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PDF
31007.pdf
II 710122 long page 186 Coding set Pollution degree 3 2 2 Pollution degree 3 2 2 Rated voltage 160 400 400 Rated voltage 160 400 400 716846 page 187 Rated test voltage 2.5 4 2.5 Rated test voltage 2.5 4 2.5 Latching flange 710084 right Protection category according Protection category according 710085 left page 183 to IEC 60529 IP20 to IEC 60529 IP00 Tightening torque UL 4.4 lb-in max. Tightening torque UL 4.4 lb-in max. Min. insul. strip length 6 mm Min. insul. strip length 6 mm for Type 077 Coding pin Pole size 2 - 24 Pole size 2 - 3 710121 short Colour black Colour black 710122
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PDF
MAX16832-MAX16832C.pdf
. PART TEMP RANGE PIN-PACKAGE The MAX16832A/MAX16832C offer an analog dimming MAX16832AASA+ -40°C to +125°C 8 SO-EP* feature that reduces the output current by applying an MAX16832CASA+ -40°C to +125°C 8 SO-EP* external DC voltage below
in „MAX16832 v. ZXLD1362 (LED Treiber)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OP07.pdf
Rejection Ratio PSRR VS= ±3V to ±18V 10 51 μV/V Large SignalVoltage Gain AVO RL≥ 2 kΩ,V O ±10V 100 400 V/mV Rev. D | Page 4 of 16 OP07 Parameter Symbol Conditions Min Typ Max Unit OUTPUT CHARACTERISTICS TA= 25°C OutputVoltage Swing V O RL≥ 10 kΩ ±12.0 ±13.0 V RL≥ 2 kΩ ±11.5 ±12.8 V RL≥ 1 kΩ ±12.0 V −
in „Spannungsregler für Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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LRTB_GVTG_15_.pdf
Seite 27 (min.) 619 519 459 nm 4) page 27 dom Dominant wavelength (typ.) 625 528 470 nm IF= 20 mA (max.) 631 546 476 nm Spektrale Bandbreite bei 50 % rel max (typ.) 18 33 25 nm Spectral bandwidth at 50 % Irel max IF= 20 mA Abstrahlwinkel bei 50 % V (Vollwinkel) (typ.) 2 120 120 120 Grad Viewing angle
in „LRTBGVT erstellen(LTspice)“ · Analoge Elektronik und Schaltungstechnik ·
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Finder-technische-erlaeuterungen-de.pdf
Kontaktlastkategorie Spannung am Strom am (Application category) offenen Kontakt geschlossenen Kontakt Max. zulässige Eingangsspannung: Der Wert der Eingangsspannung bei dem ein Relais im Dauerbetrieb die max. zulässige Grenztemperatur nicht überschreitet. Die CC 0 ≤ 30 mV ≤10 mA max. zulässige Eingangsspannung
in „Löschglied für Tauchpumpe“ · Analoge Elektronik und Schaltungstechnik ·
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TDA8375.pdf
of vertical slope. 600 MGH368 600 MGH369 hanIbook, halfpage hanIbook, halfpage vert vert ( A) ( A) 400 400 200 200 0 0 −200 −200 −400 −400 −600 −600 0 1/2t t 0 /2 t t time time SC = 0, 31H and 63H; VA = 31H; VHS = 31H. Picture height does not change with S-correction for VSH = 0, 31H and 63H; VA = 31H
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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Q_26MHz_SMD6035.pdf
of cover-tape in the leader is more than 400mm inclucing empty embossed area Carrier-tape After all products were packaged, must remain more than twenty pieces or 400mm empty area, which should be sealed by cover-tape Terminal Cover-tape The tip
in „Woher bekommt man CC1100 Module“ · HF, Funk und Felder ·
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PDF
Q_26MHz_SMD6035.pdf
of cover-tape in the leader is more than 400mm inclucing empty embossed area Carrier-tape After all products were packaged, must remain more than twenty pieces or 400mm empty area, which should be sealed by cover-tape Terminal Cover-tape The tip
in „Quarz 26Mhz, 10ppm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Q_26MHz_SMD6035.pdf
of cover-tape in the leader is more than 400mm inclucing empty embossed area Carrier-tape After all products were packaged, must remain more than twenty pieces or 400mm empty area, which should be sealed by cover-tape Terminal Cover-tape The tip
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PDF
AD623.pdf
> 1) 25 ppm Gain Drift (G = 1) 200 mV Max Input Offset Voltage (AD623A) 2 mV/8C Max Input Offset Drift (AD623A) 100 mV Max Input Offset Voltage (AD623B) 1 mV/8C Max Input Offset Drift (AD623B) common-mode range and can amplify signals that
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lt1025_datasheet.pdf
1025fb 10 LT1025 U PACKAGE DESCRIPTIO N8 Package 8-Lead PDIP (Narrow 0.300) (LTC DWG # 05-08-1510) .400* (10.160) .300 – .325 .045 – .065 .130 .005 MAX (1.143 – 1.651) (3.302 0.127) (7.620 – 8.255) 8 7 6 5 .065 .255 .015* (1.651) (6.477 0.381) .008 – .015 TYP (0.203 – 0.381) .120 (3.048) .020 +.035 MIN
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10n120bnd.pdf
Otherwise Specified ) 35 ( 60 ) V = 15V T ( GE N T 30 R 50 N R R 25 C TJ= 150 C, G = 10Ω,G = 15V, L = 400µH R R C T 40 R 20 I T M C E 30 L 15 T L R C 10 T 20 C C , L E 5 O 10 I C 0 E I 0 25 50 75 100 125 150 0 200 400 600 800 1000 1200 1400 T , CASETEMPERATURE ( C) V , COLLECTORTO EMITTERVOLTAGE (V) C CE
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DSxE.pdf
Temperature rise Single Minimum operating power Approx.200 mW (at nominal voltage, Contact current:2A) Max. 65°C side stable Nominal operating power Approx.400 mW Functional* 4 1C, 2C:Min. 490 m/s {50 G} Shock resistance 4C:Min. 294 m/s {30 G} M 1coil Minimum set and reset power Approx.90 mW 5 2 type latching
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Transistoren_cht.pdf
500 0.33 10 MAX220 ST STU6NA100 1000 1.7 6 MAX220 ST STU6NA90 900 2 5.8 MAX220 ST STU7NA80 800 1.5 6.5 MAX220 ST STU7NA90 900 1.3 7.3 MAX220 ST STU7NB90 900 1.45 7.4 MAX220 ST STU8NA80 800 1 8.3 MAX220 ST STU8NB90 900 1 MAX220 ST STU9NB80 800 1.1 8.5 MAX220 ST STV10NA40 400 0.55 10 125 SO-10 ST STV12N20 200 0.3 12 100 SO-10 ST STV18N20 200 0.18 18 125 SO-10 ST STV33N10 100 0.06 33 150 SO-10 ST STV36N06 60 0.04 36 120 SO
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Power_MOSET_Cross_reference.pdf
500 0.33 10 MAX220 ST STU6NA100 1000 1.7 6 MAX220 ST STU6NA90 900 2 5.8 MAX220 ST STU7NA80 800 1.5 6.5 MAX220 ST STU7NA90 900 1.3 7.3 MAX220 ST STU7NB90 900 1.45 7.4 MAX220 ST STU8NA80 800 1 8.3 MAX220 ST STU8NB90 900 1 MAX220 ST STU9NB80 800 1.1 8.5 MAX220 ST STV10NA40 400 0.55 10 125 SO-10 ST STV12N20 200 0.3 12 100 SO-10 ST STV18N20 200 0.18 18 125 SO-10 ST STV33N10 100 0.06 33 150 SO-10 ST STV36N06 60 0.04 36 120 SO
in „Schaltregler Fragen“ · Analoge Elektronik und Schaltungstechnik ·
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5005cpe.pdf
: 180.0 (W) × 65.0 (H)× 12.0 max. (D) mm Weight : 170g max. LCD Type : NSD-7446 ( STN / Neutral-mode / Transflective ) Viewing Angle : 6:00 Control LSI : T6963C-0101 (Produced by TOSHIBA) Data Transfer : 8-bit parallel data transfer
in „Anschluss eines LCD-Displays“ · Mikrocontroller und Digitale Elektronik ·
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HPB8b-4xK5x.pdf
T1200 E E R1200 R R Green R U Blue U 800 Rθ =60 C/W C C Rθ J=50 C/W D 800 D J-A o R R Rθ J-A0oC/W A A 400 Rθ J-A0 C/W W 400 W R R F F 0 0 1.5 2.0 2.5 3.0 3.5 4.0 20 40 60 80 100 120 140 160 O FORWARD VOLTAGE (V) AMBIENT TEMPERATURE( C) 1.2 1.4 1.2 1.0 i i s s o 1.0 o0.8 i i m 0.8 m l l0.6 e e i 0.6 i0.4
in „5 Watt Leds von Reichelt“ · Mikrocontroller und Digitale Elektronik ·
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MAX1448E_data.pdf
20MHz input frequency. The fully Fully Differential Analog Input differential input stage has a -3dB 400MHz bandwidth Wide 2V p-pDifferential Input Voltage Range and may be operated with single-ended inputs. In addi- tion to low operating power, the MAX1448 features a 400MHz -3dB Input Bandwidth 5µA power-down
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Mini-Circuits-ADE-1-datasheet.pdf
V O 1.2 I20 10 1.1 0 1.0 0 100 200 300 400 500 0 100 200 300 400 500 FREQUENCY (MHz) FREQUENCY (MHz) ADE-1 ADE-1 LO VSWR IF VSWR 4.5 3.0 LO=+4 dBm LO=+7 dBm LO=+10 dBm 4.0 2.5 3.5 R R3.0 W S S2.0 V2.5 V 2.0 1.5 1.5 LO=+4 dBm LO=+7 dBm LO=+10 dBm 1.0 1.0 0 100 200 300 400 500 0 100 200 300 400 500 FREQUENCY (MHz) FREQUENCY (MHz) ® For detailed performance specs Mini-Circuits & shopping online see web site ISO 9001 ISO 14001 AS 9100 CERTI®IED P.O. Box 350166, Brooklyn
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Mini-Circuits-ADE-1-datasheet.pdf
V O 1.2 I20 10 1.1 0 1.0 0 100 200 300 400 500 0 100 200 300 400 500 FREQUENCY (MHz) FREQUENCY (MHz) ADE-1 ADE-1 LO VSWR IF VSWR 4.5 3.0 LO=+4 dBm LO=+7 dBm LO=+10 dBm 4.0 2.5 3.5 R R3.0 W S S2.0 V2.5 V 2.0 1.5 1.5 LO=+4 dBm LO=+7 dBm LO=+10 dBm 1.0 1.0 0 100 200 300 400 500 0 100 200 300 400 500 FREQUENCY (MHz) FREQUENCY (MHz) ® For detailed performance specs Mini-Circuits & shopping online see web site ISO 9001 ISO 14001 AS 9100 CERTI®IED P.O. Box 350166, Brooklyn
in „Ringmodulator“ · Analoge Elektronik und Schaltungstechnik ·
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p-pan-volttester-400fi-de.pdf
- Schutzschalter Keine Batterie erforderlich Spritzwasser- und staubgeschützt IP 64 Stromaufnahme max. 25mA bei 400 V Abmessungen 248 x 32 x 26 mm CAT III 400 V Lieferumfang: Bedienungsanleitung Eigenschaften PAN Volttester 400FI Anzahl LEDs 8 Gleichspannung DC 6-12-24-50 - 120-230-400V Wechselspannung AC 6-12-24-50 - 120-230-400 V Gewicht (Brutto / Netto) 271 g / 122 g
in „DUSPOL-Spannungsmesser oder Multimeter“ · Analoge Elektronik und Schaltungstechnik ·
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PTC_ICL_in_housing.pdf
Inrush current limiters PTC thermistors in housing Electrical specifications and ordering codes Type V max Vlink,maxR RR T ref C th τth Circuit Ordering code (typ.) (typical) (typical) diagram V AC V DC % °C J/K s PBT plastic case, preferred types for new designs J213 280 400 33 25 130 1.1 140 2 B59213J0130A020
in „Einschaltproblem bei Trafos 50VA <“ · Analoge Elektronik und Schaltungstechnik ·
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DCDC_Wandler.pdf
pk-pk through 12 µH inductor 5.0 V 400 mA 10 mA 1000 µF 81% IM2405SA 12.0 V 165 mA 10 mA 165 µF 84% IM2412SA Ripple Current and 47 µF capacitor, 5 Hz to 20 MHz Input Filter • Capacitor 9.0-36.0 V 15.0 V 135 mA 10 mA 100 µF 85% IM2415SA ±
in „Verstehe die Schaltung nicht“ · Analoge Elektronik und Schaltungstechnik ·
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CZX.pdf
V D. C., 1 s for C < 1μF 1900 V D. C., 1 s for C ≥ 1μF Marking KNB1560 for C = 0,01μF to 1μF (for Max. pulse rise time du/dt, at standard version): Capacitance Tolerance 390 V D. C.accoding to 500 V/μs at for PCM = 10mm KNB1560 EN 132400: 400 V/μs at for PCM = 15mm C≤0,022μF MKP _ _ _ μF ± _ _ _ % X2
in „Maschinensteuerung Widerstand verbrannt“ · Analoge Elektronik und Schaltungstechnik ·
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10350.pdf
TAunless otherwise specified. Table 37. ADC characteristics Symbol Parameter Conditions Min Typ 1) Max Unit Modulator Oversampling fMOD frequency 2.1 MHz V 2)3) 0 2.5 V AIN Conversion voltage range V <V | I|< Negative input leakage current on IN SS, IN Ilkg analog pins 400µA on adjacent 5 6 µA analog
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Datei
Wattmeter_v1.6.h
check below) #define Divisor_P_th 40 // State: Calculate, used to calculate P_th #define Divisor_P_el 400 // State: Calculate, used to calculate P_el #define Divisor_P_th_r -40 // State: Calculate, _r stands for reverse; used to calculate P_th #define Divisor_P_el_r -400 // State: Calculate, _r stands for reverse; used to calculate P_el #define max_Value_el 200000 #define max_Value_th 20000 #define Minute_Pulse 3 // Minute Pulse isnt longer than 3 Seconds #define Start_Counting 5 // Start to count Pulses at Second 5 #define Stop_Counting 55 //
in „Ein Programm mit unterschiedlichen Auswirkungen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Wattmeter_v1.6.h
check below) #define Divisor_P_th 40 // State: Calculate, used to calculate P_th #define Divisor_P_el 400 // State: Calculate, used to calculate P_el #define Divisor_P_th_r -40 // State: Calculate, _r stands for reverse; used to calculate P_th #define Divisor_P_el_r -400 // State: Calculate, _r stands for reverse; used to calculate P_el #define max_Value_el 200000 #define max_Value_th 20000 #define Minute_Pulse 3 // Minute Pulse isnt longer than 3 Seconds #define Start_Counting 5 // Start to count Pulses at Second 5 #define Stop_Counting 55 //
in „Ein Programm mit unterschiedlichen Auswirkungen“ · Mikrocontroller und Digitale Elektronik ·
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TL074.pdf
C (unless otherwise specified) TL074I,M,AC,AI, AM,BC,BI,BM TL074C Symbol Parameter Unit Min. Typ. Max. Min. Typ. Max. Vio Input OffsetoVoltage SR = 50 ) mV T amb= 25 C 3 6 3 10 TL074BC,BI,BM 1 3 T min. Tamb Tmax. 7 13 TL074BC,BI,BM 5 o DV io Input Offset Voltage Drift 10 10 V/ C Iio Input OffsetoCurrent
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PDF
NECCS04393-1.pdf
Conditions MIN. TYP. MAX. Unit SCK0 cycle time tKCY2 4.5 V ≤ VDD ≤ 5.5 V 800 ns 2.7 V ≤ VDD < 4.5 V 1600 ns 2.0 V ≤ VDD < 2.7 V 3200 ns SCK0 high-/low-level width tKH2, 4.5 V ≤ VDD ≤ 5.5 V 400 ns KL2 2.7 V ≤ VDD < 4.5 V 800
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LP2950-D.PDF
400 V Vout= 5.0 V ( )150 L = 400 mA to 75 mA G B ) m TA= 25°C 200 N (60 T Vout H N N100 C T R G E IL= 0.1 mA U 0 T E40 C 50 O R A T L L - 200 U P TA= 25°C 0 Load T R20 CL = 1.0 mF O V = 6.0 V - 400 Vin
in „Wie lange hält ein LM1117-5.0 ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LP2950_LP2951.pdf
400 V Vout= 5.0 V ( )150 L = 400 mA to 75 mA G B ) m TA= 25°C 200 N (60 T Vout H N N100 C T R G E IL= 0.1 mA U 0 T E40 C 50 O R A T L L - 200 U P TA= 25°C 0 Load T R20 CL = 1.0 mF O V = 6.0 V - 400 Vin
in „Warum funktioniert mein Brückengleichrichter nicht?“ · Fahrzeugelektronik ·
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PDF
BBAT00015_Xeno_XL-200F.pdf
Typical values stored ℃t for one year) ▪ (at 5mA/℃0/6℉i/2.0V cut-off) 16.5Ah ▪ Nominal voltage 3.6V ▪ Max. recommended continuous current 230mA (Higher current can be available upon consulting) ▪ Max. pulse current capabilit★ 400mA ▪ Operating temperature range -55 ~+85℃ ▪ Lithium metal content approx. 4.8g ▪ Weight 98g ▪ Volume 51.0㎤ ▪ UL Approval MH28122 Dimensions in mm Max Pulse Capability Available Terminal Type Maximum Pulse capability reading over 3.0V at 400mA/0.1sec. STD, T1, AX, Wire, Connector Type every 2 min. at℃+, 1㎂ /㎠ base current with fresh batteries. The
in „Neue Lithium-Batterien (Gr. D, 3,6V / 16Ah) abzugeben“ · Markt ·
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AN-3008.pdf
200 3.3 170 load inductance at turn-off, much higher voltages are possi- Gate 300 6.8 250 (I > 10mA) 400 11 308 ble. Energy storage is negligible when a TRIAC turns off GT because of its low holding or recovery current. 8 to 40 A (RMS) 600 39 400 800 51 400 The presence of an additional switch such as
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PDF
LM73.pdf
8) V = 2.7V T = −10°C to 80°C ±1.0 °C (max) DD A to TA= −25°C to 115°C ±1.5 °C (max) VDD = 4.5V TA= −40°C to 150°C ±2.0 °C (max) V > 4.5V T = −10°C to 80°C ±1.5 °C (max) DD A to TA= −25°C to 115°C ±2.0 °C (max) VDD = 5.5V TA= −40°C to 150°C
in „LM73 über TWI/I2C mit Atmega1281 auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TNY264-266-268-1.pdf
Operation at Medium Loading. C 4/03 5 TNY264/266-268 200 8 3 V 100 V 1 EN DC-INPUT 3 P 0 CLOCK 10 D V MAX 5 BYPASS 0 400 IDRAIN 200 V DRAIN 0 0 1 2 Time (ms) V Figure 11. TinySwitch-II Power-up without Optional External UV DRAIN Resistor Connected to EN/UV Pin. 1 PI-2661-072400 8 - Figure 9. TinySwitch-II
in „Unbekanntes Flyback IC“ · Analoge Elektronik und Schaltungstechnik ·
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IRL540N-UMW.pdf
Power MOSFET TO-220-3L Package Information Dimensions In Millimeters Dimensions In Inches Symbol Min. Max. Min. Max. A 4.400 4.600 0.173 0.181 A1 2.250 2.550 0.089 0.100 b 0.710 0.910 0.028 0.036 b1 1.170 1.370 0.046 0.054 c 0.330 0.650 0.013 0.026 c1 1.200 1.400 0.047 0.055 D 9.910 10.250 0.390 0.404 E
in „Problem mit Mosfet IRL540 an 52V, öffnet nicht mehr“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN98030.pdf
APPLICATION NOTE Two-stage wideband HF linear amplifier for 400 W PEP using BLW96 and BLW50F AN98030 Philips Semiconductors Two-stage wideband HF linear amplifier for Application note 400 W PEP using BLW96 and BLW50F AN98030 CONTENTS 1 PART 1 SINGLE-STAGE WIDEBAND
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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PDF
ad620.pdf
R = 2 kΩ, unless otherwise noted. S L Table 2. 1 AD620A AD620B AD620S Parameter Conditions Min Typ Max Min Typ Max Min Typ Max Unit GAIN G = 1 + (49.4 kΩ/G ) Gain Range 1 10,000 1 10,000 1 10,000 2 Gain Error VOUT= ±10 V G = 1 0.03 0.10 0.01 0.02 0.03 0.10 % G = 10 0.15 0.30 0.10 0.15 0.15 0.30 % G =
in „Probleme mit AD620 EKG“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BRY_55.pdf
. . BRY55-30 30 -2 . . . BRY55-60 60 -3 . . . BRY55-100 100 -4 . . . BRY55-200 200 -6 . . . BRY55-400 400 -7 . . . BRY55-500 500 -8 . . . BRY55-600 600 Forward Current RMS (All Conduction Angles) T(RMS) 0.8 Amp Peak Forward Surge Current, T = 25⋅C I 8 Amps A TSM (1/2 Cycle, Sine Wave, 60 Hz) Circuit
in „Kleinleistungs-Thyristor TO-92 Bezugsquelle“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4017.pdf
Characteristics CD4017BM, CD4022BM (Note 2) b a a Symbol Parameter Conditions 55§C 25§ 125§C Units Min Max Min Typ Max Min Max IDD Quiescent Device VDD e 5V, IN e VDD or SS 5 0.3 5 150 mA Current VDD e 10V, IN e VDD or SS 10 0.5 10 300 mA VDD e 15V, IN e VDD or SS 20 1.0 20 600 mA VOL Low Level lOlk 1.0
in „IC 4017 Decade Counter, Frage zu Bauteil Kondensator“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LAN9354_Fail_Report_2022-03-17_14-03-19.pdf
maximum and minimum of all rise and fall times shall be less than or equal to 0.5ns. The statistics (min/max Rise/Falltime) over 100 measurements are used to determine compliance. Pass Limits: < 500.00 ps +Vout, Worst Case Delta 322.74 ps Result Details Min Risetime 3.931 ns Max Risetime 4.254 ns Min Falltime
in „Ethernet Compliance Test failLAN9354“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TransistorArray-DMOS-8ch-TBD62083APG.pdf
0.6 V (MAX) TBD62084A series 1.0 V (MAX) • Package : PG type P-DIP18-300-2.54-001 FG type SOP18-P-375-1.27 FNG type SSOP18-P-225-0.65 SOP18-P-375-1.27 FWG type P-SOP18-0812-1.27-001 TBD62083AFNG, TBD62084AFNG
in „Lichtsteuerung über i2c - ULN2803A - S12-100“ · Mikrocontroller und Digitale Elektronik ·
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PDF
B300_PXA_ELKOS_ECC.pdf
not exceed values shown in STANDARD RATINGS. (at 20C after 2 minutes) Dissipation Factor (tane) 0.12 max. (at 20C, 120Hz) Low Temperature Characteristics Z(- 25C)/Z(+20C)[1.15 (Max. ImpedanceRatio) Z(- 55C)/Z(+20C)[1.25 (at 100kHz) Endurance The following specifications shall be satisfied when the capacitors
in „Ladungspumpe: welchen Low-ESR Kondensator nehmen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC34063A-D.PDF
5 −5 −5 C T 4.0 x 10 ton 4.0 x 10 ton 4.0 x 10 on I pk(switch) 2I ǒ ton ) 1 Ǔ 2I 2I ǒ on ) 1 Ǔ out(max) toff out(max) out(max) off Rsc 0.3/Ipk(switch) 0.3/pk(switch) 0.3/pk(switch) L(min) (V * V ) (V * V * V ) (V * V ) ǒ in(min) sat Ǔ t ǒ in(min) sat out Ǔ t ǒ in(min) sat Ǔ t pk(switch) on(max) Ipk(switch
in „MC34063 Invertierte Spannung berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ON_SEMICONDUCTOR__C34063AP1G_DATASHEET.pdf.pdf
5 −5 −5 C T 4.0 x 10 ton 4.0 x 10 ton 4.0 x 10 on I pk(switch) 2I ǒ ton ) 1 Ǔ 2I 2I ǒ on ) 1 Ǔ out(max) toff out(max) out(max) off Rsc 0.3/Ipk(switch) 0.3/pk(switch) 0.3/pk(switch) L(min) (V * V ) (V * V * V ) (V * V ) ǒ in(min) sat Ǔ t ǒ in(min) sat out Ǔ t ǒ in(min) sat Ǔ t pk(switch) on(max) Ipk(switch
in „Step Down Regler zu heiss & Fragen zur Umsetzbarkeit einer Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC34063A-D.PDF
5 −5 −5 C T 4.0 x 10 ton 4.0 x 10 ton 4.0 x 10 on I pk(switch) 2I ǒ ton ) 1 Ǔ 2I 2I ǒ on ) 1 Ǔ out(max) toff out(max) out(max) off Rsc 0.3/Ipk(switch) 0.3/pk(switch) 0.3/pk(switch) L(min) (V * V ) (V * V * V ) (V * V ) ǒ in(min) sat Ǔ t ǒ in(min) sat out Ǔ t ǒ in(min) sat Ǔ t pk(switch) on(max) Ipk(switch
in „Fehler in MC33063A-LTSpice-Modell“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM229_MC3302_LM2901.pdf
25°C, unless otherwise noted) LM2901/2901V/ LM239/339 NCV2901 MC3302 Characteristic Symbol Min Typ Max Min Typ Max Min Typ Max Unit Input Offset Voltage (Note 4) V IO − ±2.0 ±5.0 − ±2.0 ±7.0 − ±3.0 ±20 mVdc Input Bias Current (Notes 4, 5) I − 25 250 − 25 250 − 25 500 nA IB (Output in Analog Range) Input
in „Eingangssignal Verstärken (mit MC1458P?)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM229_MC3302_LM2901.pdf
25°C, unless otherwise noted) LM2901/2901V/ LM239/339 NCV2901 MC3302 Characteristic Symbol Min Typ Max Min Typ Max Min Typ Max Unit Input Offset Voltage (Note 4) V IO − ±2.0 ±5.0 − ±2.0 ±7.0 − ±3.0 ±20 mVdc Input Bias Current (Notes 4, 5) I − 25 250 − 25 250 − 25 500 nA IB (Output in Analog Range) Input
in „Auslegung Optokoppler“ · Analoge Elektronik und Schaltungstechnik ·
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L4940xx5__1_.pdf
www.st.com. 17/23 Package mechanical data L4940xx TO-220 mechanical data mm. inch. Dim. Min. Typ. Max. Min. Typ. Max. A 4.40 4.60 0.173 0.181 C 1.23 1.32 0.048 0.051 D 2.40 2.72 0.094 0.107 D1 1.27 0.050 E 0.49 0.70 0.019 0.027 F 0.61 0.88 0.024 0.034 F1 1.14 1.70 0.044 0.067 F2 1.14 1.70 0.044 0.067
in „Spannungsregler ala 7805 + niedriger Spannungsabfall“ · Analoge Elektronik und Schaltungstechnik ·
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TLPR5600.pdf
UNIT Soldering temperature t 5 s, 2 mm from body T 260 °C sd TLPR5600 RthJA 500 K/W TLPH5600 RthJA 400 K/W Thermal resistance junction/ambient TLPY5600 RthJA 400 K/W TLPG5600 RthJA 400 K/W TLPP5600 R 400 K/W thJA OPTICAL AND ELECTRICAL CHARACTERISTICS (T = 25 °C, unless otherwise specified) amb TLPR5600
in „5 mm LED knicken - Pfusch?“ · Analoge Elektronik und Schaltungstechnik ·