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14223_ADI_ADP2108.pdf
typical specifications, unless 1 otherwise noted. Table 1. Parameter TestConditions/Comments Min Typ Max Unit INPUT CHARACTERISTICS InputVoltage Range 2.3 5.5 V Undervoltage LockoutThreshold VINising 2.3 V V falling 2.05 2.15 2.25 V IN OUTPUT CHARACTERISTICS OutputVoltage Accuracy PWM mode −2 +2 % VIN
in „WLCSP von Analog Devices, Wie erkennt man die PIN-Markierung?“ · Platinen ·
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PDF
LT3757_Boost-Sepic-Flyback-Invert.pdf
by the following equation: The primary to second turns ratio is: POUT(MAX) NSP = LSP LP(MAX) =ISW(MAX) = D V η N L MAX IN(MIN) SN SN where η is the converter efficiency. Flyback Converter: Snubber Design If the flyback converter has multiple outputOUT(MAX) Transformer leakage
in „Datenblätter von Linear Technologies“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Solar_v2.5_OTA_ext_LOLIN.ino
source page in www #define HOST1 "www.ionosonde.iap-kborn.de" // another source page in www #define max_page 3 // only 4 pages, no more (at this time)[p0->p3] //============>> here the global variables: <<============= char atom ; // single char of content int8_t page_nr , old_page_nr ; // which page
in „Unerwartet Kompilierungsfehler ESP8266 / Funkwetteranzeige treibt mich in den Wahnsinn“ · Mikrocontroller und Digitale Elektronik ·
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PDF
vitolig_300_vl3a.pdf
Kesselkreisregelung prüfen. Abgas-Grenzwerte CO 2-Gehalt: 8 bis 14 Vol.-% CO-Gehalt & bei 8% CO 2: max. 200 ppm & bei 14% CO 2: max. 1000 ppm Abgastemperatur: max. 200 °C 15. Förderdruck prüfen Förderdruck im Abgasrohr messen (notwendiger Förderdruck siehe Tech- nische Daten auf Seite 45). 6 8 5 21 Heruntergeladen
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PDF
TUA6100.pdf
divide ratio of the prescaler [ P/(P+1) = (32/33) or (64/65) ] A : divide ratio of the A-counter (max. 7 bit) N : divide ratio of the N-counter (max. 11 bit) R : divide ratio of the R-counter (max. 10 bit) M = (P N)+A : total divide ratio of the PLL (with A<N) Note : for continuous frequency steps following
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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Datei
WCU_Kilobot_Schematic.txt
0 PARALLEL_LENGTH 1000 PARALLEL_GAP 200 TANDEM_LENGTH 1000 TANDEM_GAP 200 MIN_DELAY 0.000000 MAX_DELAY 10.000000 MIN_CAPACITANCE 0.000000 MAX_CAPACITANCE 10.000000 MIN_IMPEDANCE 50.000000 MAX_IMPEDANCE 150.000000 SHIELD_NET * SHIELD_GAP 200 MATCH_LENGTH_TOLERANCE 200 } } } } *FIELDS* USER FIELDS
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PDF
HMC8205BF10.pdf
25°C, VDD = 50 V,DQ= 1300 mA, frequency range = 0.3 GHz to 3 GHz. Table 1. Parameter Symbol Min Typ Max Unit TestConditions/Comments FREQUENCY RANGE 0.3 3 GHz GAIN Small Signal Gain 23 26 dB Gain Flatness ±2 dB RETURN LOSS Input 13 dB Output 12 dB POWER 4 dB Compressed Power P4dB 39 45 dBm Saturated Output
in „HF Breitbandverstärker Positiv/Negativ Betriebsspannung“ · HF, Funk und Felder ·
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PDF
0A1E438Cd01_batterypower_appnote.PDF
µF Ceramic Load VOUT C OUT 1 µF Ceramic MCP1702 Selected Product Specifications: Linear Regulators Max. Typical Typical Dropout Device Input Output Output Current Active Voltage @Max. Features Packages Voltage Voltage (V) (mA) Current (μA) OUT(mV) TC1016 6.0 1.8-3.0 80 50 150 Shutdown 5-pin SC-70 TC1017
in „mit Akku Microcontroller versorgen, 3,6V auf 5V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcm1796.pdf
Clocks System Clock PARAMETERS MIN MAX UNITS t(RST) Reset pulse duration, LOW 20 ns Figure 25. External Reset Timing 15 www.ti.com SLES100− DECEMBER 2003 AUDIO DATA INTERFACE Audio Serial Interface The audio interface port is a 3-wire serial
in „Audio Signal verdoppeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pm2519ocr.pdf
button “zero set on/off” 1.6. D C C U R R E N T M E A S U R E M E N T S Ranges :20mA,20mA,2.4,208 (max, input current in highest range) #10 A (20 A for max, 20 sec.) Resolution 510HAin20mArange Number of representation units £2200 Acuracy ++(0.5%ofreading+0.1%offulscale) Temperature coefficient +0.05%
in „Pjilips PM2519“ · Markt ·
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PDF
Mabuchi_Motors_Complete.pdf
0.070 6530 0.17 0.23 2.3 0.15 0.76 7.8 0.39 UNIT:MILLIMETERS DIRECTION OF ROTATION 25.5 4.9 18.9 0.2 MAX. 9.5 0.2 MAX. 1.1 1.0 (+) . . ø E . R . . ø 6 1 1 3 . 1 ø (–) 0.5 REF. 4.0 REF. 0 2 WEIGHT: 9.5g (APPROX) SU-020RA-1665 1.5V SU-020SA-1665 1.5V h I N h I N 75 3 30,000 75 3 15,000 50 2 20,000 50 2 10,000
in „12 V Motor aus der Al-ko Mover Einheit M20 Ams1“ · Fahrzeugelektronik ·
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PDF
lmh6642.pdf
, allowable short circuit duration is 1.5ms. (5) The maximum power dissipation is a function of TJ(MAX) RθJA, and TA. The maximum allowable power dissipation at any ambient temperature is PD= (T J(MAX)- A )/ θJA. All numbers apply for packages soldered directly onto a PC board. 7.2 Handling Ratings MIN
in „Funkentstörung mobiler Kopfhörerverstärker“ · HF, Funk und Felder ·
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PDF
Datenblatt_Eurola_8-24kW.pdf
IPāā24ĂD IPāā24ĂD IPāā24ĂD Gasanschlußdruck Erdg(s m)(r 20 20 20 20 Flüssigg(s m)(r 50 50 50 ĊĊ *1 Max. zul. Gasanschlußdruck m)(r 57,5 57,5 57,5 57,5 Anschlußwerte )ezogen (uf die m(x. Bel(stung - )ei R(um)eheizung mit G(s mit H uB Erdg(s E ă9,45 kWh/m 3 m /h 1,22 1,65 2,02 2,65 3 34,01 MJ/m Erdg(s
in „Schaltplan/Hilfe bei Steuerung Eurola OC“ · Haus & Smart Home ·
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PDF
Compaq_Portable_Plus_286_-_Maintenance_and_Service_Guide.pdf
Chapter 8). * limit 2. Replace the diskette/tape controller board. * 610 - 03 Previously exceeded max 3. Replace the diskette drive soft error limit power and signal cables. 4. Replace the diskette drive 610 - 04 Previously exceeded max assembly. hard error limit 5. Replace the system board. 610 - 05
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PDF
drv8350f_7_.pdf
worst-case motor current and the R of the external DS DS(on) MOSFETs as shown in Equation 13. VDS_OCP ! max u R DS(on)max (13) 9.2.1.2.3.1DS Overcurrent Example The goal of this example is to set the V DS monitor to trip at a current greater than 75 A. According to the CSD19535KCS 100 V N-Channel NexFET ™
in „BLDC-Motor: Überspannung beim Bremsen trotz Durchschaltung aller Low-Side-MOSFETs?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BLE112_Datasheet.pdf
operating conditions. The maximum recommended operating conditions are in the table 5. Rating Min Max Unit Storage Temperature -40 85 °C AVDD,DVDD, VDD_USB -0.3 3.9 V Other Terminal Voltages VSS-0.4 VDD+0.4 V Table 4: Absolute Maximum Ratings 3.2 Recommended Operating Conditions Rating Min Max Unit
in „BLE112 wer kennt sich mit dem UART aus ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
config.h
1020, 1020, 1020, 1020} //#define SERVO_MAX {2000, 2000, 2000, 2000, 2000, 2000, 2000, 2000} //#define SERVO_MID {1500, 1500, 1500, 1500, 1500, 1500, 1500, 1500} // (*) //#define FORCE_SERVO_RATES {30,30,100,100,100,100,100,100} // 0 = normal
in „Problem mit meinem Projekt (Quadrocopter)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Main.c
D-to-A sequence if (transmit) { ++sine_index; // Increment index sine_index &= 15; // And wrap to a max of 15 PORTB = sine[sine_index]; // Load next D-to-A sinewave value TCNT2 = txtone; // Preload counter based on freq. } else { delay = FALSE; // Clear condition holding up Delay TCNT2 = 0; // Make long
in „AFSK über AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7193.pdf
min SCLK low pulse width READ OPERATION 1 0 ns min CS falling edge to DOUT/ RDY active time 60 ns max DV DD = 4.75V to 5.25V 80 ns max DV DD = 2.7V to 3.6V 23 0 ns min SCLK active edge to data valid delay 4 60 ns max DV DD = 4.75V to 5.25V 80 ns max DV DD = 2.7V to 3.6V 55, 6 10 ns min Bus relinquish time after CS inactive edge 80 ns max 6 0 ns min SCLK inactive edge to CS inactive edge 7 10 ns min SCLK inactive edge to DOUT/ RDY high WRITE OPERATION 4 8 0 ns min CS falling edge to SCLK active edge setup time 9 30 ns min Data validto
in „USB-Soundkarte zu einem Spannungslogger umbauen, wie die Eingänge schützen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
recommended.pdf
maintain regulation depends on the load current and output voltage, and is calculated as: V Iin = V O max + I O max× r( DS(on) max + R (L) ) (2) with: IOmax = maximum output current plus inductor ripple current r max = maximum P-channel switch r DS(on) DS(on) R (L) dc resistance of the inductor V Oax =
in „Kurz vorm Verzweifeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS6211.pdf
maintain regulation depends on the load current and output voltage, and is calculated as: V Iin = V O max + I O max× r( DS(on) max + R (L) ) (2) with: IOmax = maximum output current plus inductor ripple current r max = maximum P-channel switch r DS(on) DS(on) R (L) dc resistance of the inductor V Oax =
in „DC DC Wandler Pins“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS6211.pdf
maintain regulation depends on the load current and output voltage, and is calculated as: V Iin = V O max + I O max× r( DS(on) max + R (L) ) (2) with: IOmax = maximum output current plus inductor ripple current r max = maximum P-channel switch r DS(on) DS(on) R (L) dc resistance of the inductor V Oax =
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PDF
TPS6211.pdf
maintain regulation depends on the load current and output voltage, and is calculated as: V Iin = V O max + I O max× r( DS(on) max + R (L) ) (2) with: IOmax = maximum output current plus inductor ripple current r max = maximum P-channel switch r DS(on) DS(on) R (L) dc resistance of the inductor V Oax =
in „QFN Gehäuse.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS6211.pdf
maintain regulation depends on the load current and output voltage, and is calculated as: V Iin = V O max + I O max× r( DS(on) max + R (L) ) (2) with: IOmax = maximum output current plus inductor ripple current r max = maximum P-channel switch r DS(on) DS(on) R (L) dc resistance of the inductor V Oax =
in „Trennung von analoger und digitaler Spannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
anleitungc3500.pdf
gewünschte Programm Bestätigen Sie die Eingabe mit der „SET“- Der hier eingestellte Strom ist der max. festgestellt werden, wie lange z. B. ein aus. Taste. · Stellen Sie den gewünschten Ladestrom Ladestrom, der während des Ladevorganges Elektromotor der an diesem Akku ange- (Standardwerte werden vorgegeben
in „Suche Anleitung für Accu-Master µAM 500 von Conrad“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AXP202_PMU.pdf
Consumption(mAor mW), • Fully Integrated PWM Charger Remaining Battery Life(% or mAh),Charge State(%) o Max Charge Current up to 1.8A and Charge Time o Support Battery Temperature Monitoring o Two-level Low-Power Warning & Protection o Support USB compatible o ProvideAXP202 Die Temperature charger( supporting
in „LilyGo T-Watch 2020 v1 Micropython“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CY8C4147AZI.pdf
SID274 GBW_LO power=lo – 1 – Input and output are 0.2 V toDDA -0.2 V I V = 2.7 V, 500 mV from rail OUT_MAX DDA power=hi 10 – – Output is 0.5 V DDAV SID275 IOUT_MAX_HI -0.5 V SID276 IOUT_MAX_MID power=mid 10 – – mA Output is 0.5 V DDAV -0.5 V Output is 0.5 V to V SID277 IOUT_MAX_LO power=lo – 5 – DDA -0.5 V IOUT VDDA = 1.71 V, 500 mV from rail SID278 I power=hi 4 – – Output is 0.5 V DDAV OUT_MAX_HI -0.5 V SID279 IOUT_MAX_MID power=mid 4 – – mA Output is 0.5 V to VDDA -0.5 V SID280 IOUT_MAX_LO power=lo – 2 – Output is 0.5 V to V DDA-0.5 V IDD_Int Opamp block current Internal Load I – – SID269
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PDF
catalog.pdf
Battery Management [Desc]: Linear Charge Management Li-Ion/Li-Pol 500mA 4.1V 8-Pin HVSSOP EP Tube MPN: MAX1811ESA+ [ID]: 000284 [Price]: 2.46 USD [QTY]: 30 [Category]: Battery Management [Desc]: MAX1811 Series 6.5 V Single Cell Linear SMT Battery Charge Controller - SOIC-8 MPN: MAX712CPE+ [ID]: 000298 [Price
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PDF
catalog.pdf
Battery Management [Desc]: Linear Charge Management Li-Ion/Li-Pol 500mA 4.1V 8-Pin HVSSOP EP Tube MPN: MAX1811ESA+ [ID]: 000284 [Price]: 2.46 USD [QTY]: 30 [Category]: Battery Management [Desc]: MAX1811 Series 6.5 V Single Cell Linear SMT Battery Charge Controller - SOIC-8 MPN: MAX712CPE+ [ID]: 000298 [Price
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PDF
catalog-3.pdf
Battery Management [Desc]: Linear Charge Management Li-Ion/Li-Pol 500mA 4.1V 8-Pin HVSSOP EP Tube MPN: MAX1811ESA+ [ID]: 000284 [Price]: 3.3899 USD [QTY]: 30 [Category]: Battery Management [Desc]: MAX1811 Series 6.5 V Single Cell Linear SMT Battery Charge Controller - SOIC-8 MPN: MAX712CPE+ [ID]: 000298
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PDF
TOFC100-xx.pdf
Main Specifications of the TODX283 Data rate: DC to 50 Mb/s (NRZ code) Transmission distance: 10 m (max) (via APF cable) 100 m (max) (via PCF cable) Pulse width distortion: less than ±7 ns Center wavelength: 650nm Operating temperature: –10°C to 70°C TTL interface TODX283 7 OpticalM odulesforHigh-SpeedDataT
in „TosLink als einfacher Datenlink“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN10496-NXP.pdf
0.478 0.058 1450 1.943 0.603 0.360 0.012 1560 1.904 0.359 0.092 0.169 1680 1.804 0.286 0.256 0.152 1700 1.605 0.264 0.175 0.197 700 1.949 0.642 0.534 0.255 4. Vacuum cleaner software In this section, we will discuss the whole structure of the vacuum cleaner software. This software is developed for the
in „Controller an 230VAC wie realisieren?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AF143086415692en-000101.pdf
place.The compressors will withstand storage temperatures down to -35°C. Condensing temperatures: Max. 60°C at stable conditions and max. 70°C at peak load. Ambient temperatures: Min. -10°C, max. 55°C The BD compressor concept includes an electronic unit which features overload protection, battery protection
in „Kompressor für Campingkühlschrank - elektrischer Anschluss?“ · Fahrzeugelektronik ·
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PDF
Danfoss_Katalog_BLDC_Compressors.pdf
place.The compressors will withstand storage temperatures down to -35°C. Condensing temperatures: Max. 60°C at stable conditions and max. 70°C at peak load. Ambient temperatures: Min. -10°C, max. 55°C The BD compressor concept includes an electronic unit which features overload protection, battery protection
in „12V Kompressor Kühlbox - Steuerung defekt - eigenes Thermostat verwenden“ · Haus & Smart Home ·
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Datei
LCD.c
LCD_WriteReg(0x09,0x3F); } else { LCD_SetCursor(0,0); } LCD_WriteIndex(0x0022); for( index = 0; index < MAX_X * MAX_Y; index++ ) { LCD_WriteData(Color); } } static void LCD_SetCursor( uint16_t Xpos, uint16_t Ypos ) { #if ( DISP_ORIENTATION == 90 ) || ( DISP_ORIENTATION == 270 ) uint16_t temp; Ypos = ( MAX_Y
in „LCD 320x240 (SSD1289) ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm5026.pdf
30.0 k: 50 85 0 80 0 20 40 60 80 100 120 -50 -25 0 25 50 75 100 125 150 RSET (k:) TEMPERATURE ( C)o Max Duty Cycle Max Duty Cycle vs vs UVLO DCL 100 100 90 90 DCL = 2.5V UVLO = 1.26V 80 80 ) ) ( 70 ( 70 L L Y 60 Y 60 C C T 50 T 50 D 40 D 40 X X M 30 M 30 20 20 10 10 0 0 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5
in „.lib datei einbinden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Windmessger_Ultraschall1.pdf
Betriebsspannung Versorgung Elektronik, 12... 24 V AC/DC +-10%; ca. 3 VA Versorgung Heizung, 24 V AC/DC +-15%: max. 70 VA Schutzart IP 65 (bei bestimmungsmäßiger Montage, siehe auch Punkt 11.2 u.12) Vereisung nach Fischer STD 012001 Korrosion 3 Monate Salzsprüh- & Kondensationstest, keine Korrosion EMV EN 55022
in „Windgeschwindigkeit und Richtungsmessung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mitsubishi_igbt_note_e.pdf
impedance between junction and case at tw2 moment ѕTj㧩Tc㧗ٌT(j-c) (Tc is measured by thermo-couple.) Tj(max)=150°C, therefore the allowable case temperature Tc(max) is, Tc(max)=150-ٌT(j-c). (2) 1ms<tw1<tw2<1s In this case, ripple should be considered in calculation of average power loss P1. Using approximation
in „E-Mobilitaet - wie sieht der Antrieb eigentlich technisch aus?“ · Fahrzeugelektronik ·
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Datei
LCD.c
LCD_WriteReg(0x09,0x3F); } else { LCD_SetCursor(0,0); } LCD_WriteIndex(0x0022); for( index = 0; index < MAX_X * MAX_Y; index++ ) { LCD_WriteData(Color); } } static void LCD_SetCursor( uint16_t Xpos, uint16_t Ypos ) { #if ( DISP_ORIENTATION == 90 ) || ( DISP_ORIENTATION == 270 ) uint16_t temp; Ypos = ( MAX_Y
in „STM32F4 mit TFT Codeverständnis“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LCD.c
LCD_WriteReg(0x09,0x3F); } else { LCD_SetCursor(0,0); } LCD_WriteIndex(0x0022); for( index = 0; index < MAX_X * MAX_Y; index++ ) { LCD_WriteData(Color); } } static void LCD_SetCursor( uint16_t Xpos, uint16_t Ypos ) { #if ( DISP_ORIENTATION == 90 ) || ( DISP_ORIENTATION == 270 ) uint16_t temp; Ypos = ( MAX_Y
in „STM32F4 Discovery + TFT + FSMC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8563_6.pdf
In accordance with the Absolute Maximum Rating System (IEC 60134). Symbol Parameter Conditions Min Max Unit V DD supply voltage −0.5 +6.5 V I supply current −50 +50 mA DD V I input voltage on pins SCL and SDA −0.5 +6.5 V on pin OSCI −0.5 VDD + 0.5 V V O output voltage on pins CLKOUT and INT −0.5 +6.5
in „Frage zum Counter der RTC PCF8563“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_IVT-S_V1.02.pdf
(max. time) 5min ±120 ±320 ±730 ±1100 ±2700 A 30s ±200 ±430 ±860 ±1400 ±3200 A 10s ±300 ±600 ±1000 ±2000 ±4300 A 1s ±900 ±1600 ±2700 ±5500 ±11300 A 200ms ±2000 ±3600 ±6000 ±12000 ±24000 A 5.3.Current measurement
in „Strommessung bis 60V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1TR110-1_Ausgabe_08-2007_V110.pdf
....................................................47 7.1.7 Anpassung im Frequenzbereich 600 bis 1700 Hz........................................48 7.1.8 Unerwünschte Frequenzanteile........................................................................48 7.1.9 Wählton...............................
in „PC und Telefonie“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TCP-IP-Sockets.pdf
terminal(void) { fd_set rd_ready,wr_ready; //Bitfelder pro Socket-Deskriptor struct timeval maxwait; //Max. Wartezeit für select() int s_len = 0; int r_len = 0; int z_count = 0; char key; for(;;) 15 W&T w w w . W u T. d e { FD_ZERO(&rd_ready); //das API soll uns max.10µs warten lassen. FD_SET (sd,&rd_ready
in „Ethernet“ · Softwareentwicklung ·
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PDF
70599B.pdf
-0.3 — 0.2 xDD V TABLE 4-2: CURRENT CONSUMPTION (TA= 25°C, DD = 3.3V) Chip Mode Condition Min Typ Max Units Sleep Sleep Clock Disabled — 5 A — A TX At Maximum Output Power — 130 mA — mA RX — 25 mA — mA TABLE 4-3: RECEIVER AC CHARACTERISTICS Typical values areAa= 25°C, DD= 3.3V, LO Frequency = 2.445 GHz Parameters Condition Min Typ Max Units RF Input FrequencyCompatible to 2.405 — 2.480 GHz IEEE Std. 802.15.4™, 2003 RF Sensitivity — -102 — dBm Maximum RF Input -23 — — dBm LO Leakage Measured at Balun Matching — -60 — dBm Network Input
in „AVR32UC3B mit Funkmodul MRF24J40MB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TI-AN032_Regulations2_4GHz_SRD.pdf
Indoor use without restrictions. Outdoor use limited to 10mW EIRP within 2454 to 2483.5 MHz. 11a: Max EIRP 500mW. Iceland: 4a: Not applicable. Italy: 3a: If used outside of own premises general authorization is required. 4a: Not implemented. 11a: Not implemented. Luxembourg: 3a: General authorization
in „2.4GHz: Was gilt bei FCC Spurious > 1GHz“ · HF, Funk und Felder ·
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PDF
DS_SX1261-2_V1.1-1307803.pdf
250 kHz 0.6 - 200 kHz BR_L Bit rate LoRa® Min. for SF12, BW_L = 7.8 kHz 0.018 - 62.5 6 kb/s Max. for SF5, BW_L = 500 kHz BW_L Signal BW, LoRa® Programmable 7.8 - 500 6 kHz SF Spreading factor for LoRa® Programmable, chips/symbol = 2^SF 5 - 12 - Min/Max values in typical conditions, VTCXO Regulated
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PDF
TMS279X_DataSheet.pdf
10 µA O Output current (leakage) VO = V CC 10 µA PU Internal pull-up current ‡ VI= 0 V 100 1700 µA CC Supply current All outputs open 70 150 mA † All typical valueA are at T = 25°C and nominal supply voltages. ‡ Internal pull-up resistors are on pins 1, 1 7, 19, 22, 36, 37, and40. Also, pin 25
in „Floppy FDD Diskette an AVR Mikrocontroller ATmega Beispiele Assembler“ · Projekte & Code ·
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Datei
lwip-1.4.0-rc2.patch
elements. + */ +#ifndef SNMP_MAX_TREE_DEPTH +#define SNMP_MAX_TREE_DEPTH 15 +#endif + +/** + * The size of the MEMP_SNMP_VALUE elements, normally calculated from + * SNMP_MAX_OCTET_STRING_LEN and SNMP_MAX_TREE_DEPTH. + */ +#ifndef SNMP_MAX_VALUE_SIZE +#define SNMP_MAX_VALUE_SIZE LWIP_MAX((SNMP_MAX_OCTET_STRING_LEN)+1, sizeof(s32_t)*(SNMP_MAX_TREE_DEPTH)) +#endif + +/* + ---------------------------------- + ---------- IGMP options ----
in „ESP8266 OpenSrc LWIP implementation“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLV2462.pdf
specified free-air temperature, V DD = 3 V (unless otherwise noted) PARAMETER TEST CONDITIONS TA† MIN TYP MAX UNIT 25°C 500 2000 VDD = 3 V, Full range 2200 V Input offset voltage V = 1.5 V, µV IO IC 25°C 500 1500 VO = 1.5 V, TLV246xA RS= 50 Ω Full range 1700 α Temperature coefficient of input offset voltage
in „frage zu einfachem uC Ohmmeter“ · Mikrocontroller und Digitale Elektronik ·