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T6963C.pdf
. RD L WR H CE L C / D H D0 to D7 Status word The T6963C status word format is as follows: MSB LSB STA7 STA6 STA5 STA4 STA3 STA2 STA1 STA0 D7 D6 D5 D4 D3 D2 D1 D0 0: Disable STA0 Check command execution capability 1: Enable 0: Disable STA1 Check data read / write capability 1: Enable 0: Disable STA2
in „altes Phytec MCB-51 Monitor/Basic Befehle?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Motorola_MC44353_MC44354_MC44355_1998.pdf
800 kHz C Bus Free Time Between Stop and Start Tbuf 200 – – ns C Setup Time for Start Conditions Tsu;sta 500 – – ns C Hold Time for Start Condition Thd;sta 500 – – ns C Data Setup Time Tsu;dat 0 – – ns C Data Hold Time T 0 – – ns C hd;dat Setup Time for Stop Condition T 500 – – ns C su;sto Hold time for
in „Pollin ist pleite :-(“ · Offtopic ·
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am79c961.pdf
015] D[07] WE Flash PRAB[015] PRDB[07] CS OE SD[015] BPCS 16Bit SROE System Data PCnetISA + Controller PRDB[2]/EEDO DO 24Bit System PRDB[1]/EEDI DI Address EEPROM SA[019] PRDB[0]/EESK SK VCC EECS CS ORG
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PDF
pm2521ocr.pdf
DOWN | (z) 7 ~Tes SK3 ! s 3 4 LOBATT 10n | i ° +I ASK | 2 ue ' | . : | ” SK4 | a DI919 | be HEF4051 sta388 : 811130 | ‘ Fig.36. Switch decoding | . , | | : , | 51 v153 52 . BAW62 : -R Y C153 ontrol outputs 52 ia Control of the reed relays used for range changing, function switching, ete. isachieved by
in „Pjilips PM2519“ · Markt ·
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PDF
pm2519ocr.pdf
of representation units 1 1 0 0 0 Acuracy £(0.1%ofreading+0.02%ofrange) Temperature coefficient 2 0.015%/9C Inputimpedance £10mVrange 1M#1% 1V, 10 V range T o m+ e1 % 100 V, 1 0 0 0V range 9,11 MSL 1% Offset current in input : < 2 0 pA s M A R 160 dB for ac. signals at 50 Hz + 0.1% 40 6B for ac. signals
in „Pjilips PM2519“ · Markt ·
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PDF
20240122_Waasner_Katalog.pdf
limb EI-KERNBLECHE / EI-CORE LAMINATIONS Bestell-Nr. Typ a b c d e f h i k 1 k 2 Order-No. Type 13.015 EI 54/ 72 54,0 63,0 54,0 18,0 36,00 9,0 3,5 45,00 4,50 58,50 13.020 EI 60/80 60,0 70,0 60,0 20,0 40,00 10,0 3,5 50,00 5,00 65,00 13.025 EI 66/88 66,0 77,0 66,0 22,0 44,00 11,0 4,5 55,00 5,50 71,50 13.035
in „Was ist aus dem Transduktor geworden?“ · Analoge Elektronik und Schaltungstechnik ·
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MS-17631_2.0.pdf
HP_L_ADC R366 R369 G P=2.3x2.3 / 4ohm=1.32W 4.7KR0402 4.7KR0402 6 2 APA2051QBI-TRG_TQFN28 ▯ S C53 C0.015u16X0402 AGND AGND ▯ AGND Bass Speaker Woofer SPEC=3.8ohm / normal 3W,Max 4w C R26 = 30K 27K RMS=3.04V R75 30KR0402 P=3.38x3.38 / 3,8ohm=3W AGND Cost Down F 24.9K RMS=2.81V R343 X_39KR0402 C352 X_C0.033u1600402
in „In Circuit Programmierer für 8-pin 150mil SOIC PM25LD512“ · Mikrocontroller und Digitale Elektronik ·
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PDF
isco_3700.pdf
able time intervals (time-pacing) or at equal flow- pling, resume sampling, display the operating sta- tus, and move the distributor arm to the next bottle. volume intervals using flow pulse inputs from an external flow meter (flow-pacing). You can set the flow interval from 1 to 9,999 flow pulses.
in „Reparatur Motorsteuerung, Probennehmer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8574.pdf
spike width on bus − − 100 ns BUF bus free time 4.7 − − s t START condition set-up time 4.7 − − s SU;STA HD;STA START condition hold time 4.0 − − s LOW SCL LOW time 4.7 − − s HIGH SCL HIGH time 4.0 − − s r SCL and SDA rise time − − 1.0 s f SCL and SDA fall time − − 0.3 s SU;DAT data set-up time 250 − −
in „[V] #VERKAUFT# Platine mit 8 Stück DLG7137, 5*7 Punktmatrix“ · Markt ·
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NM93C46.PDF
Valid Status ▯ s E ) P R O M NORMAL READ CYCLE (READ) CS CS SK 1 1 0 A5 A4 A1A0 DI ▯▯▯▯▯▯▯▯▯▯▯▯▯▯ StaOpcode Address BitBits(2) Bits(6) ▯▯▯▯▯▯▯▯▯▯▯▯▯▯ High - Z DO 0 D15 D1 D0 ▯▯▯ Dummy Bit ▯▯▯ 93C46: Address bits pattern -> User defined WRITE ENABLE CYCLE (WEN) CS CS SK 1 0 0 A5 A4 A1 A0 DI BitBits(2
in „EEPROM durch anders tauschen, was beachten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPN15.1E_LA.pdf
Pad SCKI T+ SD1 +12V PWM2-R1 3 PWM2-R3 3 X000 Item PWM2-G1 3 PWM2-G3 3 2 4 F011 F008 F012 F013 F014 F015 Function S012 S013 S014 S015 PWM2-B1 3 PWM2-B3 3 SD2 CounterClockwise 1 (XA02:IN, XA04:OUT) YES NO NO YES F009 F004 F007 F006 F002 AMBI-TEMP +3V3AL +3V3 GND Clockwise NO YES YES NO PWM2-R2 3 (XA02:OUT
in „Philips 6300 TV Bildfehler "fading"“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2243913.pdf
kHz mode — 400 pF loading 400 kHz mode — 400 pF 1.7 MHz mode — 400 pF 3.4 MHz mode — 100 pF 90 TSU:STA START condition 100 kHz mode 4700 — ns Only relevant for repeated START condition Setup time 400 kHz mode 600 — ns 1.7 MHz mode 160 — ns 3.4 MHz mode 160 — ns 91 THD:STA START condition 100 kHz mode
in „[V] 10St. Digitalpoti MCP4561-103E/MS 8MSOP orginalverpackt. (9€)“ · Markt ·
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PDF
6800_Instruction_Set.PDF
Flags 1 2 Set the Overflow Flag 12 00001100 014 0C CLC Flags 1 2 Clear the Carry Flag 13 00001101 015 0D SEC Flags 1 2 Set the Carry Flag 14 00001110 016 0E CLI Flags 1 2 Clear the Interrupt Flag 15 00001111 017 0F SEI Flags 1 2 Set the Interrupt Flag 16 00010000 020 10 SBA AB 1 2 Subtract B from A
in „Neues aus der KI“ · Offtopic ·
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Einfache CPU, einfacher Rechner, nur zum Lernen, Erfahrung?
Akku mit dem Inhalt 0201 00 der Speicherzelle 0100 0202 01 0203 8D STA-015A ; speichere den Akku-Inhalt 0204 5A in die Speicherzelle 015A 0205 01 0206 00 BRK ; BREAK. 0100 55 MANUELL : AD 0200 AD : GO dunkel- : RESET,
obigen Programmteil steht im JC-Buch: "LDA-0100 lade den Akku mit dem Inhalt der Speicherzelle 0100 STA-015A speichere den Akku-Inhalt in die Speicherzelle 015A" Mit BREAK geschlossen sollte es doch funktionieren? Liebe Grüße Günter K. (enk)
Mikrocontroller und Digitale Elektronik ·Günter K. · ·1435 Antworten
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Datei
log.txt
User\\AppData\\Local\\Arduino15\\packages\\esp32\\hardware\\esp32\\3.0.5\\libraries\\WiFi\\src\\WiFiSTA.cpp" -o "C:\\Windows\\Temp\\arduino\\sketches\\1C11064D691FC2C2BC70229604B6955B\\libraries\\WiFi\\WiFiSTA.cpp.o" "C:\\Users\\User\\AppData\\Local\\Arduino15\\packages\\esp32\\tools\\esp-x32\\2302/bin
in „ESP32 LittleFS Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MMC5633NJL.pdf
Leakage Current Ii 0.1VIOV <in9V IO -10 10 µA SCL Clock Frequency fSCL 0 400 kHz START Hold Time tHD;STA 0.6 µS START Setup Time tSU;STA 0.6 µS LOW period of SCL tLOW 1.3 µS HIGH period of SCL tHIGH 0.6 µS Data Hold Time tHD;DAT 0 0.9 µS Data Setup Time tSU;DAT 0.1 µS Rise Time tr From V ILV IH 0.3 µS
in „Sensor Array ansprechen mit I2C - Unterschiede zu Mega2560 und Seeed RP2040“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Specification_SIPLACE_F5_HM_eng.pdf
or another empty tape cutter changeover table can be placed on the right. The component feeders are sta- tionary during the placement proc- ess, therefore it is possible to refill Feeder Table Compressed Air components or splice tapes with- Centering Position Feeder Connection out stopping the machine
in „Siemens SIPLACE Bestückungsautomat F5HM - ideal wenn man selber bestücken möchte“ · Markt ·
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PDF
cm6206_2_3.pdf
Precision 10/18/06 16:15:29 +1 dx=-19.980kHz dy=+0.934 dB +1 dx=-19.980kHz dy=+0.939 dB +0.5 +0.5 -0.015 -0.01 -0.5 -0.5 -0.949 -0.949 -1.5 -1.5 d -2 d -2 B B r -2.5 r -2.5 A -3 A -3 -3.5 -3.5 -4 -4 -4.5 -4.5 -5 -5 -5.5 -5.5 -6 -6 20 50 100 200 500 1k 2k 5k 10k 20k998k 20 50 100 200 500 1k 2k 5k 10k 20k998k
in „PC Sound-Hardware: CD-Laufwerk“ · PC Hard- und Software ·
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PDF
RV-3032-C7_App-Manual-rev1.3.pdf
I C AC electrical parameters. I C AC Parameter Definitions: SDA tBUF tLOW t HD:DAT tSU:DAT SCL tHD:STA t HIGH tRISE tFALL P S tSU:STO SDA tSU:STA Sr P For the following Table, T = -40 to +85°C. A I C AC Electrical Parameters: VDD ≥ 1.4 V VDD ≥ 2.0 V SYMBOL PARAMETER MIN MAX MIN MAX UNIT SCL SCL input
in „ATtiny85 + Uhrenquarz mit 10 pF CL: Kondensatoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RXV667.pdf
O L act FPGA nCONF D19/CTS6/ 87 RTS6/SS6/ P12_3 FPGA_N_ 10kPU HDMI_PON I --- I L act FPGA nSTATUS STA P12_3 D18/RXD6/ 88 SCL6/STXD6/ P12_2 FPGA_ 10kPU HDMI_PON I --- I H act FPGA CONF DONE CDONE P12_2 71 RX-V667/HTR-6063/RX-A700 Related Power Supply / Pin Port Use Function Terminal OFF ON Detail of
in „Yamaha RX-V667 Reparatur und Bezugsquellen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
R32C-152_Users_Manual.pdf
0150h to 0153h) 84 CAN2 receive FIFO +340 to +343 (0154h to 0157h) 85 Reserved +344 to +347 (0158h to 015Bh) 86 Reserved +348 to +351 (015Ch to 015Fh) 87 E dataFlash +352 to +355 (0160h to 0163h) 88 28. “E2PROM Emulation Data Flash” Reserved +356 to +359 (0164h to 0167h) 89 Reserved +360 to +363 (0168h
in „Keine UART Programmierung bei R32C möglich“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stc32g-en.pdf
(HSSPI_CFG2)..................................... 515 21.1.3 High Speed SPI Status Register (HSSPI_STA)......................................................... 516 21.2 ExampleProcedures....................................................................................................... 517 21.2.1
in „STC32 -- 8051 auf Steroide“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M27C1001.PDF
except for VPP and 12V on A9 for Electronic Signature. E has been low and the addresses have been sta- Read Mode ble for at leastAVQV GLQV . Standby Mode The M27C1001 has two control functions, both of which must be logically active in order to obtain The M27C1001 has a standby mode which reduc- data
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252039.pdf
S Int Frac 04C Gs (013) 0 0 0 0 0 0 0 0 Int Frac 050 dGdx (014) S S S S S S S S Int Frac 054 dGdy (015) S S S S S S S S Int Frac 058 Bs (016) 0 0 0 0 0 0 0 0 Int Frac 05C dBdx (017) S S S S S S S S Int Frac 060 dBdy (018) S S S S S S S S Int Frac MB86277 MINT Graphics Controller 119 Specifications Rev
in „LCD Display / Controller eines Schweißgerätes prüfen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Advantest_R4131.pdf
. .-. .1 09 (5) 3 0 M H z C ry sta l O sc illa to r .. . .. ... .... ... . .... ... .. . .. . .... . - 1 1 9.3 YTO_CONT/IF Board . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .. . . . 9- 1 2
in „Advantest Spectrum Analyser R4131B Fehler im Netzteil“ · HF, Funk und Felder ·
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PDF
Datasheet__ICM-20948_.pdf
CONDITIONS MIN TYPICAL MAX UNITS NOTES I C TIMING I C FAST-MODE fSCLSCL Clock Frequency 400 kHz 1, 2 tHD.STA, (Repeated) START Condition Hold 0.6 µs 1, 2 Time tLOW , SCL Low Period 1.3 µs 1, 2 tHIGH, SCL High Period 0.6 µs 1, 2 tSU.STA, Repeated START Condition Setup 0.6 µs 1, 2 Time tHD.DAT, SDA Data Hold
in „20948 I2C <-> SPI?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LGT8F328P.pdf
RJMP USART_UDRE The USART data register is empty 0x014 RJMP USART_TXC The USART sends an interrupt 0x015 RJMP ADC ADC conversion complete interrupt 0x016 RJMP EE_RDY The EEPROM controller is ready to interrupt 0x017 RJMP ANA_COMP Comparator interrupt 0x018 RJMP TWI TWI controller interrupt 0x019 NOP Keep
in „Neue 8-Bit Tinys vorgestellt: 417/814/816/817“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BM83_Embedded_Mode_Reference_Circuit_PCB.pdf
must be placed close to the 0402 NCP15WF104F03 SOD-323 P7 PI 15pF SOD-323 P0 P4 15pF SOD-323 PD PI015pF battery in the user application for 01H1%P (Thermistor) 50V 50V 50V accurate measurements and to enable 0402 0402 0402 the thermal shutdown feature. VOL- VDD_IO Potentiometer (OPTIONAL) IP10SW8 PIW40
in „BM83SM1-00TA Blootoh Audio“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430g2553_MIXED_SIGNAL_MICROCONTROLLER.pdf
SMCLK, duty cycle = 50% ± 10% fSYSTEM MHz SCL SCL clock frequency 3 V 0 400 kHz fSCL≤ 100 kHz 4.0 HD,STA Hold time (repeated) START f > 100 kHz 3 V 0.6 µs SCL fSCL≤ 100 kHz 4.7 SU,STA Setup time for a repeated START 3 V µs fSCL> 100 kHz 0.6 HD,DAT Data hold time 3 V 0 ns t Data setup time 3 V 250 ns SU
in „Signalverzögerung im Minutenbereich“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Lang_CDDA.pdf
der 3 Mons, 1.1Interview 25. Nov. 1993,5A 105 4 van Tilburg, J.J.G.Ch. Interview 2. Dez. 1993,6A 008-015 I Ottens, L.F. Interview 12. Okt. 1993,2A 215 vgl. auch GuterlF."Cornpact Disc".IEEE Spectrum, 25(11), 1988, hier: 2Mons, J.J. Interview 25. Nov. 1993,5A 060 S.I04 3ebenda, 5A 082 S van Tilburg, I.I.G.Ch
in „Sample Frequenz 48 KHz vs. 44 KHz“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
22107B-1180063.pdf
kHz mode — 400 pF loading 400 kHz mode — 400 pF 1.7 MHz mode — 400 pF 3.4 MHz mode — 100 pF 90 TSU:STA START condition 100 kHz mode 4700 — ns Only relevant for repeated START condition Setup time 400 kHz mode 600 — ns 1.7 MHz mode 160 — ns 3.4 MHz mode 160 — ns 91 THD:STA START condition 100 kHz mode
in „[V] 24St SMD Digital I2C / 256 Steps 5K Dual Poti Microchip MCP4561- 502E/MS (MSOP8) (alle 15€)“ · Markt ·
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PDF
2243913.pdf
kHz mode — 400 pF loading 400 kHz mode — 400 pF 1.7 MHz mode — 400 pF 3.4 MHz mode — 100 pF 90 TSU:STA START condition 100 kHz mode 4700 — ns Only relevant for repeated START condition Setup time 400 kHz mode 600 — ns 1.7 MHz mode 160 — ns 3.4 MHz mode 160 — ns 91 THD:STA START condition 100 kHz mode
in „[V] 11St. SMD Dual Digital Poti - I2C Microchip MCP4561-103 10kOhm 256Steps Nonvolatile (8€)“ · Markt ·
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PDF
Betriebsanleitung_optoNCDT_1420pdf__1_.pdf
≤ ±0,1 % d.M. 2 Reproduzierbarkeit 0,5 µm 1 µm 2 µm 4 µm 8 µm 20 ... 40 µm Temperaturstabilität ±0,015 % d.M./K ±0,01 % d.M./K MBA 90 x 120 µm 100 x 140 µm 90 x 120 µm MBM 45 x 40 µm 120 x 130 µm 230 x 240 µm 750 x 1100 µm 750 x 1100 µm 750 x 1100 µm Lichtpunktdurch- messer ±10 % MBE 140 x 160 µm 390
in „Sensor mit RS422 interface und Konverter verbunden an Esp32 via TTL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Micro_turbo_expander_design_for_small_scale_ORC_Te.pdf
high efficiency two–phase expanders Trans/Super Super critical fluids High pressure; working fluid sta- critical bility Ejector Added evaporator, ejector Ejector efficiency 24 Lorenzo Talluri Fig. 2.9 ORC layout. a) basic, b) recuperative, c) multi pressure, d) flash, e) ejector 25 Micro turbo expander
in „Luftzerlegung/Luftverflüssigung auf dem Basteltisch machbar?“ · Offtopic ·
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Datei
R6581.txt
OPT ICAL *TRG *ESR *STB *CLS *RCL *ESE *IDN RTU TRT TRS TRP TRN TLS MSR MSP MRP MNS FTR TIN SUB ERR STA RAT MIP AVN SCN ARP HIP INI PLC MDL AVE SCD FPC ICL ARD ARC DAO ABO KDB CAL DFE ICALOHT ICALDCT ICALACT KDEVMD ICALOH KDBMMD ICALDC ICALAC CALZR CALZF CALOH KDBMD CALDC *_N^NuNV `N. *G"n N^NuNV f "n
in „Hilfe bei Disassembler 68000 Binary“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2243913.pdf
kHz mode — 400 pF loading 400 kHz mode — 400 pF 1.7 MHz mode — 400 pF 3.4 MHz mode — 100 pF 90 TSU:STA START condition 100 kHz mode 4700 — ns Only relevant for repeated START condition Setup time 400 kHz mode 600 — ns 1.7 MHz mode 160 — ns 3.4 MHz mode 160 — ns 91 THD:STA START condition 100 kHz mode
in „[V] 44St. SMD Digital I2C / 256 Steps 10K Poti Microchip MCP4561- 103E/MS (MSOP8 Gehäuse)“ · Markt ·
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PDF
PCA8574-rev02.pdf
SCL clock frequency 0 - 400 kHz BUF bus free time between a STOP and START 1.3 - - s condition HD;STA hold time (repeated) START condition 0.6 - - s SU;STA set-up time for a repeated START condition 0.6 - - s SU;STO set-up time for STOP condition 0.6 - - s t data hold time 0 - - ns HD;DAT VD;ACK data
in „NXP PCA8574 hat Phänomen mit 2 Adressen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcf8573.pdf
frequency − − 100 kHz t tolerable spike width on bus − − 100 ns SP BUF bus free time 4.7 − − s SU;STA START condition set-up time 4.7 − − s HD;STA START condition hold time 4.0 − − s LOW SCL LOW time 4.7 − − s t SCL HIGH time 4.0 − − s HIGH r SCL and SDA rise time − − 1.0 s f SCL and SDA fall time −
in „DS3231 vs PCF8573, hilfe gesucht !“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32E230xx_Datasheet_Rev1.5.pdf
order to bridge the undefined region of the falling edge of SCL. Figure 4-7. I2C bus timing diagram su(STA) SDA 70% 30% tbuff f(SDA) tr(SDA) h(SDA) tSCL(H) h(STA) su(SDA) SCL 70% 30% SCL(L) r(SCL) f(SCL) tsu(STO) 62 GD32E230xxDatasheet 4.18 SPI characteristics Table 4-33. Standard SPI characteristics (1)
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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Artikel
MP3
wird ein FM Tuner integriert sein. Chip VS1001k VS1002d VS1011b VS1003 VS1053b MAS 3507D MAS 3587F STA013 STA015 STA016 Hersteller VLSI VLSI VLSI VLSI VLSI Micronas Micronas ST Microelectronics ST Microelectronics ST Microelectronics Datasheet/Links ? Output mit Stereo Earphone driver mit Stereo Earphone
erlaubt der STA015 den direkten Anschluss eines DAC durch ein serielles PCM-Interface. Die zu dekodierenden Daten erhält er via SPI und die Steuersignale via I2C. Falls er Daten komprimiert, stellt er diese an einem
Artikel ·
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PDF
1809271221_Texas-Instruments-DAC5571IDBVR_C24061.pdf
MHz t Bus Free Time Between a STOP Standard mode 4.7 µs BUF and START Condition Fast mode 1.3 µs tHD;STA Hold Time (Repeated) START Standard mode 4.0 µs Condition Fast mode 600 ns High-speed mode 160 ns LOW LOW Period of the SCL Clock Standard mode 4.7 µs Fast mode 1.3 µs High-speed mode, CB- 100 pF max
in „Hilfe bei der Berechnung (Voltage Divider)“ · Analoge Elektronik und Schaltungstechnik ·
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Mikrofon_4165.pdf
or syn- posited on the backplate. These mi- the appropriate choice. thetic ruby to give dimensional sta- crophones are also categorized as 0 V bility. The diaphragm consists mainly polarization voltage – meaning the of nickel and the backplate and hous- polarization feed to the preamplifier ing are made
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PDF
c06172053.pdf
models with model numbers 15m-bq0xx and 15-bq0xx: 512-GB, 2280 M.2, PCIe3×4, SS, NVMe with TLC 847110-015 256-GB, 2280 PCIe, SS, NVMe L01300-002 128-GB, 2280 PCIe, SS, NVMe (for use only in dual-storage configurations) 827560-038 Solid-statedrivegasket (not illustrated) 936448-001 (14) Memorymodules (2,
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Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?
Hallo, diese Wechselrichter verfügen über einen RF 2,4 GhZ Nordic. Hat jemand eine Idee wie dieses Protokoll aufgebaut ist? Hat jemand das schon einmal "angezapft" um ein eigenes Monitoring ohne deren Cloudzwang zu realsieren? Es gibt offensichtlich einen "Adapter", der das "2,4 GhZ Signal umsetzt und dann via WLAN an deren Cloudsysteme versendet. Google, Hersteller, etc. schweigen sich leider aus. Danke für sachdienliche Hinweise
Mikrocontroller und Digitale Elektronik ·sorbit · ·3101 Antworten
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PDF
LGT8FX8P_databook_v1.0.4.pdf
RJMP USART_RXC USART 接收完成中断 0x013 RJMP USART_UDRE USART 数据寄存器空中断 0x014 RJMP USART_TXC USART 发送完成中断 0x015 RJMP ADC ADC 转换完成中断 0x016 RJMP EE_RDY EEPROM 控制器准备好中断 0x017 RJMP ANA_COMP 比较器中断 0x018 RJMP TWI TWI 控制器中断 0x019 NOP 保留地址 0x01A NOP 保留地址 0x01B RJMP PCI3 引脚电平变化中断 3 ; 0x01C (RESET :) LDI r16, high(RAMEND
in „Spot Welder Firmware Update fehlerhaft“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1_AMD_BKDG_Family__15h_Mod_00h-0Fh_BKDG.pdf
0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 0000 01 0100 0001 0101 01B8 015C 012E 01C6 0163 01FD 0189 019D B801 5C01 2E01 C601 6301 FD01 8901 9D01 02 0200 0002 0202 0201 02B8 025C 02FD 02C6 028B 0263 024B 0102 B802 5C02 FD02 C602 8B02 6302 4B02 03 0300 0003 0303 03B9 03E4 0372
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AVR_ATtiny_24_44_84.pdf
Registers 0x0000 - 0x001F 64 I/O Registers 0x0020 - 0x005F 0x0060 Internal SRAM (128/256/512 x 8) 0x0DF/0x015F/0x025F 5.2.1 Data Memory Access Times This section describes the general access timing concepts for internal memory access. The internal data SRAM access is performed in two clk cycles as illustrated
in „AVR Programm brennen ohne Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I-BOTT.PDF
a DS1994 detects an alarm condition, it will automati- callysetthecorrespondingalarmflagintheDeviceSta- tus register. The master does not get this information E.3.c. Interrupt Signaling Spontaneous interrupts need to be armed by a Reset unless it reads the alarm flags. Doing this generates Pulse after
in „Design eines hotplugfähigen I2C-Bussystems und Auswahl des Steckverbinders“ · Mikrocontroller und Digitale Elektronik ·
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ABOV-Semicon-MC80F0604_C142970.pdf
Y-register data. Also index can be used with Index register X,Y. ADC, AND, CMP, EOR, LDA, OR, SBC, STA JMP, CALL Example; G=0, Y=10 Example; G=0 H 1725 ADC [25H]+Y 3F35 JMP [35H] 35H 0A 25H 05 36H E3 26H E0 ~ ~ 2 ~ ~ 2 1 0E30AH NEXT 1 0E005H + Y(10) address 0E30AH 0E015H data = 0E015H ~ ~ ~ ~ 0FA00H
in „Steuerung Infrorotkabine / Openhab“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BK4802N_Datasheet_V1.1_EN.pdf
kHz SCLK Low Time LOW 1.3 — — μs SCLK High Time t 0.6 μs HIGH SCLK Input to SDIO ↓ Setup(START) SU:STA 0.6 — — μs SCLK Input to SDIO ↓ Hold(START) HD:STA 0.6 — — μs SDIO Input to SCLK ↑ Setup SU:DAT 100 — — ns SDIO Input to SCLK ↓ Hold HD:DAT — — 900 ns SCLK Input to SDIO ↑ Setup(STOP) t 0.6 — — μs SU
in „Tranceiver Chip RDA1846 Erfahrungen Selbstbau“ · HF, Funk und Felder ·