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1W_LED_9_spec.pdf
;FI = 350)A CCT Range Luminous Color (K) Flux(lm) Ordering Code White 5500~6500 80~90 NPT1W0805565S White 5500~6500 90~100 NPT1W0905565S White 5500~6500 NPT1W1005565S 100~110 White 5500~6500 110~120 NPT1W1105565S White 5500~6500 120~130 NPT1W1205565S Warm White 2700~3300 NPT1W0802733S 80~90 Warm White
in „Re: [Sammelbestellung] 6 Pin 3W Power RGB LED“ · Markt ·
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PDF
MAX3095-MAX3096.pdf
+70°C 16 Narrow SO ________________Functional Diagram MAX3096CEE 0°C to +70°C 16 QSOP MAX3096EPE -40°C to +85°C 16 Plastic DIP CC MAX3096ESE -40°C to +85°C 16 Narrow SO MAX3096EEE -40°C to +85°C 16 QSOP G MAX3095 G MAX3096 Pin Configuration A1 Y1 TOP VIEW B1 B1 1 16 CC A2 A1 2 15 B4 Y2 B2 Y1 3 14 A4
in „Hilfe mit RS485-Receiver-Dattenblatt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX3095-MAX3096.pdf
+70°C 16 Narrow SO ________________Functional Diagram MAX3096CEE 0°C to +70°C 16 QSOP MAX3096EPE -40°C to +85°C 16 Plastic DIP CC MAX3096ESE -40°C to +85°C 16 Narrow SO MAX3096EEE -40°C to +85°C 16 QSOP G MAX3095 G MAX3096 Pin Configuration A1 Y1 TOP VIEW B1 B1 1 16 CC A2 A1 2 15 B4 Y2 B2 Y1 3 14 A4
in „SPI mit RS485-Übertragung: Problem mit zu langen Propagation-Delays“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP6562.pdf
) StDev = 6.6 µV/°C ) Avg. = 10.4 µV/°C Avg. = 12 µV/°C ( 1380 Units ( StDev = 0.6 µV/°C StDev = 0.6 µV/°C s40% T = -40°C to +125°C s 40% c A c e30% e 30% r r u20% u 20% c c 1380 Units O O 10% 10% TA= -40°C to 125°C VCM= SS 0% 0% -60
in „Schmitttrigger mit MCP6562 unklare Abweichung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FYM-23881ABxxx.pdf
- GaAsP/GaP 610nm/Super Red 8 50 1 6 4 5 2 3 R 4.0 50 L O T 1 F R 40 V O 1 W E 3.0 W 40 R U A 6 D 30 M D 2,4,8,A C N 30 U O 2.0 5 U R 20 S R 3 N I B E 20 T T N 5 m 10 E 1.0 ( A S m 10 ) T ) 0 Y 1.2 1.6 2.0 2.4 2.6 3.0 0 0 20 40 60 80 100
in „Treiberstufen High und Low side“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2576-D.pdf
V = 5.0 V A 18 Measured at E 180 ON/OFF ( R 160 N 16 Ground Pin U R T J 25°C T 140 R 14 N 120 Vin 40 V C ILoad= 3.0 A C N 12 E 100 E U S 10 Q 80 I B 60 Vin 12 V Q 8.0 ILoad= 200 mA N ,Q T 40 I 6.0 , b 20 4.0 Is 0 0 5.0 10 15 20 25 30 35 40 −50 −25 0 25 50 75 100 125 Vin INPUT VOLTAGE (V) TJ, JUNCTION
in „Platine als Kühlkörper“ · Platinen ·
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PDF
LM2576_On.PDF
V = 5.0 V A 18 Measured at E 180 ON/OFF ( R 160 N 16 Ground Pin U R T J 25°C T 140 R 14 N 120 Vin 40 V C ILoad= 3.0 A C N 12 E 100 E U S 10 Q 80 I B 60 Vin 12 V Q 8.0 ILoad= 200 mA N ,Q T 40 I 6.0 , b 20 4.0 Is 0 0 5.0 10 15 20 25 30 35 40 −50 −25 0 25 50 75 100 125 Vin INPUT VOLTAGE (V) TJ, JUNCTION
in „Ruhige negative Spannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
W24257AK_32kx8_SRam.pdf
to VDD, CS = V IH -10 - +10 μA Current or OE = V IH or WE = V IL Output Low Voltage VOL IOL = +8.0 mA - - 0.4 V Output High Voltage VOH IOH = -4.0 mA 2.4 - - V Operating Power IDD CS = V ILI/O = 0 mA 10 - - 170 mA Supply Current Cycle = MIN 12 - - 160 mA Duty = 100% 15 150 mA 20 - - 140 mA Standby Power
in „8 Kanal 50Ms/s AVR Logic-Analyzer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W24257.pdf
to VDD, CS = V IH -10 - +10 μA Current or OE = V IH or WE = V IL Output Low Voltage VOL IOL = +8.0 mA - - 0.4 V Output High Voltage VOH IOH = -4.0 mA 2.4 - - V Operating Power IDD CS = V ILI/O = 0 mA 10 - - 170 mA Supply Current Cycle = MIN 12 - - 160 mA Duty = 100% 15 150 mA 20 - - 140 mA Standby Power
in „Frage zu SRAM Timing“ · Mikrocontroller und Digitale Elektronik ·
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HEF4755.pdf
specification HEF4755V Transceiver for serial data communication LSI DC CHARACTERISTICS V = 0 V; T = −40 to + 85 °C; unless otherwise specified SS amb PARAMETER VDD SYMBOL MIN. TYP. MAX. UNIT CONDITIONS V Outputs Output voltage LOW 4,75 to V − − 0,4 V I = 1,8 mA 12,6 OL OL 4,75 V − − 0,4 V IOL= 2,3 mA OL
in „Austausch Logik-Baustein“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HEF4755.pdf
specification HEF4755V Transceiver for serial data communication LSI DC CHARACTERISTICS V = 0 V; T = −40 to + 85 °C; unless otherwise specified SS amb PARAMETER VDD SYMBOL MIN. TYP. MAX. UNIT CONDITIONS V Outputs Output voltage LOW 4,75 to V − − 0,4 V I = 1,8 mA 12,6 OL OL 4,75 V − − 0,4 V IOL= 2,3 mA OL
in „Nerviger Datenübertragungsbaustein HEF4755“ · Mikrocontroller und Digitale Elektronik ·
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PDF
5988-7313EN.pdf
20 mA λpeak(nm) λd[1](nm) (degrees)[2] ηV Color Min. Typ. Typ. Typ. Typ. (lm/W)[3] High 1.6 5.0 639 626 155 145 Efficiency Red Orange 1.6 4.0 606 604 155 380 Yellow 1.6 5.0 584 586 155 500 Green 4.0 9.0 570
in „Verk. LED HSMF-C655“ · Markt ·
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PDF
KM1-KM4_348170058240_FinderRelais.pdf
Spulen- Arbeitsbereich Widerstand Bemessungs- U spannung code strm UN 2.0 UN Umin Umax R I 1 V V V Ω mA 5 7.005 3,5 7,5 130 38,4 1.5 12 7.012 8,4 18 840 14,2 24 7.024 16,8 36 3.350 7,1 48 7.048 33,6 72 12.300 3,9 1.0 60 7.060 42 90 19.700 3 2 0.5 -20 0 20 40 60 80 Umgebungstemperatur (°C) Zulässiger Betriebsspannungsbereich
in „Relaisbeschaltung so richtig?“ · Mikrocontroller und Digitale Elektronik ·
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W78E051C40DL_4170039.pdf
8.1 Program Fetch Cycle S1 S2 S3 S4 S5 S6 S1 S2 S3 S4 S5 S6 XTAL1 TALW ALE TAPL PSEN TPSW T AAS PORT 2 T TAAH PDA TPDH, TPDZ PORT 0 Code A0-A7 Data A0-A7 Code A0-A7 Data A0-A7 8.2 Data Read Cycle S4 S5 S6 S1 S2 S3 S4 S5 S6 S1
in „Winbond W78E051 programmieren - kennt ihr compiler? woher ISP?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
155574-da-01-en-OP_VERST_LM2902N_STM.pdf
nV en ---------- f = 1kHz, S = 100Ω, Vcc= 30V 40 Hz DV io Input Offset Voltage Drift 7 30 µV/°C DIio Input Offset Current Drift 10 200 pA/°C (4) V /V Channel Separation dB O1 O2 1kHz ≤ f ≤ 20kHz 120 + + 1. VO= 1.4V, RS= 0Ω, 5V <
in „Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UTC-Unisonic-Tech-MCR100G.pdf
ITM1A Peak @ T =A5°С 1.7 V Gate Trigger Current (Continuous DC) (Note3) GT VAK7Vdc, R =L00Ω, T =C5°С 40 200 μA TC=25°С VAK=7Vdc, initiating 0.5 5 mA Holding Current IH TC=-40°С current=20mA 10 mA TC=25°С 0.6 10 mA Latch Current IL VAK7V, Ig=200A TC=-40°С 15 mA Gate Trigger Voltage TC=25°С 0.62 0.8 V V
in „Piezo-Buzzer - was steckt da drin?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCPL7800.pdf
Current vs. Plot. Input Voltage. Input Voltage. 2 10.5 12.0 A T = 85°C A m T = 25°C 0 m – A A T N TA= -40°C m N 10.0 E 11.5 T E R N -2 R U E U C R C L U -4 L 9.5 P 11.0 C P U U U S P S T I -6 U P – P T I I 9.0 O 10.5 I -8 – TA= -40°C – D T = 25°C 2 ID T = 85°C D A I -10 8.5 10.0 -6 -4 -2 0 2 4 6 -0.4 -0.3
in „Galvanisch getrennten 1-10V Ausgang regeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCPL7800.pdf
Current vs. Plot. Input Voltage. Input Voltage. 2 10.5 12.0 A T = 85°C A m T = 25°C 0 m – A A T N TA= -40°C m N 10.0 E 11.5 T E R N -2 R U E U C R C L U -4 L 9.5 P 11.0 C P U U U S P S T I -6 U P – P T I I 9.0 O 10.5 I -8 – TA= -40°C – D T = 25°C 2 ID T = 85°C D A I -10 8.5 10.0 -6 -4 -2 0 2 4 6 -0.4 -0.3
in „8fach Trennverstärker 0..10V - wie realisieren?“ · Analoge Elektronik und Schaltungstechnik ·
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ST_M5450_M5451_LED_Display_Driver.pdf
. REV. 2 April 2004 1/12 M5450, M5451 Figure 2. Pin Connection 4 5 6 7 8 9 0 1 2 1 1 1 1 1 1 2 2 2 I I I I I I I I I VSS 1 40 OUTPUT BIT 18 B B B B B B B B B U UT U UT U UT U UT U OUTPUT BIT 17 2 39 OUTPUT BIT 19 T T T T T T T T T U U U U S . U U U U U OUTPUT BIT
in „C-Control: xdimensionale Variablen“ · Softwareentwicklung ·
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m5451.pdf
. REV. 2 April 2004 1/12 M5450, M5451 Figure 2. Pin Connection 4 5 6 7 8 9 0 1 2 1 1 1 1 1 1 2 2 2 I I I I I I I I I VSS 1 40 OUTPUT BIT 18 B B B B B B B B B U UT U UT U UT U UT U OUTPUT BIT 17 2 39 OUTPUT BIT 19 T T T T T T T T T U U U U S . U U U U U OUTPUT BIT
in „S: STM - M5451, MM5451B7 Bezugsquelle?“ · Mikrocontroller und Digitale Elektronik ·
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hct541.pdf
Input 4.5 2.0 2.0 2.0 V Voltage to 5.5 V IL Low Level Input 4.5 0.8 0.8 0.8 V Voltage to 5.5 VOH High Level VI= IO=-20 A 4.4 4.5 4.4 4.4 Output Voltage VIH 4.5 V or IO=-6.0 mA 4.18 4.31 4.13 4.10 V IL V OL Low
in „High Voltage Programmer“ · Mikrocontroller und Digitale Elektronik ·
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CP2102.pdf
Output High Voltage OH = –10 µA VDD – 0.1 — — VOH OH = –3 mA VDD – 0.2 — — V IOH = –10 mA — VDD – 0.4 — Output Low Voltage IOL= 10 µA — — 0.1 VOL OL = 8.5 mA — — 0.4 V I = 25 mA — 0.6 — OL Input High Voltage VIH 0.7 x DD — — V Input Low Voltage VIL — — 0.6 V Table
in „USB to UART CP2102 Schema“ · Mikrocontroller und Digitale Elektronik ·
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CP2102-9.pdf
Output High Voltage OH = –10 µA VDD – 0.1 — — VOH OH = –3 mA VDD – 0.2 — — V IOH = –10 mA — VDD – 0.4 — Output Low Voltage IOL= 10 µA — — 0.1 VOL OL = 8.5 mA — — 0.4 V I = 25 mA — 0.6 — OL Input High Voltage VIH 0.7 x DD — — V Input Low Voltage VIL — — 0.6 V Table
in „[V] 25St. Silabs CP2102N (QFN24) USB to UART Bridge (10St für 12€)“ · Markt ·
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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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pe12864wrm-026-l-q.pdf
LED Backlight Maximum Ratings Item Symbol Conditions Min. Max. Unit Forward Current IF Ta =25 ▯ - 50 mA Reverse Voltage VR Ta =25 ▯ - 5 V Electrical / Optical Characteristics Ta =25 ▯ Item Symbol Conditions Min. Typ. Max. Unit Forward Voltage VF IF= 40 mA 4.8 5.0 5.2 V Reverse Current IR VR = 3 V - - 0.1 ▯ A Average Brightness IV 55 80 - cd/m 2 (with LCD) IF= 40 mA Uniformity ▯ B 70 - - % (With LCD) *1 CIE Color Coordinate X IF= 40 mA 0.30 0.33 0.36 - (With LCD) Y 0.31 0.34 0.37 Color White *1 ▯ B=B(min) / B(max) PE12864WRM-026-L-Q VER.0 Page10 2. MODULE STRUCTURE
in „Display von I-Radio wurde langsam immer dunkler.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon_ITS436L2-1168586.pdf
to 30% V OUT,R L 12 Ω , Slew rate off -dV/dtoff 0.1 -- 1 V/µs 70 to 40% V OUT, RL= 12 Ω , Operating Parameters Operating voltage Tj=-40 V bb(on) 4.75 -- 41 V T j+25...+150°C: -- 43 Overvoltage protection 7) T j-40°C: V bb(AZ) 41 -- -- V Ibb40 mA Tj=25...+150°C: 43 47 52 8) Standby current (pin 3) T=j40...+25°C : bb(off) -- 5 8 µA V IN; see diagram on page 9 Tj 150°C: -- -- 25 Off-State output current (included in I bb(off) L(off) -- 1 10 µA V IN=0 ) Operating current , V =5IN GND -- 0.8 1.4 mA 6) not
in „ITS436L2 Verfügbarkeit oder Alternative“ · Analoge Elektronik und Schaltungstechnik ·
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Bourns.pdf
45 = 45 mm 01 = 100 mm B Series Tapers 30 = 30 mm 60 = 60 mm 100 B Lever Length (5B) 90 10 = 10 mm )4 )B 15 = 15 mm (4 (2 19 = 19 mm ) 80 ;3 1 3) B)B LED Color 0 ( (1 70 R = Red A = Amber X O = Orange W = White - 3 s 60 G = Green a l i i Detent Option r r 50 0 = No Detent T s s 40 1 = Center Detent c
in „Potentiometer Symbol mit 4 Anschlüssen (Kenwood GE-1100)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SG6105A.pdf
5 A — P o 5.7 2.6 00 w e r ) 5.5 2.5 50 S A ) u ( ( p P 5.3 F 2.5 00 l - R y C V S I u 5.1 2.4 50 p e r 4.9 2.4 00 v -40 -25 -10 5 20 35 50 65 80 95 110 125 -40 -25 -10 5 20 35 50 65 80 95 110 1 25 s o Temperature (°C) Temperature (°C) + R Figure
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PDF
AT77C101B.pdf
Digital Outputs Logic compatibility CMOS (1) Logic “0” voltage VOL I 0.6 V (1) Logic “1” voltage VOH I 2.4 V Note: 1. With I = 1 mA and I = -1 mA OL OH 7 2150B–BIOM–09/03 Table 6. 5 V Power Supply The following characteristics are applicable to the operating temperature -40°C ≤ Ta ≤ +85°C Typical conditions
in „Atmel Fingerchip —> welches Flexkabel?“ · Mikrocontroller und Digitale Elektronik ·
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bs208.pdf
scale DIMENSIONS (mm are the original dimensions) UNIT A b b1 c D d E e e1 L L1(1) 5.2 0.48 0.66 0.45 4.8 1.7 4.2 14.5 mm 5.0 0.40 0.56 0.40 4.4 1.4 3.6 2.54 1.27 12.7 2.5 Note 1. Terminal dimensions within this zone are uncontrolled to allow for flow of plastic and terminal irregularities. OUTLINE REFERENCES
in „Mosfet BS208 sperrt nicht bei >3V“ · Analoge Elektronik und Schaltungstechnik ·
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s101s06v_e.pdf
R L30Ω − − 15 mA 10 Isolation resistance R ISO DC500V, 40 to 60%RH 10 − − Ω Zero cross voltage V OX IF=15mA − − 35 V V Drms)=100V, AC50Hz S101S06V I (rms)=1.5A, Resistance load, I =20mA − − 10 TransferTurn-on time ton
in „Netztrafo, SSR und Zerocrossing, kann das funktionieren?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ST-L6561-Datasheet.pdf
SECTION ISTART-U 8 Start-up Current before turn-on CC =11V) 20 50 90 µA Iq 8 Quiescent Current 2.6 4 mA ICC 8 Operating Supply Current C L 1nF @ 70KHz 4 5.5 mA in OVP condition V = 2.7V 1.4 2.1 mA pin1 Iq 8 Quiescent Current V PIN5≤150mV, VCC > VCC off 1.4 2.1 mA 8 V PIN5≤ 150mV, VCC< VCC off 20 50
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PDF
datasheet.pdf
M 1.30 D D N 2.54 KIA7905 O 4.50Ź0.20 -35 P 6.80 KIA7915 Input Voltage VIN V N N Q 2.60Ź0.20 KIA7918 H R 10Ɓ -40 S 25Ş KIA7924 T T T 5Ş U 0.5 Power Dissipation-1 F 1.3 P W O 1 2 3 V 2.60Ź0.15 (No Heatsink) D1 Q 1. GND PI 2.0 2. INPUT
in „Denon AVR 1509 Spannungsregler und Dionen getauscht, jedoch weiterhin nicht funktionstuechtig“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Selbstbau_Impulswahl_auf_Tonwahl_Konverter_20200810h.pdf
auf Tonwahl Konverter. von Matthias S. (Firma: matzetronics) (mschoeldgen) 03.08.2020 08:40 Einfach mal Application Note AVR314 lesen (heute Microchip AN_1982) https://www.microchip.com/wwwAppNotes/AppNotes.aspx?appnote=en591264 Hier werden
in „Anmeldezwang JA oder NEIN Umfrage“ · www.mikrocontroller.net ·
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PDF
SC51P66E04_Datasheet_1.20190628115453636973.pdf
. Max. Unit Typical condition: V DD.0V, 25°C, all IO output low, no load. Operating voltage V DD 2.4 5.0 5.5 V MClk=1MHz - 0.6 - Operating Current, MClk=2MHz - 0.8 - considering the DD mA MClk=4MHz - 1.25 - temperature MClk=8MHz - 2.2 - MClk=1MHz - 0.4 - MClk=2MHz - 0.44 - mA Idle current IIDLE MClk
in „Welche IC's / Funktion Mittelabgriff Akkupack ?“ · Analoge Elektronik und Schaltungstechnik ·
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DatenblattDisplay.pdf
missing lines in normal Naked eyes/ MA segment display testers Image The previous picture stays in the Naked eyes/ retention next picture.Disappear time <10s, MA (sticking) OK; time>10s, NG testers Naked eyes/ Flicker Not accepted MA testers
in „Display zeigt Fehler in Spalten auf halben Bildschirm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HDSP2112_1x8_Dotmatrix_LED_parallel.pdf
2.0 V DD V +0.3 InputVoltage Low VIL GND 0.8 V -0.3V OutputVoltage High VOH 2.4 V VDD = 4.5V, OH = -40 μA OutputVoltage Low VOL 0.4 V VDD = 4.5V, D 0D 7 OL = 1.6 mA OutputVoltage Low VOL 0.4 V VDD = 4.5V, CLK I = 40 μA OL High Level Output IOH -60 mA VDD = 5.0V Current Low Level
in „[V] Intelligente LED-Matrix-Displays, HDSP 2112, SCF 5740, PD 2435“ · Markt ·
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PDF
3200.pdf
Abgleich Stellbereich Spannung 30 V 10 V 2 W8 Abgleich Stellbereich Spannung 10 V Bereichsschhalter S2 Anzeigeumschalter S3 300 mA 3 W28 Abgleich Strombegrenzung 300 mA 50 mA 4 W24 Abgleich Strombegrenzung 50 mA Kontakt 2 10 V 300 mA Kontakt 1 Spannung 30 V 5 W10 Abgleich Anzeige 30 V Bereich Kontakt
in „Gefundene neue Serviceanleitung Statron 3200“ · Offtopic ·
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multimec-5-series-switches.pdf
25⁰C) Voltage forward Typ. V 2.1 2.1 2.1 3.8 2.0 2.1 2.0 2.1 2.0* 2.3*** 2.0*** Max. V 2.8 3.0 3.0 4.3 3.0 2.8 2.6 2.8 2.4* 2.5*** 2.4*** Current reverse (VR=5V) μA 2 10 10 50 10 2 2 2 10 10 10 Wave length nm 460 563 585 NA 650 565/590 630/565 625/590 570 587 624/632 Spread Δnm 40 40 40 NA 40 35 35
in „[S] Beleuchtete Navimec Navigationskreistaster für Prototypenherstellung“ · Markt ·
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PDF
LT1019.pdf
TJMAX 100°CJAθ = 130°C/W(N) T = 150°C, θ = 150°C/W, θ = 45°C/W TJMAX 100°CJAθ = 130°C/W(S) JMAX JA JC ORDER PART ORDER PART S8 NUMBER NUMBER PART MARKING LT1019AMH-10 LT1019ACH-5 LT1019ACN8-4.5 LT1019AMH-2.5 LT1019ACN8-10 1910 LT1019MH-10 LT1019CH-5 LT1019MH-2.5 LT1019CN8-10 LT1019CN8-4.5
in „Referenz Chip LT1019 / Heizung“ · 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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PDF
doc4688.pdf
> 1.8V V 2.3 2.5 2.9 V DD FDon Field-off detection voltage VDD > 1.8V VFDoff 0.8 V Voltage drop at S = 0.5 mA, power-supply switch VBatt 2 V V SD 150 mV Coil Inputs: Coil 1 and Coil 2 Coil input current ICI 20 mA Input capacitance CIN 30 pF Coil voltage stroke during V > 5V CU VCMS 1.8 2.3 4.0 V modulation
in „Die I2C Schnittstelle eines PIC16F876A initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CY7C1041DV33-10ZSXI.pdf
10 (Industrial) –12 (Automotive) Unit Maximum Access Time 10 12 ns Maximum Operating Current 90 95 mA Maximum CMOS Standby Current 10 15 mA Pin Configuration Figure 1. 44-Pin SOJ/TSOP II A0 1 44 A 17 A1 2 43 A 16 A 3 A 2 42 15 A3 4 41 OE A4 5 40 BHE CE 6 39 BLE IO 7 38 IO 0 15 IO1 8 37 IO14 IO2 9 36
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S202E01.pdf
mA current S202SE2/S216SE2 V D = 6V, R L = 30 - - 8 Transfer 10 Isolation resistance R ISO DC500V, 40 to 60 %RH 10 - - charac- S202SE1/S216SE1 - - 1 teristics Turn-on time ton AC60Hz ms S202SE2/S216SE2 - - 9.3 Turn-off time toff AC60Hz - - 9.3 ms Thermalresistance S202SE1/S202SE2 - 4.5 - (Betweenjunctionandcase ) Rthj - c - ˚C/W S216SE1/S216SE2 - 3.3 - Thermalresistance R thj - a - - 40 - ˚C/W (Betweenjunctionandambience ) *6 dI /dt = -4.0A/ms S202SE1/ S202SE2 )
in „suche Datenblatt Solid State Relais“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S202SE_S216SE2_SHA.pdf
mA current S202SE2/S216SE2 V D = 6V, R L = 30 - - 8 Transfer 10 Isolation resistance R ISO DC500V, 40 to 60 %RH 10 - - charac- S202SE1/S216SE1 - - 1 teristics Turn-on time ton AC60Hz ms S202SE2/S216SE2 - - 9.3 Turn-off time toff AC60Hz - - 9.3 ms Thermalresistance S202SE1/S202SE2 - 4.5 - (Betweenjunctionandcase ) Rthj - c - ˚C/W S216SE1/S216SE2 - 3.3 - Thermalresistance R thj - a - - 40 - ˚C/W (Betweenjunctionandambience ) *6 dI /dt = -4.0A/ms S202SE1/ S202SE2 )
in „Mit welchen Bauteil 230V / 16A über µC regeln?“ · Mikrocontroller und Digitale Elektronik ·
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S202SE_S216SE2_SHA.pdf
mA current S202SE2/S216SE2 V D = 6V, R L = 30 - - 8 Transfer 10 Isolation resistance R ISO DC500V, 40 to 60 %RH 10 - - charac- S202SE1/S216SE1 - - 1 teristics Turn-on time ton AC60Hz ms S202SE2/S216SE2 - - 9.3 Turn-off time toff AC60Hz - - 9.3 ms Thermalresistance S202SE1/S202SE2 - 4.5 - (Betweenjunctionandcase ) Rthj - c - ˚C/W S216SE1/S216SE2 - 3.3 - Thermalresistance R thj - a - - 40 - ˚C/W (Betweenjunctionandambience ) *6 dI /dt = -4.0A/ms S202SE1/ S202SE2 )
in „atmega + solid state relais 100Watt ?“ · Mikrocontroller und Digitale Elektronik ·
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TJA1041.pdf
(HBM) pins CANH, CANL and SPLIT −6 +6 kV all other pins −4 +4 kV PD(TXD-RXD) propagation delay TXD to RXD VSTB = 0 V 40 255 ns T virtual junction temperature −40 +150 °C vj 2004 Feb 20 3 Philips Semiconductors Product specification High speed CAN transceiver
in „I2C vs CAN vs Ethernet“ · Mikrocontroller und Digitale Elektronik ·
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lm3421.pdf
COILCRAFT MSS1278-223MLB 2 Q1, Q2 NMOS 60V 8A VISHAY SI4436DY 1 Q3 NMOS 60V 260mA ON-SEMI 2N7002ET1G 1 Q4 PNP 40V 200 mA FAIRCHILD MMBT5087 1 Q5 PNP 150V 600 mA FAIRCHILD MMBT5401 1 Q6 NPN 300V 600 mA FAIRCHILD MMBTA42 1 Q7 NPN 40V 200 mA FAIRCHILD MMBT6428 1 RCSH 12.4 kΩ 1% VISHAY CRCW080512K4FKEA 1 RF
in „Spule Dimensonierung Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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BF245abc.pdf
MHz − 250 − S gos output conductance VDS = 15 V; VGS = 0; f = 200 MHz − 40 − S y forward transfer admittance V = 15 V; V = 0; f = 1 kHz 3 − 6.5 mS fs DS GS VDS = 15 V; VGS = 0; f = 200 MHz − 6 − mS yrs reverse
in „Welche Steilheit hat ein BF245C?“ · Analoge Elektronik und Schaltungstechnik ·