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TUA6100.pdf
10.0 V B d 5.0 0.0 -5.0 -10.0 -15.0 -20.0 1.0 3.0 10.0 30.0 100.0 0.3k 1.0k 3.0k 10.0k 30.0k 100.0k 300.0k 1meg 3meg 10meg 30meg 100meg300meg 1g f(Hz) Group delay ( coupling capacitor 47nF, low frequencies response is dependent on coupling capacitor ) 0.0 -2u ( -4u y l -6u d -8u p -10u g-12u -14u -16u 1.0 3.0 10.0 30.0 100.0 0.3k 1.0k 3.0k 10.0k 30.0k 100.0k 300.0k 1meg 3meg 10meg 30meg 100meg 300meg 1g f(Hz) 0.0 ( y -20n l d p g -40n -60n 1.0 3.0 10.0 30.0 100.0 0.3k 1.0k 3.0k 10.0k 30.0k 100.0k 300.0k 1meg 3meg 10meg 30meg 100meg 300meg 1g f(Hz) 0.0 -20p
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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tl431book.pdf
suggested by Figure 4. The collector current reflected through its CTR in the LED established to around 300 µA. We captured a plot without added bias current, letting these 300 µA only flow in the TL431. Then, a 1-k resistor was put across the optocoupler LED to increase the bias current in the TL431 to roughly
in „Sperrwandler Dimensionierung“ · Analoge Elektronik und Schaltungstechnik ·
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Datenblatt_AT89S52.PDF
CC IOH = -800 µA, VCC= 5V ± 10% 2.4 V Output High Voltage VOH1 (Port 0 in External Bus Mode) IOH = -300 µA 0.75 VCC V IOH = -80 µA 0.9 VCC V IL Logical 0 Input Current (Ports 1,2,3)V IN0.45V -50 µA I Logical 1 to 0 Transition Current V = 2V, V = 5V ± 10% -300 µA TL (Ports 1,2,3) IN CC LI Input Leakage Current (Port 0, EA) 0.45 < VIN V CC ±10 µA RRST Reset Pulldown Resistor 50 300 KΩ C Pin Capacitance Test Freq. = 1 MHz, T = 25°C 10 pF IO A Active Mode, 12 MHz 25 mA Power Supply Current CC Idle Mode, 12 MHz 6.5 mA (1) Power-down Mode V CC = 5.5V 50 µA Notes: 1. Under steady state
in „AT89S52 Port 0 als I/0-Port“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt_AT89S52.PDF
CC IOH = -800 µA, VCC= 5V ± 10% 2.4 V Output High Voltage VOH1 (Port 0 in External Bus Mode) IOH = -300 µA 0.75 VCC V IOH = -80 µA 0.9 VCC V IL Logical 0 Input Current (Ports 1,2,3)V IN0.45V -50 µA I Logical 1 to 0 Transition Current V = 2V, V = 5V ± 10% -300 µA TL (Ports 1,2,3) IN CC LI Input Leakage Current (Port 0, EA) 0.45 < VIN V CC ±10 µA RRST Reset Pulldown Resistor 50 300 KΩ C Pin Capacitance Test Freq. = 1 MHz, T = 25°C 10 pF IO A Active Mode, 12 MHz 25 mA Power Supply Current CC Idle Mode, 12 MHz 6.5 mA (1) Power-down Mode V CC = 5.5V 50 µA Notes: 1. Under steady state
in „serielle Ausgaben auf AT89S52 Baud-Raten-Generator startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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TDA8706A_2.pdf
TO V ); note 1 SSD VIL LOW-level input voltage 0 − 0.8 V VIH HIGH-level input voltage 2.0 − V DDD V IL LOW-level input current Vclk 0.8 V −1 0 +1 A IH HIGH-level input currentVclk 2.0 V − 2 10 A Zi input impedance clk= 40 MHz − 4 − k C input capacitance f = 40 MHz − 3 − pF i clk NPUTS SR, SG, SB AND CLP
in „TDA8706A Fragen“ · Mikrocontroller und Digitale Elektronik ·
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CA723-Intersil.pdf
15k R12 15k VO Q5 Q11 Q12 R6 D4 100 VZ C1 Q10 Q13 Q1 5pF FREQUENCY D2 COMPENSATION Q6 6.2V R9 R10 R7 300 20k R11 Q16 CURRENT 30k R8 150 LIMIT 5k CURRENT SENSE VREF NON-INVERTING V- INVERTING INPUT INPUT FIGURE 1. EQUIVALENT SCHEMATIC DIAGRAM OF THE CA723 AND CA723C 3-4 CA723, CA723C Absolute Maximum Ratings
in „Datenblatt suchen“ · Analoge Elektronik und Schaltungstechnik ·
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NC7SZ125-1011470.pdf
Input Voltage V n 2.30 to 5.50 0.70V CC 0.70V CC y LOW Level Input 1.65 to 1.95 0.25VCC 0.25V CC L V IL V o Voltage 2.30 to 5.50 0.30VCC 0.30V CC g 1.65 1.55 1.65 1.55 c ® 1.80 1.70 1.80 1.70 U H 2.30 V IN ,IH OH100 µA 2.20 2.30 2.20 V S 3.00 2.90 3.00 2.90 B u HIGH Level 4.50 4.40 4.50 4.40 f VOH Output
in „Qnap TS-439 Pro - Monitor am VGA geht nicht an“ · PC Hard- und Software ·
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Thread
FT800 / FT810 Library
zu setzen und somit die Messwerte darzustellen? Bisher benutze ich ein 2,8 ZOLL TFT, parallel, mit IL9341, das mir aber zu klein ist. Danke für Hinweise. VG Walter
framerate to 102Hz, then i can run the demo with update rate of approx. 10 ms, but only with approx. 300 bytes of display list (i modified the demo a bit, i have no touch)
Projekte & Code ·Rudolph R. · ·1038 Antworten
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Thread
Mikrocontroller.net Design-Update August 2026
Programmtexten liegt der Schwerpunkt völlig anders. Da ist – im besten Fall – eine klare Unterscheidung IlL1, 0O, usw. wichtig. Man kann schön sehen, wie 'zerrissen' der Serifenlose Text erscheint.
Frank war vollkommen ok. Man sieht ja wie sich der Thread weiterentwickelt. Aus dem Thread könnten 300 Kommentare gelöscht werden, ohne dass der Thread irgendeinen Schaden nimmt. Soviel Unselbstständigkeit einiger User wie in diesem Thread ist mir lange nicht begegnet.
www.mikrocontroller.net ·Andreas S. · ·611 Antworten
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NT7701Ver2.1.pdf
between the output waveforms of the LCD driver output pins Y and1 Y160,externally connect V iR and V iL = 0, 12, 43) Bi-directional shift register shift data input/output pin Is an Output pin when L/R is at V SS level “L” and an input pin when L/R is at DD level “H” EIO 1 When EIO 1 is used as an
in „Wintek WD-H3224V 320x240“ · Mikrocontroller und Digitale Elektronik ·
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a6802998.pdf
500S (t = 1.0mm), Without S/H mode) Item Symbol Min. Typ. Max. Unit Remarks Sensitivity 1 R1 180 240 300 V/(lx · s) Note 1 Sensitivity 2 R2 — 3500 — V/(lx · s) Note 2 Sensitivity nonuniformity PRNU — 5.0 10.0 % Note 3 Saturation output voltage V SAT 0.8 1.0 — V — Dark voltage average V DRK — 3.0 6.0 mV Note 4 Dark signal nonuniformity DSNU — 6.0 12.0 mV Note 4 Image lag IL — 1 — % Note 5 333 Dynamic range DR — — — Note 6 Saturation exposure SE — 0.004 — lx · s Note 7 5V current consumption IVDD — 5.0 10 mA — Total transfer efficiency TTE 92 98.0 — % — Output impedance
in „PC-Spektrometer - Problem mit Linien-CCD (AVR)“ · Mikrocontroller und Digitale Elektronik ·
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Wavefront_AL1402G_OptoRec_Data_Sheet.pdf
OPDIGTHRU SVCO DVCO WDCLK USER3 BCLK USER2 OUT 1/2 USER1 OUT 3/4 USER0 OUT 5/6 OUT 7/8 24 pin SOIC 300 mils wide Wavefront Semiconductor 200 Scenic View Drive Cumberland, RI 02864 U.S.A. Tel: +1 401 658-3670 Fax: +1 401 658-3680 Email: info@wavefrontsemi.com On the web at www.wavefrontsemi.com
in „Multi-Room-Audio selbstgemacht“ · Mikrocontroller und Digitale Elektronik ·
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ILX554B.PDF
500S (t = 1.0mm), Without S/H mode) Item Symbol Min. Typ. Max. Unit Remarks Sensitivity 1 R1 180 240 300 V/(lx · s) Note 1 Sensitivity 2 R2 — 3500 — V/(lx · s) Note 2 Sensitivity nonuniformity PRNU — 5.0 10.0 % Note 3 Saturation output voltage V SAT 0.8 1.0 — V — Dark voltage average V DRK — 3.0 6.0 mV Note 4 Dark signal nonuniformity DSNU — 6.0 12.0 mV Note 4 Image lag IL — 1 — % Note 5 333 Dynamic range DR — — — Note 6 Saturation exposure SE — 0.004 — lx · s Note 7 5V current consumption IVDD — 5.0 10 mA — Total transfer efficiency TTE 92 98.0 — % — Output impedance
in „ILX554B (CCD) Schaltung unklar“ · Mikrocontroller und Digitale Elektronik ·
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ZXRE330.pdf
relative to the ANODE pin. Package Thermal Data P Package θJA DIS TAMB = +25°C, J = +150°C SOT23 415°C/W 300mW TO92 180°C/W 700mW Recommended Operating Conditions (@TA= +25°C, unless otherwise specified.) Parameter Min. Max. Unit Reverse Current 0.002 5 mA Operating Ambient Temperature Range -40 +85 °C ZXRE330
in „Spannungsreferenz 3,3v gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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02_akkus_schnell_und_schonend_laden.pdf
Standard-IU-Ladeverfahren (Bild 5) erheblich gesenkt. Beginnend fen-Ladeverfahren die Ladezeit gra- mit UL = 2,45 V/Zelle, IL= 0,3 C bis mit dem Maximal-Ladestrom wird bei vierend verringert, in der die Akku- Ia= 0,04 C bei 25 °C – diese Werte Erreichen der temperaturkompensier- SpannungüberderthermischenGrenz- sind deutlich
in „Bleiakku wird warm beim Laden“ · Analoge Elektronik und Schaltungstechnik ·
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ltc485.pdf
LTC485 Low Power RS485 Interface Transceiver U FEATURES DESCRIPTIO ® Low Power: I CC = 300 A Typ The LTC 485 is a low power differential bus/line trans- Designed for RS485 Interface Applications ceiverdesignedformultipointdatatransmissionstandard Single 5V supply RS485 applications with extended
in „IR mit langer Leitung“ · Mikrocontroller und Digitale Elektronik ·
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LM3410.pdf
conversion ratio equation. It is important to remember that the internal switch current is equal to IL1and IL2during the D interval. Design the converter Substituting I into I so that the minimum guaranteed peak switch current limit L1 L2 (2.1A) is not exceeded. IL2= ILED 30038552 FIGURE 14. HB/OLED SEPIC
in „Feedback Spannung vom LM3410“ · Mikrocontroller und Digitale Elektronik ·
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MCP1703_MIC.pdf
C to +125°C. Parameters Symbol Min Typ Max Units Conditions Dropout Voltage V DROPOUT — 330 650 mV IL= 250 mA, V R 5.0V Note 1, Note 5 — 525 725 mV I = 250 mA, 3.3V ≤ V < 5.0V L R — 625 975 mV IL= 250 mA, 2.8V ≤ VR< 3.3V — 750 1100 mV IL= 250 mA, 2.5V ≤ VR< 2.8V — — — mV V R< 2.5V, See Maximum Output
in „Was ist das für ein IC“ · Mikrocontroller und Digitale Elektronik ·
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RCV420.pdf
extra instrument burdens or in intrinsically safe applications where V+ V– Ref In 16 4 12 RCV420 92k 300k 99k 11.5k –In 1 15 Rcv f B R S 14 Rcv Out 75 11 Ref Out CT 2 10 RefBf R S 1.01k +10V 75 Ref 8 Ref Trim +In 3 7 Ref Noise Reduction 300k 100k 13 5 Rcv Ref Com Com InternationalAirportIndustrialPark
in „Frage zu 4-20mA Receiver RCV420“ · Mikrocontroller und Digitale Elektronik ·
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HCPL4100.pdf
361 Ordering Information Specify part number followed by Option Number (if desired). HCPL-4100# XXX 300 = Gull Wing Surface Mount Lead Option 500 = Tape/Reel Package Option (1 K min) Option data sheets available. Contact your Hewlett-Packard sales representative or authorized distributor for information
in „Datenübertragung 1km“ · Mikrocontroller und Digitale Elektronik ·
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lcdd_snubber.pdf
Box 653, Beer-Sheva 84105, ISRAEL Tel: +972-7-646-1561; Fax: +972-7-647-2949 Email: sby@ee.bgu.ee.ac.il March 1999 1 OUTLINE Chapter 1. Introduction 1. Seminar objectives 2. Hard versus soft switching 3. Diode reverse recovery 4. IGBT behavior under hard switching 5. Why soft switching? 6. Soft switching
in „Flyback-Wandler Störungen auf Versorgung“ · Analoge Elektronik und Schaltungstechnik ·
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MAX6675.pdf
°C above +70°C) .............. 4Lead Temperature (soldering, 10s) ............................... +300°C A Operating Temperature Range ..........................-20°C to +85°C M Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings
in „SPI über 3m mit mehreren Slaves; Frage zur Terminierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX6675.pdf
°C above +70°C) .............. 4Lead Temperature (soldering, 10s) ............................... +300°C A Operating Temperature Range ..........................-20°C to +85°C M Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings
in „SPI Recihweite über RS422 (MAX490) erhöhen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX6675.pdf
°C above +70°C) .............. 4Lead Temperature (soldering, 10s) ............................... +300°C A Operating Temperature Range ..........................-20°C to +85°C M Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings
in „Pt1000 und MAX6675“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX6675.pdf
°C above +70°C) .............. 4Lead Temperature (soldering, 10s) ............................... +300°C A Operating Temperature Range ..........................-20°C to +85°C M Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings
in „Temperaturmessung 250-300° Atmel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX6675_Type_K-_Elementauswertung.pdf
°C above +70°C) .............. 4Lead Temperature (soldering, 10s) ............................... +300°C A Operating Temperature Range ..........................-20°C to +85°C M Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings
in „Schaltung für Thermoelement Typ K gesucht.“ · Analoge Elektronik und Schaltungstechnik ·
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M95256_EEProm_Farnell_69998.pdf
0.070 c 0.25 0.20 0.36 0.010 0.008 0.014 D 9.27 9.02 10.16 0.365 0.355 0.400 E 7.87 7.62 8.26 0.310 0.300 0.325 E1 6.35 6.10 7.11 0.250 0.240 0.280 e 2.54 – – 0.100 – – eA 7.62 – – 0.300 – – eB 10.92 0.430 L 3.30 2.92 3.81 0.130 0.115 0.150 33/39 M95256, M95128 Figure 20. SO8 narrow – 8 lead Plastic Small
in „SPI EEProm Hilfe gesucht“ · Mikrocontroller und Digitale Elektronik ·
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VN920SP.pdf
V IN= VOUT = 0 V; j =25°C 10 20 µA On-state; VCC = 13 V; IN= 5 V; IOUT = 0 A; SENSE = 3.9 kΩ 5 mA IL(off1)Off-state output currentV IN= VOUT = 0 V 0 50 µA IL(off2)Off-state output currentV IN= 0 V; OUT = 3.5 V -75 0 µA I Off-state output currentV IN= VOUT = 0 V; CC = 13 V; 5 µA L(off3) T j 125 °C V
in „[V] Highside-Schalter“ · Markt ·
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DS1307.pdf
compensation valid up to 2100 GND 4 5 SDA § 56-byte, battery-backed, nonvolatile (NV) DS1307 8-Pin DIP (300-mil) RAM for data storage § Two-wire serial interface § Programmable squarewave output signal X1 l 8 VCC X2 2 7 SQW/OUT § Automatic power-fail detect and switch VBAT 3 6 SCL circuitry GND 4 5 SDA §
in „Real-Time Clock (ds1307)“ · Mikrocontroller und Digitale Elektronik ·
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as7c1024bv_2.0-1265254.pdf
Die Revision A to B March 2004 Rev 2.0 PCN issued yield issues with industrial temperature TJ = SOJ 300 mil-10/12ns May 2015 *Please note we will still offer 10/12/15/20 ns address access speed options in commercial temperatures in other packages Alliance Memory Inc. 511 Taylor Way, San Carlos, CA 94070
in „[V] 7St. SRAM Alliance AS7C1024B-12TCN 128K*8 12ns 3V“ · Markt ·
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LCD_DATASHEET-LI10600T070IA3098.pdf
Outside Dimension 165.0(W)*100.0(H)*3.5(D) mm Active Area 154.21(W)*85.92(H) mm Mechanical Luminance 300 cd/m² Characteristics LED Numbers 21 LEDS - From left to right Pin Order - 50PIN_0.5mm Weight 150 g Interface RGB_24bit - Electrical Color Depth 16.7M colors Characteristics HX8282-A11DPD300+HX8696-A01APD300 Driver IC - EK79001HK + EK73215BCGA Operating Temp. -20~70 ℃ Temperature Range Storage Temp. -30~80 ℃ Note: Requirements on Environmental Protection: RoHS. You can use dynamic screen saver wallpapers
in „Parallel RGB Frequenz/Einzelbild?“ · Mikrocontroller und Digitale Elektronik ·
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Thread
Implementierungsfrage VHDL
Bedingungen. Als industrial in schneller Technologie ist ein Faktor 2 drin. Die MULs dürften also im Bereich 300ps arbeiten. Dasselbe in einem langsamen/schnellen Kintex kommt auf (ausprobiert) 100MHz/145MHz im zweistufigen System. Verbraucht werden 16 DSP-Elemente. Ich stelle hiermit den Antrag, dass die DSP-Elemente
können, sollte man ein passendes constraint angeben beispielsweise im SDC-file. http://www.ee.bgu.ac.il/~digivlsi/slides/Multicycles_6_2.pdf https://www.intel.com/content/www/us/en/programmable/support/support-resources/design-examples/design-software/timinganalyzer/tq-multicycle-path.html Damit kann
FPGA, VHDL & Co. ·Mampf F. · ·69 Antworten
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Thread
Horizon EDA [War: Neues, halbfertiges Elektronik-CAD-Programm]
[pre] (gdb) p package $2 = {ptr = 0x8280da330, uuid = {uu = "V\355QM;\236M<\223\320\350\275b\020\300\226"}} [/pre]
in dem Rules->Diffpair Dialogfenster auf einen Fehler gestoßen. Wenn ich die "Net class: usb" auf 300um setze und "Apply rules" mache, gelten die 300um für "usb". Dann verlase ich das Fenster. Die "Net class: diff100" hat danach beim routen weiterhin die 200um was ja OK ist. Wenn ich dann aber wieder
Projekte & Code ·Lukas K. · ·1327 Antworten
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xr20m1170.pdf
/ 2 I ORDERING INFORMATION PART N UMBER PACKAGE OPERATING TEMPERATURE RANGE D EVICESTATUS XR20M1170IL24-F 24-pin QFN -40°C to +85°C Active XR20M1170IL24TR-F 24-pin QFN -40°C to +85°C Active XR20M1170IL16-F 16-pin QFN -40°C to +85°C Active XR20M1170IL16TR-F 16-pin QFN -40°C to +85°C Active XR20M1170IG24
in „UART XR20M1170: Register LCR läßt sich nicht ändern.“ · Mikrocontroller und Digitale Elektronik ·
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ADC08L060.pdf
Voltage V DR = VA= 2.7V 0.8 V (max) I Logical High Input Current V = V = V = 3.6V 10 nA IH IH DR A IL Logical Low Input Current V IL0V, V DR = VA= 2.7V −50 nA CIN Logic Input Capacitance 3 pF DIGITAL OUTPUT CHARACTERISTICS www.national.com 4 A D C Converter Electrical Characteristics (Continued) 0 8
in „Digitales Oszi im Selbstbau“ · Mikrocontroller und Digitale Elektronik ·
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MBI5039_Preliminary_Datasheet_V1.01-English.pdf
- Both open-circuit and short-circuit LEDs can be detected - On-the-fly error detection GF: SOP24-300-1.00 - Data-in, error-out; both errors are merged and coded with zeros z Compulsory error detection Shrink SOP - Full panel, data independent - Silent error detection with 0.1mA in 500ns z Settable
in „LED-Treiber-IC mit möglichst vielen Ausgängen“ · Mikrocontroller und Digitale Elektronik ·
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Rhode_Schwarz_uri_bn1050_handbuch.pdf
Tabelle 1. Innenw iderstand und Ü berlastbarkeit des Kanals A — . Bereich 0,1 |iA l uA 10 fiA 100 uA 300 nA l mA Innenwiderstand 10 Mß 1 Mß 100 kfi 10 kß 3,16 k« 1 kß dauernd überlastbar 300- 300- 200- 80- 50- 40-fach Bereich 3mA 10mA 30mA 100 mA 300 mA 1000mA Innenwiderstand 100 a 31,6 ß 10Q ' 3,16 ü
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Samsung_64MB_K4M51323PC_1_8V.pdf
changed one time during 20ns in non power-down mode (One Bank Active) ICC3NS CKE ≥ VIH(min), CLK ≤ IL(max), CC= ∞ 15 mA Input signals are stable IO = 0 mA Operating Current ICC4 Page burst 100 85 85 mA 1 (Burst Mode) 4Banks Activated tCCD = 2CLKs Refresh Current ICC5 ARFC ≥ ARFC(min) 150 150 150 mA 2 TCSR 45 *3 85/70 °C Full Array 300 600 -E/C 1/2 of Full 270 500 4 Self Refresh Current ICC6 CKE ≤ 0.2V 1/4 of Full 255 450 uA Full Array 250 500 -G/F 1/2 of Full 220 400 5 1/4 of Full 205 350 Deep Power Down Current ICC8 CKE ≤ 0.2V 10
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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FPF1048.pdf
Discharge Activity Active 2.7m 6-Ball WLCSP, 2x3 FPF1048BUCX RA 23mΩ CMOS NA HIGH s Array, 0.5mm Pitch, 300µm Ball FPF1048 • Rev. 1.0.0iconductor Corporation www.fairchildsemi.com F P 1 Application Diagram 4 8 — I t l M A ™ A C a Figure 1General Application a b , S e - R t C o n o l d L a d Figure 2Specific
in „Lithium Polymere Akku parallel schalten - Kurzschlussschutz“ · Analoge Elektronik und Schaltungstechnik ·
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EE93LC46A.pdf
power applied................-65°C to +125°C Soldering temperature of leads (10 seconds).............+300°C V SS Ground ESD protection on all pins................................................4 kV No Connect *Notice: Stresses above those listed under “Maximum ratings” may V CC Power Supply cause permanent
in „Programieren eines 93LC46A (EEPROM) mit einem Attiny 13A“ · Mikrocontroller und Digitale Elektronik ·
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Bildschirmfoto_2026-02-01_um_16.11.33.pdf
Logic “0” voltage VIL I 0 0.8 V Logic “1” voltage V I 2.3 VCC V IH Logic “0” current I I -10 0 µA IL Logic “1”current I I 0 10 µA IH TPE logic “0” voltage I TPE 1 -10 0 µA IL TPE logic “1” voltage IIHPE 1 0 100 µA Digital Outputs Logic compatibility CMOS Logic “0” voltage1) VOL I 0.6 V Logic “1” voltage1
in „Atmel Fingerchip —> welches Flexkabel?“ · Mikrocontroller und Digitale Elektronik ·
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LQ10D368.pdf
230 ̼̖ Vcc=5.0Vʲ Note2 ʳç Permissive input ripple voltage VRF ʵ ʵ 100 mVp-p Input voltage (Low) V IL ʵ ʵ 0.3Vcc ̫ Input voltage (High) VIH 0.7Vcc ʵ ʵ ̫ ʲ Note3ʳ Input current (low) OL1 ʵ ʵ 1.0 Ж̖ V I0V ʲ Note4ʳ OL2 ç ç 10 Ж̖ V I0V ʲ Note5ʳ OL3 ôç ôç 800 Ж̖ç V I0V ʲ Note6ʳ Input current (High) OH1 ʵ ʵ 1.0 Ж̖ V IVcc ʲ Note7ʳ OH2 ç ç 300 Ж̖ V IVcc ʲ Note8ʳ I ʵ ʵ 800 Ж̖ V =Vcc ʲ Note9ʳ OH3 I çʲç NOTE1 ʳç VCC 0.9VCC VCC ççVcc-turn-on conditions 0.9VCC çç Signal 2.7V Signal ̌ʻ̩̍ʽ̼̍̑͂ç ç ççç̌ʻ̩̎ʽ̼̍̌͂ç 0.3V 0.3V ççççççççççç̌ʻ̩̏ʽ̼̍̌̌͂ç ççççççççççç̌ʻ̩̐ʽ̍͂ç
in „TFT-LCD zeigt ständig einen Strich“ · Mikrocontroller und Digitale Elektronik ·
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PCA9517_Level_Shifter_I2C.pdf
- - 10 A IL I V OL LOW-level output voltage IOL = 100 A or 6 mA 0.47 0.52 0.6 V V OL−V ILc LOW-level input voltage below guaranteed by design - - 70 mV output LOW-level voltage ILOH HIGH-level output leakage current
in „I2C Taktsignal“ · Mikrocontroller und Digitale Elektronik ·
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431000.pdf
–1.0 +1.0 A current CE1 = V IHor CE2 = V ILor WE = V ILor OE = VIH Operating supply ICCA1 CE1 = V IL, CE2 = VIH 40 70 40 70 40 70 mA current Minimum cycle time II/= 0 mA VCC ≤ 3.6 V — — 35 CCA2 CE1 = V IL, CE2 = VI, 15 15 15 II/= 0 mA VCC ≤ 3.6 V — — 8 ICA3 CE1 ≤ 0.2 V, CE2 ≥ V CC– 0.2 V, 10 10 10 Cycle = 1 MHz, II/O= 0 mA, V IL≤ 0.2 V, IH≥ VCC – 0.2 V VCC ≤ 3.6 V — — 8 Standby supply SB CE1 = V IHor CE2 = V IL 3 3 3 mA current VCC ≤ 3.6 V — — 2 SB1 CE1 ≥ V CC – 0.2 V, 2 100 1 20 1 20 A CE2 ≥ V CC – 0.2 V VCC ≤ 3.6 V — — 0.5
in „SRAM Ansteuern (Zeitdiagramm)“ · Mikrocontroller und Digitale Elektronik ·
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74HC_HCT4851.pdf
°C +125 °C Min Typ Max Min Max Min Max 74HC4851 R ON resistance V = V to GND; E = V ON(peak) I CC IL (peak) VCC = 2.0 VSWI= 2 mA - 400 650 - 670 - 700 Ω VCC = 3.0 VSWI≤ 2 mA - 215 330 - 360 - 380 Ω VCC = 3.3 VSWI≤ 2 mA - 120 270 - 305 - 345 Ω V = 4.5 V; I≤ 2 mA - 76 210 - 240 - 270 Ω CC SW VCC = 6.0 VSWI≤ 2 mA - 59 195 - 220 - 250 Ω ΔR ON ON resistance VI= 0.5 × CC; E = IL mismatch between VCC = 2.0 VSWI= 2 mA - 4 10 - 15 - 20 Ω V = 3.0 V; I≤ 2 mA - 2 8 - 12 - 16 Ω channels CC SW VCC = 3.3 VSWI≤ 2 mA - 2 8 - 12 - 16 Ω VCC = 4.5 VSWI≤ 2 mA - 2 8 - 12 - 16 Ω VCC = 6.0 VSWI
in „4051 Analog-Multiplexer, PullUps?“ · Analoge Elektronik und Schaltungstechnik ·
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LHC1-22XX_Super_LEDs.pdf
Current LES Part Number Min. Typ. CCT Min. (lm) Typ. (lm) (lm/W) (mA) (mm) 70 73 3000K 1172 1300 122 300 9.0 LHC1-3070-1203 70 73 3500K 1172 1300 122 300 9.0 LHC1-3570-1203 70 73 4000K 1225 1375 130 300 9.0 LHC1-4070-1203 70 73 5000K 1225 1375 130 300 9.0 LHC1-5070-1203 70 73 5700K 1225 1375 130 300 9.0
in „Entladeformel einer Spule“ · Analoge Elektronik und Schaltungstechnik ·
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EEPROM.pdf
D1 — A0, A1, A2, SCL, SDA — — — — and WP pins: D2 V IH High-level input voltage 0.7 CC — V — D3 V IL Low-level input voltage — 0.3 VCC V VCC ≥ 2.5V 0.2 VCC V VCC < 2.5V D4 V HYS Hysteresis of Schmitt 0.05 VCC — V VCC ≥ 2.5V (Note) Trigger inputs (SDA, SCL pins) D5 VOL Low-level output voltage — 0.40
in „EEPROM auslesen (24xx256) mit Pic16f819, an PC über RS232“ · Mikrocontroller und Digitale Elektronik ·
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SAA1027.pdf
Pack J Issued March 1997 232-2699 Stepper motor driver IC SAA 1027 D a t aS h e e t RS stock number 300-237 The RS SAA1027 is a bipolar integrated circuit intended Features for driving a 4-phase two stator stepper motor. The cir- High noise immunity inputs cuit consists of a bidirectional 4-state counter
in „Eagle - SAA1027“ · Platinen ·
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MP3 Aktive Box mit NFC Leser und SD Karten Slot und 1200mAh Akku für 9,99
A dumb file from the green speaker can be found here: https://srv-store1.gofile.io/download/41M9il/burro%20-%20UID_6C377854_2021-01-25_20-46-46.mct [code] +Sector: 0 6C377854770804006263646566676869 00000000000000000002200101011002 00000000000000000000000000000000 FFFFFFFFFFFFFF078069FFFFFFFFFFFF
Hi. I give you a T0099.mp3 and its corresponding T0099.smp I have a micro SD with more than 300 audios. The audios can be activated in Blue or Green indistinctly. The audio stories can be converted to 128kb or 64kb, they do not lose quality given the simple speaker audio that the cubes carry
Offtopic ·Marc · ·187 Antworten
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lt1025_datasheet.pdf
) (1.143 – 1.650) RAD TYP FULL LEAD OPTION 1 2 3 4 .200 .300 BSC (5.080) (7.62 BSC) MAX .015 – .060 (0.381 – 1.524) .008 – .018 (0.203 – 0.457) 0° – 15° .045 – .065 .125 NOTE: LEAD DIMENSIONS APPLY TO SOLDER DIP/PLATE (1.143 – 1.651) OR TIN PLATE LEADS 3.175
in „Abgastemperatursensor mit LT1025“ · Mikrocontroller und Digitale Elektronik ·