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PDF
DatenblattDisplay.pdf
ILED - 150 mA Operation temperature Top -20 +70 °C Storage temperature Tst -30 +80 °C Humidity RH - 90%(Max60 °C) RH 3. ELECTRICAL CHARACTERISTICS DC CHARACTERISTICS(at Ta=25°C) Item Symbol Min. Typ. Max. Unit Note Power supply input voltage(TFT Module) VDD 3.0 3.3 3.6 V Power supply current IVDD - 25
in „Display zeigt Fehler in Spalten auf halben Bildschirm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRG4BC30U_IR.pdf
. R VCC = 80%(VCES), GE = 20V, L = 10µH, G = 23Ω, (See fig. 13a) U Pulse width 5.0µs, single shot. S Repetitive rating; pulse width limited by maximum junction temperature. 2 www.irf.com IRG4BC30UPbF 35 For both: Triangular wave: Duty cycle: 50% 30 T J 125°C I T = 90°C ) sink A 25 GPower Dissipation
in „Ersatz für IGBT G4BC30W“ · Analoge Elektronik und Schaltungstechnik ·
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77302_DS.pdf
HGT1S20N60B3S, HGTP20N60B3, HGTG20N60B3 Data Sheet January 2000 File Number 3723.6 40A, 600V, UFS Series N-Channel IGBTs Features The HGT1S20N60B3S, the HGTP20N60B3 and the o • 40A, 600V at T C 25 C HGTG20N60B3
in „Hilfe bei Bauteilsuche“ · Analoge Elektronik und Schaltungstechnik ·
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TC2014.pdf
Low-Noise Operation ation (plus bypass reference), low dropout voltage – typically 45 mV for the TC2014, 90 mV for the • Fast Shutdown Response Time: 60 µsec (Typ.) TC2015, and 140 mV for the TC2185, at full load – and • Overcurrent and Overtemperature Protection fast response to step changes in load. Supply
in „Mcp3551 PT1000 Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INF-8074i.pdf
operations which complement the SNIA's TWG Policies & Procedures to guide the SFF TWG can be found at: http://www.snia.org/sff/specifications/SFF-8032.PDF Suggestions for improvement of this specification will be welcome, they should be submitted
in „SFP - Single Fibre Port Chip Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sheeva-boot.txt
noop registered io scheduler anticipatory registered (default) Serial: 8250/16550 driver $Revision: 1.90 $ 4 ports, IRQ sharing disabled serial8250.0: ttyS0 at MMIO 0xf1012000 (irq = 33) is a 16550A serial8250.0: ttyS1 at MMIO 0xf1012100 (irq = 34) is a 16550A Loading Marvell Ethernet Driver: o Cached descriptors
in „Sheevaplug brauche eine Einführung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WVC-600_SJS_Cert_EN_62109_Report.pdf
:aideng Energy Technology Co., Ltd. Model/Type reference ......................:600, WVC-350, WVC-1200, WVC-300, WVC-295, WVC- 700, WVC-1400 Ratings..............................................:0V, 1-25A, 630W Output: AC110/220V, 5A/2.5A, 590W Page 2 of 25 Report No. SJS20191000217S01 Copy of marking
in „Mikrowechselrichter WVC Zertifikate“ · Haus & Smart Home ·
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PDF
Infineon-BFQ790-DS-v02_00-EN.pdf
gain |S212 – 7.5 – IC= 250 mA Minimum Noise Figure dB Z S Z Sopt Minimum noise figure NF – 2.6 – I =70 mA min C Linearity dBm Z L Z Lopt 1 dBcompression point at output OP1dB – 27 – I =250mA C 3rdorder interceptpoint
in „HF-Ausgangsleistung - Verständnisfrage“ · HF, Funk und Felder ·
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PDF
MCP320412-bitA-DConverterDatasheet.pdf
Temperature (°C) FIGURE 2-19: Gain Error vs. Temperature. FIGURE 2-22: Offset Error vs. Temperature. 100 100 90 VDD = VREF= 5 V VDD = REF = 5 V FSAMPLE= 100 ksps 90 FSAMPLE= 100 ksps 80 80 )70 )70 B60 B60 ( ( R50 R50 VDD = REF = 2.7 V N40 D FSAMPLE= 50 ksps S VDD = VREF= 2.7V F40 30 FSAMPLE= 50 ksps S30 20 20
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PDF
NSI45060JD-D.pdf
Vak) Current Testing 66 )100 A A Vak @ 7.5 V ( Vak @ 7.5 V m 65 TA = 25°C T TA = 25°C ( R = Open E 90 O adj R T 64 R L C U 63 E 80 G T R T T 62 S N D 70 R A R 61 T U S 60 , 60 ,) r ( I e 59 Ir50 0 10 20 30 40 50 60 70 80 90 1 10 100 1000 TIME (s) Radj(W), Max Power 125 mW Figure 6. I vs. R Figure 5.
in „Strombegrenzungs-IC?“ · Analoge Elektronik und Schaltungstechnik ·
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MAX1270-MAX1271B.pdf
NORMALIZED REFERENCE VOLTAGE CHANNEL-TO-CHANNEL OFFSET-ERROR ) vs. TEMPERATURE vs. TEMPERATURE S MATCHING vs. TEMPERATURE 150 0 1.001 0 (0.35 0 A t 1 I BIPOLAR MODE t ( 7 E 7 H 7 N X A A A0.30 A E 130 EXTERNAL M L1.000 M M M U REFERENCE V R0.25 C E O L N0.999 - P 110 R E0.20 S F S N R O O 90 E0.998
in „Max1270 Eingang auf mind. 0,8V ?“ · Mikrocontroller und Digitale Elektronik ·
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E_Grad_kpl.pdf
Partikelplatte 70 LW 0,89 9 Faserplatte porös, 20 SW 0,85 6 unbehandelt Firnis auf Eichenpar- 70 SW 0,90 9 kettboden Firnis auf Eichenpar- 70 LW 0,90-0,93 9 kettboden Firnis matt 20 SW 0,93 6 Gips 20 T 0,8-0,9 1 Gipsputz 17 SW 0,86 5 Gipsputz Gipsplatte, 20 SW 0,90 6 unbehandelt Gipsputz raue Oberfläche
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mic920.pdf
20 45 R I 20 45 R W A W 0 0 A W 0 Gain 0 A D40 35 M D Gain 100Ω M N 100Ω M A S A -20 -45 E A-20 -45 S B30 30 A B -40 -90 A N-40 -90 A I20 Gain P I H A-60 -135 P A Bandwidth 25 G -60 -135 P G G10 -80 -180 -80 -180 0 20 -100 -225 0 200 400 600 800 1000 -1100k 1M 10M 100M-225 100k
in „LTspice - OPAmp Modell aus Datenblatt“ · Analoge Elektronik und Schaltungstechnik ·
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M202SD08HA_-.pdf
P T AN-E-2220 [9/12] M202SD08HA CIRCUIT BLOCK DIAGRAM FIGURE-2 - 2 K o D Y u R G + G 0 w Et - r Ib S s R( 2 g D 0 d 2 , o 7 0 5 - T 1 N I E E R 6 I A G - R I 1 D F D O N A 6 2 3 LG K c E E I E G B H L T ∼ ∼ O C E 1 D 1 TY T / V I T T 0 E R L SU S N D O D X X D S S WS T B R C C 1 l X n E t S I R 7∼ 0 D R L TS V D D D R W S EU + G T B ( V AN-E-2220 [10/12] M202SD08HA DISPLAY CHARACTER CODE FIGURE-3 D7 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 D6 0 0 0 0 1 1 1 1 0 0 1 1 0 0 1 1 D4 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 D3 D2 D1 D0 0 1 2
in „Wer hat zu dieser VFD-Serie Daten(-blätter) ?; M82SD51AA (von Futaba)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon-Application_Note_Discrete_IGBT_in_TO-247PLUS-AN-v02_00-EN.pdf
whichwasnotpossible usingthestandardTO-247-3orTO-247-4,allowing significantfootprintreduction with respecttoTO-264-3at thesametime. TO-247PLUS3pinpackagewillbeidentifiedwithinInfineon’sIGBTnomenclature with theLetter “Q”atthethird position.Thisisindicatedin Figure1. Figure1 Infineon Discrete IGBTs Nomenclature for the
in „2N3055 , was sind aktuelle Alternativen ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pvn012apbf.pdf
Current Derating Curves* Figure 2. Typical Output Capacitance * Derating of ‘ B’ and ‘ C’ connections at +85°C will be 70% of that specified at +40°C and is linear from +40°C to +85°C. 250 2.5 "A" Connection 10mA Control 200 150 C 2 D = 1A o° ) 100 2 V t ( 50 d 1.5 o i D 0 a e r t -50 o 1 o ( V -100 o ILED
in „MOSFET antiseriell als analoger Wechselstromschalter“ · Analoge Elektronik und Schaltungstechnik ·
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MC_product_selection_AN.pdf
flexible to set battery voltage, −ΔV/Δt, −ΔT/Δt, The simple and low cost solution is to charge batteries at a low constant current (e.g. 0.1C or 0.2C). However, charge rate and timer. With the broad range of Microchip’s PIC ®microcontrol- it takes a long time to completely charge and can easily overcharge
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
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Avrisp_Sch.pdf
GND 3 PB7 (SCK) (ADC6) PA6 31 AT90S1200-4SC 4 RESET (ADC7) PA7 30 R5 68K VCC 5 VCC AREF 29 11 2VCC VCC GND 6 GND AGND 28 C11 0R 1 J4 XC1 7 27 2 1 2 1 1 1 3 8 XTAL2 AVCC 26 100N/16V 3 4 9 XTAL1 (TOSC2) PC7 25 R33 5 6 C2 C13 10 PD0 (RXD
in „AVRisp serial upgrade failed“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Avrisp_Sch.pdf
GND 3 PB7 (SCK) (ADC6) PA6 31 AT90S1200-4SC 4 RESET (ADC7) PA7 30 R5 68K VCC 5 VCC AREF 29 11 2VCC VCC GND 6 GND AGND 28 C11 0R 1 J4 XC1 7 27 2 1 2 1 1 1 3 8 XTAL2 AVCC 26 100N/16V 3 4 9 XTAL1 (TOSC2) PC7 25 R33 5 6 C2 C13 10 PD0 (RXD
in „Fragen zu den Tutorials“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Avrisp_Sch.pdf
GND 3 PB7 (SCK) (ADC6) PA6 31 AT90S1200-4SC 4 RESET (ADC7) PA7 30 R5 68K VCC 5 VCC AREF 29 11 2VCC VCC GND 6 GND AGND 28 C11 0R 1 J4 XC1 7 27 2 1 2 1 1 1 3 8 XTAL2 AVCC 26 100N/16V 3 4 9 XTAL1 (TOSC2) PC7 25 R33 5 6 C2 C13 10 PD0 (RXD
in „MEGA8 direkt an schnittstelle?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Avrisp_Schema.pdf
GND 3 PB7 (SCK) (ADC6) PA6 31 AT90S1200-4SC 4 RESET (ADC7) PA7 30 R5 68K VCC 5 VCC AREF 29 11 2VCC VCC GND 6 GND AGND 28 C11 0R 1 J4 XC1 7 27 2 1 2 1 1 1 3 8 XTAL2 AVCC 26 100N/16V 3 4 9 XTAL1 (TOSC2) PC7 25 R33 5 6 C2 C13 10 PD0 (RXD
in „Programmierboard im Selbstbau“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3642fc.pdf
Input Voltage vs Temperature ISET 120 V = 10V 14 14 )110 IN VIN= 10V m 12 D100 12 SLEEP L A A SLEEP H 90 ( 10 ( 10 E 80 N N H R R T 70 R 8 R 8 I C C T 60 L 6 L 6 N 50 P P R U S R 40 N 4 SHUTDOWN I 4 SHUTDOWN C V V K 30 2 E 2 P 20 10 0 0 0 200 400 600 800 1000 1200 5 15 25 35 45 –40 –10 20 50 80 110 R (kΩ
in „Bauteil LDYM N188 817“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ET050000DH6.pdf
4 LowstorageatThe sample should be allowed to s°and at –20 C for 240 hrs ↓ NO ITEM DESCRIPTION High temperatThe sample should be allowed to s°and at +70 C for 240 hrs 1 operation Low temperature 2 operation The sample should be allowed to s°and at
in „AP7000 und ICnova ADB1000: Bisschen wenig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WH1602B-TMI-JT__selbstgesucht_.pdf
VIL1 tr tDDR tDHR DB0 to DB7 VOH1 Valid dataVOH1 VOL1* *VOL1 tcycE NOTE: *VOL1 is assumed to be 0.8V at 2 MHZ operation. Ta=25℃, VDD=5.0± 0.5V Item Symbol Min Typ Max Unit Enable cycle time tcycE 1200 - - ns Enable pulse width (high level) PW EH 140 - - ns Enable rise/fall time tEr Ef - - 25 ns Address
in „Winstar WH1602B LCD-Display am Atmega16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD_WINSTAR_WH1602B-NGJ-JT.pdf
VIL1 tr tDDR tDHR DB0 to DB7 VOH1 Valid dataVOH1 VOL1* *VOL1 tcycE NOTE: *VOL1 is assumed to be 0.8V at 2 MHZ operation. Ta=25℃, VDD=5.0± 0.5V Item Symbol Min Typ Max Unit Enable cycle time tcycE 1200 - - ns Enable pulse width (high level) PW EH 140 - - ns Enable rise/fall time tEr Ef - - 25 ns Address
in „LCD Initialisierung klappt nicht, nur chwarzen Kästchen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
wh1602b-ngj-jt.pdf
VIL1 tr tDDR tDHR DB0 to DB7 VOH1 Valid dataVOH1 VOL1* *VOL1 tcycE NOTE: *VOL1 is assumed to be 0.8V at 2 MHZ operation. Ta=25℃, VDD=5.0± 0.5V Item Symbol Min Typ Max Unit Enable cycle time tcycE 1200 - - ns Enable pulse width (high level) PW EH 140 - - ns Enable rise/fall time tEr Ef - - 25 ns Address
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au-85b.pdf
14 Q4 POR 41 5 GND GND 11 O_DATA5 15 Q5 FLSYNC 40 C C O_DATA7 16 Q6 STANDBY 39 A L D Y Y 17 Q7 38 S S G H V HSYNC 18 TE HSYNC 37 6 7 8 9 1 VSYNC 19 VSYNC NC1 36 VSYNC 20 OGND 34 HSYNC OGND AGND 33 D C 21 AGND 32 S S DGND AGND 22 MGND BYPASS 31 VDD_2.85 2Ω 23 OVDD 30 R1 VDD_2.85 AVDD 1005 NC 29 24 NC
in „pollin kamera au-85“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OM5610_2_1_.pdf
combination of best frequency position). As a consequence the tuning measuring the field strength and the S-curve). By looking at the S-curve the system can distinguish false in-locks system is very fast. The tuning algorithm, which is controlled by a sequential from real in-locks (false in-locks occur on
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PDF
OM5610_2_1_.pdf
combination of best frequency position). As a consequence the tuning measuring the field strength and the S-curve). By looking at the S-curve the system can distinguish false in-locks system is very fast. The tuning algorithm, which is controlled by a sequential from real in-locks (false in-locks occur on
in „[V] FM Tuner OM5610“ · Markt ·
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PDF
OM5610_2_1_.pdf
combination of best frequency position). As a consequence the tuning measuring the field strength and the S-curve). By looking at the S-curve the system can distinguish false in-locks system is very fast. The tuning algorithm, which is controlled by a sequential from real in-locks (false in-locks occur on
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PDF
OM5610.pdf
combination of best frequency position). As a consequence the tuning measuring the field strength and the S-curve). By looking at the S-curve the system can distinguish false in-locks system is very fast. The tuning algorithm, which is controlled by a sequential from real in-locks (false in-locks occur on
in „[V] FM Tuner OM5610“ · Markt ·
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Datei
Copter_Code.txt
bugs in case of yaw reverse at tricopter // Default Set 3 for GAIN_MULTIPLIER // // _KR_v1.3 DualCopter was added. // Fixed bugs at ReadGainPots // // _KR_v1.2 SingleCopter was added. // // _KR_v1.1 Audible arming sound (Mike's source) // PWM refresh rate 495Hz (Mike's & manuLRK's source) // Default Set 2 for GAIN_MULTIPLIER // Calibrate Gyros when mode changed // // _KR_v1.0 Optimized for Korean Blue Board(www.kkmulticopter.kr) // Servo Noise Filter at Tri // Normal
in „RC Empfänger PWM Signal Mosfet Motorregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SIOV_Calculation_2.pdf
voltage 60 V SLOPE = β β 10 2 V = Cl Maximum DC working voltage √2 x 60 V = 85 V R = 0.05 to 0.5 Ω S Varistor voltage 100 V ± 10 % Maximum clamping voltage at 10 A 165 V 10 10-8 10-7 10-6 10-5 10-4 10-3 10-2 10-1 1 10 102 103 104 105 I (A) Maximum non-repetitive current 1200 A Typical V/I curve Leakage
in „Varistor dimensionieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6206.pdf
PROGCL PROGCL pins voltage range -0.3 to +7 V B V Bootstrap peak voltage V =V = V V + 10 V BOOT SA SB S S V , V Input and enable voltage range -0.3 to +7 V IN EN V Voltage range at pins SENSE and SENSEA, A -1 to +4 V VSENSEB SENSE B Pulsed supply current (for eaSh V pin), V =V = V ; S(peak) internally
in „l6206 Datenblatt Fehler?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA114.pdf
100k 1M 1 10 100 1k 10k Frequency (Hz) Frequency (Hz) ® 4 INA114 TYPICAL PERFORMANCE CURVES (CONT) At T = +25°C, V = ±15V, unless otherwise noted. A S SETTLING TIME vs GAIN OFFSET VOLTAGE WARM-UP vs TIME 1200 6 1000 ) 4 µ ) ( G ≥ 100 µ 800 g 2 ( a m C T 600 e 0 g 0.01% a l o e 400 V –2 S 0.1% e f 200
in „Differnezverstärker für Strommessung?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA114.pdf
100k 1M 1 10 100 1k 10k Frequency (Hz) Frequency (Hz) ® 4 INA114 TYPICAL PERFORMANCE CURVES (CONT) At T = +25°C, V = ±15V, unless otherwise noted. A S SETTLING TIME vs GAIN OFFSET VOLTAGE WARM-UP vs TIME 1200 6 1000 ) 4 µ ) ( G ≥ 100 µ 800 g 2 ( a m C T 600 e 0 g 0.01% a l o e 400 V –2 S 0.1% e f 200
in „Messen von Mikrofonpegeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
innoswitch3-ep_family_datasheet.pdf
side of the bridge rectifier for fast AC reset) and the UNDER/OVER INPUT VOLTAGE pin to enable this S: Has Taken No P: Not Switching Control? S: Doesn’t Take Control functionality. This function can be disabled by shorting the UNDER/ OVER INPUT VOLTAGE pin to SOURCE pin. At power-up, after the primary
in „Fritz Repeater 2400“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mcp23008.pdf
address with R/W bit set) is then clocked into the device. The opcode is followed by an address, with at least one data byte being clocked out of the device. DS21919B-page 4 © 2005 Microchip Technology Inc. MCP23008/MCP23S08 2 FIGURE 1-1: MCP23008 I C™ DEVICE PROTOCOL S - START SR - RESTART DIN DIN S OP
in „MCP23008 Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_IRFB7430.pdf
Breakdown Voltage Fig 12. Typical C OSS Stored Energy ) 6.0 ( c V GS = 5.5V a V = 6.0V i GS s V GS = 7.0V R 4.0 V GS = 8.0V n O V GS =10V r u S o - 2.0 a D , n ( D R 0.0 0 200 400 600 800 1000 1200 I , Drain Current (A) D Fig 13. Typical On-Resistance vs. Drain Current www.irf.com 5 IRFB7430PbF
in „MOSFET Steuer vs Hauptkreis“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTC224210fc.pdf
SFDR (HD4+) vs Input Frequency, LVDS Mode Frequency, –1dB, LVDS Mode –1dB, LVDS Mode 62 85 95 80 61 90 2V RANGE 75 60 85 1V RANGE 70 ) S S F 59 B 65 B 80 2V RANGE ( ( 1V RANGE ( R 1V RANGE D 60 R S 58 S 2V RANGE F 75 55 S 57 70 50 56 45 65 55 40 60 0 100 200 300 400 500 600 700 800 9001000 0 100 200 300
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP3221.pdf
2-19: Gain Error vs. Temperature. FIGURE 2-22: Offset Error vs. Temperature. 100 100 90 VDD= 5V V = 5V 90 DD 80 80 70 70 ) B d 60 V = 2.7V ( 60 ( 50 DD D 50 VDD= 2.7V N 40 A S I 40 30 S 30 20 20 10 10 0 0 1 10 1 10 Input Frequency (kHz) Input Frequency (kHz) FIGURE 2-20: SNR vs. Input Frequency
in „Suche Bauteilbezeichnung 5-Pin SOT-23 mit "S1SD" Marking“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MRF89XAM8A.pdf
that we are guaranteeing the product as “unbreakable.” Code protection is constantly evolving. We at Microchip are committed to continuously improving the code protection features of our products. Attempts to break Microchip’s code protection feature may be a violation of the Digital Millennium Copyright
in „Was darf man von einer PCB-Antenne erwarten?“ · HF, Funk und Felder ·
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PDF
ax_2.200_40.pdf
ASM Axial Standard Miniature Impedance (Z) Table 4 Impedance ×capacitance values (c∅sD × L = 4.× 10 to 10×25 mm) Z ×C R Ω × F) at 10 kHz T amb 6.3 V 10 V 16 V 25 V 40 V 63 V 100 V +20 °C ≤300 ≤ 200 ≤160 ≤120 ≤70 ≤ 55 ≤90 − 25°C ≤2000 ≤ 1200 ≤750 ≤560 ≤300 ≤ 180 ≤600 − 40°C ≤5500 ≤ 3200
in „H-Brücke DC Motor Strom oszilliert schwingt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ME4056.pdf
voltage -0.3~10 V pin voltage -0.3~10 V pin voltage -0.3~10 V CE pin voltage -0.3~10 V BAT pin current 1200 mA PROG pin current 1200 μA Maximum junction temperature 145 ℃ Operating ambient temperatureopa -40~85 ℃ Storage temperature str -65~125 ℃ Soldering temperature and time +260(Recommended 10S) ℃ Caution
in „Eine sehr kleinen Akku laden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
93LC66.pdf
Explorer. Files are also available for FTP Numbers are: download from our FTP site. 1-800-755-2345 for U.S. and most of Canada, and 1-480-792-7302 for the rest of the world. Connecting to the Microchip Internet Web Site 042003 The Microchip web site is available at the following URL: www.microchip.com The
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PDF
MCP1702.pdf
that we are guaranteeing the product as “unbreakable.” Code protection is constantly evolving. We at Microchip are committed to continuously improving the code protection features of our products. Attempts to break Microchip’s code protection feature may be a violation of the Digital Millennium Copyright
in „quick and dirty - NiMH stützen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTC1859.pdf
specifications which apply over the full operating temperature range, otherwise specifications are atAT 25°C. MUXOUT connected to ADC inputs. (Notes 5 and 12) LTC1857 LTC1858 LTC1859 SYMBOL PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS S/(N + D) Signal-to-(Noise + Distortion) Ratio 1kHz
in „LTC1859 merkwürdige Messwerte“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
/********************************************* Chip type : AT90S8535 Clock frequency : 8,000000 MHz Memory model : Small Internal SRAM size : 512 External SRAM size : 0 Data Stack size : 128 Board: Avr-Ctrl V1.0 http://www.mikrocontroller.com 2002 Holger Buss *********************************************/ #include <90s8535.h> // Alphanumeric LCD Module functions #asm .equ __lcd_port=0x15 #endasm #include <lcd.h> // Standard Input/Output functions #include <stdio.h> #include <delay.h> #define RESET PORTD.5 #define
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Datei
main_c.txt
/********************************************* Chip type : AT90S8535 Clock frequency : 8,000000 MHz Memory model : Small Internal SRAM size : 512 External SRAM size : 0 Data Stack size : 128 Board: Avr-Ctrl V1.0 http://www.mikrocontroller.com 2002 Holger Buss *********************************************/ #include <90s8535.h> // Alphanumeric LCD Module functions #asm .equ __lcd_port=0x15 #endasm #include <lcd.h> // Standard Input/Output functions #include <stdio.h> #include <delay.h> #define RESET PORTD.5 #define
in „Port, Pin auf 1 oder null setzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dac8512.pdf
bipolar operation is achievable using the circuit illus- DAC8512 is 2.5 mA, local bypassing of the REF02’s output trated in Figure 28. The circuit uses a single-supply, rail-to-rail with at least 0.1 F at the DAC’s voltage supply pin is recom- OP295 op amp and the REF03 to generate the –2.5 V reference mended
in „µC soll Strom rausgeben“ · Mikrocontroller und Digitale Elektronik ·