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TDA5144.pdf
collector) sink output sink current 40 − − mA Vsat saturation voltage II= 40 mA − 1.5 2.1 V V output voltage −0.5 − +18 V O SR slew rate R L 330 ; L = 50 pF − 60 − mA/ s Gtr transfer gain 0.3 − − S FG (open collector) VOL LOW level output voltage IO= 1.6 mA − − 0.4 V VOH(max) maximum HIGH level output V P − − V voltage THL HIGH-to-LOW transition time C L 50 pF; R L 10 k − 0.5 − s ratio of FG frequency and − 1 : 2 − commutation frequency δ duty factor −
in „BLDC Motor Treiber Geschwindihkeitsregelung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hmc253aqs24-1.pdf
-20 (-10 d E S N-30 L-15 I H R A T O-40 C R-20 I T -50 I -25 -60 W -30 -70 S 0 1 2 3 0 1 2 3 FREQUENCY (GHz) FREQUENCY (GHz) RFC RF1-RF8 ON RF1-RF8 OFF RF1 RF4 RF7 RF3 RF6 RF8 Input IP3 Input Compression 55 30 50 28 ) B ) ( 26 m 45 I ( S 24 I R 40 M O 22 C 35 20 30 18 0 0.5 1 1.5 2 2.5 3 3.5 0 1 2 3 FREQUENCY (GHz) FREQUENCY (GHz) RF1 RF4 RF7 1dB COMPRESSION POINT RF2 RF5 RF8 0.1dB COMPRESSION POINT RF3 RF6 InFor price, delivery, nd
in „Gibt es billige DC-Block-Kondensatoren für 2,45 GHz?“ · HF, Funk und Felder ·
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PDF
UHF_Remote_Control_System_TEMIC_9606.pdf
approximately 10 dB with 3.3-V supply proceeds from the IF-filter. The measurement voltage and 15 dB with 4.5 V. setup is shown in figure 11. Due to the toleran- 0 0 -5 -10 -10 d -15 d-20 I -20 I-30 S -25 S R -30 R-40 -50 -35 -60 -40 427,92 429,92 431,92 433,92 435,92 437,92 439,92 433,42 433,62 433,82 434,02
in „ISM Empfänger mit kleinstem Standby“ · HF, Funk und Felder ·
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PDF
Datasheet.hk_mon35w82_8390983.pdf
12 mA Output Low Voltage VOL 0.4 V IOL = 12 mA Output High Voltage VOH 2.4 V IOH = -12 mA OD -8Open-drain output pin with sink capability of 8 mA Output Low Voltage VOL 0.4 V IOL = 8 mA OD 12- Open-drain output pin with sink capability of 12 mA Output Low Voltage VOL 0.4 V IOL = 12 mA OD 48- Open-drain output pin with sink capability of 48 mA Output Low Voltage VOL 0.4 V IOL = 48 mA IN t TTL level input pin Input Low Voltage VIL 0.8 V Input
in „[V] 45St.Fan Steuerungs ChipI2C SMSC MON35W82“ · Markt ·
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PDF
Datasheet.hk_mon35w82_8390983.pdf
12 mA Output Low Voltage VOL 0.4 V IOL = 12 mA Output High Voltage VOH 2.4 V IOH = -12 mA OD -8Open-drain output pin with sink capability of 8 mA Output Low Voltage VOL 0.4 V IOL = 8 mA OD 12- Open-drain output pin with sink capability of 12 mA Output Low Voltage VOL 0.4 V IOL = 12 mA OD 48- Open-drain output pin with sink capability of 48 mA Output Low Voltage VOL 0.4 V IOL = 48 mA IN t TTL level input pin Input Low Voltage VIL 0.8 V Input
in „[V] 45St.Fan Steuerungs ChipI2C SMSC MON35W82“ · Markt ·
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PDF
DS_PC3SD21NTZ.pdf
vs. Fig.8 Repetitive Peak OFF-state Current vs. Ambient Temperature Ambient Temperature 1 10−5 VD=4V A ( VD=600V R ID 10−6 A n ( r I c t t e s −7 u 0.1 F 10 g F i k o e H e −8 t 10 e e R 0.01 10−9 −40 −20 0 20 40 60 80 100 −40 −20 0 20 40 60 80 100 Ambient temperatureaT (˚C) Ambient temperatureaT (
in „Optotriac und Triac richtig beschalten“ · Analoge Elektronik und Schaltungstechnik ·
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u2270b.pdf
mode Pin 5 – low level input voltage V il 0.2 V – high level input voltage V ih 2.4 V Carrier frequency enable Pin 6 – low level input voltage V 0.8 V il – high level input voltage V ih 3.0 V Operating current Pin10, 11, 12 and 14 S 4.5 9 mA 5 V application without load connected to the coil driver Standby current Pin 12 ISt 30 70 mA 12 V application V S Pin 14 – Supply voltage V 4.6 5.4 6.3 V S – Supply voltage drift dV sdT 4.2 mV/K – Output current S 1.8 3.5 mA Driver output voltage IL= 〉 100 mA – One rail operation V S V EXT ,
in „Pollin RFID Entwicklungsboard“ · Mikrocontroller und Digitale Elektronik ·
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PDF
evbum2169-d.pdf
Undervoltage Trigger LevelVDD2 Faling (Figure 5) − 0.8 × DD2 − V V Output Voltage Ripple V = 26 V, − 40 − mV DD2_rip BUS VDD2 = 3.3 V, DD2 = 40 mA DD2_lim Overcurrent Threshold −100 − −200 mA η Power Efficiency V = 26 V, V = 3.3 V, − 90 − % VDD2 in DD2 DD2 = 35 mA http://onsemi.com 3 Downloaded froArrow.com
in „Ripple am Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sct2210.pdf
-bit Serial-In/Parallel-Out Constant-Current LED Driver SCT2210 AdjustingOutputCurrent All SCT2210’s output current (OUT) are set by one external resistor at pin REXT. The relationship between I and resistance R is shown as the following figure. OUT EXT 90 80 1.0V < VOUT < 4.0V 70 60 ) A 50 ( T O 40
in „[V] 50 x 16bit LED-Konstantstrom-Schieberegister, SCT2210CSTG“ · Markt ·
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PDF
IXFH13N50.PDF
20.32 0.780 0.800 Q 40 50 nC B 20.80 21.46 0.819 0.845 gd C 15.75 16.26 0.610 0.640 R thJC 0.7 K/W D 3.55 3.65 0.140 0.144 R thCK 0.25 K/W E 4.32 5.49 0.170 0.216 F 5.4 6.2 0.212 0.244 G 1.65 2.13 0.065 0.084 H - 4.5 - 0.177
in „Betriebsstrom des MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IXFH13N50.PDF
20.32 0.780 0.800 Q 40 50 nC B 20.80 21.46 0.819 0.845 gd C 15.75 16.26 0.610 0.640 R thJC 0.7 K/W D 3.55 3.65 0.140 0.144 R thCK 0.25 K/W E 4.32 5.49 0.170 0.216 F 5.4 6.2 0.212 0.244 G 1.65 2.13 0.065 0.084 H - 4.5 - 0.177
in „Wie heiß wird mein MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IXFH13N50.PDF
20.32 0.780 0.800 Q 40 50 nC B 20.80 21.46 0.819 0.845 gd C 15.75 16.26 0.610 0.640 R thJC 0.7 K/W D 3.55 3.65 0.140 0.144 R thCK 0.25 K/W E 4.32 5.49 0.170 0.216 F 5.4 6.2 0.212 0.244 G 1.65 2.13 0.065 0.084 H - 4.5 - 0.177
in „Puls weiten modulation“ · Analoge Elektronik und Schaltungstechnik ·
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opa128lm.pdf
–45 ) 120 Gain d ) 100 s ( B r i 100 ( Ø g c i 80 –90 D e 80 G f R e h l +PSRR a 60 Phase S p 60 o s S –PSRR V 40 Margin –135 h r 40 ∼90° P w o 20 P 20 0 –180 0 1 10 100 1k 10k 100k 1M 10M 1 10 100 1k 10k 100k 1M 10M Frequency
in „Verkaufe 15 x OPA128LM“ · Markt ·
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REN_icl7106-07-07s_DST_20251218.pdf
- C1 R R C C C I I A B I V B1 4 37 TEST (1’s) A1 5 36 REF HI F1 6 35 REF LO NC 144 43 42 41 40 39 38 37 36 35 34 NC G1 7 34 C REF+ 33 NC 2 32 G2 E1 8 33 C REF- D2 9 32 COMMON TEST 3 31 C3 OSC 3 4 30 A3 C2 10 31 IN HI NC 5 29 G3 (10
in „Panel-Meter KAIFU FR-4“ · Mikrocontroller und Digitale Elektronik ·
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DAC3550A_Stereo_Audio_DAC.pdf
. VDD ≥90% VDD AVDD ≥90% AVDD PORQ 0.7×AVDD <0.× VDD <30 ms Fig. 4 7: Power-up sequence Micronas 27 8 g 6 D . T A 4 y C : c p l 3 l A 5 a p 5 o c 0 n t A r o u s s h m a c 1 S a d d a p c t A n w n h a a g d e m h s . O c a o n t e d i d o . a s M F c g o 4 a 9 s :
in „Mini-DSP für Audio-Verarbeitung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
008-0256-0_F.pdf
Load 10 0.9*V a VOH CC - - r TTL LOAD VCC0.6V V P CMOS TTL 0.1*VCC m Logic '0' Level VOL - - r Load 0.4 f Output Current v Logic '1' Level I V = 3.9V/2.2V V = 4.5V/3.0V - - -16/-8 a OH OH CC mA W Logic '0' Level IOL V OL= 0.4V VCC = 4.5V/3.0V - - +16/+8 n Output Duty Cycle SYM @ 50% Level 45 - 55 % a @
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Grundplatine_IO-Modul.pdf
R - 1 - 3 - 5 - 7 - 9 - 1 - 1 - 1 T L T L T L S L T L S L T L S L T T R R T L R R T L R R T L R R L L 2 4 L 2 4 L 2 4 L 2 4 IO1 IO2 IO3 IO4 T3 A T7 A T11 A T15 A 1 3 0 1 1 0 2 3 0 4 4 0 R R BC869 2 R R BC869 2 R R BC869 2 R R BC869 2 3 3 F 3 3 F 3
in „Konzept zu einem Hausbus auf CAN-Bus Basis und die Enstehung des Konzeptes“ · Haus & Smart Home ·
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8-Ch-IO-Modul.pdf
R - 1 - 3 - 5 - 7 - 9 - 1 - 1 - 1 T L T L T L S L T L S L T L S L T T R R T L R R T L R R T L R R L L 2 4 L 2 4 L 2 4 L 2 4 IO1 IO2 IO3 IO4 T3 A T7 A T11 A T15 A 1 3 0 1 1 0 2 3 0 4 4 0 R R BC869 2 R R BC869 2 R R BC869 2 R R BC869 2 3 3 F 3 3 F 3
in „Konzept zu einem Hausbus auf CAN-Bus Basis und die Enstehung des Konzeptes“ · Haus & Smart Home ·
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PDF
pvn012apbf.pdf
International Rectifier Power MOSFETs) www.irf.com 1 SeriesPVN012APbF Electrical Specifications (-40°C ≤ T A +85°C unless otherwise specified) INPUTCHARACTERISTICS Limits Units Minimum Control Current (see figure 1) 5.0 mA Maximum Control Current for Off-State Resistance @ A = +25°C 0.4 mA Control Current Range (Caution: current limit input LED, see figure 6) 5.0 to 25.0 mA Maximum Reverse Voltage 6.0 V OUTPUTCHARACTERISTICS Limits Units Operating Voltage Range 0 to ±20 V(DC orACpeak) Maximum Continuous Load Current @ 40°C, 10mA Control (see figure 1) A Connection 4.0 A
in „MOSFET antiseriell als analoger Wechselstromschalter“ · Analoge Elektronik und Schaltungstechnik ·
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BTS711L1_20030919.pdf
output current (included in I bb(off) L(off) -- -- 12 µA V IN =0 9) Operating current , V =5VIN Tj=-40...+150°C IGND = GND1/2 + IGND3/4, one channel on: GND -- 2 3 mA four channels on: -- 8 12 Protection Functions 10) Initial peak short circuit current limit,(see timing diagrams, page 12) each channel
in „Beleuchtungsüberwachung KFZ“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTS711L1_20030919.pdf
output current (included in I bb(off) L(off) -- -- 12 µA V IN =0 9) Operating current , V =5VIN Tj=-40...+150°C IGND = GND1/2 + IGND3/4, one channel on: GND -- 2 3 mA four channels on: -- 8 12 Protection Functions 10) Initial peak short circuit current limit,(see timing diagrams, page 12) each channel
in „High-Side 8-fach FET/Transistor Array bei 12V und 1A“ · Analoge Elektronik und Schaltungstechnik ·
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max232.pdf
Single 5-V Power Supply With 1.0-mF Charge-Pump Capacitors C1+ 1 16 VCC D Operates Up To 120 kbit/s VS+ 2 15 GND C1− 3 14 T1OUT D Two Drivers and Two Receivers C2+ 4 13 R1IN D ±30-V Input Levels C2− 5 12 R1OUT D Low Supply Current . . . 8 mA Typical V 6 11 T1IN S− D ESD Protection Exceeds JESD 22 T2OUT
in „RS232 zu wenig spannung“ · Mikrocontroller und Digitale Elektronik ·
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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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PDF
adxl202_beschl.sensor_analog.pdf
(T2) vs. Temperature Figure 5. Typical X Axis Sensitivity Drift Due to Temperature 0.8 0.6 3 g N 0.4 T C = 0.01mF I 0.2 2 FILT H T S E 0 L F O F V g –0.2 1 O R Z –0.4 –0.6 0 –0.8 –40 –30 –20 –10 0 10 20 30 40 50 60 70 80 90 0 0.4 0.8 1.2 1.4 TEMPERATURE – 8C FREQUENCY – ms Figure 6. Typical Turn-On
in „Differenzverstärkerschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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AN50005.pdf
voltage or other specifications, so they can be applied to a wide range of scenarios. L1 Vp L2 L3 L4 LB Iload Rsupply Rgdrv1 Rg4 L5 M4 M5 M6 BUK7S1R0-40H BUK7S1R0-40H BUK7S1R0-40H 12 Ω 3.9 Ω 150 A CB Rg5 L6 BH 3.9 Ω Vsupply Rg6 L7 V=V(VgsHS) RB 3.9 Ω L8 L9 L10 Lload 4 µH L11 L12 L13 Pdiss1 Ediss1 B1 R1 B4 R4 Vd1 Vd2 Vd3 1 kΩ 1 kΩ Rgdrv2 Rg1 L14 M1 M2 M3 V=(V(Vd1)-V(Vs1))*I(VM1) V=∫Pdiss1*dt BUK7S1R0-40H BUK7S1R0-40H BUK7S1R0-40H BL 12 Ω 3.9 Ω Vs1 Vs2 Vs3 Rg2 L15 Pdiss2 Ediss2 V=V(VgsLS) 3.9 Ω B2 R2 B5
in „N-Canal MOSFET Modul“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
opa2134.pdf
±15 V Operating Voltage Range ±2.5 ±18 V Quiescent Current (per amplifier) O = 0 4 5 mA TEMPERATURE RANGE Specified Range –40 +85 °C Operating Range –55 +125 °C Storage –55 +125 °C Thermal Resistance,JA 8-Pin DIP 100 °C/W SO-8 Surface-Mount 150 °C/W 14-Pin DIP 80 °C/W SO-14 Surface-Mount
in „Hilfe bei Bemessung der Widerstände an OpAmp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RJH60F5DPQ.pdf
to emitter leak current IGES ±1 A V GE= ±30 V, VCE = 0 Gate to emitter cutoff voltage VGE(off) 4 8 V V CE= 10 V, C = 1 mA Collector to emitter saturation voltage VCE(sat) 1.37 1.8 V IC= 40 A, VGE = 15 V Note3 Note3 VCE(sat) 1.7 V IC= 80 A, VGE = 15 V Input capacitance Cies 2780 pF V
in „Inverter Elektroden-Schweißgerät abgeraucht -> IGBT defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
U642B_Automotive_Wipe-Wash_Switch.pdf
R 3 100 W Interval input, R = 2.7 to 30 kW Pin 2 2 Protection diode I2= –10 mA V 2 –0.8 V I2= 30 mA/10 ms 7.6 WIWA Input, R = 50 kW Pin 5 Switching threshold/ V 5 –1.4/–5.4 V Hysteresis Protection diode I5= –10 mA V –0.8 V I = 10 mA 7.6 5 Switching Characteristics, R 4 47 kW to 300 kW, I 4 –150 mA Interval time R3= 0 kW 2 3.6 4 4.4 s R3 = 10 kW 10.8 12 13.2 Switch-ON time ton 100 ms After-wipe-time R4= 130 kW Pin 5 5 4.75 5.25 5.75 s 4 (6) TELEFUNKEN Semiconductors Rev.A1, 13-Feb-97 U642B
in „Elektronikschaltung von Blinkrelais PKW“ · Fahrzeugelektronik ·
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PDF
Rauschmessungen_am_LM723.pdf
(100Hz - 10.1kHz) Nr. Farbe C-Ref. (C9 +C8) RC-Filter Spectral Density RMS Noise 1 Grün 1000nF --- 40,6 nVef/√Hz 4,06 µVeff 2 Blau 1000nF + 4,7µF --- 14,0 nVef/√Hz 1,40 µVeff 2 Pink 1000nF + 220µF --- 1,26 µVeff 12,6 nVef/√Hz 3 Rot 1000nF + 220µF 3R3+1000µF 1,53 nVef/√Hz 0,15 µVeff 4 Braun Messgrenze
in „Rauschen in Spannungsversorgung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Rauschmessungen_am_LM723.pdf
(100Hz - 10.1kHz) Nr. Farbe C-Ref. (C9 +C8) RC-Filter Spectral Density RMS Noise 1 Grün 1000nF --- 40,6 nVef/√Hz 4,06 µVeff 2 Blau 1000nF + 4,7µF --- 14,0 nVef/√Hz 1,40 µVeff 2 Pink 1000nF + 220µF --- 1,26 µVeff 12,6 nVef/√Hz 3 Rot 1000nF + 220µF 3R3+1000µF 1,53 nVef/√Hz 0,15 µVeff 4 Braun Messgrenze
in „"Moderne" Spannungsregler?“ · Analoge Elektronik und Schaltungstechnik ·
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atmel_32uc.pdf
HMATRIX SLAVES h M l B 0 B 1 A v F - e - e S v S I a B i B i a l B E e H B H B r S B n t U I I 0 1 2 3 4 5 CPU Data 0 CPU Instruction 1 S E S CPU SAB 2 A M I T PDCA 3 A M H MACB 4 USBB DMA 5 23 AT32UC3A 10. Peripherals 10.1 Peripheral address map
in „V: ATMEL 32UC3A0512-U“ · Markt ·
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PDF
WM8731.pdf
–Type 0 Figure 44 ADC Digital Filter Ripple –Type 0 0.02 0 0.01 -20 0 B B -0.01 ( -40 ( s s o o -0.02 s s e e R -60 R -0.03 -0.04 -80 -0.05 -100 0 0.5 1 1.5 2 2.5 3 -0.060 0.05 0.1 0.15 0.2 0.25 0.3 0.35 0.4 0.45 0.5 Frequency (Fs) Frequency (Fs) Figure 45 ADC Digital Filter Frequency
in „Deemphasis bei Audio-DAC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
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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macom2011.pdf
1025 - 1150 MAPR-001011-850S00 Bipolar 50 850 7.8 42 10 µs, 1% 1025 - 1150 MRF10502 Bipolar 50 500 8.5 40 32 µs, 2% 1025 - 1150 MRF10350 Bipolar 50 350 8.5 40 MODE S, 128 µs, burst on, 0.5 off, 6.4 mS 1025 - 1150 MAPR-001090-350S00
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PDF
MAX6603.pdf
3 A T = +125°C 6 6 3.5 A M ) M M m 10 A TA= +85°C T ( 3.2 I N T A +25°C D E G U 2.9 T 0 Y O L TA= -40°C T U 2.6 P S TA= 0°C U-10 O 2.3 2.0 -20 3.0 3.5 4.0 4.5 5.0 5.5 -40 -10 20 50 80 110 SUPPLY VOLTAGE (V) TEMPERATURE ( °) POWER-SUPPLY REJECTION RATIO OUTPUT VOLTAGE vs. FREQUENCY vs. RTD RESISTANCE 0 0 5 0 3 TA= 25°C 3 -10 6 6 M M -20 4 -30 V E B -40 A 3 ( L R -50 V P T -60 T 2 U -70 O -80 1 -90 -100 0 0.01 0.10 1.00 10.00 100.00 1000.00 100 300 500 700 900 FREQUENCY (kHz) RTD RESISTANCE (Ω) 4 _______________________________________
in „Temperaturmessung mit Mikrocontroller im Batteriebetrieb“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VK16K33Datasheet.pdf
R Input pull-low 5 ROW0/A2~ROW2/A0 250 - - KΩ PL resistor Keyscan during I Low level output 5 V =0.4V; SDA 6 - - mA OL1 current OL OL2 ROW Sink Current 5 V OL.4V,INT pin 6 - - mA ROW Source V =V -2V,(ROW0~ROW15 OH1 5 OH DD -20 -25 -40 mA Current pin) VOHV -DD,(ROW0~ROW15 -25 -30 -50 mA pin ) ROW Source
in „VK16K33 vs HT16K33“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS32kHz.pdf
Voltage (V BAT) VOH IOH = -0.1mA (Note 2) 2.4 V Battery Switch Voltage VSW (Note 2) VBAT V (VCC = 0V, TA= -40°C to +85°C.) (Note 1) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Active Battery Current BAT V BAT= 3.3V (Notes 4, 5, 6) 1 4 mA Battery
in „ds32kHz von Maxim“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS32kHz.pdf
Voltage (V BAT) VOH IOH = -0.1mA (Note 2) 2.4 V Battery Switch Voltage VSW (Note 2) VBAT V (VCC = 0V, TA= -40°C to +85°C.) (Note 1) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Active Battery Current BAT V BAT= 3.3V (Notes 4, 5, 6) 1 4 mA Battery
in „Genaue Frequenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS32kHz.pdf
Voltage (V BAT) VOH IOH = -0.1mA (Note 2) 2.4 V Battery Switch Voltage VSW (Note 2) VBAT V (VCC = 0V, TA= -40°C to +85°C.) (Note 1) PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS Active Battery Current BAT V BAT= 3.3V (Notes 4, 5, 6) 1 4 mA Battery
in „32 KHz Quarz - lange Anlaufzeit“ · Mikrocontroller und Digitale Elektronik ·
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LTC490_LT.pdf
, 3) 5 5 25 ns r f DIFF L1 L2 tPLH Receiver Input to Output RDIFF = 54 , CL1 C =L200pF (Figures 2, 4) 40 70 150 ns tPHL Receiver Input to Output RDIFF = 54 , CL1 C =L200pF (Figures 2, 4) 40 70 150 ns tSKD tPLH– tPHL Differential Receiver Skew RDIFF = 54 , CL1 C =L200pF (Figures 2, 4) 13 ns The denotes
in „µC -- RS485 Frage“ · Mikrocontroller und Digitale Elektronik ·
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mc3362.pdf
300 1 RecoveredAudio V 5.0 200 4.0 2.0 3.0 1.0 100 2.0 0 0 –130 –120 –110 –100 –90 –80 –70 –60 –50 –40 –30 0 1.0 2.0 3.0 4.0 5.0 6.0 7.0 8.0 RFINPUT(dBm) V (V) CC Figure 6. Signal Levels Figure 7. S + N, N, AMR versus Input 30 20 20
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YX807.pdf
°C 工作环境温度 -40 ~ 85 °C 电源电压 +0.9 ~ +1.5 V 连续输入电流 3~150 mA Ver1.0 4 Copyright@2009-2020 Nªt▯UF▯:mæW3^▯ ▯vÛeöNªyÑb g PQlSł▯0▯7▯5▯5▯-▯8▯ YX807 June 2019- REVISED February 2020 电特性 (V IN.2V, T =A25° C,除非特别说明。) 参数 符号 测试条件 最小值 典型值 最大值 单位 电源输入 输入电压范围 VIN IIN40mA 0.8 1.5 V 输入电流范围 IIN V IN.2V 3 150 mA 关断状态电流 SD V IN.2V,V SOL=0.4V 30 μA 功率开关 开关导通电阻 RDS(ON) VIN1.2V, 0.65 Ω 输出漏电流 LEAKAGE VSOL=VIN 19 μA 太阳能控制 V -关 0.37 V 使能输入阈值 V IN.2V V -开 0.3 V 充电最小压差 VCH VIN1.2V
in „suche eine IC-Bezichnung für ein SMD Bauteil mit Aufdruck: AA0bc“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX63xx.pdf
A 2.8 A M 200 M M ) 2.6 ) 3.0 A MAX6350 m 100 ( 2.4 ( ) N MAX6341 N µ 0 T = -40°C TA= +85°C E 2.2 MAX6325 R 2.5 MAX6350 T A R R O C 2.0 C MAX6341 V-100 Y Y 2.0 ∆ P 1.8 P P P -200 S 1.6 S 1.4 1.5 TA= +25°C -300 1.2 MAX6325 -400 1.0 1.0 -55 -35 -15 5 25
in „Oszi und DMM selber kalibrieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
001123728-da-01-en-IC_SPREF_SERIE_5V_MAX6350EPA__DIP_8_MAX.pdf
A 2.8 A M 200 M M ) 2.6 ) 3.0 A MAX6350 m 100 ( 2.4 ( ) N MAX6341 N µ 0 T = -40°C TA= +85°C E 2.2 MAX6325 R 2.5 MAX6350 T A R R O C 2.0 C MAX6341 V-100 Y Y 2.0 ∆ P 1.8 P P P -200 S 1.6 S 1.4 1.5 TA= +25°C -300 1.2 MAX6325 -400 1.0 1.0 -55 -35 -15 5 25
in „Frage zur Spannungsreferenz“ · Mikrocontroller und Digitale Elektronik ·
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MGLS_240128T-FF-HT-LEDWHITE_FPC_6MountingHoles.pdf
voltage VIN “H” level VDD -2.2 - VDD V “L” level 0 - 0.8 V Supply Current IDD Character mode, - 11.4 17.1 mA (Logic & LCD) VDD=5V, Note 1 Checker board mode, - 12.4 18.6 mA VDD=5V, Note 1 Supply Current (LCD) I0 Character mode, - 4.6 6.9 mA VDD=5V, Note 1 Checker board mode, - 5.3 8.0 mA VDD=5V, Note
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BTS555_20030925.pdf
, E AS 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 „Elektronische Sicherung für Akku“ · Mikrocontroller und Digitale Elektronik ·
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Dazzle_HW_mb_hsw_ult-3a-reve-0408.pdf
+3V_S5 +3V_S5 PETP2/USB3TP4 +3V_S5 AL3 USB_OC0# RP6 OC0/GPIO40 AT1 USB_OC1# USB_OC0# 31 MB U3 10 1 TESTLOW_C35 R563 10K_4 C266 C267 C268 +3V_S5 OC1/GPIO41 AH2 USB_OC2# USB_OC0# 9 2 TESTLOW_C34 R564 10K_4 *
in „Notebook Mainboard reparieren Aspire V5-573G, IC iTE IT8587E“ · PC Hard- und Software ·
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BUW84.PDF
collector-emitter saturation volI = 1 A; I = 200 mA; see Fig.7− 1 V CEsat C B C collector current (DC) see Figs 4 and 5 − 2 A CM collector current (peak value) see Figs 4 and 5 − 3 A Ptot total power dissipation Tmb ≤ 25 °C; see Fig.8 − 50 W f fall time resistive load; see Fig.11 0.4 − s THERMAL CHARACTERISTICS
in „Hochspannung Regeln für eine Bildverstärker Röhre“ · Analoge Elektronik und Schaltungstechnik ·
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M74HC04B1.pdf
4.4 4.4 6.0 O =-20 A 5.9 6.0 5.9 5.9 V I =-4.0 mA 4.5 O 4.18 4.31 4.13 4.10 6.0 IO=-5.2 mA 5.68 5.8 5.63 5.60 V OL Low Level Output 2.0 IO=20 A 0.0 0.1 0.1 0.1 Voltage I =20 A 4.5 O 0.0 0.1 0.1 0.1 6.0 IO=20 A 0.0 0.1 0.1 0.1 V 4.5 IO=4.0 mA 0.17 0.26 0.33 0.40 6.0 IO=5.2 mA 0.18 0.26 0.33 0.40 I Input Leakage Current 6.0 V I= VCC or GND ± 0.1 ± 1 ± 1 A CC Quiescent Supply 6.0 V = V or GND 1 10 20 A Current I CC AC ELECTRICAL
in „RC-Oszillator mit 74HC04 spinnt“ · Analoge Elektronik und Schaltungstechnik ·
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LQ092B5DW01.pdf
are given. For detailed measurements and tolerances, refer to Fig. 2, Outline Dimensions. LCY08041-3 4.Input terminal 4-1)TFT-LCD panel driving part Connector used: FH28-40S-0.5SH(05) (Hirose Electric Co., Ltd.) Table 2 Pin Symbol Function Remarks No. 1 GND Ground 】 2 DCLK Clock signal for sampling each
in „Anschluss TFT-LCD-Modul SHARP LQ092B5DW02 vs. LQ092B5DW01“ · Mikrocontroller und Digitale Elektronik ·