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PDF
PCA9306.pdf
5.0 Ω V I(EN) 3 V - 3.0 6.0 Ω V I(EN) 2.3 V - 3.8 8.0 Ω V I(EN) 1.5 V - 15 32 Ω [4] V I(EN) 1.5 V - 32 80 Ω VI= 2.4 V; O = 15 mA V I(EN) 4.5 V - 4.8 7.5 Ω V I(EN) 3 V - 46 80 Ω VI= 1.7 V; O = 15 mA V I(EN) 2.3 V - 40 80 Ω [1] All typical values aamb= 25 °C. [2] Measured by the voltage
in „[V] ONSEMI Dual bidirectional PCA9306 I2C-bus and SMBus Voltage-level translator (30St für10€)“ · Markt ·
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PDF
PCA9306.pdf
5.0 Ω V I(EN) 3 V - 3.0 6.0 Ω V I(EN) 2.3 V - 3.8 8.0 Ω V I(EN) 1.5 V - 15 32 Ω [4] V I(EN) 1.5 V - 32 80 Ω VI= 2.4 V; O = 15 mA V I(EN) 4.5 V - 4.8 7.5 Ω V I(EN) 3 V - 46 80 Ω VI= 1.7 V; O = 15 mA V I(EN) 2.3 V - 40 80 Ω [1] All typical values aamb= 25 °C. [2] Measured by the voltage
in „[V] .Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (30St/10€)“ · Markt ·
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PDF
PCA9306.pdf
5.0 Ω V I(EN) 3 V - 3.0 6.0 Ω V I(EN) 2.3 V - 3.8 8.0 Ω V I(EN) 1.5 V - 15 32 Ω [4] V I(EN) 1.5 V - 32 80 Ω VI= 2.4 V; O = 15 mA V I(EN) 4.5 V - 4.8 7.5 Ω V I(EN) 3 V - 46 80 Ω VI= 1.7 V; O = 15 mA V I(EN) 2.3 V - 40 80 Ω [1] All typical values aamb= 25 °C. [2] Measured by the voltage
in „[V] ca. 190St.Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (20St/8€)“ · Markt ·
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PDF
PCA9306.pdf
5.0 Ω V I(EN) 3 V - 3.0 6.0 Ω V I(EN) 2.3 V - 3.8 8.0 Ω V I(EN) 1.5 V - 15 32 Ω [4] V I(EN) 1.5 V - 32 80 Ω VI= 2.4 V; O = 15 mA V I(EN) 4.5 V - 4.8 7.5 Ω V I(EN) 3 V - 46 80 Ω VI= 1.7 V; O = 15 mA V I(EN) 2.3 V - 40 80 Ω [1] All typical values aamb= 25 °C. [2] Measured by the voltage
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
5.0 Ω V I(EN) 3 V - 3.0 6.0 Ω V I(EN) 2.3 V - 3.8 8.0 Ω V I(EN) 1.5 V - 15 32 Ω [4] V I(EN) 1.5 V - 32 80 Ω VI= 2.4 V; O = 15 mA V I(EN) 4.5 V - 4.8 7.5 Ω V I(EN) 3 V - 46 80 Ω VI= 1.7 V; O = 15 mA V I(EN) 2.3 V - 40 80 Ω [1] All typical values aamb= 25 °C. [2] Measured by the voltage
in „[V] Konvolut Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator“ · Markt ·
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PDF
DM00109015.pdf
-40 °C < T< 125 °C 80 mV T = 25 °C 40 VOL Low level output voltage -40 °C < T< 125 °C 60 T = 25 °C 6 12 sink ( outV CC) -40 °C < T< 125 °C 4 Iout mA T = 25 °C 5 7 source ( out0 V) -40 °C < T< 125 °C 3 Supply
in „Frage zu OpAmp dual supply“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon_FET-ITS711_Datasheet_EN.pdf
V V 60 V 3) LoadDump A s A Loa4) R I 2Ω, t = d00ms; IN= low or high, dump each channel loaded with R =7L1Ω, Junction temperature Tj +150 °C Operating temperature range Ta -30 ... +85 Storage temperature range Tstg -40 +105 Power
in „Erfahrung mit ITS 711L1 und mit Diode beschalten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DATASHEET-LI10600T070IA3098-TR.pdf
base on below application circuit. Item Symbol Min Typ. Max Unit Remark IG H 3.0 0.2 1.0 mA VG H=16.0V IG L 10.2 0.2 1.0 mA VG L= -7.0V Current for Driver IDV DD 15 4.0 10 mA DV DD =3.3V IAVDD -9.0 20 50 mA AV DD=10.4V DWIN Technology 8 www.dwin-global.com LI10600T070IA3098-TR_datasheet Professional
in „Parallel RGB Frequenz/Einzelbild?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HT2830.PDF
. 2 9th July ’97 HT2830 Pad Coordinates Unit: mil Pad No. X Y Pad No. X Y 1 –36.13 24.57 12 36.01 –40.46 2 –36.13 16.62 13 36.01 –33.96 3 –36.13 –26.09 14 36.01 –20.66 4 –36.13 –33.96 15 36.01 –0.88 5 –36.13 –40.46 16 36.01 24.24 6 –29.70 –40.46 17 36.01 40.46 7 –23.24 –40.46 18 –0.58 40.46 8 –13.35
in „Rim Dampflok Bausatz - Asic?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SAF_C515C-LM.pdf
VCC V CC+ 0.5 V – Port 5 in CMOS mode VIHC 0.7 VCC V CC+ 0.5 V – Output low voltages Ports 1, 2, 3, 4, 5, 7 (incl. CMOV) – 0.45 V I = 1.6 mA 1) OL OL 1) Port 0, ALE, PSEN, CPUR VOL1 – 0.45 V OL = 3.2 mA P4.1, P4.3 in push-pull mode VOL3 – 0.45 V OL = 3.75 mA 1) Output high voltages Ports 1, 2, 3, 4,
in „SAF C515C LM auslesen verzweiflung :(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XC62FP_Datasheet.pdf
≤ 85°C (Note1) XC62FP4002 V OUT (T)=4.0V Ta=25°C PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS CIRCUIT Output Voltage V OUT(E)(Note2) IOUT=40mA 3.920 4.000 4.080 V 1 VIN=5.0V MaximumOutput Current OUT max VIN=5.0V, OUT(E) ≥ 3.6V 200 mA 1
in „[?] Spannungsversorgung 3.0-3.4 > 3.3“ · Analoge Elektronik und Schaltungstechnik ·
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DLR1414.PDF
T DS DH WR 2.0 V 0.8 V TW T ACC Note: These waveforms are not edge triggered. DC Characteristics –40°C +25°C +85°C Parameter Units Conditions Min. Typ. Max. Min. Typ. Max. Min. Typ. Max. ICC 4 Digits on 90 120 80 105 70 95 mA VCC =5 V 20 dots/digit ICC Blank 2.8 4.0 2.3 3.0 2.0 2.5 mA VCC =WR=5 V, V =0 V IN IILall inputs) 30 60 120 25 50 100 20 40 80 mA VIN0.8 V, VCC=5 V V IH 2.0 2.0 2.0 V VCC =5 V 0.5 V V IL 0.8 0.8 0.8 V VCC =5 V 0.5 V V CC 4.5 5.0 5.5 4.5 5.0 5.5 4.5 5.0 5.5 V AC Characteristics Guaranteed Minimum Timing Parameters at V =5.0
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PR39MF22NS.pdf
PWB. iso (rms) Operating temperature Topr −30 to +85 °C Storage temperature Tstg −40 to +125 °C Soldering temperature T 260(For10s) °C sol *1 The derating factors of absolute maximum ratings due to ambient temperature are shown in Fig.1, 2 *2 50Hz sine wave *3 AC for 1 min, 40 to 60%
in „Frage zu Beschaltung von Sharp SSR PR39MF22NS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1019.pdf
LT1019CN8-4.5 –40 to 85 0.2 20 LT1019IN8-4.5 –55 to 125 0.05 10 LT1019AMH-4.5 0.2 25 LT1019MH-4.5 5 0 to 70 0.05 5 LT1019ACH-5 LT1019ACS8-5 LT1019ACN8-5 0.2 20 LT1019CH-5 LT1019CS8-5 LT1019CN8-5 –40 to 85 0.05 10
in „Hochgenaue 2.5V Referenz“ · Mikrocontroller und Digitale Elektronik ·
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mc33151u.pdf
= 10 mA O O sink ,t 1.0 Sink Saturation a 0.8 Sink Saturation Gnd s (Load toCC ) Gnd V 0.6 (Load to V ) V 0 0 CC 0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 –55 –25 0 25 50 75 100 125 IO, OUTPUT LOAD CURRENT (A) TA, AMBIENT
in „Mosfett-Driver Art-Kompatibel?“ · Analoge Elektronik und Schaltungstechnik ·
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AD-ADXL345.pdf
DevicesonaSingleBus Rev. C | Page 15 of 40 ADXL345 CS tSCLK tM tS t t tDELAY QUIET CS,DIS SCLK tHOLD tSETUP SDI W MB A5 A0 D7 D0 SDO t ADDRESS BITS DATA BITS DIS 0 SDO X X X X X X 2 7 0 Figure37.SPI4-WireWrite CS tSCLK tM S tQUIET CS,DIS DELAY
in „MOSI-Pegel viel zu niedrig, aber warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A1324-26-ALL.pdf
5.5 5.5 A1324 5.0 A1324 ) 5.0 ) / / 4.5 V 4.5 V ( ( 4.0 sa4.0 sa3.5 n n A1325 S 3.5 S 3.0 A1325 A1326 3.0 2.5 A1326 2.0 2.5 1.5 2.0 1.0 – 40 25 150 4.5 5 5.5 TA (°C) VCC (V) Average Quiescent Voltage Output Drift versus Ambient Temperature
in „A1324 Hallsensor reagiert nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ST-4000.pdf
< 1 15 12 12 12 VIL(UB series) 4.5/0.5 <1 5 1 1 1 9/1 <1 10 2 2 2 v 13/2 <1 15 3 3 3 0/5 2.5 5 -2 -1.6 -1.15 HCC 0/5 4.6 5 -o.64 -o.51 -o.36 types 0/10 9.5 10 -1.6 -1.3 -o.9 IOH 0/15 13.5 15 -4.2 -3.4 -2.4 mA -1.53 -1.36 -1.1 0/5 2.5
in „RC-Oszillator mit zwei CD4001B-NOR-Gattern schwingt nicht an“ · Mikrocontroller und Digitale Elektronik ·
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TS912_mit_Spice-Modell.pdf
) Vid Differential input voltage ±18 V (3) Vi Input voltage -0.3 to 18 V Iin Current on inputs ±50 mA Io Current on outputs ±130 mA Tstg Storage temperature -65 to +150 °C Tj Maximum junction temperature 150 °C (4) Thermal resistance junction-to-ambient Rthja DIP8 85 SO-8 °C/W 125 (4) Thermal resistance
in „Eingangswiderstand TS912 zwecks Berechnung Kompensationskondensator“ · Analoge Elektronik und Schaltungstechnik ·
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ts912.pdf
) Vid Differential input voltage ±18 V (3) Vi Input voltage -0.3 to 18 V Iin Current on inputs ±50 mA Io Current on outputs ±130 mA Tstg Storage temperature -65 to +150 °C Tj Maximum junction temperature 150 °C (4) Thermal resistance junction-to-ambient Rthja DIP8 85 SO-8 °C/W 125 (4) Thermal resistance
in „Projekt: SerialComCNC Serielles Frontend für CNC GRBL mit ATMega“ · Projekte & Code ·
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PDF
ts912.pdf
) Vid Differential input voltage ±18 V (3) Vi Input voltage -0.3 to 18 V Iin Current on inputs ±50 mA Io Current on outputs ±130 mA Tstg Storage temperature -65 to +150 °C Tj Maximum junction temperature 150 °C (4) Thermal resistance junction-to-ambient Rthja DIP8 85 SO-8 °C/W 125 (4) Thermal resistance
in „Projekt: SerialComCNC Serielles Frontend für CNC GRBL mit ATMega“ · Projekte & Code ·
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PDF
VND830SP.pdf
(°C/W) 0.8 R3 (°C/W) 0.7 R4 (°C/W) 0.8 R5 (°C/W) 12 R6 (°C/W) 37 22 C1 (W.s/°C) 0.0006 C2 (W.s/°C) 2.1E-03 C3 (W.s/°C) 0.013 C4 (W.s/°C) 0.3 C5 (W.s/°C) 0.75 C6 (W.s/°C) 3 5 D oc ID 10879 Rev 3 23/28 VND830SP-E Package and packing
in „[V] Highside-Schalter“ · Markt ·
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PDF
pca9548a.pdf
Links: PCA9548A PCA9548A SCPS143G – JUNE 2009 – REVISED MARCH 2021 www.ti.com T E E 1 0 C D C R A A V S S 4 3 2 1 0 9 2 2 2 2 2 1 SD0 1 18 A2 SC0 2 17 SC7 SD1 3 16 SD7 Thermal SC1 4 Pad 15 SC6 SD2 5 14 SD6 SC2 6 13 SC5 7 8 9 1 1 1 3 3 D 4 4 5 D C N D C D S S G S S S Not to scale Figure 5-2. RGE Package
in „Unterschied TCA9548A und PCA9548A“ · Mikrocontroller und Digitale Elektronik ·
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MAX712-MAX713.pdf
CURRENT-SENSE AMPLIFIER FREQUENCY RESPONSE (with 15pF) FREQUENCY RESPONSE (with 10nF) 20 MAX712/13 40c01 20 MAX712/13 40c02 C2 = 15pF C2 = 10nF FASTCHG = 0V FASTCHG = 0V 10 0 ) 10 0 ) A S A S B V R B V R ( Φ E ( E A 0 -40 ( A 0 -40 ( G S G Φ S P H BATT- CC P -10 + CURRENT- + -80 -10 -80 VIN SENSE VOUT
in „MAX1775_Verständnisproblem“ · Analoge Elektronik und Schaltungstechnik ·
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MAX712-MAX713.pdf
CURRENT-SENSE AMPLIFIER FREQUENCY RESPONSE (with 15pF) FREQUENCY RESPONSE (with 10nF) 20 MAX712/13 40c01 20 MAX712/13 40c02 C2 = 15pF C2 = 10nF FASTCHG = 0V FASTCHG = 0V 10 0 ) 10 0 ) A S A S B V R B V R ( Φ E ( E A 0 -40 ( A 0 -40 ( G S G Φ S P H BATT- CC P -10 + CURRENT- + -80 -10 -80 VIN SENSE VOUT
in „Kurz vorm Verzweifeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Laborausstattung.pdf
-- - [0000 ... 1999], Iso-Test mit 250 V, 500V oder 1000 V 1 SE-06 AC/DC-Zangenmessgerät --- - 400 mA ... 4 A, 400 mV ... 1000 V, 400 Ohm - 40 MOhm, 40 nF ... 40 uF # Typenbezeichnung Beschreibung I/O F Funktionsbeschreibung 1 Grundig RLC 200 RLC-Messgerät SER - 1 m ... 100 M , 100 nH ... 20 kH, 0,1
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PDF
MAX220-MAX249.pdf
= +4.75V V 1μF CAPS O 6 -6 5 0.1μF CAPS -8 V- V- V+ LOADED, NO LOAD ON V- -10 4 -10V 0 5 10 15 20 25 0 10 20 30 40 50 60 500μs/div LOAD CURRENT (mA) DATA RATE (kb/s) 4 Maxim Integrated MAX220–MAX249 +5V-Powered
in „16 Wide SO Gehäuseform SMD-IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
StepUpConverter_ce830.pdf
EN V SS0.3 ~ V SS0 V LX pin voltage VLX V SS0.3 ~ V SS0 V LX pin current LX 1000 mA SOT-23-3 250 mW Power SOT-23-5 PD 250 mW dissipation SOT-89-3 500 mW Operating temperature Topr -40 ~+85 °C Storage temperature Tstg -40 ~+125 °C Electrical Characteristics (Unless otherwise specified
in „Aufwärtswandler 5V gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
StepUpConverter_ce830.pdf
EN V SS0.3 ~ V SS0 V LX pin voltage VLX V SS0.3 ~ V SS0 V LX pin current LX 1000 mA SOT-23-3 250 mW Power SOT-23-5 PD 250 mW dissipation SOT-89-3 500 mW Operating temperature Topr -40 ~+85 °C Storage temperature Tstg -40 ~+125 °C Electrical Characteristics (Unless otherwise specified
in „DC-DC-Wandler(chen) - StepUpConverter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
StepUpConverter_ce830.pdf
EN V SS0.3 ~ V SS0 V LX pin voltage VLX V SS0.3 ~ V SS0 V LX pin current LX 1000 mA SOT-23-3 250 mW Power SOT-23-5 PD 250 mW dissipation SOT-89-3 500 mW Operating temperature Topr -40 ~+85 °C Storage temperature Tstg -40 ~+125 °C Electrical Characteristics (Unless otherwise specified
in „Spannugnsversorgung PIC16f887“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Mosfet_PHT8N06_Nkanal.pdf
PD% Normalised Power Derating Zth/ (K/W) 120 100 110 100 90 10 0.5 80 70 0.2 0.1 60 1 50 0.05 tp tp 40 0.02 PD D =T 30 0.1 20 T t 10 0 0 20 40 60 80 100 120 140 0.01 Tmb / C 1.0E-06 0.0001 t/s 0.01 1 100 Fig.1. Normalised power dissipation. Fig.4. Transient thermal impedance. PD% = 100 ⋅P /P = f(T ) D
in „FET Konfektionierung okay?“ · Mikrocontroller und Digitale Elektronik ·
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BF998.pdf
N-channel dual-gate MOS-FETs BF998; BF998R MGE812 MGE810 handbook, halfpage handbook, halfpage |yfs VG2-S = 4 V C os (pF) (mS) 24 1.4 3 V 18 1.3 2 V 12 1.2 12 mA 6 1 V 1.1 10 mA 8 mA 0 V 0 1.0 −1 0 V (V) 1 4 6 8 10 12 14 G1 V DS (V) V DS= 8 V; Tamb= 25 C. VG2-S= 4 V; f = 1 MHz; amb= 25 C. Fig.9 Forward
in „Schaltung mit BF998“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX1487-MAX491.pdf
7 and 9L C = 15pF, S1 closed 40 70 ns 4 Driver Disable Time from High HZ Figures 7 and 9L C = 15pF, S2 closed 40 70 ns 9 MAX481, MAX485, MAX1487 20 90 200 Figures 6 and 10, 1 Receiver Input to Output PLH PHL RDIFF= 54Ω,
in „SPI Recihweite über RS422 (MAX490) erhöhen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX491.pdf
7 and 9L C = 15pF, S1 closed 40 70 ns 4 Driver Disable Time from High HZ Figures 7 and 9L C = 15pF, S2 closed 40 70 ns 9 MAX481, MAX485, MAX1487 20 90 200 Figures 6 and 10, 1 Receiver Input to Output PLH PHL RDIFF= 54Ω,
in „MAX491 -Defekt??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WS2801.pdf
0.63 30 0.62 29.95 29.9 0.61 A29.85 F 0.6 t 29.8 V I 29.75 0.59 29.7 29.65 0.58 29.6 0.57 29.55 3 4 5 5.5 -40 -20 0 20 40 60 80 100 120 VCC(V) Temp. Output current vs. Temp (RFB=20Ω) Feed back voltage vs. temp. IOUT vs.VOUT IVCC vs. Temp. 30.1 1400 30.05 30 1200 29.95 1000 ) A m 29.9 ( 800 T29.85 C I 29.8 C 600 29.75 I 400 29.7 200 29.65 29.6 0 2 3 VOUT(V) 4 5 -40 -20 0 20 40 60 80 100 120 Temp.(℃) Output current vs. output voltage VCC vs. Temp. 6 /15 WS-Preliminary-V0.3 http://www.world-semi.com Preliminary WS2801 3-Channel Constant Current LED Driver With
in „Sammelbestellung Adafruit - Digital Addressable RGB LED w/ PWM waterproof flexi strip (LPD8806)“ · Markt ·
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PDF
WS2801.pdf
0.63 30 0.62 29.95 29.9 0.61 A29.85 F 0.6 t 29.8 V I 29.75 0.59 29.7 29.65 0.58 29.6 0.57 29.55 3 4 5 5.5 -40 -20 0 20 40 60 80 100 120 VCC(V) Temp. Output current vs. Temp (RFB=20Ω) Feed back voltage vs. temp. IOUT vs.VOUT IVCC vs. Temp. 30.1 1400 30.05 30 1200 29.95 1000 ) A m 29.9 ( 800 T29.85 C I 29.8 C 600 29.75 I 400 29.7 200 29.65 29.6 0 2 3 VOUT(V) 4 5 -40 -20 0 20 40 60 80 100 120 Temp.(℃) Output current vs. output voltage VCC vs. Temp. 6 /15 WS-Preliminary-V0.3 http://www.world-semi.com Preliminary WS2801 3-Channel Constant Current LED Driver With
in „WS2801 mehrere LEDs mit KSQ anschließen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CY7C65620_CY7C65630_38-08037_AA.pdf
CY7C65630 Pin Configuration [2] Figure 1. 56-pin Quad Flat Pack No Leads (8 mm × 8 mm) C C d d / / C s C s 4 4 ] ] ] ] K R # # # [ # [ D C T P E E D C R R R R D _ _ D S F B E N C W V W V N P P N E E M R G V P O P O G S S G R S A G 56 55 54 53 52 51 50 49 48 47 46 45 44 43 DD–[4]/NC 1 42 AMBER#[3]/NC DD
in „PIN mit ground verbinden ja/nein?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ZBS14.pdf
Tab.2 [9] Warmwasseranschluss [10] Speicherladepumpe 2.4 Typenübersicht [11] Befestigungsmaterialbestehendaus: ZBS14/210S-3 MA 21 solar S0000 [11.1] Blechschrauben [11.2] SchraubenM5 ZBS14/210S-3 MA 23 solar S0000 [11.3] Dichtungen Tab.3 [11.4] GummidichtungenfürSpeicherladepumpe
in „Heatronic 3 Adapter (Junkers Heizung) fuer Raspberry Pi“ · Haus & Smart Home ·
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PDF
MBI5039_Preliminary_Datasheet_V1.01-English.pdf
(SDI, O,LE, CLK) VIN -0.4~VDD0.4 V Output Current OUT0 ~ OUT15 ) IOUT +100 mA Sustaining Voltage at OUT Port V DS 17 V GND Terminal Current I +1440 mA GND GF Type 2.51 Power Dissipation (On PCB, Ta=25°C) GP Type PD 2.04 W GFN
in „LED-Treiber-IC mit möglichst vielen Ausgängen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INF.pdf
C EAS 3 J IL=20A, Z =1LmH, 0Ω, see diagrams on page 10 Electrostatic discharge capability (ESD) V 4.0 kV ESD Human Body Model acc. MIL-STD883D, method 3015.7 and ESD assn. std. S5.1-1993, C = 100 pF, R = 1.5 kΩ Current through input pin (DC) I +15, -250 mA IN Current through current sense status pin
in „Mosfet Verarmungstyp?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
150355-da-01-en-74HCT125_126.pdf
0.8 V Voltage to 5.5 VOH High Level V I O =-20 A 4.4 4.5 4.4 4.4 Output Voltage 4.5 VIH V or IO=-6.0 mA 4.18 4.31 4.13 4.10 VIL V OL Low Level Output V I O = 20 A 0.0 0.1 0.1 0.1 Voltage V 4.5 IH V or IO= 6.0 mA 0.17 0.26 0.33 0.4 VIL II Input Leakage V I V CC or GND 〉 0.1 〉 1 〉 1 A Current 5.5 ICC Quiescent Supply 5.5 V I V CC or GND 4 40 80 A Current IOZ 3 State Output 6.0 VI= V IHor VIL 〉 0.5 〉 5 〉 10 A Off State Current VO= V CC or GND ICC Additional worst 5.5 Per Input pin 2.0 2.9 3.0 mA case supply V I 0.5V or current VI= 2.4V
in „Vorwiderstand an IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
w2465a.pdf
- +10 μA Current CS1 = V IHor CS2 = V IL or OE = VIH orWE = VIL Output Low Voltage V OL IOL= +8.0 mA - - 0.4 V Output High Voltage V OH IOH = -4.0 mA 2.4 - - V Operating Power IDD CS1 = V IL 12 - - 180 mA Supply Current CS2 = V IH I/O = 0 mA 15 - - 150 mA Cycle = MIN Duty = 100% 20 - - 120 mA Standby
in „Welches SRAM für M16C?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC662.pdf
0.56 0.69 max + V = 15V 14.63 14.50 14.37 V R = 2 kΩ to V /2 14.44 14.32 min L 0.26 0.35 0.44 V 0.40 0.48 max V = 15V 13.90 13.35 12.92 V RL= 600Ω to V /2 13.15 12.76 min 0.79 1.16 1.45 V 1.32 1.58 max Output Current Sourcing, VO= 0V 22 16 13 mA V = 5V 14 11 min Sinking, O = 5V 21 16 13 mA 14 11 min Output Current Sourcing, V = 0V 40 28 23 mA O V = 15V 25 21 min Sinking, O = 13V 39 28 23 mA (Note 12) 24 20 min Supply Current Both Amplifiers 0.75 1.3 1.6 mA V = 1.5V 1.5 1.8 max O AC Electrical Characteristics + U−less otherwise specified
in „Alternative zum LMC6041“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCU.pdf
17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 A _ _ A A A A C C B B B 1 1 _ _ P S D P P P P P P P P P B B S D V V P P V V ai14387b Figure 5. STM32F100xx value line LQFP48 pinout _ _ T D S 9 8 O 7 6 5 4 3 1 1 D S B B O B B B B B A A V V P P B P P P P P P P 48 47 46 45 44 43 42 41 40
in „suche die pins für flash speicher“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA5100.pdf
7 8.5 mA Load tank see S TRANSM Figure 4-1 and 4-2 Transmit mode 868 MHz 7 8.7 mA Power Down Mode Control (Pin 1) Stand-by mode V 0 0.7 V V < 0.2 V PDWN ASKDTA VFSKDTA < 0.2 V PLL enable mode VPDWN 1.5 VS V VASKDTA
in „13,575Mhz Quarz für Fernbedienung - wo gibts den?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IPD053N06N_Infineon.pdf
resistance, junction - case R thJC bottom - - 1.8 K/W Device on PCB R minimal footprint - - 62 thJA 4) 6 cm² cooling area - - 40 Electrical characteristics, at T =25 °C, unless otherwise specified j Static characteristics Drain-source breakdown voltage V (BR)DSS VGS =0 V, D =1 mA 60 - - V Gate threshold
in „12V mit Logic Mosfet schalten - funktioniert nicht“ · Analoge Elektronik und Schaltungstechnik ·
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tlc549.pdf
8 V D Differential Reference Input Voltages CC ANALOG IN 2 7 I/O CLOCK D Conversion Time . . . 17 s Max REF– 3 6 DATA OUT GND 4 5 CS D Total Access and Conversion Cycles Per Second – TLC548 . . . up to 45 500 – TLC549 . . . up to 40 000 D On-Chip Software-Controllable Sample-and-Hold Function D Total
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pxa_27x_Electrical_Timing_VLIO_Blatt1-3.pdf
54 55 56 57 58 Copyright © 4/3/09 Marvell Doc. No. MV-S104690-00 Rev. D April 2009 Released Page 117 PXA270 Processor Electrical, Mechanical, and Thermal Specification 1 Figure 45: 32-Bit VLIO Read Timing 2 3 4 5 6 CLK_MEM 7 nCS
in „Memory Controller PXA270 Timing Grundverständniss“ · Mikrocontroller und Digitale Elektronik ·
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tmote-sky-datasheet.pdf
G 6 6 S A1 4 D A A R D R G E C C O CC2420_PCB_ANT 5 4 3 2 2 V A V R V S S _ A2 C A V X X D D D D D 49 GND_EX V G G G G S MA A CC24K_DVDD3 1 2 3 C R 1 VCO_GAUR D NC 36 R474 CC 24K_DV DD3 C U10 10k 1 2 35 CC2
in „MSP430 - Beste Möglichkeit der Kommunikation“ · Mikrocontroller und Digitale Elektronik ·
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LM35.pdf
air rated to operate over a −55˚ to +150˚C temperature range, n Nonlinearity only± 14˚C typical S while the LM35C is rated for a −40˚ to +110˚C range (−10˚ n Low impedance output, 0.1 for 1 mA load n with improved accuracy). The LM35 series is available pack- s o Typical Applications s DS005516-4
in „ADC schwankungen bei Atmega16“ · Mikrocontroller und Digitale Elektronik ·