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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
IL74.pdf
current 1.5 T Normalized to: 1000 C Vce = 10V, IF = 10mA, Ta = 25°C e Ta = 25°C d s A 100 z1.0 CTRce(sat) Vce = 0.4V B - Icb = 1.0357 *IF ^1.3631 l r t m c e 10 o l ur N o c 1 -0.5 - t R Ta = 85°C b h T NCTR(SAT) I P .1 N 0.0 NCTR .01 .1 1 10 100 100 .1 1 10 IF - LED Current - mA IF
in „Hilfe für Schaltung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IL74_ILD74_ILQ74_SIE.pdf
current 1.5 T Normalized to: 1000 C Vce = 10V, IF = 10mA, Ta = 25°C e Ta = 25°C d s A 100 z1.0 CTRce(sat) Vce = 0.4V B - Icb = 1.0357 *IF ^1.3631 l r t m c e 10 o l ur N o c 1 -0.5 - t R Ta = 85°C b h T NCTR(SAT) I P .1 N 0.0 NCTR .01 .1 1 10 100 100 .1 1 10 IF - LED Current - mA IF
in „Eingänge über Optokoppler abfragen“ · Mikrocontroller und Digitale Elektronik ·
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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 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
74HCT04.pdf
-50 mA TJ Operating Junction Temperature -40 to +150 °C T Storage Temperature -65 to +150 °C STG PTOT Total Power Dissipation 500 mW Notes: 4. Stresses beyond the absolute maximum may result in immediate failure
in „74HCT04 als Treiber für MOSFET mit geringer Gate-Kapazität“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
69034fe-6.pdf
Supply Peak-to-Peak Jitter vs Frequency Frequency Voltage 10 10 60 V = 3V 9 50 ) 8 ) ( A ( R ( 7 E 40 E 1 T N J E 6 T K R 5 I 30 E C E - Y 4 + T - P V = 5V U 20 A 0.1 U 3 T P S + O 2 V = 3V 10 1 0 0.01 0 0.1 1 10 100 0.001 0.01 0.1 1 10 100 2.5 3.0 3.5 4.0 4.5 5.0 5.5 FREQUENCY (MHz) FREQUENCY (MHz)
in „I2C Deadlock beim Senden - LTC6904“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Data_and_signal_line_chokes_Epcos.pdf
L ) L = 0.051 mH (low L ) R stray R stray IND0004-2 IND0894-Q 50 50 B82799S0333N001 B82799C0513N001 dB dB α α 40 40 30 30 20 20 10 10 0 0 104 10 5 106 107 108 Hz10 9 10 4 105 106 107 10 8Hz 109 f f L = 0.051 mH (high L ) L = 0.10 mH R stray R IND0005-5 IND0006-L 50 50 B82799S0513N001
in „Welche Gleichtaktdrossel für CAN bus?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
181657-da-01-en-LCD_MOD_STN_BLAU_NEG_LED_WEISS_20X4.pdf
for Standard TeVdd-V0 25 °C 4.1 4.5 4.7 V Modules 50 °C 3.9 4.2 4.5 Viewing Area 77.0 x 25.2 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 - - -280 420 mA Character Size 2.95
in „Voltmeter mit LCD-Anzeige 8-Bit Interface“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD.pdf
for Standard TeVdd-V0 25 °C 4.1 4.5 4.7 V Modules 50 °C 3.9 4.2 4.5 Viewing Area 77.0 x 25.2 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 - - -280 420 mA Character Size 2.95
in „20x4 lcd zeigt immer das gleiche an“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD.pdf
for Standard TeVdd-V0 25 °C 4.1 4.5 4.7 V Modules 50 °C 3.9 4.2 4.5 Viewing Area 77.0 x 25.2 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 - - -280 420 mA Character Size 2.95
in „20x4 lcd zeigt immer das gleiche an“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC.pdf
1 mA, down from V 1.60 2.1 CC V Voh, –50 mA, down from V CC 1.75 2.2 Over operating range V Vol, 1 mA 0.05 0.4 Vol, 50 mA 0.36 0.8 Rise/fall time 10% to 90% slew time, into 1 nF 50 ns High-Side Drivers Vol, 1 mA 0.1 0.4 Over operating range V Vol, 50 mA 1.0 1.8 Leakage current Output voltage = 50 V 25 µA Fall time 10% to 90% slew time, 50 mA load 50 ns Oscillator 40 50 60 Frequency kHz Over operating range 35 65 Reference 4.9 5.0 5.1 Output voltage V Over operating range 4.7 5.0 5.3 Load regulation 0 mA to –20 mA load -40 -5 mV Line regulation
in „Ansteuerung BrusslessDC Motor mit MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
175994-da-01-en-LM311_P_-_LM211.pdf
Offset Current (Note 4) 20 nA Input Bias Current 150 nA a b Input Voltage Range V e 15V, V eb 15V, Pin 7 b Pull-Up May Go To 5V 14.5 13.8,-14.7 13.0 V Saturation Voltage Va t 4.5V, V e0 s b s 0.23 0.4 V VIN 6 mV, OUT 8 mA
in „Spannungsvergleich“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAR-6__Amp.pdf
061031 Page 1 of 2 MMIC Amplifier MAR-6+ Typical Performance Curves Gain ISOLATION 24 13 22 Gain @ 16 mA 14 Isolation @ 16 mA 20 15 18 ) 16 ) d ( 16 n 17 n i a 14 l 18 G 12 s 19 I 10 20 8 21 6 22 4 23 0 500 1000 1500 2000 2500 3000 3500 4000 0 500 1000 1500 2000 2500 3000 3500 4000 Frequency (MHz) Frequency (MHz) Return Loss In Return Loss Out 0 10 5 Return Loss In @ 16 mA 12 Return Loss Out @ 16 mA ) 10 ) 14 d ( ( 15 t 16 I O s 20 s 18 L 25 o 20 n L u 30 r 22 e t R 35 R 24 40 26 45 28 50 30 0 500 1000 1500 2000 2500 3000 3500 4000 0 500 1000 1500 2000 2500 3000 3500 4000
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lm7800.pdf
J O mA 7.5 V ≤ VIN≤ 20 V Quiescent current ΔIQ Over temperature, 5 mA O I ≤ 1 A 0.5 mA change Over temperature,OI = 500 mA 0.8 mA 8 V ≤ VIN≤ 25 V V Output noise voltage T = 25°C, 10 Hz ≤ f ≤ 100 kHz 40 μV N
in „Netzteil für Röhrenvorstufe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
181647-da-01-en-LCD_MOD_STN_BLAU_NEG_LED_WEISS_8_X_2.pdf
Line Supply Curent Idd Vdd=+5V - - -1.5 1.7 mA Mechanical Data 0 °C 4.5 4.8 5.1 Item Standard Value Unit Recommended LC Driving 25 °C 4.1 4.4 4.7 Module Size 58.0 x 32.0 mm Voltage for Standard Vdd-V0 V Modules 50 °C 3.8 4.2 4.4 Viewing Area 38.0
in „LCD mit KS0066 Controller Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
vacon-x2c-series-user-s-manual.pdf
external power supply up to 24 VDC) Outputs 1 Relay (Form C) 2 Analog: MET1 (0 to 10 VDC) MET2 (0/4 to 20 mA DC) Codes and standards UL & cUL Listed; CE Marked 4 © 2000 TB Wood’s All Rights Reserved Section 2: Specifications Table 2: Protection Features Ground fault Protected from damage (full-time
in „TWIKE - Gedanken zu einem anderen Antriebssystem“ · Offtopic ·
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PDF
UPA1721.pdf
ON-STATE GATE TO SOURCE CUT-OFF VOLTAGE vs. RESISTANCE vs. DRAIN CURRENT CHANNEL TEMPERATURE - V e 40 - n Pulsed e ID= 1 mA V t 36 t 4 s o e 32 V R 28 o a t 3 s 24 C n e O 20 VGS= 4.0V r c 16 o 2 u S o 12 4.5V t o t t 8 10V a 1 a G D 4 ) - ( n 00.1 1 10 100 G 0 S V 100 50 0 50 100 150 R ID- Drain Current
in „RC-Steller Kontronik Smile 30-6-12 Bestückung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XC62HR.pdf
AMBIENT TEMP. :Topr(:) w -59 90 (7 SUPPLY CURRENT vs. AMBIENT TEMPERATURE XC62HR5002 (5V) XC62HR4002 (4V) 6 VI=6V 6 VI=5V A 5 A 5 ( ( S S : 4 : 4 N N E E R 3 R 3 U U C C L 2 L 2 P P P P S 1 S 1 0 0 -40 -20 0 20 40 60 80 -40 -20 0 20 40 60 80 AMBIENT TEMP. :Topr(:) AMBIENT TEMP. :Topr(:) XC62HR3002 (3V) XC62HR2002 (2V) VI=4V VI=3V 6 6 ) ) µ 5 µ 5 S S : : T 4 T 4 E E R 3 R 3 R R C C Y 2 Y 2 P P P P U 1 U 1 S S 0 0 -40 -20 0 20 40 60 80 -40 -20 0 20 40 60 80 AMBIENT TEMP. :Topr(:) AMBIENT TEMP. :Topr(:) 91 w -60 Positive
in „Ladung von Elkos innerhalb kurzer Zeit“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CNY_VISHAY.pdf
0⋅ 10 20 10.0 ⋅ ⋅ 30⋅ ) IF=50mA t % i e ( n u t n C R t o e 1mA i e 40⋅ s a lo 1.0 r 20mA R C T 1.0 10mA v v 0.9 50⋅ n 5mA a a r 2mA e e C Kodak neutral card – – 0.8 60⋅ – (white side) e l R d=0.3 e c 70⋅ C I I 0.7 80⋅ 0.1 0.1 1.0 10.0 100.0 0.6 0.4 0.2 0 0.2 0.4 0.6 96
in „cny70 funktioniert nicht wie er sollte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CNY_VISHAY.pdf
0⋅ 10 20 10.0 ⋅ ⋅ 30⋅ ) IF=50mA t % i e ( n u t n C R t o e 1mA i e 40⋅ s a lo 1.0 r 20mA R C T 1.0 10mA v v 0.9 50⋅ n 5mA a a r 2mA e e C Kodak neutral card – – 0.8 60⋅ – (white side) e l R d=0.3 e c 70⋅ C I I 0.7 80⋅ 0.1 0.1 1.0 10.0 100.0 0.6 0.4 0.2 0 0.2 0.4 0.6 96
in „Spannung direkt am ADC-Eingang messen“ · Mikrocontroller und Digitale Elektronik ·
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HIP4086_Mostfet.pdf
INPUTS = 5V C GATE= 1000pF DD ) ) 200kHz A A ( 5 ( 25 T VDD = 15V T N N R R 100kHz R VDD= 12V R U 4 C 20 50kHz Y Y L V = 10V L P DD P U U S 3 V = 8V S 15 20kHz D DD D 10kHz V V V = 7V DD 2 10 -60 -40 -20 0 20 40 60 80 100 120 140 160 -60 -40 -20 0 20 40 60 80 100 120 140 160 JUNCTION TEMPERATURE (
in „Kommunikation zwischen mehreren µC“ · Mikrocontroller und Digitale Elektronik ·
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IP5306_datasheet_v1.31.pdf
otherwise noted Parameter symbol Test condition MIN TYP MAX Unit Charger system Input voltage V IN 4.65 5 5.5 V Target charge voltage V 4.2 V TRGT Charge current ICHRG VIN current 1.8 A charge Switching frequency s 750 KHZ Trickle charge current ITRKL VIN=5v,BAT=2.7v 100 mA Trickle charge stop voltage
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hmc234.pdf
+25° C, With 0/-5V Control, 50 Ohm System A S Parameter Frequency Min. Typ. Max. Units Insertion Loss DC - 6.0 GHz 1.6 1.9 dB B DC - 2.0 GHz 47 521 2.4 dB Isolation DC - 6.0 GHz 35 40 dB DC - 2.0 GHz 33 15 dB Return Loss O “On State” DC - 8.0 GHz
in „suche für Rohde&Schwarz SML03 Abschwächerbaugruppe oder IC 4227T“ · Markt ·
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PDF
ET-Aufgaben.pdf
Aufgabensammlung 58. Berechnen Sie die fehlenden Werte! U I R P 1 10 KV 20 KA 2 3,3 V 0,004 A 3 30 m 10 W 4 10 mA 0,2 W 5 20 mV 5 m 59. Berechnen Sie die fehlenden Werte! U I R P 1 3 KA 5 MW 2 0,7 KA 40 K 3 2 m 60 mW 4 5 A 30 W 5 0,33 V 40 mW 60. Berechnen Sie die fehlenden Werte! U I R P 1 10 V 20 A 2 40 m 10 W 3 14 mA 0,2 W 4 25 mV 5 m 5 0,7 KA 80 K Stand 06.10.2021 Seite 10 von 75 Elektrotechnik - Aufgabensammlung 1.6 Wirkungsgrad Der Wirkungsgrad ist eine dimensionslose Größe, die oft in Prozent
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PDF
AD1937.pdf
Conditions/Comments Min Typ Max Unit SUPPLIES Voltage DVDD 3.0 3.3 3.6 V AVDD 3.0 3.3 3.6 V VSUPPLY 4.5 5.0 5.5 V Digital Current Master clock = 256Sf Normal Operation fS= 48 kHz 56 mA fS= 96 kHz 65 mA fS= 192 kHz 95 mA Power-Down fS= 48 kHz to 192 kHz 2.0 mA Analog Current Normal Operation 74 mA Power-Down
in „Aktives Filter simulieren“ · Analoge Elektronik und Schaltungstechnik ·
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oledl128-6-1.pdf
WF100-04S *) NULLKRAFTSTECKER FÜR TOUCH, BOTTOM CONTACT EA WF100-06S NUR IN KOMBINATION MIT EA OLEDL128-6GGA. ELECTRONIC ASSEMBLY GmbH Fon: +49 (0)8105-7780 90 Stand 4.2020 Zeppelinstraße 19 Fax: +49 (0)8105-7780
in „Display EA OLED L128-6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spannungsregler_PB137.pdf
60 150 mV o V o Load Regulation o = 5 to 1500 mA, Tj= 25 C 65 100 mV I Quiescent Current T = 25 C 4 8 mA d j d Delta Quiescent Current vs Vi= 16to 28.7V 4 mA Line d Delta Quiescent Current vs o = 5 to 1000 mA 1.2 mA Load o Vd Dropout Voltage o = 1 A, Tj= 25 C 2.1 2.6 V o ISC Short Circuit Current Vi
in „Laderegler PB137“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pb137.pdf
60 150 mV o V o Load Regulation o = 5 to 1500 mA, Tj= 25 C 65 100 mV I Quiescent Current T = 25 C 4 8 mA d j d Delta Quiescent Current vs Vi= 16to 28.7V 4 mA Line d Delta Quiescent Current vs o = 5 to 1000 mA 1.2 mA Load o Vd Dropout Voltage o = 1 A, Tj= 25 C 2.1 2.6 V o ISC Short Circuit Current Vi
in „Komisches Regelverhalten bei PB137“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
dot_ledstrips_spec_en.pdf
characteristics (recommended) Current pulse duration 0,8 < T i 2,0 ms Current rise time 0 < tr< 0,4 ms Current fall time 0 < tf< 0,4 ms Current pulse amplitude 300 < I A 600 mA Recommended values for 1 DOT: - current pulse amplitude 350 < I < 450 mA A - current pulse duration T i 1ms per dot Release
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PDF
TPS3510P.pdf
4 V TA= –40°C DD 0 300 A –20 µ 200 TA= 85°C A t – e T A 25°C t –40 r 100 e C r l TA= 0°C C –60 p 0 u u p S I –80 – I TA= –40°C D –100 I TA= 0°C I –100 TA= 25°C TA= 85°C –200 PGI = 1.4 V –120 PSON = 5 V
in „TPS3510 mit Datemblatt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MG_Model_B__C___D_3_phase_kw.pdf
52.0 160 11.0 - 6309.C4 4) 6209.Z.C4 3 2.2 MG100LB4-C2 49.0 51.0 3 3.0 MG112MA4-C2 54.0 56.0 1)CR1S motors: 6304.2Z.C3 3)CR motors: 7308BE.2CS 3 4.0 MG112MB4-C2 56.0 58.0 2)CR motors: 7306BE.2CS 4)CR motors: 7309BE 3 5.5 MG132SC4
in „3Phasen Motoer an FU - Lagergeräusche?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS3820-50DBVRQ1G4.pdf
1.001 MR = Open ( I 17 WDI =Open , TA= 25°C A 1 15 ( I V 13 e 0.999 g 11 TPS382x-33-Q1 l V l 0.998 9 o s 7 r T 0.997 u 5 p I 0.996 3 e l a 1 r 0.995 N −40 −15 10 35 60 85 í1 TA − Free-Air Temperature − °C í0.5 0.5 1.5 2.5 3.5 4.5 5.5 6.5 Figure 2. Normalized Input Threshold Voltage vs Free-Air Figure 3.
in „Firmware aus MC9S12 per BDM clonen“ · Fahrzeugelektronik ·
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PDF
TL77xx.pdf
LOAD RESISTANCE 42 7 VCC = 5 V VCC = 5 V C = 0.1 F CT= 0.1 F T 6 C = 10 pF 38 CL= 10 pF L TA= 25⋅C s TA= 25⋅C s 5 n – e 34 e m T T n 4 n 30 i RESET tf t RESET tr e e s 3 s a A 26 D t – 2 t RESET tr 22 RESET t f 1 18 0 0 2 4 6 8 10 0 2 4 6 8 10 R – Load Resistance – k RL– Load Resistance – k L Figure
in „uC Powersupply Supervision“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TL77xx.pdf
LOAD RESISTANCE 42 7 VCC = 5 V VCC = 5 V C = 0.1 F CT= 0.1 F T 6 C = 10 pF 38 CL= 10 pF L TA= 25⋅C s TA= 25⋅C s 5 n – e 34 e m T T n 4 n 30 i RESET tf t RESET tr e e s 3 s a A 26 D t – 2 t RESET tr 22 RESET t f 1 18 0 0 2 4 6 8 10 0 2 4 6 8 10 R – Load Resistance – k RL– Load Resistance – k L Figure
in „Wie sprunghafte Bereitstellung der Betriebsspannung für MC realisieren?“ · Mikrocontroller und Digitale Elektronik ·
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WT11_Data_Sheet.pdf
details. 8 2. ELECTRICAL CHARACTERISTICS Absolute maximum ratings Min Max Unit Storage temperature -40 85 °C Operating temperature -40 85 °C Supply voltage -0,3 3,6 V Terminal voltages -0,4 Vdd + 0,4 V Output current from PIOs 35 mA The module should not continuously run under these conditions. Exposure
in „WT11 von Bluegiga, Registrierung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NCP81151B-D-931445.pdf
must be observed. 1. 1 in Cu, 1 oz. thickness. 2. JESD 51−7 (1S2P Direct−Attach Method) with 1 LFM. www.onsemi.com 4 NCP81151B NCP81151B ELECTRICAL CHARACTERISTICS (−40°C < TA< +100°C; 4.5 V < CC < 5.5 V, 4.5 V < BST−SWN < 5.5 V, 4.5 V < BST < 30 V, 0 V < SWN < 21
in „Push-Pull-Ausgang der alles kann :)“ · Mikrocontroller und Digitale Elektronik ·
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Infineon-T1800N-DS-v03_01-en_de.pdf
Eigenschaften / electrical properties Charakteristische Werte / characteristic values Freiwerdezeit T vjT vj maTM = TAVM tq typ. 900 µs circuit commutated turn-off time vRM = 100 V, vDM = 0,67 VDRM dv Ddt = 20 V/µs, -dTthdt = 10 A/µs 4.Kennbuchstabe / 4 letter O Sperrverzögerungsladung T vjT vj max Q r max. 8
in „Schutzschaltung (Crowbar) Dimensionierung“ · Analoge Elektronik und Schaltungstechnik ·
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ME6203.pdf
s 13 18 μA short-circuit currentIshort VIN 7V 13 30 mA V IN12V +1Vp-pAC Ripple Rejection RatePSRR I =5mA,1kHZ 40 dB OUT V01 www.microne.com.cn Page 3 of 8 ME6203 ME6203A33 O (VIN= 7V,C IN=L=10uF,Ta=25
in „Wie lernt man Datenblätter zu lesen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
zdp.pdf
) < 500 –7 ... –3 – 92 110 ZPD4.3 4.0 ... 4.6 80 (< 95) < 500 –6 ... –1 – 85 100 ZPD4.7 4.4 ... 5.0 70 (< 78) < 500 –5 ... +2 – 76 90 ZPD5.1 4.8 ... 5.4 30 (< 60) < 480 –3 ... +4 > 0.8 67 80 ZPD5.6 5.2 ... 6.0 10 (< 40) < 400 –2 ... +6 > 1 59 70 ZPD6.2 5.8 ... 6.6 4.8 (< 10) < 200 –1 ... +7 > 2 54 64 ZPD6.8 6.4 ... 7.2 4.5 (< 8) < 150 +2 ... +7 > 3 49 58 ZPD7.5 7.0 ... 7.9 4 (< 7) < 50 +3 ... +7 > 5 44 53 ZPD8.2 7.7 ... 8.7 4.5 (< 7) < 50 +4 ... +7 > 6 40 47 ZPD9.1
in „1N827 Z-Diode“ · Markt ·
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xc164cm_ds_v1.4_2007_03.pdf
-8F20F 85 °C Flash 2 Kbytes DSRAM, SSC0, SSC1, 2 Kbytes PSRAM CAN0, CAN1 SAK-XC164CM-4F40F -40 to 32 Kbytes 2 Kbytes DPRAM, ASC0, ASC1, SAK-XC164CM-4F20F 125 °C Flash 2 Kbytes PSRAM SSC0, SSC1, CAN0, CAN1 SAF-XC164CM-4F40F -40 to 32 Kbytes 2 Kbytes DPRAM, ASC0, ASC1, SAF-XC164CM-4F20F
in „xc164cm16ff und cc770“ · Mikrocontroller und Digitale Elektronik ·
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HDLx-2416.pdf
Blank I (blank) 1.0 4.0 mA All Digits Blanked DD Input Current I –40 10 μA V = 0 V to V I IN DD VDD = 5.0 V Input Voltage High VIH 2.0 VDD V Input Voltage Low VIL GND 0.8 V a. VDD= 5.0 V. HDLO/HDLA/HDLY/HDLG-2416 25°C a Parameter
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2n3958.pdf
100 nA 5 ) s I @ I = 200 mA A – G D ( o 10 nA n 4 2.6 w r DSS a TA= 125_C u d e n gfs r g 1 nA a 3 2.2 n k I @ 125_C D c e GSS 50 mA n n L 100 pA t u a 200 mA 50 mA r t G a 2 1.8 n – S e G 10 pA – m I T = 25_C IGSS@ 25_C S S A I 1 DSS @ VDS = 15 V,GS = 0 V 1.4 ) gfs V DG = 15 V,GS = 0 V 1 pA f = 1 kHz 0 1 0.1 pA 0 –1 –2 –3 –4 –5 0 10 20 30 40 50 VGS(off)Gate-Source Cutoff Voltage (V) VDG – Drain-Gate Voltage (V) Output
in „JFET prüfen mit transistortester“ · Analoge Elektronik und Schaltungstechnik ·