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PDF
MAX889.pdf
, V OUT = -2.5V 145 MAX889R 12 Quiescent Supply IQ(FREE-RUN) No load, V FB = VIN MAX889S 24 mA Current (Free-Run Mode) MAX889T 48 MAX889R 7 Quiescent Supply No load, V regulated to Q(REGULATED) OUT MAX889S 12 mA Current (Regulated
in „Negative Betriebsspannung erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Xorg.0.log.txt
as keyboard [ 21.889] (**) Option "config_info" "udev:/sys/devices/LNXSYSTM:00/LNXSYBUS:00/PNP0C0C:00/input/input1/event1" [ 21.889] (II) XINPUT: Adding extended input device "Power Button" (type: KEYBOARD, id 8) [ 21.889] (**) Option "xkb_rules" "evdev" [ 21.889] (**) Option "xkb_model" "pc105" [ 21.889] (**) Option "xkb_layout" "de" [ 21.889] (II) config/udev: Adding input device Lid Switch (/dev/input/event0) [ 21.889] (II) No input driver specified, ignoring
in „Notebook mit externem Monitor unter Ubuntu 12.04 LTS (32-bit) - Problem mit Auflösung“ · PC Hard- und Software ·
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Datei
kennfeld.c
889, 110},{858, 100}, {826, 90},{794, 80},{762, 70},{728, 60},{695, 50}, {662, 40},{628, 30},{611, 25},{594, 20},{560, 10}, {527, 0},{0, 0}}; uint8_t adc2human(int16_t adc, const __flash kf_t* kf) { uint8_t min, max, i, j; int32_t tmp; if (adc < 0) adc = 0; if (adc > 1023) adc = 1023; min = 1; max = 31; i = (min+max)/2; for (j=0; j < 5; j++) { if (kf[i].adc > adc) min = i; else max = i; i = (min+max)/2; } tmp =
in „Code optimieren ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Vishay.pdf
3.18 0.01 %/25 0.02 %/12 LS: 0.400 ± 0.020 10.16 ± 0.51 0.05 %/5 S105D 1.5 W 0.75 W W: 0.160 max. 4.06 max. (0.138) (S105F) (1) 1 to 750K L: 0.820 max. 20.83 max. (.890) 0.1 %/2 up to 300K H: 0.413 max. 10.49 max. (0.413) 0.50 %/1 0.8 W 0.4 W 1 %/0.5 350 1.9 ST: 0.035 ± 0.005 0.889 ± 0.13
in „Frage zu Pt1000“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Vishay_Z-Foil.pdf
±0.020 10.16 ±0.51 W: 0.160 max. 4.06 max. L: 0.820 max. 20.83 max. H: 0.413 max. 10.49 max. Z205 5 Ω to 300 kΩ 350 V 1.5 W 0.75 W 1.75 g ST: 0.035 ±0.005 0.889 ±0.13 SW: 0.050 ±0.005 1.27 ±0.13 LL: 1.000 ±0.125 25.4 ±3.18 LS: 0.650 ±0.020 16.51 ±0.51 2.0 W 1.0 W W: 0.260 max. 6.60 max. L: 1.200 max. 30.48 max. up to 400K H: 0.413 max. 10.49 max. Z206 5 Ω to 600 kΩ 500 V 3.7 g ST: 0.035 ±0.005 0.889 ±0.13 1.0 W 0.5 W SW: 0.050 ±0.005 1.27 ±0.13 over 400K LL: 1.000 ±0.125
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Datei
rc5.asm
Toggle-Bit und Geräte-Code movlw #07h movwf R0 S1 btfsc PORTB, RB0 ;Wenn aktueller Zustand "1" => warte max 1000µs auf "0" goto waitNull btfss PORTB, RB0 ;Wenn aktueller Zustand "0" => warte max 1000µs auf "1" goto waitEins S2 ; weil wenn du S2 anspringst ist ja erst gerade der Flankenwechsel ; des aktuellen
in „RC5 - dekodierung PIC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
irmp.c
bits + 6 command bits * * start bit: data "0": data "1": * ______----- ------______ ______------ * 889us 889us 889us 889us 889us 889us * *--------------------------------------------------------------------------------------------------------------------------------------------------- * * DENON * ---
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
IRremoteInth.txt
IRremote.h" #endif #define CLKFUDGE 5 // fudge factor for clock interrupt overhead #define CLK 256 // max value for clock (timer 2) #define PRESCALE 8 // timer2 clock prescale #define SYSCLOCK 16000000 // main Arduino clock #define CLKSPERUSEC (SYSCLOCK/PRESCALE/1000000) // timer clocks per microsecond
in „Arduino 2560 PWM Frequenz ändern auf 100Hz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX.pdf
guaranteed over a +0.8V to +2.4V range—regardless of supply voltage. PART TEMP. RANGE PIN-PACKAGE MAX333ACPP 0°C to +70°C 20 Plastic DIP Logic inputs and switched analog signals can range any- MAX333ACWP 0°C to +70°C 20 Wide SO wherebetweenthesupplyvoltageswithoutdamage. MAX333ACUP 0°C to +70°C 20 TSSOP ________________________Applications MAX333AC/D 0°C to +70°C Dice* Test Equipment MAX333AEPP -40°C to +85°C 20 Plastic DIP Communications Systems MAX333AEWP -40°C to +85°C 20 Wide SO PBX, PABX MAX333AEUP -40°C to +85°C 20 TSSOP Heads-Up Displays
in „Digitalpotentiometer in analogen Anwendungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
62256.pdf
Features Packages High-speed: 35, 70 ns – 28-pin TSOP (Standard) Ultra low DC operating current of 5mA (max.) – 28-pin 600 mil PDIP – 28-pin 330 mil SOP (450 mil pin-to-pin) Low Power Dissipation: – TTL Standby: 3 mA (Max.) – CMOS Standby: 20 A (Max.) Description Fully static operation The V62C518256 is a
in „Erfahrungen mit Pufferakku fuer RAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BI_82P_data.pdf
Inch/mm) Model 82P, 82PF Model Dim. A .011 82P .25 Min. Min. 6.35 0.28 .625 A .140 82PF Min. 3.556 Max. .025 15.875 Standoffs 0.635 (1) (3) .250 ± .015 6.350 ± 0.381 Dia. .10 (2) .10 Housing Metal 2.54 2.54 .110 ± .005 Long X .025 ± .005 90° ±5° Terminal Pins (3) 2.794 ± 0.127 0.635 ± 0.127 Solderable .017 ± .003 Wide X .035 ± .005 Deep Slot 0.432 ± 0.076 Dia. 0.889 ± 0.127 Note: Model 82P dimensions applicable to all models except as noted. Model 82M .10 2.54 .17 .10 4.32 2.54 .18 4.57 Min. (1) (3) .10 (2) 2.54 Model 82W .21 5.3 .10 .18 2.5 4.57 Min. .020Min.
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PDF
Spitzenwert.pdf
Testsignal Sinus / Rechteck 10Vpp Generator FY6900 burst 1x / 5x Sinus f [Hz] Fluke 87V 1x 5x BM867S 1x 5x max/min [V] max/min [V] max/min [V] max/min [V] 50 5,006 -5,006 5,012 -5,006 4,988 -4,992 5,003 -5,011 100 5,006 -5,012 5,012 -5,006 4,968 -4,982 4,982 -4,988 200 5,000 -5,006 5,012 -5,006 4,813 -4,902
in „DVM Spitzenwerterfassung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
irmp.c
bits + 6 command bits * * start bit: data "0": data "1": * ______----- ------______ ______------ * 889us 889us 889us 889us 889us 889us * *--------------------------------------------------------------------------------------------------------------------------------------------------- * * DENON * ---
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
irmp.c
bits + 6 command bits * * start bit: data "0": data "1": * ______----- ------______ ______------ * 889us 889us 889us 889us 889us 889us * *--------------------------------------------------------------------------------------------------------------------------------------------------- * * DENON * ---
in „ATmega resettet dauernd“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rt9198__rt9198a_richtek_DT_93R.pdf
RT9198/A Outline Dimension D H L C B e A A1 b Dimensions In Millimeters Dimensions In Inches Symbol Min Max Min Max A 0.889 1.295 0.035 0.051 A1 0.000 0.152 0.000 0.006 B 1.397 1.803 0.055 0.071 b 0.356 0.508 0.014 0.020 C 2.591 2.997 0.102 0.118 D 2.692 3.099 0.106 0.122 e 1.803 2.007 0.071 0.079 H 0.080
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PDF
rt9198__rt9198a_richtek_VR.pdf
RT9198/A Outline Dimension D H L C B e A A1 b Dimensions In Millimeters Dimensions In Inches Symbol Min Max Min Max A 0.889 1.295 0.035 0.051 A1 0.000 0.152 0.000 0.006 B 1.397 1.803 0.055 0.071 b 0.356 0.508 0.014 0.020 C 2.591 2.997 0.102 0.118 D 2.692 3.099 0.106 0.122 e 1.803 2.007 0.071 0.079 H 0.080
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Datei
Beispiel_ESP32_ledc.ino
445,457,470,483,496,509,522,536,549,563,578,592,607,621,636,652,667,683, 699,715,731,748,765,782,799,816,834,852,870,889,907,926,945,965,984,1004,1023}; constexpr unsigned dimLedAnzahl { sizeof(dimLed) / sizeof(dimLed[0]) }; constexpr unsigned maxIndex {dimLedAnzahl-1}; } // -------------------------------------------
in „Arduino-ESP32 LEDC API ledcAttach() resolution“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PHI.pdf
KTY81-110 KTY81-120 RESISTANCE RESISTANCE ( ) TEMP. ( ) TEMP. (°C) (°F) (%/K) ERROR ERROR MIN. TYP. MAX. (K) MIN. TYP. MAX. (K) −55 −67 0.99 475 490 505 ±3.02 470 490 510 ±4.02 −50 −58 0.98 500 515 530 ±2.92 495 515 535 ±3.94 −40 −40 0.96 552 567 582 ±2.74 547 567 588 ±3.78 −30 −22 0.93 609 624 638 ±2.55
in „Genauere Messung der Temperatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX152.pdf
.....................SS.- 0.3V) to DD + 0.3V) CERDIP (derate 11.11mW/°C above +70°C)...............889mW A VREF- to GND.....................SS.- 0.3V) to DD + 0.3V) Operating Temperature Ranges: VIN to GND.......................SS.- 0.3V) to DD + 0.3V) MAX152C__ ......................................
in „Ansteuerung A/D-Wandler MX152 (+/-Vref) Wechselspannungsmessung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MSOP16.pdf
DWG # 05-08-1667 Rev F) BOTTOM VIEW OF EXPOSED PAD OPTION 2.845 ±0.102 2.845 ±0.102 (.112 ±.004) 0.889 ±0.127 (.112 ±.004) (.035 ±.005) 1 8 0.35 REF 5.10 1.651 ±0.102 3.20 – 3.45 1.651 ±0.102 (.201) (.065 ±.004) (.126 – .136) (.065 ±.004) 0.12 REF MIN DETAIL “B” CORNER TAIL IS PART OF DETAIL “B” THE
in „IC Pinabstand für 36V zu klein ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1638.pdf
Figure 5. Battery Monitor RELATEDPARTS PART NUMBER DESCRIPTION COMMENTS LT1078/LT1079 Dual/Quad 55µA Max, Single Supply, Precision Op Amps Input/Output Common Mode Includes Ground, 70µV V OS(MAX) LT2078/LT2079 and 2.5µV/°C Drift (Max), 200kHz GBW, 0.07V/µs Slew Rate LT1178/LT1179 Dual/Quad 17µA Max, Single Supply, Precison Op Amps Input/Output Common Mode Includes Ground, 70µV V OS(MAX) LT2178/LT2179 and 4µV/°C Drift (Max), 85kHz GBW, 0.04V/µs Slew Rate LT1366/LT1367 Dual/Quad Precision, Rail-to-Rail Input and Output Op Amps 475µV VOS(MAX), 500V/mV A VOL(MIN) 400kHz GBW LT1490/LT1491
in „OPAMP Differenzverstärker - max. Einganggsspannung?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
sub_irMenu.c
#else lcd_clear(); #endif asm("jmp Sprung"); break; }//end case switch (step){ case (0):curpos= 12;max= 2;basis=0;break;//houZ case (1):curpos= 13;max= 9;basis=0;break;//houE case (2):curpos= 15;max= 5;basis=0;break;//min case (3):curpos= 16;max= 9;basis=0;break; case (4):curpos= 1;max= 7;basis=1;break;//wdy case (5):curpos= 3;max= 3;basis=0;break;//day case (6):curpos= 4;max= 9;basis=0;break; case (7):curpos= 6;max= 1;basis=0;break;//mon case (8):curpos= 7;max= 9;basis=0;break; case (9):curpos= 9;max= 9;basis=0;break;//yea case
in „RC5 code einer IR Fernbedienung auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16389fg.pdf
Figure 5. Battery Monitor RELATED PARTS PART NUMBER DESCRIPTION COMMENTS LT1078/LT1079 Dual/Quad 55μA Max, Single Supply, Precision Op Amps Input/Output Common Mode Includes Ground, 70μV V OS(MAX) LT2078/LT2079 and 2.5μV/°C Drift (Max), 200kHz GBW, 0.07V/μs Slew Rate LT1178/LT1179 Dual/Quad 17μA Max, Single Supply, Precison Op Amps Input/Output Common Mode Includes Ground, 70μV V OS(MAX) LT2178/LT2179 and 4μV/°C Drift (Max), 85kHz GBW, 0.04V/μs Slew Rate LT1366/LT1367 Dual/Quad Precision, Rail-to-Rail Input and Output Op Amps 475μV VOS(MAX), 500V/mV A VOL(MIN) 400kHz GBW LT1490/LT1491
in „Alternative gesucht zu OpAmp“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
code.c
define F_CPU 3.6864e6 #define RC5TIME 1.778e-3 // 1.778msec Frequenz für ein Bit, 14·1,778 ms = 24,889 ms #define PULSE_MIN (uint8_t)(F_CPU / 512 * RC5TIME * 0.4 + 0.5) #define PULSE_1_2 (uint8_t)(F_CPU / 512 * RC5TIME * 0.8 + 0.5) #define PULSE_MAX (uint8_t)(F_CPU / 512 * RC5TIME * 1.2 + 0.5) uint8_
in „RC5 und ATMEGA168“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Oszilloskop-Messkurve eines digitalen Signals
Tek Stop 1 2.00 V 1 Frequenz 110.6 Hz Mittelw. 221.8 Min 110.6 Max 889.1 Std.abw. 294.3 1 Anstiegszt. 5.034µs 5.131µs 4.857µs 5.453µs 191.5n 1 Amplitude 4.454 V 4.453 V 4.444 V 4.458 V 4.279m 1 RMS 3.856 V 3.879 V 3.825 V 4.091 V 94.30m CT-AY-AT M328->M644-mod IR-Signalpin
in „Transistortester AVR“ · Projekte & Code · · Oszi-Bilder
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PDF
Datenblatt.pdf
(°C) (°F) (%/K) Resistance ( ) Temperature Resistance ( ) Temperature error (K) error (K) Min Typ Max Min Typ Max −55 −67 0.99 475 490 505 ±3.02 470 490 510 ±4.02 −50 −58 0.98 500 515 530 ±2.92 495 515 535 ±3.94 −40 −40 0.96 552 567 582 ±2.74 547 567 588 ±3.78 −30 −22 0.93 609 624 638 ±2.55 603 624
in „KTY82/120,215“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX232.pdf
above +70°C)....842mW MAX2_ _AM_ _, MAX2_ _M_ _.......................-55°C to +125°C 18-Pin Plastic DIP (derate 11.11mW/°C above +70°C)....889mWtorage Temperature Range.............................-65°C to +160°C 2 20-Pin Plastic
in „MAX232 Reichelt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX220-MAX249.pdf
MAX220–MAX249 A VA I AB LE +5V-Powered, Multichannel RS-232 Drivers/Receivers General Description Next-Generation Device Features The MAX220–MAX249 family of line drivers/receivers is ♦ For Low-Voltage,
in „16 Wide SO Gehäuseform SMD-IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
max232.pdf
X MAX222/MAX232A/MAX233/ 0.5 1 tPHLR MAX242/MAX243 A Receiver Propagation Delay RS-232 to MAX220 0.6 3 M µs TLL (Normal Operation), Figure 2 MAX222/MAX232A/MAX233/ – t MAX242/MAX243 0.6 1 0 PLHR MAX220 0.8
in „Trackball dsub9w auf PS2m Belegung?“ · PC Hard- und Software ·
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PDF
MAX220-MAX249.pdf
X MAX222/MAX232A/MAX233/ t MAX242/MAX243 0.5 1 A PHLR Receiver Propagation Delay RS-232 to MAX220 0.6 3 M µs TLL (Normal Operation), Figure 2 MAX222/MAX232A/MAX233/ – MAX242/MAX243 0.6 1 0 tPLHR MAX220 0.8
in „avr prog und device- auswahl“ · Mikrocontroller und Digitale Elektronik ·
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PDF
max232cpe.pdf
DIP (derate 11.11mW/°C above +70°C)....889mWead Temperature (soldering, 10sec).............................+300°C X Note 1: Input voltage measured wiOUTTin high-impedance state, SHDN oCCV= 0V. A Note 2: For the MAX220, V+ and V- can have a maximum
in „UART Problem mit Baudrate“ · Mikrocontroller und Digitale Elektronik ·
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PDF
453523_1.pdf
DIP (derate 11.11mW/°C above +70°C)....889mWead Temperature (soldering, 10sec).............................+300°C X Note 1: Input voltage measured wiOUTTin high-impedance state, SHDN oCCV= 0V. A Note 2: For the MAX220, V+ and V- can have a maximum
in „Bitte um Überprüfung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX232.pdf
Plastic DIP (derate 11.11mW/°C above +70°C)....889mWLead Temperature (soldering, 10sec).............................+300°C Note 1: Input voltage measured with Tin high-impedance state, SHDN or = 0V. A OUT CC Note 2: For the MAX220, V+ and V- can have
in „Problem mit RS232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX232.pdf
Plastic DIP (derate 11.11mW/°C above +70°C)....889mWLead Temperature (soldering, 10sec).............................+300°C Note 1: Input voltage measured with Tin high-impedance state, SHDN or = 0V. A OUT CC Note 2: For the MAX220, V+ and V- can have
in „Welche Bedeutung....“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rc.c
Minimum (as * protocol standard says) is 64. Higher values yield a lower repetition rate. */ #define MAX_BITCOUNT 128 #define RC5_TEMPLATE (0x3000 | (RC5_DEVICE_CODE << 6)) volatile uint16_t rc5data = 0; volatile uint8_t bitcounter = MAX_BITCOUNT; volatile uint8_t halfbitcounter; // modulation square wave
in „RC5-Sender Andreas Schröder; wie compiliert man richtig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OA5671_de.pdf
./max. 4 VA / 2500 VA (1 mVA / 7 VA) 4) 4 VA / 4000 VA 6) 4) 6) Schaltleistung min./max. 35 ... 300 W (1mW / 7 W) 35 ... 500 W 2.6 Schaltvermögen nach IEC/EN 60947-5-1 AC 15 Öffner: AC 230 V / 5 A; Schließer
in „Ersatztyp für altes Finder Relais gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ACP2826.pdf
Temperature TA -40 to 85 °C ◤ ELECTRICAL CHARACTERISTICS (TA= +25°C) Parameter Symbol Conditions Min Typ Max Unit Feedback Voltage V FB VIN5V 0.588 0.6 0.612 V Switching Frequency FS 1 MHz Feedback Leakage Current FB 0.1 1 Quiescent Current IQ V FB=0.65V, No Switching 40 75 μA Shutdown Supply Current SHUT
in „SMD Bauteil identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LPW5208.pdf
conditions unless specified otherwise) V IN.0V, EN=High, T =2A℃ ) Symbol Parameter Condition Min Typ Max Units VIN Input Voltage 2.5 6 V I Output Current Limited RL=2Ω 880 1100 1420 mA LIMIT R DS(ON) Output N-MOSFET R DS(ON) 160 mΩ IQ Quiescent Current VIN3V 30 µA I Shutdown Current V =GND 1 µA SHDN EN
in „sot23(?)-5, 4woel, Datenblatt wg. evtl. Übertemperaturdefekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Hauptplatine.pdf
C174 C175 1 C 4 TL1 TL2 TL3 TL4 TL5 TL6 TL7 TL8 TL9 C 4 1 C176 C177 C178 C179 C180 C181 BI-7 BO-7 4.889 mm 14.23 mm 6.86 mm 15.2 mm 6.985 mm 15.2 mm 6.86 mm 14.23 mm 4.889 mm 100p 100p 100p 100p 100p 100p 100p 100p 100p 100p 100p 100p 8 mm 0.4 mm 8 mm 0.4 mm 8 mm 0.4 mm 8 mm 0.4 mm 8 mm Band 8 GND GND
in „Oszillator YIG 1,9-4,4 GHz Avantek ASF-9882/7841“ · HF, Funk und Felder ·
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PDF
HY6264A.pdf
= 5.0V ±10%, TA = 0°C to 70 °C (Normal), unless otherwise noted # Symbol Parameter -70 -85 -10 Min Max Min Max Min Max Unit READ CYCLE 1 tRC Read Cycle Time 70 - 85 - 100 - ns 2 tAA Address Access Time - 70 - 85 - 100 ns 3 tACS Chip Select Access Time - 70 - 85 - 100 ns 4 tOE Output Enable to Output
in „externer RAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Farnell_1330644_LT1364.pdf
PDIP (Narrow 0.300) (LTC DWG # 05-08-1510) 0.400* (10.160) 0.300 – 0.325 0.045 – 0.065 0.130 0.005 MAX (7.620 – 8.255) (1.143 – 1.651) (3.302 0.127) 8 7 6 5 0.065 0.255 0.015* (1.651) (6.477 0.381) 0.009 – 0.015 TYP (0.229 – 0.381) 0.125 +0.035 (3.175) 0.020 0.325–0.015 MIN (0.508) 1 2 3 4 +0.889 0.100
in „Schneller Peak-Detector (Spitzenwertspeicher)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
hy62256a.pdf
5V±10%, T A = 0°C to 70 °C (Normal) unless otherwise specified. -55 -70 -85 # Symbol Parameter Min. Max. Min. Max. Min Max. Unit READ CYCLE 1 TRC Read Cycle Time 55 - 70 - 85 - ns 2 TAA Address Access Time - 55 - 70 - 85 ns 3 TACS Chip Select Access Time - 55 - 70 - 85 ns 4 TOE Output Enable to Output
in „70ns SRAM an ATmega128 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3260__1_.pdf
0,159 4,04 0,062 45° 1,57 0,058 45° 1,47 0,122 3,10 0,117 2,97 45° 45° 0,031 0,79 0,085 123 2.16 123 MAX MAX 0,640 0,0173 16,26 0,44 0,600 0,0138 15,24 0,35 0,0189 0,48 SIEHE HINWEIS SIEHE HINWEIS 0,0142 0,36 0,050 1.27 BSC Zeichnung MH-014E in BSC Zeichnung MH-014E mm Oberflächenmontierte Anschlussform (Suffix „-TL“) 0,095 2,41 ±0,005 ±0,13 0,002 0,051 MAX MAX 0,004 0°–8° 0,10 0°–8° MAX 0,020 MAX 0,51 MIN MIN WOHNUNG Zeichnung MH-015 in FLACH Zeichnung MH-015 mm HINWEISE: 1. Toleranzen bei Pakethöhe und -breite stellen zulässige Formversätze dar. Die
in „Schaltnetzteil TNY Ersatztyp Kompatibel ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
6751.pdf
device reliability. Electrical Characteristics Ta=25°C Test Conditions Symbol Parameter Min. Typ. Max. Unit VDD Conditions VDD Operating Voltage 1 ¾ ¾ 2.0 ¾ 6.0 V VM Operating Voltage 2 ¾ Motor loading 1.8 ¾ 6.0 V IVM VM Current 5V Standby mode with ¾ ¾ 10 mA internal pump IOPR Operating Current 5V
in „H-Brücke für Mikromotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
uPD6126A.PDF
NOTE ITEM MILLIMETERS INCHES Each lead centerline is located within 0.12 mm (0.005 inch) of A 15.54 MAX. 0.612 MAX. its true position (T.P.) at maximum material condition. B 0.78 MAX. 0.031 MAX. C 1.27 (T.P.) 0.050 (T.P.) D 0.40–0.05 0.016–0.003 E 0.1±0.1 0.004±0.004 F 1.8 MAX. 0.071 MAX. G 1.55 0.061
in „Chinesische IC und ihre Verwandschaft“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HT71XX-1_30ma_LDO.pdf
Min. Nom. Max. A 173 ¾ 181 B 64 ¾ 72 C 90 ¾ 102 D 35 ¾ 47 E 155 ¾ 167 F 14 ¾ 19 G 17 ¾ 22 H ¾ 59 ¾ I 55 ¾ 63 J 14 ¾ 17 Rev. 1.50 8 January 12, 2006 HT71XX-1 5-pin SOT-25 Outline Dimensions Symbol Dimensions in mm Min. Nom. Max. A 1.00 ¾ 1.30 A1 ¾ ¾ 0.10 A2 0.70 ¾ 0.90 b 0.35 ¾ 0.50 C 0.10 ¾ 0.25 D 2.70 ¾ 3.10 E 1.40 ¾ 1.80 e ¾ 1.90 ¾ H 2.60 ¾ 3 L 0.37 ¾ ¾ q 1° ¾ 9° Rev. 1.50 9 January 12, 2006 HT71XX-1 Product Tape and Reel
in „Suche LDO mit Iss oder Iq >1uA.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
// because the significant bits are at the end of the packet. Instead, // a buffer of 35 bytes (IR_MAX) is used, of which the last 16 bytes // (IR_WRAP) are used as a circular buffer. Because both the address // (16 periods) and the command code (16 periods) are sent twice (normal // and inverted), the
in „IR-Empfänger/ -Decoder“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GM76C256CLLFW.pdf
Normal) / -25°C to 85 °C (Extended) unless otherwise specified. # Symbol Parameter -55 -70 -85 Min. Max. Min. Max. Min Max. Unit READ CYCLE 1 tRC Read Cycle Time 55 - 70 - 85 - ns 2 tAA Address Access Time - 55 - 70 - 85 ns 3 tACS Chip Select Access Time - 55 - 70 - 85 ns 4 tOE Output Enable to Output
in „[S] mind. 64kx8 70ns static SRAM 5V/3V(Battery Backup) in SODIP“ · Markt ·
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OPV_LT1359CN.pdf
15 O O V V M A = 1 U U 4 A V T 10 T L U VS= ±15V O T O R = 2k 2 V = ±5V O 5 L RS = 2k T AV = 1, 1% MAX DISTORTION L AV = –1, 2% MAX DISTORTION 2% MAX DISTORTION 0.0001 0 0 10 100 1k 10k 100k 100k 1M 10M 100k 1M 10M FREQUENCY (Hz) FREQUENCY (Hz) FREQUENCY (Hz) 135859 G25 135859 G26 135859 G27 135859fb
in „Operationsverstärker (OPV) wird heiß als Summierer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OPV_LT1359CN.pdf
15 O O V V M A = 1 U U 4 A V T 10 T L U VS= ±15V O T O R = 2k 2 V = ±5V O 5 L RS = 2k T AV = 1, 1% MAX DISTORTION L AV = –1, 2% MAX DISTORTION 2% MAX DISTORTION 0.0001 0 0 10 100 1k 10k 100k 100k 1M 10M 100k 1M 10M FREQUENCY (Hz) FREQUENCY (Hz) FREQUENCY (Hz) 135859 G25 135859 G26 135859 G27 135859fb
in „Operationsverstärker (OPV) wird heiß als Summierer“ · Analoge Elektronik und Schaltungstechnik ·