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HT7133-1.pdf
Temperature HT7133-1 5.00 HT7150-1 4.00 4.50 Vin=5.3V Vin=7V A4.00 Vin=30V 3.50 Vin=30V ( )3.00 n3.50 ( r3.00 n2.50 u r t2.50 c2.00 e2.00 e s s1.50 i1.50 u Q1.00 Q1.00 0.50 0.50 0.00 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 0.00 O -40
in „Suche Transitor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TC4426.pdf
cycle ≤ 2%, t ≤ 300 µsec Withstand Reverse Current V DD= 18V Switching Time (Note 1) Rise Time tR — — 40 nsec Figure 4-1 Fall Time tF — — 40 nsec Figure 4-1 Delay Time t — — 40 nsec Figure 4-1 D1 Delay Time D2 — — 60 nsec Figure 4-1 Power Supply Power Supply Current IS — — 8.0 mA V IN= 3V (Both inputs)
in „Mosfet Treiber TC4426 + IRF IRF3205S (Ersatz gesucht)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
VWM200-01P.pdf
DSon R DSon V GS= 10 V;D = 100 A 3.6 5.2 mΩ -optimized intrinsic reverse diode VGSth V DS= 20 V;D = 2 mA e 2 4 V package: I V = 100 V;V = 0 V; T = 25°C 0.02 mA -high level of integration DSS DS GS TVJ 125°C 0.25 mA -solder terminals for PCB mounting s -isolated DCB ceramic base plate IGSS V GS= ±20 V; VDS
in „Umrichter für E-Kart Anwendung 60V / 120A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Velo_Elements_Innenlager_20130718.pdf
118,35 √ √ √ √ √ √ √ 2 118 L — 26,30 27,80 118,35 √ √ √ √ √ √ √ 3 120 K 114,5 / 115 / 116 / 117 24,40 25,90 120,00 √ √ √ √ √ √ √ √ √ 4 120 K +1 117,3 25,40 26,90 120,00 √ √ √ 5 120 L 117,5 / 119 / 122 26,40 27,90 120,00 √ √ √ √ √ √ √ √ √ 6 120 L +1 122,5 27,40 28,90 120,00 √ √ √ 7 128 K 123 28,40 29,90
in „Prüfstand für Drehmoment bauen.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0A1E438Cd01_batterypower_appnote.PDF
lead MSOP 4.7 V IN VIN1 V OUT1 1.2V @ 500 mA VIN2 VOUT 2 3.0V @ 300 mA Processor PG RESET TC1303B Selected Product Specifications: Switching Regulators/Controllers Input Voltage Output Control Device Output Buck
in „mit Akku Microcontroller versorgen, 3,6V auf 5V“ · Mikrocontroller und Digitale Elektronik ·
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ALC5000M_KM_G_111208.pdf
1 0 8 d p 5 1 D p Vu 1 0 6 2 H 1 o e 6 0 1 R141 6 0 1 0 s c 7 5 12m N I T A 1 e eh T 02 0 P 0 l - 0 Vu S 0 3 0 H R149 5 n R R 4K7 l 1 1 R142 d 4 4 12m e a n S1 C N 1 R R i Dn 4 I m 0 R 4 t 4 P 0 5 R r 0 1 K 8 1 E R 6 S 6 t 2 1 S1 C D P d K 3 C Dn 4 F 1 e 3 2 P L t 9 R133 5 o S 1 4M7 V m D p M + 5 0 I s V A 1 u 2 3 n T - + I R105 R101 g 2 1 V 1 2 1 8 6 K 4 7 A 0 G V V U 10K 120K 4 4 + 1 3 D N N B 1 M C P 1 C 2 3 2 0 O 3 U S S S 1 4 T 2 1 M 0 5 D p L S M a M p F - L e e M e
in „ELV ALC 5000 - Softwarefehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
170-04833-0-MB90549GPF.pdf
55 P72/IN2 C 27 54 P71/IN1 P50/SIN2 28 53 P70/IN0 P51/INT4 29 52 HST P52/INT5 30 51 MD2 3 3 3 3 3 3 3 3 3 4 4 4 4 4 4 4 4 4 4 5 T T G C H L S 0 1 2 3 S 4 5 6 7 0 0 0 T I NI D V V V V / A/A/A / V / A/A / / T O M M 3 4/ / A A A A 0 1 2 3 4 5 6 7 6 / P P 5 P P
in „16Bit PIC von Fujitsu .. hat jemand Informationen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AnagVision1624.pdf
44.0 mm Modules 50 °C 3.5 - - - - - - Viewing Area 66.0 x 16.0 mm LED Forward Voltage Vf 25 °C - - - 4.2 4.6 V Dot Size 0.55 x 0.55 mm LED Forward Current If 25 °C - - - 130 195 mA Character Size 2.95 x 5.55 mm LED weiß Voltage * ILED 3.5 V 30 40 50 mA LED-H/L B/L High Low 84.0 0.5 6.4 71.2 H1 13.2 12.1
in „Hintergrundbeleuchtung beim Agna Vision beschalten?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
av624-anag-vision.pdf
44.0 mm Modules 50 °C 3.5 - - - - - - Viewing Area 66.0 x 16.0 mm LED Forward Voltage Vf 25 °C - - - 4.2 4.6 V Dot Size 0.55 x 0.55 mm LED Forward Current If 25 °C - - - 130 195 mA Character Size 2.95 x 5.55 mm LED weiß Voltage * ILED 3.5 V 30 40 50 mA LED-H/L B/L High Low 84.0 0.5 6.4 71.2 H1 13.2 12.1
in „Pollin LCD Display geht nicht“ · Mikrocontroller und Digitale Elektronik ·
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BAS70_1PS7XSB70_SER.pdf
Schottky diodes mra803 102 102 mra805 F IR (1) (mA) (μA) 10 10 1 (2) 1 10−1 −1 10 10−2 (3) (1) (2) (3)(4) 10 −2 10−3 0 0.2 0.4 0.6 0.8 1 0 20 40 60 80 V F(V) V RV) (1) T = 125 °C (1) T = 125 °C amb amb (2) T amb= 85 °C (2) T amb = 85 °C (3) T amb= 25 °C (3) T amb = 25 °C (4) T amb= −40 °C Fig 1. Forward
in „[S] BAT54C Schottky“ · Markt ·
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PDF
Gath_-_Triacs_und_Diacs_in_Theorie_und_Praxis.pdf
...45 150 ro TAG 227-800 8 8 4E30-28 30±4 14...45 150 o> 4E40-8 40±4 1...15 150 c TAG 246-800 6,5 8 4E40-28 40±4 14...45 150 ■o TAG 220-800 6 8 4E50-8 50±4 1... 15 150 3 TAG 221-800 6 8 4E50-28 50±4 14...45 150 TAG 222-800 6 8 4E100
in „hysteresefreie Phasenanschnittsteuerung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LED-Matrix-Controller.pdf
= 9.53kΩ, TAMB = 25ºC (unless otherwise specified). Figure 3. Scan Frequency vs.Temperature Figure 4. Scan Frequency vs. V DD 990 980 970 980 960 970 z z 950 ( ( C 960 S 940 O O F F 930 950 920 940 910 930 900 -40 -20 0 20 40 60 80 2 3 4 5 6 TAMB [°C] VDD (V) Figure 5. ISEG vs. Temperature Figure 6. SEG vs. VDD 50 60 VDD = 5V, OUT = 2.4V 45 50 40 35 VDD = 5V, OUT = 4V 40 A 30 ) m m V OUT= 1.7V ( 25 ( 30 S VDD = 2.7V, OUT= 2V E I 20 I VOUT = 4V 20 15 VDD = 2.7V, OUT = 2.4V 10 10 VOUT = 2.4V 5 0 0 -40 -20 0 20 40 60 80 2 2.5 3 3.5 4 4.5
in „Gleich mehrfach ins Knie geschossen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SJC00103BED.pdf
2003 SJC00103BED 1 2SC1360, 2SC1360A PC T a IC V CE IC V BE 1.2 80 60 25°C VCE = 10 V ) B = 2.0 mA ( 1.0 1.8 mA 50 T = 75°C −25°C C ) 60 ) a P m 1.6 mA A o 0.8 ( (m 40 t I 1.4 mA I i t t i e 1.2 mA e d 0.6 u 40 u 30 e r 1.0 mA r o t t p 0.4 e 0.8 mA e 20 t o 0.6 mA o e C 20 C o 0.4 mA C 0.2 10 0.2 mA 0 0 0 0 40 80 120 160 0 2 4 6 8 10 0 0.4 0.8 1.2 1.6 2.0 ( ) Ambient temperature T a (°C) Collector-emitter voltage V CE V Base-emitter voltage V BE (V) V CE(sat) I C h FE I C fT I E ) 100 120 600
in „Was ist das für ein Halbleiter?“ · Mikrocontroller und Digitale Elektronik ·
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IR2130.pdf
vs. Temperature Figure 40B. Amplifier Input Offset vs. Voltage 18 www.irf.com IR2130/IR2132(J)(S)&(PbF) 10.0 10.0 8.0 8.0 A A t t e 6.0 e 6.0 u u s s i i u 4.0 Max. u 4.0 Max. I I A A C C 2.0 2.0 0.0 0.0 -50 -25 0 25 50 75 100
in „Shunt Messung mit IR2130 (BLDC Steuerung)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
74HC_HCT74.pdf
Dual D-type flip-flop with set and reset; positive edge-trigger Symbol Parameter Conditions Tamb = -40 °C to +85 °C Tamb = -40 °C Unit to +125 °C Min Typ [1] Max Min Max V HIGH-level V = V or V ; V = 4.5 V OH I IH IL CC output voltage IO= -4 mA 3.84 4.32 - 3.7 - V VOL LOW-level VI= VIH or IL; CC = 4.5 V output voltage IO= 4.0 mA - 0.15 0.33 - 0.4 V I input leakage V = V or GND; V = 5.5 V - - ±1.0 - ±1.0 μA I I CC CC current I supply current V = V or GND; I = 0 A; - - 40 - 80 μA CC I CC O VCC = 5.5 V ΔICC additional VI=
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MCP9501-2-3-4.pdf
otherwise indicated, V DD = 2.7V to 5.5V, T =A-40°C to +125°C, GND = Ground, R PULL-UP = 10 kΩ (MCP9501 only) and 0.1 µF bypass capacitor. 60% 60% TA= -1°\C TA= 10°\C VDD= 4.1V VDD= 4.1V 50% 492 Units 50% 480 Units s40% s40% c c e e r30% r30% c c O20%
in „Thermal Shutdown“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
Characteristics Parameter Min Max Typ Unit BAT_TEMP resolution 10 bits BAT_TEMP sampling rate 90.3 Ksps/s BAT_TEMP Input Impedance ( R ) 4.7 kΩ BAT_TEMP Input Impedance ( C ) 100 nF CHG_IN Voltage (for I=Imax) 5,1* 5,5 V CHG_IN Current 800 mA BAT_TEMP Input signal range 2.8 V * To be parametrized as per
in „[Hinweis] Kostenlose Datenverbindung fürs Handy“ · Markt ·
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PCA9532.pdf
output current V = 0.4 V OL OL VDD = 2.3 V [3]9 - - mA VDD = 3.0 V [3]12 - - mA [3] VDD = 5.0 V 15 - - mA VOL = 0.7 V V = 2.3 V [3]15 - - mA DD VDD = 3.0 V [3]20 - - mA VDD = 5.0 V [3]25 - - mA ILI input leakage current VDD
in „[V] 5St. 16-bit I2C-bus LED dimmer Treiber NXP PCA9532 (6€)“ · Markt ·
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PDF
PCA9532.pdf
output current V = 0.4 V OL OL VDD = 2.3 V [3]9 - - mA VDD = 3.0 V [3]12 - - mA [3] VDD = 5.0 V 15 - - mA VOL = 0.7 V V = 2.3 V [3]15 - - mA DD VDD = 3.0 V [3]20 - - mA VDD = 5.0 V [3]25 - - mA ILI input leakage current VDD
in „[V] 10St. SMD 16-bit I2C LED Treiber NXP PCA9532PW (TSSOP24) (12€)“ · Markt ·
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PDF
PCA9532.pdf
output current V = 0.4 V OL OL VDD = 2.3 V [3]9 - - mA VDD = 3.0 V [3]12 - - mA [3] VDD = 5.0 V 15 - - mA VOL = 0.7 V V = 2.3 V [3]15 - - mA DD VDD = 3.0 V [3]20 - - mA VDD = 5.0 V [3]25 - - mA ILI input leakage current VDD
in „[V] 5St. 16-bit I2C-bus LED dimmer Treiber NXP PCA9532 (6€)“ · Markt ·
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PDF
PCA9532.pdf
output current V = 0.4 V OL OL VDD = 2.3 V [3]9 - - mA VDD = 3.0 V [3]12 - - mA [3] VDD = 5.0 V 15 - - mA VOL = 0.7 V V = 2.3 V [3]15 - - mA DD VDD = 3.0 V [3]20 - - mA VDD = 5.0 V [3]25 - - mA ILI input leakage current VDD
in „[V] 10St. SMD 16-bit LED I2C Treiber NXP PCA9532D (SO24)“ · Markt ·
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PDF
PCA9532.pdf
output current V = 0.4 V OL OL VDD = 2.3 V [3]9 - - mA VDD = 3.0 V [3]12 - - mA [3] VDD = 5.0 V 15 - - mA VOL = 0.7 V V = 2.3 V [3]15 - - mA DD VDD = 3.0 V [3]20 - - mA VDD = 5.0 V [3]25 - - mA ILI input leakage current VDD
in „[V] 10St. SMD 16-bit I2C LED Treiber NXP PCA9532PW (TSSOP24)“ · Markt ·
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PDF
PCA9532.pdf
output current V = 0.4 V OL OL VDD = 2.3 V [3]9 - - mA VDD = 3.0 V [3]12 - - mA [3] VDD = 5.0 V 15 - - mA VOL = 0.7 V V = 2.3 V [3]15 - - mA DD VDD = 3.0 V [3]20 - - mA VDD = 5.0 V [3]25 - - mA ILI input leakage current VDD
in „[V] 5St. SMD 16-bit LED I2C Treiber NXP PCA9532D (SO24) (8€)“ · Markt ·
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PDF
PCA9532.pdf
output current V = 0.4 V OL OL VDD = 2.3 V [3]9 - - mA VDD = 3.0 V [3]12 - - mA [3] VDD = 5.0 V 15 - - mA VOL = 0.7 V V = 2.3 V [3]15 - - mA DD VDD = 3.0 V [3]20 - - mA VDD = 5.0 V [3]25 - - mA ILI input leakage current VDD
in „[V] 10St. SMD 16-bit LED I2C Treiber NXP_PCA9532PW.112 (TSSOP24) (12€)“ · Markt ·
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PDF
PCA9532.pdf
output current V = 0.4 V OL OL VDD = 2.3 V [3]9 - - mA VDD = 3.0 V [3]12 - - mA [3] VDD = 5.0 V 15 - - mA VOL = 0.7 V V = 2.3 V [3]15 - - mA DD VDD = 3.0 V [3]20 - - mA VDD = 5.0 V [3]25 - - mA ILI input leakage current VDD
in „[V] 10St. SMD 16-bit LED I2C Treiber NXP_PCA9532PW.112 (TSSOP24) (10€)“ · Markt ·
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PDF
PCA9532.pdf
output current V = 0.4 V OL OL VDD = 2.3 V [3]9 - - mA VDD = 3.0 V [3]12 - - mA [3] VDD = 5.0 V 15 - - mA VOL = 0.7 V V = 2.3 V [3]15 - - mA DD VDD = 3.0 V [3]20 - - mA VDD = 5.0 V [3]25 - - mA ILI input leakage current VDD
in „[V] 10St. SMD 16-bit LED I2C Treiber NXP_PCA9532PW.112 (TSSOP24) (12€)“ · Markt ·
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PDF
MOC3061M.pdf
NORMALIZED TO T = 25°C C ( 1.4 A 3 E 1.4 6 A X L 1.3 E1.3 M V T = -40°C L D 1.2 A A1.2 — A R W 1.1 TA = 25°C N - O T1.1 P , 1.0 I n VF TA = 85°C 0.9 1.0 D P 0.8 0.9 Z e 0.7 r 0.1 1 10 100 0.8 o -40 -20 0 20 40 60 80 100 C F , LED
in „Mehrere Lasten an Wechselspannung schalten (Mosfet)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Sx01S0x_Sharp.pdf
(- ) 4 Input ( -) Absolute Maximum Ratings (Ta= 25˚C ) Rating Parameter Symbol Unit S101S05V/S101S06VS201S05V/S201S06V Forward current IF 50 mA Input Reverse voltage V R 6 V *4 *1RMS ON-state current IT 3 A
in „Elektronisches Relais mit Nulldurchgangsschalter?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S201S06-DB.pdf
(- ) 4 Input ( -) Absolute Maximum Ratings (Ta= 25˚C ) Rating Parameter Symbol Unit S101S05V/S101S06VS201S05V/S201S06V Forward current IF 50 mA Input Reverse voltage V R 6 V *4 *1RMS ON-state current IT 3 A
in „Netztrafo, SSR und Zerocrossing, kann das funktionieren?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Moog-Valves-D633_D634-Catalog-de.pdf
DATEN D633 LEISTUNGSSPEZIFIKATIONEN FÜR STANDARDMODELLE 2 1) Öltemperatur 40 °Cp = 140 bar, Ölviskosität 32 mm /s und 2) Siehe Sinnbilder Seite 4 3) Leckölanschluß muß verwendet werden bei 3- und 4-Wegefunktion und p T> 50 bar bei 2x2-Wegefunktion 7 MOOG • D633/D634 Serie MOOG
in „Totzeit in hydraulischer Regelstrecke“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
KSZ8061MNX_MNG.pdf
is 0010A1 (hex) 3.9:4 Model Number Six bit manufacturer’s model number RO 01_0111 3.3:0 Revision Four bit manufacturer’s revision number RO Indicates silicon revision Number June 2015 40 M9999 060315 1.0 Micrel, Inc. KSZ8061MNX
in „supply current komplett?“ · Mikrocontroller und Digitale Elektronik ·
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25P40_STMicroelectronics.pdf
S = VCC V INV SS or CC 50 µA ICC2 Deep Power-down Current S = VCC V INV SS or CC 10 µA ICC3 Operating Current (READ) C = 0.1VCC / 0.9.CC at 25 MHz, 4 mA Q = open ICC4 Operating Current (PP) S = VCC 15 mA ICC5 Operating Current (WRSR) S = VCC 15 mA ICC6 Operating Current (SE) S = VCC 15 mA www.DataSheet4U.com I Operating Current (BE) S = V 15 mA CC7 CC VIL Input Low Voltage – 0.5 0.3VCC V VIH Input High
in „SMD EEPROM: Reparatur gebrochenes Beinchen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OP177.pdf
12.5 ±12.0 ±12.5 V SLEW RATE 2 SR R L 2 kΩ 0.1 0.3 0.1 0.3 V/μs CLOSED-LOOP BANDWIDTH 2 BW A VCL 1 0.4 0.6 0.4 0.6 MHz OPEN-LOOP OUTPUT RESISTANCE R 60 60 Ω O POWER CONSUMPTION PD V S ±15V, no load 50 60 50 60 mW V S ±3V, no load 3.5 4.5 3.5 4.5 mW SUPPLY CURRENT SY V S ±15V, no load 1.6 2 1.6 2 mA OFFSET
in „Konstantstromquelle bis 100ma mit OPV auslegung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lt1208.pdf
±5V, R L 150 , 0°C to 70°C 3.0 3.3 ±V IOUT Output Current V S ±15V, V OUT =±12V, 0°C to 70°C 24 40 mA V = ±5V, V =±3V, 0°C to 70°C 20 40 mA S OUT SR Slew Rate V S ±15V, A VCL=–2, (Note 3) 250 400 V/ s 0°C to 70°C 200 V/ s V S= ±5V, AVCL=–2, (Note 3) 150 250 V/
in „Operations verstärker als Komparator verschlechterung der Slewrate?“ · Analoge Elektronik und Schaltungstechnik ·
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s102s02_e.pdf
R L30Ω − − 8 mA 10 Isolation resistance R ISO DC500V, 40 to 60%RH 10 − − Ω Zero cross voltage V I =8mA − − 35 V OX F VD(rms)=100V, AC50Hz S102S02 − − 10 TransferTurn-on time ton T (rms)=2A, Resistance loadF I =20mA
in „Leistungschalter per µC gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S102_202S02__1_.pdf
R L30Ω − − 8 mA 10 Isolation resistance R ISO DC500V, 40 to 60%RH 10 − − Ω Zero cross voltage V I =8mA − − 35 V OX F VD(rms)=100V, AC50Hz S102S02 − − 10 TransferTurn-on time ton T (rms)=2A, Resistance loadF I =20mA
in „Hilfe zu einem SSR und Kühlkörper“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
S216S02.pdf
) Between junction and case − 3.3 − Thermal resistance ˚C/W Rthj-a) Between junction and ambient − 40 − Sheet No.: D4-A02701EN 4 S116S02 Series S216S02 Series ■ Model Line-up (1) (Lead-free terminal components) Case VDRM FT[mA] ShippingPackage (VD=6V, 200pcs/case [V] R L30Ω) S116S02F 400 MAX.8 Model
in „Spülmaschine einschalten - womit?!“ · Mikrocontroller und Digitale Elektronik ·
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S216S02F_-_SSR.pdf
) Between junction and case − 3.3 − Thermal resistance ˚C/W Rthj-a) Between junction and ambient − 40 − Sheet No.: D4-A02701EN 4 S116S02 Series S216S02 Series ■ Model Line-up (1) (Lead-free terminal components) Case VDRM FT[mA] ShippingPackage (VD=6V, 200pcs/case [V] R L30Ω) S116S02F 400 MAX.8 Model
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PDF
upd65.pdf
×××-5A4 KI/O6 1 20 KI/O5 KI/O7 2 19 KI/O4 S 0 3 18 KI/O3 S1/LED 4 17 KI/O2 REM 5 16 KI/O1 VDD 6 15 KI/O0 X OUT 7 14 KI3 XIN 8 13 KI2 GND 9 12 KI1 S 2 10 11 KI0 Caution The pin numbers of K Iand K I/Oare in the
in „Gesucht ... UPD65013 ...“ · Mikrocontroller und Digitale Elektronik ·
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TCA9406_I2C_translator.pdf
OL = 1 mA, 1.65 V to 3.6 V 2.3 V to 5.5 V 0.4 V OLB VIA ≤ 0.15 V I OE 1.65 V to 3.6 V 2.3 V to 5.5 V ±1 ±2 mA A port 0 V 0 to 5.5 V ±1 ±2 mA off B port 0 to 3.6 V 0 V ±1 ±2 mA OZ A or B port 1.65 V to 3.6 V 2.3 V to 5.5 V ±1 ±2 mA 1.65 V to CCB
in „I2C translator tri-state“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
. Tamb Tmax. 0 VCC -2 CMR Common-mode Rejection Ratio (R 10k ) dB o S Tamb = +25 C 70 80 Tmin. Tamb Tmax 60 source Output Current Source (id= +1V) mA VCC = +15V, Vo= +2V 20 40 70 sink Output Sink Current id = -1V) VCC = +15V, Vo= +2V 10 20 mA VCC = +15V, Vo= +0.2V 12
in „LM324 - Versorgungsspannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA5051A_-_PowerLine.pdf
plastic package. QUICK REFERENCE DATA SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT VDD supply voltage 4.75 5.0 5.25 V DD(tot) total supply current osc= 8.48 MHz reception mode − 28 38 mA transmission mode (DATA IN= 0) ZL= 30 − 47 68 mA power-down mode − 19 25 mA cr carrier frequency note 1 95 132.5 148.5
in „Probleme mit PLC-Modem-Chip TDA5051“ · Haus & Smart Home ·
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PDF
TDA5051A.pdf
plastic package. QUICK REFERENCE DATA SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT VDD supply voltage 4.75 5.0 5.25 V DD(tot) total supply current osc= 8.48 MHz reception mode − 28 38 mA transmission mode (DATA IN= 0) ZL= 30 − 47 68 mA power-down mode − 19 25 mA cr carrier frequency note 1 95 132.5 148.5
in „µC Kommunikation (Signale) über Gleichspannung modulieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MHW921.pdf
–20 0 20 40 60 80 100 120 f,FREQUENCY(MHz) TC,CASETEMPERATURE(⋅C) Figure 4. Output Power versus Frequency Figure 5. Control Voltage versus Case Temperature 20 20 P =1mW 18 in 18 Vs2V s32.5V )16 Vs1V b8V ) ( ( R14
in „Gainblock , wie groß wäre die Reichweite ?“ · HF, Funk und Felder ·
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PDF
ADIS16250_16255.pdf
1σ µ 1 1 s s ( ( S 0 +1σ S 0 A A B B –1 –1 –1σ µ –2 –2 –1σ –3 –3 –4 1 –4 2 –50 –35 –20 –5 10 25 40 55 70 85 100 0 –50 –40 –30 –20 –10 0 10 20 30 40 50 60 70 80 90 0 0 0 TEMPERATURE (°C) 0 TEMPERATURE (°C) 0 Figure7
in „Bias bei Gyro“ · Mikrocontroller und Digitale Elektronik ·
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AD5290.pdf
20 Data Sheet AD5290 TYPICAL PERFORMANCE CHARACTERISTICS 1.0 1.0 VDD = 16.5V VDD = 16.5V 0.8 0.8 ) –40°C B –40°C ) 0.6 +25°C L 0.6 +25°C B +125°C ( +125°C L 0.4 N 0.4 L D I E E 0.2 D 0.2 D M O 0 0 M E T T T –0.2 M –0.2 S I E –0.4 T –0.4 H N R T –0.6 O –0.6 9 P 2 –0.8 - –0.8 - 7 7 0 0 –1.0 –1.0 0 32 64
in „DigiPot AD5290 und Schaltregler TPS5430 laufen nicht zusammen“ · Analoge Elektronik und Schaltungstechnik ·
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MBI5030.pdf
V - - 17.0 V Ports DS OUT0 ~ OUT15 Refer to “Test Circuit for IOUT 5 - 60 mA Electrical Characteristics” Output Current IOH SDO - - -1.0 mA I SDO - - 1.0 mA OL “H” level V IH Ta = -40~85ºC 0.7*VDD - VDD V Input Voltage “L” level V IL Ta = -40~85ºC GND - 0.3*VDD V Output Leakage
in „Atmega8+MBI5030+SPI“ · Mikrocontroller und Digitale Elektronik ·
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bux87.pdf
I = 0.2 A I = 20 mA 1 V C B (1) Base-emitter saturation VBE(sat) IC= 0.2 A B = 20 mA 1 V voltage I = 50 mA V = 5 V 50 h (1) DC current gain C CE FE IC= 40 mA VCE = 5 V 12 IC= 50 mA V CE= 10 V T Transition frequency f = 1MHz 20 MHz Resistive load V = 250 V I = 200 mA CC C s Storage time IB(on) 40 mA B(off) -80 mA 4.5 µs t Fall time t = 20 µs 0.5 µs f P 1. Pulsed duration = 300 µs, duty cycle ≤ 1.5% Doc ID 4508 Rev 5 3/9 Electrical characteristics BUX87 2.1 Electrical
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L9480VB.pdf
without notice. L9444VB -L9448VB - L9480VB ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit V S Transient Overvoltage : 80 V Load Dump : 5ms ≤ Trise 10ms, τfFall Time Constant ≤ 100ms, source 0.5 Iclamp Current into Low Energy Clamping Zener 100 mA (Trise 5 s ; decay 2ms ; duty cycle ≤ 5%) Iout
in „Lichtmaschinen Regler“ · Analoge Elektronik und Schaltungstechnik ·
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L9480VB.pdf
without notice. L9444VB -L9448VB - L9480VB ABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit V S Transient Overvoltage : 80 V Load Dump : 5ms ≤ Trise 10ms, τfFall Time Constant ≤ 100ms, source 0.5 Iclamp Current into Low Energy Clamping Zener 100 mA (Trise 5 s ; decay 2ms ; duty cycle ≤ 5%) Iout