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PDF
D096400_TD.pdf
. ■ Diagram of Dimensions Sleeve Φd±0.05 a 5 +. P±0.5 P±0.5 D Vent Φ 15min 5min L+a max ψD 5 6.3 8 10 12 13 16 18 22 P 2.0 2.5 3.5 5.0 7.5 10.0 ψd 0.5 0.5 0.6 0.6 0.8 0.8 ( 1.0 ) 1.5 2.0 a 1.5 1.5 1.0 2.0 2.0 2.0 2.0 ( ) : L≧40 ■ Multiplier for Ripple Current Frequency coefficient
in „im Elko Datenblatt steht "Features: 105℃ 1000 hours"“ · Analoge Elektronik und Schaltungstechnik ·
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Wohnraumuhr1_280820_Rev1.2A.pdf
2 ON 0TR1 0 O 3 C 0 2 3 m 1 I D 1 3 6 C S1 R 0 1 1 3 S - 1 0 K 1 2 C 3 O 1 C S 7 K I 7 I P 1 P 1 I L A 1 J I D 5 3 R3 0 2 A X 2 22-05100k8-03 7 R 1k 1 µ 9 7 4 3 2 1 1 R C 9 C C 0 R4 5 Gehäuse Fischer GD 135 38 220 (200) K A Gehäuse RND 455-00186 1 Gehäuse BOPLA ET-233 200 Gehäuse BOPLA ET-233 . 1 Gehäuse
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PDF
MT3608.pdf
Routers Networking cards powered from PCI or PCI express slots TYPICAL APPLICATION 100 VOUT5V 95 VIN L 4.7μH D VOUT ) 90 VIN SW ( CIN MT3608 110k COUT n 85 22μF 1% 22μF i EN FB E GND R2 80 VIN=3V 11% VIN=3.7V 75 VIN=4.2V 70 0 200 400 600 800 1000 Figure 1. Basic Application Circuit Load Current(mA) MT3608
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PDF
4012002220-__IC_MT3608_SMD_SOT23-6L_AEROSEMI_.pdf
Routers z Networking cards powered from PCI or PCI express slots TYPICAL APPLICATION 100 VOUT5V 95 VIN L 4.7μH D VOUT ) 90 VIN SW ( CIN MT3608 110k COUT n 85 22μF 1% 22μF i EN FB E GND R2 80 VIN=3V 11% VIN=3.7V 75 VIN=4.2V 70 0 200 400 600 800 1000 Figure 1. Basic Application Circuit Load Current(mA) MT3608
in „SMD Bauteilidentifizierung (B6282)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina121.pdf
INA121P, U INA121PA, UA PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS INPUT Offset Voltage, RTI ±200±200/G ±500±500/G ±300±200/G ±1000±1000/G V vs Temperature ±2±2/G ±5±20/G ±15±20/G V/°C vs Power Supply VS= ±2.25V to ±18V ±5±20/G ±50±150/G V/V Long-Term Stability ±0.5 V/mo 12 Impedance, Differential
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Infineon-AN-1035-ApplicationNotes-v29_01-EN.pdf
substrate, which helps to reduce solder balling problems and improves device reliability. However, L4 L4 L4 L10 procedures and conditions can have a profound L6 L6 L6 L10 influence on assembly quality. It is therefore L8 L8 L8 L10 necessary to develop an effective process based on the individual requirements
in „Datenblatt zu DirectFet Mosfet gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
switec_X15.xxx.02.SP.E.pdf
Units Operating temperature Ta -40 105 ∞C Coil resistance Rb 260 290 320 Ω Operating current m @ fz= 200 Hz 15 20 mA Magnetic saturation voltage U bs 9 V Start-Stop Frequency f -6 2 200 Hz ss @ JL= 0,2x10 kgm Maximum driving frequency fm @ JL= 0,2x10 kgm 2 600 Hz Dynamic torque M @ f = 200 Hz 1.0 1.3 mNm
in „M-S Motor X15.xxx“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps61046.pdf
is calculated with Equation 4. I I I ▯ L▯P P▯ L▯ ▯ L▯DC▯ 2 (4) Normally, it is advisable to work with an inductor peak-to-peak current of less than 40% of the average inductor current for maximum output current. A smaller ripple from a larger
in „Ruhestrom Spannungswandler DC DC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
cali_line.c
line_calibrate_black(); /* Blinkfunktion */ void do_blink(uint8_t mask) { for (int i=0; i<5; ++i) { led_set(LED_L_RD, mask&0x01); led_set(LED_R_RD, mask&0x01); led_set(LED_L_YE, mask&0x02); led_set(LED_R_YE, mask&0x02); delay(200); led_set(LED_L_RD, 0); led_set(LED_R_RD, 0); led_set(LED_L_YE, 0); led_set(LED_R_YE
in „Testpersonen für Roboterbausatz NIBObee gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
564932.pdf
c = s C area is limited 25 i i °C) l r –1 by R DS(on) n 10 D n h –0.3 C Ta = 25 °C –0.1 0 50 100 150 200 –0.5 –1 –2 5 –10 –20 –50 Case Temperature Tc (°C) Drain to Source Voltage V DS (V) Typical Output Characteristics Typical Transfer
in „Suche Mosfet oder Vergleichstyp“ · Analoge Elektronik und Schaltungstechnik ·
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LVK_Shunts.pdf
number of reflow: 2 T Preheating 30s ~ 90s 100 60 ~ 90 sec. 50 Time (sec.) d i m en s i o n s (mm) L (2 watt) LVK 12, LVK20, LVK24 W (0.5, 0.75 & 1 watt) L 2 W t a 4 t 1. Electrode b a 3 2. Protection b coat 1 3. Almina substrate 4. Resistor Size L W t a b LVK12 (1206) 3.2 ±0.2 1.6 ±0.2 0.5 ±0.15 1.0
in „Shunt falschrum eingelötet. Ganze Serie für den Müll. Chef tobt.“ · Analoge Elektronik und Schaltungstechnik ·
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PCIM_FINAL.pdf
AC i AC t Variety of Output Voltages and Applications Variety of utput Voltages and Applications IL L C1 L r 4:1 C2 CR 2 V=48V vAC + v − + L CR + S vT 1 C − R TTelecom − I L L C 1 Lr 16:1 C 2 CR 2 V=12V + − + vAC vL v CR C + DData S T 1 − R Centers − Centers I L C L C CR L 1 r 1:1 2 2 V=200V + − + vAC
in „Warum werden Cùk Wandler so wenig eingesetzt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
voltage swing L Full range RL≥ 2 kΩ ±10 ±10 Large-signal differential 25°C 35 200 35 200 AVD voltage amplification VO = ±10 V, R L 2 kΩ 15 15 V/mV B1 Unity-gain bandwidth TA= 25°C 3 3 MHz ri Input resistance TA= 25°
in „Experimentieren mit tl071cp“ · Analoge Elektronik und Schaltungstechnik ·
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mXwqzyt.pdf
100 30 500/500 25 500/1000 4.0 2.1 77 20.0 150 –40 to +150 1.8 10.0 1000 5 100 100 100/100 50 100/200 2.0 5.5 FMG-32S, R FML-32S 20.0 150 –40 to +150 0.98 10.0 600 2 100 40 100/100 30 100/200 2.0 5.5 78 FMX-32S 20.0 150 –40 to +150 0.98 10.0 200 50 100 30 500/500 25 500/1000 2.0 5.5 RBV-402L 4.0 80 –40 to +150 0.98 2.0 50 0.1 100 40 100/100 30 100/200 5.0 4.05 Bridge 79 RBV-602L 6.0 100 –40 to +150 1.0 3.0 250 1 100 50 100/100 35 100/200 3.0 6.45 : Under development * 26 Ultra-Fast-Recovery Rectifier Diodes 200V External Dimensions Flammability:
in „Diode Ersatztyp?“ · Analoge Elektronik und Schaltungstechnik ·
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ADS1251_24Bit_8SOIC.pdf
–20 –40 –40 –60 –60 B –80 ) –80 ( ( i –100 i –100 a a G –120 G –120 –140 –140 –160 –160 –180 –180 –200 –200 0 50 100 150 200 250 300 0 10 20 30 40 50 60 70 80 90 100 Frequency (Hz) Frequency (Hz) FIGURE 6. Digital Filter Response (60Hz). FIGURE 7. Digital Filter Response (10Hz Multiples). DIGITAL FILTER
in „ADC_Auslesen mit Delay“ · Mikrocontroller und Digitale Elektronik ·
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LM741.pdf
LM741E LM741 LM741C Units Min Typ Max Min Typ Max Min Typ Max Large Signal Voltage Gain TA = 25˚C, L ≥ 2 k V = ±20V, V = ±15V 50 V/mV S O VS = ±15V, VO = ±10V 50 200 20 200 V/mV TAMIN ≤ A ≤ TAMAX, R ≥ 2 k , L VS = ±20V, VO = ±15V 32 V/mV VS = ±15V, VO = ±10V 25 15 V/mV V = ±5V, V = ±2V 10 V/mV S O Output Voltage Swing VS = ±20V RL≥ 10 k ± 16 V R ≥ 2 k ± 15 V L VS = ±15V RL≥ 10 k ±12 ± 14 ±12 ± 14 V R ≥ 2 k ±10 ± 13 ±10 ± 13 V L Output Short Circuit TA = 25˚C 10 25 35 25 25 mA Current TAMIN ≤ A ≤ TAMAX 10 40 mA Common-Mode T ≤ T ≤ T AMIN A AMAX Rejection Ratio
in „IC LM 741 DIP8 Daternblatt“ · Mikrocontroller und Digitale Elektronik ·
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JCS18N50WH.pdf
Ambient Rth(j-A) 40 ℃/W 注: Notes: 1:Pulse width limited by maximum junction temperature 1:脉冲宽度由最高结温限制 2:L=5.0mH, AS=19A, DD=50V, RG=25 Ω,起始结温 2:L=5.0mH, AS=19A, DD=50V, G =25 Ω,Starting TJ=25℃ TJ=25℃ 3:I ≤19A,di/dt ≤200A/μs, VDD≤B,起始结温 T =25℃ 3:ISD≤19A,di/dt ≤200A/μs, VDDSS StartinJ T =25℃ SD DSS J 4:脉冲测试
in „Motordrehzahlregler für Laufband“ · Analoge Elektronik und Schaltungstechnik ·
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LM94022.pdf
L M December 6, 2007 9 0 2 2 LM94022/LM94022Q L M 1.5V, SC70, Multi-Gain Analog Temperature Sensor with 9 0 Class-AB Output 2 General Description ■ Disk Drives Q ■ Games circuit temperature sensor that
in „Suche nach einem Temperatursensor“ · Mikrocontroller und Digitale Elektronik ·
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Datei
alf.c
define DDRPORT0 DDRC #define DDRPORT1 DDRA // Definiere PWM-Einstellungen #define CPUFrequency 14745600L #define F_CPU 14745600L #define PWMChannels 9 #define PWMFrequency 75L #define PWMSteps 2048 //Bitte 512, 1024 o 2048. Bei "krummen" Werten die Gammakurve selbst berechnen. #define PWMPrescaler 8 //
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PDF
TL783.pdf
DIFFERENTIAL 2 2 ÎÎtÎ = 1 ms ÎÎÎÎÎ 1.8 w 1.8 tw = 30 ms ÎÎÎÎ ÎÎÎÎÎ 1.6 1.6 A A – 1.4 – 1.4 i i i i L 1.2 L 1.2 n ÎÎÎÎC 0⋅C n ÎÎÎÎ e 1 e 1 TC= 0⋅C r ÎÎÎÎ u ÎÎÎÎ C C t 0.8 t 0.8 ÎÎÎT = 25⋅C p p C u 0.6 ÎÎÎÎÎ u ÎÎÎÎ O T C 25⋅C O 0.6 ÎÎÎÎÎ 0.4 0.4 ÎÎÎÎ 125⋅C ÎÎÎÎÎC 125⋅C 0.2 0.2 ÎÎÎÎ 0 0 0 25 50 75 100
in „LM337 mit Zenerdiode hochlegen ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STM32F107-SK-SCH-revA.pdf
OTG_ID DTA114YKA +5V + C C , 99 VSS PA10/USART1_RX/TIM1_CH3/OTG_FS_I70 OTG_DM OTG_DM USB_D+ 3.3V U8 L2 SHIELD x 2 74 VSS PA11/USART1_CTS/CAN1_RX/TIM1_CH4/OTG_FS_D71 OTG_DP OTG_DP HN1x3 47k ST2052BD N n FB0805/600R/200mAUSB_A09-601) x 3.3VA_MCU_E 49 VSS PA12/USART1_RTS/CAN1_TX/TIM1_ETR/OTG_FS_72 TMS TMS
in „Cortex M3 STM32F107VC beim Reset passiert nichts“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TEA5880_2.pdf
dB selectivity S +300 HIGH side 300 kHz f = 300 kHz; RF= 76 MHz to 108 MHz - 50 - dB selectivity S −200 LOW side 200 kHz f = −200 kHz; RF= 76 MHz to 108 MHz - 30 - dB selectivity S +200 HIGH side 200 kHz f = 200 kHz; RF= 76 MHz to 108 MHz - 40 - dB selectivity IR image rejection RF = 76 MHz to 108 MHz
in „Einfaches Radio basteln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
id_ni-mh_1104_e.pdf
380A/FT A L-A 1.2 3,800 3,700 17.0 +0/-0.7 67.0 +0/-1.5 53 HR17/67 33 . HHR-450A/FT A LFat/A 1.2 4,500 4,200 18.2 +0/-0.7 67.0 +0/-1.5 60 - 34 0 1- 5 5 Typic al1.8sch arge ch aracteristic s HHR-200SCP/FT* SC 4/5SC
in „Mit welcher Spannung lädt man eine NIMH Zelle?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
1.6 6 0 e 0 VX= 1.354 -▯1147.5 × XI |▯▯▯1.759 × 10 × - a 5.5 4 I 1.4 (X) with -180 MA X▯I ▯ -25 MA 7 l P I P V 5 L 1.2 T ) i 4.5 N ( P R e1.0 R R ag T 4 U l0.8 I C o N 3.5 L V0.6 O A in M N P E 3 E 0.4 A T T 2.5 X 0.2 L E V 2 0 0 100 200 300 400 500 -200 -150 -100 -50 0 VOLTAGE-MONITOR Pin Current (MA
in „Verzweifelt: Wie Widerstände und Kapazitäten eines Sperrwandler IC´s auslegen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Kapitel_204_20Gas-Brennwertkessel_20PL_202005.pdf
Preis EUR 46,22 0 3 2 ø80 ø125 Rohre (RAL 9016) ø 80/125 inkl. Befestigung und Silikon-Abdichtung L L = 250 mm Bestellnummer: OZ787810 Preis EUR 44,25 0 L = 500 mm Bestellnummer: OZ787811 Preis EUR 53,20 3 L = 1000 mm Bestellnummer: OZ787812 Preis EUR 70,61 L = 2000 mm Bestellnummer: OZ787813 Preis
in „OLYMP Gastherme GasStar Compact 8-27kW Zündgerät defekt.“ · Haus & Smart Home ·
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PDF
D130906D.pdf
HGTG20N60B3D Rev. B HGTG20N60B3D Typical Performance Curves (Continued) 100 o 500 o ) TJ= 150 C, RG= 10Ω, L = 100µH s TJ= 150 C, RG= 10Ω, L = 100µH n ( E E 400 M I T T Y 50 A 300 L L E 40 D V = 480V, V = 15V D F CE GE N 30 F - - 200 R VCE = 480V, GE = 15V R U U , 20 , ) ) O F d ( t t 10 100 0 10 20 30 40 0
in „Blitz Leistungsregelung“ · Analoge Elektronik und Schaltungstechnik ·
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ca3080-a.pdf
R1 7 AMPLIFIER C3 + 3 R4 7 INPUT 2K CA3080A 6 3 + 0.1µF (OTA) 2 - 2K CA3130 6 4 2 - OUTPUT C 5 4 R7 L R2 8 C4 2K 2K 1 0.1 e.g. 30pF (TYP) -7.5V 5 µF C5 C2 R 6 156 100K pF R5 0.1µF C1 2K C 6 200pF NULLING 0.1µF SAMPLE 0V R2 STORAGE -7.5V R3 15K 400 AND PHASE HOLD -7.5 STROBE COMPENSATION FIGURE 10. SCHEMATIC
in „Dimensionierung eines OTA in CMOS-Technologie“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
semi_eng_ge2a_aqw21_e.pdf
) c0.04 AQW216EH d 100 a 0 . a (using 2channels) L L L0 .3 AQW214EH 0.3 (using 2channels) AQW210EH (using 2channels) 0 .2 50 0. 0. 0 .1 0 0 0 -40 -0 0 20 40 60 8085 100 -40 -0 0 20 40 60 8085 100 -40 -0 0 20 40 60 8085 100 Ambient temperature (°C) Ambient
in „China-PC817 Optokoppler PCBs“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Copy_of_Temp_01.ASM
*************************************** Start: rcall LCD_Init ldi Zahl_h_buff,high(23456) ldi Zahl_l_buff,low(23456) Bigloop: mov Zahl_h,Zahl_h_buff mov Zahl_l,Zahl_l_buff subi Zahl_l_buff,low(-1) sbci Zahl_h_buff,high(-1) ldi ZH,high(2*message) ldi ZL,low(2*message) ldi ACC,128 rcall LCD_instruction
in „Fehlermeldung wenn zu gross“ · Mikrocontroller und Digitale Elektronik ·
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PDF
vacon-x2c-series-user-s-manual.pdf
asa 13-VOUT Voltage % L1 percent of applied line input voltage. 14-IOUT Motor Output 0-60 L1 Motorphasecurrentcomputedto an Current A accuracy of ± 20%. True part of motor current. Output current measurement with motor 0-200%
in „TWIKE - Gedanken zu einem anderen Antriebssystem“ · Offtopic ·
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PDF
Multi-CB-Leiterplatten_Basic-Design-Rules.pdf
200µm 105µm 250µm 250µm D 140µm 300µm 300µm 210µm 500µm 500µm L 400µm 900µm 900µm Bezeichnung Maße min Aspekt Ratio End-Ø Via-Pad Restring umlaufend A, B, C Via, Buried Via 1:12 75µm 225µm 75µm D Blind
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Datei
KidsMP3Player.ino
EEPROM_FOLDER 2 #define EEPROM_TRACK 4 #define BUTTON_TOLERANCE 25 #define LONG_KEY_PRESS_TIME_MS 2000L #define VOLUME_CHECK_INTERVAL_MS 200L #define PLAY_DELAY_MS 500L #define FADE_OUT_MS 3L * 1000L * 60L #define PIN_KEY A3 #define PIN_VOLUME A2 #define PIN_VOLUME_INTERNAL A1 // Uncomment to use button
in „Projekt fertiggestellt: MP3 Player für Kinder auf ATTiny-Basis“ · Projekte & Code ·
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Datei
KidsMP3Player.ino
EEPROM_FOLDER 2 #define EEPROM_TRACK 4 #define BUTTON_TOLERANCE 25 #define LONG_KEY_PRESS_TIME_MS 2000L #define VOLUME_CHECK_INTERVAL_MS 200L #define PLAY_DELAY_MS 500L #define FADE_OUT_MS 3L * 1000L * 60L #define PIN_KEY A3 #define PIN_VOLUME A2 #define PIN_VOLUME_INTERNAL A1 // Uncomment to use button
in „Projekt fertiggestellt: MP3 Player für Kinder auf ATTiny-Basis“ · Projekte & Code ·
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PDF
2SD965.pdf
6 mA ) a −25°C P ( ( n C1.6 4 t 600 I 5 mA IC p n n s r 4 mA r d c 1.2 c 3 e o 3 mA r w 400 c c p l 0.8 l 2 o o 2 mA o c C C l 200 C 0.4 1 mA 1 0 0 0 0 20 40 60 80 100 120 140 160 0 0.4 0.8 1.2 1.6 2.0 2.4 0 0.4 0.8 1.2 1.6 2.0 Ambient temperature T (°C) Collector-emitter voltage V (V) a CE Base-emitter
in „CCFL Displaybeleuchtung steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
a time. 3 www.fairchildsemi.com C B AC Electrical Characteristics (Note 3) 3 T =25 C, C =50 pF, R =200 k , input = t = 20 ns, unless otherwise specified. 9 A L L r f 1 Symbol Parameter Conditions Min Typ Max Units 0 4 tPHLor PLH Propagation Delay Time VDD = 5V 250 400 ns D C from Count Up or VDD = 10V
in „CMOS zähler. Wie anschließen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCF4069UB.pdf
min. withDD = 15V. 3/12 HCC/HCF4069UB DYNAMIC ELECTRICAL CHARACTERISTICS (T = 25⋅C, C = 50pF, R = 200k , amb L L typical temperature coefficient for aDD = 0.3%/⋅C values, all input rise and fall time = 20ns) Test Conditions Value Symbol Parameter V (V) Min. Typ. Max. Unit DD tPLH, PHL Propagation Delay
in „CD4049 in rauscharm, gibts das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EKG_usw_Informationformedicalapplications_von_TI.pdf
TM R E A L W O R L D S I G N A L P R O C E S S I N G Information for Medical Applications Amplifiers, Connectivity, Clocks, Data Converters, Digital Signal Processors, Digital Temperature Sensors, Interface, Logic
in „EKG Schaltung Neuling“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
rej09b0001_r8csm.pdf
Address MOVA [ Syntax ] [ Instruction Code/Number of Cycles ] MOVA src,dest Page: 200 [ Operation ] dest EVA(src) [ Function ] • This instruction transfers the affective address of src to dest. [ Selectable src/dest ] src dest R0L/R0 R0H/R1 R1L/R2 R1H/R3 R0L/R0 R0H/R1 R1L/R2 R1H/R3 A0
in „Assembler durchschnitts berechnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spannungsregler_LP2980-adj_50mA_LDO.pdf
Chip Figure 6-4. Output Voltage vs V for New Chip IN IN 160 220 OUT TEMPERATURE ) 140 1 mA 50 mA ) 200 OUT = 50 mA -55 C 25 C 150 C V V -40 C 85 C m 120 m 0 C 125 C ( ( 180 G G A 100 A 160 L L O 80 O V V 140 U 60 U O O O 40 O 120 R R D D 100 20 0 80 2 4 6 8 10 12 14 16 2 4 6 8 10 12 14 16 V IN
in „Geregelte negative Spannung mit LM2664 und LP2980 - geht das überhaupt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ucn5833_datasheet.pdf
Min. Max. Units Output Leakage Current I V = 30 V, T = 70°C — 10 µA CEX OUT A Collector-Emitter V l = 50 mA — 1.2 V Saturation Voltage CE(SAT) OUT l = 100 mA — 1.7 V OUT Input Voltage V 3.5 5.3 V IN(1) V -0.3 +0.8 V IN(0) Input Current l V = 5.0 V — 1.0 µA IN(1) IN l V = 0 V — -1.0 µA IN(0) IN Serial Output Voltage V I = -200 µA 4.5 — V OUT(1) OUT V I = 200 µA — 0.3 V OUT(0) OUT Supply Current l One output ON, l = 100 mA — 1.0 mA DD OUT All outputs OFF — 50 µA Output Rise Time t l = 100 mA, 10% to 90% — 500 ns r OUT Output
in „AT89C2051 und das UART Rätsel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tlc274.pdf
5.8 85°C 3.5 f = 1 kHz, R S 20 Ω, Vn Equivalent input noise voltage See Figure 2 25°C 25 nV/√Hz 25°C 200 VO = VOH , C L 20 P, BOM Maximum output-swing bandwidth RL= 10 Ω , See Figure 1 –40°C 260 kHz 85°C 130 25°C 2.2 VI= 10m V C L 20 P, B1 Unity-gain bandwidth See Figure 3 –40°C 3.1 MHz 85°C 1.7 25°C 49
in „Beschaltung von Photodioden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcm1796.pdf
Setting 1111 1111b 255 0 dB, no attenuation (default) 1111 1110b 254 –0.5 dB 1111 1101b 253 –1.0 dB L L L 0001 0000b 16 –119.5 dB 0000 1111b 15 –120.0 dB 0000 1110b 14 Mute L L L 0000 0000b 0 Mute 26 www.ti.com SLES100− DECEMBER 2003 B15 B14 B13 B12 B11 B10 B9 B8 B7 B6 B5 B4 B3 B2 B1 B0 Register 1R/W
in „Audio Signal verdoppeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADC_ApplicNotes.pdf
being filtered. –30 ∑ MODULATOR –40 2 . = = = = G G G G –50 0 40kHz 2 6 8 1 a. Gain = 1 / / / / / L L L L L 0 C C C C C M M M M M MCLK FREQUENCY DIVIDER –10 Figure 3. Input Sampling –20 As we can see from Figure 3, the sigma-delta modulator of the AD7710 operates at a frequency of f CLK IN /512 –30
in „ADC-Überspannungschutz mit Z-Diode; Einfluss auf die Messgenauigkeit“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
247,149,158,166,175,184,192,201,209,216,223,229,235,240,245,248,251,253,254,254,254,252,250,247,243,238,232,226,220,212,205,197,188,180,171,162,153,144,135,127,118,110,102,94,87,80,73,67,61,55,50,45,40,36,32,28,25,22,19,16,14,12,10,8,6,5,3,2,1,1,2,3,4,6,7,9,11,13,15,17,20,23,26,30,34,38,42,47,52,58,64,70,76,83,91,98,106,114,123,131,140}, /*6 7 */ {4,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2
in „16 Kanal Software-PWM, Bitte um Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
149,158,166,175,184,192,201,209,216,223,229,235,240,245,248,251,253,254,254,254,252,250,247,243,238,232,226,220,212,205,197,188,180,171,162,153,144,135,127,118,110,102,94,87,80,73,67,61,55,50,45,40,36,32,28,25,22,19,16,14,12,10,8,6,5,3,2,1,1,2,3,4,6,7,9,11,13,15,17,20,23,26,30,34,38,42,47,52,58,64,70,76,83,91,98,106,114,123,131,140}, /*5 6 */ {200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,200,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2
in „Soft-PWM Version 3: Probleme beim Anpassen des Programms“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CD00277537.pdf
131 kHz T = 85 °C 26 34 A T = 105 °C 34 45 A Max allowed VDD from IDDMax current in 1.65 V to - - - 200 (LP Sleep) Low power Sleep 3.6 V mode 1. Based on characterization, not tested in production, unless otherwise specified. DocID17659 Rev 10 61/129 103 Electrical characteristics STM32L151x6/8/B, STM32L152x6
in „SPI-Schnittstelle Befehl: SPI_I2S_SendData(spi2, data)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
K30H603.pdf
third generation 80 100 70 ] 60 ] T T N N R 50 R p =1µs R R 10 U U 10µs R 40 R 50µs T T C C 100µs L 30 L L L 200µs C C 1 , TC=80° , 500µs I 20 I T C110° DC TC=80° 10 T C110° 0 0.1 1 10 100 1000 1 10 100 1000 f, SWITCHING FREQUENCY [kHz] VCE COLLECTOR-EMITTER VOLTAGE [V] Figure 1. Collector current
in „Inverter Schweißgerät, Alternative IGBTs kompatibel? (Datenblätter inside)“ · Analoge Elektronik und Schaltungstechnik ·
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IGBT_Datenblatt.pdf
third generation 60 100 50 ] ] p =1µs T T N 40 N 10 10µs R R R R 50µs U U 100µs R 30 TC=80° R T T 200µs C T C110° C L L 500µs L T =80° L C 20 C C 1 , , DC I T C110° I 10 0 0.1 1 10 100 1000 1 10 100 1000 f, SWITCHING FREQUENCY [kHz] VCE COLLECTOR-EMITTER VOLTAGE [V] Figure 1. Collector current as a
in „Verluste eines IGBTs mit integrierter, antiparalleler Diode“ · Analoge Elektronik und Schaltungstechnik ·
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datasheet.pdf
CHARACTERISTICS COLLECTOR DISSIPATION VS AMBIENT TEMPERATURE GAIN BAND WIDTH PRODUCT VS. EMITTER CURRENT 200 400 ] VCE=-6V W ] [ H P 150 [ 300 f N C T D A R I P 200 S 100 T D I R D O A C B L 50 A 100 L G C 0 0 0 50 100 150 0.1 1 10 100 EMITTER CURRENT IE[mA] AMBIENT TEMPERATURE Ta[℃] DC FORWARD CURRENT GAIN
in „PNP Transistor Ersatz“ · Analoge Elektronik und Schaltungstechnik ·
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2N3055-TOSH.pdf
COLLECTOR (CASE) (Tc=25°C) Derate Linearly 0.66 w °c / JEDEC T0-2 4MA/TO— * Junction Temperature T 200 °c i EIAJ TC—3 ,TB— * Storage Temperature Range Tstg -65-200 °c TOSHIBA 2—21D1A ELECTRICAL CHARACTERISTICS (Ta=25 C) Weight : 12.6g CHARACTERISTIC SYMBOL TEST CONDITION MIN. TYP. MAX. UNIT =100V, -
in „2N3055 , was sind aktuelle Alternativen ?“ · Analoge Elektronik und Schaltungstechnik ·