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2sa1216.pdf
CHARACTERISTICS T C25℃ unless otherwise specified SYMBOL PARAMETER CONDITIONS MIN TYP. MAX UNIT V(BR)CEO Collector-Emitter Breakdown Voltage IC= -25mA ; B = 0 -180 V VCE(sat) Collector-Emitter Saturation Voltage IC= -8A; B = -0.8A -2.0 V ICBO Collector Cutoff Current V CB-180V; I E 0 -100 μA IEBO Emitter
in „Gefälschte Transistoren!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irf3708.pdf
INBY RS AREA LIMITED ) DS(on) ( t100 = 175 C 10us e J A u t100 C e i = 25 C r 100us r 10 J C e i r r v , 1ms e D 10 , 1 I D 10ms IS T = 25 C T = 175 C V = 0 V Single Pulse 0.1 GS 1 0.2 0.8 1.4 2.0 2.6 0.1 1 10 100 V ,Source-to-Drain Voltage
in „IRF3708 als Schalter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NVMFS4C03N.pdf
VGS = 0 V E D1.6 VGS = 10 V TJ= 125°C C E U I ) O A n − M1.4 ( 1000 TJ= 100°C O R G − N A TJ= 85°C I (1.2 A A C E D N , ) T1.0 S 100 ( I I S S R R0.8 0.6 10 −50 −25 0 25 50 75 100 125 150 175 0 5 10 15 20 25 30 T , JUNCTION TEMPERATURE (°C) V , DRAIN−TO−SOURCE VOLTAGE (V) J
in „Wahl des SynchrongleichrichterMOSFETs für Buck Converter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lmp92064.pdf
Voltage Sense Channel Gain 2 kCode/V GE Gain Error (Buffer, VREF and ±0.75 % ADC) RIN Input Impedance 100 GΩ BW Bandwidth(1) 100 kHz DIGITAL INPUT/OUTPUT CHARACTERISTICS VIH Logical “1” Input Voltage 0.7*VDIG V V Logical “0” Input Voltage 0.3*VDIG V IL VOH Logical “1” Output Voltage ISOURCE = 300μA VDIG
in „DC-Bidirectional Current Sensor and Voltage Monitor with " SPI "“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
smbj.pdf
a ) n c P c a PP e 50 a r P C e i o o n c 100 VR, Measured at Stand-Off P a n Voltage WM l e 25 J u D -J TJ= 25 °C k C Uni-Directional f = 1.0 MHz a Bi-Directional Vsig 50 mVP-P P 0 10 0 25 50 75 100 125 150 175 200 1 10 100 200 T - Initial Temperature
in „SMD-Bauteil identifizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF3708PBF.pdf
IN THIS AREA LIMITED BY R A DS(on) t n100 TJ= 175 C ) 10us r ( u n100 n e a T = 25 C u 100us D 10 J C e i r r v D 1ms e D 10 , 1 I D 10ms IS TC= 25 C TJ= 175 C V GS = 0 V Single Pulse 0.0.2 0.8 1.4 2.0 2.6 10.1 1 10 100 VSD ,Source-to-Drain
in „Transistor zum Schalten von 24V/12V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRF3708_IR__1_.pdf
IN THIS AREA LIMITED BY R A DS(on) t n100 TJ= 175 C ) 10us r ( u n100 n e a T = 25 C u 100us D 10 J C e i r r v D 1ms e D 10 , 1 I D 10ms IS TC= 25 C TJ= 175 C V GS = 0 V Single Pulse 0.0.2 0.8 1.4 2.0 2.6 10.1 1 10 100 VSD ,Source-to-Drain
in „Mosfet Treiberschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF3708_IR__1_.pdf
IN THIS AREA LIMITED BY R A DS(on) t n100 TJ= 175 C ) 10us r ( u n100 n e a T = 25 C u 100us D 10 J C e i r r v D 1ms e D 10 , 1 I D 10ms IS TC= 25 C TJ= 175 C V GS = 0 V Single Pulse 0.0.2 0.8 1.4 2.0 2.6 10.1 1 10 100 VSD ,Source-to-Drain
in „24V-Ausgang potentialgetrennt aus einem STM32 3,3V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMD18200.pdf
LMD18200T P+ LMD18200T/LF14 ACTIVE TO-220 NDJ 11 23 Green (RoHS CU SN Level-1-NA-UNLIM LMD18200T & no Sb/Br) P+ LMD18200T/NOPB ACTIVE TO-220 NDJ 11 20 Green (RoHS CU SN Level-1-NA-UNLIM -40 to 125 LMD18200T & no Sb/Br) P+ (1The marketing status values are defined as follows: ACTIVE: Product device recommended
in „Motortreiber LMD18200“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
YH305D-Display.pdf
CO22 PIU?02 PIU?03 P20 PI20 GND A K GND VREF P2 100nF CR3 PI 510k CC CR4 R32 P1 6 PR0 PR0 PR22 PR21 PI62 PC0 5,1k 5,1k 2 P2 100nF 1IP1 PV03 GND +5V V11 V10 12k GND 100k R100 P2 PR2 PI10 PI10 PR01 PR02 R47 CR50 15k 2k 2k P22 UMCUC P1 PR1 P2 CO26 PIUMCU01
in „Netzteil PS-305D Stromanzeige ungenau“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FUTABA_LCD_Emulators.pdf
Sets the number of display lines to 2 (this setting is not recommended for single line displays). BR1,BR0 = 0,0: Sets the luminance level to 100%. 0,1: Sets the luminance level to 75%. 1,0: Sets the luminance level to 50%. 1,1: Sets the luminance level to 25%. 6.5.7 CGRAM ADDRESS SET RS R/W DB7 DB6
in „AVR Futaba Parallel "I80-Type" adaptieren auf "M68-Type"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Futaba_LCD_Emulators.pdf
Sets the number of display lines to 2 (this setting is not recommended for single line displays). BR1,BR0 = 0,0: Sets the luminance level to 100%. 0,1: Sets the luminance level to 75%. 1,0: Sets the luminance level to 50%. 1,1: Sets the luminance level to 25%. 6.5.7 CGRAM ADDRESS SET RS R/W DB7 DB6
in „Hat schon jemand was mit dem FUJITSU VF60 Display gemacht?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv8432-1.pdf
100 nF VREG BST_C M3 PVDD_C Rsense_CD (option) M2 OUT_C 100nF Loc M1 GND_C PWM_C GND_D 100nF Loc RESET_CD OUT_D PWM_D PVDD_D 100 nF GVDD VDD BST_D 1uF 47 uF GVDD_C GVDD_D PVDD 1uF 1uF PWM_A controls OUT_A
in „Schrittmotor - PWM interface?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AM335x_Sitara_Prozessor.pdf
90 AM3352BZCED60 & no Sb/Br) AM3352BZCZ100 ACTIVE NFBGA ZCZ 324 126 Green (RoHS SNAGCU Level-3-260C-168 HR 0 to 90 AM3352BZCZ100 & no Sb/Br) AM3352BZCZ30 ACTIVE NFBGA ZCZ 324 126 Green (RoHS SNAGCU Level-3-260C-168 HR 0 to 90 AM3352BZCZ30
in „BeagleboneBlack: Sensor über I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF3205Z.pdf
n 6.0V r 100 5.5V r 5.5V u 5.0V u 5.0V C BOTTOM 4.5V C BOTTOM 4.5V r r u u 100 S S t t n 10 n r r D D , , ID ID 4.5V 20µs PULSE WIDTH 4.5V 20µs PULSE WIDTH Tj = 25°C Tj = 175°C 1 10 0.1 1 10 100 0.1 1 10 100 VDS
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sm6t100a.pdf
37.1 39 41.0 1 53.9 11.1 1.16 69.7 57 0.504 10.0 SM6T56A/CA 0.2 1 47.6 53.2 56 58.8 1 76.6 7.8 2.28 100 40 1.030 10.0 SM6T68A/CA 0.2 1 58.1 64.6 68 71.4 1 92 6.5 3.17 121 33 1.503 10.4 SM6T75A/CA 0.2 1 64.1 71.3 75 78.8 1 103 5.8 4.17 134 30 1.84 10.5 SM6T100A/CA 0.2 1 85.5 95.0 100 105 1 137 4.4 7.27
in „Suche Diode GP839“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
config.c
title>AVR Mini-Webserver</title>\n" "<body>This is the <A HREF=\"/\"> webpage</A> defined in config.c.<BR><BR>\n" "ADC1 is %A1_<BR><BR>\n" // placeholder as long as 4 decimals "<form method=\"post\" action=\"/\">\n" // placeholder as long as "checked" "<input type=\"checkbox\" name=\"OUT\" value=\"C1\" %C1____>C1<BR><BR>\n" "<input type=\"submit\" name=\""POST_ENDMARKER"\" value=\"MY TEST\">\n" "</body></html>"}; // ==================================================================== /**Hook1: Sehr frühe Initialisierung
in „AVR für wenig Geld im LAN“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD8610_8620.pdf
= ±13V VS= ±13V 140 120 120 100 100 +PSRR ) ) B 80 B 80 ( –PSRR ( R 60 R R R P M 60 40 C 20 40 0 20 –20 0 0 3 3 2 2 –40 0 0 0 100 1k 10k 100k 1M 10M 60M 10 100 1k 10k 100k 1M 10M 60M FREQUENCY (Hz) FREQUENCY (Hz) Figure21.PSRRvs.Frequency Figure24.CMRRvs.Frequency 160 V = ±13V VS= ±5V VS = –300mV p-p 140 A = –100 V 120 RL= 10kΩ V 100 D +PSRR / ) 80 m d 0 ( –PSRR 3 R 60 ( 0V S G VIN P 40 A T O 20 V CH 2 5V/DIV VOUT 0 2 2 –20 - 0 7 0V 7 0 0 –40 100 1k 10k 100k 1M 10M 60M FREQUENCY (Hz) TIME (4µs/DIV) Figure25.
in „Regelbare Stromqulle verstehen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
/NOPB ACTIVE PDIP P 8 40 Green (RoHS CU SN Level-1-NA-UNLIM -40 to 85 LMC64 & no Sb/Br) 82AIN LMC6482IM NRND SOIC D 8 95 TBD Call TI Call TI -40 to 85 LMC64 82IM LMC6482IM/NOPB ACTIVE SOIC D 8 95 Green (RoHS CU SN Level-1-260C-UNLIM -40 to 85 LMC64 & no Sb/Br) 82IM LMC6482IMM NRND VSSOP
in „2s Akku Spannungen der Zellen auslesen mit Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
index.php
); }); </script> <body> //Bild vom Wohnzimmer <img src="header.jpg" alt="Grafik" align="center"></br> <br/> <div id="red"></div> <div id="green"></div> <div id="blue"></div> <div id="swatch" class="ui-widget-content ui.corner-all"></div> <?php //Hier würde ich gerne den Wert haben $green_temp=$_POST['char_var_red']; echo ('Der Wert ist:'); echo $green_temp; ?> <br/> </form> <? if ($_POST['button1']) { $handle = fopen ("//home/admin/prog/pwm_adr0.ini", "w"); fwrite ($handle, $red); fclose ($handle); header("Location: index.php"); } ?> </body> </html>
in „von einem Java Script einen wert zu php übergeben“ · Softwareentwicklung ·
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PDF
drv8811.pdf
of 8, with a reference voltage. The reference voltage is input from the VREF pin. The full- scale (100%) chopping current is calculated as follows: VREFX ICHOP = 8 ·R ISENSE (1) Example: If a 0.22-Ω sense resistor is used and the VREFx pin is 3.3 V, the full-scale (100%) chopping current is 3.3 V/(8
in „UV-Laserdrucker II“ · Platinen ·
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PDF
TPS5430.pdf
! m 150 t c a a 140 S i w e l 8 − 130 l O n ! 120 e ) I ( ! 7.5 S 110 S rD TS 100 90 7 80 !50 !25 0 25 50 75 100 125 !50 !25 0 25 50 75 100 125 TJ! Junction−Temperature ! °C TJ!Junction−Temperature ! °C Figure 5. On Resistance vs. Junction Temperature Figure 6. Internal Slow Start
in „DigiPot AD5290 und Schaltregler TPS5430 laufen nicht zusammen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OPR5005.pdf
MAX UNITS TEST CONDITIONS Input Diode VF Forward Voltage - - 1.7 V IF= 20 mA IR Reverse Current - - 100 µA V R 2.0 V Output Phototransistor V (BR)CEO Collector-Emitter Breakdown Voltage 30 - - V IC= 100 µA V (BR)ECO Emitter-Collector Breakdown Voltage 5 - - V IE= 100 µA I Collector Dark Current - - 100 nA VCE = 5.0 V, F = 0, CEO EE= ≤ 0.10 µW/cm 2 Combined I On-State Collector Current 100 - - µA V CE = 5.0 V, F = 20 mA, C(ON) d = 0.050” (1.27 mm) (3)(4) IF = 20 mA, IC= 100 µa, V CE(SAT) Collector-Emitter Saturation Voltage - - 0.4 V d = 0.050” (1.27 mm) (3)(4) Notes: (1) Solder time
in „IR- Lichtschranken (Photomicrosensor) Omron“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2N3053-InchangeSemiconductor.pdf
Silicon NPN Power Transistor 2N3053 DESCRIPTION ·Maximun SOA Curve ·High gain-bandwidth Product : T = 100MHz ·Low Leakage Current APPLICATIONS ·Designed for audio amplifiers ,controlled amplifiers ,ower supplies, power oscillators and general purpose applications. ABSOLUTE MAXIMUM RATINGS(T a=25℃) SYMBOL
in „[V] kleines Konvolut Transistoren: BSY18 ,BF184A ,2N3053 ,2N5334“ · Markt ·
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PDF
usb_openocd_amontec.pdf
1 2 3 4 5 6 7 8 ARM JTAG R12 2.54mm JTAG_TCK VREF J1-1 100 C6 J1-2 47p JTAG_TRST J1-3 J1-4 A JTAG_TDI J1-5 A GND J1-6 R13 JTAG_TDI JTAG_TMS J1-7 C7 J1-8 100 JTAG_TCK J1-9 47p J1-10 J1-11 GND J1-12 JTAG_TDO J1-13 R14 JTAG_TDO J1-14 V 100 C8 SRST J1-15 + 5 k
in „Cortex M3 JTAG, amontec colink“ · Mikrocontroller und Digitale Elektronik ·
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PDF
JieJie-Microelectronics-SMCJ.pdf
1 126.0 11.9 SMCJ85A SMCJ85CA GGV BGV 85 1 94.40 104.0 1 137.0 11.0 SMCJ90A SMCJ90CA GGX BGX 90 1 100.0 111.0 1 146.0 10.3 SMCJ100A SMCJ100CA GGZ BGZ 100 1 111.0 123.0 1 162.0 9.3 SMCJ110A SMCJ110CA GHE BHE 110 1 122.0 135.0 1 177.0 8.5 SMCJ120A SMCJ120CA GHG BHG 120 1 133.0 147.0 1 193.0 7.8 SMCJ130A
in „Bitte um Hilfe bei Bauteilindentifizierung (Sicherung und Diode)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
rfm12_cmds.h
received data stream in receive mode is determined by the 7-bit parameter R (bits r6 to r0) and bit cs. BR = 10000 / 29 / (R+1) / (1+cs*7) [kbps] In the receiver set R according to the next function: R = (10000 / 29 / (1+cs*7) / BR) – 1, where BR is the expected bit rate in kbps. Apart from setting custom
in „RFM12BSP - Kein nIRQ beim Empfang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tlv571.pdf
by running a low impedance line between DGND and AGND under the package. DV DD AV DD TLV571 AV DD 100 nF DV DD AGND VREFP 100 nF DGND REFP VREFM 100 nF REFM Figure 9. Placement for Decoupling Capacitors power supply ground layout Printed-circuit boards that use separate analog and digital ground planes
in „EEPROM beschreiben ohne MC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SN74LVC3G17_datasheet.pdf
-40 to 125 C17 & no Sb/Br) (R ~ Z) SN74LVC3G17DCUR ACTIVE VSSOP DCU 8 3000 Green (RoHS CU NIPDAU | CU SN Level-1-260C-UNLIM -40 to 125 (17 ~ C17Q ~ C17R) & no Sb/Br) CZ SN74LVC3G17DCURG4 ACTIVE VSSOP DCU 8 3000 Green (RoHS CU NIPDAU Level-1-260C-UNLIM -40 to 125 C17R & no Sb/Br) SN74LVC3G17YZPR ACTIVE DSBGA YZP 8 3000 Green (RoHS SNAGCU Level-1-260C-UNLIM -40 to 85 C7N & no Sb/Br) (1The marketing status values are defined as follows: ACTIVE: Product device recommended for new
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PDF
BCY59.pdf
V Tamb = 150 ⋅C 0.1 10 A ICEX Collector Cutoff Current (VBE = – 0.2 V) For BCY58 VCE = 32 V Tamb = 100 ⋅C 20 A For BCY59 VCE = 45 V Tamb = 100 ⋅C 20 A IEBO Emitter cutoff Current VEB = 5 V 10 nA (IC = 0) V (BR)CEO* Collector-emitter Breakdown IC= 2 mA For BCY58 32 V Voltage (B = 0) For BCY59 45 V (BR
in „HiFi Alternative für BC237, BC107 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „Zu viele Pointer - brauche Hilfe.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „ATMega nach ADC BascomPRG stk500 WEG!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „SHT11 misst Mist“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „UART funktioniert nicht!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „Heizungssteuerung mit ATMEGA 32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „Modul antwortet nur nach Neuprogrammierung des Controllers“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „Reset bei serieller Kommunikation“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „[AVR-GCC] makefile SRC und #include“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „ATmega168 Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „fleurys I2C + UART lib halten in Kombination die Hauptschleife an!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „Inkonsistentes Verhalten einfachem avr-gcc-codes“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „RFM70 Timing Problem?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „UART Auswertung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „µC rechnet falsch oder ich finde den Fehler nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „µC rechnet falsch oder ich finde den Fehler nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „Float via UART an PC senden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „ATmega UART spinnt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „avr dude Programm zu groß? Eclipse GCC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „Timerberechnung die hunderste“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart.h
higher byte: last receive status * - \b 0 successfully received data from UART * - \b UART_NO_DATA * <br>no receive data available * - \b UART_BUFFER_OVERFLOW * <br>Receive ringbuffer overflow. * We are not reading the receive buffer fast enough, * one or more received character have been dropped * - \b UART_OVERRUN_ERROR * <br>Overrun condition by UART. * A character already present in the UART UDR register was * not read by the interrupt handler before the next character arrived, * one or more received characters have been
in „Wie macht man solche Lichtmodes? Lauflicht, PWM und Co“ · Mikrocontroller und Digitale Elektronik ·