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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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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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Acer_Aspire_5742G_Compal_LA-5893P_Rev0.1_Schematic.pdf
_0402_1% AP25 RSVD1 DMI_PTX_HRX_N2 C23 DMI_RX#[1] PEG_RBIAS A25 1 2 AL25 RSVD2 RSVD34 AH25 DMI_PTX_HRX_N3 B22 DMI_RX#[2] 15mil PEG_GTX_C_HRX_N15 AL24 RSVD3 RSVD35 AK26 A21 DMI_RX#[3] PEG_RX#[0] K35 PEG_GTX_C_HRX_N14
in „Laptop Akkus ausbauen und mit Netzteil betreiben“ · PC Hard- und Software ·
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ds-mb86r01-jade-rev1-4.pdf
[0] 157 R25 MDQ[15] 257 C23 MEM_EA[2] 357 J5 VSS 457 T14 VSS 58 W26 MDQSP[0] 158 P25 DDRVDE 258 C22 MEM_EA[6] 358 K5 VSS 458 T15 VSS 59 V26 VSS 159 N25 DDRVDE 259 C21 MEM_EA[10] 359 L5 VDDE 459 T16 VSS 60 U26 MDQSN[1] 160 M25 MDQ[21] 260 C20 MEM_EA[14] 360 M5 VDDE 460 R16 VSS 61 T26 MDQSP[1] 161 L25 MDQ[16] 261 C19 MEM_EA[18] 361 N5 VDDI 461 P16 VSS 62 R26 VSS 162 K25 VREF1 262 C18 MEM_EA[22] 362 P5 USB_AVDB 462 N16 VSS 63
in „Bild im Bild in der Instumententafel Range Rover“ · Mikrocontroller und Digitale Elektronik ·
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msp430fr5969.pdf
(I2C) UCB0TXIFG1 (I2C) UCB0TXIFG1 (I2C) 22 UCB0RXIFG2 (I2C) UCB0RXIFG2 (I2C) UCB0RXIFG2 (I2C) 23 UCB0TXIFG2 (I2C) UCB0TXIFG2 (I2C) UCB0TXIFG2 (I2C) 24 UCB0RXIFG3 (I2C) UCB0RXIFG3 (I2C) UCB0RXIFG3 (I2C) 25
in „Probleme mit Konfiguration der SPI-Schnittstelle am MSP430“ · Mikrocontroller und Digitale Elektronik ·
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ADS8327IPW.pdf
ADS8327I, ADS8328I –1 ±1 2 ADS8327IB, (3) ADS8328IB – 1 ±0.4 1 EO Offset error mV ADS8327I, ADS8328I –1.25 ±0.4 1.25 Offset error drift 0.5 PPM/°C EG Gain error – 0.25 –0.07 0.25 %FSR Gain error drift 0.3 PPM/°C At dc 70 CMRR Common mode rejection ratio dB VI= 1 Vppat 1 MHz 50 Noise 33 V RMS PSRR Power supply
in „Kennt jemand ADS8327? Ist er wirklich SPI-kompatibel?“ · Mikrocontroller und Digitale Elektronik ·
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MAX1132-MAX1133.pdf
A: AVDD DV DD= +4.75V 3 X B A B: AVDD, DVDD= +5.00V A B 1.0 M ( 0.6 M A11.1 C: AV , DV = +5.25V M M ( Y ( DD DD / Y R 0.4 N10.9 2 R 0.5 E R E L 0.2 U10.7 3 L N C C N 0 N 0 P10.5 1 N A -0.2 P10.3 B A T S 1 G-0.5 R -0.4 A10.1 T E O A X I I -0.6 T 9.9 -1.0 D A -0.8 9.7 -1.5 -1.0
in „50 Hz Tiefpass-Filter mit Eingangsimpedanz ADC möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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MachXO2FamilyDataSheet.pdf
are helCCIOor GND and all outputs are tri-stated. 3. Typical user pattern. 4. JTAG programming is at 25 MHz. 5. TJ= 25 °C, power supplies at nominal voltage. 6. Per bank. V = 2.5 V. Does not include pull-up/pull-down. CCIO 3-5 DC and Switching Characteristics MachXO2 Family Data Sheet Programming and Erase
in „Statemachine springt in falsche "states" warum?“ · FPGA, VHDL & Co. ·
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PDF
00643b.pdf
Cliffs, N.J., 1992. The IMA Reference ADPCM algorithm was written for a 5. 32-kbits/s ADPCM with the TMS32010, Digital PC using Borland C++ version 3.1. This program uses Signal Processing Applications with theTMS320 the same routines that are used in Appendix C. A raw Family, SPRA012, Jay Reimer, Mike
in „Messdaten Kompression“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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ths0842.pdf
T D 8-Bit Resolution 40 MSPS Sampling S D L F F S DD U U Analog-to-Digital Converter (ADC) A Q Q P C R R B A A C C O O D Single or Dual Parallel Bus Output 36 35 34 33 32 31 30 29 28 27 26 25 D Low Power Consumption: 275 mW Typ Using External References AV DD 37 24 DRVSS I+ 38 23 DA0 D Wide Analog Input
in „ADC - Wie schnell aktualisiert der? Ist ein Oszi möglich?“ · Mikrocontroller und Digitale Elektronik ·
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17mb70-5-sema_schematics.pdf
U16 C24 GPIO_3 TDO H3 R3 TDO_FRC C437 PNX5100 6 3 EPROM_PWR_FRC E C26 J1 E GPIO_4 TMS 7 R2 2 TMS_FRC 1 10u 4 0 10V B25 GPIO_5 TRSTN J2 R1 TRST_FRC C115 2 k 8 47R 1 1 1 1 1 1 2 2 R 4 B26 AF21 R557 100n 1 2
in „LED TV Medion MD 30630 defekt, nicht einmal standby Lampe“ · Analoge Elektronik und Schaltungstechnik ·
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MSP430F5438IPZ.pdf
HIGH-LEVEL OUTPUT VOLTAGE 0.0 0.0 A VCC= 3.0V A VCC= 1.8V m Px.y m Px.y – – -1.0 n -5.0 n e e u u -2.0 C C u u t -10.0 t -3.0 u u l l e e -4.0 e e - -15.0 - TA= 85°C g T A 85°C g -5.0 H H l l i i -6.0 TA= 25°C p -20.0 T = 25°C p T A T – – -7.0 I IO -25.0 -8.0 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 0.0 0.5 1.0
in „Strombelastbarkeit MSP430“ · Mikrocontroller und Digitale Elektronik ·
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Steuersystem_Gew_shaus_4.pdf
8 BasicC MISO PB6 7 BasicC SS PB4 5 SwDoor BasicC X9-4 MOSI PB5 6 BasicC TXD PD1 15 BasicC RXD PD0 14 BasicC SDA PC1 23 BasicC SCL PC0 22 BasicC TDI PC5 27 BasicC TDO PC4 26 BasicC TMS PC3 25 BasicC TCK PC2 24
in „Einfaches µC Betriebssystem - z. B. für SPS“ · Mikrocontroller und Digitale Elektronik ·
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Nexys2_rm.pdf
416,800 521 32 us 800 electron beam intensity, with practical T disp Display tim15.36ms 384,000 480 25.6 us 640 refresh frequencies falling in the 50Hz to T pw Pulse width 64 us 1,600 2 3.84 us 96 120Hz range. The number of lines to be T Front porch 320 us 8,000 10 640 ns 16 displayed at a given refresh
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AtMega644P_Datasheet.pdf
VCC AREF GND GND XTAL2 AVCC XTAL1 PC7 (TOSC2/PCINT23) (PCINT24/RXD0) PD0 PC6 (TOSC1/PCINT22) (PCINT25/TXD0) PD1 PC5 (TDI/PCINT21) (PCINT26/INT0) PD2 PC4 (TDO/PCINT20) 3 4 5 6 7 0 1 2 3 D D D D D C N C C C C P P P P P V G P P P P 1 B A P A L A K S N C C / C S D C M / O O B O 6 7 8 9 2 8 9 C 1 T 1 T 1
in „Alkoholmessgerät programmieren“ · Mikrocontroller und Digitale Elektronik ·
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atmega644.pdf
VCC AREF GND GND XTAL2 AVCC XTAL1 PC7 (TOSC2/PCINT23) (PCINT24/RXD0) PD0 PC6 (TOSC1/PCINT22) (PCINT25/TXD0) PD1 PC5 (TDI/PCINT21) (PCINT26/INT0) PD2 PC4 (TDO/PCINT20) 3 4 5 6 7 0 1 2 3 D D D D D C N C C C C P P P P P V G P P P P 1 B A P A L A K S N C C / C S D C M / O O B O 6 7 8 9 2 8 9 C 1 T 1 T 1
in „SPI-Kommunikation Atmega644 - ADS1118“ · Mikrocontroller und Digitale Elektronik ·
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PDF
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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cyc_c5v1-1299412.pdf
With respect to ground (3) –0.5 2.4 V V DC input voltage –0.5 4.6 V I OUT DC output current, per pin –25 25 mA TSTG Storage temperature No bias –65 150 °C TAMB Ambient temperature Under bias –65 135 °C TJ Junction temperature BGA packages under bias — 135 °C Table 4–2. Cyclone Device Recommended Operating
in „BMW Nightvision (FLIR PathfindIR) "Wärmebildkamera"“ · Mikrocontroller und Digitale Elektronik ·
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lpc11u3x.pdf
6][7][8] system clock = 12 MHz [4][7] Deep-sleep mode; V DD = 3.3 V; - 300 - A Tamb = 25 C Power-down mode; V DD = 3.3 V; - 2 - A Tamb = 25 C [10] Deep power-down mode; - 220 - nA VDD = 3.3 V; Tamb= 25 C Standard port pins, RESET I LOW-level input current V = 0 V; on-chip pull-up resistor
in „LPC11U3 CRP zurücksetzen“ · Analoge Elektronik und Schaltungstechnik ·
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Schematic_Prints_ARC-DET_QFN-56.pdf
LMS202ECMX C61 GND U88 GND 020.1uF CSTCR6M00G53-R0 Y1 C1 P I U XRS 5 GPIO0/EPWM1A PIU8049 LED_10 PIY101 PIY103 C60 Place Cap next to pins 25 & 26 of U8 GPIO1/EPWM1B/COMP1OUT P I U 8 NLLED0 C20.1uF +3.3VDC Place Cap
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Schematic_Prints_ARC-DET_QFN-56.pdf
LMS202ECMX C61 GND U88 GND 020.1uF CSTCR6M00G53-R0 Y1 C1 P I U XRS 5 GPIO0/EPWM1A PIU8049 LED_10 PIY101 PIY103 C60 Place Cap next to pins 25 & 26 of U8 GPIO1/EPWM1B/COMP1OUT P I U 8 NLLED0 C20.1uF +3.3VDC Place Cap
in „Schwingkreis (RLC)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schematic_Prints_ARC-DET_QFN-56__1_.pdf
LMS202ECMX C61 GND U88 GND 020.1uF CSTCR6M00G53-R0 Y1 C1 P I U XRS 5 GPIO0/EPWM1A PIU8049 LED_10 PIY101 PIY103 C60 Place Cap next to pins 25 & 26 of U8 GPIO1/EPWM1B/COMP1OUT P I U 8 NLLED0 C20.1uF +3.3VDC Place Cap
in „TI Board Arc Detection“ · Analoge Elektronik und Schaltungstechnik ·
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nightsky_arx15.pdf
P/N = R81 G0:K4G41325FE-HC25 / G1R/G2R:K4Z80325BC-HC14 ▯ B N N N N N FBB_CMD2 J1 RESET 121_1%_04 R82 20180712 follow N18E circuit no mount 8 C1285 8 C1284 8 C320 C257 8 C236 8 C228 C273 C263 C287 C292 C262 121_1%_04 E 2 E 2 E 2
in „SMD TGAJ TVS Diode USB“ · Mikrocontroller und Digitale Elektronik ·
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px1011a.px1012a.pdf
PHY Table 12. PCI Express PHY power supplies Symbol Pin Type Signaling Description VDDA1 D5 power 1.25 V analog power supply for serializer and de-serializer VDDA2 D4 power 3.3 V analog power supply for serializer and de-serializer VDDD1 E3, E5 power 3.3 V power supply for JTAG I/O VDDD2 C3, C5, C7, E7, power 2.5 V power supply for SSTL_2 I/O G5, G7 VDDD3 E6, F5, F6 power 1.25 V power supply for core VDD D3 power 1.2 V power supply for high-speed serial PCI Express I/O pads and PVT VSS A1, B2, B5, B8, ground ground C2, C4, C6, D1, D2, D7, E2, E8, F2, F7, G1, G2, G4, G6, H2
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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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K2000-schematics.pdf
-20V 79M25 VIN G VOUT 3 -15V J1016 U124 C232 3 CR103 104 1 VIN N VOUT 3 +5V 5V G AGND 2 - + 1 2 7805 R280 49.9R1% C + C146 104 C223 C VM18 2200uF 16V C151 4 VM18 104 TP102 AGND 1 104 C233 AGND AGND AGND TP106 1
in „Kalibrierung Keithley 2000 Multimeter“ · Mikrocontroller und Digitale Elektronik ·
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fit_app0.pdf
94 92 17 B 617 317 21 15 33 41 39 37 18 618 318 - - - 40 38 36 19 619 319 20 14 32 39 37 35 20 620 320 19 13 30 37 35 33 21 621 321 18 12 29 36 34 32 22 622 322 - - 28 35 33 31 23 623 323 - - - 34 32 30 24 No Casout 624 324 17 11 27 33 31 29 25 625 325 16 10 25 31 27 25 26 626 326 - - - 30 25 23 27 627 327 - - 24 29 23 21 28 628 328 - - 23 28 22 20 29 629 329 - - 22 27 21 19 30 630 330 14 8 20 25 19 17 31 631 331 - - - 24 18 16 32 No Casout 632 332 13 7 19 23 17 15 33 C 633 333 24 18 36 44 42 40 34 634 334 - - - 45 43 41 35 635 335 25 19 37 46 44 42 36 636 336 26 20 39 48 46 44 37 637 337 27
in „CPLD ATF1504 sporadisch seltsames Verhalten nach Einschalten“ · FPGA, VHDL & Co. ·
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PDF
LENOVO_THINKPAD_YOGA_900-13ISK_LCFC_NM-A411_BYG40_Rev1.0.pdf
2 C320 C050 LCD_BL_EN_R 25 23 24 26 1 u 27 25 26 28 0.1u_0201_10V6K 2 1 C3 U 0 22 LCD_BL_PWM EC_PSR_R 29 27 28 30 0.1u_0201_10V6K 2 1 C2 EDP_AUX_DP 2 2 _ 1 2 31 29 30 32 EDP_AUX_DN 2 6 1 1 2 EDP_PWR 33 31
in „Notebook Leistungsteil reparatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
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 ·
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msp430f5529.pdf
HIGH-LEVEL OUTPUT VOLTAGE 0.0 0.0 A VCC= 3.0V A VCC= 1.8V m Px.y m Px.y – – -1.0 n -5.0 n e e u u -2.0 C C u u t -10.0 t -3.0 u u l l e e -4.0 e e - -15.0 - T A 85°C g TA= 85°C g -5.0 H H l a i i -6.0 T A 25°C p -20.0 T = 25°C p T A T – – -7.0 I IO -25.0 -8.0 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 0.0 0.5 1.0
in „Fragen zu ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
philips_chassis_qfu2.1e_la.pdf
Unit with Integrated Led Driver A02 A02 BOOST ! L401 1 4 MASTER SLAVE OPEN TP178 TP185 ! L402 D401 TP320 TP319 VREF L413 VREF 1 4 LED_A TP184 dual bead 25uH R412 R412A R411 TP180 TP182 MBRF10150CT R421 OPEN 20K F Q402 C413 47K F 100KF TP246 6 R418 D410 AOD482/D-PACK C413A 2 TP163 T TP181 68uF/100V 68uF
in „Netzteil Philips LED TV reparieren??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
73244.pdf
0.5 ±1 LSB (2) Differential Linearity Error ±0.8 ±0.5 ±1 LSB Offset Error ±2 ±5 ±1 LSB Gain Error3) 25°C ±12 ±30 ±7 ±15 LSB –40°C to +85°C ±50 ±35 LSB Common-Mode Rejection DC, 0.2Vp-p 70 dB 1MHz, 0.2Vp-p 50 dB Noise 150 Vrms Power Supply Rejection Worst Case , +V CC = 5V ±5% 1.2 LSB SAMPLING DYNAMICS
in „ADC Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tFXKSKyORc24h2V2.pdf
, IC(TMS320C5535AZHH10,BGA-144P) 417-MC7K-1221 1 X1, CRYSTAL(CM315D,32.768KHZ,12.5PF/+-20PPM,3.2*1.427-MC7K-162 1 IC26, USB CONTROL IC ASS'Y 704-MC7K-B194 1 30 IO-Main P.C.B Ass'y Part List REF NO. DESCRIPTION
in „Risiko | Nicht?“ · Offtopic ·
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PDF
Computer_Kontakt_1986-08_09_-_21.pdf
CB B2 o0 a £826 £844 S3 OflTflBD 3 -:;: 84 DATA FB C3 SF 68 C B F •; ?: Fa ?o aE a' eeia 2718 E l 25S8 SB ftD ?fl°Se ises „ MJ g» Bi O B a 20 57 «9 FF OB^EB B2 FB 25BB : -.: mVoV^O aTcE IB 4 SB flB ea ce 36S MFB 88 IB, ; b^^beIc cfaa DB fl 8 M ?B°flC B6
in „ZX Spectrum => Upgrade von 16 auf 48 KB RAM“ · Mikrocontroller und Digitale Elektronik ·
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1a_timer_irq_ESE_Skript.pdf
ISR_2 Bild 3.11 Aktivitätsdiagramm für asynchrone Unterbrechungen (Beispiel aus 5.4.1) 3.4.3 SystemC SystemC wird derzeit als eine Sprache behandelt und entwickelt, die insbesondere zur Beschreibung von Hardware geeignet ist. Tatsächlich stellt SystemC lediglich eine Klassenbibliothek (für C++) und
in „Zeitmessung mit Timer2 asynchron“ · Mikrocontroller und Digitale Elektronik ·
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SAM-V71Q-SAM-V71N-SAM-V71J_Datasheet.pdf
SUPC Reserved 0x40008000 22 40 +0x30 0x40068000 SYSC SPI0 MLB RTT 0xA0100000 0x4000C000 21 53 +0x50 3 0x4006C000 SYSC TC0_CH0 AES WDT0 USBHS RAM +0x40 23 56 +0x60 4 0x40070000 SYSC TC0_CH1 TRNG RTC 24 57 +0x90 2 0xA0200000 +0x80 0x40074000 SYSC TC0_CH2 BRAM GPBR 25 +0x100 Reserved 0x40010000
in „Atmel SAMV71 CAN FD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LPC_2119_2129_Datenblatt.pdf
Pull-down current Vi= 5 V 10 50 150 A I Pull-up current (applies to V = 0 −15 −50 −85 A PU i P1.16 - P1.25) V3 < Vi 5 V [8] 0 0 0 A 18 Active Mode V18 = 1.8 V, cclk = 60 MHz, - 30 - mA Tamb = 25 °C, code while(1){} executed from FLASH, no active peripherals Power-down Mode V18 = 1.8 V, Tamb = +25 °C, - 10
in „LPC 2129 Versorgungsspannung via PIN“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MS-17631_2.0.pdf
HDA_DOCK_ENJNC B17 DOCKEN#/GPIO33 F SSATA_RXP5/PERP2 BE14 SATA3RXP <25> C C C C C22 HDA_DOCK_RST#/GPIO13 SATA_TXP5/PETP2 AR15 SATA3TXP <25> A D ▯ SATA_RCOMP AY5 7.5KR1%0402 +1_5VRUN } ▯ SATALED# AP3 SATA_ACTIVE# <25> R126 X_51R1%0402 JTAG_TMS AD1 JTAG_TMS SATA1GP/GPIO19
in „In Circuit Programmierer für 8-pin 150mil SOIC PM25LD512“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAM3X.pdf
22 GNDPLL 47 NRST 72 VDDIO 97 PB22 23 VDDPLL 48 PA18 73 GND 98 PB23 24 XOUT 49 PA19 74 PA21 99 PB24 25 XIN 50 PA20 75 PA25 100 PB25 16 SAM3X/A 11057B–ATARM–28-May-12 SAM3X/A 4.1.4 100-ball LFBGA Pinout Table 4-2. 100-ball LFBGA SAM3X4/8E Package and Pinout A1 PB26 C6 PB11 F1 VDDPLL H6 NRST A2 PB24 C7
in „ARM SAM3x Zähleingang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAM3X.pdf
22 GNDPLL 47 NRST 72 VDDIO 97 PB22 23 VDDPLL 48 PA18 73 GND 98 PB23 24 XOUT 49 PA19 74 PA21 99 PB24 25 XIN 50 PA20 75 PA25 100 PB25 16 SAM3X/A 11057B–ATARM–28-May-12 SAM3X/A 4.1.4 100-ball LFBGA Pinout Table 4-2. 100-ball LFBGA SAM3X4/8E Package and Pinout A1 PB26 C6 PB11 F1 VDDPLL H6 NRST A2 PB24 C7
in „Arduino Due: Programmierung ohne 16U2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
t r o o W s C C o n s t S S e R o P P c C P P c * Z Z R T E X s N S s X t P t X t t X s d l S X R a y X C m c * S X m C d Z Z c N P a E E t Z Z Z m r Z o R R k E * * c C C o C Z Z i a b d R w t t D l a C k e e i t
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HarmanKardon-SUBTS18_actsub.pdf
3W ±5% 10mm (RoHS) 2 R501,R502 Capacitors 130-3f104z503-e DISC CAPACITOR 0.1U 50V +80/-20% (RoHS) 6 C107,C117,C122,C144,C320,C322 130-sl101k503-e DISC CAPACITOR 100P 50V SL ±10% (RoHS) 3 C302,C303,C306 132-103j503-e MYLAR CAPACITOR 0.01uF 50V ±5% (RoHS) 2 C305,C317 132-103ja03-e MYLAR CAPACITOR 0.01uf
in „[gelöst] Wer kennt diese Bauteile (Feldeffekttransistor)?“ · 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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MELEXIS_Sensor-IC-MLX90316KDC_EN.pdf
− 10 V Positive Output Voltage – Standard Version + 10 V (Analog or PWM) + 14 V (200 s max − TA= + 25°C) Positive Output Voltage – SPI Version VDD + 0.3V Positive Output Voltage (Switch Out) + 10 V + 14 V (200 s max − TA= + 25°C) Output Current OUT) ± 30 mA Reverse Output Voltage − 0.3 V Reverse Output
in „MLX90316 mit Atmega8 über SPI“ · Mikrocontroller und Digitale Elektronik ·
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Sony_M610__MBX-176_.pdf
1 C151 1 C87 1 C43 1 C782 1 C46 1 C785 0402_X5R 2 0.1U_16V_Y_Y 10U_6.3V_M 0.01U_16V_K_B 1U_25V_K_B 0.01U_16V_K_B 1U_25V_K_B 0 0 1 133 100 33 / CKG_IO_VOUT R47 HCB2012KF-121T30 2 0402 2 0805_X5R 2 0402 2
in „Blitzschaden an Sony Vaio Notebook“ · PC Hard- und Software ·
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ADSP-2181_Datenblatt.pdf
Three-State Leakage Current @ VDD = max V = 0 V8 10 A 9 IN IDD Supply Current (Idle) @ VDD = 5.0 TAMB = +25°C CK = 34.7 ns 12 mA CK = 30 ns 13 mA CK = 25 ns 15 mA IDD Supply Current (Dynamic)0 @ VDD = 5.0 T = +25°C AMB 11 CK = 34.7 ns 65 mA CK = 30 ns1 73 mA t = 25 ns1 85 mA 3, 6, 12 CK C I Input Pin Capacitance @ VIN = 2.5 V, IN= 1.0 MHz, TAMB = +25°C 8 pF 6, 7, 12, 13 C O Output Pin Capacitance @ VIN = 2.5 V, IN= 1.0 MHz, TAMB = +25°C 8 pF NOTES 1Bidirectional pins: D0–D23, RFS0, RFS1, SCLK0, SCLK1, TFS0, TFS1, A1–A13, PF0–PF7. 2Input only pins
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TEKTRONIX_Component_Service_Manual_TDS_520B_Mod_CM_Digitizing_Oscilloscope_070-9710-03.pdf
, 04222 12063G105ZAT4A SMD,T&R A10C320 283–5267–00 CAP,FXD,CERAMIC:MLC,1UF,+80%–20%,25V,Y5V,1206, 04222 12063G105ZAT4A SMD,T&R A10C321 283–5267–00 CAP,FXD,CERAMIC:MLC,1UF,+80%–20%,25V,Y5V,1206, 04222 12063G105ZAT4A SMD,T&R TDS 520B Mod
in „Tektronix TDS744A Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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DELL_VOSTRO_3300__WIstron_Winery13_MB_DIS_.pdf
52 DQ23 VDD3 81 C C C C C C T M_A_DQ25 57 DQ24 VDD4 82 S S S S S S S 59 DQ25 VDD5 87 M_A_DQ26 67 DQ26 VDD6 88 M_A_DQ27 69 DQ27 VDD7 93 M_A_DQ28 56 DQ28 VDD8 94 M_A_DQ29 58 DQ29 VDD9 99 M_A_DQ30 68 100 M_A_DQ31 70 DQ30
in „Bios programmieren mit Dual Bios Main.Bin und EC.Bin ?“ · Softwareentwicklung ·
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Lenovo_schematic.pdf
12-15Mil manufacturing/debug environments ONLY. TC24 @ 1 PCH_JTAG_TRST# AU62 PCH_TRST Space:12Mil C TC25 @ 1 PCH_JTAG_TCK AE62 PCH_TCK SATA_IREF A12 Length: 500Mil C TC26 @ 1 PCH_JTAG_TDI AD61 L11 TC28 @ 1 PCH_JTAG_TDO AE61 PCH_TDI RSVD3 K10 For EMI TC30 @ 1 PCH_JTAG_TMS AD62 PCH_TDO JTAG RSVD4 C12
in „Pin Belegung bei dem Chip“ · Mikrocontroller und Digitale Elektronik ·