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Datei
radio.c
*************************************************************************** void volume_up(void) //DS1803 Volume control + { if(volume<255) { if((volume>=210) && (volume<241))volume=volume+15; if((volume>=90) && (volume<210))volume=volume+10; if((volume>=30) && (volume<90))volume=volume+5; if((volume
in „OLED RDS Radio mit SI4735 + AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PG24064LRU-ETA-H_OK_.pdf
Note 3 Response time(rise) Tr θ=5°, ∅ =0° - 140ms 200ms Note 4 Response time(fall) Tf θ=5°, ∅ =0° - 300ms 500ms Note 4 Standard Parameter Symbol Temperature (°C) Unit Min Typ Max -20 14.3 14.7 15.1 Driving voltage VOP 25 13.2 13.6 14.0 V 70 12.0 12.4 12.8 POWERTIPTECHNOLOGY CORPORATION DISPLAY DEVICES
in „Informationen gesucht: LCD-Display HG24501“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mp2307.pdf
V/V Error Amplifier Transconductance G EA ∆IC= ±10µA 820 µA/V (5) High-Side Switch On-Resistance R DS(ON)1 100 mΩ Low-Side Switch On-Resistance(5) R DS(ON)2 100 mΩ High-Side Switch Leakage Current VEN = 0V, SW = 0V 0 10 µA Upper Switch Current Limit Minimum Duty Cycle 4.0 5.8 A Lower Switch Current Limit
in „Spannungsregelung mit MP1584 und MP2307“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mp2307.pdf
V/V Error Amplifier Transconductance G EA ∆IC= ±10µA 820 µA/V (5) High-Side Switch On-Resistance R DS(ON)1 100 mΩ Low-Side Switch On-Resistance(5) R DS(ON)2 100 mΩ High-Side Switch Leakage Current VEN = 0V, SW = 0V 0 10 µA Upper Switch Current Limit Minimum Duty Cycle 4.0 5.8 A Lower Switch Current Limit
in „Step Down - Stabil 5V 3A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mp2307.pdf
V/V Error Amplifier Transconductance G EA ∆IC= ±10µA 820 µA/V (5) High-Side Switch On-Resistance R DS(ON)1 100 mΩ Low-Side Switch On-Resistance(5) R DS(ON)2 100 mΩ High-Side Switch Leakage Current VEN = 0V, SW = 0V 0 10 µA Upper Switch Current Limit Minimum Duty Cycle 4.0 5.8 A Lower Switch Current Limit
in „Empfehlung Step Down Converter IC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Peavey_Semiconductors_Cross_Ref_2009.pdf
70400160 HALF BRIDGE FEP16GT 70400161 HALF BRIDGE B-400* IR20F-20 GEA-327B 70400400 10A, 200V STUD P-300D 1N5402, 1N5403 70400502 200V, 3 AMP MR-502 1N5403, 1N5402 70400502 200V, 3 AMP BB-619A SURFACE MOUNT 70400619 TUNING DIODE BAR -74S SURFACE MOUNT 70400740 G.P. 1N747A 70400747 3.6V, 5% ZENER 1N 751A
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Peavey_Semiconductors_CrossRef_2010.pdf
70400160 HALF BRIDGE FEP16GT 70400161 HALF BRIDGE B-400* IR20F-20 GEA-327B 70400400 10A, 200V STUD P-300D 1N5402, 1N5403 70400502 200V, 3 AMP MR-502 1N5403, 1N5402 70400502 200V, 3 AMP BB-619A SURFACE MOUNT 70400619 TUNING DIODE BAR -74S SURFACE MOUNT 70400740 G.P. 1N747A 70400747 3.6V, 5% ZENER 1N 751A
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Playtronic_NTL05-_Netzgeraet.pdf
Transtormatoi,nmatl-schwarzemuteilen, gopriitt unabgeglichennur DM 244;- minium-Gehause (Mab: 100 x 300 x 200 Alu- iHxBxTl),lnslrumentfl usw. nurDM274,-mm Fertiggeral,betriebsbenit nurDM432,- I L trErr-r rE qmr=h *rS,,r"rb""* f I -l-..]----lJ !}i0ri;;;ii;,;; I 62 14,-DM/satz =':t--1 Fiir allGerate sender
in „Playtronic ptm elektronik - NTL05 - Handbuch- o. Serviceunterlagen gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ST7567A_V1.2a.pdf
10 2 ST7567A 10 15 COM20 9 9 93 771 Chip Size 4214 x 624 ± 40 COM16 9 95 COM18 20 80 Chip Thickness 300 70 VDD3 CO M4 VDD2 CO M0 COM2 VDD1 15 15 Bump Height 10 14 105 COMS2 SEL2 SEGG2 16 SEG1 VSSL Bump Size 10 SEG3 SEL1 VDDH SI2 PAD No. Size VSSL PSB 71~91,248~268 115X12 VDDH C86 92~103,104~235, 236~247
in „LCD mit ST7567A und I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sony_ht-ct260h.pdf
7 8 9 RX_AVDD33 VDD_PLL VDDE EP3V3 HDMI BOARD (1/2) FB80 FB14 VDDE R1532 3V3_Repeater 3V3_Repeater 300/200mA C980 C969 C970 C971 300/200mA HD_STB3.3V 3V3_Repeater V V V V C953 C968 3V3_Repeater A / Y Y Y V V D562 MBRX140/40V/1A 0 R1533 V V V V Y 5 C984 C973 C974 C975 C976 / 2 2 2 V V C972 F F F F 1 2
in „(V) 2 Platinen aus einer Sony Soundbar und Nixie Röhren“ · Markt ·
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PDF
7.5inch-e-paper-specification.pdf
PARAMETER CONDITIONS MIN TYPE MAX UNIT Note Note R Reflectance White 30 35 - % 9-1 Gn 2Grey Level - - DS+(WS-DS)xn(m-1) - L* - CR Contrast Ratio indoor 8 - - - Panel’s life 0℃~50℃ 1000000 times or 5 years Note 9-2 WS: White state, DS: Dark state Gray state from Dark to White : DS、WS m: 2 Note 9-1: Luminance
in „7.5" Waveshare E-Parper ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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sc4901.pdf
3.50 V A 7.800 ( 3.00 t 7.700 t 2.50 n s e 7.600 f 2.00 u O C 7.500 p 1.50 n 7.400 A 1.00 c t s 7.300 e 0.50 i r Q 7.200 u 0.00 C -0.50 7.100 7.000 -1.00 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 90 10 11 12 13 14 15 16 17 18 19 20 AVCC Volts Temperature (°C) Internal Reference vs Temperature External
in „Schaltplan für Aktivgleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
D15G14E_14_030526.pdf
setup time D0 to D7 tDS6 - 15 - Data hold time tDH6 25 - Read access time tACC6 - 250 CL=100pF Output disables time tOH6 10 70 Note1 The input signal rise time and fall time (t tf are specified less than 10ns. Note2 All timing
in „Nokia LCD 3510“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Keysight-Agilent-HP-1142A.pdf
Specifications Recommended Agilent Model/Part Function Generator 2.5 kHz, 1p-p 33120A Oscilloscope 300 MHz at 1 mV/div 54830B Signal Generator 200 MHz at ≈ 300 mVrms 8648A Test Board No substitute 01141-66504 Cables (2) BNC, 50 Ω 10503A Adapter Type N (m) to BNC (f) 1250-0780 Probe Preparation The probe
in „Isolierter Tastkopf, Isolated Oscilloscope Probe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schmitt-Trigger_641279.pdf
MIcroPak is a trademark of Fairchild Semiconductor Corporation. © 2004 Fairchild Semiconductor CorporatiDS012176 www.fairchildsemi.com 4 1 Z Absolute Maximum Ratings (Note 1) Recommended Operating S 7 Supply Voltage (V CC ) −0.5V to + 6V Conditions (Note 2) C DC Input Voltage (V ) IN −0.5V to + 6V Supply
in „Steile Flanke erzeugen“ · Mikrocontroller und Digitale Elektronik ·
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SCANSTA476.pdf
equipment V −40˚C to +85˚C. l a Block Diagram g e M o i o r 20083521 © 2005 National Semiconductor CorporatDS200835 www.national.com 6 4 A Connection Diagram T S A C S 20083522 DAP = GND (Top View) Pin Descriptions Pin No. Symbol Description ANALOG I/O 16 A0 Analog input 0. This signal can range from 0V toREF
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PDF
LM334.pdf
10k , 1% ZO 100 R3 = 600 R4 Output impedance of the LM134, LM234, LM334 at the R1 = 15k − Ro R2 = 300 ”ADJ” pin is approximate16 where Rois the equiva- R3 = 100 lent external resistance connected to the V pin. This R4 = 4.5k negative resistance can be reduced by a factor of 5 or C1 = 2.2nO more by inserting
in „Konstantstromquelle nicht konstant“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTV-356T.pdf
Photocoupler Product Data Sheet LTV-356T Spec No.: DS70-2001-010 Effective Date: 05/28/2014 Revision: K LITE-ON DCC RELEASE BNS-OD-FC001/A4 LITE-ON Technology Corp. / Optoelectronics No.90,Chien 1 Road, Chung Ho, New Taipei City 23585, Taiwan, R.O.C. Tel
in „1500V 8A mit MOSFET schalten“ · Analoge Elektronik und Schaltungstechnik ·
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NT7533Lcd.pdf
time 40 - - ns tAS6 Address setup time 40 - - ns tDS6 Data setup time 160 - - ns tDH6 Data hold time 40 - - ns tACC6 Access time - - 250 ns CL=15pF tOH6 Output disable time 10 - 120 ns CL=15pF tEWHR Enable H pulse width (/RD) 200 - - ns tEWHW Enable H
in „Seriell (4-Wire)-LCD-Ansteuerung mit NT7533“ · Mikrocontroller und Digitale Elektronik ·
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SitePlayer_Software_Manual.pdf
4 bytes then the type is long, and more than 4 bytes, the type is string. Objectname DS 12 ;defines a 12 character string Objectint DS 2 ;defines an integer ORG [value] – Define Location of Objects Sets the memory location where the objects will be created. ORG 200h Object1 db 0 Object2
in „RS232 nach HTTP/HTML Konverter“ · Mikrocontroller und Digitale Elektronik ·
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an920-d.pdf
, out2= 300 mA Δ = 72 mV or ± 0.3% Load Regulation V out2 Vin 20 V, Iout2= 100 to 300 mA, Iout1= 5.0 A Δ = 12 mV or ± 0.05% Output Ripple V out2 Vin 28 V, Iout1= 5.0 A, out2= 300 mA 25 mV p−p Short Circuit Current
in „MC34063 als Step Up arbeitet nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN920-D_MC34063_Theory_and_Applications_.pdf
to 30 V, I = 5.0 A, I = 300 mA = 72 mV or 〉 0.3% out2 in out1 out2 Load Regulation V V = 20 V, I = 100 to 300 mA, I = 5.0 A = 12 mV or 〉 0.05% out2 in out2 out1 Output Ripple V V = 28 V, I = 5.0 A, I = 300 mA 25 mV out2 in out1
in „Schaltregler MC34063 - Wie berechnet man CT?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN920-D.PDF
to 30 V, I = 5.0 A, I = 300 mA = 72 mV or 〉 0.3% out2 in out1 out2 Load Regulation V V = 20 V, I = 100 to 300 mA, I = 5.0 A = 12 mV or 〉 0.05% out2 in out2 out1 Output Ripple V V = 28 V, I = 5.0 A, I = 300 mA 25 mV out2 in out1
in „Frage zu Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC34063_AN920-D.PDF
to 30 V, I = 5.0 A, I = 300 mA = 72 mV or 〉 0.3% out2 in out1 out2 Load Regulation V V = 20 V, I = 100 to 300 mA, I = 5.0 A = 12 mV or 〉 0.05% out2 in out2 out1 Output Ripple V V = 28 V, I = 5.0 A, I = 300 mA 25 mV out2 in out1
in „Spule für Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN920-D.pdf
, out2= 300 mA Δ = 72 mV or ± 0.3% Load Regulation V out2 Vin 20 V, Iout2= 100 to 300 mA, Iout1= 5.0 A Δ = 12 mV or ± 0.05% Output Ripple V out2 Vin 28 V, Iout1= 5.0 A, out2= 300 mA 25 mV p−p Short Circuit Current
in „Spannungsregelung mit Step-Up/Down Regler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN920-D_MC34063_Theory_and_Applications_.pdf
to 30 V, I = 5.0 A, I = 300 mA = 72 mV or 〉 0.3% out2 in out1 out2 Load Regulation V V = 20 V, I = 100 to 300 mA, I = 5.0 A = 12 mV or 〉 0.05% out2 in out2 out1 Output Ripple V V = 28 V, I = 5.0 A, I = 300 mA 25 mV out2 in out1
in „MC34063 Strombegrenzung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN920-D.PDF
, out2= 300 mA Δ = 72 mV or ± 0.3% Load Regulation V out2 V in20 V, I out2= 100 to 300 mA, out1= 5.0 A Δ = 12 mV or ± 0.05% Output Ripple V out2 V in28 V, I out1= 5.0 A,out2= 300 mA 25 mV p−p Short Circuit Current
in „Suche Buck-Boost für LiIon-Spannung auf 3,3V“ · Analoge Elektronik und Schaltungstechnik ·
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at27c512.pdf
OE/VPP Setup Time 2 s t OE/V Hold Time 2 s OEH PP Input Rise and Fall Times t Data Setup Time 2 s DS (10% to 90%) 20ns t Address Hold Time 0 s AH t Data Hold Time Input Pulse Levels 2 s DH 0.45V to 2.4V CE High to tDFP Output Float Delay2) 0 130 ns Input Timing Reference Level t V Setup Time 0.8V to
in „Eprom Vergleichstyp“ · Mikrocontroller und Digitale Elektronik ·
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LM75.pdf
+125 ⋅C Storage Temperature Range STG) –65 to +150 ⋅C Lead Temperature Range (Soldering, 10 sec) +300 ⋅C Thermal Resistance (Junction to Ambient) 250 ⋅C/W * Maximum Ratings are those values beyond which damage to the device may occur. ELECTRICAL CHARACTERISTICS (Specifications Measured Over Operating
in „TWI (I2C) Problem bekomme den TWI nicht ans laufen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM75_-_TempSensor.PDF
+125 ⋅C Storage Temperature Range STG) –65 to +150 ⋅C Lead Temperature Range (Soldering, 10 sec) +300 ⋅C Thermal Resistance (Junction to Ambient) 250 ⋅C/W * Maximum Ratings are those values beyond which damage to the device may occur. ELECTRICAL CHARACTERISTICS (Specifications Measured Over Operating
in „LM75 mit MSP430F1611“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PSpice_LibraryguideOrCAD.pdf
Rectifiers DLM10E DLM10E JDIODE.OLB Diodes and Rectifiers DPA05 DPA05 JDIODE.OLB Diodes and Rectifiers DS135C DS135C JDIODE.OLB Diodes and Rectifiers DS135D DS135D JDIODE.OLB Diodes and Rectifiers DS135E DS135E JDIODE.OLB Diodes and Rectifiers DS441 DS441 JDIODE.OLB Diodes and Rectifiers DS442 DS442 JDIODE.OLB Diodes and Rectifiers DS442X DS442X JDIODE.OLB Diodes and Rectifiers DS446 DS446 JDIODE.OLB Diodes and Rectifiers DS462 DS462 JDIODE.OLB Diodes and Rectifiers DS464 DS464 JDIODE.OLB Diodes and Rectifiers DSA010 DSA010 JDIODE.OLB
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IS25LP128.pdf
INPUT/OUTPUT TIMING (1) Figure 9.2 SERIAL INPUT/OUTPUT TIMING (Normal Mode) CEH CE# CS CH SCK CKH CKL tDS DH SI VALID IN VALID IN tV OH tDIS HI-Z HI-Z SO VALID OUTPUT Note1. For SPI Mode 0 (0,0) (1) Figure 9.3 SERIAL INPUT/OUTPUT TIMING (DTR Mode) CEH CE# CS CH SCK CKH CKL t t DS DH SI VALID IN VALID IN
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PDF
S5K433CA.PDF
width tWH SCL 800 - - ns Clock low pulse width tWL SCL 1000 - - Clock rise/fall time R Ft SCL, SDA - - 300 Data set-up time t SDA to SCL 300 - - DS Data hold time t SDA to SCL 1200 - - DH START condition hold time t - 4 T STH MCLK t STOP condition setup time STS - 4 - - STOP to new START gap GSS - 8 - -
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Datei
life.lst
;-------------------------------------------------------- 59 .area _DATA 0000 60 _feld:: 0000 61 .ds 3840 0F00 62 _n_cells:: 0F00 63 .ds 2 0F02 64 _rreg:: 0F02 65 .ds 1 66 ;-------------------------------------------------------- 67 ; ram data 68 ;----------------------------------------------------
in „Conways Game of Live zu langsam auf Z80“ · Softwareentwicklung ·
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PDF
FAN7621-36163.pdf
improves productivity, while improving - performance. The FAN7621 includes a high-side gate- r Up to 300kHz Operating Frequency drive circuit, an accurate current controlled oscillator, Pulse Skipping for Frequency Limit (Programmable) frequency limit circuit, soft-start, and built-in protection at Light-Load
in „Verbindung einer Leuchtdiode mit einem Fototransistor erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Arduino_Project_Handbook_25_Practical_Projects_to_Get_You_Started.pdf
R egister Arduino 1 15: Q0 8: GND GND 2 1: Q1 9: SO Shift 4 DS 3 2: Q2 10: MR +5V 4 3: Q3 11: SH-CP 13 5 4: Q4 12: ST-CP 10 6 5: Q5 13: OE GND 7 6: Q6 14: DS Shift 1 SO 8 7: Q7 16: VCC +5V Red LED Pins Shift RE gister 4 Pins LED Shift Shift Matrix R egister R egister Arduino 9 15: Q0 8: GND GND 10 1: Q1 9: SO Shift 3 DS 11 2: Q2 10: MR +5V 12 3: Q3 11: SH-CP 13 13 4: Q4 12: ST-CP 10 14 5: Q5 13: OE GND 15 6: Q6 14: DS Shift 2 SO 16 7: Q7 16: VCC +5V 214 • p roject 24 5. The Arduino controls the LEDs through three PWM
in „LED Driver mit µC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
max5056.pdf
C above +70°C)........1454mLead Temperature (soldering, 10s)......................................+300°C M Junction-to-Case Thermal ResistanJC (θ.................8.3°C/W – Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings
in „Dual Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TI_TPS92360_Led_Treiber.pdf
) PWM (2 V/DIV) Inductor00 mA/DIV) I Inductor (300 mA/DIV) VOUT (20 V/DIV) VOUT (20 V/DIV) LED (9 mA/DIV) ILED(9 mA/DIV) Time = 2 ms/DIV Time = 2 ms/DIV Figure 8-10. Start-Up Dimming Duty = 50% Figure 8-11. Shutdown Dimming Duty = 100% PWM (2 V/DIV) PWM (2 V/DIV) I (300 mA/DIV) VOUT (5 V/DIV, AC coupled) Inductor Inductor00 mA/DIV) VOUT (20 V/DIV) I (9 mA/DIV) LED LED (9 mA/DIV) Time = 2 ms/DIV Time = 5 ms/DIV Duty = 50% Duty = 1%-100%-1% Figure 8-12. Shutdown Dimming
in „VIN am Konstantstromtreiber?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
038-05058-01-X-MLCC_REVB03_SKIT.pdf
Upper Boundary (Twdu min) = 1360 ms [6] PWRGD_FPD_M2C 1 Reset Delay time (Trst min) = 635 ms R158 DS2 261 2 3 1 2 C 1 2 C Q7 DMN26D0UFB4-7 [4,8] CC_PS_PGOOD 1 R159 DS3 261 2 3 1 2 1 2 Q8 DMN26D0UFB4-7 [6] PWRGD_PL_M2C 1 R160 DS4 261 EEPROM 2 3 1 2 1 2 R255 Q9 0 EEPROM_WC_B_R EEPROM_WC_B [9] DMN26D0UFB4-7 1 2 [5,8] CC_PL_PGOOD U15 M24C64-DRDW8 1 PS_3V3 1 R161 DS5 B R256 261 B 6 1.00K 2 3 1 2 [3,8,11] I2C_SCK_LS 5 SCL 7 2 1 2 [3,8,11] I2C_SDA_LS SDA WC_B 1 C53 1 8 0.1UF PS_3V3 2 E0 VCC 2 25V Q10 3 E1 4 DMN26D0UFB4-7 E2 VSS EEPROM ADDRESS: 0x51 and 0x59 SKIT A
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PDF
BE-412-B-MONITOR-HEIDENHAIN-MANUAL.pdf
Kondendianst 4, Logikeinheit LE 351/355 Logikeinheit ohne Logikplatine mit PLC-Leistungsplatine (PL 300) PLC-Leistungsplatine (PL 300) Typen- und Programm- schilder bei Uteren Logikeinheiten Typenschild STROMVERSORGUNG Typen- und Programm- Typenschild Typenschild schilder bei neueren REGELKREIS-Platine
in „CRT Monitor gegen VGA Monitor tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
drv8312.pdf
otorD river Check for Samples: DRV8312, DRV8332 FEATURES Because of the low R of the power MOSFETs DS(on) • High-Efficiency Power Stage (up to 97%) with and intelligent gate drive design, the efficiency of these motor drivers can be up to 97%, which enables Low R DS(on)MOSFETs (80 mΩ at T = 25°CJ the
in „Versorgung von BLDC für Logic“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HBD855-D_Thyristor_Theory.pdf
accept the output of controlled from a switch or some form of digital logic. +5 V 200 W +5 V 7400 300 150 Ω MOC 115 V ADDRESS MC6820 2N6071 OR 3031 (RESISTIVE MC6821 LOAD) MC68000 MOTOR MPU OR 300 300 Ω MC6846 DATA I/O MOC 230 V 3041 2N6073 (INDUCTIVE LOAD) 1 kΩ +5 V Figure 6.35. M68000 Microcomputer
in „Ansteuerschaltung Thyristor und Triac“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
f_2320312311226304479081.pdf
to D7 tDS8 40 — ns Address hold time tDH8 15 — ns RD access time tACC8 CL = 100 pF — 140 ns Output disable time tOH8 10 100 ns Table 28 (VDD = 1.8 V to 2.7 V, Ta = –40 to 85°C ) Rating Item Signal Symbol Condition
in „Philips GLCD Modul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KS0713.pdf
2835 -1336 74 C1- 1665 -1336 124 COM11 5271 -370 25 VSS -2745 -1336 75 C1- 1755 -1336 125 COM12 5271 -300 26 VDD -2655 -1336 76 C1- 1845 -1336 126 COM13 5271 -230 27 VDD -2565 -1336 77 C2+ 1935 -1336 127 COM14 5271 -160 28 VDD -2475 -1336 78 C2+ 2025 -1336 128 COM15 5271 -90 29 DUTY0 -2385 -1336 79 C2+
in „Dbox LCD HT12538“ · Mikrocontroller und Digitale Elektronik ·
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PDF
wp170.pdf
S To I/O Block D/T Q PLA OR Term PTC CE Latch CK DualEDGE GCK0 GCK1 R CTC GCK2 PTA PTC CTR GSR GND DS090_03_121201 Figure 4:CoolRunner-II Macrocell Table 1: CoolRunner-II Features versus Macrocell Density XC2C32 XC2C64 XC2C128 XC2C256 XC2C384 XC2C512 IEEE 1532 ✔ ✔ ✔ ✔ ✔ ✔ I/O Banks 1 1 2 2 4 4 Clock
in „Reverse Engineering verhindern/erschweren“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
Forum.PDF
DSI1.Clo _N ck 0N DSI PIJ20disp0 NL DS I0 0Cl c k0P DSI0_CN DSI1_CN N LDS I1 0C ck 0P PIJ10disp07 DSI0.Clo _P PCmueoue17 DSI0_CP DSI1_CP PCmueoue1 DSI1.Clo _P PIJ20disp0 8 DSI DSI 8 PIJ10disp08 N LDS I1 0L e3 0P PIJ20disp0 PIJ10disp09 DSI
in „Raspberry Pi Compute Module 3 (Carrier Board)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DTM_GHS_D_99.pdf
a) Montage an der unteren Hinterradgabel mit Laschenanbau (Bild 5) 4 10 X1 80 90 105 Seilhülle 280 300 330 b) Montage an der unteren Hinterradgabel mit Direktanbau (Bild 6). 3 12 T X > 35 mm X2 90 100 115 123 TX > 357 mm Seilhülle 280 300 330 2 14 T XX >39 mmm 1a 16 T X > 43 mm 1 • Der Innendurchmesser
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PDF
TAS5611.pdf
I 7 15 mH LOUTPUTPBTL) 7 10 Nominal 350 400 450 F PWM frame rate selectable for AM interferenceAM1 300 340 380 kHz PWM avoidance; 1% Resistor tolerance. AM2 260 300 335 Nominal; Master mode 9.5 10 10.5 R PWM frame rate programming resistor AM1; Master mode 19.8 20 20.2 kΩ FREQ_ADJ AM2; Master mode 29.7
in „TAS5611 Layout erfahrung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GARMIN-GPS25-xxx.pdf
level (- xVC versions) or RS-232 compatible level (- xVS versions), with user selectable baud rate (300, 600,1200, 2400, 4800, 9600, 19200) 2) NMEA 0183 Version 2.0 ASCII output (GPALM, GPGGA, GPGSA, GPGSV, GPRMC, GPVTG, PGRME, PGRMT, PGRMV, PGRMF, LCGLL, LCVTG) Inputs - Initial position, da te and time
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PDF
GPS25LPSeries_TechnicalSpecification.pdf
level (- xVC versions) or RS-232 compatible level (- xVS versions), with user selectable baud rate (300, 600,1200, 2400, 4800, 9600, 19200) 2) NMEA 0183 Version 2.0 ASCII output (GPALM, GPGGA, GPGSA, GPGSV, GPRMC, GPVTG, PGRME, PGRMT, PGRMV, PGRMF, LCGLL, LCVTG) Inputs - Initial position, da te and time