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PDF
AD7792_7793.pdf
dB typ, 60 ± 1 Hz, FS[3:0] = 1000 External Clock @ 50 Hz, 60 Hz 80 dB min 90 dB typ, 50 ± 1 Hz, 60 ± 1 Hz, FS[3:0] = 1010 @ 50 Hz 94 dB min 100 dB typ, 50 ± 1 Hz, FS[3:0] = 1001 @ 60 Hz 90 dB min 100 dB typ, 60 ± 1 Hz, FS
in „AD7793 Vref von Rref?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ffconf.h
FFCONFIG 0x007E /*---------------------------------------------------------------------------/ / FatFs - FAT file system module configuration file R0.08a (C)ChaN, 2010 /----------------------------------------------------------------------------/ / / CAUTION! Do not forget to make clean the project after
in „elm-chan FatFS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PDFresult.pdf
(Ext -V) - 50 80 HM5 μA VDD =5V; In dual -clock slow operation and Fm is stopped Stop Current ISM1 Stop mode No load (Ext -V) - 1 2 μA Fm and Fs are stopped Input Low Voltage VIL - VSS - 0.3 VDD V Input High Voltage VIH - 0.7
in „Pocket Comm One µC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ffconf.h
is not needed, set _FS_NORTC = 1 to disable / the timestamp function. All objects modified by FatFs will have a fixed timestamp / defined by _NORTC_MON, _NORTC_MDAY and _NORTC_YEAR in local time. / To enable timestamp function
in „SD Karte mit FatFs über SPI an Atmega, wie kann man die Schreibgeschwindigkeit maximieren?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
GccApplication2.c
WHO_AM_I 0x0F #define CTRL_REG1_G 0x10 #define ODR_G2 7 #define ODR_G1 6 #define ODR_G0 5 #define FS_G1 4 #define FS_G0 3 #define BW_G1 1 #define BW_G0 0 #define CTRL_REG6_XL 0x20 #define ODR_XL2 7 #define ODR_XL1 6 #define ODR_XL0 5 #define FS1_XL 4 #define FS0_XL 3 #define BW_SCAL_ODR 2 #define BW_XL1
in „I2C/TWI kommunikation. Slave antwortet nicht.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0900766b81250df5_1_.pdf
at 37 kPa) 42.0 ± 5.5 mV (at 50 kPa) -43.0 ±5.5 mV (at -50 kPa) Non-Linearity (See note 2.) 0 ± 0.8%FS (0 to 37 kPa) 0.8 ± 0.5%FS (at 50 kPa) 0.2 ± 0.5%FS (at -50 kPa) Hysteresis (See note 2.) 0 ± 0.5%FS (0 to 37 kPa) 0 ± 0.2%FS (-50 to 50 kPa) Temperature influence of Span 0.5 ± 1.0%FS (at 0°C) 1.0 ± 2.0%FS (at 0°C) 0.8 ± 2.0%FS (at 0°C) 0.3 ± 1.0%FS (at 50°C) -0.1 ± 2.0%FS (at 50°C) 0.1 ± 2.0%FS (at 50°C) - - - 1.0 ± 3.0%FS (at 85°C) 1.2 ± 3.0%FS (at 85°C) Temperature influence of Offset 0 ± 3.0%FS (0
in „Drucksensor für Druckunterschied“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ffconf.h
needed, set _FS_NORTC to 1 to disable / the timestamp feature. All objects modified by FatFs will have a fixed timestamp / defined by _NORTC_MON, _NORTC_MDAY and _NORTC_YEAR. / When timestamp feature is enabled (_FS_NORTC
in „Problem mit VS1053“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7190.pdf
rate equals OutputDataRate = (fmod/64)/(N×FS) where: FS is the decimal equivalent of the code in Bit FS0 to Bit FS9 and is in the range 1 to 1023. fmod is the modulator frequency, which is equal toMCLK/16.With a nominal MCLK of 4.92 MHz, this results
in „AD7190 Clock“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
t6963c.h
glcd_wr_PIN); DDR(glcd_cd_PORT) |= _BV(glcd_cd_PIN); DDR(glcd_rst_PORT) |= _BV(glcd_rst_PIN); DDR(glcd_fs_PORT) |= _BV(glcd_fs_PIN); // port direction pin FS if (glcd_FONT_SELECT) // = narrow (small) font glcd_fs_high() // FS HIGH else glcd_fs_low(); // FS LOW glcd_ce_high(); glcd_rd_high(); glcd_wr_high
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Datei
t6963c.h
glcd_wr_PIN); DDR(glcd_cd_PORT) |= _BV(glcd_cd_PIN); DDR(glcd_rst_PORT) |= _BV(glcd_rst_PIN); DDR(glcd_fs_PORT) |= _BV(glcd_fs_PIN); // port direction pin FS if (glcd_FONT_SELECT) // = narrow (small) font glcd_fs_high() // FS HIGH else glcd_fs_low(); // FS LOW glcd_ce_high(); glcd_rd_high(); glcd_wr_high
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Datei
SD_Testen.ino
()){ Serial.println("Not a directory"); return; } File file = root.openNextFile(); while(file){ if(file.isDirectory()){ Serial.print(" DIR : "); Serial.println(file.name()); if(levels){ listDir(fs, file.name(), levels -1); } }
in „GPS Logger mit Atmega328 oder ESP8266“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PMBFJ620_1.pdf
transfer capacitanceVDS = 0 V; GS = −10 V; f = 1 MHz - 1.3 2.5 pF g common source input V = 10 V; I = 10 mA; f = 100 MHz - 200 - S is DS D conductance VDS = 10 V;DI = 10 mA; f = 450 MHz - 3 - mS g fs common source transfer VDS = 10 V;DI = 10 mA; f = 100 MHz - 13 - mS conductance VDS = 10 V;DI = 10 mA; f =
in „Doppelfet für Vorstufe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADS8327IPW.pdf
CS is placed before the end of a conversion, the previous conversion result is read. If FS/CS is placed after the end of a conversion, the current conversion result is read. The conversion result is 16-bit data in straight binary format
in „Kennt jemand ADS8327? Ist er wirklich SPI-kompatibel?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
systemctl-output.txt
File System home.mount loaded active mounted /home opt.mount loaded active mounted /opt run-user-1000-gvfs.mount loaded active mounted /run/user/1000/gvfs run-user-1000.mount loaded active mounted /run/user/1000 sys-fs-fuse-connections.mount loaded active mounted FUSE Control File System sys-kernel-config.mount
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PDF
CS42L51_F3.pdf
by Fs. HPF param- eters are for Fs = 48 kHz. 14 DS679F3 CS42L51 ANALOG OUTPUT CHARACTERISTICS (COMMERCIAL - CNZ) (Test conditions (unless otherwise specified): Input test signal is a full-scale 997 Hz sine
in „STM32H7B3I-DK - Soundausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DE-61313_12__TB_deu_comXline-3516__WEB_.pdf
1 AUS LED 2 grün LED 1 LED 2 P K "Betrieb“ Si1 FS10 2 ST15 ST1 EIN 3 S LED-Ausgänge „Störung“ und „Betrieb“ Parametrierbarer Ausgang „FS10“ 72 Anschlüsse und Schnittstellen 12.5 Serielle com2BUS-Schnittstelle (RS485) ST19 max. Kabellänge 1000 m 1 Die
in „Niveausteuerung mit Relais“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS60VGPV.pdf
Kom bi-Ableiter Typ 1+2 für Iim p DC-Anwendungen und Photovoltaik 12,5kA DS60VGPV-500, DS60VGPV-1000 Maßbild und Prinzipschaltbild te aran rsGu 0Yea it DS60VGPV-... 1 ua 70 72 P ium Q e m + - 90 File: E326289 9 + - Ft MI Ft MI Ft MI t° t° t° DS60VGPV-1000 GSG GSG Der DS60VGPV
in „USB Steckdose, Klingeltrafo Gleichstrom, Zukunft“ · Haus & Smart Home ·
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PDF
TheorySpeakerInVentedBox.pdf
EtO EJLut 6DAOA v=HuAO =NA IKNA A=OEHy IA=OuNA@ tD=J tDA BuJ@=IAJt=H KJAO =>KvA ▯ F s 4AOKJ=J?A BNAMuAJ?y KB tDA @NEvAN Fs= p 1 2▯▯ C ms▯Mms ▯ Q es-HA?tNE?=H Q KB tDA @NEvAN =t F s Qes 2▯▯Fs▯M2s▯Re (Bl) ▯ Q ms MA?D=JE?=H Q KB tDA @NEvAN =t F s Qms = 2▯▯Fs▯Mms Rms & ▯ Q ts6Kt=H Q KB tDA @NEvAN =t Fs Qms▯Qes Q ts Qms+Q es ▯ V as-MuEv=HAJt +KILHE=J?A 8KHuIA E A tDA vKHuIA KB =EN wDE?D wDAJ =?tA@ uLKJ >y = LEOtKJ KB =NA= Sd D=O tDA O=IA ?KILHE=J?A =O tDA
in „Lautsprecher Simulation LTSpice unklar“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
t6963c.h
glcd_rst_PORT |= _BV(glcd_rst_PIN); #define glcd_rst_low() glcd_rst_PORT &= ~_BV(glcd_rst_PIN); #define glcd_fs_high() glcd_fs_PORT |= _BV(glcd_fs_PIN); #define glcd_fs_low() glcd_fs_PORT &= ~_BV(glcd_fs_PIN); #define glcd_SET_DATADIR_OUT() (glcd_DATADIR = 0xFF) #define glcd_SET_DATADIR_IN() (glcd_DATADIR = 0x00
in „T6963C an Mega16 - Einige Pixel verirren sich ^^“ · Mikrocontroller und Digitale Elektronik ·
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PDF
samsung_242mp_chassis_po24fs.pdf
PO24FS 1 SA 5 ASSY PCB-POWER BN96-01849A PO24FS 1 SA 6 ASSY SHIELD-P COVER BN96-01980A SECC TO.8 1 SNA 7 ASSY COVER-REAR BN96-01721A ABS HB PO24FS 1 SA 7-1 COVER-REAR BN63-01660A ABS HB GR70 + SPRAY 1 SNA 7
in „Defekt an Samsung 242MP TV/Monitor“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ax81-write.c
; unsigned char buffer2[50000]; unsigned char head1[100]; unsigned char head2[100]; char filename[1000]; FILE* imagefile; FILE* pfile; long offset; long filesize; int size_low; int size_high; int fs_type; int rptr,wptr,reps,h2len,ftype,blen,page,poffset; unsigned char rbyte; buffer = (char*)malloc(1000
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Datei
ax81-write.c
; unsigned char buffer2[50000]; unsigned char head1[100]; unsigned char head2[100]; char filename[1000]; FILE* imagefile; FILE* pfile; long offset; long filesize; int size_low; int size_high; int fs_type; int rptr,wptr,reps,h2len,ftype,blen,page,poffset; unsigned char rbyte; buffer = (char*)malloc(1000
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PDF
tmp006.pdf
different input signals. Figure 6 illustrates code transitions versus input voltage. Full-scale is a 5.12 mV signal. The LSB size is 156.25 nV. (1) Table 5. Input Signal versus Ideal Output Code SENSOR SIGNAL OUTPUT CODE FS (215 – 1)/25 (5.12 mV) 7FFFh +FS/2 15(156.25 nV) 0001h 0 0 –FS/2 15(–156.25
in „Temperaturfühler TMP006 von T, wie anschließen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TMP006_IR_temperatur_I2C__sbos518.pdf
different input signals. Figure 6 illustrates code transitions versus input voltage. Full-scale is a 5.12 mV signal. The LSB size is 156.25 nV. (1) Table 5. Input Signal versus Ideal Output Code SENSOR SIGNAL OUTPUT CODE FS (215 – 1)/25 (5.12 mV) 7FFFh +FS/2 15(156.25 nV) 0001h 0 0 –FS/2 15(–156.25
in „Temperaturfühler TMP006 von T, wie anschließen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MaxComm_Protokollbeschreibung_DE.pdf
Spannung_1 Volt 16 Bit 0 0.001 0 65.5350 Spannung_2 Volt 16 Bit 0 0.1 0 6553.5000 Strom_positiv_1 A 16 Bit 0 0.0001 0 6.5535 Strom_positiv_2 A 16 Bit 0 0.01 0 655.3500 Strom_gerichtet_1 A 16 Bit 32767 0.0001 -3.2767 3.2768 Leistung W 32 Bit 0 0.5 0 1073741823.0000 Energie_1 kWh 32 Bit 0 0.1 0 214748364.7000
in „Projekt Solarmax RS485 auslesen, mit Modscan 32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BF256_ON.pdf
C C R A T0.1 1 E T 1 1 N P m D E I –gis m A ( , o W m gi ) R h 0.01 0.1 F0.1 0.1 s s ) 10 100 1000 g 10 100 1000 f, FREQUENCY (MHz) f, FREQUENCY (MHz) Figure 4. Input Admittance versus Frequency Figure 5. Forward
in „BF256, Pinbelegung unterschiedlich“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HS_Systems_Part_2_for_Print_A.pdf
Signal +5V Mini-Circuits +3.5V +/– 0.8V AD9446 ADT4-1WT 24.9Ω (BUFFERED) 2MHz - 775MHz +8.3dBm FS ±0.82V 1000Ω 2kΩ || 3pF 50Ω 54.9Ω V 3pF = +3.5V 0.1µF 1:2 TURNS 1000Ω RATIO 24.9Ω 1:4 IMPEDANCE RATIO +3.5V –/+ 0.8V This figure shows a typical baseband transformer driver used as a single-ended to
in „ADCs: Digitale Masse und Oszillator an Analogmasse?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
esp8266_webserver.c
WiFiClient.h> #include <ESP8266WiFiMulti.h> #include <ESP8266mDNS.h> #include <ESP8266WebServer.h> #include <FS.h> // Include the SPIFFS library ESP8266WiFiMulti wifiMulti; // Create an instance of the ESP8266WiFiMulti class, called 'wifiMulti' ESP8266WebServer server(80); // Create a webserver object that listens for HTTP request on port 80 File fsUploadFile; // a File object to temporarily store the received file String getContentType(String filename); // convert the file extension to the MIME type bool handleFileRead(String path); // send the
in „ESP8266 - SPIFFS streamFile will nicht richtig auf Android aber auf PC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IMOR100E-01E_010.pdf
±100.0V ±(1 % of FS+1 mV) 200 V FS(20 V/div) ±200.0V ±(1 % of FS+1 mV) 500 V FS(50 V/div) ±500.0V ±(1 % of FS+1 mV) 1000 V FS(100 V/div) ±500V ±(1 % of FS+1 mV) Zero position Variable within measurement range, with NULLfunction
in „Yokogawa OR100E/OR122 wofür?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
Goertzel-Filter.pdf
Signallänge tE≔P⋅T 0 tE Schrittweite ∆t≔ ―M Zeit t≔0,∆t‥t E Testsignal f t ≔A⋅sin ω⎝⋅t0φ 0⎠ Abtastung Anzahl der zu erfassenden Perioden n≔16 T Bedingung für "Antileakage" N An⋅ ― 0 N A48 TS Länge des Datenvektors N≔N A fS Filterbandbreite B≔ ― B=34.875 N Nur nichtkommerzielle
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PDF
MB1075.pdf
STM32F429I-DISCO ST-LINK/V2 (SWD only) NumberMB1075 RevB.1(PCB.SCH) Date8/13/2013 Shee2 of 7 1 2 3 4 1 2 3 4 A A 3V P2 62073 P1 3V 02 P6 P2 R686 LD6D6 R7171 U8U8 47K P2 Red OTG_FS_OverCurrent OTG_FS_PowerSwitchOn P010K P I U 8 GND FAULT P I U 8 0 3 PIR690PIR6902 OTG_FS_OC0O POOTG_FS_OC OTG_FS_PSO R72R7 0 5V P
in „.net auf STM32F429ZI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ads830.pdf
349 –40°C to +85°C ADS830E ADS830E Rails " " " " " ADS830E/1K Tape and Reel NOTE: (1) Models with a slash (/) are available only in Tape and Reel in the quantities indicated (e.g., /1K indicates 1000 devices per reel). Ordering 1000 pieces of “ADS830E/1K” will get a single 1000-piece Tape and Reel.
in „USB Speicher-Oszilloskop (Anfängerhilfe)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
usblc6-4sc6.pdf
ProtectingDOWNSTREAM TRANSCEIVER USB Bus SwitchTRANSCEIVER connector SW 2 SW 1 VBUS VBUS VBUS RX LS/FS RX LS/FS R X HS RX HS+ RX LS/FS - D+ RX LS/FS - RX HS - RX HS - TX HS - D- TX HS - GND GND RS USBLC6-2SC6 GND R S TX LS/FS TX LS/FS RS R S TX LS/FS - TX LS/FS - R PD RPD DEVICE- + 3.3V UPSTREAM RPU TRANSCEIVER USB connector SW 2 SW 1 VBUS VBUS RX LS/FS RX LS/FS T X H+ TX HS+ RX LS/FS - D+ RX LS/FS - RX HS - RX HS - TX HS - D- TX HS - GND GND RS USBLC6-2P6 GND R S TX LS/FS USBLC6-4SC6 TX LS/FS RS R S TX LS/FS - TX LS/FS - R PD RPD Mode SW 1 SW 2 Low
in „Instabile USB Verbindung mit USBLC6-4SC6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mpy100.pdf
Z1) signal bandwidth to about 50kHz. VO= (X – X ) + Y1 1 2 V Demonimator X1 DIVISION ±0.2V to +10V, FS Z1 X2 VO= ±10V, FS Figure 8 shows the basic connection for two-quadrant MPY100 Out division. This configuration is a multiplier-inverted analog Optional Summing Y1 divider, i.e., a multiplier connected
in „MPY100AG - warum so teuer?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
goertzel.asm
gemessen werden um sie anschliesend ausgeben zu koennen auf dem PORTD ; ; Berechnung der Faktoren N,a,k ; Den Faktor N der die Bandbreite des Goertzel Filter bestimmt wird folgendermassen ; berechnet ; N = FS/B ; FS = Abtastfrequenz ; B = Bandbreite ; N = 1000 / 2.3Hz = 435 ; ; Der Faktor k berechnet sich folgender massen ; k = (Fk * N) / FS ; Fk = die zu detektierende Frequenz ; N = siehe oben ; FS = siehe oben ; k = 67 * 435 / 1000 = 29.145 ; ; Der Faktor a berechnet sich folgender massen ; a = 2 * cos ((k*2*Pi)/N) ; a = 1.8253 ; ; da
in „CTCSS decoder / encoder“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tb_I2S_rx.vhd
Test (UUT) uut: i2s_tx PORT MAP ( clk => clk, reset => reset, l_data => l_data, r_data => r_data, fs_sel => fs_sel, sclk => sclk, mclk => mclk, l_txd => l_txd, r_txd => r_txd, sdin => sdin, lrclk => lrclk ); -- Clock process definitions clk_process :process begin clk <= '0'; wait for clk_period/2; clk
in „Genesys 2 (Xilinx Kintex 7): Audio-Codec Implementierung und Filteranbindung“ · FPGA, VHDL & Co. ·
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PDF
ads8331.pdf
end of the third conversion clock (CCLK) after EOC if Auto-Trigger mode is used. The falling edge of FS/CS should not be placed at the precise moment at the end of a conversion (by default when EOC goes high). Otherwise, the data could be corrupt. If FS/CS is placed before the end of a conversion, the
in „Versorgungsspannung ADC“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
t6963c.h
WR | GPB0 -->> Steuerport ist links am MCP23S17 an Pins 1, ... 7 RD | GPB1 CD | GPB2 Reset | GPB3 FS | GPB4 GPB5 kommt nicht vor, ist Enable für WG12864 Enable | GPB6 #define LMC76S026A_WR (1 << 0) //low für Schreiben #define LMC76S026A_RD (1 << 1) //low für Lesen #define LMC76S026A_CD (1 << 2) //Data / Instruction #define LMC76S026A_RES (1 << 3) //RESET; low-aktiv, schaltet Display aus, Startzeile = 0 und Z = 0. Beim start low halten, > 1µs. #define LMC76S026A_FS (1 << 4) //Font select //Enable des anderen displays Pin5 #define
in „GLCD mit T6963-Controller und 8kRAM ansteuern klappt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZN427.pdf
(FS -0.5LSB) to A and adjust off-set until the 8 bit IN (LSB)outputjustflickersbetween0and1withallotherbits at 0. Bipolar setting up points Input range, ±FS -(FS -0.5LSB) +(FS -1.5LSB) +5V -4.9805V +4.9414V 1LSB =2FS 265 +10V -9.9609V +9.8828V Bipolar logic coding Analogue input (A ) Output code IN (Nominal code centre value) (offset binary) +(FS - 1LSB) 11111111 +(FS - 2LSB) 11111110 +0.5FS 11000000 +1LSB 10000001
in „A/D Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
zn427E.pdf
(FS -0.5LSB) to A and adjust off-set until the 8 bit IN (LSB)outputjustflickersbetween0and1withallotherbits at 0. Bipolar setting up points Input range, ±FS -(FS -0.5LSB) +(FS -1.5LSB) +5V -4.9805V +4.9414V 1LSB =2FS 265 +10V -9.9609V +9.8828V Bipolar logic coding Analogue input (A ) Output code IN (Nominal code centre value) (offset binary) +(FS - 1LSB) 11111111 +(FS - 2LSB) 11111110 +0.5FS 11000000 +1LSB 10000001
in „Austauschtyp gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLV5610IDW_12-Bit__seriell__SPI__TMS320.pdf
electrostatic damage to the MOS gates. FUNCTIONAL BLOCK DIAGRAM REF 12/10/8 12/10/8 12/10/8 X2 OUTA DAC A DAC A Holding Latch SCLK Latch DIN DOUT Serial 12 Interface FS 8 OUT MODE DAC B, C, D, E, F, G and H B, C, D, PRE Same as DAC A E, F, G and H LDAC Terminal Functions TERMINAL I/O DESCRIPTION NAME NO.
in „Hilfe zu DAC über SPI“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Info-Images.txt
00000000 00000000 00000000 00000000 00000000 00000000 00000000 00000000 00000044 00000000 00000003 1000d050 0000932f 7fd52d32 7fd52c54 00000006 00000006 00000003 2ad9a770 8006a580 004929fc 10014118 7ff0ac80 81010100 00000000 1000aa30 00000000 00000000 00000fa0 00000020 2aabf000 0000932f 1000d050 00000003 2aabdd40 2aafdcb8 00000000 00000001 00000000 2aab41a0 000007cd 0043cf70 00000003 1000d050 0000932f 7fd52d32 7fd52c54 00000006 00000006 00000003 00000246 2acec13c 00000003 00000000 2ada12e0 7fd52ac8 2ad9a770 0043cfa8 00008413 00000151 000001d1 2acec37c
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sca830-d07_inclinometer_datasheet_82_823_00_d.pdf
Characteristics Vdd=3.3 V and ambient temperature unless otherwise specified. Parameter Condition Min Typ A) Max Units Analog and digital Vdd 3.0 3.6 V Current consumption Active mode 5 6.3 mA Power down mode 0.1 mA Measurement range Measurement axis (Y) -1 1 g -90 +90 ° Operating temperaB)re -40 125 °C Total
in „Neigungswinkelinkelmessung beweglicher Teile“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ads830.pdf
349 –40°C to +85°C ADS830E ADS830E Rails " " " " " ADS830E/1K Tape and Reel NOTE: (1) Models with a slash (/) are available only in Tape and Reel in the quantities indicated (e.g., /1K indicates 1000 devices per reel). Ordering 1000 pieces of “ADS830E/1K” will get a single 1000-piece Tape and Reel.
in „ads830 ad wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ads831.pdf
349 –40°C to +85°C ADS831E ADS831E Rails " " " " " ADS831E/1K Tape and Reel NOTE: (1) Models with a slash (/) are available only in Tape and Reel in the quantities indicated (e.g., /1K indicates 1000 devices per reel). Ordering 1000 pieces of “ADS831E/1K” will get a single 1000-piece Tape and Reel.
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PDF
USBLC6-2.pdf
ProtectingDOWNSTREAM TRANSCEIVER USB Bus Switch TRANSCEIVER connector SW 2 SW 1 V V BUS V BUS R X LS/FS BUS RX LS/FS R X HS+ RX HS+ R TX HS+ D+ RX HS+ XRLS/FS - RX LS/FS - TX HS - D- TX HS - GND GND RS GND R S TX LS/FS TX LS/FS R TX LS/FS - S USBLC6-2SC6 R S TX LS/FS - R PD R PD DEVICE- + 3.3V UPSTREAM R PU TRANSCEIVER USB SW 2 SW 1 connector V BUS R X LS/FS VBUS RX LS/FS R X HS+ RX HS+ TX HS+ D+ TX HS+ RX LS/FS - RX LS/FS - RX HS - RX HS - TX HS - D- TX HS - GND RS GND R S GND TX LS/FS USBLC6-4SC6 TX LS/FS RS USBLC6-2P6 R S TX LS/FS - TX LS/FS - R PD R
in „Auswahl einer TVS Diode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
USBLC6-2.pdf
ProtectingDOWNSTREAM TRANSCEIVER USB Bus Switch TRANSCEIVER connector SW 2 SW 1 V V BUS V BUS R X LS/FS BUS RX LS/FS R X HS+ RX HS+ R TX HS+ D+ RX HS+ XRLS/FS - RX LS/FS - TX HS - D- TX HS - GND GND RS GND R S TX LS/FS TX LS/FS R TX LS/FS - S USBLC6-2SC6 R S TX LS/FS - R PD R PD DEVICE- + 3.3V UPSTREAM R PU TRANSCEIVER USB SW 2 SW 1 connector V BUS R X LS/FS VBUS RX LS/FS R X HS+ RX HS+ TX HS+ D+ TX HS+ RX LS/FS - RX LS/FS - RX HS - RX HS - TX HS - D- TX HS - GND RS GND R S GND TX LS/FS USBLC6-4SC6 TX LS/FS RS USBLC6-2P6 R S TX LS/FS - TX LS/FS - R PD R
in „TVS - Dioden Schutzschaltung Funktion erklären ?“ · Mikrocontroller und Digitale Elektronik ·
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USBLC6-2.pdf
ProtectingDOWNSTREAM TRANSCEIVER USB Bus Switch TRANSCEIVER connector SW 2 SW 1 V V BUS V BUS R X LS/FS BUS RX LS/FS R X HS+ RX HS+ R TX HS+ D+ RX HS+ XRLS/FS - RX LS/FS - TX HS - D- TX HS - GND GND RS GND R S TX LS/FS TX LS/FS R TX LS/FS - S USBLC6-2SC6 R S TX LS/FS - R PD R PD DEVICE- + 3.3V UPSTREAM R PU TRANSCEIVER USB SW 2 SW 1 connector V BUS R X LS/FS VBUS RX LS/FS R X HS+ RX HS+ TX HS+ D+ TX HS+ RX LS/FS - RX LS/FS - RX HS - RX HS - TX HS - D- TX HS - GND RS GND R S GND TX LS/FS USBLC6-4SC6 TX LS/FS RS USBLC6-2P6 R S TX LS/FS - TX LS/FS - R PD R
in „Schaltplan-Kritik: Atmega + RS485 + OneWire“ · Mikrocontroller und Digitale Elektronik ·
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edison-module_HG_331189.pdf
4 TCO_TXD Tco of TXD with respect to I2S CLK active edge at the SoC. – 10 ns I,I,I 1, 2, 3, 4 TCO-FS Tco of FS with respect to CLK at the SoC. – 10 ns I,I,I 1, 2, 3, 4 NOTE: 1. Active edge refers to the mode selected. 2 2. For I S mode: a. I2S_TXD - SoC launches data after falling clock edge. b. I2S_RXD
in „Intel Edison Breakout Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
usblc6-2.pdf
UPSTREAM R PU DOWNSTREAM TRANSCEIVER Bus SwitchTRANSCEIVER USB SW 2 SW 1 connector VBUS VBUS RX LS/FS VBUS RX LS/FS RX HS RX HS+ TX HS D+ TX HS+ RXRLS/FS - RX LS/FS - TX HS - D- TX HS - GND GND RS GND RS TX LS/FS TX LS/FS RS USBLC6-2SC6 R TX LS/FS - S TX LS/FS - R PD RPD DEVICE- + 3.3V UPSTREAM R PU TRANSCEIVER USB connector SW 2 SW 1 VBUS VBUS RX LS/FS RX LS/FS RX HS TX HS+ RX LS/FS - D+ RX LS/FS - RX HS - RX HS - TX HS - D- TX HS - GND GND RS GND RS TX LS/FS USBLC6-4SC6 TX LS/FS RS USBLC6-2P6 RS TX LS/FS - TX LS/FS - R PD RPD Mode SW1 SW2 Low Speed
in „STM32 und USB A mit Schutz-ICs“ · Mikrocontroller und Digitale Elektronik ·