-
PDF
BTA08-400.pdf
II - MIN. 0.2 V Tj= 125°C IH(2) T = 100 mA MAX. 15 35 10 15 35 50 mA I - III 25 50 10 25 50 70 L G = 1.2 GT MAX. mA II 30 60 15 30 60 80 V = 67 %V gate open dV/dt (2) D DRM MIN. 40 400 20 40 400 1000 V/µs Tj= 125°C (dV/dt)c = 0.1 V/µsTj
in „Triac am atmega anstelle MOC3041 und BTA08-400“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MG24065G-SBLWU_240x64_Display.pdf
EVER CATCHER GROUP EV ER BO U Q UE T IN TER N ATIO NA L C O ., LTD . WECATCHTHE BEST TECH. FOREVER AVAILABLE FROM MIDAS COMPONENTS LTD PART NO. : MG24065G SERIES FOR MESSRS. : CONTENTS NO. ITEM PAGE 1. COVER 1 2. RECORD OF REVERSION 2 3
in „Display MG24065G-SBLWU Spannungs-Versorgung Fragen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Infineon-BFQ790-DS-v02_00-EN.pdf
exceedT .ItisT =T +P *R . J,max J,max S diss,max THJS Preliminary Datasheet 5 Revision 2.0 2017-02-16 BFQ790 High Linearity RFMedium Power Amplifier Electrical Performancein TestFixture 4 ElectricalPerformanceinTestFixture
in „HF-Ausgangsleistung - Verständnisfrage“ · HF, Funk und Felder ·
-
PDF
RTC_AVR.pdf
if ((t.month==4) || (t.month==6) || (t.month==9) || (t.month==11)) { t.month++; t.date=1; } } else if (t.date==30) { if(t.month==2) { 9 1259B–AVR–05/02 t.month++; t.date=1; } } else if (t.date==29) { if((t.month
in „Läuft der Timer während seinem Interrupt weiter?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
811-fqnFaM.pdf
θJC 27.8 Junction Temperature SOD123 T +150 ℃ J Storage Temperature SOD123 TSTG -55~+150 ℃ Junction to Ambient * θJA 250 SOD123 ℃/W Case Temperature θJC 50 2 Note : 1. Surface Mounted on 1in pad area, t≦10sec 2. Operating Ambient Temperature
in „Seltsames IC an Netzeingang von SFX-Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
abb_sanftanlasser_handbuch_2CDC132002M0101.pdf
V1 L3 W1 L2 W2 U2 V2 W2 U2 V2 U1 V1 W1 U1 V1 W1 L1 L2 L3 L1 L2 L3 – Schaltung Y – Schaltung 230 V 400 V (400 V) (690 V) Schaltplan für Stern- und Dreieckschaltung M Leistungsfaktor Das Verhältnis zwischen Wirkleistung (in kW) o und Blindleistung (in kVA) wird als t Ein Motor verwandelt Wirkleistung
in „Santanlauf 400V für zwei Motoren?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
S8200A_E.pdf
Voltage Voltage Voltage Function [VDL] [VDU] [VDIOV [VCIOV −0.150V Unavailable (1) Available S-8200AAA-I6T1U 4.225V 4.025V 2.500V 2.900V 0.150V S-8200AAB-I6T1U 4.250V 4.050V 2.400V 2.900V 0.050V −0.100V Unavailable (1) Available S-8200AAC-I6T1U 4.225V 4.025V 2.500V 2.900V 0.150V −0.150V Available (1) Unavailable
in „Li-Ion Ladeschutzschaltung mit S-8200“ · Analoge Elektronik und Schaltungstechnik ·
-
Bild
Schaltplan einer Generatorplatine BANDELIN SONOREX RK-255
, C3 0,22 µF, IC1 CD40106BE, D1 1N4148, D2 BA159, R6 5,1 kΩ 3. TREIBERSTUFE BT1 K8PC2506, R7 1 kΩ, T2 BC558, D3 DB3, T1 VM64AF 4. LEISTUNGSSTUFE C5 2,2 µF 400 V, C6 2,2 µF 400 V, C7 2,2 µF 400 V, C8 3,3 µF 100 V, C9 22 nF 250 V, C10 2,2 nF 250 V, C11 4,7 nF 100 V (WIMA), R8 2,7 Ω 10 W, R9 15 Ω 10 W,
in „Bandelin Sonorex RK 255 ultraschallbad defekt“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
-
PDF
LIS302DL_AN.pdf
calibration. Figure 1. Device block diagram X + Y + CHARGE C S Z + AMPLIFIER 2 S C L /S P C A /D C O N T R O L L O G IC S D A /S D O /S D I a M U X C O N V E R T E R S P I S D O Z - Y- X - C O N T R O L L O G IC T 1 S E L F T E S T R E F E R E N C E T R IM M IN G C L O C K & C IR C U IT S IN T E R R U P
in „Verwirrung mit LIS302“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
pc715v0nszx_e.pdf
Current 2 000 16 V =2V F =1mA Ta=25˚C 1 800 CE 0.9mA Ta=25˚C 14 ) 1 600 PC(MAX.) ( ) 12 0.8mA R 1 400 A C ( o 1 200 t 10 0.7mA a e 0.6mA r 1 000 r 8 s c a 800 t 0.5mA t e 6 e 600 o 0.4mA r C 4 C 400 0.3mA 2 200 0.1mA 0.2mA 0 0 0.1 1 10 0 1 2 3 4 5 6 7 8 9 10 11 12 13 Forward current I (mA) Collector-emitter
in „Optokoppler bei geringen Strömen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
t1.pdf
/receptacle models 125 VA 120 VAC 120 VAC 60Hz 4.8 7.4 7.6 6.3 2.9 17 32 91091-32T 250 VA 120 VAC 120 VAC 60Hz 4.8 7.4 8.0 6.3 3.3 17 64 91092-32T 500 VA 120 VAC 120 VAC 60Hz 4.8 7.4 9.0 6.3 4.2 25 90 91095-32T 750 VA 120 VAC 120 VAC 60Hz 4.8 7.4 9.7 6.3 4.9 27 135 91097-32T 1kVA 120
-
PDF
503991-da-01-en-RELAIS_24V_5A_G2R_2.pdf
voltage (V) Switching voltage (V) ● Durability Flux Protection/Plug-in Relays G2R-1, G2R-1A, G2R-1-T, G2R-1A-T G2R-1-E, G2R-1A-E G2R-1Z, G2R-1AZ ) ) ) n,000 n,000 n1,000 t t t r 500 r 500 r 500 p 300 250 VAC/30 VDC p 300 p 300 4o resistive load 4o 4 1 1 1 ( ( 250 VAC/30 VDC ( t 100 250 VAC inductive
in „Relais an Atmega, Kontrolle Bauteile“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
D120984D-1.pdf
diagram below. Symbol Specification Symbol Specification T1 0≦T1≦10 msec T4 160 msec ≦T4 T2 0≦T2≦100 msec T5 160 msec ≦T5 T3 0≦T3≦200 msec T6 1 msec ≦T6 The copyright belongs to CHIMEI InnoLux. Any unauthorized use is prohibited. ▯h▯t▯t▯p▯:▯/▯/▯w▯w▯w CHIMEI
in „Bedarf an eigenbau STM32F429 Evaluation Board ?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
sound.c
2409 #define fH 2865 #define gS 4819 #define gH 2551 #define dH 3407 #define cSH 3610 volatile uint16_t u16Tick = 0; volatile uint8_t u8PauseTicker = 0; volatile int8_t u8ActTon = 0; const uint16_t laenge[] PROGMEM = { 100, 500, 500, 500, 350, 150, 500, 350, 150, 650, 150, 500, 500, 500, 350, 150, 500, 350, 150, 650, 150, 500, 300, 150, 400, 200, 200, 125, 125, 250, 250, 250, 400, 200, 200, 125, 125, 250, 250, 125, 500, 375, 125, 500, 375, 125, 650 }; volatile uint16_t toene[] = { 10, a ,a ,a ,f ,cH ,a ,f ,cH ,a , 0, eH, eH, eH, fH, cH
in „pgmspace.h|1067|error: unknown type name ‘uint_farpt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Geschwindigkeitsrampen_berechnen_Richtig.pdf
Freq 500000 [Hz] Lineare Rampe S-Förmige Rampe 160 120 160 120 140 140 e 100 c 100 / 120 / p s 120 t 100 80 t 80 s s 100 t t i e e 80 60 r e 80 60 r g c k c d 60 S d 60 S i 40 i 40 h 40 w 40 s 20 c e 20 e 20 20 G G 0 0 0 0 0 0,1 0,2 0,3 0,4 0,5 0,6 0,7 0,8 0,9 1 0 0,2 0,4 0,6 0,8 1 1,2 1,4 1,6 Zeit
in „rampenbrechnung für schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
BV18015001.pdf
1 2 3 4 5 6 7 8 s a T g A e u A c r u F T 7 n 4 v ; m 9 n d g t E n Primär s i i A i b g m d G u r h f B e e B e t e a r r U f 5 0 Sekundär 1 C C e n e 4 s 3 b 2 e M63/66 d Originalfarbe schwarz u 300 n n g l 960 u h e b
in „Wie ist der Aufbau des Dreiphasen-zu-Einphasen-Transformators (Schaltgruppe Di)??“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ADS1293_3_Kanal_24BIT_EKG_SPI_.pdf
for T MIN≤ T A T MAX. (2) (3) (2) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT ANALOG FRONT END DIVR Differential Input Voltage Range –400 400 mV Common-Mode Voltage Range for full VDD – CMVR DIVR 0.95 0.95
in „EKG-IS ADS1293 rückt keine Messwerte raus“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
kbpc3500fw.pdf
gehalten wird 370 KBPC3500F … KBPC3514F KBPC3500W ... KBPC3514W Peak fwd. surge current, half sine-wave, T = 25°C f = 50 Hz I 375 A A FSM Stoßstrom für eine Sinus-Halbwelle, TA= 25°C f = 60 Hz IFSM 400 A Rating for fusing – Grenzlastintegral, t < 10 ms T = 25°C i t 660 A s A Operating junction temperature – Sperrschichttemperatur T j – 50…+150°C Storage temperature – Lagerungstemperatur T S – 50…+150°C Characteristics Kennwerte 2 Max. current with cooling fin 300 cm TA= 50°C R-load IFAV 35.0 A Dauergrenzstrom mit Kühlblech 300
in „Kühlung berechnen 1V Spannungsabfall bei 35A“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
STR751FR0T6.pdf
START condition hold time 4.0 0.6 µs tsu(STA) Repeated START condition setup time 4.7 0.6 t STOP condition setup time 4.0 0.6 µs su(STO) t STOP to START condition time (bus free) 4.7 1.3 µs w(STO:STA) Cb Capacitive load for each bus line 400 400 pF 2 1. f PCLK, must be at least 8 MHz to achieve
in „DAB Radio mit ARM Prozessor, HD44780 Display (BlueTinum BT-H1801)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SP8716_18_19.pdf
CHARACTERISTICS Test conditions (unless otherwise stated):] Supply voltage: Vcc = +4/95 to 5.45V, Temperature: T amb= -40°C to +85°C Value Units Characteristics Symbol Min. Max. Conditions Notes Max. frequency 520 1 fmax MHz Input 100-280mV p-p Min. frequency (sinewave input) fmin 30 MHz Input 400-800mV p-p 2 Power
in „Datenblätter zu alten Telefunken-Frequenzteilern“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DS9800_PB.pdf
Power Board -- Circuit Diagram 1nF/AC250V CY500 P6KE-200A D502 1 T500 2 FR107 SK56C 60V/5A L500 3.3uH 5.6V D501 10 L501 L-3 D503 5.6VD C500 9 22uF/400V CD263 C501 D500 3 FR107 R500 1000uF/10V C502 1R 8 1000uF/10V L503 L-3 5 GND1 C504 C508 10nF/50V 50V/47uF CD263 L502
in „Fehlersuche Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
teilpaket_2_exemplarische_quantitative_langfristanalyse_2030.pdf
Siedenbrünzow P360 M595f Neuenhagen STATCOM 50Hertz X P360 M595g Malchow STATCOM 50Hertz X Eickum STATCOM TenneT X X P400 M592a Landesbergen STATCOM TenneT X X P400 M592b Mehrum/ Nord STATCOM TenneT X X P400 M592e Würgau STATCOM TenneT X X P400 M592d Raitersaich STATCOM TenneT X X P90 STATCOM Dellmensingen STATCOM
-
Datei
dcf_77_mini1.c
durch 4, 100 (oder 400) ohne Rest teilbar // es werden nur die beiden Fälle mod 4/ mod 100 untersucht uint8_t is_leap(uint8_t j) { // Es liegt ein Schaltjahr vor, if (!(j & 0x03)) return(TRUE); // wenn mod 4 keinen Rest ergibt
in „Pollin DCF77 an ATMega8 will nicht wie ich“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
APAQ-HRF-HRFX.pdf
/-HRFX Nullpunkteinstellung: -50 bis +50 °C -60 bis +120 °F Messspannenwahl: °C 50 100 150 200 300 400 500 °F 100 200 300 400 600 800 1000 INOR PROCESS AB PO Box 9125, SE-200 39 Malmö, SwedenPHONE +46 40 312560,FAX +46 40 312570,E-MAIL info@inor.sWEB www.inor.se INOR TRANSMITTER OY PHONE +358 9 83850210
in „simpler PT100 messumformer für KFZ ECU“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
mmbt4401-d.pdf
≤ 2.0%. www.onsemi.com 3 2 N 4 4 Typical Performance Characteristics 0 1 / M ) ( M I E B G500 A0.4 T T VCE 5V L 4 E O β = 10 4 R400 V 0 U E0.3 1 C 125 °C T — D300 M S -0.2 125 °C N U200 R P P 25 °C T 25 °C N A E I100 L0.1 G P - 40 °C O e T - - 40 °C n F 0 A e h 0.1 0.3 1 3 10 30 100 300 E 1 10 100 500
in „moderner Ersatztyp für BC550 Audio low noise gesucht“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AD8606.pdf
VoltageNoiseDensityvs.Frequency Rev. H | Page 12 of 24 AD8605/AD8606/AD8608 1800 2.680 V = 2.7V S VS= 2.7V 1600 T A 25°C V = 0V TO 2.7V 2.675 CM 1400 R ) I ( I1200 E 2.670 L G P1000 T A L F V 2.665 O 800 T R U V @ 1mA LOAD E T OH M 600 U 2.660 U O N 400 2.655 200 3 3 1 1 7 7 0 0 2.650 0 –300 –200 –100 0 100 200
in „Aktives Filter (Differential), Uref“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Designing_Photodiode_Amplifier_Circuits.pdf
amplifiers, these input specifica- ±325µV at 60°C 1 2 400M tions are not very good to start with. Multiplying an already high offset and drift (sometimes as high as 3mV and 50 V/ °C) by use of a T network becomes impractical. By using a Hamamatsu far better amplifier, such as the OPA128, moderate T net- G1735 work ratios can be accommodated and the resulting multi- 2 6 plied errors will be far smaller. Although a single very-high OPA128LM resistance will give better performance, the T network can
-
PDF
Fotodiode_applications.pdf
amplifiers, these input specifica- ±325µV at 60°C 1 2 400M tions are not very good to start with. Multiplying an already high offset and drift (sometimes as high as 3mV and 50 V/ °C) by use of a T network becomes impractical. By using a Hamamatsu far better amplifier, such as the OPA128, moderate T net- G1735 work ratios can be accommodated and the resulting multi- 2 6 plied errors will be far smaller. Although a single very-high OPA128LM resistance will give better performance, the T network can
in „Beschaltung von Photodioden“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Fotodiode_applications.pdf
amplifiers, these input specifica- ±325µV at 60°C 1 2 400M tions are not very good to start with. Multiplying an already high offset and drift (sometimes as high as 3mV and 50 V/ °C) by use of a T network becomes impractical. By using a Hamamatsu far better amplifier, such as the OPA128, moderate T net- G1735 work ratios can be accommodated and the resulting multi- 2 6 plied errors will be far smaller. Although a single very-high OPA128LM resistance will give better performance, the T network can
in „Suche Strom-Widerstandswandler“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
qsort.html
as a custom stylesheet */ @import "https://fonts.googleapis.com/css?family=Open+Sans:300,300italic,400,400italic,600,600italic%7CNoto+Serif:400,400italic,700,700italic%7CDroid+Sans+Mono:400"; article,aside,details,figcaption,figure,footer,header,hgroup,main,nav,section,summary{display:block} audio,canvas
in „Welche Programmiersprache auf µC“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Bootloader230.a51
Configuration Wizard in Context Menu >>> ; <h> Configuration for WCH V2.31 Bootloader ; <o> StartAddress <0-0xF400:0x400> ; <i> Startaddress for bootloader should be on a 0x400 boundary StartAddress EQU 0xF400 ; <<< end of configuration section >>> ;some consts used by the loader DataFlash559 EQU 0xF000 DataFlash558
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DS1339-DS1339U.pdf
BYTES) 6 of 20 2 DS1339 I C Serial Real-Time Clock TYPICAL OPERATING CHARACTERISTICS (V CC = 3.3v, T = +25AC, unless otherwise noted.) IBACKUP vs.V BACKUP VCC=0V CC vs.V CC RS1=RS0=1 250 900 SCLI400kHz 850 CCA 800 I 750 (QWE= 1) 200 A u (700 T N N R650 BATOSC R R (SQWE= 0) R C600 C150 Y Y SCL=SDA=0Hz
in „[V] 2St. RTC Dallas DS1339U-33+ 3,3V uSO8 Gehäuse“ · Markt ·
-
PDF
DS1339-DS1339U.pdf
BYTES) 6 of 20 2 DS1339 I C Serial Real-Time Clock TYPICAL OPERATING CHARACTERISTICS (V CC = 3.3v, T = +25AC, unless otherwise noted.) IBACKUP vs.V BACKUP VCC=0V CC vs.V CC RS1=RS0=1 250 900 SCLI400kHz 850 CCA 800 I 750 (QWE= 1) 200 A u (700 T N N R650 BATOSC R R (SQWE= 0) R C600 C150 Y Y SCL=SDA=0Hz
-
PDF
PCF8575.pdf
+ 0.5 V I DC input current − ±20 mA I DC output current − ±25 mA O Ptot total power dissipation − 400 mW PO power dissipation per output − 100 mW T storage temperature −65 +150 °C stg Tamb operating ambient temperature −40 +85 °C Note 1. Stress above those listed under ÔAbsolute Maximum RatingsÕ may
in „Vieleeeele Eingänge, viele Ausgänge.“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PCF8575.pdf
+ 0.5 V I DC input current − ±20 mA I DC output current − ±25 mA O Ptot total power dissipation − 400 mW PO power dissipation per output − 100 mW T storage temperature −65 +150 °C stg Tamb operating ambient temperature −40 +85 °C Note 1. Stress above those listed under ÔAbsolute Maximum RatingsÕ may
in „Lichtsteuerung über i2c - ULN2803A - S12-100“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
E-cap_2011.pdf
I (mA/ x x rms)= K Δ T = K (T -T ) c c c c x 12 CIRCUIT DESIGN Conditions of Use Recommended Design Considerations Aluminum Electrolytic Capacitors must not be used under the following When designing a circuit board, please
in „TFT Monitor Elkos“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
B-1220.pdf
Bauteil Wert Beutel Bauteil Wert Beutel R52 1M W SW2 Drehschalter, P R53 10k W 3 Stell./2 Eb. R54 1k W T1 BF961 H R55 10k W T2 2N4427 H R56 1k W T3 KT610 H R57 10k W T4 BC547 H R58 1k W T5 BC547 H R59 10 W T6 BC547 H R60 1k W T7 BF961 H R61 10k W T8 BC547 H R62 10k W T9 BC547 H R63 47 W T10 BC557 H R64 100 W T11 BC547 H R65 1k W T12 BC547 H R66 2k2 W T13 BF961 H R67 330 W T14 BC547 H R68 10k W T15 BC547 H R69 22k W T16 BC547 H R70 10 W T17 BD136 H R71 10k W T18 KT920N H R72 10 W T19 BC547 H R73 1k W LED1 LED
in „JR 78 von DF5FC Schaltbild gesucht“ · HF, Funk und Felder ·
-
PDF
M27C1001.PDF
IL (2) ChipEnable Highto tEHQZ tDF Output Hi-Z G = VIL 0 30 0 30 0 30 0 40 ns (2) Output Enable High tGHQZ tDF to Output Hi-Z E = VIL 0 30 0 30 0 30 0 40 ns Address Transition tAXQX tOH E= VIL G = VIL 0 0 0 0 ns to Output Transition
-
PDF
AT070TN01_.pdf
TRANSFORMED TO ANY OTHER FORMS WITHOUT PERMISSION FROM INNOLUX DISPLAY CORPORATION. SPEC NO: A07003T02 PAGE: 6/16 STH setup time tSUH 20 - - ns STHR, STHL STH hold time tHDH 20 - - ns STHR, STHL STH pulse width tSTH - 1 - tCPH STHR, STHL μs STH period tH 61.5 63.5 65.5 STHR, STHL OEH pulse width t -
in „TFT mit PIC24FJ256DA210“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PCA9306.pdf
Package Packing method Minimum Temperature number order quantity PCA9306D PCA9306D,118 SO8 Reel 13” Q1/T1 2500 T amb= -40 °C to +105 °C *standard mark SMD PCA9306DC1 PCA9306DC1,125 [1] VSSOP8 Reel 7” Q3/T4 3000 T = -40 °C to +105 °C amb *standard mark PCA9306DC1Z VSSOP8 Reel 7” Q3/T4 3000 T amb= -40 °C
in „[V] ONSEMI Dual bidirectional PCA9306 I2C-bus and SMBus Voltage-level translator (30St für10€)“ · Markt ·
-
PDF
PCA9306.pdf
Package Packing method Minimum Temperature number order quantity PCA9306D PCA9306D,118 SO8 Reel 13” Q1/T1 2500 T amb= -40 °C to +105 °C *standard mark SMD PCA9306DC1 PCA9306DC1,125 [1] VSSOP8 Reel 7” Q3/T4 3000 T = -40 °C to +105 °C amb *standard mark PCA9306DC1Z VSSOP8 Reel 7” Q3/T4 3000 T amb= -40 °C
in „[V] .Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (30St/10€)“ · Markt ·
-
PDF
PCA9306.pdf
Package Packing method Minimum Temperature number order quantity PCA9306D PCA9306D,118 SO8 Reel 13” Q1/T1 2500 T amb= -40 °C to +105 °C *standard mark SMD PCA9306DC1 PCA9306DC1,125 [1] VSSOP8 Reel 7” Q3/T4 3000 T = -40 °C to +105 °C amb *standard mark PCA9306DC1Z VSSOP8 Reel 7” Q3/T4 3000 T amb= -40 °C
in „[V] ca. 190St.Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (20St/8€)“ · Markt ·
-
PDF
PCA9306.pdf
Package Packing method Minimum Temperature number order quantity PCA9306D PCA9306D,118 SO8 Reel 13” Q1/T1 2500 T amb= -40 °C to +105 °C *standard mark SMD PCA9306DC1 PCA9306DC1,125 [1] VSSOP8 Reel 7” Q3/T4 3000 T = -40 °C to +105 °C amb *standard mark PCA9306DC1Z VSSOP8 Reel 7” Q3/T4 3000 T amb= -40 °C
in „V] ca. 170 St.Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (20St/8€)“ · Markt ·
-
PDF
PCA9306.pdf
Package Packing method Minimum Temperature number order quantity PCA9306D PCA9306D,118 SO8 Reel 13” Q1/T1 2500 T amb= -40 °C to +105 °C *standard mark SMD PCA9306DC1 PCA9306DC1,125 [1] VSSOP8 Reel 7” Q3/T4 3000 T = -40 °C to +105 °C amb *standard mark PCA9306DC1Z VSSOP8 Reel 7” Q3/T4 3000 T amb= -40 °C
in „[V] Konvolut Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator“ · Markt ·
-
PDF
TCS34725.pdf
Parameter ensured by design and is not tested. AC Electrical Characteristics, V DD = 3 V, T = A5 C (unless otherwise noted) PARAMETER † TEST CONDITIONS MIN TYP MAX UNIT f(SCL) Clock frequency (I C only) 0 400 kHz t(BUF) Bus free time between start and stop condition 1.3 μs Hold time after (
in „Frage zu TCS 34725 - RGBC Sensor“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
488161_1_.pdf
VOLVO 0231.170.284 3 1000 25,0 / 5000 150 400 / 14,0 BOSCH 0231.170.287 VOLVO 4 1000 25,0 / 4000 150 400 / 14,0 BOSCH 0231.170.302 VOLVO 5 1000 30,0 / 4000 150 400 / 10,0 BOSCH 0231.176.103 VOLVO 6 1000 29,0 / 6300 150 400 / 14,0 BOSCH 0237.002.001, VOLVO 0237.002.017 7 1000 23,0 / 4800 150 400 / 14,0 BOSCH 0237.003.027, VOLVO 0237.003.024 8 1000 29,0 / 5000 150 400 / 14,0 BOSCH 0237.003.003, VOLVO 0237.003.009 9 1000 28,0 / 4000 150 400 / 14,0 BOSCH 0237.0032.038 VOLVO A 1000 22,0 / 4800
in „Funktionsweise von analogen elektronischen Drehzahlmessern?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AD8253.pdf
T = −40°C to +85°C 40 60 nA AverageTC T = −40°C to +85°C 400 pA/°C Input Offset Current 5 40 nA OverTemperature T = −40°C to +85°C 40 nA AverageTC T = −40°C to +85°C 160 pA/°C DYNAMIC RESPONSE Small-Signal
in „2 Fragen zur Verstärkerschaltung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
isec05poster_pq11_a3.pdf
Bipolar transistors JFETs k B i =ωC ⇒ large dynamic range at a large bandwidth u = 4k TR n g g n B BB 8k T m Johnson noise from cabling becomes negligible 2eI C u = B in= n 2e kT h g m in= 2eI g u = × fe n I e C C g T = 2/3ω T We have some promising 4.2K results SSM2220, MAT03, AD797: regularly used n TRACECh1
in „Meßverstärker für 1/f-Rauschen 0.1 - 10 Hz“ · Analoge Elektronik und Schaltungstechnik ·
-
Bild
Blockschaltbild eines Funk-SoC-Chips
Low Band RF 380~960MHz (4 ports - 2T2R) Mid Band RF 1.4~2.2GHz (2 ports - 1T2R) High Band RF 1.7~2.7GHz (2 ports - 1T2R) Ultra High Band RF 3.3~3.8GHz (2 port - 1T2R) 400MHz RISC-V (Modem F/W, RTOS) 400MHz RISC-V (Application, Linux) Interface
in „Raspberry PI AI-Kit, neue MicroPython-Version und diverse andere Neuerungen“ · Mikrocontroller und Digitale Elektronik · · Diagramme
-
PDF
PIC_Memory_Programming_Specification.pdf
Locations 200h respectively, is user program memory. The second half, e c 203h (0x200-0x3FF) and (0x400-0x7FF) respectively, is M p Backup OSCCAL value 204h configuration memory. The PC will increment from f S 205h o (0x000-0x1FF) and (0x000-0x3FF) respectively, then C Reserved to 0x200 and 0x400, respectively
in „Programm aus PIC12F508 laden und verstehen“ · Mikrocontroller und Digitale Elektronik ·