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TLC59116.pdf
and 4.7 1.3 0.5 s BUF Start conditions HD;STA Hold time (repeated) Start condition 4 0.6 0.26 s Setup time for a repeated Start SU;STA 4.7 0.6 0.26 s condition SU;STO Setup time for Stop condition 4 0.6 0.26
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PDF
LM124.pdf
Circuit to Ground (Note 5) V = 15V, A = 25˚C 40 60 40 60 40 60 mA Input Offset Voltage (Note 8) 4 4 5 mV VOS Drift RS= 0 7 20 7 20 7 30 µV/˚C Input Offset Current I − I , V = 0V 30 30 75 nA IN(+) IN(−)CM OS Drift RS= 0 10 200 10 200 10 300 pA/˚C Input
in „positiver Addierer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MLX90614ESF-BAA.pdf
Voltage,DD (over voltage) 7V 5V 7V Supply Voltage,DD (operating) 5.5 V 3.6V 5.5V Reverse Voltage 0.4 V Operating Temperature RangeA T -40…+85°C -40…+125°C Storage Temperature RangeS T -40…+125°C -40…+125°C ESD Sensitivity (AEC Q100 002) 2kV DC current into SCL/Vz (Vz mode) 2 mA DC sink current, SDA
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PDF
pcm2912a.pdf
specifications at T = 25°C, V = 5 V, f = 44.1 kHz, f = 1 kHz, and 16-bit data, unless otherwise noted. A BUS S IN 0 0 -20 -0.2 B d -40 d -0.4 - e d d i l p p m -60 A -0.6 A -80 -0.8 -100 -1.0 0 0.1 0.2 0.3 0.4 0 1 2 3 4 Normalized Frequency - x f /1000 S Normalized Frequency - xSf /1000 Figure 5. Stop Band Characteristic
in „Impedanzanpassung MAX9814 <-> PCM2912A“ · Analoge Elektronik und Schaltungstechnik ·
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EA_DOGM16_LCDs.pdf
kann zur sofortigen Zerstörung der LED's führen! EA LED55x31-A voltage max. W Beachten Sie unbedingt ein Derating bei Temperaturen >25°C. @ 3,3 V@ 5 V n Connected in para2,4 V 80 mA 11 ohm 32 ohm t a MONTAGE Connected in seri4,8 V 40 mA - 5
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PDF
EA_dog-m.pdf
kann zur sofortigen Zerstörung der LED's führen! EA LED55x31-A voltage max. W Beachten Sie unbedingt ein Derating bei Temperaturen >25°C. @ 3,3 V@ 5 V n Connected in para2,4 V 80 mA 11 ohm 32 ohm t a MONTAGE Connected in seri4,8 V 40 mA - 5
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EA_dog-m.pdf
kann zur sofortigen Zerstörung der LED's führen! EA LED55x31-A voltage max. W Beachten Sie unbedingt ein Derating bei Temperaturen >25°C. @ 3,3 V@ 5 V n Connected in para2,4 V 80 mA 11 ohm 32 ohm t a MONTAGE Connected in seri4,8 V 40 mA - 5
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EA_DOGM16.pdf
kann zur sofortigen Zerstörung der LED's führen! EA LED55x31-A voltage max. W Beachten Sie unbedingt ein Derating bei Temperaturen >25°C. @ 3,3 V@ 5 V n Connected in para2,4 V 80 mA 11 ohm 32 ohm t a MONTAGE Connected in seri4,8 V 40 mA - 5
in „i2C TWI Modus - ST7036 - DOGM DOGM162 DOGM081 EA DOGM163, ist das Möglich ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLV2462.pdf
DD VIC = 2.5 V, TLV246xI/Q/M Full range 60 VO = 2.5 V, 25°C 1.3 14 R = 50 Ω IB Input bias current S TLV246xC Full range 30 nA TLV246xI/Q/M Full range 60 25°C 4.9 OH = −2.5 mA Full range 4.8 VOH High-level output voltage V 25°C 4.8 OH = −10 mA Full range 4.7 25°C 0.1 VIC = 2.5 V, IOL = 2.5 mA Full range
in „frage zu einfachem uC Ohmmeter“ · Mikrocontroller und Digitale Elektronik ·
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BUK100-50.pdf
SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT td on Turn-on delay time VDD = 13 V; VIS 5 V - 8 - s tr Rise time resistive load L = 4 - 40 - s td off Turn-off delay time VDD = 13 V; VIS 0 V - 40 - s tf Fall time resistive load L = 4 - 35 - s REVERSE DIODE LIMITING VALUE SYMBOL PARAMETER CONDITIONS
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8051.pdf
mA(2) VOL1 Output Low Voltage (Port 0, ALE, PSEN) 0.457) V OL e 3.2 mA(2) VOH Output High Voltage 2.4 V OH e b 60 mA (Ports 1, 2, 3, ALE, PSEN) 0.9 V V I e b 10 mA CC OH VOH1 Output High Voltage (Port 0 in 2.4 V OH e b 800 mA External Bus Mode) 0.9 CC V OH e b 80 mA(3) I Logical 0 Input Current (Ports 1, 2, 3) b75 mA V e 0.45 V IL IN TL Logical 1-to-0 transition current b 750 mA (4) (Ports 1, 2, 3) LI Input Leakage Current (Port 0) g10 mA V INe VILr V IH CC Power Supply Current: Active Mode@ 12 MHz (5) 11.5 25/20
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Data_PCF_8574.pdf
− − 10 pF o Port timing; C ≤ 100 pF (see Figs 10 and 11) L pv output data valid − − 4 s su input data set-up time 0 − − s h input data hold time 4 − − s Interrupt INT (see Fig.13) OL LOW level output current V OL= 0.4 V 1.6 − − mA L leakage current V I V DDor VSS −1 − +1 A TIMING; L ≤
in „Austausch IC mit DIP gegen SMD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8574.pdf
− − 10 pF o Port timing; C ≤ 100 pF (see Figs 10 and 11) L pv output data valid − − 4 s su input data set-up time 0 − − s h input data hold time 4 − − s Interrupt INT (see Fig.13) OL LOW level output current V OL= 0.4 V 1.6 − − mA L leakage current V I V DDor VSS −1 − +1 A TIMING; L ≤
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PDF
Kingbright100mm.pdf
Alldimensionsareinmillimeters(inc±0.25(0.01")unlessotherwisenoted. 2. Specifications are subjected to change whitout notice. 7-S40-1 Internal Circuit Diagram Selection Guide Iv (ucd) @ 10 mA Part No. Dice Description Min. Max. SA40-18EWA Common Anode, Rt. Hand Decimal SA40-19EWA HIGH EFFICIENCY RED (GaAsP/GaP) 3600 14000 SC40-
in „100mm 7 Segment Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM350-D.PDF
U I P 55 − NT2.0 N T E E 50 P E I = 500 mA T , I L U 45 u D1.5 D Vo ,j 40 −i A V I = 20 mA L = 200 mA I 1.0 L 35−75 −50 −25 0 25 50 75 100 125 150 −75 −50 −25 0 25 50 75 100 125 150 T J JUNCTION TEMPERATURE (°C) TJ, JUNCTION TEMPERATURE (°C)
in „Einstellbare Last erzeugen für Netzteil-Test“ · PC Hard- und Software ·
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PDF
lme49600.pdf
Quiescent Current 0 Quiescent Current 20 Q = 10.3 -10 15 Q = 13.3 ) ( -20 B 10 E ( A I H G 5 P -30 I = 7.4 Q Q = 13.3 mA -40 Q = 10.3 mA 0 Q =7.4 mA -50 -5 1M 10M 100M 1G 1M 10M 100M 1G FREQUENCY (Hz) FREQUENCY (Hz) Gain Phase vs vs Frequency Frequency vs vs Power Supply Voltage Supply Voltage Wide BW Mode
in „Kopfhörerverstärker in Studioqualität gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Optical-Incremental-Encoder-Modules.pdf
en- transitionintheoutputofchannelB.Thereare4statesper cycle, each nominally 90°e. coder module. 3 AbsoluteMaximumRatings StorageTemperature,T S -40°C to 100°C OperatingTemperature,T -40°C to 100°C A SupplyVoltage,V -0.5V to 7V CC OutputVoltage,
in „Inkrementalgeber HEDS 9000, TTL, Impulsmessung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PHC2300_3_1_.pdf
handbook, halfpage 10 P handbook, halfpage tot D (W) (A) 1.6 1 (1) 1.2 10− 1 0.8 t P δ= p T − 2 DC 10 0.4 t tp T 0 10− 3 0 40 80 120 160 1 10 102 103 Ts(°C) V (V) DS δ = 0.01;sT = 80 °C. (1) R limitation. DSon Fig.2 Power derating curve. Fig.3 SOAR; N-channel. MGL245 −10 handbook, halfpage D (A) −1 (1) −
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IK2108DW.pdf
S14 O R S3 S12 R SEG14 1 R SG3/KS3 SG12/GR11 R S13 SEG13 N 4 S4 SG4/KS4 SG11/GR12 S11 A S R S5 S10 R S12 SEG12 N E R SG5/KS5 SG10/KS10 S11 SEG11 G S6 SG6/KS6 SG9/KS9 S9 R O M R S7 S8 R S10 SEG10 D SG7/KS7 SG8/KS8 S9 SEG9 E E ) N S8 SEG8 T S7 SEG7 S6 SEG6 S1 S2 S3 S4 S5 S6 S7 S8 S9 S10 S5 D D D D D D D D D D SEG5 S4 SEG4 S3 SEG3 K1 S2 SEG2 S1 SEG1 K2 K3 Recommend value: C1&C2 0.1uF-ceramics R 160Ohm 0.5W (if one
in „25-Segment-Display DYSR00P40110 Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XC6209.pdf
6 - 3.70 - 3.75 P 2.20 5.20 2.25 5.25 7 - 3.80 - 3.85 R 2.30 5.30 2.35 5.35 8 0.90 3.90 0.95 3.95 S 2.40 5.40 2.45 5.45 9 1.00 4.00 1.05 4.05 T 2.50 5.50 2.55 5.55 A 1.10 4.10 1.15 4.15 U 2.60 5.60 2.65 5.65 B 1.20 4.20 1.25 4.25 V 2.70 5.70 2.75 5.75 C 1.30 4.30 1.35 4.35 X 2.80 5.80 2.85 5.85 D 1.40
in „Bauteil 9XZ1 (SMD)?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Intersil_HIP4081A_.pdf
SUPPLY VOLTAGE FREQUENCY (kHz) 5.0 +125°C A m 20.0 +75°C T ) 4.0 N A E ( +25°C R 15.0 T U E 0°C C R 3.0 A U -40°C B C Y 10.0 L P P 2.0 P U S S G 5.0 C I I 1.0 T O L F 0.0 0.0 0 100 200 300 400 500 600 700 800 900 1000 0 100 200 300 400 500 600 700 800 900 1000 SWITCHING
in „Umrichter für E-Kart Anwendung 60V / 120A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bq2962.pdf
1. Overvoltage Threshold (V OV) vs. Temperature Figure 2. Hysteresis V HYS vs. Temperature 5 5 V 0 4.5 ( y A a ( 4 u -5 n c r A u3.5 g C l-10 p v u 3 e S n U-15 Mean 2.5 Mean Min Min Max Max -20 2 -60 -40 -20 0 20 40 60 80 100 120 -60 -40 -20 0 20 40 60 80 100 120 Temperature (qC) D003 Temperature (qC) D004 Figure 3. Undervoltage Accuracy Figure 4. DD with Regulator On 1.4 3.31 Mean 1.2 Min 3.305 Max A 1 V ( t t p 3.3 e 0.8 u u O C t l 0.6 l3.295 p g S 0.4 R Mean 3.29 0.2 Min Max 0 3.285 -60 -40 -20 0 20 40 60 80 100 120 -60 -40 -20 0 20 40 60
in „Batterieschutzschaltung. Murks oder möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Nexperia-74HCT125PW-118.pdf
V). Symbol Parameter Conditions 25 C 40 C to +85 C 40 C to +125 C Unit Min Typ Max Min Max Min Max 74HC125 V IH HIGH-level V CC = 2.0 V 1.5 1.2 - 1.5 - 1.5 - V input voltage V = 4.5 V 3.15 2.4 - 3.15 - 3.15 - V CC V CC = 6.0 V 4.2 3.2
in „Absichern 74HCT“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT3012.pdf
RELATED PARTS PART NUMBER DESCRIPTION COMMENTS LT1020 125mA, Micropower Regulator and Comparator V IN: 4.5V to 36V,OUT(MIN)= 2.5V, VDO = 0.4V,QI = 40μA, SD= 40μA, Comparator and Reference, Class B Outputs, S16, PDIP14 Packages LT1120/LT1120A 125mA, Micropower Regulator and Comparator V : 4INV to 36V, V OUT(MIN)= 2.5V, VDO = 0.4V,QI = 40μA, SD= 10μA, Comparator and Reference, Logic Shutdown, Ref Sources and Sinks 2/4mA, S8, N8 Packages LT1121/LT1121HV 150mA, Micropower, LDO VIN 4.2V to 30/36V, OUT(MIN) = 3.75V, DO = 0.42V, Q
in „Linear Regler schwingt“ · Analoge Elektronik und Schaltungstechnik ·
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DSA00206265.pdf
-112 CURRENT =0.4 A/Phase SST40C1020 DRIVER TYPEA(C=1µF,R=0) VOLTAGE V : w =12 V T EXCITING MODE =2 Phase INERTIAL LOAD 3 g-cm 2 EXCITING MODE =2 Phase INERTIAL LOAD 3 g-cm 2 S S SST40C1030 DRIVER TYPEA(C=1µF,R=0) VOLTAGE
in „Daten zu einem Schrittmotor herausfinden“ · Mikrocontroller und Digitale Elektronik ·
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MC74VHC1GT66-D.pdf
±1.0 ±1.0 mA Leakage Current 5.5 ON/OFF Control Input I Maximum Quiescent V = V or GND 5.5 1.0 20 40 mA CC IN CC Supply Current VIO= 0 V CCT Quiescent ON/OFF Control at 5.5 1.35 1.5 1.65 mA Supply Current 3.4 V RON Maximum ”ON” VIN= VIH 3.0 60 70 100 W Resistance VIS= VCC or GND 4.5 45 50 60 |IS| ≤ 10 mA (Figure 4) 5.5 40 45 55 OFF Maximum Off−Channel VIN= VIL 5.5 0.1 0.5 1.0 mA Leakage Current V = V or GND IS CC Switch Off (Figure 5) AC ELECTRICAL CHARACTERISTICS Cload= 50 pF
in „Widerstand nötig?“ · Mikrocontroller und Digitale Elektronik ·
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Funkmodul.pdf
, FM MODULATED AT UPTO 40KBIT/S • SAW FRONT END FILTER, IMAGE • OPERATION FROM 2.2 TO 6 VOLTS REJECTION 50DB • 10mW ON 433.92MHZ (EUROPE) , 1mW ON • SUPPLY 3.0 TO 6.0 VOLTS @ 13MA 418MHZ (UK) • 40KBIT/S, -F VERSION , -100 DBM
in „Funkübertragung über uC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HEF40174B.pdf
0.05 - 0.05 V 15 V - 0.05 - 0.05 - 0.05 V IOH HIGH-level output current V O 2.5 V 5 V - 1.7 - 1.4 - 1.1 mA V O = 4.6 V 5 V - 0.52 - 0.44 - 0.36 mA V = 9.5 V 10 V - 1.3 - 1.1 - 0.9 mA O V O = 13.5 V 15 V - 3.6 - 3.0 - 2.4 mA IOL LOW-level output current V O 0.4 V 5 V 0.52 - 0.44 - 0.36 - mA V O = 0.5 V 10 V 1.3 - 1.1 - 0.9 - mA V O = 1.5 V 15 V 3.6 - 3.0 - 2.4 - mA II input leakage current 15 V - 0.3 - 0.3 - 1.0 A IDD supply current IO= 0 A 5 V - 20 - 20 - 150 A 10 V - 40 - 40 - 300
in „[V] 96St. Hex D-type flip-flop HEF40174D SO16 (7€)“ · Markt ·
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PDF
2N3819.pdf
Gate-Source Cutoff Voltage vs. Gate-Source Cutoff Voltage 20 10 500 100 g rDS@ ID =1 mA, VGS = 0 V s– ) g @ V = 10 V, V = 0 V ) IDSS F ( os DS GS g A 16 8 r e 400 f = 1 kHz 80 s ( w n – n d t O e T s t u 12 g 6 a e 300 DS 60 u C fs s - g C a o O os o D d e d n u r c t 8 4 a o 200 40 a r c - c t e a
in „2N3819 Rdson Frage DB“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SC1117DG-PowerIntegrations.pdf
1 sq. in. (645 mm ), 2 oz. (610 g/m ) copper clad. Conditions Parameter Symbol SOURCE = 0 V; T = J40 to 125 °C Min Typ Max Units (Unless Otherwise Specified) Control Functions Output Average 62 66 70 Frequency fOSC T J 25 °C kHz Peak-Peak Jitter 4 Maximum Duty Cycle DC MAX S2 Open 66 69 72 % FEEDBACK
in „[TIPP] WMF Skyline Vario Wasserkocher“ · Haus & Smart Home ·
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PDF
DS75160__161__162_GPIB-Transceiver.pdf
Voltage Bus I e 48 mA 0.4 0.5 OH I High-Level V e 5.5V 0.2 100 IH Terminal and I mA Input Current TE, PE, DC, V e 2.7V 0.1 20 I IL Low-Level SC Inputs V Ie 0.5V b 10 b 100 mA Input Current VBIAS Terminator Bias Driver I(bus) 0 (No Load) 2.5 3.0 3.7 V Voltage at Bus Port Disabled LOAD Terminator VI(bus) b 1.5V to 0.4V b 1.3 Bus Loading VI(bus) 0.4V to 2.5V 0 b 3.2 Current Bus Driver V e 2.5V to 3.7V 2.5 mA Disabled I(bus) b 3.2 VI(bus) 3.7V to 5V 0 2.5 VI(bus) 5V to 5.5V 0.7 2.5 V CC e 0V, VI(bus) 0V to 2.5V 40 mA
in „PM2528 als Scannermultimeter mit GPIB“ · Mikrocontroller und Digitale Elektronik ·
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S_110_MOC3063_SERIES-596570.pdf
r n u r c u 30 t c s r n0.05 w 20 o r , F I 10 0 0 -40 -20 0 20 40 60 80 100 120 -40 -20 0 20 40 60 80 100 120 o Ambient temperature Ta ( C) Ambient temperature Ta ( C) Fig.3 Minimum Trigger Current Fig.4 Forward Current
in „Ansteuerung von ElTako (Stromstoßschalter)“ · Haus & Smart Home ·
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PDF
TLC5941.pdf
DISSIPATION RATE vs vs OUTPUT CURRENT FREE-AIR TEMPERATURE 100 k 4000 TLC5941PWP+ TLC5941RHB ▯ − m 3000 o − s 10 k t s a R R TLC5941NT e 3.84 k i n a 2000 r i TLC5941PWP− f s R 1.92 k D − 1 k 1.28 k e F 0.96 k w E 0.79 k0.64 k P 1000 ( 0.55 k R 0.48 k 100 0 0 10 20 30 40 50 60 70 80 −40 −20 0 20 40 60 80 IO(LC) Output Current − mA TA− Free-Air Temperature − ▯C Figure 3. Figure 4. OUTPUT CURRENT vs OUTPUT VOLTAGE 100 90 80 A m 70 − MAX = 60 mA n 60 e u C 50 u t 40 O IMAX = 30 mA − 30 O I 20 10 MAX = 5 mA 0 0 0.20.4 0.6 0.8 1 1.21.4
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PDF
Si8931_32_analog_isolator.pdf
current Si8931/32 IDDA VDDA = 3.3V 4.7 5.7 mA Output side supply voltage VDDB 3.0 5.5 V Si8931 IDDB VDDB = 3.3 V 3.5 4.5 mA Outputsupply current Si8932 IDDB VDDB = 3.3 V 4.3 5 mA Amplifier Bandwidth 600 kHz AmplifierInput Specifiedlinear
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MC14489.pdf
40 5.5 40 tsu ht , Minimum Setup, Hold, ** and Recovery Times, Enable versus Clock 3.0 150 ns rec (Figure 4) 4.5 100 5.5 100 t Minimum Active–Low Pulse Width, Enable 3.0 4.5 s w(L) (Figure 4) 4.5 3.4 5.5
in „4094 kaskafieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STR751FR0T6.pdf
T S 1 _ 3 _ O _ I P _ T B M _ S C R 2 S D S/ D U S A 4 A / C_ I N I _ _ S D C A A / S C I M S 13/84 Pin description STR750Fxx STR751Fxx STR752Fxx STR755Fxx Table 4. LFBGA100 ball connections 1 2 3 4 5 6
in „DAB Radio mit ARM Prozessor, HD44780 Display (BlueTinum BT-H1801)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BSS89.pdf
drain current (DC) − − 300 mA Ptot total power dissipation Tamb ≤ 25 °C − − 1 W RDSon drain-source on-state resistanDe I = 400 mGS = 10 V − 4.5 6 yfs forward transfer admittance ID= 400 mA; VDS= 25 V 140 350 − mS 1998 Apr 24 2 Philips
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PDF
levelshifter.pdf
1.9 2.0 1.9 VIN= VILr OH = −50 A Output Voltage 3.0 2.9 3.0 2.9 V VIH OH = −50 A 3.0 2.58 2.48 I = −4 mA OH V OL LOW Level 2.0 0.0 0.1 0.1 VIN= VILr OL = 50 A Output Voltage 3.0 0.0 0.1 0.1 V VIH OL = 50 A 3.0 0.36 0.44 OL = 4 mA IOZ 3-STATE Output 3.6 ±0.25 ±2.5 A VIN= VIHor VIL Off-State Current V
in „Nochmal Levelshifter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LVX125.pdf
1.9 2.0 1.9 VIN= VILr OH = −50 A Output Voltage 3.0 2.9 3.0 2.9 V VIH OH = −50 A 3.0 2.58 2.48 I = −4 mA OH V OL LOW Level 2.0 0.0 0.1 0.1 VIN= VILr OL = 50 A Output Voltage 3.0 0.0 0.1 0.1 V VIH OL = 50 A 3.0 0.36 0.44 OL = 4 mA IOZ 3-STATE Output 3.6 ±0.25 ±2.5 A VIN= VIHor VIL Off-State Current V
in „Ersatztyp zum LVX125“ · Mikrocontroller und Digitale Elektronik ·
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TDA1572.pdf
s 2 7 9 , 0 N X 5 1 g m 3 L 4 2 0 6 ( 7 4 4 3 , 4 , 6 , 6 4 6 d m Z 4 2 4 0 3 3 5 6 i t S w ( 3 Y e D i u 1 e i 7 t a 1 5 - ) y m 0 : 9 1 S ( a = 1 9 5 , 5 X 2 l ZF L 3 1 0 7 7 5 s i 1 n N e T g t 6 3 B i j 6 6 3 6 i d 2 6 0 w r + - 5 f f 3 3 S 5 o r 0 : 8 1 P Z 7 n i L 4 1 0 5 L S 4 3 4 2 3 4 0 3 3 4 5 n r i . e 1 b i 3 Y t F D s i 1 2 t n 7 i o . 2 - 5 n s 0 3 t 1 S 4 i r 4 0 : 0 ( N F 2 8 7 6 o l . L 3 1 0 6 7 S 4 3 4 2 4 5 0 3 3 5 6 a fi
in „TDA1572 - für welchen ZF-Bereich geeignet?“ · HF, Funk und Felder ·
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PDF
snosc51c.pdf
120 80 min (2) RL= 600Ω 1000 220 150 V/mV Sourcing 200 100 min Sinking 100 50 V/mV 250 60 40 min Output Swing V = 5V 4.87 4.82 4.78 V RL= 2 kΩ to V /2 4.79 4.76 min 0.10 0.15 0.19 V 0.17 0.21 max V = 5V 4.61 4.41 4.27 V RL= 600Ω to V /2 4.31 4.21 min 0.30 0.50 0.63 V 0.56 0.69 max V = 15V 14.63
in „Transimpedanzverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Ultrasonic_Anemometer_2D_Ultrasonic.pdf
/ 0 - 10 V , VDT, 4.3800.00.141 RS422 , 4-20 mA / 2 - 10 V , VDT, 4.3800.00.241 RS232 , 4-20 mA / 2 - 10 V , VDT, 9600 N 8 1 Online Wind 9.1700.97.010 4.3800.00.340 RS422 , 0-20 mA / 0 - 10 V , VDT, 9600 N 8 1 Online Wind 9.1700.97.010 4.3800.00.341 RS422 , 4-20 mA / 2 - 10 V , VDT, 9600 N 8 1 Online Wind 9.1700.97.010 4.3800.00.440 RS232 , 0-20 mA / 0- 10 V, TDL14, 1200 N 8 1 TDL 14 4.3800.00.540 RS422 , 0-20 mA / 0- 10V , NMEA 2.0,
in „Hitzdrahtanemometer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ultrasonic_Anemometer_2D_Ultrasonic.pdf
/ 0 - 10 V , VDT, 4.3800.00.141 RS422 , 4-20 mA / 2 - 10 V , VDT, 4.3800.00.241 RS232 , 4-20 mA / 2 - 10 V , VDT, 9600 N 8 1 Online Wind 9.1700.97.010 4.3800.00.340 RS422 , 0-20 mA / 0 - 10 V , VDT, 9600 N 8 1 Online Wind 9.1700.97.010 4.3800.00.341 RS422 , 4-20 mA / 2 - 10 V , VDT, 9600 N 8 1 Online Wind 9.1700.97.010 4.3800.00.440 RS232 , 0-20 mA / 0- 10 V, TDL14, 1200 N 8 1 TDL 14 4.3800.00.540 RS422 , 0-20 mA / 0- 10V , NMEA 2.0,
in „Modellbau Anemometer und Windrichtung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm2574.pdf
CONDITIONS MIN (2) TYP MAX (2) UNIT VIN= 12 V, ILOAD = 100 mA 3.234 3.3 3.366 LM2574, 4.75 V ≤ V IN≤ 40 V, TJ= 25°C 3.168 3.3 3.432 0.1 A ≤ LOAD ≤ 0.5 A VOUT Output voltage −40°C ≤ T J 125°C 3.135 3.465 V TJ= 25°C 3.168 3.3 3.45 LM2574HV, 4.75 V ≤ V IN≤ 60 V, 0.1
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
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PDF
datasheet.pdf
Shutdown 135 142 150 °C Temperature Thermal Shutdown 75 °C Hysteresis Power-Up Reset V Figure 54 (S1 Open Condition) 1.75 3.0 4.25 V Threshold Voltage C(RESET) Output TOP252 T = 25 °C 19.1 22.00 J D = 50 mA TJ= 100 °C 28.8 33.40 TOP253 T J 25 °C 8.8 10.10 I = 100 mA T = 100 °C 13.1 15.20 D J TOP254
in „Verzweifelt: Wie Widerstände und Kapazitäten eines Sperrwandler IC´s auslegen?“ · Analoge Elektronik und Schaltungstechnik ·
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TD024THEB2.pdf
0 FM 3 MPX 2 1 N N N N N N N N N N N N N N N R R R R R R V V C53 105 4 L-OUT N N N N N N N N N N N N N N N C C C C C C 104 PVSS GND C29 C35 C37 C70 LINEIN0R R-OUT C55 C56 104 C31 C32 C65 C33 C34 104 C39 C40 1uF MA14 R90 5 GND 1 L L 2 2 2 2 2 2 2 2 1 1 1 1 1 1 1 5 4 3 2
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RF-24G_datasheet.pdf
Channel Transmit Power 3MHz -40 dBm IVCC Supply current @ 0dBm output power 4) 13 mA IVCC Supply current @ -20dBm output power 4) 8.8 mA IVCC Average Supply current @ -5dBm output 5) 0.8 mA power, ShockBurst IVCC Average Supply current
in „[V] Grafik-LCDs, Pictiva-LCDs, TRW-24G Funkmodule“ · Markt ·
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Datasheet_IVT-S_V1.02.pdf
Measurement Range ±800 ±2500 ±6900 ±12200 ±48000 A 2 3 Initial Accur2cy ±0.1 %rdg 3 Total Accuracy ±0.4 %rdg Offset 8 25 75 125 500 mA Linearity 0.01 % of range Noise 5 15 40 70 280 mA (RMS) Resolution 3 10 27 47 186 mA Accuracy Overcurrent Range ± 3 %rdg Offset Overcurrent Range 60 200 540 940 3720 mA
in „Strommessung bis 60V“ · Analoge Elektronik und Schaltungstechnik ·
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MCP41HVX1.pdf
SCK 2 21 EP(1) 13 P0B CS 3 - 50 k 100 k 12 V- • High Terminal/Wiper Current (W ) Support: SDI 4 SDO 5 11 DGND - 25 mA (for 5 k) - 12.5 mA (for 10 k) 6 7 8 9 10 - 6.5 mA (for 50 k and 100 k) A N 2 2 2 • Zero-Scale to Full-Scale Wiper Operation L H ( ( ( W S N N N • Low Wiper Resistance: 75
in „MCP41HVX READCMD falsch verstanden??“ · Mikrocontroller und Digitale Elektronik ·
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AT-64020.pdf
Power)/(RF Input Power +VCEIC). AT-64020TypicalPerformance,T =25°C A 30 15 30 POUT 25 29 12 m ) ) d 20 40 B 28 d T ηT ( B 9 U 15 30 % d27 1 R Y P1 150 mA G E 10 20 N 110 mA O I 26 70 mA 6 P F 150 mA 5 10 E 110 mA 25 3 70 mA 0 0 1.0 2.0 3.0 4.0 1.0 2.0 3.0 4.0 0 5 10 15 20 25 FREQUENCY (GHz) FREQUENCY (GHz
in „[S] RF-Transistor AT-64020 oder einen adäquaten Ersatz“ · Markt ·