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PDF
NCP1397.pdf
exceeds the following tests: Human Body Model 2000 V per JEDEC Standard JESD22−A114E Machine Model 200 V per JEDEC Standard JESD22−A115−A 2. This device meets latchup tests defined by JEDEC Standard JESD78. www.onsemi.com 5 NCP1397A/B, NCV1397A/B ELECTRICAL CHARACTERISTICS (For typical values T = 25°
in „Wegwerf-TV: Schaltnetzteil defekt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT3757_Boost-Sepic-Flyback-Invert.pdf
50V 1,2,3 25V SHDN/UVLO X5R • X5R R1 46.4k LT3757 M1 SYNC GATE D2 Si7850DP DFLS160 VOUT1 –24V SENSE 200mA C4 C RT FBX 5 22μF 3.3μF SS 25V 100V • X5R VC GND INTV CC 63.4k 0.012Ω D3 200kHz 9.1k 0.5W DFLS160 CVCC 0.1μF 10nF 4.7μF 10V, X5R C5 100pF 6 22μF 25V • X5R VOUT1 15.8k –72V 464k 200mA 3757 TA07 3757f
in „Datenblätter von Linear Technologies“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Projet_07_Akkulader.asm
Takt, welchen er sich selber aus der CPU-Taktfreqenz erzeugt. Der ADC-Takt sollte zwischen 50 und 200kHz sein. ;Der Vorteiler ist also so eingestellt worden,so dass die CPU-Taktfrequenz dividiert durch den Teilungsfaktor einen Wert zwischen 50-200kHz ergibt. ;Man findet den divisionsfaktor durch die
in „Wichtig: was ist hier im AVR programm falsch??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datum_LPRO-101.pdf
Frequency/Waveform 10 MHz sine-wave Output Level .55 Vrms ±.05 Vrms into 50 Ω [+7.8 ± 0.8 dBm] NOTE: refer to LPRO datasheet for additional details on electrical specifications Environmental Specifications Operating Temperature -30°C baseplate to +70˚C BP Temperature Coefficient (refer to LPRO data sheet) Storage Temperature -55°C to+85°C Altitude Operating: -200 ft. to 40,000 ft. <1E - 13/mbar Non-operating: -200 ft. to 70,000 ft. Magnetic Field Sensitivity, dc (±2 GAUSS) Worst Vector: (refer to LPRO data sheet P/N 102502) Relative Humidity: ≤85% non-condensing
in „Ausgangsschaltung 10MHz Referenz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LR8_DS.pdf
junction) ( C) Adjustment Current 12 11 V IN V OUT = 1.2V 10 LR8 ) VIN 400V µ 12V, ADJ (J 9 V IN12V A 200V 2.4kΩ 1.0ΩF I 400V IADJ 8 VIN 200V 7 6 -50 -25 0 25 50 75 100 125 T (junction) ( C) Load Regulation 5.2 VIN V OUT= 5.0V IOUT LR8 5.1 6.04kΩ ADJ ±1% ) V 25V T 5.0 1.0µF R O LOAD V 18.2kΩ ±1% 4.9 4.8
in „Hochspannungs Linearregler 250V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STR751FR0T6.pdf
protection of the internal Flash memory please refer to the STR7 Flash Programming Reference Manual For information on third-party development tools, please refer to the http://www.st.com/mcu website. 3.1 Functional description The STR750F family includes
in „DAB Radio mit ARM Prozessor, HD44780 Display (BlueTinum BT-H1801)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ttester.pdf
Fall meldet der Tester nach längerer Zeit „Cell!”. Beispiel: CFLAGS += -DCAP_EMPTY_LEVEL=3 WITH_AUTO_REF Mit dieser Option wird die Referenzspannung gemessen, um den aktuellen Faktor für die Kapazitätsmessung von kleineren Kapazitäten (unter 40µF) zu ermitteln. Beispiel: CFLAGS += -DWITH_AUTO_REF REF_C_KORR
in „Sammelbestellung Transistortester III - schnelle Runde“ · Markt ·
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PDF
ttester_ger109k.pdf
meldet der Tester nach längerer Zeit „Cell!”. Beispiel: CFLAGS += -DCAP_EMPTY_LEVEL=3 22 WITH_AUTO_REF Mit dieser Option wird die Referenzspannung gemessen, um den aktuellen Faktor für die Kapazitätsmessung von kleineren Kapazitäten (unter 40µF) zu ermitteln. Beispiel: CFLAGS += -DWITH_AUTO_REF REF_C_KORR
in „Sammelbestellung Transistortester III - schnelle Runde“ · Markt ·
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PDF
STM32F107.pdf
1) 1 µF // 10 nF V DDA 1 µF // 10 nF VSSA/VREF- (See note 1) ai14380c 1. V REF+and VREF–inputs are available only on 100-pin packages. Figure 31. Power supply and reference decoupling (V REF+ connected to V DDA ) STM32F10xxx VREF+VDDA (See note 1) 1 µF // 10 nF V /V REF– SSA (
in „STM32-comStick USB-Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RN5RT-RICOH.pdf
. • Output Voltage Stepwise setting with a step of 0.1V in the range of 2.0V to 6.0V is possible (refer to Selection Guide). .................................. • High Accuracy Output Voltage ±2.0% • Built-in Current Limit Circuit....................Typ. 30mA....... ...................................
in „Elektronik Grundfoss Alpha 2 Pumpe - Bauteilbestimmung!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM7805.pdf
oC OPR Storage Temperature Range T STG -65 ~ +150 oC Electrical Characteristics (MC7805/LM7805) (Refer to test circuit ,0°J < T < 125OC, I = 500mAI V = 10VI C = 0.33µO, C = 0.1µF, unless otherwise specified) MC7805/LM7805 Parameter Symbol Conditions Unit Min. Typ. Max. o T J+25 C 4.8 5.0 5.2 Output
in „Kein passendes Bauteil da“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM7805.pdf
oC OPR Storage Temperature Range T STG -65 ~ +150 oC Electrical Characteristics (MC7805/LM7805) (Refer to test circuit ,0°J < T < 125OC, I = 500mAI V = 10VI C = 0.33µO, C = 0.1µF, unless otherwise specified) MC7805/LM7805 Parameter Symbol Conditions Unit Min. Typ. Max. o T J+25 C 4.8 5.0 5.2 Output
in „Hilfe bei Berechnung des zul. Ausgangsstroms beim Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM7805.pdf
oC OPR Storage Temperature Range T STG -65 ~ +150 oC Electrical Characteristics (MC7805/LM7805) (Refer to test circuit ,0°J < T < 125OC, I = 500mAI V = 10VI C = 0.33µO, C = 0.1µF, unless otherwise specified) MC7805/LM7805 Parameter Symbol Conditions Unit Min. Typ. Max. o T J+25 C 4.8 5.0 5.2 Output
in „Versorgungsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
7805.pdf
oC OPR Storage Temperature Range T STG -65 ~ +150 oC Electrical Characteristics (MC7805/LM7805) (Refer to test circuit ,0°J < T < 125OC, I = 500mAI V = 10VI C = 0.33µO, C = 0.1µF, unless otherwise specified) MC7805/LM7805 Parameter Symbol Conditions Unit Min. Typ. Max. o T J+25 C 4.8 5.0 5.2 Output
in „LM7805 im D-PAK Gehäuse kaufen - wo??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP73871-Data-Sheet-20002090E__2_.pdf
optimizes the charge cycle time while Variety of Applications: maintaining device reliability. - Refer to Section 1.0 “Electrical Characteristics” for Selectable Options The MCP73871 device includes a low battery indicator, a power good indicator and two charge status - Refer to the Product Identification
in „Fehlersuche beim MCP73871“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nexys4_DDR_schematic.pdf
2 3 4 JA1 R3 R44 JA7 JC1 R17 R188 JC7 PIR3PIR301 Pmod 2x6 PIR4PIR401 PIRP012 Pmod 2x6 PIRP012 JA2 200 R77 P11 7 7 R8 200 JA8 JC2 200 R211 P11 7 7 R22 200 JC8 PIR7PIR701 P22 8 8 PIRPIR801 PIR2112 P22 8 8 PIRP21 NJA R11 200 P33 9 9 200 R122 LJ9 LJ3 R25 200 P33 9 9 200 R266 LC9 JA3 PIR1PIR101 P4410 1 PIR1PIR1201JA9 JC3 PIRP012 P4410 1 PIRP012 JC9 200 R15 GND P5511 1 GND R16 200 200 R299 GND P5511 1 GND R30 200 JA4 PIR1PIR1501 P6612 2 PIRPIR1601 JA10 JC4 PIR2912 P6612 2 PIRP01 JC10 A 200 OA 200 200 CJC 200 A P1P0P0435 JA D1I3I0 5 I1P3P4P0 JC D1D3D4I5
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lm3150.pdf
Boost Pin Leakage VBST – VSW = 6V 2 nA R DS-HG-Pull-Up HG Drive Pull–Up On-Resistance HG Source = 200 mA 5 Ω R HG Drive Pull–Down On-Resistance I Sink = 200 mA 3.4 DS-HG-Pull-Down HG Ω R DS-LG-Pull-Up LG Drive Pull–Up On-Resistance LG Source = 200 mA 3.4 Ω R DS-LG-Pull-DownLG Drive Pull–Down On-Resistance LG Sink = 200 mA 2 Ω Soft-Start I SS Pin Source Current V = 0V 5.9 7.7 9.5 µA SS SS ISS-DIS SS Pin Discharge Current 200 µA Current Limit I Current Limit Sense Pin Source Current 75 85 95 µA LIM-TH ON/OFF Timer VIN
in „LM3150 zu geringe Ausgangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
rfm63dw.PDF
868MHz, BR=25 kb/s, Fdev - -105 - dBm =50 kHz, fc=100 kHz 868 MHz, BR=66.7 kb/s, Fdev=100 kHz, fc=200 kHz - -101 - dBm RFS_F Sensitivity (FSK) 915 MHz, BR=25 kb/s, - -103 - dBm Fdev=50 kHz, fc=100 kHz 915 MHz, BR = 66.7 kb/s, - -99 - dBm Fdev=100 kHz, fc=200 kHz 868 MHz, 2kb/s NRZ fc-fo=50 kHz, fo=50
in „JDY-40 ein neuer Geniestreich aus China?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
s27kl0641.v
time specparam tdevice_DPD = 150e6; // Exit Event from Deep Power Down specparam tdevice_DPDCSL = 200e3; // Warm HW reset specparam tdevice_RPH = 400e3; // Refresh time specparam tdevice_REF100 = 40e3; // Page Open Time specparam tdevice_PO100 = 40e3; ////////////////////////////////////////////////
in „HyperBus Ideen“ · FPGA, VHDL & Co. ·
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Datei
s27kl0641.v
time specparam tdevice_DPD = 150e6; // Exit Event from Deep Power Down specparam tdevice_DPDCSL = 200e3; // Warm HW reset specparam tdevice_RPH = 400e3; // Refresh time specparam tdevice_REF100 = 40e3; // Page Open Time specparam tdevice_PO100 = 40e3; ////////////////////////////////////////////////
in „HyperBus Ideen“ · FPGA, VHDL & Co. ·
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Datei
s27kl0641.v
time specparam tdevice_DPD = 150e6; // Exit Event from Deep Power Down specparam tdevice_DPDCSL = 200e3; // Warm HW reset specparam tdevice_RPH = 400e3; // Refresh time specparam tdevice_REF100 = 40e3; // Page Open Time specparam tdevice_PO100 = 40e3; ////////////////////////////////////////////////
in „HyperBus Ideen“ · FPGA, VHDL & Co. ·
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PDF
sc4901.pdf
is amplified, buffered and put out as a 2.5V the ON time continues to reduce and the output drops REF output. The REF voltage can be used for external gradually. The output is continuously monitored for monitoring circuits or for regulating output voltages less undervoltage and when it falls below 50%
in „Schaltplan für Aktivgleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Sanken_PF.pdf
C tF 25 nF 1 : u 20 C n s a 15 a 0.1 ig , F 10 F e s 7 STJ= 25 °C r 5 0.01 D 2 TJ= 60 7C S A Z TJ= 200 °C 0100 195 200 205 210 215 220 0.0010.0 w 0.2 0.4 V 0.6 0.8 Z 1.0 1.2 Case Temperature, T (°C) N Forward Voltage, V (V) C o r 1 W F Figure 3. Power Dissipation Curves(2) f Fig- 1 4. F vs. VFTypical
in „Identifikation von Dioden erbeten“ · Fahrzeugelektronik ·
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PDF
pythron.pdf
Jusqu’à 3 types de moteur et 3 enrou- und 3 Standardwicklungen pro Bau- ” Standard number of steps: 200 lements standards par taille größe Special numbers of steps depending ” Nombre de pas en version standard : 200 ” Standardschrittzahl 200 on the motor size: 8, 24, 56, 72 and Nombres de pas spéciaux
in „Unipolar Stepper-Driver selberbau (paar Fragen (GRBL))“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Apex_MSA240.pdf
TheMSA240offersoutstandingperformancethat ROSC 22 ROSC rivals many much more expensive hybrid components. The 19 +5V REF OUT PWM AMPLIFIER MSA240 is a complete PWM amplifier including an oscillator, 13 +IN comparator, error amplifier, current limit comparators, 5V 17 E/A OUT B OUT 49-53 reference, a smart controller and
in „Linear-Amp oder PWM Amp mit H-Brücke?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
HFG164cc.java
rx > 10000000 && rx < 20000000 ) rx *= 10; rx -= 21400000; if( ref == 10000 ){ if( rx % 12500 == 0 ){ if( rx >= 128000000 ){ b[2] |= ( 1 << 3 ); rx -= 128000000; } if( rx >= 64000000 ){ b[2] |= ( 1 << 2 ); rx -= 64000000; } if( rx >= 32000000 ){ b[2] |= ( 1 << 1 );
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Datei
HFG164cc.java
rx > 10000000 && rx < 20000000 ) rx *= 10; rx -= 21400000; if( ref == 10000 ){ if( rx % 12500 == 0 ){ if( rx >= 128000000 ){ b[2] |= ( 1 << 3 ); rx -= 128000000; } if( rx >= 64000000 ){ b[2] |= ( 1 << 2 ); rx -= 64000000; } if( rx >= 32000000 ){ b[2] |= ( 1 << 1 );
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PDF
SRR5028-101Y_Bourns_unpw.pdf
Frequency Typ. Max. I rms I sat Operating Temp.............-40 °C to +125 °C Part Number (μH) Tol. % Ref. (MHz) (MHz) (mΩ) (A) (A) (Temperature rise included) SRR5028-2R6Y 2.6 ±30 7 7.96 77 30 3.00 2.70 Storage Temperature.. -40 °C to +125 °C SRR5028-3R0Y 3.0 ±30 7 7.96 65 30 2.80 2.50 Resistance to Soldering
in „Pollin SMD-Induktivitäten identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MPU-6050.pdf
to be either VDD or VLOGIC For further information regarding the MPU-6050’s logic levels, please refer to Section 10.2. 26 of 52 Document Number: PS-MPU-6000A-00 MPU-6000/MPU-6050 Product Specification Revision: 3.4 Release Date: 08/19/2013 7.12 Self-Test Please refer to the MPU-6000/MPU-6050 Register
in „MPU 6050 Gyrosensor auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1305.pdf
default. The magnitude of I is controlled by the value of resistor, which is connected between I pin and REF REF Vss as shown in Figure 8-18. It is recommended to set I REF to 10uA+/- 2uA so as to achieve I SEG = 320uA at maximum contrast 255. Figure 8-18 : IREFCurrent Setting by Resistor Value SSD1305 IREF
in „i2c lese problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSASW00146882.pdf
default. The magnitude of I is controlled by the value of resistor, which is connected between I pin and REF REF Vss as shown in Figure 8-18. It is recommended to set I REF to 10uA+/- 2uA so as to achieve I SEG = 320uA at maximum contrast 255. Figure 8-18 : IREFCurrent Setting by Resistor Value SSD1305 IREF
in „OLED Display mit ssd1305 Chip“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4088fb.pdf
LPS4018-332MLC R2: VISHAY-DALE NTHS0603N01N1003 700 IBAT 600 ) A 500 ( N IBUS R 400 U C 300 G A H 200 C 100 5x USB SETTING, 0 BATTERY CHARGER SET FOR 1A 2.7 3.0 3.3 3.6 3.9 4.2 BATTERY VOLTAGE (V) 4088 TA03b 4088fb 21 LTC4088 Package Description Please refer to http://www.linear.com/designtools/packaging
in „[EAGLE Anfänger] Package finden oder herstellen“ · Platinen ·
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PDF
cyc_c5v1-1299412.pdf
tolerance (peak-to- peak) Output — NA NA 400 NA NA 400 NA NA 400 ps jitter (peak- to-peak) RISE — 150 200 250 150 200 250 150 200 250 ps FALL — 150 200 250 150 200 250 150 200 250 ps t — 45 50 55 45 50 55 45 50 55 % DUTY t — NA NA 100 NA NA 100 NA NA 100 μs LOCK Note to Table 9–6: (1) The PLL must divide
in „BMW Nightvision (FLIR PathfindIR) "Wärmebildkamera"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
898_R-Netzwerk.PDF
OUTLINE DIMENSIONS (Inch/mm) .880 Model 898 22.4Max. .780 Model 899 Max. 19.8 .250 .340±.020 6.35 Ref. 8.64±0.51 .125 .050 .060 Ref. 3.18 Max. 1.27 Ref. 1.52 .020 .185 0.51 Min. 4.70 Max. .100 ± .010* 2.54 ± 0.25 .135 ± .030 .080 ± .020 3.43 ± 0.76 2.03 ± 0.51 .018 ± .003 0.46 ± 0.08 .600 ± .010 15.2
in „Bestimmung von Bauteilen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RGB_RAHMEN.c
Interrupts aktivieren c=5; // Variable deklarieren while(1) // Dauerschleife { ADCW |= 0; ADMUX |= 1<<REFS1 | 1<<REFS0 | 0<<ADLAR | 0<<MUX4 | 0<<MUX3 | 0<<MUX2 | 0<<MUX1 | 0<<MUX0; // REF = interne 2.56V referenz Spannung + externer Kondensator,MUX = 00000, PINA0 mit dem ADWandler verbunden ADCSRA |= 1<<
in „RGB über Timer die Farben wechseln lassen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RCDN9.pdf
EXPLODED VIEW" and "EXPLODED VIEW" and "EXPLODED VIEW" SMPS PCB TUNER/OPTICAL PCB FRONT PANELASSY (Ref. No. of EXPLODED VIEW:C1) (Ref. No. of EXPLODED VIEW:C29) (Ref. No. of EXPLODED VIEW:C24) INPUT PCB USB PCB (Ref. No. of EXPLODED VIEW:C22) (Ref. No. of EXPLODED VIEW:C25) MAIN PCB See "DISASSEMBLY"
in „Hifi Kompaktanlage mit Bluetooth Sender ausstatten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
specification_CA10089.pdf
Comparison with our conventional products CR パネBla半透過透過型OKライン Blanview 0 1.125 0.81.00.375 100 1.00 t 200 1.00 s t 3002 1.00 Transflective n 400 1.125 1.00 C 500 1.00 Standard 600 1.00 700 1.00 800 Transmissive 900 1.00 1000 1.25 1.00 0 200 400 600 800 1000 Panel surface brightness (cd/m ) ORTUS TECHNOLOGY
in „Suche 4.3" Display mit Controller fuer DVI to RGB TTL/MIPI DSI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SG3525_AppNote.pdf
lower threshold by turning on Q 10 and discharges C Through Q an3 ce :itispoweredbyV iratherthanV REF.Now thein- Q 4 with a rate defined by RD. As long as C Ts di- put common-moderange includes V REF eliminating scharging,theclockoutputishigh,blankingtheout- the need for a voltage divider with its attendant
in „SG3525 synchronisieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR_ATtiny_24_44_84.pdf
Gain Error Gain = 20x 15.0 LSB Gain = 1x V REF= 4V, VCC= 5V 3.0 LSB ADC clock = 50 - 200 kHz Offset Error Gain = 20x V REF= 4V, VCC= 5V 4.0 LSB ADC clock = 50 - 200 kHz Conversion Time Free Running Conversion 70 280 µs Clock Frequency 50 200 kHz
in „AVR Programm brennen ohne Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Cambridge_Technology_MicroMax_Series_670_Single_Axis_Board_Level_Mirror_Positioning_System.pdf
system's loop gain. Tuming Rl3 to set a scanner's field size will result in changed dynamic performance. Refer to section 6.0. for adjusting the output scale factor. ***Caution: Misadjustment of R13 could result in damage to the scanner. Refer to section 6.0 before adjustments are made. The apparent linearity
in „3D Scanner von 3D Digital Corp - zu irgendwas zu gebrauchen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MuxImplementation_ApplicationNote__WLS-CS-11002_.pdf
trace activation. Please refer to Appendix C.1 for a complete command description. This trace provides information (in form of ASCII output) about the multiplexer packets passing on the UART and on the DLCs. On LEON-G100-07 and subsequent versions, the “muxtron:<value>” command is available. Please refer to Appendix C.2 for the description. 6.2 Frame size If the host driver sends packets bigger than the Maximum Frame Size (for more details please refer to chapter 2.2) the module ignores the packets
in „CRC Problem Ublox Multiplex Protokoll“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ad630_Datenblatt.pdf
and Trace C is the filtered dc system output. 0 [ T ] Figure31.LVDTSignalConditioner 500µs/DIV B. 200mV/DIV T 3 C. 200mV/DIV A. 200mV/DIV 0 8 0 Figure32.ACBridgeWaveforms(1VExcitation) 1V +15V 400Hz 350Ω 350Ω +IN 9 11 +V A SEL B S 350Ω 350Ω 16 R 49.9Ω AD8221 A AD630AR B C REF 4.99kΩ 4.99kΩ 4.99kΩ 17
in „AD630 Lock In Verstärker board, DC Offset am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Tatenabfrage_10.c
> 8 ); UBRRL = (uint8_t)UART_UBRR_CALC( UART_BAUD_RATE, F_CPU ); } void Init_ADC() { ADMUX |= (1<<REFS1) | (1<<REFS0); // interne Referenzspannung nutzen // Activate ADC with Prescaler 16 --> 16Mhz/128 = 125kHz ADCSRA = _BV(ADEN) | _BV(ADPS2)|(1<<ADPS1)|(1<<ADPS0); // Select pin ADC0 using MUX ADMUX
in „PWM geht nicht mehr“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Unidrive_SP_Manual.pdf
Peak two additional 10-bit analog inputs for lower level controls Extensive Fieldbus Connectivity 200-240, 1Ø Modbus RTU (Standard), PROFIBUS DP, PROFINET RT, EtherNet/ 200-240, IP, EtherCAT, Modbus TCP/IP, DeviceNet, CAN, CANOpen, SERCOS, 3Ø Interbus-S and CTNet/CTSync optional via zero-space option
in „[V Verkaufe Umrichter Emerson Unidrive SP1403“ · Markt ·
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PDF
PAN1555__ENW89815A__Datasheet.pdf
recommended Vcc 4 Versorgungsspg. at voltage pin 3.0 3.3 3.6 Vdc 5 Ripple on Vcc Ripple frequency ≥200kHz 10 mVms AC Anteil auf Vcc Ripple frequency <200kHz PANASONIC ELECTRONIC DEVICES EUROPE GMBH www.pedeu.pansonic.de Downloaded froArrow.com. CLASSIFICATION PRODUCT SPECIFICATION No. REV. Einstufung
in „Bluetooth-Modul "BlueMod+P25" von Stollmann - Ersatztyp“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPS73133.pdf
measured for the TPS73115 O(nom)= 1.5V) since minimum VIN= 1.7V. (3) Fixed-voltage versions only; refer to the Applications section for more information. 3 TPS731xx www.ti.com SBVS034F–SEPTEMBER 2003–REVISED SEPTEMBER 2005 FUNCTIONAL BLOCK DIAGRAMS IN 4MHz Charge Pump EN Thermal Protection Ref Servo
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PDF
S8200A_E.pdf
specifications M6T1: SOT-23-6, Tape I6T1: SNT-6A, Tape *2 Serial code Sequentially set from AA to ZZ *1. Refer to the tape drawing. *2. Refer to "3. Product name list". 2. Packages Table 1 Package Drawing Codes Package Name Dimension Tape Reel Land SOT-23-6 MP006-A-P-SD MP006-A-C-SD MP006-A-R-SD − SNT-6A PG006
in „Li-Ion Ladeschutzschaltung mit S-8200“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
V23100-V4312C000-Reedrelais.pdf
form A (2 NO) VDC VDC VDC VDC VDC VDC Max. switching voltage 05 22.0 14.0 13.0 14.0 14.5 2.25 13.62 200 at rated coil voltage 5VDC 200VDC/VAC 175VDC 12 33.0 25.0 22.0 25.0 23.5 3.60 21.68 200 peak at rated coil voltage 12to 24VDC 200VDC/VAC peak175VDC peak 15 44.0 47.0 44.0 47.0 14.5 - Limiting continuous
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PDF
B1011-20.pdf
6000 Nennlast (Emax) kg 5; 10; 20; 10; 20; 50; 50; 100; 20; 50; 100; 50; 100; 50; 100; 100; 200; 200 200; 500 200; 200; 500 500 t 1 1 − − − Mindestteilungswert (vmin) % v. max 0,0360 0,0090 0,0066 Rückkehr des Mindestvorlastsignals (DDR) − − 0,5⋅Emax/ − − 7500 Nennkennwert (C ) mV/V 2 n Kennwerttoleranz
in „Spannungsbereich Wägezelle Z6FD1“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UM08001_JLinkARM.pdf
...........200 JTAG 14 pin adapter ...........................165 Coprocessor ......................................200 JTAGLoad ........................................... 73 L D Dirty data ......................
in „[V] J-Link JTAG Adapter USB für ARM abzugeben“ · Markt ·