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PDF
ADXL350.pdf
manufacturerof thesolder pasteused. Rev. 0 | Page 33 of 36 ADXL350 Data Sheet OUTLINE DIMENSIONS 4.10 4.00 0.25 REF 3.90 0.86 0.50 BSC R EFER ENC E 3.40 REF R 0.10 BSC CO RNER REF 0.22 BSC 0.62 ×0.25 3.10 (PINS 1-, 9-3) 13 14 16 1 0.50 BSC 3.00 2.90 0.25 2.40 0.1DI. REF REF (VntHoe 9 8 6 5 0.50 R 0.60 REF REF TOP VIEW BOTTOM VIEW 0.64 0.25× 0.35 REF R 0.18 REF (PI S 6-,14-16) 0.13 1.30 1.20 1.10 - 1 SIDE VIEW 3 0.24 REF 7 0 Figure67.16-TerminalChipArray,SmallOutline,NoLeadCavity[LGA_CAV] 4.00mm×3.00mm×1.2mmBody (CE-16-3) Dimensionsshowninmillimeters
in „Beschleunigungssensor Unklarheiten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADXL350.pdf
manufacturerof thesolder pasteused. Rev. 0 | Page 33 of 36 ADXL350 Data Sheet OUTLINE DIMENSIONS 4.10 4.00 0.25 REF 3.90 0.86 0.50 BSC R EFER ENC E 3.40 REF R 0.10 BSC CO RNER REF 0.22 BSC 0.62 ×0.25 3.10 (PINS 1-, 9-3) 13 14 16 1 0.50 BSC 3.00 2.90 0.25 2.40 0.1DI. REF REF (VntHoe 9 8 6 5 0.50 R 0.60 REF REF TOP VIEW BOTTOM VIEW 0.64 0.25× 0.35 REF R 0.18 REF (PI S 6-,14-16) 0.13 1.30 1.20 1.10 - 1 SIDE VIEW 3 0.24 REF 7 0 Figure67.16-TerminalChipArray,SmallOutline,NoLeadCavity[LGA_CAV] 4.00mm×3.00mm×1.2mmBody (CE-16-3) Dimensionsshowninmillimeters
in „Neigungswinkelinkelmessung beweglicher Teile“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
D120984D-1.pdf
Power consumption TBD W(Typ.) 12 Panel Power consumption TBD W (Typ.) 13 Weight TBD (Typ.) Note 1: Refer to Mechanical Drawing. The copyright belongs to CHIMEI InnoLux. Any unauthorized use is prohibited. ▯h▯t▯t▯p▯:▯/▯/▯w▯w▯w CHIMEI INNOLUX SPEC NO.: A043-25-TT-21 Date : 2010/05Page : 2/22 2. Pin Assignment
in „Bedarf an eigenbau STM32F429 Evaluation Board ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bk_2610_2636_datasheet.pdf
, in accepts standard Brüel&Kjær coaxi- prepolarized types of microphone. +10 dB +5 Linear 2 Hz to 200kHz Linear 2 Hz to 200kHz 0 –5 –10 –15 AC and DC 22.4 Hz High Pass "A" Weighting "A" Weighting AC (1.6 V FSD) Outputs 18 dB/oct. DC (5 V FSD) –20 Outputs –25 –30 –35 0.2 0.5 1 2 5 10 20 50 100 200 500
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PDF
LP5951.pdf
150mA -0.01 %/mA VDO Output Voltage Dropout IOUT= 150mA (Note 10) V ≥ 2.5V OUT 250 mV VOUT < 2.5V 200 350 mV IQ Quiescent Current VEN = 0.9V, LOAD= 0 29 55 µA VEN = 0.9V, LOAD= 150mA 33 70 µA 0.005 1 µA VEN = 0V I Output Current V = V + 1V 400 150 mA SC IN OUT(NOM) (short circuit) PSRR Power Supply
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PDF
LT1638.pdf
Common Mode Voltage 300 400 10000 ) ) VS= 5V, 0V A 280 ( 300 8000 ( E I 260 TA= 125°C A )6000 I L 200 ( P240 V T A220 T 100 E R TA= 25°C S R 60 TA= –55°C P 200 F 0 U T T S 40 E 180 U TA= 25°C I R TA= –55°C I–100 T 20 U 160 N TA= 125°C TA= –55°C U TA= 125°C Y E–200 I 0 T = 25°C P 140 G A P A–300 S 120
in „OPAMP Differenzverstärker - max. Einganggsspannung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM7805.pdf
O d 15W, I = 12.5V to 25V 9.5 10.0 10.5 5 Line Regulation Regline TJ= 25qC VI= 12.5V to 25V – 10.0 200 mV L (Note 10) VI= 13V to 25V – 3.0 100 M Load Regulation Regload TJ= 25qC O = 5mA to 1.5mA – 12.0 200 8 (Note 10) I = 250mA to 750mA – 4.0 400 mV 1 O 8 Quiescent Current IQ TJ= 25qC – 5.1 8.0 mA Quiescent
in „Spannungsregler 7805“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SC17_GENERAL_TEMP_1996_3.pdf
Forhigh-precisionapplications,e.g.microcontroller-based 2 control systems, the above expressions and the values in R T R ref 1 + A (T —T ref + B (T —T ref) (1) Table 3canbeusedtogenerateacalibrationtabletostore where: in a ROM for look-up and linear interpolation. Data for maximum expected temperature error is supplied R
in „Polynom für PTC KTY84-110“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TEMP1996.PDF
Forhigh-precisionapplications,e.g.microcontroller-based 2 control systems, the above expressions and the values in R T R ref 1 + A (T —T ref + B (T —T ref) (1) Table 3canbeusedtogenerateacalibrationtabletostore where: in a ROM for look-up and linear interpolation. Data for maximum expected temperature error is supplied R
in „Temperatur Sensor KTY“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_TEMP_1996_3.pdf
Forhigh-precisionapplications,e.g.microcontroller-based 2 control systems, the above expressions and the values in R T R ref 1 + A (T —T ref + B (T —T ref) (1) Table 3canbeusedtogenerateacalibrationtabletostore where: in a ROM for look-up and linear interpolation. Data for maximum expected temperature error is supplied R
in „Spezifikation Temperatursensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SC17_GENERAL_TEMP_1996_3.pdf
Forhigh-precisionapplications,e.g.microcontroller-based 2 control systems, the above expressions and the values in R T R ref 1 + A (T —T ref + B (T —T ref) (1) Table 3canbeusedtogenerateacalibrationtabletostore where: in a ROM for look-up and linear interpolation. Data for maximum expected temperature error is supplied R
in „KTY81-110 ADC WERT -> Temperatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KTY-Philips.pdf
Forhigh-precisionapplications,e.g.microcontroller-based 2 control systems, the above expressions and the values in R T R ref1 + A(T —T ref + B(T —T ref) ] (1) Table 3canbeusedtogenerateacalibrationtabletostore where: in a ROM for look-up and linear interpolation. Data for maximum expected temperature error is supplied R T
in „Zwischenwerte vom KTY82-210 berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SC17_GENERAL_TEMP_1996_3.pdf
Forhigh-precisionapplications,e.g.microcontroller-based 2 control systems, the above expressions and the values in R T R ref 1 + A (T —T ref + B (T —T ref) (1) Table 3canbeusedtogenerateacalibrationtabletostore where: in a ROM for look-up and linear interpolation. Data for maximum expected temperature error is supplied R
in „Atmega168 ADC - Schwankungen/Beeinflussungen vom Nachbarpin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AS8002_Datasheet_v1_1.pdf
Revision 1.1 1 - 24 AS8002 Data Sheet - Applications Figure 1. AS8002 Block Diagram AVDD DVDD IOP_VOP C REF REF r IOM_VOM AS8002 OSC V1P o 12-Bit t ADC CAL V1M V2P SCSB CTRL V2M SCLK UVLO I/F TEMP SDI OV TEMP SDO OVER CURR XINT AVSS DVSS www.austriamicrosystems.com/AS8002 Revision 1.1 2 - 24 AS8002 Data Sheet
in „AS8002 12 bit ADC via SPI auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ne5532.pdf
V = 0 A mV IO O T A Full range(2) 5 T A 25°C 10 150 IO Input offset current (2) nA T A Full range 200 T = 25°C 200 800 I Input bias current A nA IB T A Full range(2) 1000 VICR Common-mode input-voltage range ±12 ±13 V VOPP Maximum peak-to-peak output-voltage swing R L 600 Ω, V CC±= ±15 V 24 26 V T =
in „Spannungs-Strom-Wandler mit CFA“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Transmitteric.pdf
Supply voltage 2.0 V to 4.0 V in the temperature range of –40°C to 85°C D ESD protection (4 kV HBM/ 200V MM) 1) D Package SO8 D High output power (5.5 dBm) with low supply current (8.5 mA) D Modulation scheme ASK/ FSK 2) D Single-ended antenna output D Easy to design in D CLK output for clocking the µC
in „Transceiver IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SMCI33_Technisches_Handbuch_V2-1_de.pdf
Impulse/Umdrehung) zu verwenden, um die Regelungsqualität zu verbessern, oder eine niedrigere (min. 200 Impulse/Umdrehung) für Low-Cost-Applikationen bzw. zur reinen Schrittüberwachung. Folgende Encoderauflösungen können grundsätzlich von der Steuerung verarbeitet werden: 192, 200, 256, 400, 500, 512,
in „Motorsteuerung von Nanotec in Betrieb nehmen“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
SMCI33_Technisches_Handbuch_V2-1_de.pdf
Impulse/Umdrehung) zu verwenden, um die Regelungsqualität zu verbessern, oder eine niedrigere (min. 200 Impulse/Umdrehung) für Low-Cost-Applikationen bzw. zur reinen Schrittüberwachung. Folgende Encoderauflösungen können grundsätzlich von der Steuerung verarbeitet werden: 192, 200, 256, 400, 500, 512,
in „schrittmotorsteuerung smci33-2 von nanotec mit mikrocontroller steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AP3429_A-766309.pdf
Q O _ SWITCHING R _ LOGIC AND 3 LX P EA R BLOCKING ANTI- VIN + Q CIRCUIT SHOOT THRU W 1 E EN 0.6V REF N SHUTDOWN _ 2 GND OVP 120% REF + Function Block Diagram of AP3429 4 VIN 1M OSC SLOPE COMP + PWM + COMP 5 + IAMP FB _ FREQ ____ _ SHIFT OSC S Q _ SWITCHING _ LOGIC AND 3 LX EA R BLOCKING ANTI- VIN Q CIRCUIT SHOOT + THRU 1 EN 0.6V REF SHUTDOWN 2 GND Function Block Diagram of AP3429A AP3429/A 3 of 11 August 2015 Document number: DS36561 Rev. 3 - 2 www.diodes.com © Diodes Incorporated AP3429/A Absolute Maximum Ratings (Note 4) Symbol
in „Trafo-Treiber für DC/DC-Wandler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SSD1327-datasheet.pdf
Recommended I REF = 10uA. Since the voltage at IREF pin is V CC – 3V, the value of resistor R1 can be found as below: For IREF = 10uA, V CC = 12V: R1 = (Voltage at I REF – V SS/ I REF = (12 – 3) / 10uA ≈ 910k Ω 8.7 Graphic
in „OLED-Display SPI Psoc4“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1327-datasheet.pdf
Recommended I REF = 10uA. Since the voltage at IREF pin is V CC – 3V, the value of resistor R1 can be found as below: For IREF = 10uA, V CC = 12V: R1 = (Voltage at I REF – V SS/ I REF = (12 – 3) / 10uA ≈ 910k Ω 8.7 Graphic
in „OLED Stromverbrauch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MX25L12805D__3V__128Mb__v1.2.pdf
code→ CS# goes high. (Please refer to Figure 13) The WEL bit is reset by following situations: - Power-up - Write Disable (WRDI) instruction completion - Write Status Register (WRSR) instruction completion - Page Program (PP) instruction
in „FLASH Memory Chip im Lenovo X200 von 8 MB auf 16 MB vergroessern“ · PC Hard- und Software ·
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PDF
SSD1331_v1.2.pdf
Current Control command. For example, in order to achieve I SEG = 160uA at maximum contrast 255, I REF is set to around 10uA. This current value is obtained by connecting an appropriate resistor from I pin to V as shown in REF SS Figure 14. Recommended range for IREF = 10uA +/- 2uA SSD1331 REF ≈ 10uA
in „Spannungsreglerproblem durch Frequenzen bei Arduino Adafruit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Diff_Ampl_AD8476-877860.pdf
G –15 A A G –25 M –20 U –30 P U –25 –35 O –30 –40 R = 10kΩ RL= 10kΩ L –45 RL= 2kΩ –35 RL = 2kΩ R = 200Ω RL= 200Ω –40 L –50 0 0 100 1k 10k 100k 1M 10M 9 100 1k 10k 100k 1M 10M 9 FREQUENCY (Hz) 0 FREQUENCY (Hz) 1 1 Figure18.SmallSignalFrequencyResponseforVariousLoads Figure21.LargeSignalFrequencyResponseforVariousLoads
in „5V Differentielles Signal erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Atmel-8072-Using-the-XMEGA-Clock-System_ApplicationNote_AVR1003.pdf
write accessible for the user, but the oscillator should not be tuned outside recommended limits. Refer to the electrical characteristics in the device datasheet for details. The RC32K oscillator can be used as a system clock source directly and also as a source for the Real- time Counter module (actually the RC32K divided down to 1.024kHz). Refer to the application note “AVR1314: Using the XMEGA Real-time Counter” for more details. The RC32K oscillator cannot be used as a source for the internal PLL. Apart from being a system clock source alternative
in „ATXMEGA384C3-AU ADC mist ungenau“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tl431book.pdf
was used as a reference voltage. This configuration implies a connection between it reference point, ref, and the cathode k, while the anode a is grounded, making the device behave as an active 2.5-V zener diode. k R7 R8 760 760 7.01V 7.01V 12 13 7.07V Q8 Q9 C2 ref 2N3906 2N3906 8p Q2 Q3 2.49V 2N3904 1.87V
in „Sperrwandler Dimensionierung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
28QVF1J-0_1.0-E.pdf
product: LCD module Model number of SII: 28QVF1J-0 1-3 Mechanical Dimensions and Circuit diagram Refer to drawing No “28QVF1J-0 1A”. 1-4 Quality Assurance Standard Quality assurance standard should be based on the Delivery Inspection Standard. Note: ( ): Target value for sample production. Might be
in „Probleme Seiko Display 24_28QVF1H_J zu initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
imt902_datenblatt.pdf
IOH RESET\=H, DATA all L -400 - - Current V =V =24V, Output Bias RS M Current Upper IOB V Out24V, -200 µA RESET\=H, DATA all L Output V RS =Mcp Leakage Lower IOL A=V OUT=24V, RESET\ - - 1.0 Current = L High V V ref0 V, Hold - 100 - RS (H) Current=(H.H)=100% Mid V =3.0 V Hold Comparator V RS (MH) ref , 83 85 87 Referece High Current =(H.L)=85% % Voltage Mid V ref0 V ,old Ratio low V RS (ML) Current =(L.H)=70% 68 70 72 Low V RS (L) V ref0 V ,old 48 50 52 Current =(L.L)=50% -17- CHARACTERISTIC SYMBOL TEST CONDITION MIN TYP MAX UNIT Differences between Output current
in „Urgestein IMT902 Motortreiber Schaltplan - Kritik erwünscht!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036-V1.4.pdf
/20 ST7036 # IS[2:1]: instruction table select When IS[2:1]=(0,0): normal instruction be selected(refer instruction table 0) When IS[2:1]=(0,1):extension instruction be selected(refer instruction table 1 ) When IS[2:1]=(1,0):extension instruction be selected(refer instruction table 2 ) When IS[2:1]=(
in „EA DOG-M Display (ST7046) und customchars. ARGH!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036-V1.7.pdf
/10 ST7036 ¾ IS[2:1]: instruction table select When IS[2:1]=(0,0): normal instruction be selected(refer instruction table 0) When IS[2:1]=(0,1):extension instruction be selected(refer instruction table 1 ) When IS[2:1]=(1,0):extension instruction be selected(refer instruction table 2 ) When IS[2:1]=(
in „DOG-M-Display/ST7036 Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036-V1.7.pdf
/10 ST7036 ¾ IS[2:1]: instruction table select When IS[2:1]=(0,0): normal instruction be selected(refer instruction table 0) When IS[2:1]=(0,1):extension instruction be selected(refer instruction table 1 ) When IS[2:1]=(1,0):extension instruction be selected(refer instruction table 2 ) When IS[2:1]=(
in „Newbie Probleme bei LCD DOGM Initialisierung in Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv8833.pdf
is shown below: OCP VM VM VCP, VINT xOUT1 xIN1 Pre- DCM drive xOUT2 xIN2 PWM OCP - xISEN + Optional REF (200mV) Figure 1. Motor Control Circuitry Bridge Control and Decay Modes The AIN1 and AIN2 input pins control the state of the AOUT1 and AOUT2 outputs; similarly, the BIN1 and BIN2 input pins control
in „TI DRV8833 Muss man den PWM Pin wechseln?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF7922ATT.pdf
POUT Output power ACON = “1111”, PAM = ‘10’ 5.8 8.5 10.6 dBm TX = 315 MHz, matched into 50 RL ~ 200 2.2 4.0 5.5 dBm RL ~ 700 ACON = “1111”, PAM = ‘00’ RL ~ 700 -16 -7 2 dBm ACON = “0000”, PAM = ‘10’ -45 dBm POUT Output power ACON = “1111”, PAM = ‘10’ TX = 434 MHz, matched into 50 RL ~ 200
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PDF
MT8870d.pdf
source) current I 0.4 0.8 mA V =4.6 V T OH OUT 15 V output voltage V 2.3 2.5 2.7 V No load, V = 5.0V S Ref Ref DD 16 V Refoutput resistance R OR 1 k ‡ Typical figures a°C and are for design aid only: not guaranteed and not subject to production testing. 4-17 2 MT8870D/MT8870D-1 ISO -CMOS Operating Characteristics
in „MT8870 (DTMF Encoder) an eine Telefonleitung anschließen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mt8870.pdf
source) current I 0.4 0.8 mA V =4.6 V T OH OUT 15 V output voltage V 2.3 2.5 2.7 V No load, V = 5.0V S Ref Ref DD 16 V Refoutput resistance R OR 1 k ‡ Typical figures a°C and are for design aid only: not guaranteed and not subject to production testing. 4-17 2 MT8870D/MT8870D-1 ISO -CMOS Operating Characteristics
in „DTMF Tonwahlfrequenzen mit dem MT8870 wie funktioniert das ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
JBT6K71-AS_A__v1.42_2006-02-07_E.PDF
time tSISU 30 ⎯ ⎯ ns Serial input data hold time tSIH 30 ⎯ ⎯ ns Serial output data delay tSOD ⎯ ⎯ 200 ns Serial output data hold time tSOH 5 ⎯ ⎯ ns Note22: tSOD and tSOH DD and tDHR added te lord circuit as the figure (V SS = 0 V, V SYS = 2.4 to 3.3 V, V REF = 1.5 V, AV DD = 5.0 V, and Ta = − 20 to
in „LCD aus Benq EL71 Handy“ · Mikrocontroller und Digitale Elektronik ·
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PDF
futaba-NA204SD01AC.pdf
however there are a few exceptions. These exceptions are listed below, for more exact information refer to the noted sections of this specification. * Parallel interface only - no serial communications * Module thickness - surface of VFD to surface of PCB (3.3) * Display Area (2.0 - VFD specification
in „AVR Futaba Parallel "I80-Type" adaptieren auf "M68-Type"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2599932.pdf
CMA Stock Mat’l Material Toolset Part Descriptive mm Solid Dia. Range Thk. (T) Width (W) Number X-ref 1112-9 .084-.114 .020 .500 Tin Plated 4.00-6.50 2.13-2.90 7000-13000 0.51 12.70 Brass 200/202 1601771-1 L200/202N20TB 14 Ridges T W AWG/ Wire Range CMA Stock Mat’l Material Toolset Part Descriptive
in „IDC connector für Kupferlackdraht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
008-0256-0.pdf
=15pF - 40 80 CB3LV 1.5MHz to 20MHz CL=15pF - 7 12 20.001MHz to 80MHz CL=15pF - 20 40 80.001MHz to 200MHz CL=15pF - 30 60 S E 1.5MHz to 50MHz - - 50 E Output Load CL 50.001MHz to 80MHz - - 30 pF M 80.001MHz to 200MHz - - 15 A R Output Voltage Levels P Logic '1' Level CMOS Load 90%V CC L VOH - - V A 10
in „Schaltung um/vor Oscillator“ · Mikrocontroller und Digitale Elektronik ·
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PDF
5x7matrix_gross.pdf
HDSP-Sxxx and Mxxx Series only) Package Configuration [1] 5: 5 x 7 Dot Matrix [1] Package Type/Color Refer to Respective Datasheet Note: 1. For codes not listed in the figure above, please refer to the respective datasheet or contact your nearest Agilent representative for details. Package Dimensions 38.40 (1.512) 30.48 (1.200) 7.62 (0.300) COL 1 2 3 4 5 ROW 1 2 ∅5.00 (0.197) x 35 3 53.20 45.72 4 (2.094) (1.800) 5 6 7.62 (0.300) 7 PIN 1 PART NO. YWW = DATE CODE X = INTENSITY BIN HDSP-H571 8.60 YWW C00 X (0.339) COO = COUNTRY
in „Laufschrift 5x7 Dotmatrix aber wie?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
400V-Schaltnetzteil.pdf
UF1007 UF1007 180uF 50V 450V 8 9 D10 R9 LTL42 10M 2 ETD39/20/13-MODAL D11 T1 UF1007 GND GND 1 STP03D200 R10 VCC 1 3 R11 D12 V_REF Q1 1M BC546B UF1007 C5 R12 C6 33uF 2k7 33uF 35V 35V B B D13 LTL42 C VCC C VCC C7 2 R13 U1 6,49k 100nF U2 STW3N150 7 6 R14 1 VCC OUT 22 3 R15 R16 1k 2 VFB VREF 8 V_REF 10k R17
in „Übertragungsfunktion Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Atmega128_test_LCD.c
1<<ADEN) //ADC einschalten |(1<<ADPS2)|(1<<ADPS1)|(1<<ADPS0); // /128 =64 kGz // ADMUX ADMUX|=(1<<REFS1)|(1<<REFS0); // U=2.6 V //|(0<<MUX3)|(0<<MUX2)|(0<<MUX1)|(1<<MUX0);// PIN Auswahl*/ } int ReadADC(void) { int adc_result; ADCA.CH0.INTFLAGS = ADC_CH_CHIF_bm; ADCA.CH0.CTRL = ADC_CH_START_bm | ADC_CH_INPUTMODE_SINGLEENDED_gc
in „Atxmega 128a1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZXGD3105EV1_User_Guide_Issue_1..pdf
checked for suitability and availability with their respective manufacturers. Table 1: Parts list Ref. Value Package Part number Manufacturer Notes U1 Synchronous controller SO8 ZXGD3105N8 Diodes Inc. Q2 40V NPN transistor SOT23 FMMT491A Diodes Inc. 500mW D1 11V Zener SOT23 BZX84C11 Diodes Inc. 300mW
in „SPICE Model einbindung problem“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Grandstream_Device_Configuration.pdf
5004) Use Random SIP Port: No Yes Use Random RTP Port: No Yes Enable RTCP: No Yes Hold Target Before Refer: No Yes Refer-To Use Target No Yes Contact: Transfer on Conference No Yes Hangup: Remove OBP from Route No Yes Header: Support SIP Instance ID: No Yes Validate Incoming SIP Message: No Yes Check SIP
in „Kobra-Telefon an Grandstream zum laufen bringen!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1810211711_Gainsil-GS8331-TR_C157712.pdf
40µs/div) Time(4µs/div) Positive Overvoltage Recovery Negative Overvoltage Recovery VSY=±2.5V VIN=-200mVp-p v / (RET to GND) V CL=0pF m RL=10kΩ ( VSY=±2.5V AV=-10 e VI=-200mVp-p a (RET to l GND) V CL=0pF u t RL=10kΩ u AV=-10 O Time (50µs/div) Time (50µs/div) Open Loop Gain, Phase Shift vs. Frequency
in „OpAmp für ph-sensor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Display_Controller.pdf
332 T[2] T[2] 2921 -574 333 T[1] T[1] 2996 -574 334 T[0] T[0] 3071 -574 335 VDD VDD 3146 -574 336 REF REF 3221 -574 337 VSS VSS 3296 -574 338 VEXT VEXT 3371 -574 339 VDD VDD 3452 -574 340 INTRS INTRS 3527 -574 341 VSS VSS 3602 -574 342 OSC1 OSC1 3677 -574 343 OSC1 OSC1 3752 -574 344 VDD VDD 3827 -574
in „LCD Controler mit Spannungsregulier-Eingängen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ths4509.pdf
150 200 0 50 100 150 200 F - Frequency - MHz f - Frequency - MHz Figure 15. Figure 16. IMD 2s FREQUENCY IMD 3s FREQUENCY !30 !60 c Gain−=−14−dB, R =−100 W B c Gain−=−14−dB L ! !40 VCO =−2−VPP Envelope R =−200
in „Pipeline A/D-Wandler ADS5240 Verständnisproblem Analoge Eingangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sfh610a-1767438_1_.pdf
to absolute maximum ratings for extended periods of the time can adversely affect reliability. (1) Refer to reflow profile for soldering conditions for surface mounted devices (SMD). Refer to wave profile for soldering conditions for through hole devices (DIP). ELECTRICAL CHARACTERISTICS (T amb = 25 °
in „[V] 16St Optokopler Vishay SFH610A -2 und -A3“ · Markt ·
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PDF
SCHD3A0100_Data.pdf
width width measurements 1 reel 1 case 1case (mm) (mm) (mm) /Japan /exportpacking SCHD1A0101 1,400 4,200 8,400 330 353×353×249 24 4AAl 9E@JD "." SCHD3A0100 2,000 6,000 12,000 380 403×403×249 Note Please place purchase orders per minimum order unit N (integer). Refer to P.558 for soldering conditions. 537
in „Wie wird hier die SD-Karte eingelegt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
20a14.pdf
MAXIMUM CONTINUOUS CURRENT (internally limited) ± 6 A ± 12.5 A ± 10 A ± 10 A MINIMUM LOAD INDUCTANCE* 200 µH 200 µH 250 µH 250 µH SWITCHING FREQUENCY 36 kHz 22 kHz ± 15% o o o HEATSINK (BASE) TEMPERATURE RANGE 0 to + 65 C, disables if > 65 C POWER DISSIPATION AT CONTINUOUS CURRENT 24 W 50 W 70 W 100 W OVER-VOLTAGE
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