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CS8126-1YDPS7G_drop_out_5V_linear_regler.pdf
= 14 V 25°C V ( 70 ( 600 t −40°C e 125°C e 60 t 500 r o C 50 t 400 n u e 40 p 300 s r −40°C i 30 D 200 Q 20 100 10 0 0 0 100 200 300 400 500 600 700 800 0 100 200 300 400 500 600 700 800 Output Current (mA) Output Current (mA) Figure 8. Dropout Voltage vs. Output Figure 9. Quiescent Current vs. Output
in „Suche Spannungsregler CS8126-1YDPS7G“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RAC02-GB-Netzteil.pdf
µF] RAC02-3.3SGB 85-264 3.3 500 63 500 RAC02-05SGB 85-264 5 400 63 500 RAC02-12SGB 85-264 12 167 68 200 RAC02-15SGB 85-264 15 140 63 200 RAC02-24SGB 85-264 24 83 63 200 Notes: Note1: Measured with all input voltages at +25°C with constant resistant mode at full load Model Numbering E196683 RAC02-__ SGB
in „0-10V in Stufen mit Auf-/Ab-Kontakt durchschalten“ · Haus & Smart Home ·
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RDA1846_Data_01.pdf
amplitude can be sent into the chip directly. (How to configure the internal XTAL oscillator, refer to the programming guide) 3.5 DSP functions The DSP accomplishes the demodulation and modulation of the FM signal. Standard walkie-talkie features such as CTS, CDS, VOX and SQ etc. are provided through the 8 GPIOs. (How to configure the GPIOs, refer to the programming guide) 3.6 Integrated LDO LDOs are integrated on chip which eliminates using one LDO chip on the PCB. Supply voltage for the chip is suggested to be within 3.3V~4.8V. Acommon share
in „Tranceiver Chip RDA1846 Erfahrungen Selbstbau“ · HF, Funk und Felder ·
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Datei
IS66WVH16M8ALL_Rev0_3.v
rwds_in = rwds; reg rwds_out; reg rwds_out_en; wire rwds = (rwds_out_en ? rwds_out : 'bz); reg rwds_ref; reg [10:0] ref_t; reg rwds_out_t; reg rwds_dly; reg rwds_to; reg [8:0] burst_cnt; reg rwds_out_in; reg rwds_H; reg rwds_L; reg CL_ref; reg ref_cnt; reg [7:0] dq_in_pos; reg [7:0] dq_in_neg; reg [7:
in „HyperBus Ideen“ · FPGA, VHDL & Co. ·
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PDF
msp430f1232.pdf
V > V /V (see Note 4) 1.4 V V VREF−/ eREF− ) reference voltage input eREF+ REF− eREF− CC IVeREF+ Static input current 0V ≤VeREF+ ≤ VCC 2.2 V/3 V ±1 µA IVREF−/VeREF− Static input current 0V ≤ VeREF−≤ V CC 2.2 V/3 V ±1 µA NOTES: 1. The external
in „MSP430 Interrupt Prioritäten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT3012.pdf
100mA E400 V400 E400 A T T J 25°C A L O L V300 TJ= 25°C O300 V300 I = 50mA T R T L O D O I = 10mA O200 D200 O200 L R T R D A D IL= 1mA 100 A100 100 U G 0 0 0 0 50 100 150 200 250 0 50 100 150 200 250 –50 –25 0 25 50 75 100 125 150 OUTPUT CURRENT (mA) OUTPUT CURRENT (mA) TEMPERATURE (°C) 3012 G01 3012
in „Linear Regler schwingt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTC1799f_oscillator_info.pdf
2.5 % 1kHz f 5kHz 2.5 % 10MHz f 20MHz 2.5 % R SET Frequency-Setting Resistor Range f < 1.5% V = 5V 5 200 k V+= 3V 10 200 k + fMAX MaximumFrequency f < 2.5%, Pin 4= 0V V+= 5V 33 MHz V = 3V 20 MHz f Minimum Frequency f < 2.5%, Pin 4= V 1 kHz MIN f/ T Freq Drift Over Temp (Note 3) R SET= 31.6k 0.004 %/°C
in „Ein Rechteckgenerator mit LTC1799 - Nachbrenner?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
7805.pdf
OutputVoltage o = 5 mA to 1 A P o 15W 19 20 21 V Vi= 24to 35 V o Vo* LineRegulation Vi= 22.5to 35V Tj= 25 C 200 mV Vi= 26to 32 V T j 25 C 100 mV Vo* Load Regulation o = 5 to 1500 mA Tj= 25 C 200 mV I = 250 to 750mA T = 25 C 100 mV o j Id Quiescent Current Tj= 25 C 6 mA d Quiescent Current Change o = 5 to 1000
in „Pic schaltung mit Netzteil versorgen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
179205-da-01-en-Festspannungsregler_78XX.pdf
o = 1 A Tj=25 C 2 V R OutputResistance f = 1 KHz 22 m o sc Short CircuitCurrent Vi= 35 V T j25 Co 200 mA Iscp Short CircuitPeak Current Tj= 25 C 2.1 A ELECTRICALCHARACTERISTICS FOR L7820C (refer to the test circuits, T = 0 to125 C, V =28j, o i Io= 500 mA,C = 0.i3 F, C = 0.1 Founless otherwise specified
in „Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pt2322.pdf
20 5 -30 -40 2 -50 1 -60 0.5 d -70 % B -80 0.2 -90 0.1 -100 -110 0.05 -120 -130 0.02 -140 20 50 100 200 500 1k 2k 5k 10k 20k 0.01 Hz UP : TONE CONTROL (FL/FR) 0.006 BOTTOM : TONE CONTROL OUT (CTR/SUB/SL/SR) 1m 2m 5m 10m 20m 50m 200m 500m 1 2 4 Vrms THD vs Output Level L/R Channel Separation +15 +15 +12.5
in „5.1 Verstärker bauen (paar Fragen und Bauteilalternativen)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pt2322.pdf
20 5 -30 -40 2 -50 1 -60 0.5 d -70 % B -80 0.2 -90 0.1 -100 -110 0.05 -120 -130 0.02 -140 20 50 100 200 500 1k 2k 5k 10k 20k 0.01 Hz UP : TONE CONTROL (FL/FR) 0.006 BOTTOM : TONE CONTROL OUT (CTR/SUB/SL/SR) 1m 2m 5m 10m 20m 50m 200m 500m 1 2 4 Vrms THD vs Output Level L/R Channel Separation +15 +15 +12.5
in „DIY 5.1 Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PT2322-s.pdf
20 5 -30 -40 2 -50 1 -60 0.5 d -70 % B -80 0.2 -90 0.1 -100 -110 0.05 -120 -130 0.02 -140 20 50 100 200 500 1k 2k 5k 10k 20k 0.01 Hz UP : TONE CONTROL (FL/FR) 0.006 BOTTOM : TONE CONTROL OUT (CTR/SUB/SL/SR) 1m 2m 5m 10m 20m 50m 200m 500m 1 2 4 Vrms THD vs Output Level L/R Channel Separation +15 +15 +12.5
in „Atmega 328 / PT2322 / 5532 Rauschen und I2C Fiepen.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pt2322.pdf
20 5 -30 -40 2 -50 1 -60 0.5 d -70 % B -80 0.2 -90 0.1 -100 -110 0.05 -120 -130 0.02 -140 20 50 100 200 500 1k 2k 5k 10k 20k 0.01 Hz UP : TONE CONTROL (FL/FR) 0.006 BOTTOM : TONE CONTROL OUT (CTR/SUB/SL/SR) 1m 2m 5m 10m 20m 50m 200m 500m 1 2 4 Vrms THD vs Output Level L/R Channel Separation +15 +15 +12.5
in „Atmega 328 / PT2322 / 5532 Rauschen und I2C Fiepen.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
dac8512.pdf
through the resistor is 200 A, maximum. the reference’s output voltage requires no trimming because of Bipolar Output Operation the REF02’s excellent load regulation and tight initial output Although the DAC8512 has been designed
in „µC soll Strom rausgeben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HS_Systems_Part_2_for_Print_A.pdf
+ ⎟Vin− Vref ⎝ R 1⎠ R1 A R 2 - NOISE GAIN =1+ VREF R1 R1 R2 VIN V = −R 2V − R 2V - R2 out R1 in R3 ref V R1 REF B NOISE GAIN = 1+ R2 R3 + R1||R3 VIN R2 R2 ⎛ R 4 ⎞⎛ R 2⎞ - V out= − Vin+ ⎝ ⎠⎝1+ ⎠Vref R1 C R1 R3 +R 4 R 1 R2 V + NOISE GAIN = +1 R1 REF R3 R4 In dc-coupled applications, the drive amplifier
in „ADCs: Digitale Masse und Oszillator an Analogmasse?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OZ965.pdf
0.1u R2 22 R3 150k C3 10u R4 20k R5 0.1u 15k C5 J2 R6 59.0k 2 7 1 HV U1 2 RTN 1 16 17:2200 68p 3kv 2 REF VDD 15 U2 3 HCLMP RT 14 2 8 5 6 4 LCLMP CT 13 1 7 5 SCP OPS 12 470p C6 T1 6 ADJ ENA 11 Q1 C7 7 FB NDR 10 4 6 10u 8 CMP PDR 9 3 5 GND SST C9 OZ965 C10 Q2 0.01u C8 2.2u 0.1u Si4532 3 2 CR3 R13 BAV99L
in „Background-Beleuchtung für TFT-Display“ · Mikrocontroller und Digitale Elektronik ·
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LTC6803-2_4.pdf
ADC OUTPUT T I14 ) N N12 ( F 15 F N–30 O O10 I E E C B 10 B 8 J–40 U U R N N 6 –50 5 4 –60 2 0 0–250–200–150 –100 –50 0 50 100 150 200 –70 –250–200–150 –100 –50 0 50 100 150 200 10 100 1k 10k 100k 1M 10M CHANGE IN GAIN ERROR (ppm) CHANGE IN GAIN ERROR (ppm) FREQUENCY (Hz) 680324 G10 680324 G11 680324 G12
in „uC für Schaltregler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CP-Clare-PRME-15002.pdf
Signaling Switching Frequency PRMA/PRME/DSS7 500 Hz Metering PRMA Form C 50 Hz MSS2/MSS7/MVS2/MVS7 200 Hz APPROVALS Contact Resistance PRMA/PRME/DSS7 150 mΩ UL approval (DSS7 & PRMA) PRMA Form C 200 mΩ EN 60950 certified (MVS7, DSS7 & MSS7) CSA approval (PRMA) MSS2/MSS7/MVS2/MVS7 100 mΩ (See detailed
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PDF
CP-Clare-PRME-15002.pdf
Signaling Switching Frequency PRMA/PRME/DSS7 500 Hz Metering PRMA Form C 50 Hz MSS2/MSS7/MVS2/MVS7 200 Hz APPROVALS Contact Resistance PRMA/PRME/DSS7 150 mΩ UL approval (DSS7 & PRMA) PRMA Form C 200 mΩ EN 60950 certified (MVS7, DSS7 & MSS7) CSA approval (PRMA) MSS2/MSS7/MVS2/MVS7 100 mΩ (See detailed
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AXP202_PMU.pdf
for Input & Output o LDO1:Always-on 30mALDO1 o Overvoltage/Undervoltage Protection(OVP/UVP) o LDO2:200mALow Noise with voltage o Overcurrent Protection(OCP) from 1.8V to 3.3V and 100mV/step o Overtemperature Protection(OTP) o LDO3:200mAwith Voltage from 0.7V to o Support OTG VBUS Power State Setting/
in „LilyGo T-Watch 2020 v1 Micropython“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSW-124.pdf
.015 [.38] .010 [.25] .020 [.51] (8X) 7° MAX. TYP 60° .065 [1.65] (8X) .030 [.76] TYP(8X) .010 [.25] REF .065 [1.65] REF .160 [4.06] .290 [7.37] W1 .140 [3.56] REF Pin Out Pin Function Description 1 GND Ground DOT MARK HEATSINK PLATE 2 J1 RF in DENPIN 1 LOCATION 45° MAX. TYP(8X) 3 GND Ground .008 [.20]
in „suche für Rohde&Schwarz SML03 Abschwächerbaugruppe oder IC 4227T“ · Markt ·
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Datei
Konv2.c
include <utime.h> #include <windows.h> #define MAXLINELENGTH 32768 typedef struct { int aktiv; char Name[200]; char Formel[200]; } satz; double X[1024],Y[1024],Z[1024]; double Ddummy[1024]; int Geduld=0; #include "Formelparser.c" FILE *outfile; satz *feld; int Inspalten=8,spalten,Minzeit=0,Startzeit=0, Zahlenformat
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MCP73831.pdf
Comparator Filter tCHARGE 0.4 1.3 3.2 ms Average V BAT Status Indicator Status Output turn-off tOFF — — 200 μs ISINK= 1 mA to 0 mA — — 200 μs I = 0 mA to 1 mA Status Output turn-on tON SINK TEMPERATURE SPECIFICATIONS Electrical Specifications: Unless otherwise indicated, all limits aDDl= [VREG (typ.) + 0.3V
in „Akku Ladetechnik“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZN427.pdf
RD high, thus enabling the V V three-state output. Readout is non-destructive. The BUSY MSB to 0 if REF > VINr leave it set to 1 if REF < V IN 2 2 outputmaybetiedtotheRDinputtoautomaticallyenablethe Bit 2 is set to 1 on the same clock edge, producing an output outputs when the data is valid. V REF V REF
in „A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
zn427E.pdf
RD high, thus enabling the V V three-state output. Readout is non-destructive. The BUSY MSB to 0 if REF > VINr leave it set to 1 if REF < V IN 2 2 outputmaybetiedtotheRDinputtoautomaticallyenablethe Bit 2 is set to 1 on the same clock edge, producing an output outputs when the data is valid. V REF V REF
in „Austauschtyp gesucht“ · Mikrocontroller und Digitale Elektronik ·
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1407fa.pdf
Distortion 1.56MHz into CH0. Also Applicable to CH1 and CH1 Code-to-Code V = 2.5V (Note 17) 0.25 1 LSB REF RMS Transition Noise Full Power Bandwidth VIN 2.5VP-P SDO = 11585LSBP-P(–3dBFS) (Note 15) 50 50 MHz Full Linear BandwidthS/(N + D) ≥ 68dB 5 5 MHz U U U I TER AL REFERE CE CHARACTERISTICS TA= 25°C. VDD
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Datenblatt.pdf
A V I L1.0 R N 1.0 A O D O M H D D R E I A N 0.5 L E T A R 0.5 R B O N 0 0 -80 -40 0 40 80 120 160 200 -80 -40 0 40 80 120 160 200 T , JUNCTIONTEMPERATURE ( C) T , JUNCTIONTEMPERATURE ( C) J J FIGURE 10. NORMALIZED GATETHRESHOLDVOLTAGE vs FIGURE 11. NORMALIZED DRAINTO SOURCE BREAKDOWN JUNCTIONTEMPERATURE
in „Motorensteuerung Raspberry PI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ltc6812-1.pdf
noted. + VREF2 REG Line Regulation V REF2V Line Regulation VREF2 Load Regulation . R R . R R R R R R . . . . . . R V Thermal Hysteresis, Hot V Thermal Hysteresis, Cold V Change Due to IR Reflow REF2 REF2 REF2 R R R R R R B B B R R R + VDRIVE
in „Differenzverstärker INA105“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM317.PDF
9.347 C 0.170 0.180 4.318 4.572 P D 0.026 0.036 0.660 0.914 J E 0.045 0.055 1.143 1.397 N F 0.051 REF 1.295 REF D R G 0.100 BSC 2.540 BSC 0.010 (0.254) M T H 0.539 0.579 13.691 14.707 J 0.125 MAX 3.175 MAX G K 0.050 REF 1.270 REF L 0.000 0.010 0.000 0.254 M 0.088 0.102 2.235 2.591 N 0.018 0.026 0.457 0.660 P 0.058 0.078 1.473 1.981 R 5 REF 5 REF C S 0.116 REF 2.946 REF U 0.200 MIN 5.080 MIN V 0.250 MIN 6.350 MIN http://onsemi.com 10 LM317 Notes http://onsemi.com 11 LM317 ON Semiconductor and are trademarks of Semiconductor Components
in „Spannungsregler für Kleinverbraucher bei 1,2V gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
energies-15-09251.pdf
11, 1–13. [CrossRef] 21. Zhang, Y.; Wang, C.Y. Cycle-life characterization of automotive lithium-ion batteries with LiNiO2 cathode. J. Electrochem. Soc. 2009, 156, A527. [CrossRef] 22. Islam, S.R.; Park, S.Y.; Balasingam
in „Batterieheizung durch Ripplestrom“ · Fahrzeugelektronik ·
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PDF
SMD_Catalog.pdf
-4 Volt. Detect. (4.000 V/Open Drain,Active-Low) ABF LM4041AIX3-1.2 Max L SC70 1.225V 0.1% shunt V ref ABG MAX6411BS41-T Max UC4 UCSP-4 Volt. Detect. (4.100 V/Open Drain,Active-Low) ABG LM4041BIX3-1.2 Max L SC70 1.225V 0.2% shunt V ref ABH MAX6411BS42-T Max UC4 UCSP-4 Volt. Detect. (4.200 V/Open Drain
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
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PDF
si4701_progrguideAN230Rev0_3.pdf
setting SEN low will select 3- wire operation. SDIO must always be set low on the rising edge of RST. Refer to "Table 4. Reset Timing Characteristics" and "Figure 1. Reset Timing Diagram" of the Si4700/01 data sheet for more information. Setting the ENABLE bit high and the DISABLE bit low will powerup the
in „SI4701 Datenblatt, Applikation Notes“ · Mikrocontroller und Digitale Elektronik ·
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Datei
572727.html
nummerieren, und dann mit einem Textfile als Ergänzung als Inhaltsverzeichnis erstellen. <a href="#fn200" class="footnote-ref" id="fnref200" role="doc-noteref"><sup>200</sup></a></p> <h2 id="np-r.-samweis-1"> Np R. (samweis) </h2> <p>Wer etwas in der Birne hat, der kann die offizielle Abkürzung verwenden
in „Wirklich nutzbare Alternative zu Word un Excel?“ · PC Hard- und Software ·
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PDF
ABA0000C1022.pdf
0.030 9000 0.6 3.5 5.0 EEUFR0J152L( ) 200 1000 6.3 1800 10 16 1790 0.028 8000 0.6 5.0 5.0 EEUFR0J182( ) 200 500 2200 10 20 2180 0.020 10000 0.6 5.0 5.0 EEUFR0J222( ) 200 500 2700 10 25 2470 0.018 10000 0.6 5.0 5.0 EEUFR0J272L( ) 200 500 3300
in „EGO Herdplatte defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EEUFR_eng_tds__1_.pdf
0.030 9000 0.6 3.5 5.0 EEUFR0J152L( ) 200 1000 6.3 1800 10 16 1790 0.028 8000 0.6 5.0 5.0 EEUFR0J182( ) 200 500 2200 10 20 2180 0.020 10000 0.6 5.0 5.0 EEUFR0J222( ) 200 500 2700 10 25 2470 0.018 10000 0.6 5.0 5.0 EEUFR0J272L( ) 200 500 3300
in „Kondensator idetifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MSP430F5438IPZ.pdf
CONDITIONS VCC MIN TYP MAX UNIT V Positive external reference voltage input V > V /V (2) 1.4 AV V eREF+ eREF+ REF– eREF– CC VREF–/VeREF– Negative external reference voltage input VeREF+ > V REF–/VeREF– (3) 0 1.2 V (VeREF+ – Differential external reference voltage (4) VREF–/VeREF– ) input VeREF+ > V REF
in „Strombelastbarkeit MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
eeprom.pdf
X2816C-20 Symbol Parameter Min. Max. Min. Max. Min. Max. Min. Max. Units tRC Read Cycle Time 90 120 150 200 ns tCE Chip Enable Access Time 90 120 150 200 ns tAA Address Access Time 90 120 150 200 ns tOE Output Enable Access Time 60 60 80 100 ns tLZ4) CE LOW to Active Output 0 0 0 0 ns tOLZ(4) OE LOW to Active
in „EEPROM mit SRAM ersetzen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCA9306.pdf
Dual bidirectional I C-bus and SMBus voltage-level translator 3.3 V enable signal Vpu(D) 3.3 V on off 200 k V = 1.8 V1) PCA9306 8 EN ref(1) RPU RPU VREF1 VREF2 2 7 RPU RPU VCC VCC SCL1 3 6 SCL2 SCL SW SCL 2 I C-BUS I C-BUS DEVICE CONTROLLER SDA1 4 5 SDA2 SDA SW SDA GND 1 GND GND 002aab848 1. In the Enabled
in „[V] ONSEMI Dual bidirectional PCA9306 I2C-bus and SMBus Voltage-level translator (30St für10€)“ · Markt ·
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PDF
PCA9306.pdf
Dual bidirectional I C-bus and SMBus voltage-level translator 3.3 V enable signal Vpu(D) 3.3 V on off 200 k V = 1.8 V1) PCA9306 8 EN ref(1) RPU RPU VREF1 VREF2 2 7 RPU RPU VCC VCC SCL1 3 6 SCL2 SCL SW SCL 2 I C-BUS I C-BUS DEVICE CONTROLLER SDA1 4 5 SDA2 SDA SW SDA GND 1 GND GND 002aab848 1. In the Enabled
in „[V] .Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (30St/10€)“ · Markt ·
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PDF
PCA9306.pdf
Dual bidirectional I C-bus and SMBus voltage-level translator 3.3 V enable signal Vpu(D) 3.3 V on off 200 k V = 1.8 V1) PCA9306 8 EN ref(1) RPU RPU VREF1 VREF2 2 7 RPU RPU VCC VCC SCL1 3 6 SCL2 SCL SW SCL 2 I C-BUS I C-BUS DEVICE CONTROLLER SDA1 4 5 SDA2 SDA SW SDA GND 1 GND GND 002aab848 1. In the Enabled
in „[V] ca. 190St.Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (20St/8€)“ · Markt ·
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PDF
PCA9306.pdf
Dual bidirectional I C-bus and SMBus voltage-level translator 3.3 V enable signal Vpu(D) 3.3 V on off 200 k V = 1.8 V1) PCA9306 8 EN ref(1) RPU RPU VREF1 VREF2 2 7 RPU RPU VCC VCC SCL1 3 6 SCL2 SCL SW SCL 2 I C-BUS I C-BUS DEVICE CONTROLLER SDA1 4 5 SDA2 SDA SW SDA GND 1 GND GND 002aab848 1. In the Enabled
in „V] ca. 170 St.Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (20St/8€)“ · Markt ·
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PDF
PCA9306.pdf
Dual bidirectional I C-bus and SMBus voltage-level translator 3.3 V enable signal Vpu(D) 3.3 V on off 200 k V = 1.8 V1) PCA9306 8 EN ref(1) RPU RPU VREF1 VREF2 2 7 RPU RPU VCC VCC SCL1 3 6 SCL2 SCL SW SCL 2 I C-BUS I C-BUS DEVICE CONTROLLER SDA1 4 5 SDA2 SDA SW SDA GND 1 GND GND 002aab848 1. In the Enabled
in „[V] Konvolut Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator“ · Markt ·
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PDF
A3S56D3040ETP_I_ver_v.2.0_Zentel.pdf
recovery+ precharge time tCK 21 tWTR InternalWrite to Read Command Delay 2 2 1 tCK tXSNR Exit SelfRef. to non-Read command 75 75 75 ns tXSRD Exit SelfRef. to -Read command 200 200 200 tCK tXPNR Exit Power downto command 1 1 1 tCK tXPRD Exit Power downto -Read command 1 1 1 tCK 18 tREFI Average Periodic Refreshinterval 7.8 7.8 7.8 μs 17 Output Load Condition V REF DQS V TT=VREF DQ 50Ω V REF VOUT Zo=50Ω 30pF V REF Output Timing Measurement Reference Point I Revision 2.0 Page 20/ 38 Mar., 2009 A3S56D30ETP A3S56D40ETP 256M Double Data Rate Synchronous DRAM Notes
in „Handydummy (Attrappe)mit richtigem Display 10Zoll - u.a.Motorola Xoom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
174505-da-01-en-adc_08041.pdf
TYP. P –3 2.0 4.5V 0.2 –4 MIN. 0.1 –5 1.8 –50 –25 0 25 50 75 100 125 10 20 40 60 80100 200 400 6001000 0 1 2 3 4 5 o AMBIENT TEMPERATURE (C ) CLOCK CAP (pF) APPLIED V REF/2 (V) Logic Input Threshold CLK–IN Threshold Voltage vs Output Current vs Voltage vs Supply Voltage Supply Voltage Temperature
in „A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADC0803_4.pdf
TYP. P –3 2.0 4.5V 0.2 –4 MIN. 0.1 –5 1.8 –50 –25 0 25 50 75 100 125 10 20 40 60 80100 200 400 6001000 0 1 2 3 4 5 o AMBIENT TEMPERATURE (C ) CLOCK CAP (pF) APPLIED V REF/2 (V) Logic Input Threshold CLK–IN Threshold Voltage vs Output Current vs Voltage vs Supply Voltage Supply Voltage Temperature
in „Verständnisfrage zum ADC080x (VIN-MIN/DC-Offset)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
256mV_prescaler16() { ADMUX = (1 << ADLAR); // left shift result --> 8 bit resolution ADMUX |= (1 << REFS2) | (1 << REFS1) | (0 << REFS0); // Sets ref. voltage to 2.56 V without capacitor - Vcc = 000; 2.56 V = 110; 1.1V = 010 ADMUX |= (0 << MUX3) | (0 << MUX2) | (1 << MUX1) | (1 << MUX0); // ADC3 for input
in „Attiny85 ADC Eingangswiderstand - wie hoch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HDS200_Series_SCPI_Protocol.pdf
scale of the main time base. Parameter Name Type Range Default Value <scale_value> Discrete Please refer to Explanation ---- Explanation:Default to set the main time base. time base gear: {5.0ns|10.0ns|20.0ns|50.0ns|100ns|200ns|500ns|1.0us|2.0us|5.0us|10us|20us|50us| 100us|200us|500us|1.0ms|2.0ms|5.0ms
in „OWON HDS2102S vers HDS2202S“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC34161-D_1_.pdf
V H 15 25 35 mV Threshold Difference |th1− Vth2 V D − 1.0 15 mV Reference to Threshold Difference ref− Vin1, (ref− Vin2 VRTD 1.20 1.27 1.32 V Input Bias Current (Vin 1.0 V) IIB − 40 200 nA (V = 1.5 V) − 85 400 in MODE SELECT INPUT Mode Select Threshold Voltage (Figure 6) Channel 1 V V +0.15 V +0.23
in „Brauche Hilfe zur Berechnung den MC34161“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Z__hler_Stampede.txt
movlw D'200' ;200ms movwf help3 call PAUSE250ms movlw D'200' ;200ms movwf help3 call PAUSE250ms movlw D'200' ;200ms movwf help3 call PAUSE250ms btfss PORTA,5 ;wenn schalter noch gedrückt, dann weiter goto ende movlw 6 ;18 auf Anzeige movwf Ziffer1 movlw 3 movwf Ziffer2 movlw D'200' ;200ms movwf help3 call PAUSE250ms movlw D'200' ;200ms movwf help3 call PAUSE250ms movlw D'200' ;200ms movwf help3 call PAUSE250ms movlw D'200' ;200ms movwf help3 call PAUSE250ms btfss PORTA,5 ;wenn
in „Hilfe für PIC-gesteuerten Zähler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
l200.pdf
BIAS CURRENT ON REGULATION PIN Pentawatt® TO-3 (4 lead) LOW STANDBY CURRENT DRAIN DESCRIPTION The L200 is a monolithic integrated circuit for volt- 60 V) make the L200 virtually blow-out proof. age and current programmable regulation. It is The L200 can be used to replace fixed voltage available in Pentawatt
in „L200 Beschaltung“ · Analoge Elektronik und Schaltungstechnik ·