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Datei
block-cordic.asm
;****************************************************************************** ;* TMS320C6x C/C++ Codegen Unix v6.1.17 * ;* Date/Time created: Sun Dec 9 15:00:55 2012 * ;****************************************************************************** .compiler_opts --c64p_l1d_workaround
in „TMS320 - welche Bedeutung hat der DSP heute noch“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
tlv571.pdf
microcontrollers, ASICs, and DSPs. Figure 8 shows the pin connections to interface the TLV571 to the TMS320C6x DSP. TMS320C6X A0–A15 TLV571 EN Address CS AIN Decoder REF HW WR REFP HR RD INTx EOC REFM D0–D7 D0–D15 Figure 8. TMS320C6x DSP Interface POST OFFICE BOX 65DALLAS, TEXAS 75265 13 TLV571 2.7 V TO
in „EEPROM beschreiben ohne MC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Eagle_DataSheet_V2.8_english.pdf
recommended operating conditions and are measured using a typical device at room temperature (TJ = 25 °C). 2. Typical values are blank devices, no output current load, high-impedance state, and all I/O-driven quiescent supply currents measured when all pull-up/pull-down resistors are disabled on the
in „Sipeed Lichee Tang FPGA mit RISC-V Core aus China unter 20€“ · FPGA, VHDL & Co. ·
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PDF
Eagle_DataSheet_V2.8_english.pdf
recommended operating conditions and are measured using a typical device at room temperature (TJ = 25 °C). 2. Typical values are blank devices, no output current load, high-impedance state, and all I/O-driven quiescent supply currents measured when all pull-up/pull-down resistors are disabled on the
in „SDRAM Burst lesen ohne Unterbrechung über Column, Row und Banks hinaus“ · FPGA, VHDL & Co. ·
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AD7302.pdf
transition. –6– REV. 0 Typical PerformanceCharacteristics–AD7302 800 5 3.5 720 VDD = 5V AND 3V 4.92 3.25 INTERNAL REFERENCE 640 TA= +25 C 4.84 3.0 DAC LOADED WITH 00HEX 560 4.76 2.75 V 480 s4.68 l 2.5 m o V –T400 V 4.6 –2.25 U – T VO320 U4.52 O 2.0 V VDD = 5V V 240 4.44 INTERNAL REFERENCE 1.75 V DD = 3V
in „(S) AD7302BNZ DAC DIP20“ · Markt ·
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Datei
Example_2802xEPwmDeadBand.c
####################### // // File: f2802x_examples_ccsv4/epwm_deadband/Example_F2802xEpwmDeadBand.c // // Title: Check PWM deadband generation // // Group: C2000 // Target Device: TMS320F2802x // //! \addtogroup example_list //! <h1>PWM deadband generation</h1> //! //! This example configures ePWM1
in „Sine-Lookup Tabelle. Wie macht man es richtig?“ · Mikrocontroller und Digitale Elektronik ·
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ml50x_schematics.pdf
A21 MICTOR_25 VCCO3_25 IO_L1P_25AL31 NC BANK 23 IO_L1N_23 C19 SUPRCLK1_SEL0 BANK 25 IO_L1N_25AN30 NC IO_L2P_23 C18 SUPRCLK1_M2 IO_L2P_25AM30 NC IO_L2N_23 C22 NC IO_L2N_25AP30 NC IO_L3P_23 B22 SUPRCLK1_N2 IO_L3P_25AP31
in „DDR2 RAM Ansteuerung mit Virtex-5 ML507“ · FPGA, VHDL & Co. ·
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PDF
dsk6713_TechRef__1_.pdf
22 CLKS0 I McBSP0 clock source 23 FSX0 I/O McBSP0 transmit frame sync 24 DX0 O McBSP0 transmit data 25 GND Vss System ground 26 GND Vss System ground 27 CLKR0 I/O McBSP0 receive clock 28 N/C - No connect 29 FSR0 I/O McBSP0 receive frame sync 30 DR0 I McBSP0 receive data 31 GND Vss System ground 32 GND
in „Kamera für TMS320C6713“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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dsk6713_TechRef.pdf
22 CLKS0 I McBSP0 clock source 23 FSX0 I/O McBSP0 transmit frame sync 24 DX0 O McBSP0 transmit data 25 GND Vss System ground 26 GND Vss System ground 27 CLKR0 I/O McBSP0 receive clock 28 N/C - No connect 29 FSR0 I/O McBSP0 receive frame sync 30 DR0 I McBSP0 receive data 31 GND Vss System ground 32 GND
in „TMS320C6713 Schnittstelle“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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LCMXO640C-3TN144C.pdf
1 C PL11A 3 23 PL9A 1 T PL11C 3 24 VCCIO1 1 VCCIO3 3 25 GNDIO1 1 GNDIO3 3 26 TMS 1 TMS TMS 2 TMS 27 PL9B 1 C PB2C 2 28 TCK 1 TCK TCK 2 TCK 29 PB2A 1 T VCCIO2 2 30 PB2B 1 C GNDIO2 2 31 TDO 1 TDO TDO 2 TDO
in „Erfahrung mit Siglent SDG 10xx Arbitrary Generatoren?“ · Markt ·
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M350_PART2.pdf
/P0.6/UTX P3.12/BEEP/BMCLK PIU8020K PIU820J2 TDI/P0.7/URX P3.11/S32 PIU820E14 H1 C14 PIU820H1 TMS-SWDIO/P0.8 P3.10/S31 PIU820C14 PIU820H2 TCK-SWCLK/P0.9 P3.8/S29 PIU8020F PIU820R2 PIU820J10 K2 P0.10/TOUTC P3.7/URX/TOUTC/SPI1_CS G15 POUART_RX_350 X0 3 5 0 S3 B3 S3 B3 P OSCKC K PIU820K2
in „Wer hat schon mal mit diesem Bauteil gearbeitet?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLV5610IDW_12-Bit__seriell__SPI__TMS320.pdf
Pins Package Eco Plan Lead/Ball FinishMSL Peak Temp Type Drawing Qty TLV5608IDW ACTIVE SOIC DW 20 25 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLV5608IDWG4 ACTIVE SOIC DW 20 25 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) TLV5608IDWR ACTIVE SOIC DW 20 2000 Green (RoHS & CU NIPDAU
in „Hilfe zu DAC über SPI“ · Mikrocontroller und Digitale Elektronik ·
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Beschreibung_ATMEL_Evaluations-Board_Ver_2_0_1_von_Pollin_D810038B.pdf
PCINT6) 16 8 PB7 (SCK) PB7 (SCK) 19 PB5 (SCK) 19 PB7 (UCSK/SCL/PCINT7) 17 22 PC0 (SCL) PC0 (SCL) n.c. - n.c. - 18 23 PC1 (SDA) PC1 (SDA) n.c. - n.c. - 19 24 PC2 (TCK) PC2 n.c. - n.c. - 20 n.c. - - n.c. - n.c. - 21 25 PC3 (TMS) PC3 n.c. - n.c. - 22 26 PC4 (TDO) PC4 n.c. - n.c. - 23 27 PC5 (TDI) PC5 n.c. - n.c. - 24 28 PC6 (TOSC1) PC6 (TOSC1) n.c. - n.c. - 25 29 PC7 (TOSC2) PC7 (TOSC2) n.c. - n.c. - 26 14 PD0 (RXD) PD0 (RXD) 2 PD0 (RXD) 2 PD0 (RXD) 27 15 PD1 (TXD) PD1 (TXD) 3 PD1 (TXD) 3 PD1 (TXD) 28 16 PD2
in „AMTEL Evaluationsboard 2.0.1 von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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ads8326.pdf
o o -0.25 f-0.50 f l l D D -0.75 -0.50 -1.00 -0.75 75 100 75 100 -50 -25 0 25 50 -50 -25 0 25 50 Temperature (°C) Temperature (°C) Figure 4. Figure 5. 10 Submit Documentation Feedback Copyright © 2007–2009, Texas
in „Problem mit OP als Spannungsfolger vor ADC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DAC8562_3.pdf
noise density (high- frequency noise) TA= 25°C, f = 1 MHz, L = 0 µF 30 nV/√Hz TA= 25°C, f = 1 MHz, L = 4.7 µF 10 Load regulation, sourcing) TA= 25°C 20 µV/mA Load regulation, sinking TA= 25°C 185 µV/mA (2) Output-current load capability ±20 mA
in „Problem mit Positionsrückmeldung bei GRBL“ · Mikrocontroller und Digitale Elektronik ·
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DOKUMENTATION_MSP430-F2013.pdf
-40C 0.9 1.2 OSCOFF = 0 25C 0.9 1.2 3 V A 85C 1.6 2.8 105C 3 7 -40C 0.4 0.7 25C 0.5 0.7 2.2 V A Low-power mode f = f = f = 0 MHz, 85C 1.0 1.6 DCO MCLK SMCLK 105C 2 5 ILPM3,VLO 3 curren (LPM3) fACLK
in „MSP430 2013 XOUT/XIN ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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DSTN-DVI-Adapter.pdf
SMD 1206 R7 8,2kΩ 5% SMD 1206 R8 47Ω 5% SMD 1206 C1–C13,20 100nF keramisch SMD 0805 C14,15 10nF keramisch SMD 0805 C16,17 1µF keramisch SMD 1206 C18,19 Elko 100µF 16V stehend RM2,54 X1 DVI-D Buchse Molex 74320-4004 X2 Print-Schraubklemme 2pol. RM5,08mm
in „DSTN DVI Adapter im eigenbau“ · Mikrocontroller und Digitale Elektronik ·
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Sager_D87P_Service_Manual_Part3.pdf
E2 DEFER# BPRI# [6] t (2 of 2) [6] HADSTB0# DBR# AE25 ADSTB0 DEFER D4 TCK DEFER# [6] DBRESET TCK C1 TDI TDI F7 TMS a [18] NMI NMI E5 TMS E6 TRST# [18] INTR INTR D1 LINT1 TRST D5 TDO LINT0 TDO C3 PROCHOT# PROCHOT# [6] PROCHOT B2 IGNNE# IGNNE# [18] m [5]
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slaa323a.pdf
to the input to improve resolution. This approach is discussed in Oversampling Techniques using the TMS320C24x Family. This solution could be achieved by using the MSP430FG439 with its integrated operational amplifiers, timer, and DAC12.[2] Good layout practices and proper power-supply decoupling improve
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SK-FM3-176PMC-ETHERNET_v11_schematic_v15.pdf
NLPin12 USB UHCONX R3131 [0] Dual Host Connector (Upper) 10k 10k PIJP4104PIJP41P0I2LPIL301 PIC3501C1 Default: closed 10K PIT102 PIR301 C PIR320 PIR302 33 10nH Würth 74279202 C3535 NLPin168 UHCONX0 COJP42 PIR3102434 T1OT1 C 10nF PIJP420P1IJP4202 PIR3402PIR3401 PIT10BC857 GND COSW VCC5V 2K2 Pin7373 COJP4
in „Problem bei LAN8710A-Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
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media32.pdf
110µ I1100n P1100n C1100n RSTST P I U 1 0 7 PC5PIU1037W_ENCA GND VCC DVDD TSMD_B 0805 0805 0805 K1 NRST PC6P I U 1 0 3 8 HPGND PIUA1011GND GND GND GND GND CRK?? PC7 GND PIUA102DGND AGND PIUA1015GND 10k PC8P I U 1 0 3 9 TLV320AIC23BPW
in „MP3 Player mit Clickwheel und S65“ · Mikrocontroller und Digitale Elektronik ·
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eGC.pdf
PIIC1VDDSHV VDDSHV PIIC10V7 100 nF 100 nF 100 nF 100 nF 100 nF 100 nF 1V8COMPLEX PIIC1CAP_VDD_SRAM_MPU AB11C1VDDSHV VDDSHV PIV170V8 PIIC1CAP_VDDA1P2LDO_USBPHY PIIC1VDDSHV VDDSHV PIIC10V17 B10 AM3505-ZER 0 10 90 I1 C0 I1 21 P1 PIIC1VSSOSC 01 C1 21 P1 91 C17 C181 C19 C2020 C212 C2C22 C232 C2424 AM3505-ZER CO25
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
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M500_Askoll__No_Variations__2018-12-02.PDF
RX R X 180R VIPer12A CO1 +20V 2 3 D D D D 4 D13 ZD1 PI12 PI13 PD0 PD4A PI Vdd PIU104 P2PD3 PD0 BZT52C2V7 817 BAS16T R25 3 BAS16T PD P0 C O VCC Q3 PPI21 PRP OR LAYY FB PIU103 PC2 R41 PI24C2 PI21 BC846TPI2 4k7 S S 3k3 PD P0 PI23 P PI525 PRP O T X P11 P2 P0 TX C25 R42 817 150R P2 330R P0 R21 VCC R33 B PI22
in „RX und TX Schaltung beim Askoll M505“ · Analoge Elektronik und Schaltungstechnik ·
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XCS20-3VQ100C.pdf
P25 K2 J2 242 I/O P197 P229 B5 C6 131 I/O P22 P26 K3 J3 245 I/O P198 P230 A4 D6 134 I/O P23 P27 K1 J4 248 I/O P199 P231 C5 E6 137 I/O P24 P28 L1 K1 251 DS060 (v1.8) June 26, 2008 www.xilinx.com 77 Product
in „[V] Spartan FPGA“ · Markt ·
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PDF
038-05058-01-X-MLCC_REVB03_SKIT.pdf
3 2 1 FTDI JTAG/UART USB_PWRD_VCCIO PS_1V8 USB_JTAG_FLTR USB_PWRD_VCCIO USB_PWRD_VCCIO = 3.3V 8 1 C90 1 U25 1 C91 IN OUT 0.1UF SN74AVC2T245 0.1UF C78 1 C44 1 1 1 C79 25V 2 2 25V 10uF 1 1000PF R36 10UF 7 6 25V 2 R40 5 50V 2 56.2K 2 10V USB_PWRD_VCCIO VCCA VCCB EN D 10.0K 2 D 2 FB 4 FTDI_3V3_FB FTDI_TMS
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at91rm9200-ek.pdf
[6] 18 17 100NF 6 5 TDI 10K PD19 TRACEPKT[7] 16 15 TCK 8 7 TMS 3V3 VSUPPLY 14 13 SYSTEM RESET 10 9 TCK 12 11 TDO 12 11 EXTTRIG 10 9 NSRST R297 0R NRST 14 13 TDO 8 7 DBGRQ 16 15 NRST PD8 R299 0R TRACECLK 6 5 GND 18 17 4 3 R298 20 19 R310 2 1 10K 0R C320 C319 100NF
in „SD-RAM aus PC für AT91RM9200 (ARM9)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SpartanXL.pdf
- I/O P190 P220 A8 A8 104 I/O P14 P15 G3 F4 212 I/O P191 P221 B8 B8 107 I/O P15 P16 G2 F1 215 I/O, TMS P16 P17 G1 G3 218 I/O - - C8 C8 110 I/O - - A7 D8 113 I/O P17 P18 H3 G2 221 (4) (4) (4) (4) VCC P192 P222 VCC VCC - VCC P18 P19 VCC VCC - I/O - P223 A6 B7 116 I/O - P20 H2 G4 224 I/O - P224 C7 C7 119
in „Logic Analyzer bauen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Example_2802xEPwmDeadBand.c
####################### // // File: f2802x_examples_ccsv4/epwm_deadband/Example_F2802xEpwmDeadBand.c // // Title: Check PWM deadband generation // // Group: C2000 // Target Device: TMS320F2802x // //! \addtogroup example_list //! <h1>PWM deadband generation</h1> //! //! This example configures ePWM1
in „DDS, 50Hz Sinus, Schaltfrequenz 16 - 48kHz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IQmath_Quickstart.pdf
82 Texas Instruments Inc., 2002-2011 5 Chapter 1. Introduction 1.1. Introduction Texas Instruments TMS320C28x IQmath Library is collection of highly optimized and high precision mathematical functions for C/C++ programmers to seamlessly port a floating-point algorithm into fixed point code on TMS320C28x
in „PID Regler in Q15 Format“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schematics.pdf
H11 0603 TP1 LVDDEXT14 GND14 J4 VDDEXT VROUT L1VDDEXT15 J5 Y1 R2 P1 GND15 10K VDDEXT16 J9 402 GND16 25MHZ J10 OSC005 R1 B9 GND17 3 U51 4 33 VDDRTC K6 3 C26 C27 VDD 402 GND18 18PF 18PF 1 3 A13 K11 805 805 OE OUT CLKIN C209 C15 C10 C11 C9 C12 C13 C14 C16 VROUT0 GND19 GND 10UF 0.01UF 0.01UF 0.01UF 0.01UF
in „Versorgung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
Littelfuse_Thyristor_Kxxxzy.pdf
(LiquidusTemp) m Preheat 5°C/second max T (TL) to peak T S(min) tS T S(max)T L Ramp-up Rate 5°C/second max -Temperature (T ) (Liquidus) ▯▯▯¡$▯ Reflow L 25 -Temperature (t ) 60 – 150 seconds time to peak temperature Time L PeakTemperature (T ) P 260 +0/°C Time within 5°C of actual peak Temperature (t ) 20 – 40 seconds p Ramp-down Rate 5°C/second max Time 25°C to peakTemperature (T ) ▯▯NJOVUFT▯.BY▯ P Do not exceed 280°C Physical Specifications Reliability
in „OLYMP Gastherme GasStar Compact 8-27kW Zündgerät defekt.“ · Haus & Smart Home ·
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PDF
Orion_Rev_3.0__1_.pdf
/DIFFIO_T37N/DQ4T K19 C23 IO_B7_C22/DIFFIO_T49P/DQ4T IO_B7_K19/DIFFIO_T37P/DQS4T/CQ5T,DPCLK14 K21 IO_B7_C23/DIFFIO_T52N IO_B7_K21/DIFFIO_T67P C24 IO_B7_C24/DIFFIO_T53P IO_B7_K22/DIFFIO_T67N K22 C25 IO_B7_C25/DIFFIO_T58N C26
in „Suche Firma die für Privat BGA FPGA reballing macht“ · Markt ·
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PDF
msp430fr5729.pdf
at Px.y Figure 5-2. Typical Low-Level Output Current vs Low-Level Output Voltage 35 T = -4°C A A 30 T A = 25°C m t T = 85°C e A r 25 C t t 20 u l v L 15 - o l c 10 p T L I 5 0 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 1.1 1.2 1.3 1.4 1.5 1.6 1.7 1.8 1.9 2.0 2.1 2.2 2.3 2.4 2.5 2.6 2.7 2.8
in „Implementierung eines ADT7301 an einem MSP430FR5729“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Example_2802xEPwmDeadBand.c
####################### // // File: f2802x_examples_ccsv4/epwm_deadband/Example_F2802xEpwmDeadBand.c // // Title: Check PWM deadband generation // // Group: C2000 // Target Device: TMS320F2802x // //! \addtogroup example_list //! <h1>PWM deadband generation</h1> //! //! This example configures ePWM1
in „Sinus PWM mit 25 kHz lässt sich nicht kompilieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DM-KIT-SSK_for_BF533.pdf
91 LED_A0 MOTOR_B 15 IO IO 90 LED_D7 D 3V3 MOTOR_D 18 IO IO 87 LED_D5 PCMCIA_CD 19 IO IO 86 LED_D4 C18 C19 C25 C26 C27 C28 C29 C30 C32 C33 C34 A16 22 IO IO 83 LED_D2 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF A17 23 IO IO 82 LED_D1 GND A18 25 81 LED_D0 B A19 27 IO IO 80 LED_OE
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Ender3_schematic.PDF
E-DIRR PIU840 XCK0/T0/PCINT8/PB0 VCC PU807 PI P0 COP3 VCC PU808 P4 P4 P4 PI1150pF Y-DIRR PIU826 PU807 C422 C411 C43 Y-STEPP PIU825 TOSC2/PCINT23/PC7 AVCC P41uF P41uF P4100nF PI1 X-DIRR 24 TOSC1/PCINT22/PC6 GND R_P6 Z-STOP P23824 TDI/PCINT21/PC5 PI200k Y-STOP P22823 TDO/PCINT20/PC4 GND GND GND PIU822 TMS
in „Problem mit SD Card Melzi Creality3D V1.1.3 Sanguino Atmega 1284“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Full_Code.c
####################### // // File: f2802x_examples_ccsv4/epwm_deadband/Example_F2802xEpwmDeadBand.c // // Title: Check PWM deadband generation // // Group: C2000 // Target Device: TMS320F2802x // //! \addtogroup example_list //! <h1>PWM deadband generation</h1> //! //! This example configures ePWM1
in „Fließkommazahlen in Ganzzahlen umrechnen für Register“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Elektronikladen07.pdf
für C8051F300..305 99,00 EUR C8051F320DK SiLabs DevKit für C8051F320/321 229,00 EUR C8051F330DK SiLabs DevKit für C8051F330..335 99,00 EUR C8051F350DK SiLabs DevKit für C8051F350..353 129,00 EUR F350COMPASSRD
in „MC68000 von Motorolla“ · Mikrocontroller und Digitale Elektronik ·
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Dazzle_HW_mb_hsw_ult-3a-reve-0408.pdf
M_A_CLK1 R746 26.1/F_4 M_A_A3 R379 34.8/F_4 M_A_CLK1# R753 26.1/F_4 1 1 1 1 1 1 1 1 M_A_A4 R388 34.8/F_4 C403 C692 C686 C691 C437 C436 C434 C398 C394 C703 C400 C467 M_A_A5 R397 34.8/F_4 1u/6.3V_4 1u/6.3V_4 1u/6.3V_4 1u/6.3V_4 C722 0.047u/25V_4 0.047u/25V_4 0.047u/25V_4 0.047u/25V_4 0.047u/25V_4 0.047u/25V
in „Notebook Mainboard reparieren Aspire V5-573G, IC iTE IT8587E“ · PC Hard- und Software ·
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XC4000.pdf
of devices that feature logic densities up (EC) inputs. A third common input (S/R) can be pro- to 25,000 usable gates and support system clock rates of grammed as either an asynchronous set or reset signal 2-9 XC4000, XC4000A, XC4000H Logic Cell Array Families C1 C2 C3 C4 H1 DIN S/R EC G4 S/R CONTROL
in „Xilinx XC4006“ · FPGA, VHDL & Co. ·
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PDF
Cypress_CY8C58LP_001-84932_0F-491909.pdf
5 F DDX = 6 MHz CPU T = 25 °C – 3.1 5 T = 85 °C – 3.2 5 V DDX = 2.7 V to 5.5 V; T = –40 °C – 5.4 7 F CPU = 12 MHz [18] T = 25 °C – 5.4 7 T = 85 °C – 5.6 7 V DDX = 2.7 V t[18]5 V; T = –40 °C – 8.9 10.5 F CPU = 24 MHz T = 25 °C
in „UART-Schnittstelle 2x verwenden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps3306-_AIC_-_AID_-_AIF_-_AIG_-.pdf
device must not be operated at 7 V for more than t = 1000 h continuously. DISSIPATION RATING TABLE TA≤ +25°C DERATING FACTOR TA= +70°C TA= +85°C PACKAGE POWER RATING ABOVE T =A+25°C POWER RATING POWER RATING DGK 424 mW 3.4 mW/°C 271 mW 220 mW D 725 mW 5.8 mW/°C 464 mW 377 mW RECOMMENDED OPERATING CONDITIONS
in „Identifizierung Bauteil TI68 AID“ · Analoge Elektronik und Schaltungstechnik ·
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msp430g2452.pdf
/ DESCRIPTION SIZE ADDRESS OFFSET CAL_ADC_25T85 INCHx = 0x1010, REF2_5 = 1, A = 85°C word 0x0010 CAL_ADC_25T30 INCHx = 0x1010, REF2_5 = 1, A = 30°C word 0x000E CAL_ADC_25VREF_FACTOR REF2_5 = 1, T = 30°C, I = 1 mA word 0x000C A (VREF+) CAL_ADC_15T85
in „MSP430 Gleitkommazahl in Flash speichern“ · Mikrocontroller und Digitale Elektronik ·
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Vergleichsliste.pdf
T.B.A. ECG949 UA749CH ECG950 UA78L12AWC ECG951 UA78L15AWC 15 of 46 ECG952 LM336Z2.5 ECG953 UA78GU1C ECG954 UA79GU1C ECG955M UA555TC-8 NE555N-8 M51841P TA7555S ECG956 LM317T UA317UC ECG957 LM337T UA337UC ECG958 UA7818UC LM340T-18 ECG959 UA7918UC LM320T-18 ECG960 UA7805UC UPC14305 LM340T-5 AN7805 TDA1405
in „ECG45 was ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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mb1045_changed.pdf
P0R8501 P0R8502 +3V3 P0R7601 P0R7602 NC 2 R84P0R8401 P0R8402 +3V3 To IO expandor +3V3 P0U5022 22 7 3 9 C 2 R64 0 33 AVDD33 P0U5048 48 C C C C 3 2 P0R6402 P0R6401 P0U503X2 IOVDD33 P P P 0 X 34 P0U5034 P0U5032 32 0 C27 0 C33 0 C39 1 C30 P X1 IOVDD33 C 100nF C 100nF C 100nF 0 P0TP801 25 25MHz_OUT P P P 0 22pF
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PDF
mb1045_changed_korrigiert.pdf
P0R8501 P0R8502 +3V3 P0R7601 P0R7602 NC 2 R84P0R8401 P0R8402 +3V3 To IO expandor +3V3 P0U5022 22 7 3 9 C 2 R64 0 33 AVDD33 P0U5048 48 C C C C 3 2 P0R6402 P0R6401 P0U503X2 IOVDD33 P P P 0 X 34 P0U5034 P0U5032 32 0 C27 0 C33 0 C39 1 C30 P X1 IOVDD33 C 100nF C 100nF C 100nF 0 P0TP801 25 25MHz_OUT P P P 0 22pF
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toshiba_satellite_l755.pdf
VTT H_PROCHOT# R54 62_4 [9,22] TEMP_ALERT# Q33 *2N7002_200MA /FON GGND 7 3 [22] VFAN1 4 VSET GND 8 C512 C511 C513 XDP_TMS_R R111 51_4 XDP_TDI_R R103 51_4 G991P11U 10U/6.3V_8X *0.01U/25V_4X *0.01U/25V_4X 85205-0300L R446 24.9/F_4PEG_COMP XDP_TCLK_R R110 *51_4 FANPWR = 1.6*VSET XDP_TRST#_R R978 51_4 W
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WIZFI250-H-WIZnet-datasheet-24907049.pdf
6M 345 mA 380 mA Tx output power @ 13 dBm on 11g 54M 290 mA 320 mA Tx output power @ 14.5 dBm on 11n MCS0 315 mA 350 mA Tx output power @ 12 dBm on 11n MCS7 265 mA 295 mA The WizFi250 on RX mode current consumption : (Typical spec is defined @3.3V 25℃; MAX. spec
in „Wlan2Serial Modul für 5 euro“ · Mikrocontroller und Digitale Elektronik ·
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manual_20digilab_201kx208.pdf
J6_A11 12 J6_A12 13 J6_B13 14 J6_B14 13 J6_A13 14 J6_A14 15 J6_A15 16 J6_A16 17 J6_A17 18 J6_A18 J6C 19 GND 20 N/C 1 VIAUX 2 GND 21 J6_A21 22 GND 3 VREF 4 GND 23 J6_A23 24 GND 5 GND 6 VCC3V3 25 J6_A25 26 GND 7 GND 8 VCC3V3 27 J6_A27 28 J6_A28 9 GND 10 CLK_OSC 29 J6_A29 30 GND 11 GND 12 CLK1 31 J6_A31
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SCD5580.PDF
VCC Power supply/heat sink Figure 6. Display column and row format 20 V Power supply/heat sink CC C C C C C 21 NP No pin 0 1 2 3 4 22 NP No pin Row 1 1 1 1 1 1 23 V Power supply/heat sink Row 2 0 0 1 0 0 CC Row 3 24 NC No connection 0 0 1 0 0 Row 4 0 0 1 0 0 25 NC No connection 1=Display Dot “on” 26
in „[V] 2 St. Punktmatrix Displays SCD5583, 5x5, 8-stellig, grün“ · Markt ·