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XCS20-3VQ100C.pdf
C C C (3) - -3 - - - - C, I C C - XCS40 -4 - - - - C C C - -4 C (3) C, I - - - - - - XCS05XL -5 C (3) C - - - - - - -4 C (3) C, I C (3) C - - - - XCS10XL (3) (3) -5 C C C C - - - - -4 - C, I C (3) C, I C, I - - - XCS20XL (3) -5 - C C C C - - - -4 - C, I - C, I C, I C C C (3) XCS30XL (3) -5 - C - C C C C C -4 - - - - C, I C C, I C (3) XCS40XL (3) -5 - - - - C C C C 6/25/08 Notes: 1. C = Commercial T =
in „[V] Spartan FPGA“ · Markt ·
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SpartanXL.pdf
C C - XCS40 -4 - - - - C C C - -4 C C, I - - - - - - XCS05XL -5 C C - - - - - - -4 C C, I C C - - - - XCS10XL -5 C C C C - - - - -4 - C, I C C, I C, I - - - XCS20XL -5 - C C C C - - - -4 - C, I - C, I C, I C C C XCS30XL -5 - C - C C C C C -4 - - - - C, I C C, I C XCS40XL -5 - - - - C C C C 8/15/00 Notes: 1. C = Commercial T = 0° to +85°C 2. I = Industrial T = –40°C to +100°C J Table 20: User I/O Chart
in „Logic Analyzer bauen“ · Mikrocontroller und Digitale Elektronik ·
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ml50x_schematics.pdf
23 1 C185 1 C186 SRAM_BW3 95 55 SRAM_FLASH_A4 22A4 10UF 0.1UF SRAM_BW2 96 95_BWC_B VSS_55 40 SRAM_FLASH_A5 21A5 2 X5R 2 X5R SRAM_ADV_LD_B 85 96_BWD_B VSS_40 26 SRAM_FLASH_A6 20A6 10V 10V SRAM_OE_B 86 85_ADV
in „DDR2 RAM Ansteuerung mit Virtex-5 ML507“ · FPGA, VHDL & Co. ·
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DOKUMENTATION_MSP430-F2013.pdf
frequencies - overall tolerance PARAMETER TEST CONDITIONS T VCC MIN TYP MAX UNIT A I: -40-85C 1 MHz tolerance overall T: -40-105C 1.8 V - 3.6 V -5 2 +5 % I: -40-85C 8 MHz tolerance overall T: -40-105C 1.8 V - 3.6 V -5 2 +5 % I: -40-85C 12 MHz tolerance overall T: -40-105C 2.2 V -
in „MSP430 2013 XOUT/XIN ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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ads8326.pdf
ADS8326I ±3 16 SON-8 DRB –40°C to +85°C D26 Tape and Reel, ADS8326IDRBR 2500 ADS8326IBDRBT Tape and Reel, 250 ADS8326IB ±1.5 16 SON-8 DRB –40°C to +85°C D26 ADS8326IBDRBR Tape and Reel, 2500 (1) For the most current package and
in „Problem mit OP als Spannungsfolger vor ADC“ · Analoge Elektronik und Schaltungstechnik ·
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SK-FM3-176PMC-ETHERNET_v11_schematic_v15.pdf
TIOB08_0/RTO20_1/INT30_0/MAD19_0 PIU10139 Pin13939 Pin139 PIJ203838 PIJP80P1IJP802in525 39 PIJ1039 NLPin40 Pin39 P I U 1 0P3B/RTO01_0/TIOA01_1 P04/TDO PIU10138 NLPin137 Pin138 PIJ203939 C 40 PIJ1040 Pin40 Pin40 P I U 1 0P3C/RTO02_0/TIOA02_1 P03/TMS PIU10137 Pin137 Pin137 PIJ204040 PICCOCDefault closed 41
in „Problem bei LAN8710A-Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
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Littelfuse_Thyristor_Kxxxzy.pdf
150 A/μs dv/dt $SJUJDBM▯3BUF▯PG▯3JTF▯PG▯0GG▯TUBUF▯7PMUBHF 1500 7▯çT T S 4UPSBHF▯5FNQFSBUVSF▯3BOHF -40 150 °C T +VODUJPO▯5FNQFSBUVSF▯3BOHF -40 125 °C J %0▯▯▯ 18 3 θJL 5IFSNBM▯3FTJTUBODF ▯+VODUJPO▯UP▯-FBE ¡$▯8 %0▯▯▯▯▯ ▯ 30 3 5IFSNBM▯3FTJTUBODF ▯+VODUJPO▯UP▯$BTF 50▯▯▯ 35 ¡$▯8 θJC %0▯▯▯ ▯▯ 3 θJA 5IFSNBM▯
in „OLYMP Gastherme GasStar Compact 8-27kW Zündgerät defekt.“ · Haus & Smart Home ·
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PDF
Vergleichsliste.pdf
ECG262 T1P126 2SB791 T1P127 ECG263 D44E3 TIP102 2N6387 2SD635 ECG264 D45E3 TIP107 2N6668 2SB886 ECG265 D40C7 ECG266 D40C8 ECG267 D40C3 ECG268 D40K2 ECG269 D41K2 ECG270 T1P140 T1P141 T1P142 ECG271 T1P145 T1P146 T1P147 ECG272 MPSU45 ECG273 MPSU95 ECG274 2N6295 ECG275 2N6297 ECG276 SG613A ECG277 2SC1034 2SC1316
in „ECG45 was ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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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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LCMXO640C-3TN144C.pdf
L2 PL9C 3 M1 PL7D 1 C M1 PL10A 3 M2 PL8A 1 T M2 PL10C 3 N1 PL8B 1 C N1 PL11A 3 M3 PL9A 1 T M3 PL11C 3 N2 GNDIO1 1 N2 GNDIO3 3 P2 TMS 1 TMS P2 TMS 2 TMS P3 PL9B 1 C P3 PB2C 2 N4 TCK 1 TCK N4 TCK 2 TCK P4 PB2A
in „Erfahrung mit Siglent SDG 10xx Arbitrary Generatoren?“ · Markt ·
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DSPtricks_lyons.pdf
20 0 2 0 k k 2 a b 1 0, b = 2-1) (-M ), k 0 I -1 -40 -5 c1= 1, θ = kπk/N 0 10 20 -1 0 1 -0.5 0 0.5 -0.5 0 0.5 Time Real part Frequency Frequency DC Bias Removal 1 1 0 2 a α = 0.8 y a 0 1, a = 1, a = 0, 2 0.5 a0 -10 0 b = 1, b = -1, b = 0, g 0 1 2 0 m c
in „digitale Filter“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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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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sniu023.pdf
display the data. 1 EVM Key Features 1. Evaluate TDC1000 Ultrasonic Analog-Front-End (AFE) 2. On-board C2000-TMS320F28035PAG Microcontroller 3. User Friendly TDC1000-C2000 GUI interface 4. Ports for two Ultrasonic Transducers 5. Ports for two RTD Sensors 6. Powered by USB 4 General Description Submit Documentation
in „Ultraschallwandler ansteuern“ · Analoge Elektronik und Schaltungstechnik ·
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Sager_D87P_Service_Manual_Part3.pdf
A A A A A A A A A A A A A A A A A A A A A A A B B B B B B B C C C C C C C D D D D D D D E E E E E E E F F F F F F L K K J HA32 T40 HD[0..63] C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C C
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msp430fr5729.pdf
°C) – MIN(–40°C to 85°C)) / MIN(–40°C to 85°C) / (85°C – (–40°C)) (2) Calculated using the box method: (MAX(2.0 V to 3.6 V) – MIN(2.0 V to 3.6 V)) / MIN(2.0 V to 3.6 V) / (3.6 V – 2 V) NOTE In LPM3, the
in „Implementierung eines ADT7301 an einem MSP430FR5729“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SwissArmyKnife.pdf
2 i k a b 1 0,b = 2−1) (−M ), k 0 I–1 –40 –5 c 1 1, θ = kπk/N 0 10 20 –1 0 1 –0.5 0 0.5 –0.5 0 0.5 Time Real Part Frequency Frequency t 0 2 dc Bias Removal 1 a 1 α= 0.8 P a 0= 1,a =1α,a = 02 0.5 r i 0 –10 0 b 0 1,b = 11,b = 0, 2 0 g c 1 0 m–
in „The Swiss Army Knife of Digital Networks“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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media32.pdf
1 2 3 4 A A U_Power U_Controller Power.SchDoc Controller.SchDoc B B C C Title D D Size Number Revision A4 Date: 18.04.2009 Sheet of File: C:\Altium\media32\media32.SchDoc Drawn By: 1 2 3 4 1 2 3 4 COUA2 V_BAT COUA3 V_USB 4 UA2 BQ24070 15 2 UA3 3 A 2 PIUA2IN OUT PI162015
in „MP3 Player mit Clickwheel und S65“ · 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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at91rm9200-ek.pdf
BA0 DQ13 51 D14 A17 BA1 21 BA0 DQ13 51 D30 BA1 DQ14 53 D15 BA1 DQ14 53 D31 A14 DQ15 A14 DQ15 36 N.C 3V3 36 N.C 3V3 40 N.C VDD 1 40 N.C VDD 1 VDD 14 VDD 14 SDCKE 37 CKE VDD 27 SDCKE 37 CKE VDD 27 C VDDQ 3 VDDQ 3 C SDCK 38 9 N N SDCK 38 9 N N CLK VDDQ 43 N 0 N 0 N CLK VDDQ 43 N 0 N 0 N A0 NBS0 15 VDDQ
in „SD-RAM aus PC für AT91RM9200 (ARM9)“ · Mikrocontroller und Digitale Elektronik ·
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XC4000.pdf
XC4008 -5 C I C I C I C I C I -4 C C C C C -10 M B M B XC4010 -6 C I C I C I M B M B C I C I C I -5 C I C I C I C I C I C I -4 C C C C C C -6 C I C I C I C I XC4010D -5 C I C I C I C I -4 C C C -6 C I C I C I CI
in „Xilinx XC4006“ · FPGA, VHDL & Co. ·
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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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mb1045_changed.pdf
0 8 P0CN200455 46 P0CN20046 +2V8 7 P0CN5039 9 40 P0CN5040 6 +2V8 L5 C C C C P C60 P P0CN200477 48 P0CN20048 2 2 BEAD(FCM1608KF-601T03) 0 8 C58 P0CN20049 P0CN20050 C117 7 P0CN5041 P0CN5042 6 C116 +1V8 C 10uF 100nF 9 50 +3V3 100nF C 1 42 1C0nF 2 P0L401
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mb1045_changed_korrigiert.pdf
0 8 P0CN200455 46 P0CN20046 +2V8 7 P0CN5039 9 40 P0CN5040 6 +2V8 L5 C C C C P C60 P P0CN200477 48 P0CN20048 2 2 BEAD(FCM1608KF-601T03) 0 8 C58 P0CN20049 P0CN20050 C117 7 P0CN5041 P0CN5042 6 C116 +1V8 C 10uF 100nF 9 50 +3V3 100nF C 1 42 1C0nF 2 P0L401
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DM-KIT-SSK_for_BF533.pdf
TP90 TP91 16 16 36 36 0 1 DMB_SPI_MOSI 1 DVCC1V8 17 17 37 37 S 19 18 38 39 DMB_MOSI DVCC1.8V 20 20 40 40 TP92 PN3030INTERFACE DMB Modular Interface 1 DMB_SPI_CSB C DMB_CSB C T T T S S S T R320 2 1 0 5 S4 4 5K11 6 3 5K12 8 1 5K1 GND SW DIP-4 3V3 Host Interface Mode Selection D U69A DMB_OE DMB_OE 1 1OE
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MB1075.pdf
PA14 PA141 TCK/SWCLK TETE TE IM[0..3] IM[0..3] SDCLKLK SDCLK BA0 BA0A0 A STM32F4_USART1_TX NPA9 PA131 TMS/SWDIO RDXDX SDCKE1E BA1A1 PA9 PA13 PB3B T_SWO WRX_DCXCX RDX I2C3_SCLCL SDCKE1 BA1 PB3 DCX_SCLC WRX_DCX I2C3_SCL I2C3_SDADA SDNE1E NBL0L0 NRST T_NRST SDADA DCX_SCL I2C3_SDA TP_INT1T SDNE1 NBL0 NBL1L1
in „.net auf STM32F429ZI“ · Mikrocontroller und Digitale Elektronik ·
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Cypress_CY8C58LP_001-84932_0F-491909.pdf
25 20 8 A 80 MHz A 85 °C m 15 24 MHz , 6 25 °C n n r 6 MHz r -40 °C C 10 C 4 5 2 0 0 -40 -20 0 20 40 60 80 1.5 2 2.5 3 3.5 4 4.5 5 5.5 Temperature, °C V DDV Table 11-3. AC Specifications Parameter Description Conditions Min
in „UART-Schnittstelle 2x verwenden?“ · Mikrocontroller und Digitale Elektronik ·
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schematics.pdf
MB FLASH AWE (2M x 16) 3 3 3V_BP 3V_BP 3V_BP C35 C30 C31 C32 C33 C34 C42 C43 C41 C44 C45 C46 C37 C38 C39 C40 C36 0.01UF 0.01UF 0.01UF 0.01UF 0.01UF 0.01UF 0.01UF 0.01UF 0.01UF 0.01UF 0.01UF 0.01UF 0.01UF 0.01UF 0.01UF 0.01UF 0.01UF 402 402 402 402
in „Versorgung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
WIZFI250-H-WIZnet-datasheet-24907049.pdf
StandardI/Os ±1 lkg Inputleakagecurrent μA V =5V,I/OFT 3 IN Weakpull-upequivalent R PU V INVSS 30 40 50 kΩ resistor) Weakpull-down R PD VIN=VDD 30 40 50 kΩ equivalentresistor) C IO I/Opincapacitance 5 pF 1. FT = Five-volt tolerant. In order to sustain a voltage higher than VDD+0.3 the internal pull-
in „Wlan2Serial Modul für 5 euro“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS8327IPW.pdf
mV) QUANTITY ADS8327IPW Tube 90 TSSOP-16 PW ADS8327IPWR Tape and reel 2000 ADS8327I ±3 –1/+2 ±1.25 –40°C to 85°C ADS8327IRSAT Small tape and reel 250 4X4 QFN-16 RSA ADS8327IRSAR Tape and reel 3000 ADS8327IBPW Tube 90 TSSOP-16 PW Tape and reel ADS8327IBPWR 2000 ADS8327IB ±2 ±1 ±1 –40°C to 85°C Small tape
in „Kennt jemand ADS8327? Ist er wirklich SPI-kompatibel?“ · Mikrocontroller und Digitale Elektronik ·
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STM32_F4VE_SCHEMATIC.PDF
3V3 PIR601 PA13/TMSPIP107 TDI GND PIP108 CD/DAT3 PIU503IO_CMD PIR2601PIR2602 3V3 3 2 R6R6 PA14/TCK 9 TMS GND 10 CMD 4 R26R26 PIC501 PIC301 0VCCOUT P IC2C1PIC201PIC401 5V J6J6 RSTST 10K P1P109 TCK GND PI12010 VCC PI5 SDIO_SCKR27OR2 10K PIC190 C3C N CO44 PIR60RSTST PB3/TDO 13P1011RTCK GND PI14012 CLK PI6505
in „Neues Entwicklungsboard STM32F407“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32_F4VE_SCHEMATIC.PDF
3V3 PIR601 PA13/TMSPIP107 TDI GND PIP108 CD/DAT3 PIU503IO_CMD PIR2601PIR2602 3V3 3 2 R6R6 PA14/TCK 9 TMS GND 10 CMD 4 R26R26 PIC501 PIC301 0VCCOUT P IC2C1PIC201PIC401 5V J6J6 RSTST 10K P1P109 TCK GND PI12010 VCC PI5 SDIO_SCKR27OR2 10K PIC190 C3C N CO44 PIR60RSTST PB3/TDO 13P1011RTCK GND PI14012 CLK PI6505
in „STM32F407 Black und Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
manual_20digilab_201kx208.pdf
32 J6_A32 13 GND 14 CLK2 33 J6_A33 34 GND 15 GND 16 N/C 35 J6_A35 36 J6_A36 17 GND 18 N/C 37 J6_A37 38 J6_CSN 19 GND 20 N/C 39 J6_A39 40 GND DECEMBER2000 ▯▯ DIGILAB 1Kx208 MANUAL 8VHU▯&RQQHFWRUV▯-▯▯-▯▯ All ACEX 1K pins are accessible through connectors J1
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ths0842.pdf
accuracy PARAMETER TEST CONDITIONS MIN TYP MAX UNIT Integral nonlinearity (INL), bSee Note 1 TA= –40⋅C to 85⋅C –2.2 〉 1.5 2.2 LSB Differential nonlinearity (DNLSee Note 2 TA= –40⋅C to 85⋅C –1 〉 0.7 2 LSB Offset error 〉 0.1 5 %FS Gain error TA= 40⋅C to 85⋅C, (see Note 3) 〉 7.1 %FS Offset match TA= –40
in „ADC - Wie schnell aktualisiert der? Ist ein Oszi möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PWM_20schemes_20for_20BLDC.pdf
0.884 pwm 2 12.00 1.615 14.833 10.02 2001 76.54 4.55 0.893 pwm 1 12.00 1.658 14.804 10.00 2001 74.40 5.09 1.000 pwm 0 12.00 1.607 14.796 10.00 2000 76.73 4.49 0.881 DriveType InputVtg Input C'rt Output Torque Speed Overall Eff. Total Loss Ratio of Loss (V) (Arms) (W) (oz-in) (RPM) (%) (W) (pwm1 = 1)
in „Diskrete H-Brücke“ · Analoge Elektronik und Schaltungstechnik ·
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msp430fr5969.pdf
LFXT 12 ext, 16 ch. 2, 28) 7 2 1 no UART R 2 int ch. 31 38 DA O 14 ext, D DCO 2 int ch. 3, 37) 33 40 RHA MSP430FR5847 32 1 LFXT 16 ch. 2, 28) 7 2 1 no UART U 12 ext, 31 38 DA C 2 int ch. DCO 14 ext, 3, 37) T MSP430FR58471 32 1 LFXT 2 int ch.16 ch. 2, 28) 7 2 1 no I2C 33 40 RHA P 14 ext, R (7) 33 40
in „Probleme mit Konfiguration der SPI-Schnittstelle am MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1132-MAX1133.pdf
ADD, DVDD = +4.75V 3 A: AVDD DV DD= +4.75V 3 3 B: ADD , DDD = +5.00V A B: AVDD, DVDD= +5.00V A ) A C: AVDD, DDD = +5.25V M L C: AVDD, DVDD = +5.25V M A M V -1 A 0.03 ( 10 ( S C N E L R A F U L B ( 0.02 Y V -2 R P 1.00 E R B U S E S O C I T -3 G 0.01 T0.10 A A 0 -4 0.01 -40 -20 0 20 40 60 80 -40 -20
in „50 Hz Tiefpass-Filter mit Eingangsimpedanz ADC möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schematic_Prints_ARC-DET_QFN-56.pdf
PID201 GND 13J5011 PI14012 374 SML-P11YTT86 5 PIJ5013 PIJ5014 Place Cap next to pins 14 & 15 of U8 P7 TMS320F28033RSHT J5 I2 D3 CR O98 GND 2.21k PIR98PIR98PID302 PID301 LED_3 I1 374 SML-P11UTT86 GND GND D D Plug holes in thermal pad under U8 to prevent solder problems Designed for:National Semiconductor
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PDF
Schematic_Prints_ARC-DET_QFN-56.pdf
PID201 GND 13J5011 PI14012 374 SML-P11YTT86 5 PIJ5013 PIJ5014 Place Cap next to pins 14 & 15 of U8 P7 TMS320F28033RSHT J5 I2 D3 CR O98 GND 2.21k PIR98PIR98PID302 PID301 LED_3 I1 374 SML-P11UTT86 GND GND D D Plug holes in thermal pad under U8 to prevent solder problems Designed for:National Semiconductor
in „Schwingkreis (RLC)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schematic_Prints_ARC-DET_QFN-56__1_.pdf
PID201 GND 13J5011 PI14012 374 SML-P11YTT86 5 PIJ5013 PIJ5014 Place Cap next to pins 14 & 15 of U8 P7 TMS320F28033RSHT J5 I2 D3 CR O98 GND 2.21k PIR98PIR98PID302 PID301 LED_3 I1 374 SML-P11UTT86 GND GND D D Plug holes in thermal pad under U8 to prevent solder problems Designed for:National Semiconductor
in „TI Board Arc Detection“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ccpneu.c
Bus - added V_MEMROM0 | 2003-08-11 1.37.03 Tri - implemented P_MEM_ROM and P_MEM_RAM to support M16C Mitsubishi. | 2003-10-14 1.38.00 Tri - version skipped due to special version for TMS320 | 2003-10-14 1.39.00 Tri - version skipped due to special version for TMS320 | 2003-10-14 1.40.00 Tri - merge
in „XC16 Compiler Error“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PLC_Dostert.pdf
der Kenntnis der wesentli- chen Parameter abgeschätzt werden, die in der Shannonschen Formel S C = B ⋅og 12 + N (3.1) vorkommen. In (3.1) gibt C die maximale Datenrate in bit/s an, bei der theoretisch eine fehlerfreie Übertragung möglich ist. C eine Obergrenze, die in der Praxis nicht erreichbar
in „Power Line bzw. Power LAN im Selbstbau“ · Haus & Smart Home ·
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PDF
msp430g2452.pdf
V 0.0 −40.0 −20.0 0.0 20.0 40.0 60.0 80.0 100.0 120.0 −40.0 −20.0 0.0 20.0 40.0 60.0 80.0 100.0 120.0 T − Temperature − C TA− Temperature − °C A Figure 4. LPM3 (VLO) Current vs Temperature Figure 5. LPM4 Current
in „MSP430 Gleitkommazahl in Flash speichern“ · Mikrocontroller und Digitale Elektronik ·
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eGC.pdf
VSS PN1C40A3 PIIC40M9 VSS PIIC40P9 SSTL18 Termination PIIC4VDD VSS PIIC40J3 1V8 10 40 20 60 70 I 5B5B C1232 C124 C1252 C126 C1272 PIIC4VDDQ VSSQ PIIC40A7 3V3 DDR2_VREF PIIC5VCC VSS PIIC50F7 10 µFitor 100 nFtor 100 nFtor 100 nFtor 100 nFtor PIIC4VDDQ VSSQ PIIC40B2 PWRW 2 LP2997 PIIC5VCC VSS PIIC50K3 10 40 20 60 70 PC7C4VDDQ VSSQ PD2C40B8 PIPWRSD# VREF PIPWR204 I0 PG4C5VCC VSS PC5C50K8 PIIC40C9Q VSSQ PIIC40D8 1V8 PIPWR206 C1282 PIIC5VCC VSS PIIC50C5 C E9 VDDQ
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430F5438IPZ.pdf
MIN(-40 to 85°C)) / MIN(-40 to 85°C) / (85°C – (–40°C)) (2) Calculated using the box method: (MAX(1.8 to 3.6 V) – MIN(1.8 to 3.6 V)) / MIN(1.8 to 3.6 V) / (3.6 V – 1.8 V) Internal Reference, Low-Frequency Oscillator
in „Strombelastbarkeit MSP430“ · Mikrocontroller und Digitale Elektronik ·
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73244.pdf
1.2 ( ( 5 ° 2 –4 2 0.8 m m f f t –6 a 0.4 e e D D –8 0.0 –10 –0.4 –40 –20 0 20 40 60 80 100 –40 –20 0 20 40 60 80 100 Temperature (°C) Temperature (°C) POWER-DOWN SUPPLY CURRENT vs TEMPERATURE SUPPLY CURRENT vs TEMPERATURE 470 2.3 ) A 460 2.2 ( n 450 ) r A2.1 fSAMPLE= 500kHz u 440 ( l n2.0 p r u 430 u S y1.9 w 420 p d u r 410 S1.8 fSAMPLE= 125kHz w P 400 1.7 390 1.6 –40 –20 0 20 40 60 80 100 –40 –20 0 20 40 60 80 100 Temperature (°C) Temperature (°C) CHANGE IN INTEGRAL LINEARITY and SUPPLY CURRENT vs SAMPLE RATE DIFFERENTIAL LINEARITY vs SAMPLE RATE 2.4 0.4 B 2.3 S
in „ADC Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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Steuersystem_Gew_shaus_4.pdf
PWM_M2 BasicC X14-4 T1 PB1 2 BasicC X9-2 ICP PD6 20 BasicC X6-1 Timer2 8-Bit BasicC 0C2 PD7 21 BasicC X15-3 INT0 PD2 16 IntKey BasicC INT1 PD3 17 INT_RTC BasicC INT2 PB2 3 ImpDoo BasicC X9-3 ADC0 PA0 40 PTCWat BasicC
in „Einfaches µC Betriebssystem - z. B. für SPS“ · Compiler & IDEs ·
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ds-mb86r01-jade-rev1-4.pdf
(High level) Input voltage (Low level) 3.3V CMOS VIL -0.3 – 0.8 V Operating ambient temperature T -40 – 85 °C A Junction temperature TJ -40 – 125 °C Table 8-5 SSTL_18 Recommended Operating Conditions Parameter Symbol Min. Typ. Max. Unit Power supply voltage VDE (DDRVDE) 1.7 1.8 1.9 V VDDI 1.10 1.20 1.30
in „Bild im Bild in der Instumententafel Range Rover“ · Mikrocontroller und Digitale Elektronik ·
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msp430f5529.pdf
°C) – MIN(-40 to 85°C)) / MIN(-40 to 85°C) / (85°C – (–40°C)) (2) Calculated using the box method: (MAX(1.8 to 3.6 V) – MIN(1.8 to 3.6 V)) / MIN(1.8 to 3.6 V) / (3.6 V – 1.8 V) Internal Reference, Low-Frequency
in „Fragen zu ADC“ · Mikrocontroller und Digitale Elektronik ·
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AT91SAM9261-EK_Evaluation_Board.pdf
2.7 AT91SAM9261- EK Block Diagram Figure 2-3. Block Diagram DBGU TFT ETHERNET 10/100 RS232 HEADPHONE 320 x 240 1/4 VGA DISPLAY JTAG/ICE RJ45 OUT WITH TOUCHSCREEN D D VUSB T R A B ADM3202A POWER SUPPLY NOT POPULATED AT73C213 5 VDC LINEAR REGULATOR EMAC + PHY STEREO VDD3V3 TRACE PORT AUDIO DAC 3V3 ETM YELLOW
in „ARM91SAM9261 Entwickler gesucht -Dringend“ · Mikrocontroller und Digitale Elektronik ·
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Diamond_WP.pdf
to provide an instruction that repeats the succeeding instruction a fixed number of times (e.g. TI TMS320C2x, Intel x86). For 1-instruction loops, a repeat prefix instruction eliminates loop overhead and saves power by eliminating the need to repeatedly fetch the same instruction within the loop. Some
in „Nachfolger vom esp8266: ESP32 - besser, schneller“ · Offtopic ·