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PDF
s8241.PDF
4.350V 4.000V 2.60V 3.30V 0.200V Unavailable (1) Yes S-8241ABYMC-GBYT2G 4.220V 4.220V 2.30V 2.30V 0.200V Available (3) Yes S-8241ACAMC-GCAT2G 4.280V 4.080V 2.30V 2.30V 0.200V Available (1) Yes S-8241ACBMC-GCBT2G 4.300V 4.100V 2.30V
in „Li-Ion Protection in besser?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
s8241.PDF
4.350V 4.000V 2.60V 3.30V 0.200V Unavailable (1) Yes S-8241ABYMC-GBYT2G 4.220V 4.220V 2.30V 2.30V 0.200V Available (3) Yes S-8241ACAMC-GCAT2G 4.280V 4.080V 2.30V 2.30V 0.200V Available (1) Yes S-8241ACBMC-GCBT2G 4.300V 4.100V 2.30V
in „Lademodul TP4056“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
semi_eng_ge2a_aqw21_e.pdf
AQZ 205D PeakAC, DC100V PeakAC, DC1.8A 24 V AC AC/ 48 V DC DC type AQZ 207D PeakAC, DC200V PeakAC, DC0.9A 48 V AC 100 V DC 120 V AC AQZ 204D PeakAC, DC400V PeakAC, DC0.45A 200 V DC 4) Power photoMOS High Capacity type (1 Form A) Absolute maximum rating Recommended load voltage Load voltage Load current DC AQZ192 60 V DC 10 A DC 5, 12, 24 V DC type AQZ 197 200 V DC 5 A DC 100 V DC 12 V AC AQZ 202G PeakAC, DC60V Peak AC, DC 6 A 5, 12, 24 V DC 24 V AC AC/ AQZ 205G PeakAC, DC100V Peak AC, DC 4 A 48 V DC DC type AQZ 207G PeakAC, DC200V Peak AC, DC 2 A 48 V AC
in „China-PC817 Optokoppler PCBs“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT3800.pdf
Temperature vs Temperature 800 220 1.232 TA= 25°C 600 z V.231 ) ( 210 E ( Y N –)400 N R N U F.230 S200 E 200 R ++ F P S N A.229 S 0 T R I( R R P 190 1.228 –200 O –400 180 1.227 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 –50 –25 0 25 50 75 100 125 –50 –25 0 25 50 75 100 125 VSENSE(CM)(V) TEMPERATURE (°
in „LT3800 Frage“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CH454DS1.PDF
30 mS time 7.4. Interface Timing Parameters Test Conditions: TA=25℃, VCC=5V, Refer to theAttached Drawing) Name Parameter description Min. Typ. Max. Unit TSSTA Setup time of SDAfalling edge start signa200 nS THSTA Hold time of SDAfalling edge start signal200 nS TSSTO Setup time of SDArising edge stop signal 200 nS THSTO Hold time of SDArising edge stop signal 200 nS TCLOW Low level width of SCLclock signal 200 nS TCHIG High level width of SCLclock signal 200 nS Setup time of SDAinput data to SCLrising TSDA
in „Viele Drucktaster und LEDs ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATtiny261A_Complete.pdf
200 kHz (Accuracy after Offset and Gain Calibration) Gain = 20x / 32x V = 4V, V = 5V 10 LSB REF CC ADC clock = 50 - 200 kHz Gain = 1x / 8x 10 LSB Gain Error Gain = 20x / 32x 15 LSB Gain = 1x / 8x VREF =
in „USI Interface als SPI Schnittstelle beim ATtiny261A“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Flowcod_Umsetzung.c.c
2 1 #define MX_PWM_HWALT_2 0 #else #ifndef MX_PWM_REF3 #define MX_PWM_REF3 #define PWM_4_MX_PWM_UREF 3 #define MX_PWM_CHANNEL_3 1 #define MX_PWM_HWALT_3 0 #else #ifndef MX_PWM_REF4 #define MX_PWM_REF4 #define PWM_4_MX_PWM_UREF 4 #define MX_PWM_CHANNEL_4 1 #define MX_PWM_HWALT_4 0 #else #ifndef MX_PWM_REF5 #define MX_PWM_REF5 #define PWM_4_MX_PWM_UREF 5 #define MX_PWM_CHANNEL_5 1 #define MX_PWM_HWALT_5 0 #else #ifndef MX_PWM_REF6 #define MX_PWM_REF6 #define PWM_4_MX_PWM_UREF 6 #define MX_PWM_CHANNEL_
in „Ttiny 461a isp schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KEM_C1003_C0G_SMD.pdf
M FB FB FB FB FG FG KE KE KE 5,600 pF 562 F G J K M FB FB FB FB FG FG GB GB GH HB HB HB KE KE KE 6,200 pF 622 F G J K M FB FB FB FB FG UD KE KE KE 6,800 pF 682 F G J K M FB FB FB FB FG UD GB GB GJ HB HB HB JB JB UD KE KE KE 7,500 pF 752 F G J K M FC FC FC FC FC UD KE KE KE 8,200 pF 822 F G J K M FC FC
in „Quarz Dimensionierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AoE3_chapter9.pdf
of Electronics Third Edition 100μA each 201 I≈ 68mV/RSET(@25°C) (2.5 to 40V) (1 to 40V) 1:1 ) LM334 REF ( 200 n RSET e200 u C A. B. 1mA (1 to 50V) 1mA (1 to 500V) 10mA (4 to 900V) 199 0 10 20 30 40 Voltage (volts) SST505 LND150 IXCP10M90 Figure 9.37. Measured current versus voltage for the REF200 two-
in „Labornetzgerät - Fragen zum Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt_Ee102P.pdf
: a) E > tREF oder b) tE< t REF Über einen Regelkreis mit dem Sollwert „t = E REF“ wird das Vergleichsergebnis nach jeder Abtastung in eine betragsmäßig konstante Verstellung ¨, (~ ¨8 a &3& des Entlade - Konstantstroms I umgesetzt, um t ständig an t anzugleichen. Liefert der Vergleich von E E E REF tEund t REF genau 63 mal in Folge das Ergebnis „t > t E REF “, dann wird bei Tastenanwendungen ein Schaltsignal ausgegeben. Da die Parameter Entladestromhub ¨, , AbtEstfrequenz f und AuKgangsschaltverhalten
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PDF
irl7486mpbf-936689.pdf
25°C TJ= 25°C 7 T = 125°C 140 T = 125°C J J ) ) ( 6 n 120 M ( R R IR 5 QR 100 4 80 3 60 2 40 100 200 300 400 500 600 700 100 200 300 400 500 600 700 di /dt (A/µs) F diF/dt (A/µs) Fig 19. Typical Recovery Current vs. dif/dt Fig 20. Typical Stored Charge vs. dif/dt 180 F = 123A 160 V = 34V R TJ= 25°C 140 TJ= 125°C ) C 120 ( R QR 100 80 60 40 100 200 300 400 500 600 700 dF /dt (A/µs) Fig 21. Typical Stored Charge vs. dif/dt 7 www.irf.com © 2015 International Rectifier Submit Datasheet Feedback May 14, 2015 IRL7486MTRPbF ® Fig 22. Peak Diode Recovery
in „Reparatur Makita XWT08Z (DTW1002Z)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TransistorTester_eng_094k.pdf
reference voltage is read by every power on if this function is selected with the option WITH_AUTO_REF. I noticed that the reference voltage is permanently somewhat to low, so that you can choose an offset with the Makefile option REF_KORR. The measured reference voltage will then be corrected (added
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PDF
irfb3077pbf.pdf
) 8 ( IF= 30A S V R 64V VG 4 TJ= 125°C T = 25°C 1.0 J 0 -75 -50 -25 0 25 50 75 100 125 150 175 100 200 300 400 500 600 700 800 900 1000 T J Temperature ( °C ) df / dt - (A / μs) Fig 16. Threshold Voltage Vs. Temperature Fig. 17 - Typical Recovery Current vs. di /dt f 24 400 20 300 16 ) ) ( ( - - 200
in „Suche nach Treiber für Power-Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BC846BDNPN.PDF
A A 150C G 150C G T 400 T 400 N N R R 25C R 300 25C R 300 C C C C D 200 D 200 −55C E −55C E h h 100 100 0 0 0.001 0.01 0.1 1 0.001 0.01 0.1 1 IC, COLLECTOR CURRENT (A) IC, COLLECTOR CURRENT (A) Figure 1. DC Current Gain at V CE = 5 V Figure 2. DC Current Gain at VCE =
in „Leckströme für NPN Transistor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Duracell-MN1604-9V-Plus.pdf
Dimensions shown are IEC/ANSI standards TYPICAL DISCHARGE CHARACTERISTICS AT 21 °C (70°F) 9.5 100 OHM 200 OHM 8.5 500 OHM 1000 OHM e t7.5 o V 6.5 5.5 Berkshire Corporate Park Bethel, CT 06801 U.S.A. Telephone: Toll-free 1-800-544-5454 Internet: www.duracell.com 4.5 0 10 20 30 40 50 60 70 80 90 100 Service
in „Wofür 9V Blockbatterien“ · Mikrocontroller und Digitale Elektronik ·
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PDF
814169-in-01-de-Plastik_70_400ml-1.pdf
TECHNISCHES MERKBLATT 1/2 PLASTIK 70 Ref. : 20743 1. ALLGEMEINE BESCHREIBUNG Schnelltrocknender, farblos-transparenter Isolier- und Schutzlack auf Acrylharzbasis. 2. PRODUKTMERKMALE PLASTIK 70 ist ein dünnflüssiger, lösemitteltrocknender Acrylharzlack
in „Isolierlack?“ · Platinen ·
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PDF
EF28F008SA.pdf
characteristics during erase and byte write operations are the same as during read-only operations. Refer to AC Characteristics for Read-Only Operations. 2. Sampled, not 100% tested. 3. Refer to Table 3 for vINid Abyte write or block erasure. 4. Refer to Table 3 for vINid Dbyte write or block erasure.
in „Wo ist der Pin1?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EW40420YLY.pdf
TECHNOLOGIES CORPORATION 40420 (LED TYPES) 3 1 1. GENERAL SPECIFICATIONS 1 . 1 GENERAL SPECIFICATIONS PLEASE REFER TO : CUSTOMER ACCEPTANCE STANDARD SPECIFICATIONS : E U - 0 0 2 A 1 . 2 APPLICATION NOTES FOR CONTROLLER / DRIVER : PLEASE REFER TO : CUSTOMER ACCEPTANCE STANDARD SPECIFICATIONS : E U - K S 0 0 6 6
in „4x40 LCD Display ohne HD Controller ansteuern.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EDN_DI_6594092.pdf
put voltage to the maximum output V Eqis the reference voltage, and I2 mA—0.5 mA is the more attrac- REF 4 FS 31 V 31 1.23 voltage, as well as 31 steps from the full-scale current. tive vRFS= beREF×e th= resista×ces are nominal output voltage to the mini- Finally, for completeness, you dehigherEDN IFS
in „Einstellbarer Step-Up Regler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EDN_DI_6594092.pdf
put voltage to the maximum output V Eqis the reference voltage, and I2 mA—0.5 mA is the more attrac- REF 4 FS 31 V 31 1.23 voltage, as well as 31 steps from the full-scale current. tive vRFS= beREF×e th= resista×ces are nominal output voltage to the mini- Finally, for completeness, you dehigherEDN IFS
in „mit µc einstellbarer Spannungsregler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA8172.pdf
5 TDA8172 Figure 2 : ACTest Circuit 1N4001 V S C1 C2 D1 C3 0.1 F 470 F 220 F tfly 2 6 3 Iy V V 7 7 REF TDA8172 5 V i R1 C4 to GND 1 0.22 F Ly 24.6mH to 10k R7 R6 RT1 4 1.5 330 4.7k Ry R3 R4 9.6 IN 12k C6 8.2k R2 4.7 F C5 5.6k 2200 F R5 Iy R5 *Recommendedfor V REF filtering to P 8.2 7 2 1 8 MOUNTING INSTRUCTIONS
in „Monitorreparatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
311613_DS.pdf
CHARACTERISTICS (Tj = 25°C, unless otherwise specified) SENSITIVE Symbol Test Conditions TS820 Unit IGT MAX. 200 V = 12 V R = 140 µA V D L GT MAX. 0.8 V V V = V R = 3.3 k R = 220 Tj = 125°C MIN. 0.1 V GD D DRM L GK V I = 10 A MIN. 8 V RG RG H T = 50 mA RGK = 1 k MAX. 5 mA L G = 1 mA R GK = 1 k MAX. 6 mA dV/dt
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TLC5620.pdf
Output Transfer D7 D6 D5 D4 D3 D2 D1 D0 OUTPUT VOLTAGE 0 0 0 0 0 0 0 0 GND 0 0 0 0 0 0 0 1 (1/256) REF (1+RNG) 0 1 1 1 1 1 1 1 (127/256) REF (1+RNG) 1 0 0 0 0 0 0 0 (128/256) REF (1+RNG) 1 1 1 1 1 1 1 1 (255/256) REF (1+RNG) POST OFFICE BOX 6553DALLAS, TEXAS 75265 5 POST OFFICE BOX 144HOUSTON, TEXAS
in „DAC Steuerung mittels SPI“ · Mikrocontroller und Digitale Elektronik ·
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ADC_DelSig_v3_20.pdf
Noise Histogram, 1000 Samples, Delta-Sigma ADC Noise Histogram, 1000 samples, 20-Bit, 187 sps, Ext Ref,IN = REF/2, 16-bit, 48 ksps, Ext Ref,IN = REF/2, Range = ±1.024 V Range = ±1.024 V Delta-Sigma ADC Noise Histogram, 1000 samples, Delta-Sigma ADC INL versus Resolution at Max 16-bit, 48 ksps, Int RefINV
in „Dev-Board mit mind. 4 x Delta-Sigma-ADC & CAN-BUS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NM93C46.PDF
brought low to end under WRITE instruction description. While the device is busy, it the Read cycle. Refer Read cycle diagram. isrecommendedthatnonewinstructionbeissued.ReferWriteAll cycle diagram. 2) Write Enable (WEN) 5) Write Disable (WDS) WhenV CC isappliedtothepart,it“powersup”intheWriteDisable Write
in „EEPROM durch anders tauschen, was beachten?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
A.txt
// | ( 1 << CS20 ); //64//(1<<CS22); TIMSK = (1 << TOIE2); // Overflow Interupt einschalten //OCR2=200; // Vergleichsregister TCNT2= 200; // Zählregister (ca. 64 ms) //ADC Configuration /////////////////////////////////////////////////////////////////////////////////// ADMUX = 0; // Kanal waehlen (ADC0) ADMUX |= (0<<REFS1) | (1<<REFS0); // AVCC als Referenzspannung nutzen ADCSRA |= (1<<ADEN) | (1<<ADPS1) | (1<<ADPS0); ADCSRA &= ~((1<<ADPS2)|(1 << ADFR)); //// First Read Out um den ADC warmlaufen zu lassen //////////
in „Interupt Routine leicht gemacht?“ · Mikrocontroller und Digitale Elektronik ·
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cps_hv_supply.pdf
+45V +45V E5 +25V 1 +45 R41 + C31 +25V 6.8uF 35V 750 8 R43 R54 R8 8 3.9K 9K .1% 1/8W R55 - E26 R40 200 5% 5W E4 A E27 STD A D21 B + AMR B TP2 1 Coil 1N4006 R50 R51 7 2K7 91K C14 D20 1 E7 A 2 R53 33nF Q4 R23 C7 E30 B -A2 TP11 MPSW06 6.2nF 6 7K .1% 1K5 3 + -25V -25V R36 MPSA56 Q2 E14 7 D9 LM307 220 R35
in „Rasterelektronenmikroskop Zeiss DSM 960“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
Spektrumanalyse_RuS-Tutorium.pdf
der Spektrumanalyse Praktische Realisierung eines Analysators * R B W 3 k H z RBW 1 kHz RF Att 20 dB Ref Lvl VBW 200 Hz * V B W 3 k H z R e f- 1 0d B m A t t 2 0 d B S W T 4 5 m s -10 dBm SWT 300 ms Unit dBm -10 -10 * A A -20 -20 -30 -30 SF = 9,5 -40 -40 PRN SF = 4,6 1SA -50 2AP -50 -60 -60 -70 -70 -80
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Spektrumanalyse.pdf
der Spektrumanalyse Praktische Realisierung eines Analysators * R B W 3 k H z RBW 1 kHz RF Att 20 dB Ref Lvl VBW 200 Hz * V B W 3 k H z R e f- 1 0d B m A t t 2 0 d B S W T 4 5 m s -10 dBm SWT 300 ms Unit dBm -10 -10 * A A -20 -20 -30 -30 SF = 9,5 -40 -40 PRN SF = 4,6 1SA -50 2AP -50 -60 -60 -70 -70 -80
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MJ2500-3000.pdf
3000 I2000 20,000 A T I10,000 TJ=150⋅C N1000 A R T 5000 U N C 500 R 2000 25⋅C A U N 300 C 1000 I C – 200 , 500 L T =25⋅C F M 100 C h S VCE =3.0Vdc 200 –55⋅C V =3.0Vdc E IC=5.0Adc CE h 100 50 50 30 0.01 0.02 0.05 0.1 0.2 0.5 1.0 2.0 5.0 10 103 104 10 106 I ,COLLECTORCURRENT(AMP) f,FREQUENCY(Hz) C Figure
in „Netzteilschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PS320240T-005-I-05_SPEC_V0.pdf
- Contrast ratio CR Ta = 25°C 150 250 - - Note3 Average Brightness 2 Pattern=white display IV IF= 200mA 320 380 - cd/m (With LCD )*1 Uniformity (With LCD )*2 ¶B IF= 200mA 70 - - % *1jThis value will be changed while mass production. *2j¶B=B(min) / B(max) PS320240T-005-I-05Ver. 0 Page7 Note 1. Optical
in „[V] TFT QVGA Color TFT 5.7" mit Touch von Powertip“ · Markt ·
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Datei
bus124-attiny13.c
define AdcRawL 6000 // Stützpunkt 2048 mVolt (14 BIT) // Skalierung Delta ADC + Referenzpunkte #define RefA 2048.0 // Referenzpunkt A 4096mV - 2048mV #define RefB 2048.0 // Referenzpunkt B 2048mV #define Scale 16384 // zur Basis 2^14 // Berechnung der ADC Korrekturwerte mittels Referenzpunkte #define Slope (RefA / (AdcRawH - AdcRawL)) // Delta U / Delta ADC -> Steigung #define Offset (uint32_t) ((RefB - (AdcRawL * Slope)) * Scale) // Offset zur Basis 2^14 #define Factor (uint32_t) ((RefA / (AdcRawH - AdcRawL
in „Möglichst Resourcenschonend programmieren“ · Mikrocontroller und Digitale Elektronik ·
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LP3947.pdf
Active when USB port or AC adaptor is connected and battery is fully charged. For more information, refer to “LED Charge Status Indicators” section. 11 GND Ground 12 CHG Active Low Open Drain Output. Active when USB port or AC adaptor is connected and battery is being charged. For more information, refer
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LT1019.pdf
Negative Shunt References references presently available including AD580, AD581, ■ A/D and D/A Converters REF-01, REF-02, MC1400, MC1404 and LM168. ■ Precision Regulators ■ Constant Current Sources , LTC and LT are registered trademarks of Linear Technology Corporation. All other trademarks are the property
in „Hochgenaue 2.5V Referenz“ · Mikrocontroller und Digitale Elektronik ·
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MCP2551.pdf
differential VTXD = 0.8V; DD = 5V D13 VDIFF(d)(o) 1.5 3.0 V output voltage 40W < R L< 60W (Note 2) D14 — -200 mA VCANH = -5V CANH short-circuit I (SC)CANH ) output current -100 D15 — (typical) mA VCANH = -40V, +40V. (Note 1) D16 O(SC)(CANL)l CANL short-circuit — 200 mA VCANL = -40V, +40V. (Note 1) output current
in „MCP2551 Standby Mode wenn AVR im Power down Modus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC6802-1.pdf
10 –80 S 0 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 –250–200 –150 –100–50 0 50 100 150 200 CELL VOLTAGE (V) CHANGE IN GAIN ERROR (ppm) 68021 G09 CELL VOLTAGE (V) 68021 G10 68021 G20 Measurement Gain Error Cell Measurement Common Mode ADC Normal Mode Rejection
in „SPI: kein SCK bei Receive - Warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
K7S41-K7S41GX.pdf
_2 1_2 FSB_SEL1 FSB_SEL1 FSB_SEL1 FSB_SEL1 2_3 2_3 1_2 1_2 FSB_SEL0 FSB_SEL0 FSB_SEL0 FSB_SEL0 FSB 200MHz FSB 266MHz FSB 333MHz FSB 400MHz K7S41GX: 2_3 1_2 1_2 FSB_SEL1 FSB_SEL1 FSB_SEL1 2_3 2_3 1_2 FSB_SEL0 FSB_SEL0 FSB_SEL0 FSB 200MHz FSB 266MHz FSB 333MHz Note: The setting of the CPU front side bus
in „Asrock Board K7S41 mit SATA 1 Terabyte Festplatte“ · PC Hard- und Software ·
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PDF
ATMega16.pdf
+ 0.998 VREFGAIN 0x1FE 510 ... ... ... VADCm + 0.001 VREFGAIN 0x001 1 VADCm 0x000 0 VADCm - 0.001 REF/GAIN 0x3FF -1 ... ... ... VADCm - 0.999 REF/GAIN 0x201 -511 V - V /GAIN 0x200 -512 ADCm REF Example: ADMUX = 0xED (ADC3 - ADC2, 10x gain, 2.56V reference, left adjusted result) Voltage on ADC3 is 300
in „DCF auf INT0“ · Mikrocontroller und Digitale Elektronik ·
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AVR_Product_Update_M__03.pdf
Programming - - 4,10-bit 11,10-bit - ADC 2 2 PWM - - 1 4 - Timers 1 1 2 2 1 Typical Applications Please refer to Section 4.4 Development Tools Software AVR Studio AVR Studio AVR Studio AVR Studio AVR Studio Starter Kits STK500 STK 500, AVRISP STK 500, AVRISP STK500,AVRISP STK500 ICE200,ICE10 ICE200,ICE10 ICE
in „Atmel Familie“ · Mikrocontroller und Digitale Elektronik ·
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DS_HLG240H.pdf
240.24W 240W 240.3W 250mVp-p 250mVp-p RIPPLE & NOISE (max.) Note.2150mVp-p 150mVp-p 150mVp-p 150mVp-p 200mVp-p 250mVp-p 350mVp-p VOLTAGEADJ. RANGE Note.6 11.2 ~ 12.8V14 ~ 16V 18.6 ~ 21.4V 22.4 ~ 25.6V 28 ~ 32V 33.5 ~ 38.5V39 ~ 45V 44.8 ~ 51.2V50 ~ 57V OUTPUT Can be adjusted by intepotentiometeor through
in „PWM-Signal 24V 500Hz wandeln in 10V PWM“ · Haus & Smart Home ·
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PDF
MMA8452Q.pdf
in Figure 4. 1.1 Soldering Information The QFN package is compliant with the RoHS standard. Please refer to AN4077. MMA8452Q Sensors Freescale Semiconductor, Inc. 5 2 Mechanical and Electrical Specifications 2.1 Mechanical Characteristics Table 2. Mechanical Characteristics @ VDD = 2.5V, VDDIO = 1.8V,
in „Beschl-Sensor mit i2C reagiert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Digging_inside_CMU200_SW.txt
- GetDefault Parameter - GetArray Parameter - PlaceArray Parameter - MoveArray Parameter - GetArrayRef Parameter - PlaceArrayRef Parameter - TransferRef Parameter - Reset Parameter - Preset Parameter - SetToFactoryDefault Parameter - Shutdown Parameter - PlaceIntoTransaction Parameter - GetValueFromTransaction
in „CMU200 Erfahrungen und Modifikationen“ · HF, Funk und Felder ·
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PDF
Power-Supply-PS-550AC-02.pdf
: A fixed 0.05µF capacitor is built into the supply and must be included in all calculations.) 220 200 PS-550AC CHARGE RATE 180 TYPICAL 160 ) MINIMUM J 140 ( T 120 R E R 100 A C 80 TEST CONDITIONS: 60 105/210V, 50/60Hz 40 L0AD CAPACITOR >10uF RECHARGE HOLDOFF: 500uS 20 0 LO 0 100 200 300 400 500 600
in „Xenon-Blitz Versuchsaufbau“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sg-17vlz_ds_en.pdf
LTD. 2024 SG-17VLZ Rating and Characteristic Curves 100 1.E-03 t =0.4 ms T = 235 °C J 1.E-04 10 TJ= 200 °C T = 235 °C ) ) J ( 1.E-05 ( IR TJ= 150 °C IF t t 1 r 1.E-06 e T J 200 °C u TJ= 100 °C u C C g r 0.1 T J 150 °C a 1.E-07 T J 60 °C a a r L F T J 100 °C s 1.E-08 e 0.01 e T J 25 °C T J 60 °C R 1.E-
in „Thermische Belastbarkeit Limadioden“ · Fahrzeugelektronik ·
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PDF
Sanken_Zenerdioden.pdf
LTD. 2024 SG-17VLZ Rating and Characteristic Curves 100 1.E-03 t =0.4 ms T = 235 °C J 1.E-04 10 TJ= 200 °C T = 235 °C ) ) J ( 1.E-05 ( IR TJ= 150 °C IF t t 1 r 1.E-06 e T J 200 °C u TJ= 100 °C u C C g r 0.1 T J 150 °C a 1.E-07 T J 60 °C a a r L F T J 100 °C s 1.E-08 e 0.01 e T J 25 °C T J 60 °C R 1.E-
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PDF
CMU-Z6_Rev03e.pdf
a Modulation Correction A modulation correction involves three steps: 1. Connect CMU-Z6 to the CMU200. AUX UNIVERSAL RADIO COMMUNICATION TESTER . CMU 200 1100.0008.02 FUNCTION SYSTEM MENU SELECT DATA CTRL HELP SETUP PRINT DATA A VARIATION abc def ghi mVn DATA1 M/µ B jkl mno pqr WV DATA2 stu vwx yz dBµV
in „CMU200 Erfahrungen und Modifikationen“ · HF, Funk und Felder ·
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PDF
doc4834.pdf
No.(1) Symbol Min. Typ. Max. Unit Type* DO enable after CS 8.1 falling edge C DO= 100 pF 9 1 ENDO 200 ns D DO disable after CS 8.2 rising edge C DO= 100 pF 9 2 DISDO 200 ns D 8.3 DO fall time C DO= 100 pF 9 - DOf 100 ns D 8.4 DO rise time C DO= 100 pF 9 - DOr 100 ns D 8.5 DO valid time C DO= 100 pF 9 10 DOVal 200 ns D 8.6 CS setup time 4 4 t 225 ns D CSSethl 8.7 CS setup time 4 8 tCSSetlh 225 ns D 8.8 CS high time 4 9 CSh 500 ns D 8.9 CLK high time 6 5 t 225 ns D CLKh 8.10 CLK low time 6 6 tCLKl 225 ns D 8.11
in „DCC Decoder“ · Projekte & Code ·
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PDF
rt8016_richtek_FT8.pdf
, V = V + 5% -- 50 70 μA Q OUT FB REF Shutdown Current I EN = GND -- 0.1 1 μA SHDN Reference Voltage VREF For Adjustable Output Voltage 0.588 0.600 0.612 V Adjustable Output Range VOUT (Note 6) V REF -- V IN− 0.2V V VIN= (VOUT + ΔV) to
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ILQ621GB.pdf
to absolute maximum ratings for extended periods of the time can adversely affect reliability. (2) Refer to reflow profile for soldering conditions for surface mounted devices (SMD). Refer to wave profile for soldering conditions for through hole devices (DIP). www.vishay.com For technical questions,
in „Konstantstrom über Optokoppler treiben“ · Analoge Elektronik und Schaltungstechnik ·
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opa354.pdf
TRANSIMPEDANCE AMPS FEATURES PRODUCT ● ACTIVE FILTERS Shutdown Version of the OPA354 Family OPAx357 200MHz GBW, Rail-to-Rail Output, CMOS, ShutdowOPAx355 ● HIGH-SPEED INTEGRATORS 200MHz GBW, Rail-to-Rail Output, CMOS OPAx356 ● ANALOG-TO-DIGITAL (A/D) CONVERTER 38MHz GBW, Rail-to-Rail Input/Output, CMOS
in „OP Verstärker scheint zu schwingen“ · Analoge Elektronik und Schaltungstechnik ·