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ADUC7019_7020_7021_7022_7024_7025_7026_7027_7028.pdf
optical networking Software-triggeredin-circuitreprogrammability FUNCTIONAL BLOCK DIAGRAM ADC0 12-BIT DAC0 DAC MUX 1MSPS 12-BIT ADC 12-BIT ADC11 DAC DAC1 SENSOR ADuC7026 1DACIT DAC2 CMP0 CMP1 BANDGAP 12-BIT DAC3 CMP OUT REF DAC VREF PWM0 H OSC THREE- PWM0 L XCLKI AND PLL ARM7TDMI-BASED MCU WITH PHASE PWM1
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PDF
small_pcb.PDF
IN1- OUT2 PI6607 MusicDACA VFD_CS PII908 7 8 CD_CS + PIMIC0P1IC101 PIC102 PIU403 IN1+ IN2- PI5606 DAC VCC 3.3V PI1009 PI5P307 PI6P308BOOT1 P01T0T4 - PIMIC02 68K R2 P R1K PIU604 VEE/GND IN2+ PIU605 1 PIMusicDAC01 W25Qxx 1 8 VCC PIIN010 PI3P305 PI4P306BOOT0 VCC 3.3V GND MICI R5R U6U 2 PIMusicDAC02 SPI1 MISO2I25QCS01 VCC PI75Qxx08 INOIN GND PI1P303 PI2P304RESET H R1 P R16 P325QSO02 HOLD PI65QxSPI1 SCK PIRP301 PIRP302 _ GND VCC 3.3V P425QWP#3 CLK PI55QxSPI1 MOSI VCC 3.3VRP3P 10K D PI25QGND4 SI PI25Qxx05 7 8 VFD_SLEEP A GND 18B20B2
in „STC LED Cube 8x8x8 RGB“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MH_ET_LIVE_MH3028M-24SS.txt
(SetEQ), arg: 0 10:17:06.329 -> [2363] Packet sent (->): 7E FF 6 1A 0 0 0 FE E1 EF -> Cmd: 1A (SetDAC), arg: 0 10:17:06.568 -> [2625] Packet sent (->): 7E FF 6 6 0 0 1 FE F4 EF -> Cmd: 6 (SetVolume), arg: 1 10:17:06.636 -> [2688] Packet sent (->): 7E FF 6 C 0 0 0 FE EF EF -> Cmd: C (Reset), arg: 0 10
in „Projekt fertiggestellt: MP3 Player für Kinder auf ATTiny-Basis“ · Projekte & Code ·
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PSU.pdf
_ e e a S PIN22 ADC7 (PCINT14/RESET)PC6 a 0 T : 8 R 5 l l 5 r r tin_Headers:Pin_Header5StraightN1x08 r 0 _ R s R7 s i 8 R 1 i (PCINT16/RXD)PD0 30 StatusLEDMCU DS18B20 l S N i 2 D DAC_Spannung d R d d R R R 31 S H r 6 O e C-3 NPN S Resistors_SMD:R_0805_HandSolderinr S D i (PCINT17/TXD)PD1 a S e 7 C R
in „Labornetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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ATM16_doc2466.pdf
row in the table. Table 93. Algorithm for Using the ADC PA3. PA3. PA3. Pullup_ Step Actions ADCEN DAC MUXEN HOLD PRECH Data Control Enable 1 SAMPLE 1 0x200 0x08 1 1 0 0 0 _PRELO AD 2 EXTEST 1 0x200 0x08 0 1 0 0 0 3 1 0x200 0x08 1 1 0 0 0 4 1 0x123 0x08 1 1 0 0 0 5 1 0x123 0x08 1 0 0 0 0 6 Verify the
in „ISP - Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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A4988.pdf
1 1 1 1 100.00 0.00 0.0 5 9 17 33 –100.00 0.00 180.0 2 99.52 9.80 5.6 34 –99.52 –9.80 185.6 2 3 98.08 19.51 11.3 18 35 –98.08 –19.51 191.3 4 95.69 29.03 16.9 36 –95.69 –29.03 196.9 2 3 5 92.39 38.27 22.5 10 19 37 –92.39 –38.27 202.5 6 88.19 47.14 28.1 38 –88.19 –47.14 208.1 4 7 83.15 55.56 33.8 20 39
in „Fragen rundum OpenPnP“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A4988.pdf
1 1 1 1 100.00 0.00 0.0 5 9 17 33 –100.00 0.00 180.0 2 99.52 9.80 5.6 34 –99.52 –9.80 185.6 2 3 98.08 19.51 11.3 18 35 –98.08 –19.51 191.3 4 95.69 29.03 16.9 36 –95.69 –29.03 196.9 2 3 5 92.39 38.27 22.5 10 19 37 –92.39 –38.27 202.5 6 88.19 47.14 28.1 38 –88.19 –47.14 208.1 4 7 83.15 55.56 33.8 20 39
in „RepRap mit Polulu A4988 : Stepper Motoren mit höherem Strom anschließen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A4988-EasyDriver-Klein.pdf
1 1 2 1 100.00 0.00 0.0 5 9 17 33 –100.00 0.00 180.0 2 99.52 9.80 5.6 34 –99.52 –9.80 185.6 2 3 98.08 19.51 11.3 18 35 –98.08 –19.51 191.3 4 95.69 29.03 16.9 36 –95.69 –29.03 196.9 2 3 5 92.39 38.27 22.5 10 19 37 –92.39 –38.27 202.5 6 88.19 47.14 28.1 38 –88.19 –47.14 208.1 4 7 83.15 55.56 33.8 20 39
in „Kondensator zur Spannungsglättung sinnvoll?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
hardware_t.cpp
= DAC_MIDSCALE + DAC_Correction[CalSet][0][2]; CH2_DAC_Offset = DAC_MIDSCALE + DAC_Correction[CalSet][1][2]; CH3_DAC_Offset = DAC_MIDSCALE + DAC_Correction[CalSet][2][2]; CH4_DAC_Offset = DAC_MIDSCALE + DAC_Correction
in „Wittig(welec) DSO W20xxA Open Source Firmware (Teil4)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AC6905A-Jieli.pdf
ADC0:ADC Input Channel 0; UART2TXA:Uart2 Data Out(A); Wakeup8:Port Interrupt /Wakeup 8; 6 DACR O / DAC Right Channel 7 DACL O / DAC Left Channel 8 DACVDD P / DAC Power 9 VCOM P / DAC Reference 10 FMIP I / 11 DACVSS P / DAC Ground 4 Confidential The information contained herein is the exclusive property
in „Bluetooth Chip "JL AC1650AP" 3W-Modul CHN“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
DS10-g0133-PID.c
))sollwert=408; // esum max 18400-->18000; esum min 10 000 ->7 000; // DS10_0113 190219 Kp 0.07->0.08, Ki 0,003 --> 0,004 // esum max 1800-->13500; esum min 5 000; // DS10_0114 190220 Kp 0.08 -> 0,1, Ki 0,004 // esum max 13500->14500; esum min 5 000; startesum 12000 // DS10_0115 190221 Kp 0,1-> 0,12,
in „while-Schleife wird "unerlaubt verlassen"“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DS10-g0134-PID.c
))sollwert=408; // esum max 18400-->18000; esum min 10 000 ->7 000; // DS10_0113 190219 Kp 0.07->0.08, Ki 0,003 --> 0,004 // esum max 1800-->13500; esum min 5 000; // DS10_0114 190220 Kp 0.08 -> 0,1, Ki 0,004 // esum max 13500->14500; esum min 5 000; startesum 12000 // DS10_0115 190221 Kp 0,1-> 0,12,
in „while-Schleife wird "unerlaubt verlassen"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EVK1104_revA.pdf
USB High Speed 3 Date: Friday, October 31, 2008 Sheet 7 of 12 5 4 3 2 1 5 4 3 2 1 PA[31..0] D PA3 DAC_DATA0 D PA4 DAC_DATA0N PA23 PA24 DAC_DATA1 DAC_DATA1N TP33 R81 0R N.M. PA25 AUDIO_SDA TP34 VCC3AUDIO PA26 AUDIO_SCL N.M. R82 0R TP35 VCC3AUDIO N.M. R86 TP36 TP37 N.M. N.M. 4.7k U11 R83 C73 TPA6130A2RTJ
in „Problem mit SD Karte an AT32UC3A3256“ · Mikrocontroller und Digitale Elektronik ·
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PDF
smp04.pdf
produce the delayed WR strobe and the S/H control signals. Referring to Figure 26a, new data to the DAC input is set up at the S/H’s falling edge, but the DAC output does not change DLY 627.4 ms until a WR strobe goes active. During this period, the SMP04 is in a sample mode whose output tracks the DAC output. When S/H goes HIGH, the current DAC output voltage is held by the SMP04. After 1.2 s settling, the WR strobe goes LOW to allow the DAC output to change. Any glitch that occurs at the DAC output is effectively blocked by the SMP04. As
in „Power Supply Bypassing - wie ist es richtig??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
smp04.pdf
produce the delayed WR strobe and the S/H control signals. Referring to Figure 26a, new data to the DAC input is set up at the S/H’s falling edge, but the DAC output does not change DLY 627.4 ms until a WR strobe goes active. During this period, the SMP04 is in a sample mode whose output tracks the DAC output. When S/H goes HIGH, the current DAC output voltage is held by the SMP04. After 1.2 s settling, the WR strobe goes LOW to allow the DAC output to change. Any glitch that occurs at the DAC output is effectively blocked by the SMP04. As
in „Sample-and-Hold-Verstärker - wie richtig beschalten??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
smp04.pdf
produce the delayed WR strobe and the S/H control signals. Referring to Figure 26a, new data to the DAC input is set up at the S/H’s falling edge, but the DAC output does not change DLY 627.4 ms until a WR strobe goes active. During this period, the SMP04 is in a sample mode whose output tracks the DAC output. When S/H goes HIGH, the current DAC output voltage is held by the SMP04. After 1.2 s settling, the WR strobe goes LOW to allow the DAC output to change. Any glitch that occurs at the DAC output is effectively blocked by the SMP04. As
in „Umgang mit Hold-Step bei Sample-and-Hold-Versärkern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mispav.cpp
vkanal[XIS].w = x ; vkanal[XIS].dar = p_zu_d( XIS, vkanal[XIS].w ); dac(1,vkanal[XIS].w); // an DAC ausgeben } FUNCT void rechne_dac_Usoll(float d) { float fw ; fw = (d *16384.0F / asp.vk[XUS].fkkal) - asp.vk[XUS].null; if ( fw > 32767.0 ) fw = 32767.0 ; if ( fw < -32767.0
in „Implementierung von Menüs auf alphanumerischen Displays“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CM6206_Datasheet_v2.1_en.pdf
: Rear_Sur 8 CODECM R/W 0: USB mode; 1: CODEC mode 7 EN_HPF R/W 1: Enable DAC high pass filter 6 T_SEL_DSDA4 R/W 1: Loopback ADC 1-bit delta-sigma data to RearSurround DAC 5 T_SEL_DSDA3 R/W 1: Loopback ADC 1-bit delta-sigma data to CEN/LFE DAC 4 T_SEL_DSDA2 R/W 1: Loopback ADC 1-bit delta-sigma data to SideSurround DAC 3 T_SEL_DSDA1 R/W 1: Loopback ADC 1-bit delta-sigma data to Front DAC 2-0 T_SEL_DSAD R/W Select delta-sigma 1-bit input source to AD digital filter. 000: normal; 100: Front; 101: SSurround; 110: Cen
in „soundchip mit mehr als stereo“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cm6206_2_3.pdf
: Rear_Sur 8 CODECM R/W 0: USB mode; 1: CODEC mode 7 EN_HPF R/W 1: Enable DAC high pass filter 6 T_SEL_DSDA4 R/W 1: Loopback ADC 1-bit delta-sigma data to RearSurround DAC 5 T_SEL_DSDA3 R/W 1: Loopback ADC 1-bit delta-sigma data to CEN/LFE DAC 4 T_SEL_DSDA2 R/W 1: Loopback ADC 1-bit delta-sigma data to SideSurround DAC 3 T_SEL_DSDA1 R/W 1: Loopback ADC 1-bit delta-sigma data to Front DAC 2-0 T_SEL_DSAD R/W Select delta-sigma 1-bit input source to AD digital filter. 000: normal; 100: Front; 101: SSurround; 110: Cen
in „USB Stereo Eingang Mikro oder line-in“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cm6206_2_3.pdf
: Rear_Sur 8 CODECM R/W 0: USB mode; 1: CODEC mode 7 EN_HPF R/W 1: Enable DAC high pass filter 6 T_SEL_DSDA4 R/W 1: Loopback ADC 1-bit delta-sigma data to RearSurround DAC 5 T_SEL_DSDA3 R/W 1: Loopback ADC 1-bit delta-sigma data to CEN/LFE DAC 4 T_SEL_DSDA2 R/W 1: Loopback ADC 1-bit delta-sigma data to SideSurround DAC 3 T_SEL_DSDA1 R/W 1: Loopback ADC 1-bit delta-sigma data to Front DAC 2-0 T_SEL_DSAD R/W Select delta-sigma 1-bit input source to AD digital filter. 000: normal; 100: Front; 101: SSurround; 110: Cen
in „PC Sound-Hardware: CD-Laufwerk“ · PC Hard- und Software ·
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PDF
CM6206_Datasheet__v2.3_1_.pdf
: Rear_Sur 8 CODECM R/W 0: USB mode; 1: CODEC mode 7 EN_HPF R/W 1: Enable DAC high pass filter 6 T_SEL_DSDA4 R/W 1: Loopback ADC 1-bit delta-sigma data to RearSurround DAC 5 T_SEL_DSDA3 R/W 1: Loopback ADC 1-bit delta-sigma data to CEN/LFE DAC 4 T_SEL_DSDA2 R/W 1: Loopback ADC 1-bit delta-sigma data to SideSurround DAC 3 T_SEL_DSDA1 R/W 1: Loopback ADC 1-bit delta-sigma data to Front DAC 2-0 T_SEL_DSAD R/W Select delta-sigma 1-bit input source to AD digital filter. 000: normal; 100: Front; 101: SSurround; 110: Cen
in „USB-Soundkarte zu einem Spannungslogger umbauen, wie die Eingänge schützen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7302.pdf
DAC A I/V VOUTA DAC Power-Down Function Parallel Interface D7 INPUT DAC I DAC B I/V V B On-Chip Output Buffer D0 REGISTER REGISTER OUT Rail-to-Rail Operation Low Power Operation 3 mA max @ 3.3 V A/B MUX
in „(S) AD7302BNZ DAC DIP20“ · Markt ·
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PDF
Atmega128_doc2467.pdf
row in the table. Table 105. Algorithm for Using the ADC PA3. PA3. PA3. Pullup_ Step Actions ADCEN DAC MUXEN HOLD PRECH Data Control Enable 1 SAMPLE_ 1 0x200 0x08 1 1 0 0 0 PRELOAD 2 EXTEST 1 0x200 0x08 0 1 0 0 0 3 1 0x200 0x08 1 1 0 0 0 4 1 0x123 0x08 1 1 0 0 0 5 1 0x123 0x08 1 0 0 0 0 Verify the 6
in „ATMEGA128 Timer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLV5610IDW_12-Bit__seriell__SPI__TMS320.pdf
Register Map A3 A2 A1 A0 FUNCTION 0 0 0 0 DAC A 0 0 0 1 DAC B 0 0 1 0 DAC C 0 0 1 1 DAC D 0 1 0 0 DAC E 0 1 0 1 DAC F 0 1 1 0 DAC G 0 1 1 1 DAC H 1 0 0 0 CTRL0 1 0 0 1 CTRL1 1 0 1 0 Preset 1 0 1 1 Reserved 1 1 0 0 DAC A and B 1 1 0 1 DAC C and D 1 1 1 0 DAC E and F 1 1 1 1 DAC G and H 12 TLV5608 TLV5610 TLV5629 www.ti.com SLAS268F–MAY 2000–REVISED JUNE 2005 DAC A-H AND TWO-CHANNEL REGISTERS Writing to DAC A-H sets the output voltage of channel A-H. It
in „Hilfe zu DAC über SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32VF103_User_Manual_EN_V1.0.pdf
1: DAC1 output buffer turn off 16 DEN1 DAC1 enable 0: DAC1 disabled 1: DAC1 enabled 15:13 Reserved Must be kept at reset value 12 DDMAEN0 DAC0 DMA enable 0: DAC0 DMA mode disabled 1: DAC0 DMA mode enabled
in „STM32F103C8T6 => GD32VF103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS1256.pdf
high-precision-ad-da-board.htm AD-converter ADS1256 (ti.com), first test with on-board trimpot DA-converter DAC8534 (ti.com), not used DDS-generator AD9952 (analog.com) """ import time import pigpio pi= pigpio.pi() # set GPIO data direction ("pin*" = 40pin only): # pi.set_mode(0, pigpio.INPUT) # pin*27 (Raspi-hat
in „Kommunikation mit AD-Wandler ADS1255“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dir.txt
2.436 adv728x-m.dtbo 17.12.2020 16:34 1.387 akkordion-iqdacplus.dtbo 17.12.2020 16:34 1.473 allo-boss-dac-pcm512x-audio.dtbo 17.12.2020 16:34 1.208 allo-digione.dtbo 17.12.2020 16:34 1.659 allo-katana-dac-audio.dtbo 17.12.2020 16:34 1.011 allo-piano-dac-pcm512x-audio.dtbo 17.12.2020 16:34 1.585 allo-piano-dac-plus-pcm512x-audio.dtbo
in „Raspberry Pi bootet nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
155008-da-01-en-8X_DAC_AD7808BRZ_SO24W.pdf
adding or subtracting to the output of the Main DAC. This Sub X 1 0 DAC C Selected DAC has a span of V BIAS32 with 1/8-bit resolution. The X 1 1 DAC D Selected coding scheme for the Sub DAC is the same as that for the Main DAC. With offset binary coding
in „DAC AD7808 wie register setzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
155008-da-01-en-8X_DAC_AD7808BRZ_SO24W.pdf
adding or subtracting to the output of the Main DAC. This Sub X 1 0 DAC C Selected DAC has a span of V BIAS32 with 1/8-bit resolution. The X 1 1 DAC D Selected coding scheme for the Sub DAC is the same as that for the Main DAC. With offset binary coding
in „DAC AD7808 Datenübertragung mit ATMega16 klappt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RFM12_Packet_asm.pdf
1) ein Byte zum DAC inc DAC ; (1) Treppenspannung um 6 höher inc DAC ; (1) = 240 Stufen für 40 Messungen inc DAC inc DAC inc DAC inc DAC RFM12_Packet.asm Page 11 rjmp Adc1 DacDec: ldi TmpL,DACAdr ; (1) Adr. des PCF8591
in „RFM12 - Empfangsstärke“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DAC904_14-Bit_165MSPS_Digital-to-Analog_Converters.pdf
PACKAGE ORDERING TRANSPORT PRODUCT PACKAGE-LEAD DESIGNATOR (1) RANGE MARKING NUMBER MEDIA, QUANTITY DAC904U SO-28 DW –40°C to +85°C DAC904U DAC904U Rails, 28 " " " " " DAC904U/1K Tape and Reel, 1000 DAC904E TSSOP-28 PW –40°C to +85°C DAC904E DAC904E Rails, 52 " " " " " DAC904E/2K5 Tape and Reel, 2500
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PDF
AD8606.pdf
RCS R3 20kΩ Figure 55 shows a typical implementation of the AD8605 at the R2 C1 output of a 12-bit DAC. 33pF 10kΩ VDD R FB R1 The DAC8143 output current is converted to a voltage by the OUT1 10kΩ V VREF AD7545 OUT feedback resistor. The equivalent resistance at the output of the VIN RP AGND DAC varies
in „Aktives Filter (Differential), Uref“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CM108_DataSheet_v1.6.pdf
AIO USB Data D+ 42 USBDM AIO USB Data D- DIO, 8mA, 43 GPIO1 GPIO Pin PD, 5VT 44 SDOUT DO, 4mA, SR DAC I2S Data Output 45 11.2896 MHz Output for 44.1KHz Sampled Data and DAMCLK DO, 4mA, SR 12.288 MHz Output for 48KHz Sampled Data 46 DALRCK DO, 4mA, SR DAC I2S Left/Right Clock 47 DASCLK DO, 4mA, SR DAC
in „Beschleunigungsaufnehmer + USB Soundkarte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
156346062-STi7105.pdf
i S t group12 HDMI/HDCP HDMI_INTERRUPT 0x15C0 INTPRI08[15:12] INTREQ08[14] ( HDMI_CEC_INT 0x15A0 INTREQ08[13] p n c e HDMI_CEC_WAKEUP_INT 0x1580 INTREQ08[12] o o i RESERVED 0x1660 INTREQ08[19] D f RESERVED 0x1640 INTREQ08[18] l n group13 INTPRI08[19:16]
in „Motorola Vip19x0 (Big brother of Vip1710)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3454fa.pdf
V less than 5.15V. OUT VIN VOUT VIN VOUT ENx ENx LTC3454 LTC3454 SETx LED SETx LED I = 3850 0.8V – DAC I = 3850 • IDAC RSET ≥ RMIN LED RSET IDAC ≤ 0.8V LED RMIN VOLTAGE V CURRENT DAC DAC DAC (3a) (3b) VIN VOUT VIN VOUT ENx ENx LTC3454 LTC3454 SETx LED SETx LED R 0.8V R SET 0.8V – PWM MIN ILED= 3850R
in „Gibt es Buck-Converter, die einen regelbaren Konstantstrom liefern?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DAC3550A_Stereo_Audio_DAC.pdf
This block is used to switch between or mix the auxil- iary inputs and the signals coming from the DAC. A shown in Fig. 2 3. switch matrix allows to select between mono and ste- reo mode as shown in Fig. 2 4. dB 0 DAD FOUTL -0.02 DAI WSI D/A -0.04 FOUTR -0.06 24.576 MHz -0.08 AUX1L - -0.1 AUX1R - -0.12
in „Mini-DSP für Audio-Verarbeitung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dn51_a_040220_Philips_Semiconductors_PDN.pdf
20 DAC-08ED DAC-08E D LINEAR INDUSTRIA L 933650380602 T M 1 20-feb-04 20-feb-04 follow. CAEN fire. Planned transfer to 3rd party pending. CPCN Notice to No possibility of further Philips manufacture due to 21 DAC-08ED DAC-08E D LINEAR INDUSTRIA L 933650380623 T M 1 20-feb-04 20-feb-04 follow. CAEN fire. Planned transfer to 3rd party pending. CPCN Notice to No possibility of further Philips manufacture due to
in „Das Innenleben von Transistoren und Operationsverstärkern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STA310AN.PDF
following options: • Ac3 Decoder • Main I2s input • Audio Pll generate 256xFS oversampling clock • 24 bit DAC • Spdiff output in L/R mode • No post processing • No bass managemenent • Volume Attenuation 10 dB (Step 0) Decoder Soft Reset HOST: Write (01) at @(16) HOST: Write (08) at @(43) HOST: Write (00) at
in „Sammelbestellung STA310 Dolby Digital Decoder“ · Markt ·
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PDF
STV0299B.pdf
register f_reg(7:0) 12CRPT $05(w) 12CT T- constant T- constant SCLT value SDAT value DACR1 $06(w) DAC mode DAC(11:8) DACR2 $07(w) DAC(7:0) DiSEqC $08(w) LOCK output LOCK conf DiSEqC DiSEqC mode DiSEqC FIFO $09(w) DiSE1C FIFO1(7:0) SDATinput DiSEqC Status $0A(r) IP status FE FF OP1_ OP0_ IOCFG $0C(w)
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmel_32uc.pdf
USART3 - RTS 66 90 PB01 GPIO 33 MACB - TX_EN USART2 - CTS USART3 - CTS 70 96 PB02 GPIO 34 MACB - TXD[0] DAC - DATA[0] 71 98 PB03 GPIO 35 MACB - TXD[1] DAC - DATAN[0] 72 100 PB04 GPIO 36 MACB - CRS USART3 - CLK EBI - NCS[3] 73 102 PB05 GPIO 37 MACB - RXD[0] DAC - DATA[1] 74 104 PB06 GPIO 38 MACB - RXD[1] DAC
in „V: ATMEL 32UC3A0512-U“ · Markt ·
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PDF
SU1278.pdf
Note 1 Bit 7 has to be set for every Inication to 05 I2CRPT W V 05 the tuner PLL synthesiser. 06/07 DAC W V 00/00 Note 1, DAC = 0 08 DiSEqC W V 00 Note 1 09 DiSEqC FIFO W V 00 - 0A DiSEqC STATUS R V - Note 1 0C IOCFG W V - Note 1, bit 0 may be inverted during search 0D AGC1C W F 81 - 0E RTC W F 23 - 0F
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EN_UM_N32G45x_Series_User_Manual_V3.pdf
is as follows: Configure DAC_CTRL.T1EN and DAC_CTRL.T2EN to enable trigger enable of DAC1 and DAC2. Configure DAC_CTRL.T1SEL[2:0] and DAC_CTRL.T2SEL[2:0] to be the same value to select the same trigger source. ConfigureDAC_CTRL.W1EN
in „ALLPOWERS S2000 PRO Reparaturhilfe“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m16M1def.inc
Register Low Byte .equ DACL0 = 0 ; DAC Data Register Low Byte Bit 0 .equ DACL1 = 1 ; DAC Data Register Low Byte Bit 1 .equ DACL2 = 2 ; DAC Data Register Low Byte Bit 2 .equ DACL3 = 3 ; DAC Data Register Low Byte Bit 3 .equ DACL4 = 4 ; DAC
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Datei
rc522.h
action; cancel current commands #define PCD_AUTHENT 0x0E //verify password key #define PCD_RECEIVE 0x08 //receive data #define PCD_TRANSMIT 0x04 //send data #define PCD_TRANSCEIVE 0x0C //send and receive data #define PCD_RESETPHASE 0x0F //reset #define PCD_CALCCRC 0x03 //CRC check and caculation //Mifare_One
in „Atmega32 und MFRC522 per SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC57E687C.pdf
Production Information ç ■ 64MIPS Kalimba DSP Co-processor É ■ 16-bit Internal Stereo Codec: 95dB SNR for DAC BC57E687C R ■ Low-power 1.5V Operation, 1.8V to 3.6V I/O J ■ Integrated 1.5V and 1.8V Linear Regulators Issue 1 j ■ Integrated Switched-mode Regulator ì ■ Integ2ated Battery Charger á to 4Mbits/sd UART
in „Cambridge Silicon Radio DSP per SPI programmieren“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
UM1052_PMSM_singledual_FOC_SDK_v3.3.pdf
defined DAC variables. Each DAC variable can be selected to be output to a DAC channel. The DAC channel is physically put in the output by calling the UI_DACExec method. 9.8 Using the DAC manager 1. Obtain the
in „BLDC Sinuskommutierung Ansteuerung H-Brücke“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
138720_DS.pdf
FUNCTIONAL BLOCK DIAGRAM P0.0 P0.7 P1.0 P1.7 P2.0 P2.7 P3.0 P3.7 ADuC812 BUF AIN0 (P1.0) ADC 12-BIT DAC0 SUCCESSIVE CONTROL DAC DAC0 AIN7 (P1.7) MUX T/H APPROXIMATION AND CONTROL BUF ADC CALLOGICION 12-BIT DAC1 DAC1 T0 (P3.4) MICROCONTROLLER T1 (P3.5) 8051-COMPATIBLE POWER SUPPLY 3 16-BIT T2 (P1.0) 2.5V
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stm.c
float v1, v2, c, h; //calibration variables float vz, vstep; float Vref, Aref; //voltage reference of DAC and ADC //********************************************************** //Entry point and task scheduler loop void main(void) begin //Initialize init(); stepmax = 60*Vref; //min step stepmin = stepmax/
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AD5290.pdf
40 C to +125 C o CS POR VSS iCMOS™ 1process technology - 7 DGND 0 APPLICATIONS Figure1. HighvoltageDAC Programmablepowersupply Programmablegainandoffsetadjustment Programmablefilters and delays Actuatorcontrol Audio volume control Mechanicalpotentiometerreplacement GENERAL DESCRIPTION The AD5290 is one
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AD5290.pdf
−40°Cto +125°C CS 1 POR V SS iCMOS™ process technology 0 1 DGND 0 APPLICATIONS Figure1. HighvoltageDAC Programmablepowersupply Programmablegainandoffsetadjustment Programmablefilters and delays Actuatorcontrol Audio volume control Mechanicalpotentiometerreplacement GENERAL DESCRIPTION The AD5290 is one
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