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PDF
SanDisk_MMC_2BRS-MMC_PM_1.0.pdf
or more of the following U.S. Patent Nos. 5,070,032; 5,095,344; 5,168,465; 5,172,338; 5,198,380; 5,200,959; 5,268,318; 5,268,870; 5,272,669; 5,418,752; 5,602,987. Other U.S. and foreign patents awarded and pending. Lit. No. 80-36-00320 Rev.1.0 05/04 Printed in U.S.A. Revision History April 2004 Revision
in „HDD und MMC Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ProdManualIndGradeSDv1.0.pdf
Description Power On SPI Operation CMD0 Mode CS Asserted ("0") Idle State CMD0 From all states except (ina) (idle) Card is Busy or Host ommitted voltage range Inactive State ACMD41 (ina) CMD15 No response (non-valid command) Cards with non-compatible Must be an MMC voltage range Ready State Start MMC (ready
in „Eigenbau Mp3 Player“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32-P207-P407_rev_D.pdf
Close R R R R . A . . . C47 C71 R58 10k 4 N 4 4 49 3.3V 3.3V + 10uF/6.3V/0805 100nF FB2 FB0805/600R/200mA(201209-601) 9 9 8 4 3 C78 LAN R 4 4 4 4 PHY_VDD_PLL 100nF OTG_FS_VBUS R153 0R(NA) 3.3V_A 1:1 1 1 1 1 + C101 0R USB_HOST 1 TD+ 1 R R R R R145 PHY_RSTN 10uF/6.3V/0805 BUZZER 3.3V 4 75 75 COM 3 4.99k
in „Mit STM32F4 einen Laser ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Siemens_B4110.pdf
200 m n schied von ca. 50 Veff so erscheint " U PE " Sondenanschlußkontrolle: automatische Erkennung, auf Sondenanschluß > LIMIT LI> (PROBE oder Tastkopf / Option). 2. Schutzleiterunterbrechung: Isolationsw
in „Reparaturversuch: Norma Unilap 701 X“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Siemens_B4110_TOC.pdf
200 m n schied von ca. 50 Veff so erscheint " U PE " Sondenanschlußkontrolle: automatische Erkennung, auf Sondenanschluß > LIMIT LI> (PROBE oder Tastkopf / Option). 2. Schutzleiterunterbrechung: Isolationsw
in „Reparaturversuch: Norma Unilap 701 X“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OPA642U_20MHz__BB.pdf
3RD HARMONIC DISTORTION –60 –60 G = +2 R L 100 G = +2 ) –65 )–65 B B ( –70 (–70 n n r t t –75 RL= 200 t–75 i i D –80 D–80 n R = 500 n o –85 L o–85 r r R = 500 H H L d –90 d–90 2 3 R L 200 –95 –95 RL= 100 –100 –100 0.1 1 10 0.1 1 10 Output Voltage Swing (Vp-p) Output Voltage Swing (Vp-p) 20MHz 2ND HARMONIC DISTORTION 20MHz 3RD HARMONIC DISTORTION –50 –50 G = +2 G = +2 ) –55 )–55 B c ( –60 ( –60 n RL= 200 n r t t –65 R = 100 o–65 i L i D –70 D–70 R = 200 n i L o –75 o–75 r r H –80 a R = 100 d d–80 L 2 R L 500 3 –85 –85 RL= 500 –90 –90 0.1 1 10 0.1 1 10 Output Voltage Swing (Vp-p) Output Voltage Swing
in „Oszilloskop mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Class-D_PWM_Amplifier_V2_0.pdf
100nF 100nF R77 7 6,935 V_BUS 14 I þÿWE-PD_220µH Jumper LM1117-ADJ U22A 3 + U20 2 - RUN V GND 1 V INA188 70mV = 2V 1 R 12 OVLO SW 1 1 2 13,8V 1 2 13,8V_Ext_Int 3 VI VO 2 +5V 8 8 5 1k OPA1655 680R 8 Rg e 6 F 8 , 7 J 5 5 + + R78 R79 4,17V Rg - R R82 U18B F R 3 VPRG1 D VU16C VU18C U22B 3 + 2 - V 0 8 91R
in „Class D Amp. Schaltplan überprüfen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
R2_MMC1.pdf
or more of the following U.S. Patent Nos. 5,070,032; 5,095,344; 5,168,465; 5,172,338; 5,198,380; 5,200,959; 5,268,318; 5,268,870; 5,272,669; 5,418,752; 5,602,987. Other U.S. and foreign patents awarded and pending. Lit. No. 80-13-00089 Rev 2 4/2000 Printed in U.S.A. Revision History Revisions dated before
in „Multi Media Card (MMC)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R2_MMC1.pdf
or more of the following U.S. Patent Nos. 5,070,032; 5,095,344; 5,168,465; 5,172,338; 5,198,380; 5,200,959; 5,268,318; 5,268,870; 5,272,669; 5,418,752; 5,602,987. Other U.S. and foreign patents awarded and pending. Lit. No. 80-13-00089 Rev 2 4/2000 Printed in U.S.A. Revision History Revisions dated before
in „(ANSI-)C-Code für MMC-Kommunikation?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
r2_mmc1.pdf
or more of the following U.S. Patent Nos. 5,070,032; 5,095,344; 5,168,465; 5,172,338; 5,198,380; 5,200,959; 5,268,318; 5,268,870; 5,272,669; 5,418,752; 5,602,987. Other U.S. and foreign patents awarded and pending. Lit. No. 80-13-00089 Rev 2 4/2000 Printed in U.S.A. Revision History Revisions dated before
in „suche infos über Multimediacard“ · Mikrocontroller und Digitale Elektronik ·
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Datei
modules_install_file_list_LK5.2-RC2.txt
hih6130.ko INSTALL drivers/hwmon/i5k_amb.ko INSTALL drivers/hwmon/hwmon-vid.ko INSTALL drivers/hwmon/ina2xx.ko INSTALL drivers/hwmon/ina209.ko INSTALL drivers/hwmon/ina3221.ko INSTALL drivers/hwmon/it87.ko INSTALL drivers/hwmon/jc42.ko INSTALL drivers/hwmon/lineage-pem.ko INSTALL drivers/hwmon/lm70.ko
in „Linux Kernel 5.1.1. auf dem BPi-R2“ · PC Hard- und Software ·
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PDF
Data_Schottky___HF_Dioden.pdf
replaced with SMD BB 510 BB 212 18 36 1-200-22 15 HF - VHF suitable also for AFC BB 119 0,30 special offer, minimum buyable quantity 10 pcs min. 10 pcs 0,4 2.7 22 200-100-10 28 HF - VHF - UHF , Q specified 100 KHz - 1 GHzBB 122 0,50 0,45 0 5
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PDF
Hantek_Tekway_Voltcraft_DSO_hw1007.pdf
J20_1 PIRA20508PIRA200501 GND GND GND GND LA_X2 PIJ20P10rev10PIJ200P10rLA_D52012 PIR200PIR2002901 PIR2007PIR2007101 B IO, RUP3, (DM1R/BWS#1R) PIUP1520N14 PIC2034 UCOU20J E G K 3 P P T 1 1 1 1 1 1 1 1 1 1 A C C LA_D7IJ200P10rev2PIJ200LA_D15100102 PIJ20P113 140PIJ200P10rLA_D13014
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZN427.pdf
aresetto0,whichproducesanoutputvoltageofV REF/2romthe DAC. This is compared to the input voltage V INa decision is During a conversion the RD input will normally be held high to made on the next negative clock edge to reset the keep the three-state buffers in their high impedance state. Data can be read
in „A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
zn427E.pdf
aresetto0,whichproducesanoutputvoltageofV REF/2romthe DAC. This is compared to the input voltage V INa decision is During a conversion the RD input will normally be held high to made on the next negative clock edge to reset the keep the three-state buffers in their high impedance state. Data can be read
in „Austauschtyp gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
JESD84-B42.pdf
on page 73. JEDEC Standard No. JESD84-B42 Page 25 Power on Idle State CMD0 from all states except (ina) (idle) card is busy or Inactive host omitted voltage range CMD1 State (ina) CMD15 non-compatible voltage range cards, or if host cannot use Sector Access Mode Ready State in cards > 2GB card looses
in „MMC SD library FAT16 FAT32 read write“ · Projekte & Code ·
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PDF
hitachi_hb28b128mm2.pdf
identification mode uses only the command line (CMD). Power on Idle state CMD0 from all states except (ina) card is busy or (idle) host omitted voltage range CMD1 Inact(ina)tate CMD15 cards with non-compatible voltage range card looses bus Ready state (ready) card wins bus CMD2 Identification state (ident
in „0x40 und 0x95 in SD/MMC-Karte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hitachi_hb28b128mm2.pdf
identification mode uses only the command line (CMD). Power on Idle state CMD0 from all states except (ina) card is busy or (idle) host omitted voltage range CMD1 Inact(ina)tate CMD15 cards with non-compatible voltage range card looses bus Ready state (ready) card wins bus CMD2 Identification state (ident
in „MMC oder SD card connector zum 8515“ · Projekte & Code ·
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PDF
hitachi_hb28b128mm2.pdf
identification mode uses only the command line (CMD). Power on Idle state CMD0 from all states except (ina) card is busy or (idle) host omitted voltage range CMD1 Inact(ina)tate CMD15 cards with non-compatible voltage range card looses bus Ready state (ready) card wins bus CMD2 Identification state (ident
in „MMC/SD SPI Mode Multi Block Write“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD8551_8552_8554.pdf
SmallSignalOvershootvs.LoadCapacitanceat5V V SY= ±2.5V C L= 50pF 0V R L ∞ A V 1 V IN VSY = ±2.5V VIN= –200mV p-p (RET TO GND) CL = 0pF R = 10kΩ L VOUT AV = –100 6 0 0V 5µs 50mV 0 20µs 1V 1 0 0 BOTTOM SCALE: 1V/DIV 0 TOP SCALE: 200mV/DIV 1 0 Figure26.SmallSignalTransientResponseat5V Figure29.PositiveOvervoltageRecovery 50 VSY = ±1.35V 45 RL= 2kΩ V T = 25°C IN ) A (40 T 0V O35 H V SY= ±2.5V S R30 V IN= 200mV p-p V (RET TO GND) O25 +OS 0V L C L= 0pF A R L= 10kΩ N20 A = –100 I V S –OS L15 A M10 VOUT S 5 20µs 1V 0 2 0 10 100 1k 10k 1 BOTTOM SCALE: 1V/DIV 0 1 TOP SCALE: 200mV/DIV 1 CAPACITANCE (pF) 0 0 Figure27
in „Chopper Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MG_Model_B__C___D_3_phase_kw.pdf
77.0 1660 3.10 390 170 210 MG80B4-C - 0.75 3.10 / 1.80 0.67 0.78 0.84 82.0 82.0 77.0 1660 4.25 390 200 230 MG90SA4-C2 2 1.10 4.75 / 2.75 0.67 0.77 0.82 79.5 80.0 78.0 1700 6.10 420 170 200 MG90LA4-C2 2 1.50 6.30 / 3.65 0.70 0.80 0.83 79.5 80.5 79.0 1700 8.40 440 200 240 MG100LA4-D2 2 2.20 9.00 / 5.20
in „3Phasen Motoer an FU - Lagergeräusche?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1LTC2433-1fa.pdf
External SCK 19-Bit Data Output Time (Note 8) 19/f (in kHz) ms DOUT_ESCK ESCK t1 CS to SDO Low Z 0 200 ns t2 CS to SDO High Z 0 200 ns t3 CS to SCK (Note 9) 0 200 ns t4 CS to SCK (Note 8) 50 ns tKQMAX SCK to SDO Valid 220 ns t SDO Hold After SCK (Note 5) 15 ns KQMIN 5 SCK Set-Up Before CS 50 ns 6 SCK
in „AVR ISP mkII sagt Kurzschluss zwischen SCK & MOSI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ad9833.pdf
AD9833 is available at this pin. An external load resistor is not required because the device has a 200 Ω resistor on-board. Rev. G |Page 6 of 21 Data Sheet AD9833 TYPICAL PERFORMANCE CHARACTERISTICS 5.5 –40 TA= 25°C VDD = 3V TA = 25°C –45 5.0 VDD = 5V –50 ) ) 4.5 B MCLK/7 A ( ( VDD = 3V –55 D D I F 4.0
in „Aus ca. 0,3V Wechselspannung (Sinus) 15 V Wechselspannung machen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
L6206.pdf
EN 8 29 EN A B OUT1 A 5 20 VSA PROGCL A 9 28 PROGCL B IN1 10 27 IN2 GND 6 19 GND A B GND 7 18 GND INA 11 26 INB SENSEA 12 25 SENSEB OUT1 B 8 17 VSB OCD A 13 24 OCD B OCD B 9 16 OUT2 B N.C. 14 23 N.C. SENSE 10 15 VBOOT B OUT1A 15 22 OUT1B IN1B 11 14 ENB N.C. 16 21 N.C. IN2B 12 13 PROGCL B N.C. 17 20
in „l6206 Datenblatt Fehler?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7609.pdf
4 µs Track-and-Hold AcquisitionTime 1 µs Throughput Rate Per channel, all eight channels included 200 kSPS POWER REQUIREMENTS AV CC 4.75 5.25 V VDRIVE 2.3 5.25 V ITOTAL Digital inputs = 0VDRIVE Normal Mode (Static) 16 22 mA 8 Normal Mode (Operational) SAMPLE200kSPS 20 28.5 mA Standby Mode 5 8 mA Shutdown
in „Unterschiedliches Verhalten innerhalb der gleichen IC-Reihe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD7609.pdf
4 µs Track-and-Hold AcquisitionTime 1 µs Throughput Rate Per channel, all eight channels included 200 kSPS POWER REQUIREMENTS AV CC 4.75 5.25 V VDRIVE 2.3 5.25 V ITOTAL Digital inputs = 0VDRIVE Normal Mode (Static) 16 22 mA 8 Normal Mode (Operational) SAMPLE200kSPS 20 28.5 mA Standby Mode 5 8 mA Shutdown
in „SPI-Kommunikation von AD-Wandler zu Raspberry Pi“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STV5730.pdf
5.0 5.25 V AIDD Analog Supply Current 25 mA AV DD-DV DD Analog to Digital Supply Voltage Difference -200 0 200 mV DV OH Digital Output Voltage High LeveLOAD= -1mA) DV DD- 0.5 V DV OL Digital Output Voltage Low LeveLOAD = +1mA) DGND + 0.5 V DV IH Digital Input Voltage High Level 0.75 x V (DV DD- DGND) DV
in „Videoeinblendung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STV5730A.pdf
5.0 5.25 V AIDD Analog Supply Current 25 mA AV DD-DV DD Analog to Digital Supply Voltage Difference -200 0 200 mV DV OH Digital Output Voltage High LeveLOAD= -1mA) DV DD- 0.5 V DV OL Digital Output Voltage Low LeveLOAD = +1mA) DGND + 0.5 V DV IH Digital Input Voltage High Level 0.75 x V (DV DD- DGND) DV
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PDF
sta508__3_.pdf
power half bridge Features • Multipower BCD technology • Minimum input output pulse width distortion • 200 mΩ R dsON complementary DMOS output stage • CMOS compatible logic input • Thermal protection PowerSO-36 with exposed pad up • Thermal warning output • Undervoltage protection Description STA508 is a
in „Kühlkörper mit Lüfter gegen Passivkühlkörper ersetzen SURE Verstärkermodul“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
US5717962.pdf
maincapacitorischargedbythepredeterminedpositiveor 396/160.205-206;315/241P negativevoltageboostedby thepower supplycircuit.Ina dischargetube.adischargecurrent?ows onthebasisofthe [56] Refemnces Cited charge builtup on the main capacitor. so that?ash light U‘'PATENTDOCUMENTS isinserted1ntheloopofthedischargecurrentfromthemain
in „Projekt: Leistungsstarkes Blitzgerät aus 12 Volt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD7606_7606-6_7606-4.pdf
Figure14.AD7606TypicalINL,±10VRange 0 1.0 AV CC, VDRIVE= 5V AV CC, VDRIVE= 5V INTERNAL REFERENCE F = 200kSPS –20 ±5V RANGE 0.8 T = 25°C A F SAMPLE = 200kSPS 0.6 INTERNAL REFERENCE –40 F IN= 1kHz ±10V RANGE 16,384 POINT FFT ) –60 SNR = 89.48dB 0.4 B THD = –108.65dB ( ) 0.2 E –80 S U ( I L 0 L –100 N P D
in „STM32 Parallel Bus ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OP184_284_484.pdf
Rev. G | Page 7 of 24 OP184/OP284/OP484 500 1.50 V = ±15V S T A 25°C 400 A m 1.25 300 ( ) E n F ( 200 L N P 1.00 E 100 A R U E C 0 / 0.75 S T I –100 E B R T R 0.50 P –200 C I Y –300 L P 0.25 1 U 1 –400 3 S 3 2 2 –500 0 0 0 –15 –10 –5 0 5 10 15 0 ±2.5 ±5.0 ±7.5 ±10.0 ±12.5 ±15.0 ±17.5 ±20.0 COMMON-MODE
in „Bestellbezeichnung OP184ESZ / OP184FSZ“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Linearisierung_HF-Verstaerker.pdf
required for the MR RF envelope. Even though RF envelopes in MR can be a slow-varying sinc pulse,with 200-400 kHz bandwidth, some MR system manufacturers employ a square RF pulse forcalibration that goes from no power to full power within a few hundred nanoseconds. Hence the linearitycompensation scheme
in „Linearisierung von HF-Endstufen“ · HF, Funk und Felder ·
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PDF
5521f.pdf
Low 0.2 V Enable Current EN = 5V 137 A Shutdown Enable Current EN = 0.2V 0.1 A Turn-On Time (Note 3) 200 ns Turn-Off Time (Note 4) 200 ns LO Voltage (Pin 15) Internally Biased 0.96 V Input Voltage (Pins 2, 3) VCC = 5V, Internally Biased 2.20 V VCC = 3.3V, Internally Biased 0.46 V AC ELECTRICAL CHARACTERISTICS
in „Anpassung Differenztialeingang LT5521“ · HF, Funk und Felder ·
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PDF
PIC_32_MX_110_F_016_-_I-SO__11-2-3___SO_28_.pdf
2 2 2 2 2 2 PGED1/AN2/C1IND/C2INB/C3IND/RPB0/RB0 1 21 AN11/RPB13/CTPLS/PMRD/RB13 PGEC1/AN3/C1INC/C2INA/RPB1/CTED12/RB1 2 20 AN12/PMD0/RB12 PIC32MX110F016B AN4/C1INB/C2IND/RPB2/SDA2/CTED13/RB2 3 19 PGEC2/TMS/RPB11/PMD1/RB11 PIC32MX120F032B AN5/C1INA/C2INC/RTCC/RPB3/SCL2/RB3 4 PIC32MX130F064B 18 PGED2/
in „pic32 flash und i/o speed“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC_32M_X_220_F_032_B-50I-SP_____DIP_28_.pdf
2 2 2 2 2 2 PGED1/AN2/C1IND/C2INB/C3IND/RPB0/RB0 1 21 AN11/RPB13/CTPLS/PMRD/RB13 PGEC1/AN3/C1INC/C2INA/RPB1/CTED12/RB1 2 20 AN12/PMD0/RB12 PIC32MX110F016B AN4/C1INB/C2IND/RPB2/SDA2/CTED13/RB2 3 19 PGEC2/TMS/RPB11/PMD1/RB11 PIC32MX120F032B AN5/C1INA/C2INC/RTCC/RPB3/SCL2/RB3 4 PIC32MX130F064B 18 PGED2/
in „PIC32MX flash access time“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps63020.pdf
IN= VINA= 3.6 V, A = 25°C 3500 4000 4500 mA High side switch on resistance V = V = 3.6 V 50 mΩ IN INA Low side switch on resistance V IN= VINA= 3.6 V 50 mΩ Quiescent VIN and VINA IOUT = 0 mA, VEN= V IN= VINA= 3.6 25 50 μA q current V, VOUT V OUT = 3.3 V 5 10 μA TPS63021 FB input impedance V EN = HIGH 1 MΩ I Shutdown current V = 0 V, V = V = 3.6 V 0.1 1 μA S EN IN INA CONTROL STAGE Under voltage lockout threshold V INAvoltage decreasing 1.4 1.5 1.6 V UVLO Under voltage lockout hysteresis 200 mV VIL EN, PS/SYNC input low voltage 0.4 V VIH EN, PS/SYNC input high voltage
in „ESP32-H2 will nicht schlafen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Seite141.pdf
OPERATION (8)_CB391 METAL OXIDE FILM RESISTOR NOTICE (model) 0 1 0 3 0 0 2 0 6 / 1 P 1 2 1 P Q1036 INA6002AC1-TH12 R 1 0 7 (RX-V675/HTR-6066/TSR-6750) (RX-V675/HTR-6066/TSR-6750) METAL FILM RESISTOR J JAPAN R / R / R 1 10K C 4 1 1 C4614(S/T) A1695/C4468 U U.S.A 2 1.2 R1201 61.0 METAL PLATE RESISTOR 1
in „Welcher Kondensator ist das? Womit kann ich ihn ersetzten?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SD_Physical_specs.pdf
supports high capacity, HCS is set to 1 cards with non compatible voltage range(card goes to ACMD41 'ina' state) or tim-eout with HCS=0or1 (no response or busy) occurs cards with non compatible voltage range Card returns or time- out(no response or busy) occurs busy Card returns Card is Unusable ready
in „SD-MMC-Card im SPI oder MMC Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Simplified_Physical_Layer_Spec.pdf
supports high capacity, HCS is set to 1 cards with non compatible voltage range(card goes to ACMD41 'ina' state) or tim-eout with HCS=0or1 (no response or busy) occurs cards with non compatible voltage range Card returns or time- out(no response or busy) occurs busy Card returns Card is Unusable ready
in „SD Karte im Spi Modus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SD_CARD_Simplified_Physical_Layer_Spec.pdf
supports high capacity, HCS is set to 1 cards with non compatible voltage range(card goes to ACMD41 'ina' state) or tim-eout with HCS=0or1 (no response or busy) occurs cards with non compatible voltage range Card returns or time- out(no response or busy) occurs busy Card returns Card is Unusable ready
in „SD Karte und SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Simplified_Physical_Layer_Spec.pdf
supports high capacity, HCS is set to 1 cards with non compatible voltage range(card goes to ACMD41 'ina' state) or tim-eout with HCS=0or1 (no response or busy) occurs cards with non compatible voltage range Card returns or time- out(no response or busy) occurs busy Card returns Card is Unusable ready
in „Lahme 2GB SD Karte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S71248.pdf
) – Extended: -20°C to +85°C – Byte-Program Time: 14 µs (typical) Packages Available – 8-lead SOIC 200 mil body width All non-Pb (lead-free) devices are RoHS compliant PRODUCT DESCRIPTION SST’s serial flash family features a four-wire, SPI-com- current, and time of application. Since for any given volt
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PDF
AN_Hybrid_Kit_for_HP2_module_V1.1.pdf
DC-link capacitor described in chapter 2.2.5 Max Ic Vs Vce 1800 1600 1400 1200 ) 1000 ( I 800 600 400 200 0 200 250 300 350 400 450 Vce (V) Rgoff=2.7Ohm Rgoff=3.9Ohm Rgoff=4.7Ohm Figure 11 Maximal switch-off current at different DC-Link voltages 3.5.4 Maximum switching frequency The IGBT switching frequency
in „Linksammlung für Leistungselektronik“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HS_Systems_Part_2_for_Print_A.pdf
Converter Interfaces ADA4938-1 (0V, 10V) Driving AD9446 in DC-Coupled Application +10V +5V 0.1µF 0.1µF 200Ω 1.87kΩ VIN +3.5V – / + 0.8V ±1.6V AD9446 200Ω 24.9Ω 16-BIT ADC + FROM 50Ω AIN– SOURCE 65.5Ω +3.5V ADA4938-1 3.2V p-p 5nV/√Hz Differential V OCM 64pF Input Span 1kΩ 226Ω 24.9Ω – AIN+ 0.1µF FILTER 200Ω
in „ADCs: Digitale Masse und Oszillator an Analogmasse?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sbea001.pdf
. 2.5 3.0 2.0 VIN 2V 2.0 1.5 W V = 1.5V (D1.0 A IN P T O 1.0 0 I VIN 1V 0.5 2.0 VIN 0.5V 0 ) 0 100 200 300 400 500 (T.0 O Time (µs) I 0 FIGURE 8. Laser Driver Transient Response with +3.3V 0 0.5 1.0 1.5 2.0 Supply. V INV) FIGURE 6. Output Current and Q Power D1ssipation ver- 2.5 sus Input Voltage with
in „OP-Stromregelung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD820.pdf
(Hz) Figure11.Open-LoopGainvs.Temperature Figure14.InputVoltageNoisevs.Frequency 300 –40 RL= 10kΩ 200 –50 A = –1 ) CL V ( –60 E G 100 RL= 10kΩ T RL= 100kΩ L B –70 V ( R 0 D O H R T –80 E VS= ±15V; VOUT = 20V p-p T–100 U –90 P V = ±5V; V = 9V p-p I S OUT –200 RL= 600Ω 3 –100 VS= 0V, +5V; VOUT = 4.5V
in „Präzisionsgleichrichter Gleichrichter Zweiweggleichrichter im IC?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
wr2_rcm_revb.pdf
Hammingwindow HANN vonHann window RECT Rectangular window HISTOGRAM VALUES <maxbins> : = { 20, 50, 100, 200, 500, 1000, 2000} <max_events> : = 20 to2e9 (ina1–2–5 sequence) <center> : = −1e15 to1e15 <width> : = 1e−30 to1e30 (ina1–2–5 sequence) <vert_scale> : = { LIN, LOG, CONSTMAX} H ISTOGRAMN OTATION LIN
in „Oszi einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTSpice_XVII__Tutorial.pdf
4 12 3.536E3 RO1 8 5 150 RO2 7 99 150 RP 3 4 2.143E3 RSS 10 99 1.026E6 50 VB 9 0 DC 0 VC 3 53 DC 2.200 VE 54 4 DC 2.200 VLIM 7 8 DC 0 VLP 91 0 DC 25 VLN 0 92 DC 25 .MODEL DX D(IS=800.0E-18) .MODEL JX PJF(IS=15.00E-12 BETA=270.1E-6 VTO=-1) .ENDS 7.3.1.2. Simulation einer einfachen Verstärkerschaltung
in „Triac selbsterhaltend triggern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTSpice_XVII__Tutorial_korr.pdf
4 12 3.536E3 RO1 8 5 150 RO2 7 99 150 RP 3 4 2.143E3 RSS 10 99 1.026E6 50 VB 9 0 DC 0 VC 3 53 DC 2.200 VE 54 4 DC 2.200 VLIM 7 8 DC 0 VLP 91 0 DC 25 VLN 0 92 DC 25 .MODEL DX D(IS=800.0E-18) .MODEL JX PJF(IS=15.00E-12 BETA=270.1E-6 VTO=-1) .ENDS 7.3.1.2. Simulation einer einfachen Verstärkerschaltung
in „Simulation LT Spice“ · Analoge Elektronik und Schaltungstechnik ·