-Reihe“ · Analoge Elektronik und Schaltungstechnik ·
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AD7609.pdf
.110 11 D +FSR – (–FSR) )10 ±5V RANGE C000...001 LSB = 218 ( 9 C000...000 Y D111...111 L 8 ±10V RANGE A E 7 E 100...010 S 6 100...001 H 5 100...000 - P –FS + 1/2LSB0V – 1LSB +FS – 3/2LSB 7 4 ANALOG INPUT 0 3 AVCC, DRIVE= 5V Figure37.AD7609TransferCharacteristic 2 f = 200kSPS 1 T = 25°C The LSB size is
in „SPI-Kommunikation von AD-Wandler zu Raspberry Pi“ · Mikrocontroller und Digitale Elektronik ·
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2243913.pdf
values for = 5.5V, T = +25°C. DD A Parameters Sym Min Typ Max Units Conditions Maximum current I — — 2.5 mA Terminal A I , T W = Full-Scale (FS) through Terminal (A, W or B) — — 2.5 mA Terminal B BW , Note 6 W = Zero Scale (ZS) — — 2.5 mA Terminal W AW or BW, W = FS or ZS — — 1.38 mA AB, VB= 0V, VA= 5.5V, RAB(MIN) 4000 — — 0.688 mA AB, VB= 0V, Terminal A VA= 5.5V, RAB(MIN) 8000 and I , V = 0V, — — 0.138 mA Terminal B AB B VA= 5.5V, RAB
in „[V] 11St. SMD Dual Digital Poti - I2C Microchip MCP4561-103 10kOhm 256Steps Nonvolatile (8€)“ · Markt ·