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MOS4543_SMD4543_STM.pdf
CHARACTERISTICS Test Conditions Value Symbol Parameter V V I V T Low 25⋅C T High Unit (V) (V) ( A) (V)D Min. Max. Min. Typ. Max. Min. Max. IL Quiescent 0/5 5 5 0.04 5 150 Current HCC 0/10 10 10 0.04 10 300 Types 0/15 15 20 0.04 20 600 A 0/20 20 100 0.08 100 3000 0/5 5 5 0.04 5 150 HCF Types 0/10 10 10 0.04 10
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PDF
datasheet.pdf
driving circuits. SELECTION GUIDE Input Voltage(VDC) Output Output Current Input Current Reflected Max. Efficiency Model (mA) (mA)(typ.) Ripple (%, typ.) Number Nominal Voltage @Max. @No Current Capacitive @Max. Approval (Range) (VDC) Max. Min. Load Load (mA,typ.) Load(µF) Load B0303S/D-1W 3.3 3.3 303
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PDF
Hameg_Encoder_ALPS-EC11J.pdf
Shaft At R=5kΩ At R = 5kΩ At R = 5kΩ Ring Chattering: 5msmax. Chattering :2ms max. Chattering :3ms max. Type Bounce: 2msmax. Bounce :2ms max. Bounce :2ms max. EC11EH EC20A EC11J/EC11K Test circuit ▯7▯%$ V1=V 2=2.5V max. 3 3 3 Test circuit Output waveform 5FSNJOBM▯" 5FSNJOBM▯# 5FSNJOBM
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AD7908_7918_7928.pdf
) 13.5 mW max AV DD= 5V, SCLK= 20 MHz 6 mW max AV DD= 3V, SCLK= 20 MHz Auto Shutdown Mode (Static) 2.5 μW max AV DD= 5V 1.5 μW max AV DD= 3V Full Shutdown Mode 2.5 μW max AV DD= 5V 1.5 μW max AV DD= 3V 1Temperature
in „Leakage Current am Analog Input bei A/D-Wandler AD7928“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7908_7918_7928.pdf
) 13.5 mW max AV DD= 5V, SCLK= 20 MHz 6 mW max AV DD= 3V, SCLK= 20 MHz Auto Shutdown Mode (Static) 2.5 μW max AV DD= 5V 1.5 μW max AV DD= 3V Full Shutdown Mode 2.5 μW max AV DD= 5V 1.5 μW max AV DD= 3V 1Temperature
in „ADC-Überspannungschutz mit Z-Diode; Einfluss auf die Messgenauigkeit“ · Mikrocontroller und Digitale Elektronik ·
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HVG-100-SPEC.pdf
D File Name:HVG-100-SPEC 2025-04-17 100W Constant Voltage + Constant Current LED Driver HVG-100 series SPECIFICATION MODEL HVG-100-15 HVG-100-20 HVG-100-24 HVG-100-30 HVG-100-36 HVG-100-42 HVG-100-48 HVG-100-54 DC VOLTAGE
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Viper12A.pdf
V =18V, unless otherwise specified) j DD SUPPLY SECTION Symbol Parameter Test Conditions Min. Typ. Max. Unit IDDch Start Up Charging V DS=100V; VDD =5V ...DDon (See fig. 2) -1 mA Current Start Up Charging V DD=5V; VDS=100V IDDoff Current T j TSD - THYST 0 mA in Thermal Shutdown Operating Supply Current
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PDF
BUW84.PDF
specification Silicon diffused power transistors BUW84; BUW85 MGB938 handbook, full pagewidth 10 I ICM max δ = 0.01 C (A) IC max p = 20 s (1) 1 II 50 s 100 s 200 s 500 s (2) 10−1 1 ms 2 ms I 5 ms 10 ms DC 10−2 III IV 10−3 10 102 103 104 VCE (V) BUW84. Tmb ≤ 25 °C. I - Region of permissible DC operation.
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PDF
A4988.pdf
Reference Input Voltage Range VREF 0 – 4 V Reference Input Current IREF –3 0 3 μA VREF = 2 V%ITripMAX38.27% – – ±15 % 3 Current Trip-Level Error erI VREF = 2 V%ITripMAX 70.71% – – ±5 % VREF = 2 V%ITripMAX 100.00% – – ±5 % Crossover Dead Time DT 100 475 800 ns Protection 4 Overcurrent Protection Threshold
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PDF
A4988.pdf
Reference Input Voltage Range VREF 0 – 4 V Reference Input Current IREF –3 0 3 μA VREF = 2 V%ITripMAX38.27% – – ±15 % 3 Current Trip-Level Error erI VREF = 2 V%ITripMAX 70.71% – – ±5 % VREF = 2 V%ITripMAX 100.00% – – ±5 % Crossover Dead Time DT 100 475 800 ns Protection 4 Overcurrent Protection Threshold
in „RepRap mit Polulu A4988 : Stepper Motoren mit höherem Strom anschließen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A4988-EasyDriver-Klein.pdf
Reference Input Voltage Range VREF 0 – 4 V Reference Input Current IREF –3 0 3 μA VREF = 2 V%ITripMAX38.27% – – ±15 % 3 Current Trip-Level Error erI VREF = 2 V%ITripMAX 70.71% – – ±5 % VREF = 2 V%ITripMAX 100.00% – – ±5 % Crossover Dead Time DT 100 475 800 ns Protection 4 Overcurrent Protection Threshold
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Datei
MAX7219.C
beschrieben ) { for (aa=1;aa<10;aa++) { z=aa-1; xx=5; /* EasyCASE - */ f=t1[aa]; ziffer= f/10000; MAX7219_Write (xx,(unsigned char)ziffer); /* EasyCASE - */ b1=f%10000; ziffer = b1/1000; xx--; MAX7219_Write (xx,(unsigned char)ziffer); /* EasyCASE - */ d1=b1%1000; ziffer=d1/100; xx--; MAX7219_Write (xx,(unsigned char)ziffer); /* EasyCASE - */ f1=d1%100; ziffer=f1/10; xx--; MAX7219_Write (xx,(unsigned char)ziffer); /* EasyCASE - */ g1=f1%10; ziffer=g1; xx--; MAX7219_Write (xx,(unsigned char)ziffer); MAX7219_SetBrightness(INTENSITY_MAX); } /* EasyCASE
in „MAX 7219 AVR Programm“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test7.c
PORTB,4); } } } if((Puls_l_fschalter>(Puls_l_max-100)) && (x.b_autotrimm_002==0)) // autotrimm { // aktivieren mit knüppel: autotrimm_zeit=0; // vor->zurück->vor x.b_autotrimm_001=1; } if((Puls_l_fschalter<(Puls_l_max-100)) && (x.b_autotrimm_001==
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MAX712-MAX713.pdf
1.50 U A A A 35 A L1.45 V 30 E O V E V M V M L T E 1.45 30 T C L C L 1.40 T 25 C T C 1.40 25 0 50 100 150 0 50 100 150 CHARGE TIME (MINUTES) CHARGE TIME (MINUTES) MAX713 MAX713 CHARGING CHARACTERISTICS OF A CHARGING CHARACTERISTICS OF A FULLY-CHARGED NiMH BATTERY FULLY CHARGED NiMH BATTERY MAX712/13
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PDF
MAX712-MAX713.pdf
1.50 U A A A 35 A L1.45 V 30 E O V E V M V M L T E 1.45 30 T C L C L 1.40 T 25 C T C 1.40 25 0 50 100 150 0 50 100 150 CHARGE TIME (MINUTES) CHARGE TIME (MINUTES) MAX713 MAX713 CHARGING CHARACTERISTICS OF A CHARGING CHARACTERISTICS OF A FULLY-CHARGED NiMH BATTERY FULLY CHARGED NiMH BATTERY MAX712/13
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VRDM39x-DE.pdf
Drehzahl n = 600 min -1 FA1 • Umgebungstemperatur = 40°C A2 (≈ 80°C Lagertemperatur) = • Nenndrehmoment = 100 % ED • Angriffspunkte der Kräfte X = 15 mm X Y Y = 15 mm Motor VRDM 397 VRDM 3910 VRDM 3913 max. Radialkraft vorne 100 % ED 100 N 110 N FR1 2) max. Radialkraft 50 N 2. Wellenende 100 % ED 3) FR2 75 N max. Axialkraft Zug 100 % ED 170 N FA1 max. Axialkraft Druck 100 % ED 30 N FA2 1) 2)n Betriebsstunden bei einer 10% Ausfallwahrscheinlichkeit 3)ei Motoren mit Klemmkasten, Einbaudose oder Encoder bei Motoren
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rt8279.pdf
Table 1. Recommended Component Selection V (V) R1 (k ) R2 (k ) C (pF) L ( H) C ( F) OUT FF OUT 2.5 100 100 82 6.8 22 x 2 3.3 100 58.6 82 10 22 x 2 5 100 31.6 82 15 22 x 2 8 100 18 82 22 22 x 2 Functional Pin Description Pin No. Pin Name Pin Function High Side Gate Drive Boost Input. BOOT supplies the
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PDF
DSxE.pdf
standard SPECIFICATIONS Contact Characteristics (at 20°C 68°F) Arrangement 1 Form C, 2 Form C, 4 Form C Max. operating speed 20 cpm at rated load Initial contact resistance, max. 50 cps at low level load (By voltage drop 6 V DC 1 A) 50 m Initial insuration resistance* Min. 100 M (at 500 V DC) Contact material
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Datei
WAV-PLAY.ASM
stored rjmp EXST CPWO: ldi temp,16 cp word,temp ;|if word==16 then pa:=3/4*pa brne CHLI ;| mov dat1,pal_max ;| mov dat2,pah_max ;| add pal_max,dat1 ;|*3 adc pah_max,dat2 ;| add pal_max,dat1 ;| adc pah_max,dat2 ;| brcs LMAX ;+if c=1 pah,pal is to big lsr pah_max ;| ror pal_max ;|/4 lsr pah_max ;| ror pal_max ;| CHLI: ldi temp,mem_limit ;if file to large limit margins cpi pal_max,0x00 cpc pah_max,temp brlo lpa0 LMAX: ldi pal_max,0x00 ldi pah_max,mem_limit ;set flash rom address counter max lpa0: sbi PORTD,DDD4 ;disable \cs flash rom rcall BUSY ;wait until flash rom is ready
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PDF
L272M.pdf
THERMAL DATA Symbol Parameter Powerdip SO16 Minidip Unit Rth j-caseThermal Resistance Junction-pins Max. 15 – * 70 oC/W o Rth j-amb Thermal Resistance Junction-ambient Max. 70 – 100 C/W R Thermal Resistance Junction-alumina Max. – ** 50 – oC/W th j-alumina * Thermal resistance junction-pin 4 ** Thermal
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PDF
txb0101.pdf
noted) CCA V CCB= 2.5 V V CCB= 3.3 V VCCB = 5 V ± 0.2 V ± 0.3 V ± 0.5 V UNIT MIN MAX MIN MAX MIN MAX Data rate 100 100 100 Mbps w Pulse duration Data inputs 10 10 10 ns Timing Requirements over recommended operating free-air temperature range, V = 3.3 V ± 0.3 V (unless otherwise noted) CCA VCCB = 3.3 V VCCB = 5 V ± 0.3 V ± 0.5 V UNIT MIN MAX MIN MAX Data rate 100 100 Mbps w Pulse duration Data inputs 10 10 ns Switching Characteristics T = 25°C, V = 1.2 V A CCA FROM TO VCCB = 1.8 V V CCB= 2.5 V VCCB = 3.3 V V CCB= 5 V PARAMETER (INPUT) (
in „Temperaturmessung mit TSIC 206“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF8736.pdf
S D l Low Gate Charge 4 5 G D l Fully Characterized Avalanche Voltage and Current Top View SO-8 l 100% Tested for R G l Lead -Free Absolute Maximum Ratings Parameter Max. Units VDS Drain-to-Source Voltage 30 V VGS Gate-to-Source Voltage ± 20 Continuous Drain Current, V0V D @ TA= 25°C GS 18 D @ TA= 70
in „IRF8736 - Was haltet Ihr davon?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4N35-1.pdf
CONTROLLINGDIMENSION:INCH. –B– 3. DIMENSIONLTOCENTEROFLEADWHEN 1 3 FORMEDPARALLEL. INCHES MILLIMETERS DIM MIN MAX MIN MAX F 4 PL C L A 0.320 0.350 8.13 8.89 N B 0.240 0.260 6.10 6.60 C 0.115 0.200 2.93 5.08 D 0.016 0.020 0.41 0.50 E 0.040 0.070 1.02 1.77 F 0.010 0.014 0.25 0.36 –T– K G 0.100BSC 2.54BSC SEATING
in „Vorwiderstand für eine Led eines Optokopplers“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irlml2502.pdf
V TJ,STG Junction and Storage Temperature Range -55 to + 150 °C Thermal Resistance Parameter Typ. Max. Units RθJA Maximum Junction-to-Ambient 75 100 °C/W www.irf.com 1 04/30/03 IRLML2502 Electrical Characteristics @ T = 25°C Junless otherwise specified) Parameter Min. Typ. Max. Units Conditions V(BR
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PDF
IRF7416_datasheet.pdf
Reverse Recovery Time ––– 56 85 ns TJ= 25°C, F = -5.6A Q rr Reverse RecoveryCharge ––– 99 150 nC di/dt = 100A/µs Notes: Repetitive rating; pulse width limited by SD ≤ -5.6A, di/dt ≤ 100A/µDD ≤ V(BR)DSS max. junction temperature. ( See fig. 11 ) TJ≤ 150°C Starting J = 25°C, L = 25mH Pulse width ≤ 300µs; duty
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PDF
hy62256a.pdf
2.4V Input Rise and Fall Time 5ns Input and Output Timing Reference Levels 1.5V Output Load 70/85/100ns CL = 100pF + 1TTL Load 55ns CL = 50pF + 1TTL Load AC TEST LOADS TTL CL(1) Note : Including jig and scope capacitance CAPACITANCE TA = 25°C, f = 1.0MHz Symbol Parameter Condition Max. Unit C IN Input
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PDF
SPT7820-ADC.pdf
MAX UNITS Resolution 10 10 Bits DC Accuracy (+25 °C) ±Full Scale Integral Nonlinearity 100 kHz Sample Rate V ±1.0 ±1.5 LSB Differential Nonlinearity V ±0.5 ±0.75 LSB No Missing Codes VI Guaranteed Guaranteed
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PDF
EMMC-32GB-1.pdf
Characteristics General Table 6- 2 Electrical Characteristics- General Test Parameter Symbol Conditions Min. Max. Unit Peak voltage on all lines - - -0.5 VCCQ0.5 V All Inputs Input Leakage Current (before initialization sequence1 and/or the internal pull up - - -100 100 µA resistors connected) Input Leakage Current
in „Pinout Flexansvhlusskabel 8-Pin an eMMC Flash-Card 32GB gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds.pdf
V GE30V,V =0CE -- -- 100 nA IGES(R) Gate to Source Reverse Leakage V GE30V,V CE=0V -- -- 100 nA ON Characteristics VCE(sat) Collector-Emitter Saturation Voltage IC=15A,V GE5V -- 1.8 2.0 V VGE(th) Gate Threshold Voltage IC=1mA
in „Datenblatt Cypress cca7001“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4N38.pdf
80 H11D1 - H11D2 *Emitter to Collector Voltage VECO 7 H11D3 - H11D4 Collector Current (Continuous) 100 mA ELECTRICAL CHARACTERISTICS (TA= 25 °CUnless otherwise specified.) INDIVIDUAL COMPONENT CHARACTERISTICS Characteristic Test Conditions Symbol Device Min Typ** Max Unit EMITTER (F = 10 mA) V F ALL
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PDF
VCNT2020.pdf
CHARACTERISTICS (T = 25 °C, unless otherwise specified) amb PARAMETER TEST CONDITION SYMBOL MIN. TYP. MAX. UNIT INPUT (EMITTER) I = 20 mA - 1.25 1.4 Forward voltage F V F V IF= 100 mA - 1.5 1.7 Temperature coefficient of F F = 20 mA TKV F - -1.0 - mV/K Peak wavelength IF= 100 mA λ P - 940 - nm Reverse current
in „Binärcode aus leitender Tinte von Papierkarte lesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
winbound.txt
Const dataPort = &H296 Const Bank0 = &H0 Const Bank1 = &H2 Const Bank2 = &H4 Private Type temperature Max As Long Min As Long End Type Dim CPU As temperature Dim MB As temperature Dim GPU As temperature Private Sub Form_Load() Me.Show DoEvents CPU.Min = 100 GPU.Min = 100 MB.Min = 100 Timer1.Interval = 100
in „(Windows/Winbond) CPU Temperatur auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX2622-MAX2624.pdf
EVALUAWISDATA SHEET FOLLO Monolithic Voltage-Controlled Oscillators General Description Features M A The MAX2622/MAX2623/MAX2624 self-contained volt- Fully Monolithic age-controlled oscillators (VCOs) combine an integrat- X ed oscillator and output buffer in a miniature 8-pin Guaranteed Performance 2 µMAX
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PDF
Katalog_2013-14__250.pdf
Stahl, gehärtet Abtriebswellenlagerung Kugellager r Option Sinterlager a Radialspiel, 10 mm ab Flansch max. 0.2 mm e Axialspiel max. 0.2 mm g Max. zulässige Axiallast 100 N n Max. zulässige Aufpresskraft 100 N o Drehsinn, Antrieb zu Abtrieb = x Empfohlene Motordrehzahl < 6000 min-1 Empfohlener Temperaturbereich -40…+100°C a Stufenzahl 1 2 3 4 5 m Max. zul. Radiallast, 10 mm ab Flansch 30 N 50 N 55 N 55 N 55 N M 1:2 Lagerprogramm Artikelnummern Standardprogramm Sonderprogramm (auf Anfrage) 134156 134158 134163 134168
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PDF
Fairchild_MOC306x.pdf
otherwise specified) INDIVIDUAL COMPONENT CHARACTERISTICS Parameters Test Conditions Symbol Device Min Typ* Max Units EMITTER Input Forward Voltage IF= 30 mA VF All 1.3 1.5 V Reverse Leakage Current VR= 6 V IR All 0.005 100 µA DETECTOR MOC316X-M 10 100 Peak Blocking Current, Either DirectiVDRM = 600V,FI = 0 (
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PDF
MC7800-D.pdf
- 2.0 - - 2.0 - Vdc O J I O Output Noise Voltage (T = 25°C) V - 10 - - 10 - mV/V A n O 10 Hz ≤ f ≤ 100 kHz Output Resistance f = 1.0 kHz O - 0.9 - - 0.9 - mW Short Circuit Current LiAit (T = 25°C) ISC - 0.2 - - 0.6 - A Vin 35 Vdc Peak Output Current JT = 25°C) max - 2.2 - - 2.2 - A Average Temperature
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PDF
Regulator_3v.pdf
output output output ripple efficiency MODEL voltage voltage current power and noise 1,2 typ range max max max typ (Vdc) (Vdc) (Vdc) (mA) (W) (mVp-p) (%) P7803-2000-S 24 6~36 3.3 2000 6.6 75 87 P7805-2000-S 24 8~36 5 2000 10 75 90 P7809-2000-S 24 13~36 9 2000 18 75 93 P7812-2000-S 24 16~36 12 2000 24
in „Again: ESP32 external Power funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC34063A-D.pdf
4.0 x 10–5 t 4.0 x 10–5 t 4.0 x 10–5 t T on on on Ipk(switch) 2I ▯ ton ▯ 1 ▯ 2I 2I ▯ on ▯ 1 ▯ out(max) toff out(max) out(max) off Rsc 0.3/Ipk(switch) 0.3/pk(switch) 0.3/Ipk(switch) L(min) (Vin(min) ▯ V sat) (Vin(min) ▯ V sat ▯ V out) (Vin(min) ▯ V sat ) ▯ ▯ t ▯ ▯ t ▯ ▯ t pk(switch) on(max) Ipk(switch
in „T6963C Versorgungspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MOC3041.pdf
specified) D P Individual Component Characteristics e o Parameters Test Conditions Symbol Device Min Typ Max Units C EMITTER o s Input Forward Voltage IF= 30 mA VF All 1.25 1.5 V O Reverse Leakage Current VR= 6 V R All 0.01 100 µA p o DETECTOR s Peak Blocking Current, Either DireRated DRM, F = 0 (note 1)IDRM1
in „Triac am atmega anstelle MOC3041 und BTA08-400“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
94874_MOC3043_OptoTriac.pdf
specified) D P Individual Component Characteristics e o Parameters Test Conditions Symbol Device Min Typ Max Units C EMITTER o s Input Forward Voltage IF= 30 mA VF All 1.25 1.5 V O Reverse Leakage Current VR= 6 V R All 0.01 100 µA p o DETECTOR s Peak Blocking Current, Either DireRated DRM, F = 0 (note 1)IDRM1
in „Triac Probleme mit MOC3043“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MB3775.pdf
27204-6E 7 MB3775 (Continued) (Ta = +25 °C,CC = 6 V) Value Parameter Condition Symbol Unit Min Typ Max Input Offset Voltage V O= 1.6 V VIO −10 ⎯ +10 mV Input Offset Current V O= 1.6 V IIO −100 ⎯ +100 nA Input Bias Current V O= 1.6 V IB −500 −100 ⎯ nA Common Mode Input Voltage Range V CC= 3.6 V to 18
in „Elko identifizieren (mal wieder)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS_K4B8G1646Q-MY_Rev10.pdf
input levels for Command and Address(1.5V) DDR3-800/1066/1333/1600 Symbol Parameter Unit NOTE Min. Max. 1.5V V (DC100) V + 100 V IH.CA DC input logic high REF DD mV 1,5 V (DC100) V V - 100 IL.CA DC input logic low SS REF mV 1,6 V (AC175) V + 175 IH.CA AC input logic high REF Note 2 mV 1,2,7 V (AC175)
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
K4B4G1646Q-Samsung.pdf
Single-ended AC & DC input levels for Command and Address(1.5V) DDR3-800/1066/1333/1600 Symbol Parameter Min. Max. Unit NOTE 1.5V VIH.CADC100) DC input logic high VREF + 100 VDD mV 1,5 VIL.CADC100) DC input logic low VSS V REF- 100 mV 1,6 VIH.CAAC175) AC input logic high VREF + 175 Note 2 mV 1,2,7 VIL.CAAC175)
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MainActivity.java
1))).setSN(MainActivity.model, MainActivity.no); int n3 = MainActivity.model / 1000; MainActivity.vMax = 100 * (MainActivity.model % 1000 / 100); MainActivity.cMax = 10 * (MainActivity.model % 100); TextView textView = MainActivity.access$1800(this.this$0); StringBuilder stringBuilder = new StringBuilder
in „Bluetooth LE BLE Daten von Powermeter entschlüsseln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Agilent__HSMx-C265.pdf
Reverse Breakdown Capacitance Thermal VF(Volts) V RVolts) C (pF), VF = 0, Resistance @ IF= 20 mA @ IR= 100 A f = 1 MHz Rθ J-PIN(°C/W) Part Number Typ. Max. Min. Typ.[1] Typ. HSMS-C265 2.1 2.6 5 8 250 HSMD-C265 2.2 2.6 5 6 250 HSMY-C265 2.1 2.6 5 7 250 HSMG-C265 2.2 2.6 5 6 250 HSMH-C265 1.8 2.6 5 18 300
in „Reverse Mount LED in gelb“ · Mikrocontroller und Digitale Elektronik ·
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PDF
670135-DS01-1.pdf
= 0V, T = 125 C - - 250 µA DS DSS GS J On-State Drain Current (Note 2) D(ON) V DS > D(ON) x DS(ON)MAX , VGS = 10V 14 - - A Gate to Source Leakage Current IGSS V GS = ±20V - - ±100 nA On Resistance (Note 2) rDS(ON) ID= 7.9A, VGS = 10V (Figures 8, 9) - 0.3 0.4 Ω Forward Transconductance (Note 2) g fs
in „Suche IRFP 450B“ · Markt ·
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PDF
vishay-bc-ptcel_series.pdf
DIMENSIONS D T BC 120R H1 EL H2 L d F COMPONENT DIMENSIONS in millimeters SYMBOL PTCEL13 PTCEL17 D 13.5 max. 16.5 max. d 0.6 ± 0.05 0.8 ± 0.05 H1 17 max. 20 max. H 3 ± 1 3 ± 1 2 T 7.0 max. 7.5 max. (1) F 5.0 ± 0.8 7.5 ± 0.8 5.0 ± 0.8 7.5 ± 0.8 10.0 ± 0.8 L (2) 20 min. 18 min. 20 min. 18 min. 16 min. Notes
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PDF
ACS758-Datasheet.pdf
Resistance RLOAD(MIN) VIOUT to GND 4.7 – – kΩ Output Load Capacitance C VIOUT to GND – – 10 nF LOAD(MAX) Primary Conductor Resistance R PRIMARY TA= 25°C – 100 – μΩ Symmetry 3 E SYM Over half-scale of Ip 99 100 101 % V IOUT(QBI) Bidirectional varianP, I = 0AA, T = 25°C – VCC/2 – V Quiescent Output Voltage
in „ACS 758 Strommessgenauigkeit“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NT2GC64B8HC0NS.pdf
Input Levels for Command and Address Symbol Parameter DDR3-1066 (-BE) DDR3-1333 (-CG) Units Note Min. Max. Min. Max. VIH.CA(DC) DC Input Logic High Vref + 0.100 VDD Vref + 0.100 VDD V 1 VIL.CA(DC) DC Input Logic Low VSS Vref - 0.100 VSS Vref - 0.100 V 1 VIH.CA(AC) AC Input Logic High Vref + 0.175 Note 2
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PDF
2233_1_.pdf
Classi ▯ (C / F ) Marking Of Type I = 5mA, V = 5V, Ta = 25°C fication (*1)F CE Classification Min Max ■ ■ ■ A 50 600 Blank, Y, Y , G, G , B, B , GB ■ Rank Y 50 150 Y, Y ■ TLP521 Rank GR 100 300 G, G ■ Rank BL 200 600 B, B ■ ■ Rank GB 100 600 G, G , B, B , GB TLP521 2 A 50 600 Blank, GR, BL, GB TLP521