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TLV2462.pdf
3 V 18 H DD H V DD = 5 V / 17 A V 10 17 A V 10 V V I 1.5 V V V I 2.5 V n TA= 25°C n T = 25°C − 16 − A g g 16 l l V 15 o 15 e e i i N 14 o 14 t t p p I 13 I 13 n t l l i 12 v 12 u u E q − 11 − 11 n n V V
in „frage zu einfachem uC Ohmmeter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Littelfuse_PTC_SMD_Catalog_Datasheet.pdf-1021736.pdf
— — 1.850 — — — — — — 2.000 — — 6VDC/0.072Ω 6VDC0.06Ω 8VDC0.07Ω 6VDC0.10Ω — — — — 16V /0.085Ω — DC 2.500 — — — — — — 2.600 — — — — 6VDC/0.043Ω — — — — — 12VDC/0.047Ω — — — — — 13.2DC/0.050Ω — — — — — 16VDC/0.050Ω
in „[V] 24 St. Selbstrückstellende Polyswitch SMD Littlefuse SMD200F-2 2A/15V“ · Markt ·
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PDF
T6963C.pdf
Input ― L Level V IL ― 0 ― 0.8 V Input pins V H Level VOH ― DD ― VDD V Output pins Output ― − 0.3 Voltage L Level VOL ― 0 ― 0.3 V▯ Output pins Output H Level ROH ― V OUT= VDD − 0.5 V ― ― 400 Ω Output pins Resistance L
in „[V] Grafikdisplay 240x128“ · Markt ·
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Das_Bandfilter_in_der_Praxis_-_Funkbastler_1929.pdf
gewendet werden. bewahren. Berichtigung! In der vorigen „CQ“ sind zwei Druckfehler Im Namen der H. V. L. Im Namen der G. V. L. unterlaufen. — Der Verfasser des Artikels „ Vo m M ü g g e l Berlin Frankfurt a, M. s e e z u rS ü d s e e “ ist 4 B Y.Die R u f z e i c h e auf R a c h B ö d i g h e i ,
in „Ostern- Vielleicht mal wieder Detektorempfänger ?“ · HF, Funk und Felder ·
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PDF
T6963C.pdf
Input ― L Level V IL ― 0 ― 0.8 V Input pins V H Level VOH ― DD ― VDD V Output pins Output ― − 0.3 Voltage L Level VOL ― 0 ― 0.3 V Output pins Output H Level ROH ― V OUT= VDD − 0.5 V ― ― 400 Ω Output pins Resistance L
in „altes Phytec MCB-51 Monitor/Basic Befehle?“ · Mikrocontroller und Digitale Elektronik ·
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10134fd.pdf
G VS= 5V, 0V VS= ±15V I 0 E E 60 C A A = 125SC, V = 5V, 0VT I –10 125°C L O 40 T V V O I–20 25°C 20 S K VO= ±10V WSTH V = ±15V S–30 –55°C VO= 20mV TO 3.5V 0 WITHSV = 5V, 0V –40 100k –20 0 1 2 3 100 1k 10k 0.01
in „LT1013 Unterschied D und P Package“ · Analoge Elektronik und Schaltungstechnik ·
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DM_D110_Steuerkommandos.pdf
Synchronization: Synchronous 4) Handshaking (*1): DTR/DSR control 5) Signal levels: MARK = -3 to -15 V logic = “1” OFF SPACE = +3 to +15 V logic = “0” ON 6) Baud rate (*1): 2400, 4800, 9600, 19200, 38400, 57600, 115200 bps (bps: bits per second) 7) Data word length (*1): 7 bits, 8 bits 8) Parity (*1):
in „VFD "Kundendisplay"-Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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MCP1640.pdf
synchronous step-up DC-DC con- verter. It provides an easy-to-use power supply solution - IOUT > 100 mA @ 1.2V V ,IN.3V V OUT - I > 350 mA @ 2.4V V , 3.3V V for applications powered by either one-cell, two-cell, or OUT IN OUT three-cell alkaline, NiCd, NiMH, one-cell Li-Ion or - IOUT > 350 mA @ 3.3V V ,IN.0V
in „ESP32-C6 an 18650 Akku betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CYONS1001x-1.pdf
solder temperature 260 C 3 cycles with 20 second dwell at peak temperature Supply voltage 0.5 3.7 V ESD 2 kV All pins, HBM MIL 883 method 3015 Input voltage 0.5 V +0.5 V DVDD Latch up current 100 mA Table 4. Operating Conditions Parameter Min Typ Max Unit Notes Operating temperature 5 45 C Operation
in „Frage zu einem Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
503991-da-01-en-RELAIS_24V_5A_G2R_2.pdf
Coil Must operate Must release Max. voltage Power Item Rated current (mA) Coil resistance voltage (V) voltage (V) (V) (Ω) consumption Classification Rated voltage 50 Hz 60 Hz % of rated voltage (VA, W) 12 VAC 93 75 65 General-purpose Quick-connect 24 VAC 46.5 37.5 260 80% max. 30% min. 140% Approx.
in „Relais an Atmega, Kontrolle Bauteile“ · Mikrocontroller und Digitale Elektronik ·
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TL431.pdf
depending on whether minimum V refor maximum V ref respectively, occurs at the lower temperature. Example: maximum V ref = 2496 mV at 30°C, minimum V ref= 2492 mV at 0°C, V ref = 2495 mV at 25°C, ∆T A 70°C for TL431C ǒ 4 mVǓ 10 6
in „Überspannungsschutz (Crowbar) für XPORT (3.3V)“ · Analoge Elektronik und Schaltungstechnik ·
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LTC1859.pdf
CONTROL 1.0 SOFTWARE-PROGRAMMABLE CH3 DGND LINES SINGLE-ENDED OR CH4 SDO B 0.5 DIFFERENTIAL INPUTS ( (0V TO 5V, 0V TO 10V,CH5 BUSY N 0 ±5V OR ±10V) CH6 OVDD 3V TO 5V I–0.5 CH7 + DVDD 5V MUXOUT – AVDD 5V –1.0 MUXOUT AGND3 10µF 10µF 10µF ADC+ AGND2 –1.5 ADC– REFCOMP AGND1 VREF 2.5V –2–32768 –16384 0 16384
in „LTC1859 merkwürdige Messwerte“ · Mikrocontroller und Digitale Elektronik ·
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Datei
system.ucf
_DQ_pin<30> LOC=V27 | IOSTANDARD = SSTL18_II; Net fpga_0_DDR2_SDRAM_DDR2_DQ_pin<31> LOC=W27 | IOSTANDARD = SSTL18_II; Net fpga_0_DDR2_SDRAM_DDR2_DQ_pin<32> LOC=V29 | IOSTANDARD = SSTL18_II; Net fpga_0_DDR2_SDRAM_DDR2_
in „Xilinx ML07 PowerPC GPIO Interrupt“ · FPGA, VHDL & Co. ·
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LMH6518.pdf
availability and specifications. Wave Soldering (10 sec.) 260°C ESD Tolerance (Note 5) Human Body Model 2000V Operating Ratings (Note 1) Supply Voltage V = 5V (±5%) Machine Model 200V CC Charge Device Model 1000V V DD = 3.3V (±5%) Supply Voltage Temperature Range −40°C to 85°C VCC (5V nominal) 5.5V Thermal Properties VDD (3.3V nominal) 3.6V Differential Input ±1V Temperature Range (Note 4) −40°C to 85°C Input Common Mode Voltage 1V to 4V Junction-to-Ambient VCM and VCM_Aux 2V Thermal Resistance (θJ ), LLP (Note 4) 40°C/W SPI
in „Wittig(welec) DSO W20xxA Hardware“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7190.pdf
50 % typ 2 External Clock/Crystal Frequency 4.9152 MHz nom 2.4576/5.12 MHz min/max Input LowVoltage,V INL 0.8 V max DVDD = 5V. 0.4 V max DVDD = 3V. Input HighVoltage,V INH 2.5 V min DVDD = 3V. 3.5 V min DVDD = 5V. Input Current ±10 μA max LOGIC INPUTS 2 Input HighVoltage,V INH 2 V min Input LowVoltage,V INL 0.8 V max 2 Hysteresis 0.1/0.25 V min/V max Input Currents ±10 μA max LOGIC OUTPUT (DOUT/RDY) Output HighVoltage,V OH2 DV DD− 0.6 V min DVDD = 3V, SOURCE= 100 μA. 2 Output LowVoltage,V OL 0.4 V max
in „AD7190 Clock“ · Analoge Elektronik und Schaltungstechnik ·
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LM2677_2000.pdf
) (Note 4) V OUT Output Voltage VIN= 8V to 40V, 100mA ≤ IOUT ≤ 5A 5.0 4.900/4.850 5.100/5.150 V η Efficiency V = 12V, I = 5A 84 % IN LOAD LM2677-12 Symbol Parameter Conditions Typical Min Max Units (Note 3) (Note
in „On-Chip Induktivität“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
_LM2678.pdf
V = 8V to 40V, 100mA ≤ I ≤ 5A 5.0 4.900/4.850 5.100/5.150 V OUT IN OUT η Efficiency VIN = 12V, LOAD = 5A 84 % LM2678-12 Symbol Parameter Conditions Typical Min Max Units (Note 3) (Note 4) (Note 4) VOUT
in „Schaltregler - starke Lastschwankungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
rtc.pdf
, t 2.7V ≤ CC ≤ 5.5V 80 ns 1 14, 15) CDD 1.71V ≤ CC ≤ 1.89V 160 2.7V ≤ V ≤ 5.5V 110 3 SCLK Low Time (Note 13) tCL CC ns 9 1.71V ≤ CC ≤ 1.89V 400 1 2.7V ≤ CC ≤ 5.5V 110 SCLK High Time (Note 13) tCH 1.71V ≤ V ≤
in „ein Uhrenquartz für AVR und RTC???“ · Mikrocontroller und Digitale Elektronik ·
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harman_kardon_avr507_sm.pdf
0.1UF 50V Z C813 HCEA1HH4R7T CAP , ELECT 4.7UF 50V C814 HCEA1HH4R7T CAP , ELECT 4.7UF 50V C815 HCBS1H223ZFT CAP , CERAMIC 0.022UF 50V Z C816 HCBS1H223ZFT CAP , CERAMIC 0.022UF 50V Z C850 HCBS1H471KBT CAP , CERAMIC
in „Harman Kardon geht nicht an (hängt im Standby fest)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SSD2119.pdf
V3 V8+(V1-V8)*(23/48) V25 V43+(V20-V43)*(18/23) V47 V55+(V43-V55)*(16/24) V4 V8+(V1-V8)*(16/48) V26 V43+(V20-V43)*(17/23) V48 V55+(V43-V55)*(14/24) V5 V8+(V1-V8)*(12/48) V27 V43+(V20-V43)*(16/23) V49 V55
in „Display Module CFAF320240F-TS Ansteuerung --- ATMEGA 128 ---- STK600“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
27000 #define R12 3300 /* Schwellwert für schwache Batterie (mV) */ #define UBAT_WEAK 7600 /* Schwellwert für leere Batterie (mV) */ #define UBAT_EMPTY 7150 /*######################################################################################## Ende der Konfigurations-Einstellungen
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PDF
NL6448BC33-63D.pdf
edition) 5 NL6448BC33-63D 3. BLOCK DIAGRAM Host LCD module (Product) D0+ 100 H-driver D0- D1+ 100 S V D1- L D2+ f 1,920 lines e 100 i c D2- r D3+ i w LCD panel 100 e s r r i n v 0 H: 640 × 3 (R, G, B) D3- C d 4 V: 480 CK+ V 100 CK- DPS FRC Power supply for gradation k k 5 4 GND Note1 Note2 DC/DC VCC
in „[V] Industrie Display NEC 10.4" NL6448BC33-63D“ · Markt ·
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PDF
NASA_Technical_Note_D-822.pdf
of V were computed by using the values of q_, P_ _c/Ps and a given in tables III, Vs Vrr I and Xj respectively. It should be noted that the value of T required for the calculation of V is the temperature
in „Komplexe Berechnung auf µC - geschickte Annäherung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD9833.pdf
fOUT= fMCLK/50 Clock Feedthrough –60 dBc Wake-Up Time 1 ms LOGIC INPUTS VINH, Input High Voltage 1.7 V 2.3 V to 2.7 V Power Supply 2.0 V 2.7 V to 3.6 V Power Supply 2.8 V 4.5 V to 5.5 V Power Supply VINL, Input Low Voltage 0.5 V 2.3 V to 2.7 V Power Supply 0.7 V 2.7 V to 3.6 V Power Supply 0.8 V 4.5 V
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GLCD.pdf
ABSOLUTE MAXIMUM RATINGS ( Ta = 25°C ) Parameter Symbol Min Max Unit Supply voltage for logic VDD 0 6.7 V Supply voltage for LCD VDD -VO 0 28 V Input voltage VI 0 VDD V Normal operating temperature TOP 0 50 °C Normal storage temperature TST -10 60 °C Wide operating / storage TOP / TST -30 80 °C temperature
in „Problem mit IC6963“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ferritperlen.pdf
47pF ± 20% 100V DSS310-55Y5S101M100 100pF ± 20% 100V ±22% Internal Fig. 3 Fig. 6 DSS310-55Y5S271M100 270pF ± 20% 100V DSS310-55Y5S222M100 2200pF ± 20% 100V DSS310-55Y5S223S50 22000pF + 50%, –20% 50V FOR AUDIO CIRCUITS
in „24Bit Delta-Sigma ADC-Eingang vor ESD und Überspannung schützen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCD3311C_3312C_2.pdf
= Tamb = −25 ˚C −25 ˚C I IDD I (mA) +25 ˚C ( A) +70 ˚C +25 ˚C 1 4 +70 ˚C 0.5 2 0 0 0 2 4 6 8 0 1 2 V (V) 3 VDD (V) I Fig.18 Operating supply current as a function of supply voltage; oscillator ON, dual tone at Fig.19 Pull-down input current as a function of TONE. input voltage; V DD = 3 V. 1996 Nov
in „Tipsend2 Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LG4573A_DS_V1.1.5__1_.pdf
V62 VINP6 V18 VINP3+(VINP2-VINP3) x (4/24) V63 VINP7 V19 VINP3+(VINP2-VINP3) x (2/24) V20 VINP3 V21 VINP4+(VINP3-VINP4) x (22/23) V22 VINP4+(VINP3-VINP4) x (21/23) V23 VINP4+(VINP3-VINP4) x (20/23) V24
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PDF
DCC_Laborbooster.pdf
MOUNT-PAD-ROUND3.3 IN OUT H9 ADJ R6 MOUNT-PAD-ROUND3.3 IC3 H10 MOUNT-PAD-ROUND3.3 H11 MOUNT-PAD-ROUND3.3 V S 1 2 3 0 2 PAD1 PAD2 R R R R7 1 R8 2 R9 3 5 SV3 V S 1 2 3 C10 C11 C12 9 7 5 3 1 1 V S 1 8 6 4 2 P 61CV C DN51 I 2 C + S 2 E A + C 7 9 + 1 61R 2 6 1 7 1 8 R C V V U UI I O OR R 5 3 T T 1 1 1 9 7 5 3 1 T T 2 + - + - N NO O 2 V 5 1 1 2 2 1 21 2 X S I C C C C T T R R M 1 1 1 1 8 6 4 2 1 3 4 5 1 1 1 9 1 1 C C + + V V S S 1 2 3 1 2 3 4 5 8 7 6 5 43 1 8 7 6 5 2 2 2 2 22 2 2 1 1 1 1 P 7 65 4 3 2 1 0 7 6 5 4 7 R RR R R R R R R R
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MCP79521.pdf
1.3V, CC = VSS — — 850 nA (Note 2) Timekeeping Backup VBAT= 3.0V, CC = VSS D15 IBATT Current — 1000 1200 nA (Note 2) VBAT= 3.6V, CC = VSS — — 2300 nA (Note 2) V BATData Retention D16 IBATDAT Current (oscillator off) — — 850 nA VBAT= 3.6V, CC = VSS Note 1: Typical measurements taken at room temperature. 2: This parameter is not tested but ensured by characterization. 2012-2023 Microchip Technology Inc. anditssubsidiaries
in „RTC -> MCP79521“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1498.pdf
V + 0.5V to V – 0.5V l 66 80 dB V = 3V, V = V + 0.5V to V – 0.5V l 62 75 dB S CM CMRR Match (Channel-to-Channel) (Note 5) V S= 5V, CM= V + 0.5V to V – 0.5V l 62 80 dB V S= 3V, CM= V + 0.5V to V – 0.5V
in „KSQ für LED mit OPV“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Adj_Charge_Pump_Linear_Technology_LT1761ES5-SD__1663783_.pdf
: 300mV at 100mA idealchoice.Inshutdown,quiescentcurrentdropstoless ■ Fixed Output Voltages: 1.2V, 1.5V, 1.8V, 2V, 2.5V, than0.1μA.Thedevicesarecapableofoperatingover an 2.8V, 3V, 3.3V, 5V inputvoltagefrom1.8Vto20V
in „Adjustable Charge Pump: LT1761ES5-SD - Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hardware_developer_kit.pdf
on output connection LEGO MINDSTORMS EV3 Large motor Pin 6 high and pin 5 read at approximately 2.0 V Pin 6 low and pin 5 read at approximately 1.6 V LEGO MINDSTORMS EV3 Medium motor Pin 6 high and pin 5 read at approximately 0.45 V Pin 6 low and pin 5 read at approximately 0.25 V LEGO MINDSTORMS NXT
in „UART zu I2C bei Ev3 NXT Sensoren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1014CN_DN.pdf
RESPONSE vs vs TIME TIME 80 6 VCC± = ±15 V V CC+ = 5 V AV= 1 V = 0 60 T = 25°C 5 CC− A V I 0 to 4 V R L 0 V 40 V 4 A V 1 m − TA= 25°C − e g 20 a 3 l o o V t 0 u 2 p t u O O −20 − 1 − O O V V −40 0 −60 −1 −80 −2 0 2 4 6 8 10 12 14 0 10 20 30 40
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
20002234D.pdf
OUT — 150 — mA 1.5V V , 3.3V V IN OUT — 350 — mA 3.3V V IN5.0V V OUT Feedback Voltage V 1.175 1.21 1.245 V FB Feedback Input Bias Current IVFB — 10 — pA Quiescent Current – PFM IQPFM — 19 30 µA Measured at V OUT = 4.0V;
in „NRF24L01+ durch MCP1640 gestört?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fs18hd.pdf
output 24 to 0 V DC / max. 25 mA External measurement and control sensor - Pt100 Control connectors for solenoid valves or supplementary pump - 230 V or 115 V / max. 1.25 A Mains power connection V/ Hz 230 / 50 230 /
in „Kältekreislauf, komischer Regeleffekt?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
PCA9306.pdf
Fast-mode I C-bus devices and multiple controllers • Allows voltage level translation between: – 1.0 V Vref(1)nd 1.8 V, 2.5 V, 3.3 V or 5 V Vbias(ref)(2) – 1.2 V Vref(1)nd 1.8 V, 2.5 V, 3.3 V or 5 V Vbias(ref)(2) – 1.8 V Vref(1)nd 3.3 V or 5 V V bias(ref)(2) – 2.5 V Vref(1)nd 5 V V bias(ref)(2) – 3.3
in „[V] ONSEMI Dual bidirectional PCA9306 I2C-bus and SMBus Voltage-level translator (30St für10€)“ · Markt ·
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PDF
PCA9306.pdf
Fast-mode I C-bus devices and multiple controllers • Allows voltage level translation between: – 1.0 V Vref(1)nd 1.8 V, 2.5 V, 3.3 V or 5 V Vbias(ref)(2) – 1.2 V Vref(1)nd 1.8 V, 2.5 V, 3.3 V or 5 V Vbias(ref)(2) – 1.8 V Vref(1)nd 3.3 V or 5 V V bias(ref)(2) – 2.5 V Vref(1)nd 5 V V bias(ref)(2) – 3.3
in „[V] .Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (30St/10€)“ · Markt ·
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PDF
PCA9306.pdf
Fast-mode I C-bus devices and multiple controllers • Allows voltage level translation between: – 1.0 V Vref(1)nd 1.8 V, 2.5 V, 3.3 V or 5 V Vbias(ref)(2) – 1.2 V Vref(1)nd 1.8 V, 2.5 V, 3.3 V or 5 V Vbias(ref)(2) – 1.8 V Vref(1)nd 3.3 V or 5 V V bias(ref)(2) – 2.5 V Vref(1)nd 5 V V bias(ref)(2) – 3.3
in „[V] ca. 190St.Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (20St/8€)“ · Markt ·
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PDF
PCA9306.pdf
Fast-mode I C-bus devices and multiple controllers • Allows voltage level translation between: – 1.0 V Vref(1)nd 1.8 V, 2.5 V, 3.3 V or 5 V Vbias(ref)(2) – 1.2 V Vref(1)nd 1.8 V, 2.5 V, 3.3 V or 5 V Vbias(ref)(2) – 1.8 V Vref(1)nd 3.3 V or 5 V V bias(ref)(2) – 2.5 V Vref(1)nd 5 V V bias(ref)(2) – 3.3
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
Fast-mode I C-bus devices and multiple controllers • Allows voltage level translation between: – 1.0 V Vref(1)nd 1.8 V, 2.5 V, 3.3 V or 5 V Vbias(ref)(2) – 1.2 V Vref(1)nd 1.8 V, 2.5 V, 3.3 V or 5 V Vbias(ref)(2) – 1.8 V Vref(1)nd 3.3 V or 5 V V bias(ref)(2) – 2.5 V Vref(1)nd 5 V V bias(ref)(2) – 3.3
in „[V] Konvolut Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator“ · Markt ·
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PDF
LM3404.pdf
Distributors for availability and specifications. Infrared/ConvectionReflow(15sec) 235°C 4 H VIN to GND -0.3V to 45V V BOOT to GND -0.3V to 59V Operating Ratings (LM3404) SW to GND -1.5V to 45V (Note 1) BOOT to VCC -0.3V to 45V V BOOT to SW -0.3V to 14V IN 6V to 42V VCC to GND -0.3V to 14V Junction Temperature
in „Extreme Störungen LM3404“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AAA_eneloop.pdf
eeopB-MCCE 1.Mi018 2Ma218 ubknnrnchngragung nchadngh@ 65mA Etdugmt00mA Enaungm10mA Tmee. V mh imel. V mAh 00000 130 0 00000 42 0 00001 128 0 00001 41 0 00016 127 0 00016 40 0 00031 127 1 00031 40 1 00046 127 1 00046 40 1 00101 127 2 00001 40 2 00116 127 2 00016 39 2 00131 127 3 00031 39 3
in „Ladewirkungsgrad NiMH“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm2679-adj.pdf
ON-resistance DMOS power switch. The series consin 120 mΩ DMOS output switch fixed output voltages of 3.3V, 5V and 12V and an n 3.3V, 5V and 12V fixed output and adjustable (1.2V to output version. 37V ) versions The SIMPLE SWITCHER concept provides for a complene±2%maximum output tolerance over full line
in „Schaltregler Schaltplan und Layout Kontrolle“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Timing_Report.txt
Xilinx, Inc. All rights reserved. C:\Xilinx\13.4\ISE_DS\ISE\bin\nt64\unwrapped\trce.exe -intstyle ise -v 3 -s 1 -n 3 -fastpaths -xml Top_Modul_DDR2_Cameralink.twx Top_Modul_DDR2_Cameralink.ncd -o Top_Modul_DDR2_Cameralink.twr Top_Modul_DDR2_Cameralink.pcf -ucf Top_Modul.ucf -ucf Top_Modul_DDR2_Cameralink.ucf
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PDF
datasheet.pdf
V T = = = = = ≥ ≥ = C = C = = D e 0 e e , V V VO V R R L R VO VI V VC V V AV n T o t s u o u ra t e t t § e e f i p s a u e n n g u ° T m r o i u r d r a e l c d e )O t e a 7 E t t t r o g t c o e p ag
in „Experimentieren mit tl071cp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ILI9341_DS_V1.09.pdf
3.425 0111101 4.225 1011101 5.025 1111101 5.825 0011110 3.450 0111110 4.250 1011110 5.050 1111110 5.850 0011111 3.475 0111111 4.275 1011111 5.075 1111111 5.875 VML [6:0] Set the VCOML voltage VML [6:0] VCOML(V) VML [6:0] VCOML(V) VML [6:0] VCOML(V) VML [6:0] VCOML(V) 0000000 -2.500 0100000 -1.700 1000000
in „Ansteuerung LCD ILI9341“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS7846.pdf
(4) ±3 °C DIGITAL INPUT/OUTPUT Logic Family CMOS Logic Levels, Except PENIRQ V IH | IH| ≤ +5µA +V CC • 0.7 +V CC + 0.3 V IL | IL| ≤ +5µA –0.3 +0.8 V V OH OH = –250µA +V CC • 0.8 V V OL IOL = 250µA 0.4 V PENIRQ V OL TA= 0°C to +85°C, 50kΩ Pull-Up 0.8 V Data Format Straight Binary
in „Frage zu ADS7846“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps62200.pdf
mΩ VIN= VGS = 2.5 V 670 850 ds(ON) V = V = 3.6 V 430 540 N-channel MOSFET on-resistance IN GS mΩ VIN= VGS = 2.5 V 530 660 lkg_(P) P-channel leakage current VDS = 6.0 V 0.1 1 µA lkg_(N) N-channel leakage current VDS = 6.0
in „Schaltregler für 1,2 V (oder 1,5 V ?) aus Li-Ion-Akku“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TSC2003.pdf
INPUT/OUTPUT Logic Family CMOS Logic Levels, Except PENIRQ VIH | IH| ≤ +5µA +VDD • 0.7 +VDD + 0.3 V VIL | IL| ≤ +5µA –0.3 +V DD• 0.3 V V I = –250µA +V • 0.8 V OH OH DD VOL OL = 250µA 0.4 V PENIRQ V OL 30kΩ Pull-Up 0.4 V Data Format Straight Binary Input Capacitance SDA, SCL Lines 10 pF TSC2003 3 SBAS162C
in „Hilfe mit Touchscreen“ · Mikrocontroller und Digitale Elektronik ·