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PDF
trm-868-eur-463941_4_.pdf
CSMA medium access control • 16-bit CRC error checking • 115dB link budget in DTS mode • 76.8kbps max RF data rate • 4 modes allow user to optimize • 2 channels in DTS mode power/range • 6 channels in LP mode • Command mode for volatile and • Small size – 0.8" x 0.935" (20.32 non-volatile configuration
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PDF
trm-868-eur-463941.pdf
CSMA medium access control • 16-bit CRC error checking • 115dB link budget in DTS mode • 76.8kbps max RF data rate • 4 modes allow user to optimize • 2 channels in DTS mode power/range • 6 channels in LP mode • Command mode for volatile and • Small size – 0.8" x 0.935" (20.32 non-volatile configuration
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Datenblatt Spezifikationen Infrarotthermometer CS/CSmicro Serie
or ±1.5% Outputs analog: 0-20 mA / 4-20 mA / 0-5 V / 0-10 V / t/c (K/J) Interfaces: USB / RS232 / RS485 Fieldbuses: Profibus DP / Modbus RTU Industrial Ethernet: EtherNet/IP / Ethernet TCP/IP / Modbus TCP Signal processing: Peak / Valley / AVG Tamb Head min. -20 °C Tamb Head max. 80 °C Voltage supply
in „RS232-Pegelwandler“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Schaltplan einer galvanisch getrennten Schnittstelle
Slave 1 U1 IS 22LAD +5V iso C13 100n C5 100n +5V iso U8 MAX485EESA R9 10k R17 10R R25 120R PL2 BS27905013N JP1 J1 +5V GND +5V iso IC1 IN OUTB GND iso U1 IC1 IN OUTB GND iso D9 SMBJ5.0A D13 SMBJ5.0A 24V-to-5V GND_out GND_in C 0+5V_out - GND D2 BAT545 +5V R1 GND
in „Optimierung RS485-Bus“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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PDF
Designing_Photodiode_Amplifier_Circuits.pdf
circuit and it requires Bias current ..........................................................75fA max good shielding and effective power supply bypassing. This Offset voltage ....................................................500 V max is not optional. Drift ................................................................. 5 V/°C max • A small capacitor across R is frequently required to Noise.................................................... 15nV/ Hz at 10kHz F suppressoscillationorgainpeaking. Althoughitcanaffect ® ® bandwidth
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PDF
Fotodiode_applications.pdf
circuit and it requires Bias current ..........................................................75fA max good shielding and effective power supply bypassing. This Offset voltage ....................................................500 V max is not optional. Drift ................................................................. 5 V/°C max • A small capacitor across R is frequently required to Noise.................................................... 15nV/ Hz at 10kHz F suppressoscillationorgainpeaking. Althoughitcanaffect ® ® bandwidth
in „Beschaltung von Photodioden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Fotodiode_applications.pdf
circuit and it requires Bias current ..........................................................75fA max good shielding and effective power supply bypassing. This Offset voltage ....................................................500 V max is not optional. Drift ................................................................. 5 V/°C max • A small capacitor across R is frequently required to Noise.................................................... 15nV/ Hz at 10kHz F suppressoscillationorgainpeaking. Althoughitcanaffect ® ® bandwidth
in „Suche Strom-Widerstandswandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
P4SMA_LIF.PDF
FBEoGSFF▯BTTFNCMZ t TP p -Temperature Min (T ) 150°C s(min) Ramp-up CTito Tl Zone Pre Heat -Temperature Max (T ) 200°C TL L P s(max) ) tL -Time (min to max) (t ) ▯▯▯o▯▯▯▯▯TFDT (Ts(max) s u Average ramp up rate (LiquidusTemp r Ramp-down 3°C/second max pTs(min) (TL) to peak m s T Preheat TS(max)oTL- Ramp-up Rate 3°C/second max -Temperature (T L (Liquidus) 217°C 25˚C t 25˚C to Peak Reflow -Time (min to max) (ts) ▯▯▯o▯▯▯▯▯TFDPOET Time (t) +0/-5 PeakTemperature (T )P 260 °C Time within 5°C of actual peak ▯▯▯o▯▯▯▯TFDPOET Temperature
in „Warum noch KFZ-Relais?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
digitalSTROM.pdf
). Der Nennstrom der Sicherung dieser Strom- 50mLeitungslängeproStromkreisund100mLeitungslängeimdS-485- kreise darf dabei 16A nicht überschreiten, da das dSM auf max. 16A Bus besteht. Eine weitere Aufgabe der Digitalstrommeter (engl. meter = ausgelegt ist. Wichtig zu wissen: Das dSM beeinflusst nicht
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PDF
psm712.pdf
9 0 0 PSM712 STANDARD CAPACITANCE TVS ARRAY APPLICATIONS ✔ RS-485 Transceivers ✔ Network Interfaces ✔ Wireless Systems ✔ Portable Electronics IEC COMPATIBILITY (EN61000-4) ✔ 61000-4-2 (ESD): Air - 15kV, Contact - 8kV ✔ 61000-4-4 (EFT): 40A - 5/50ns ✔ 61000-4-5 (Surge
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PDF
catalog.pdf
Price]: 2.1 USD [QTY]: 9 [Category]: Interface ICs [Desc]: FT230XQ-R Uart Interface RS232, RS422, RS485, Sie, Uart 3MBD, 5 V, 16-PIN, QFN MPN: MAX213CAI [ID]: 000046 [Price]: 4.16 USD [QTY]: 5 [Category]: Interface ICs [Desc]: IC TRANSCEIVER FULL 4/5 28SSOP / +5V RS-232 Transceivers with 0.1uF External
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PDF
catalog.pdf
Price]: 2.1 USD [QTY]: 9 [Category]: Interface ICs [Desc]: FT230XQ-R Uart Interface RS232, RS422, RS485, Sie, Uart 3MBD, 5 V, 16-PIN, QFN MPN: MAX213CAI [ID]: 000046 [Price]: 4.16 USD [QTY]: 5 [Category]: Interface ICs [Desc]: IC TRANSCEIVER FULL 4/5 28SSOP / +5V RS-232 Transceivers with 0.1uF External
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PDF
catalog-3.pdf
Price]: 2.8938 USD [QTY]: 9 [Category]: Interface ICs [Desc]: FT230XQ-R Uart Interface RS232, RS422, RS485, Sie, Uart 3MBD, 5 V, 16-PIN, QFN MPN: MAX213CAI [ID]: 000046 [Price]: 5.7325 USD [QTY]: 5 [Category]: Interface ICs [Desc]: IC TRANSCEIVER FULL 4/5 28SSOP / +5V RS-232 Transceivers with 0.1uF External
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Technische Daten eines GT30E Zentralwechselrichters
oberhalb 20% der Nennleistung Klirrfaktor (THD gesamt) < 4% der Nennleistung Nennstrom (DC) 71 Adc Max. Leerlaufspannung (DC) 840 Vdc MPPT Spannungsbereich 450 - 800 Vdc Maximaler Wirkungsgrad 95,0% inklusive Transformator Europäischer Wirkungsgrad 94,2% inklusive Transformator Allgemeine Daten Umgebungstemperatur
in „30kW Wechselrichter“ · Haus & Smart Home · · Screenshots
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PDF
kazemi-millimeter-wireless-power-transfer-technology.pdf
Raytheon DC-DC Efficiency Record 1975 measurement confirmed a 54% DC-DC system efficiency at 2.45 GHz 485 W DC rectenna output power 199-Element Rectenna Array Gaussian Beam Horn 1 kW Magnetron William Cyrus “Bill” Brown 1916-1999 1.7 m transmission system,” Raytheon Company, Wayland, MA, Tech. Report PT
in „500W über 500m per Millimeterwelle übertragen?“ · HF, Funk und Felder ·
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Schaltplan eines ESP32-Entwicklungsboards
IO3, IO2, IO1, IO0, CLK, SD3, SD2, SD1, SD0, CMD, ESP32-WROOM-32U-N16, R5 10K, R6 10K, R7 10K, U3 MAX485ED, RO, RE, DE, DI, A, B, GND, VCC, X2 B3B-PH-K-S(LF)(SN), U4 DS3231MZ+, SCL, SDA, VCC, 32KHz, INT#/SQW, RST#, VBAT, BAT1, KH-CR2032-2-1, R1, R2, X1 B5B-PH-K-S(LF)(SN), D1 PESD5V0L1BA, C1 0,1uF, C2
in „Probleme beim flashen des ESP32 mit ESP-PROG“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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Forum für Mikrocontroller und digitale Elektronik Übersicht
11.07.2025 11:55 Auto-Off für Schaltung, aber mit Schalter statt Switch Martin E. 14 11.07.2025 14:36 ESP32 Max485 und 6N137 brennt ab Dominic S. 12 11.07.2025 01:05 HX711 / Wägezelle driftet L.S. 51 10.07.2025 17:17 Große Politik, Renaissance-MCU für Motorsteuerung und Raspberry Pi Neuigkeiten Tam H. 3 10.07.2025
in „einzelne Threads ausblenden?“ · www.mikrocontroller.net · · Screenshots
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Datenblatt des Wilcoxon 883M MEMS Beschleunigungssensors
13,333 samples, 1 second Other features crest factor standard deviation COMMUNICATION Interface RS485 Protocol Modbus RTU Recommended baud rate 9,600 or 115,200 bps Max. baud rate 921,600 bps Key features Modbus RTU communication protocol Digitally outputs vibration spectrum, time waveforms, and vibration
in „Neue Bauteile: ESP32-C5 in Produktion, spulenloses Relais und neue Mikrocontroller“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
OldPrototypeProblem.c
; } int main(void) { volatile DevComSlave_t* slave = dcs_create(M3S_ADDR); // RW-Output for DDR on Max485 slave->RWPort = &PORTD; slave->RW_bp = PD2; slave->RWPolarity = 1; slave->MCAddress = (slave->Address %2)+1; slave->DataUpperBound = 32-1; slave->CommandHandler = m3sCmdHandler; // THIS IS THE MALFUNCTIONOUS
in „Prüfen ob -Werror gesetzt (Preprocessor)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S7200SH.pdf
2 2 2 Echtzeituhr Steckmodul Steckmodul Integriert Integriert Integriert Komm. schnittstellen 1 RS-485 1 RS-485 1 RS-485 2 RS-485 2 RS-485 Gleitpunktarithmetik Ja Digitale E/A 256 (128 Eingänge, 128 Ausgänge) (Prozessabbild) Boolesche 0,22 Mikrosekunden/Operation Ausführungszeiten 1 Wird die LeistungsbilanzderCPUüberschritten
in „SPS Step 7-Micro/win v4.0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LITTELFUSE_TVS_DIODE_1_5KE_DATASHEET.pdf
Lead–free assembly p P -Temperature Min (T s(min) 150°C Ramp-up Critical Zone TLtoPT Pre Heat -Temperature Max (T s(max) 200°C L tL T -Time (min to max) (s ) 60 – 180 secs es(max) t Average ramp up rate (LiquidusTemp (T )A e Ramp-down 3°C/second max ps(min) to peak e Preheat T T S(max)T A Ramp-up Rate 3°C/second max -Temperature (T ) (Liquidus) 217°C 25˚C Reflow A t 25˚C to Peak -Time (min to max) (t ) 60 – 150 seconds Time (t) s PeakTemperature (T ) 260 +0/°C P Time within 5°C of actual peak 20 – 40 seconds Flow
in „230V Schutz mit TVS Diode, Auswahl Diode“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Phycomp.pdf
REFERENCE DATA DESCRIPTION VALUE Center frequency 2.45, 2.60 and 2.70 GHz Bandwidth 100 MHz Gain 0 dBi max. VSWR 2 max. Polarization Linear Azimuth beamwidth Omni-directional Impedance 50 W Power dissipation 1 W Operating temperature -55 to +125 C Terminations NiSn Resistance to soldering heat 260 C for
in „50Ohm Impedanz PCB?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CFE5100.pdf
more accurate and never jump. Model CFE-5100 Total Energy 5.1 kWh Usable Energy(DC) 4.6 kWh 3.0 KW Max. Discharge Power Rated Capacity 100 Ah Voltage 48~56 Vd.c Nominal Voltage 51.2 Vd.c Operating Condition Indoor Charge Operating Temperature 0~45℃ Discharge Operating Temperature -10~55℃ Dimensions (
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PDF
UV1316.pdf
mounting tags (ground) LIMITING VALUES Environmental conditions SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Non-operational conditions Tamb ambient temperature −25 − +85 °C RH relative humidity − − 100 % gB bump acceleration 25 g − − 245 m/s2 g shock acceleration 50 g − − 490 m/s2 S vibration amplitude
in „C-Box 2 Platine von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UV1316.pdf
mounting tags (ground) LIMITING VALUES Environmental conditions SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Non-operational conditions Tamb ambient temperature −25 − +85 °C RH relative humidity − − 100 % gB bump acceleration 25 g − − 245 m/s2 g shock acceleration 50 g − − 490 m/s2 S vibration amplitude
in „TV-PLL Tuner Philips FI1216 MK2/1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tm035pdh03_v1.0.pdf
29 SHANGHAI TIANMA MICRO-ELECTRONICS TM035PDH03 V1.0 4.2 Backlight Unit Ta=25℃ Item Symbol MIN TYP MAX Unit Remark Forward Current F -- 20 -- mA Forward Voltage V F -- 3.2 -- V Backlight Power W BL -- 384 -- mW Consumption Table 4.2 backlight unit electrical characteristics Note 1: The figure below shows
in „Tianma 3,5" TFT Display ansteuern mit STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
17PM-K.pdf
17PM-K7** 26 (1.02) (1.22±0.0)8 (0.08) PLATE ±0.5 UNIT: mm 17PM-K2** 30 (1.18) 4-M3 x 0.5 42 24 ``L´´ MAX (inch) DEPTH 4MIN (1.65) (0.95±0.)2 17PM-K0** 34 (1.34) 17PM-K3** 38 (1.50) (DEPTH 0.157MIN) 結線表 PIN NO. vs. PHASE 17PM-K1** 42 (1.65) 相(PHASE) A A COM A B B COM B 17PM-K4** 48 (1.89) ピン番号 (PIN NO.)
in „Pollin NEMA17 Stepper 34Ncm für 3€ : Kann das sein?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
AMIS-30543-D.pdf
torque and speed. It is QFN32 using a proprietary PWM algorithm for reliable current control. CASE 485J The AMIS−30543 is implemented in I2T100 technology, enabling both high−voltage analog circuitry and digital functionality on the same chip. The chip is fully compatible with the automotive voltage
in „Puls aus Sinuswelle herausrechnen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
visa.h
VI_ATTR_USB_INTFC_NUM (0x3FFF01A1UL) #define VI_ATTR_USB_PROTOCOL (0x3FFF01A7UL) #define VI_ATTR_USB_MAX_INTR_SIZE (0x3FFF01AFUL) #define VI_ATTR_PXI_DEV_NUM (0x3FFF0201UL) #define VI_ATTR_PXI_FUNC_NUM (0x3FFF0202UL) #define VI_ATTR_PXI_BUS_NUM (0x3FFF0205UL) #define VI_ATTR_PXI_CHASSIS (0x3FFF0206UL)
in „GPIB Kommunikation“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AS-I_DMX.pdf
GND 33p 1 DMX_RxPIV101PD1 (TXD) PC1 (SDA) PIV1020 Q2Q2 RC5_RxPIV101PD2 (INT0) PC2 PIV1021 IL711-3 LTC485 C4C 4Mhz ASI_CLPIV101PD3 (INT1) PC3 PIV1022 RTN RTN C PIC401 PIC402AL2 ASI_CSPIV101PD4 (OC1B) PC4 PIV1023 GND C ASI_RWPIV101PD5 (OC1A) PC5 PIV1024 GND 33p ASI_RxP16101PD6 (ICP) PC6 (TOSC1) PI26025 VDD
in „AS-i AktorSensor - Interface IC's“ · Haus & Smart Home ·
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PDF
uniTFT050-A.pdf
free crc16 Protkollinformationen Empfang DC4 1 0 'P' crc16 anfordern Send ACK timeout Send DC4 6 0 max. Packet size akt. Packetsize 10 ms crc16 RS485Adressierung Select / Empfang DC4 3 0 'A' Deselect adr crc16 Send ACK RS485 direction enable Empfang DC4 2 0 'T' Verzögerung10 us delay Send ACK Schnittstelle
in „Probleme mit übertragung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_uniTFT_050-A.pdf
free crc16 Protkollinformationen Empfang DC4 1 0 'P' crc16 anfordern Send ACK timeout Send DC4 6 0 max. Packet size akt. Packetsize 10 ms crc16 RS485Adressierung Select / Empfang DC4 3 0 'A' Deselect adr crc16 Send ACK RS485 direction enable Empfang DC4 2 0 'T' Verzögerung10 us delay Send ACK Schnittstelle
in „Display am Attiny 841“ · Mikrocontroller und Digitale Elektronik ·
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Datei
board-icnova_adb1000.c
vref_delay_usecs = 100, .gpio_pendown = CONFIG_BOARD_ICNOVA_ADS7846_IRQ, .x_min = 330, .y_min = 3700, .x_max = 3700, .y_max = 330, .settle_delay_usecs = 50, }; static struct spi_board_info ek_spi_devices[] = { { .modalias = "ads7846", .max_speed_hz = 125000 * 26, .chip_select = CONFIG_BOARD_ICNOVA_ADS7846_
in „SPI - spidev ICNOVA ADB1000 SAM9g45“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DBL_CT_LT-LOETSPITZEN_DBL_DEUTSCH.pdf
Lötkolben WP 80, WSP 80, MPR 80 und FE 75, TCP-Lötkolben Bestell-Nr. Modell Beschreibung Breite A Dicke B max.LängeL T005 44 494 99 LT 1SC Meißelform, (1 Stück) 0,4 mm 0,15 mm 15,0 mm T005 44 494 10 (10 Stück) T005 44 497 99 LT 1SCNW Meißelform, (1 Stück), verchromt 0,3 mm 0,1 mm 15,0 mm T005 44 440 99 LT A
in „Verzweifelte Suche nach einer Lötspitze“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
manual_microvip_3_plus.pdf
RS232C I 50/60 Hz 4VA LIGHT FUSE O.F. 1 ø O 80mA T 250V- RS232C CONNECTOR Note : By means of a PC-485-BOX (code 4AAK4)/PC-485-BOARD (code 4AAK1) it is possible to connect a MICROVIP3 PLUS to a RS485 monitoring network: its address is fixed to 1. 6.1 PC SOFTWARE ELCONTROL ENERGY PC softwares for data
in „Auslesen von Microvip Messgeräten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSM486SE-DIGITAL-LOGIC.pdf
ELAN400 Speaker 486-66MHz LCD/VGA Video RAM DRAM 1 MByte 2 - 32 MByte Controller 65548 IrDA RTC COM2 MAX211 / ADM489 LCD CRT MSM486SEV only LiBAT COM1 3 5 ISA-BUS PC/104 BIOS Super I/O KB Char./L Watchdog UART EEPROM BUS 128kByte 37C666 Mouse CD 16C550 2kByte MAX2lMAX2ll MAX2ll FD IDE LPT1 COM2 COM3 KB
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PDF
IL715.pdf
pF f= 1MHz Recommended Operating Conditions Parameters Symbol Min. Max. Units Ambient Operating Temperature T -40 100 oC A Supply Voltage V DD1,V DD2 3.0 5.5 Volts Logic High Input Voltage V IH 2.4 V DD Volts Logic Low Input Voltage V IL 0 0.8 Volts Input Signal Rise and
in „Suche Leitungstreiberbaustein (galvanisch getrennt)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IL717.pdf
pF f= 1MHz Recommended Operating Conditions Parameters Symbol Min. Max. Units Ambient Operating Temperature T -40 100 oC A Supply Voltage V DD1,V DD2 3.0 5.5 Volts Logic High Input Voltage V IH 2.4 V DD Volts Logic Low Input Voltage V IL 0 0.8 Volts Input Signal Rise and
in „Optokoppler Logigausgang oder Digitalübertrager“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVR-Studio2.txt
C:\Dokumente und Einstellungen\Root\Desktop\test-akkuboost\akku-test\default/../akkuboost2charge.c:485: undefined reference to `delay' C:\Dokumente und Einstellungen\Root\Desktop\test-akkuboost\akku-test\default/../akkuboost2charge.c:486: undefined reference to `read_adc' C:\Dokumente und Einstellungen
in „Suche Hilfe beim Compilieren von fertigem C-Code“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DMX_ATmega16.txt
; UBRRL = (UBRR_VAL & 0xff); UCSRB = ((1<<RXCIE) | (1<<RXEN)); PORTD |= (1<<PD2); //DMX Empfang an MAX485 ermöglichen sei(); //Arbeitsschleife while(1) { if (!flag) { set_sleep_mode(SLEEP_MODE_IDLE); sleep_mode(); } else { flag=0; if (data < 127) { PORTD |= (1<<PD6); } else { PORTD &= ~(1<<PD6); } }
in „DMX Empfang mit Atmega16 funktioniert leider nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DMX_ATmega16.c
; UBRRL = (UBRR_VAL & 0xff); UCSRB = ((1<<RXCIE) | (1<<RXEN)); PORTD |= (1<<PD2); //DMX Empfang an MAX485 ermöglichen sei(); //Arbeitsschleife while(1) { if (!flag) { set_sleep_mode(SLEEP_MODE_IDLE); sleep_mode(); } else { flag=0; if (data < 127) { PORTD |= (1<<PD6); } else { PORTD &= ~(1<<PD6); } }
in „DMX Empfang mit Atmega16 funktioniert leider nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DMX_Empfang_ATmega16.c
((1<<RXCIE) | (1<<RXEN)); DDRD |= (1<<PD2); //PD2 ist Ausgang PORTD |= (1<<PD2); //DMX Empfang an MAX485 ermöglichen sei(); //Arbeitsschleife while(1) { if (data < 127) { PORTD |= (1<<PD6); } else { PORTD &= ~(1<<PD6); } } return 0; } // UART RX complete interrupt ISR(USART_RX_vect) { static uint16_
in „DMX Empfang mit Atmega16 funktioniert leider nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NTC-5D5-EXSENSE-1.pdf
ballasts EXSENSE Electronics Technology Co., Ltd. 1 Part Number Identification NTC _ □ D□ ① ② ③ 25℃ Max. Dia. ① ② ③ resistance 5 5Ω D5 5mm POWER NTC 33 33Ω D11 11mm NTC Thermistor 120 D13 13mm 120 Ω Electronic parameter Specification R25℃ Max.Steady State Approx.R@ Dissipation factor Thermal time Part No. (Ω) Current (A) Max.Cur (Ω) (δ)(mW/℃) constant (s) NTC-5D5 5 1 0.353 6 20 NTC-10D5 10 0.7 0.771 6 20 NTC-60D5 60 0.5 1.878 6 18 NTC-200D5 200 0.1 6.259 6 18 NTC-5D7 5 2 0.283 10 30 NTC-8D7 8 1 0.539 9 28 NTC-10D7 10 1
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PDF
LF-SMCJ.pdf
assembly T p P -Temperature Min (Ts(min) 150°C Ramp-up Critical Zone TLtoPT Pre Heat -Temperature Max (T s(max) 200°C ) TL L -Time (min to max) (t) 60 – 180 secs ( s rs(max) Average ramp up rate (LiquidusTemp (T ) a A 3°C/second max eT Ramp-down to peak ms(min) t T Preheat T S(max)T A Ramp-up Rate 3°C/second max Reflow -Temperature (TA) (Liquidus) 217°C 25˚C -Time (min to max) (t) 60 – 150 seconds t 25˚C to Peak s Time (t) PeakTemperature (T P) 260+0/-°C Time within 5°C of actual peak 20 – 40 seconds Temperature
in „Welches Bauteil ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
326,327,327,328,329,329,330,331,331,332,333,334,334,335,336,336,337,338,339,339,340,341,341,342,343,344,344,345,346,347,347,348,349,349,350,351,352,352,353,354,355,355,356,357,358,358,359,360,361,361,362,363,364,364,365,366,367,367,368,369,370,371,371,372,373,374,374,375,376,377,378,378,379,380,381,381,382,383,384,385,385,386,387,388,389,389,390,391,392,393,393,394,395,396,397,398,398,399,400,401,402,403,403,404,405,406,407,408,408,409,410,411,412,413,413,414,415,416,417,418,419,420,420,421,422,423,424,425,426,427,427,428,429,430,431,432,433,434,435,436,436,437,438,439,440,441,442,443,444,445,446,447,447,448,449,450,451,452,453,454,455,456,457,458,459,460,461,462,463,464,465,466,467,468,469,470,471,472,473,474,475,476,477,478,479,480,481,482,483,484,485,486,487,488,489,490,491,492,493,494,495,497,498,499,500,501,502,503,504,505,506,507,509,510,511,512,513,514,515,516,517,519,520,521,522,523,524,526,527,528,529,530,531,533,534,535,536,537,538,540,541,542,543,545,546,547,548,549
in „HSV RGB Led Dimmer, C Code & Video & Doku“ · Projekte & Code ·
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PDF
2091702_H_-_BK150FUE-1_Control_Box_Manual__1PH_EU_SMART_START_NXT_Non_UL.pdf
environment. Serial Interface 3 For module TST RFUHCom CAN-1 for communication module TTL level (Tx, Rx) Max. cable length: 10cm for internal wiring to module Serial Interface 4 For module TST RFUHCom RS485-1 for communication module Typical for communication between two doors (loading house/locking) TTL level (Tx, Rx, DDR) Max. cable length: 10cm for internal wiring to module Serial Interface 5 Suitable for operation of the module TST RFUxK CAN-0 TTL level (Tx, Rx) Extension PCB TST RFUxK Max. cable length: 10cm for internal
in „Steuerung Schnellauftor BK 150 FUE-H F519 Antrieb“ · Haus & Smart Home ·
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PDF
XLamp7090XR-E.pdf
Wavelength Range Codes Min Min. Max. Luminous Flux Color (lm) Order Code Group DWL Group DWL Group Flux (nm) (nm) (lm) J 23.5 XREBLU-L1-0000-00J01 Blue B3 465 B6 485 K 30.6 XREBLU-L1-0000-00K01 Dominant Wavelength Range Base Order Codes
in „LiPo Zelle Impulsbelastung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Uponor_IM_Smatrix_Base_PRO_MODBUS-RTU_EN_1090255_032018.pdf
channel 1 40014 Analogue Range: 5 - max temperature, 0x10 Write multiple default: 5 °C (41 °F). 0x06 Write Signed 16 bit integer. Room setpoint max temperature 40015 Analogue Range: min temperature - 35, channel 2 0x10 Write multiple default
in „Modbus Sniffer mit Linux“ · Mikrocontroller und Digitale Elektronik ·
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CH340DS2_E.PDF
directly. More detail about USB convert serial please consulting the first manual CH340DS1. UART/RS232/RS485/IrDA infrared SIR Computer USB CH340 or other convert chip USB host convert parallel printer to USB printer 2. Features ● Full speed USB device interface, conforms to USB Specification Version 2.0,
in „Chip aus USB-Parallel-Adapter“ · Mikrocontroller und Digitale Elektronik ·
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Polyswitch_Sicherung.pdf
0.04) C (AHS080 only) 18 AWG AGR:Radial-Leaded Dimensions (millimeters/inches) Part IH* (A) H *(A) V max. I max. R min. R 1ax. Ramax. A B C number R max. R max. (Vdc) (A) (Ω) (Ω) (Ω) (max.) (max.) (typ.) Fig. 1 a AGR400 4.0 3.0 16 100 0.0186 0.061 0.085 8.9 (0.35) 14.1 (0.56) 5.08 (0.2) 2 AGR500 5.0 4.3
in „Tipps für 24V DC Absicherung gesucht ?“ · Mikrocontroller und Digitale Elektronik ·