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Manual_S19-22.pdf
kHz 30 kHz 50 kHz 100 kHz 20.0 - .01 mV 200 mV 0.2% 0.2% 0.5% 1% 199.99 mV + 12 + 20 + 40 + 100 .2000 - .1 mV 2V 3% +200 1.999V 1% + 10 2.000 - 1 mV 20V 0.5% 0.5% 1% +40 2% +100 19.9999V +12 +20 20.00 - 10 mV 200V 199.99V 30.0 - 100 mV 300V Not 300.0V Specified Not Specified * Not specified for input
in „NF Millivoltmeter“ · Markt ·
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PDF
ZX5T851A.pdf
Collector-emitter voltage BV 60 V CEO Emitter-base voltage BVEBO 7 V (a) Continuous collector current C 4.5 A Peak pulse current CM 15 A Practical power dissipationa) P 1.0 W D Linear derating factor 8 mW/°C (b) Power dissipation at A=25°C PD 0.71 W Linear derating factor 5.7 mW/°C Operating and storage
in „Ersatz für MPSA06 Transistor gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
osee.pdf
(1999) UWB radars in medicine. Procs. 1999 International Ultra Wideband Conference, Washington, D.C.. [12] Staderini E.M. (2000) From microwave tomography to the ultra wideband synthetic aperture radar: the personal radar camera is about to enter the real world. Procs. Workshop sobre Tomografia Reconstrutiva no Agronegócio, São Carlos - SP- Brazil (in press). [13] Staderini E.M. (2000) The Non-Acoustic Echocardiography. Procs. PIERS2000 Progress in Electromagnetics Research Symposium, Cambridge (MA) USA. [14] Berndt, H. (1968) Correlation function estimation by polarity methods using
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PDF
osee.pdf
(1999) UWB radars in medicine. Procs. 1999 International Ultra Wideband Conference, Washington, D.C.. [12] Staderini E.M. (2000) From microwave tomography to the ultra wideband synthetic aperture radar: the personal radar camera is about to enter the real world. Procs. Workshop sobre Tomografia Reconstrutiva no Agronegócio, São Carlos - SP- Brazil (in press). [13] Staderini E.M. (2000) The Non-Acoustic Echocardiography. Procs. PIERS2000 Progress in Electromagnetics Research Symposium, Cambridge (MA) USA. [14] Berndt, H. (1968) Correlation function estimation by polarity methods using
in „Korrelation ist besser statt hohe Sendeleitsung!!!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
osee.pdf
(1999) UWB radars in medicine. Procs. 1999 International Ultra Wideband Conference, Washington, D.C.. [12] Staderini E.M. (2000) From microwave tomography to the ultra wideband synthetic aperture radar: the personal radar camera is about to enter the real world. Procs. Workshop sobre Tomografia Reconstrutiva no Agronegócio, São Carlos - SP- Brazil (in press). [13] Staderini E.M. (2000) The Non-Acoustic Echocardiography. Procs. PIERS2000 Progress in Electromagnetics Research Symposium, Cambridge (MA) USA. [14] Berndt, H. (1968) Correlation function estimation by polarity methods using
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PDF
Weidezaun_S04_ELV50.pdf
30V 0,6-2,5R SN020-30 TME.eu tyco Mark EB 14x3x7mm RM10 C3 C5 ETD29/16/10 Al2000nH N27=25kHz Pin7+6 Block Bausatz EB29 66C240 (3c85 Al2350nH) (Cu0,71mm 1,54A 50Wdg/2xLage 5mH, Cu0,2mm 0,126A 19,4x5mm 83,3Wdg/3xLage 125mH) 6 200Vss Kaskade x2 B+3mm 50um Lagenisolierung
in „Weidezaun gegen Schnecken mit Netztrafo und Rohr DN160 für Hobbygärtner“ · Projekte & Code ·
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Datei
vanny.c
printk("Caller is %pS\n", __builtin_return_address(3)); // dump_stack(); if (wo) { req = VANNY_REQ_I2C_WRITE; type = URB_OUT; } else { /* rw */ req = VANNY_REQ_I2C_READ; type = URB_IN; } if (wo) { return usb_control_msg(d->udev, usb_sndctrlpipe(d->udev, 0), req, type, value, index, wbuf, wlen, 2000);
in „Projekt DIY DVB-C/T USB Receiver aus Pollinboard“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PDV_Pruefung_SS14.pdf
= semBCreate(SEM_Q_FIFO, SEM_FULL); //spawn the two tasks taskIdTwo = taskspawn(“t2”, 90, 0x100, 2000, (FUNCPTR)taskTwo, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0); taskIdOne = taskspawn(“t1”, 100, 0x100, 2000, (FUNCPTR)taskOne, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0); } Void taskOne(void) { int i; for (i = 0; I < ITER; i
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2SD2420_A_.pdf
transfer ratihFE1 VCE= 3 VCvi = 0/w A 1000 Collector-emitter saturationVvoltagI = 3 A, I = 12 mA 2000 12.00 V VCE(sat)C= 5 AB I = 20 mA 4.0 Transition frequency T VCE= 10 VC I = 0.5 A, f = 1 MHz 20 MHz Turn-on time on IC= 3 AB1= 12 mAB2= −12 mA 0.5 µs Fall timeime ftg VCC= 50 V 1.0 µs Note) 1. Measuring methods are based on JAPANESE INDUSTRIAL STANDARD JIS C 7030 measuring methods for transistors. 2.*: Rank classification Rhnk 2000 to 5000 4000 to 10000 FE2 Publication date: November 2004 SJD00267CED 1 Request for your special attention and precautions in
in „Endstufen Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
windmonitor.c
lcd_puts_P("Weather Monitor\n"); lcd_puts_P("Daniel Buergin"); // Hier ist das Problem.... // _delay_ms(2000); ms_sleep(2000); i = 0; while(1) { c = uart1_getc(); if ( c & UART_NO_DATA ) { // No Data } else { // new data available from UART // check for Frame or Overrun error if ( c & UART_FRAME_ERROR ) {
in „Seiteneffekt mit LCD Library und Timer0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hc86.pdf
operation should be restricted to the Recommended Operating Conditions. †Derating — Plastic DIP: – 10 mW/_C from 65_ to 125_C SOIC Package: – 7 mW/_C from 65_ to 125_C TSSOP Package: – 6.1 mW/_C from 65_ to 125_C For high frequency or heavy load considerations, see Chapter 2 of the ON Semiconductor High–Speed
in „Vollbrücke, wo kondensatoren einbauen?“ · Analoge Elektronik und Schaltungstechnik ·
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Relais_RF.PDF
lsolationswiderstand O lo6 Schaltspannungsbereich V 3 . 1 0 - " . . . 2 4annungsfestigkeitnt./Kont.-Spule Ver t000/ 2000 / Spule-Masseel| 500 / 2000 10-'..0,34 Kont.-Masse Lebensdauermech. Schalt. 5 x 1 0 o Schutz(nachDIN40050) rP54 Lebensdauerelektr.bei 0,014 V Schalt. 2 x 1 0 " fiir die AusführungE tP67 Thermischeriderstand
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Datei
main.c
Calculate Temp_cold at PT1 Ratio_RT1_Rref = Temp_PT1/Temp_REF * corr_fact; R1 = Ratio_RT1_Rref * R0_at_0C; Temp_cold_in_Celcius = (-R0_at_0C *Coeff_A +sqrt( ((R0_at_0C *Coeff_A)*(R0_at_0C *Coeff_A)) -4*R0_at_0C *Coeff_B *(R0_at_0C - R1) ) ) /(2 *R0_at_0C *Coeff_B); // Calculate Temp_hot at PT2 Ratio_RT2_Rref = Temp_PT2/Temp_REF * corr_fact; R2 = Ratio_RT2_Rref * R0_at_0C; Temp_hot_in_Celcius = (-R0_at_0C *Coeff_A +sqrt( ((R0_at_0C *Coeff_A)*(R0_at_0C *Coeff_A)) -4*R0_at_0C *Coeff_B *(R0_at_0C - R2) ) ) /(2 *R0_at_0C *Coeff_B); // Print result printf("\n\tPT1= %6.3fµs
in „STM32 ,TDC GP22 antwortet nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
thermotest.c
angegeben, wurde nun auf 1843200 (1,8432MHz) gesetzt!" #define F_CPU 1000000 #endif //sbit RST = 0xC1; /* DS1620 reset line */ //sbit CLK = 0xC5; /* DS1620 clock line */ //sbit DQ = 0xC4; /* DS1620 data line */ int com; int DATA; int DATA2; int i; #define SLA_W 0xa0 //(00)address 0(page) 0(r/w) #define
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Datei
tasmota_script_with_device_time28042024.txt
print request data ;reset application code ;sml(1 1 "6804046853FE5000A116") ;;sml(1 1 "68030368730050C316") ;set string to send (REQ_UD2) sml(1 1 "105BFE5916") sDate_Read=s(4.0(2000+((v1>>25&0x78)|(v1>>21&0x07))))+"-"+s(2.0(v1>>24&0x0f))+"-"+s(2.0(v1>>16&0x1f))+"T"+s(2.0(v1>>8&0x1f))+":"+s(2.0(v1&0x3f
in „Wärmezähler über optische M-Bus-Schnittstelle auslesen“ · Haus & Smart Home ·
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PDF
XC4000.pdf
wake up in synchronism with the user system. 2-28 Length Count Match CCLK Period CCLK F DONE I/O XC2000 Global Reset F = Finished, no more F DONE configuration clocks needed XC3000 Daisy-chain lead device must have latest F I/O Heavy lines describe default timing Global Reset F DONE C1 C2 C3 C4 XC4000
in „Xilinx XC4006“ · FPGA, VHDL & Co. ·
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Datei
main.c
#define BAUD 9600 // Baudrate für setbaud.h #include <util/setbaud.h> int uart_putc(unsigned char c) { while (!(UCSRA & (1 << UDRE))) { } UDR = c; return 0; } void init_uart(void) { UBRRH = UBRRH_VALUE; UBRRL = UBRRL_VALUE; #if USE_2X UCSRA |= (1 << U2X); #else UCSRA &= ~(1 << U2X); #endif UCSRB |=
in „Problem mit PWM und Servo“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Picoscope.txt
========== +++++++++++++++++ Device Information ++++++++++++++++++ Device Description : PicoScope 2000 series PC Oscilloscope Device Path 1 : \\?\USB#VID_0CE9&PID_1016#7&22b5f94a&0&7#{a5dcbf10-6530-11d2-901f-00c04fb951ed} (GUID_DEVINTERFACE_USB_DEVICE) Device Path 2 : \\?\USB#VID_0CE9&PID_1016#7&22b5f94a
in „Reparatur Picoscope 2203“ · Mikrocontroller und Digitale Elektronik ·
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PDF
349_529-15.pdf
1 mm ± 1 mm der Antriebswelle Vibration55bis2000Hz 100 m/s (EN 60068-2-6) 300 m/s 2 3(EN 60068-2-6) Schock 6 ms 2 2 1000 m/s (EN 60068-2-27) 2000 m/s (EN 60068-2-27) 2) Max. Arbeitstemperatur 100 °C 100 °C 70 °C 100 °C Min. Arbeitstemperatur Flanschdose
in „Wie entsteht das Sinusförmige Signal eines Drehgebers/ Vermutung“ · Offtopic ·
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PDF
TRKennlinie.pdf
1247 -20 922 1367 4500 -10 961 1495 d 4000 0 1000 1630 a 10 1039 1772 t 3500 20 1078 1922 r 25 1097 2000 e 3000 30 1117 2080 i R (Pt-1000) W 2500 R (KTY) 40 1155 2245 r 50 1194 2417 e 2000 60 1232 2597 h 1500 70 1271 2785 s 80 1309 2980 1000 90 1347 3182 h 100 1385 3392 500 110 1423 3607 O 0 120 1461 3817 125 1480 3915 -100 -50 0 50 100 150 200 130 1498 4008 140 1536 4166 Temperaturbereich -50°C bis 150°C 150 1573 4280
in „Konstanstromquelle mit 0,1mA für PT1000“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Degradation_Red_LED.pdf
mA) and degradation rate depends on working conditions (drive current) ambient temperatures (130 °C, 150 °C and 180 °C) in a temperature climatic chamber. Degradation of 15 LEDs have been analyzed in and ambient conditions (temperature) but in all the tests LEDs degradation follows an exponential trend
in „Lebensdauer rote Sendediode SFH757“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.s
AREA DATA, READWRITE GPIOC_CRH EQU 0x40011004 GPIOC_ODR EQU 0x4001100C LED EQU 0x20000000 ;Register für RCC RCC_APB1ENR EQU 0x4002101C ;RCC APB1 peripheral clock enable register RCC_APB2ENR EQU 0x40021018 ;RCC APB2 peripheral clock enable register ;Register für NVIC NVIC_ISER0
in „STM32 ASM Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.s
AREA DATA, READWRITE GPIOC_CRH EQU 0x40011004 GPIOC_ODR EQU 0x4001100C LED EQU 0x20000000 ;Register für RCC RCC_APB1ENR EQU 0x4002101C ;RCC APB1 peripheral clock enable register RCC_APB2ENR EQU 0x40021018 ;RCC APB2 peripheral clock enable register ;Register für NVIC NVIC_ISER0
in „STM32 ASM Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NM93C46.PDF
M N C M February 2000 R 3 O C W 4 I 6 R 0 NM93C46 E 2 M - S B 1024-Bit Serial CMOS EEPROM y t c S (MICROWIRE™ Synchronous Bus) h r o a n l General Description Features o C NM93C46 is a 1024-bit CMOS non-volatile
in „EEPROM durch anders tauschen, was beachten?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sun.c
-------------------------------------------------------------- // Prozessor : ATmega8 // Sprache : C // Datum : 20.09.2008 // Version : 1.0 // Autor : Cusoe // Programm : vereinfachte Sonnenstandsberechnung //---------------------------------------------------------------------- //------------------
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Datei
sun.c
-------------------------------------------------------------- // Prozessor : ATmega8 // Sprache : C // Datum : 20.09.2008 // Version : 1.0 // Autor : Cusoe // Programm : vereinfachte Sonnenstandsberechnung //---------------------------------------------------------------------- //------------------
in „Sonnenscheindauer Sensor selber bauen Eigenbau ATmega Assembler“ · Projekte & Code ·
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PDF
datasheet.pdf
ÊÒ3107Å 25 20 120-220 4 ÊÒ3107Æ BC309B 25 20 180-460 4 ÊÒ3107È BC307B 50 45 180-460 10 ÊÒ3107Ê BC308C 30 25 380-800 10 ÊÒ3107Ë BC309C 25 20 380-800 4 ÊÒ3117À 2N2221 NPN 0,3 60 60 4 400 40-200 0,6 10 200 ÊÒ1-7 ÊÒ3117Á 2N2222A 0,3 75 75 100-300 0,6 10 200 ÊÒ1-7 ÊÒ3117À1 0,5 60 60 40-200 0,6 10 200 ÊÒ-26
in „verstärkerschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
TB-boot-log.txt
.i2c: flags from: 0, 1, addr: 0x1b [ 4.513604] rk3x-i2c ff650000.i2c: flags from: 0, 1, addr: 0x1b [ 4.521038] rk3x-i2c ff650000.i2c: flags from: 0, 1, addr: 0x1b [ 4.527392] rk3x-i2c ff650000.i2c: flags
in „Asus Tinkerboard startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test_lcd.c
NEXT_STATE 1 #define PREVIOUS_STATE 0 #define LCD_LINES 4 #define LCD_DISP_LENGTH 20 #define LCD_IO_DATA 0xC000 // A15=1, A14=0 ==> Instruction Register #define LCD_IO_FUNCTION 0x8000 static int8_t anzeige_version(void) { #ifdef AVRTEST_H LOG_PSTR (PSTR("anzeige_version()")); #endif _delay_ms(2000); return
in „Fehlermeldung: near initialization for“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xtr115.pdf
www.burr-brown.com/ • Cable:BBRCORP • Telex:066-6491 • FAX:(520)889-1510 • ImmediateProductInfo:(800)548-6132 ® © 2000 Burr-Brown Corporation PDS-1582A Printed in U.S.A. January, 2000 XTR115, XTR116 SBOS124 SPECIFICATIONS At T = +25°C, V+ = 24V, R = 20k , and TIP29C external transistor, unless otherwise noted. A IN
in „Temperatur Messwertumformer PT100“ · Mikrocontroller und Digitale Elektronik ·
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PDF
paper.pdf
matrices for the conversion from time-of-¤ight to the cylindrical polar coordinates (ρ,ϕ) result in: 2 2 c τ + 4∆τ −2 q4 ρ = (4) 2cτ 2 2 sin(ϕ) = c ∆τ 2c τ − 1 (5) q c τ + c2∆τ − q 4 4 This array Φ(ρ,ϕ) (Fig. 5(b)) can be seen as the echo-intensity £eld. The maximum regions of the £eld corresponding
in „Simulation mit Audiosignale“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
TUNER_2000_DHC.pdf
1 2 3 4 5 6 7 8 9 10 11 12 13 14 TUNER 2000 DHC Local oscillator amplifier output TDA5330T PIN 27 and 28 of the 2 x C SMD TDA5330T To U813B PIN 2 + 3 GND AGC +12V TUNE TUNE Band TUNE +5V OUTP OUTP Scale IF IF Select MasterPrescaler (7) (6) Factor
in „Anschlussbelegung Tuner 2000 DHC mit TDA5330T“ · HF, Funk und Felder ·
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PDF
KS76.pdf
öhere • inea reB a Ve ringertes ndb e ie • Ra uschen H ghe rline • arb andw id L owe rno se h KS76C.10/.100 KS77C.10/.100 KS76C.10 KS76C.100 KS77C.10 KS77C.100 Ausgang • Output ICP -kompatibel • ICP compatible Piezosystem • Piezo design Scherprinzip • Shear design Spannungsübertragungsfaktor • Voltage
in „Beschleunigungsmessung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
datenblatt-564230-ixys-standardioden-array-gleichrichter-52-a-dsei2x61-12b-sot-227-4-array-zweifach.pdf
Conditions Characteristic Values (per diode) ● typ. max. Ultrasonic cleaners and welders I T = 25°C V = V 2.2 mA R VJ R RRM T VJ25°C V R = 0.8 • RRM 0.5 mA Advantages T VJ125°C V R = 0.8 V RRM 14 mA ● High reliability circuit operation V F IF= 60 A; TVJ =150°C 2.15 V ● T = 25°C 2.50 V Low voltage peaks
in „IGBT schon bei kleiner Last durchgebrannt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sensata-acw4-tcw4-canopen-position-sensor-user-manual.pdf
0FFF Reserved 1000-1FFF Communication area (see Communication profile objects 1000h to 1FFFh (DS301) 2000-5FFF Manufacturer specific area (see Manufacturer-specific Zone Objects 2000h to 5FFFh) 6000-9FFF Device profile specific area (see Hardware Profile objects 6000h to 0FFFh (DS406) A000-FFFF Reserved
in „Hilfe mit (fehlerhafter?) EDS-Datei“ · Softwareentwicklung ·
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PDF
datenblatt-160715-ixys-standarddiode-dsei2x121-02a-sot-227-4-200-v-123-a.pdf
(60 Hz), sine 7100 A s TVJ= 150°C; t = 10 ms (50 Hz), sine 5800 A s miniBLOC, SOT-227 B t = 8.3 ms (60 Hz), sine 5700 A s T VJ -40...+150 °C T VJM 150 °C T -40...+150 °C stg P tot TC= 25°C 250 W V ISOL 50/60 Hz, RMS 2500 V~ I £ 1 mA
in „IGBT schon bei kleiner Last durchgebrannt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ug_bbmv.pdf
......................................... 1 2 Installing the Altera ByteBlaster Driver on Windows 2000 .......................................................... 1 3 Installing the Altera ByteBlaster Driver on Windows XP ............................................................. 1 4 Installing the
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PDF
AC_INP_MOD.pdf
générales /General characteristics SEAxxxxx Température de stockage / Storage temperature - 40 à/to +150 °C Température de fonctionnement /Operating temperature -40 à/to +90 °C Tension d'isolement entrée-sortie / Input-output isolation voltage 4000 VRMS Capacité entrée-sortie/ Input-output capacity 8 pF Poids
in „Eingangskarten/ -module für Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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Datei
display_eadogm162w-A.c
lcd_send_byte(0x14, 1); // Bias Set: 1/5 lcd_send_byte(0x55, 1); // Power Control: booster on, contrast C5, C4 lcd_send_byte(0x6D, 1); // Follower Control: voltage follower and gain lcd_send_byte(0x74, 1); // Contrast Set: C3, C2, C1 lcd_send_byte(0x38, 1); // Function Set: switch back to normal mode lcd_send_byte
in „EADOGM162W-A-Anzeige mit XMEGA“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hemisphere_H102.pdf
minutes after loss of • Fast heading and position output rates up to 20Hz differential signal • NMEA2000certified www.hemispheregps.com • precision@hemispheregps.com H102 GPS Compass OEM Board GPS Sensor Specifications Environmental ReceiverType: L1, C/A code, with carrier OperatingTemperature: -30°C to + 70°C (-22°F to + 158°F) phase smoothing StorageTemperature: -40°C to + 85°C (-40°F to + 185°F) Channels: Two 12-channel, parallel tracking Humidity: 100% non-condensing (Two 10-channel when tracking SBAS)
in „Kompassensoren so ungenau?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADNS-3080-Avago.pdf
clock. Counts Frame_Period Frames/second Decimal Hex Upper Lower 6469 3,710 OE7E OE 7E 5000 4,800 12C0 12 C0 3000 8,000 1F40 1F 40 2000 12,000 2EE0 2E E0 Motion_Clear Address:0x12 Access:Write ResetValue: Undefined DataType: Any. USAGE:Writing any value to this register will cause the Delta_X, Delta_Y
in „ADNS3080 Steuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LUW_T6SG_-_TOPLED-473049.pdf
J-STD-020D.01) Reflow Soldering Profile for lead free soldering (acc. to J-STD-020D.01) OHA04525 300 ˚C T 250 Tp245˚C 240˚C 217˚C t P 200 t L 150 t S 100 50 25˚C 0 0 50 100 150 200 250 s 300 t Profile Feature Pb-Free (SnAgCu) Assembly Recommendation Max. Ratings ) Ramp-up Rate to Preheat* 2°C / sec 3°C / sec 25°C to 150°C Time tsfrom TSminto TSmax 100s min. 60sec max. 120sec (150°C to 200°C ) Ramp-up Rate to Peak* 2°C / sec 3°C / sec 180°C to TP Liquidus Temperture TL 217°C Time t above T 80sec max. 100sec L
in „Vorwiderstand“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LST670.pdf
Soldering Profile for lead free soldering (acc. to J-STD-020B) OHLA0687 300 Maximum Solder Profile ˚C Recommended Solder Profile 260 ˚C +0 ˚C 250 255 ˚C Minimum Solder Profile -5 ˚C T 240 ˚C 245 ˚C ±5 ˚C 235 ˚C -0 ˚C 217 ˚C 200 10 s min 30 s max 150 Ramp Down 6 K/s (max) 120 s max 100 s max 100 min.
in „[V] LS T670 Rote SMD Leds“ · Markt ·
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PDF
trinomial_hunt.pdf
dx x ▯ 1 , d 0 0 0 nomial has no nontrivial factor of degree ▯ d is T x x 1 mod x d ▯ 1 ; at most c=d, where c is an absolute constant and 1 < d ▯ r=lnr. so we only need to compute r0 s0 d0 This assumption is plausible and in agreement gcd x x 1;x ▯ 1 : with experiments, though not proven. It is not
in „Hadamard Transformation“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
startup.asm
Capture Compare DCD TIM2_IRQHandler ; TIM2 DCD TIM3_IRQHandler ; TIM3 DCD TIM4_IRQHandler ; TIM4 DCD I2C1_EV_IRQHandler ; I2C1 Event DCD I2C1_ER_IRQHandler ; I2C1 Error DCD I2C2_EV_IRQHandler ; I2C2 Event DCD I2C2_ER_IRQHandler ; I2C2 Error DCD SPI1_IRQHandler ; SPI1 DCD SPI2_IRQHandler ; SPI2 DCD USART1
in „Erste Schritte: Bekomme STm32 nicht zum Laufen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
13370-70705di.pdf
I2B 7 turns on and sinks current through R . IN 4 100k 6 _ 1 Provided that R is2relatively large, C2 charging current flows into C 1 from 100 nF IC ’soutput.Overseveralcyclesofthe 2A ⳮVSⳮ5V NOMINAL inputsignal,thechargeonC buil1sup, and V OUT rises to the point at which it slightly exceeds the peak
in „Taster entprellen und erkennen funktioniert schlecht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8574AN.pdf
Package Eco Plan Lead/Ball Finish MSL Peak Temp Type Drawing Qty PCF8574ADGVR ACTIVE TVSOP DGV 20 2000 Pb-Free CU NIPDAU Level-1-250C-UNLIM (RoHS) PCF8574ADW ACTIVE SOIC DW 16 40 Pb-Free CU NIPDAU Level-2-250C-1 YEAR/ (RoHS) Level-1-235C-UNLIM PCF8574ADWR ACTIVE SOIC DW 16 2000 Pb-Free CU NIPDAU Level
in „Adresse PCF8574“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ch_ext.pdf
, T=1, 2-Wire, 3-Wire, I2C, over 40 memory card types Interface speed T=0: 4800 .. 38400 Baud (PTS) T=1: 4800 .. 115200 Baud (PTS) Sync. protocols: 4800 .. 115200 Baud CPU type 4 MHz Microchip controller System compatibility Windows
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PDF
HT-PD-engl.pdf
brief period +120 °C) Media temperature: -40 °C to +130 °C Stock temperature range: -40 °C to +130 °C Long-term stability: 0,1 % of final scale/year V - 5V V s 10V Load resistor: Current source: L = s (0 to 20 mA), R L 20
in „Drucksensor über ADC einlesen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HT-PD-engl.pdf
brief period +120 °C) Media temperature: -40 °C to +130 °C Stock temperature range: -40 °C to +130 °C Long-term stability: 0,1 % of final scale/year V - 5V V s 10V Load resistor: Current source: L = s (0 to 20 mA), R L 20
in „Kontrolle der Eingangsbeschaltungen“ · Mikrocontroller und Digitale Elektronik ·