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Datei
buildroot-2011.02-Mini2440-linux-2.6.39.patch
CONFIG_RTC_INTF_DEV_UIE_EMUL=y +# CONFIG_RTC_DRV_TEST is not set + +# +# I2C RTC drivers +# +# CONFIG_RTC_DRV_DS1307 is not set +# CONFIG_RTC_DRV_DS1374 is not set +# CONFIG_RTC_DRV_DS1672 is not set +# CONFIG_RTC_DRV_DS3232 is not set +# CONFIG_RTC_DRV_MAX6900 is not set +# CONFIG_RTC_DRV_RS5C372 is not set +#
in „mini2440 Odyssee“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ver2_smd.pdf
HiRose FX2-100S-1.27DS 5V D B1 A1 V B2 B1 A1 A2 B3 B2 A2 A3 B4 B3 A3 A4 n B5 B4 A4 A5 3 0 B6 B5 A5 A6 C 1 B7 B6 A6 A7 GND B8 B7 A7 A8 B9 B8 A8 A9 C4 GND B10 B9 A9 A10 F B11 B10 A10 A11 X1 6 1 B11 A11 R4 1 NC IC1 NC 8 47pF C 0 B12 B12 A12 A12 2 -IN V+ 7 R1 + B13 B13 A13 A13 5k 3 +IN OPA353UA OUTPUT 6 ADS830ES B14 B14 A14 A14 1-227161-0 4 V- NC 5 75 GND B15 B15 A15 A15 11 RSEL CLK 10 B16 B16 A16 A16 12 INT/EXT BIT8(LSB) 9 B17 B17
in „Mini Platinenlayout aber viele Fragen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MBR10100CT.pdf
Applications D 5.84 6.86 E ¾ 6.35 · Plastic Material: UL Flammability 1 2 3 Classification Rating 94V-0 E G 12.70 14.73 G H 2.29 2.79 Mechanical Data J N J 0.51 1.14 · Case: Molded Plastic K 3.53Æ 4.09Æ · Terminals: Plated Leads Solderable per H H P L 3.56 4.83 MIL-STD-202, Method 208 M 1.14 1.40 Pin 1 · Polarity
in „Dual High-Voltage Schottky Rectifiers 10A“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nrf24l01.h
register address #define RX_PW_P0 0x11 // 'RX payload width, pipe0' register address #define RX_PW_P1 0x12 // 'RX payload width, pipe1' register address #define RX_PW_P2 0x13 // 'RX payload width, pipe2' register address #define RX_PW_P3 0x14 // 'RX payload width, pipe3' register address #define RX_PW_P4
in „RFM12 vs nrf24l01“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STA508.pdf
Package ■ MULTIPOWER BCD TECHNOLOGY ■ MINIMUM INPUT OUTPUT PULSE WIDTH DISTORTION PowerSO36 ■ 200mΩ R dsON COMPLEMENTARY DMOS OUTPUT STAGE Table 1. Order Codes ■ CMOS COMPATIBLE LOGIC INPUTS Part Number Package ■ THERMAL PROTECTION STA508 PowerSO36 ■ THERMAL WARNING OUTPUT ■ UNDER VOLTAGE PROTECTION The
in „Heimkino ( Harman Hs 250 defekt )“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Any-Grid_PSW-H_DE-manual_2020-07-29-2.pdf
...................................................................................................12 Fern-Anzeigemodul-Installation..................................................................................................................................................12 Installieren mehrerer
in „(V) Hybrid-Wechselrichter Phocos PSW-H-5kW/48V“ · Markt ·
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PDF
LF2407_EZDSP_INC.pdf
real time features. When you ▯rst power up the board, two LED’s should come on (one in each corner; DS1 and DS2). DS1 is the Power LED, and DS2 is the PORTC_pin4 LED that defaults to the high position when powered up. You need to have the board powered prior to loading code composer or else you will get
in „TMS320LF2407 ???“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
doc2579.pdf
X8 Input The hardware equivalent of the 16 bit CRC used in some 1-Wire devices is shown in Figure 12. The blocks represent the individual bits in a 16 bit shift register. The 16 15 2 equivalent polynomial is X + X + X + 1. 7 2579A-AVR-09/04 Figure 12. Hardware equivalent of 16 bit CRC used in 1-Wire
in „20 Temperaturfühler im Keller verteilen für Heizungsmessung. 1wire geeignet? Leitungslänge? Kabel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AM700_SM.pdf
undervolts) LED is also on in the standby state. GreenLEDnormalvoltageindicators RedLEDerrorindication DS7 DS4 DS3 DS8 DS5 DS2 DS6 DS13 DS9 DS10 DS11 DS12 +22 +16.5 +15 +14.4 +5 -14.4 -15 -22 OT OV UV OI Figure 6–2: Power supply status indicators for the CRT display power supply GreenLEDnormalvoltageindicators RedLEDerrorindication DS4 DS3 DS8 DS5 DS2 DS6 DS9 DS10 DS11 DS12 +16.5 +15 +14.4 +5 -14.4 -15 OT OV UV OI Figure 6–3: Power supply status indicators for the flat panel display power supply AM700 Audio Measurement Set Service
in „Tektronix AM700“ · Mikrocontroller und Digitale Elektronik ·
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PDF
vers_13.pdf
600 Q2 11 8 10 0 BCY * R4 1 8 100k R5 8 0 56k 10nF R6 1 11 3.9k R7 10 9 {R7} R8 9 0 2.2k * 10nF RL 12 0 100k * C2 d 8 10nF C3 9 0 100nF C4 11 12 10nF * .Lib D:\Spicelib\BJT.phy .Model BCY NPN (IS=7f BF=260 VAF=60 + CJC=5.5p CJE=12p TF=450p) * .Options reltol=0.00001 *.Temp 50 *.TRAN 10ns 30us 0us 100ns
in „Strecke mainflingen Köln simulieren“ · HF, Funk und Felder ·
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PDF
XLampXTE_BL.pdf
color) and luminous flux (brightness). Chromaticity Regions............................................12r XLamp LE Ds are sorted by dominant wavelength Cree’s Standard Warm and Neutral White Kits (color) and luminous or radiant flux (brightness). LEDs Plotted on ANSI Standard Chromaticity Regions.......
in „Verkaufe Restbestände Cree LEDs XT-E XTEAWT-00-0000-00000BFE4“ · Markt ·
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spansion_inc_am29f040b_eol_21445e8-3004346.pdf
. . . . . . . . . . . . . . . . 29 Erase Suspend/Erase Resume Commands........................... 12 TSOP Pin Capacitance . . . . . . . . . . . . . . . . . . . . 29 Figure 2. Erase Operation.............................................................. 12 Command Definitions.........................
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PDF
NT7701Ver2.1.pdf
LCD driver voltage bias V OR, VOL Normally, the bias voltage used is set by a resistor divider V12R, V12L V43R, V43L Ensure that the voltages are set such thatSS V5 < V43 < V12< V 0 V5R, V5L To further reduce the differences between the output waveforms of the LCD driver output pins 1 and
in „Wintek WD-H3224V 320x240“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pdf_5CSC3073AZ.pdf
110V Ѹ⌕⬉ᎹDŽ ᑨ⫼ ѻક㾘Ḑߚ㉏ * ᮴㑻ᣝ䬂ᓣᅸݙৄ♃ ѻ ક ᇕ 㺙 ᔶ ᓣ * ݊ᅗ㉏ൟ䇗ܝ♃ SC3073C DIP83002.54 SC3073D SC3073CS SC3073DS SOP82251.27 ݙ䚼Ḛ OSC ᤃ㤵⬉䏃 䅵᭄䆥ⷕ ZC BUZZ AC ৠℹ ࠊ⬉䏃 㳖号䕧ߎ SW1 ᣝ䬂Ẕ⌟ TRIAC ࠊ䕧ߎ ᵁᎲ݄ᖂ⬉ᄤ㙵ӑ᳝䰤݀ৌ ⠜ᴀো˖1.2 2005.12.29 httwww.silan.com.cn ݅▯义▯▯义 SC3073 ᵕ䰤খ᭄ খ ᭄ ヺ ো খ ᭄ 㣗 ೈ ऩ ԡ Ꮉ⬉य़ VDD 3.0~8.0 V Ꮉ⬉⌕ DD
in „Dimmer von Stehlampe defekt“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Schaltplan eines SW Power PCB Netzteils
, +28.4V, L103, 120uH-AUE, 18V, C11, 10uF/25, R2, 2.7K 0.5W, C1, 470pF/250VAC(Y), A3, D4, 1N4007, C12, 0.33uF/250VAC(X), R3, 33K 1W, KTC1, 1N4007-0DS 6A, F1, 120VAC T, 3A, 230VAC T, 3A, C7, 0.01uF/250V, R5, 4.7K 0.5W, IC1, 78L05, 12V, VA1, +386V, C10, 22uF/350V(X), D3, BR106P, D2, 1N4007, +18V, C9, 680uF
in „Phonic Nexus540 Aktive Speaker 400W defekt“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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PDF
18F258-Schaltplan.pdf
LCD_LED+ LCD_LED- R14 +5 VDC D2 100 T2 R15 1N4148 1k BC247 C3 7805 C2 C1 C9 1µ 100n 100n 47µ R9 R10 R11 R12 IC5 C13 C10 5,6k 5,6k 5,6k 5,6k C8 1 C1+ +5V 16 1µ 100n 1µ SW1 2 V+ GND 15 R1 SW2 3 C1- T1out 14 56 Br1 SW3 C7 4 C2+ R1in 13 24V AC 1µ SW4 5 C2- R1out 12 F1 C6 6 V- T1in 11 100mA LCD_+5V 1µ R6 7 T2out
in „Multifunktionsknoten im Hausbus (CAN)“ · Haus & Smart Home ·
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Datei
Temperatur_DS18B20.ino
/** * Temperature monitor for DS18B20 (Dallas) or similar one (like DS18S20) * supported 1 until 4 sonsors (more is possible by changing code-lines) * target: ESP8266, especially Kit-8 type * written by Peter Rebesky, February 2023
in „ESP Temperaturmodul mit DS18B20 und Web-Ansicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dummy_load.pdf
)PB5 17 SCK 1 9 20 7 R R R13 AREF (PCINT6/XTAL1/TOSC1)PB6 SW1 18k C12 C13 (PCINT7/XTAL2/TOSC2)PB7 8 23 PLUS 100n 100n (PCINT8/ADC0)PC0 k 1 24 SW2 2 R (PCINT9/ADC1)PC1 4 Q3 (PCINT10/ADC2)PC2 25 U2C TQFP32 26 MINUS 10 + D (PCINT11/ADC3)PC3 VCC + V R6 (PCINT12/SDA/ADC4)PC4
in „Elektronische Last“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SH1106_datasheet.pdf
D7 07H COM7 D0 08H COM8 D3 D2 D1 D0 D1 09H COM9 D2 0AH COM10 0 0 0 1 D3 0BH COM11 D4 PAGE1 0CH COM12 D5 0DH COM13 D6 0EH COM14 D7 0FH COM15 D0 10H COM16 D3 D2 D1 D0 D1 11H COM17 D2 12H COM18 0 0 1 0 D3 13H COM19 PAGE2 D4 14H COM20 D5 15H COM21 D6 16H COM22 D7 17H COM23 D0 18H COM24 D3 D2 D1 D0 D1 19H
in „SH1106 Init-Sequenz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm70.h
RFM70_REG_RX_PW_P0 0x11 // 'RX payload width, pipe0' register address #define RFM70_REG_RX_PW_P1 0x12 // 'RX payload width, pipe1' register address #define RFM70_REG_RX_PW_P2 0x13 // 'RX payload width, pipe2' register address #define RFM70_REG_RX_PW_P3 0x14 // 'RX payload width, pipe3' register address
in „RFM70 Timing Problem?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm70.h
RFM70_REG_RX_PW_P0 0x11 // 'RX payload width, pipe0' register address #define RFM70_REG_RX_PW_P1 0x12 // 'RX payload width, pipe1' register address #define RFM70_REG_RX_PW_P2 0x13 // 'RX payload width, pipe2' register address #define RFM70_REG_RX_PW_P3 0x14 // 'RX payload width, pipe3' register address
in „RFM70 Timing Problem?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7567A_V1.2a.pdf
L pulse width (READ) tEWLR 220 — ns Enable H pulse width (READ) tEWHR 180 — Write data setup time tDS6 40 — Write data hold time tDH6 20 — D[7:0] Read data access time tACC6 CL = 16 pF — 140 Read data output disable time tOH6 CL = 16 pF 10 100 Ver 1.2a 60/77 2016/12/06 ST7567A (VDD1 = 1.8V , Ta =25 C
in „LCD mit ST7567A und I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm3421.pdf
GATE and DDRV. 15 11 GATE Main Gate Drive Output Connect to the gate of the main switching MosFET. 16 12 VCC Internal Regulator Output Bypass with 2.2 µF–3.3 µF ceramic capacitor to PGND. Connect to the drain of the main N-channel MosFET switch for R DS- 17 13 IS Main Switch Current Sense sensing or to
in „Spule Dimensonierung Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
at27c256.pdf
8 26 NC A9 24 19 I/O7 A2 9 25 OE A8 25 18 I/O6 A1 10 24 A10 A13 26 17 I/O5 A0 11 23 CE NC 12 22 I/O7 A14 27 16 I/O4 I/O0 13 4 5 6 7 8 9 021 I/O6 VCC 28 15 I/O3 1 1 1 1 1 1 2 WE 1 14 GND 1 2 D C 3 4 5 A12 2 13 I/O2 I I G D I I I A7 3 12 I/O1 A6 4 11 I/O0 Note: PLCC package pins 1 and 17 A5 5
in „AT27C256 Was kann man damit Anstellen???“ · Mikrocontroller und Digitale Elektronik ·
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Datei
hwinfop14s.txt
R: 12 U: i2c-dev D: c 89:12 N: i2c-12 L: 0 E: DEVPATH=/devices/pci0000:00/0000:00:02.0/drm/card0/card0-DP-2/i2c-12/i2c-dev/i2c-12 E: SUBSYSTEM=i2c-dev E: DEVNAME=/dev/i2c-12 E: MAJOR=89 E: MINOR=12 P: /devices
in „Lenovo Thinkpad P14s (Intel) freeze beim Steckerziehen“ · PC Hard- und Software ·
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Bild
Vergleichstabelle verschiedener Signalgeneratoren
LMS-203, SG22000L, SC5511A, MG36021A, SynthHD PRO (v2), SSG-15G-RC Manufacturer: ATEK Midas, Vaunix, DS Instruments, SignalCore, Anritsu, Windfreaktech, Mini Circuits Communication Ports: USB Type-C, USB Type-B, Ethernet, USB, SPI, USB, SPI, USB Type-C, Ethernet, USB Power Supply & Consumption: 5 V @ 1.5 A, 5 V @ 0.6 A, 5 V @ 1.2 A, 12 V @ 1.6 A, 12 V @ 1.25 A, 5 V @ 0.9 A, 6 V @ 1.25 A Frequency Range: 0.15 - 22 GHz, 10 - 20 GHz, 0.06 - 22 GHz, 0.1 - 22 GHz, 0.01 - 22 GHz, 0.01 - 15 GHz, 0.01 - 24 GHz Frequency Resolution: 1 Hz, 100
in „Arduino Ventuno Q, Marktanalyse des Embeddedbereichs, neue Chips uvam“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
tms320lf2407a.pdf
TP1 ÈÈÈÈÈÈÈ ÈÈÈÈÈÈ CANTX/IOPC6 TP2 Flash/ROM CAN ÈÈÈÈÈÈÈ (32K Words: ÈÈÈÈÈÈ CANRX/IOPC7 VCCP(5V) 4K/12K/12K/4K) ÈÈÈÈÈÈÈ ÈÈÈÈÈÈ WD Port A(0−7) IOPA[0:7] ÈÈÈÈÈÈÈ A0−A15 Port B(0−7) IOPB[0:7] D0−D15 ÈÈÈÈÈÈÈ Digital I/O Port C(0−7) IOPC[0:7] PS, DS, IS (Shared With Port D(0) IOPD[0] ÈÈÈÈÈÈÈ Other Pins) R/
in „TMS320LF2407 ???“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
TMS320F2812_Board.pdf
# Signal 1 +3.3V/+5V/NC * 2 +3.3/+5V/NC * 3 XD0 4 XD1 5 XD2 6 XD3 7 XD4 8 XD5 9 XD6 10 XD7 11 XD8 12 XD9 13 XD10 14 XD11 15 XD12 16 XD13 17 XD14 18 XD15 19 XA0 20 XA1 21 XA2 22 XA3 23 XA4 24 XA5 25 XA6 26 XA7 27 XA8 28 XA9 29 XA10 30 XA11 31 XA12 32 XA13 33 XA14 34 XA15 35 GND 36 GND 37 XZCS0AND1n 38
in „Wieder eine Elektronik-Anfängerfrage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BS170.pdf
CurrenVDS= 25V, GS = 0V All 0.5 μA 7 I Gate - Body Leakage, Forward V = 15V, V = 0V All 10 nA 0 GSSF GS DS — ON CHARACTERISTICS (Notes 1) N V Gate Threshold Voltage V = V , I = 1mA All 0.8 2.1 3 V - GS(th) DS GS D h RDS(ON) Static Drain-Source On-ResistanGS= 10V, D = 200mA All 1.2 5 Ω a n gFS Forward Transconductance VDS= 10V,DI = 200mA BS170 320 mS n VDS ≥ 2 DS(on) MMBF170 320 l I = 200mA E D n Dynamic Characteristics a n Ciss Input Capacitance VDS= 10V, GS = 0V, All 24 40 pF c C oss Output Capacitance f = 1.0MHz All 17 30 pF m e C rss Reverse Transfer Capacitance
in „BS170 Wie viel Watt verträgt er?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
nrf24l01.h
register address #define RX_PW_P0 0x11 // 'RX payload width, pipe0' register address #define RX_PW_P1 0x12 // 'RX payload width, pipe1' register address #define RX_PW_P2 0x13 // 'RX payload width, pipe2' register address #define RX_PW_P3 0x14 // 'RX payload width, pipe3' register address #define RX_PW_P4
in „RFM12 vs nrf24l01“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BERECHNUNG_TEMPERATUR_v2.pdf
DS18s22 reale Temperatur 9-BIT COUNT 9-BIT aufbereitet (SCRATCHPAD) REMAIN (TEMP_READ) (SCRATCHPAD) 1,1875 °C 1,0 9 1 1,1875 1,1250 °C 1,0 10 1 1,1250 1,0625 °C 1,0 11 1 1,0625 1,0000 °C 1,0 12 1 1,0000
in „DS1820 DS18s20 Digital Thermometer 1-wire Beispiele ATmega8 Assembler“ · Projekte & Code ·
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PDF
Klimasteuerung.pdf
VDD 9 FRM12 14 NSEL/ NINT 11 D 2 13 V NIRQ IC3 SCK 1 SDO NRES 6 1 SDA VDD 8 12 SDI RFM12 2 SCL 7 3 3 6 A0 TOUT FSK/DATA/NFFS e e A1 4 DCLK/CFIL/FFIT p p 5 A2 GND 4 1 KS 1 K S 2 5 D D 8 0 R 0 R DS1621 CLK N N ANT
in „Wo werden 0,72 mA verbraucht??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Si_4322.pdf
Parameter Symbol Parameter Conditions/NoteV dd Positive supply voltage Max Units 868 MHz band 10.5 12.5 dd Supply current T op Ambient operating temperature mA 915 MHz band 12 14 pd Standby current all blocks disabled 1 µA Low battery voltage detector and lb wake-up timer current 5 µA x Idle current
in „RFM01 NIRQ immer high“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lmp92064.pdf
Incorporated Product Folder Links: LMP92064 LMP92064 www.ti.com SNOSCX0 –JUNE 2013 t t t 1/CLK tC S DS HI DH tLO CSB SCLK DON’T CARE DON’T CARE SDI DON’T CARE R/W A14 A13 A12 A11 A10 A9 A8 D2 D1 D0 DON’T CARE Figure 5. Serial Control Port Write – MSB First, 16-bit Instruction, Timing Measurements Copyright
in „DC-Bidirectional Current Sensor and Voltage Monitor with " SPI "“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Schaltplan eines elektronischen Geräts
DS1 A2 SSTX1P A3 SSTXN B2 CC1 B8 SB1 A10 A11 SSRX2N SSRX2P P1*12 SHIELD GND VBUS A4*4 C4 4.7u 50V D1 ESD45J35 B R 12V DC-Jack PND R30 12k R31 1k JP6 PND R D PND U512 2.2k SMDLED042 U513 2.2k SMDLED042 U514
in „Frage zur Standalone-Konfig STUSB4500“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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PDF
mp2307.pdf
Through Shutdown Through Shutdown Through Enable Waveforms Enable Waveforms Enable Waveforms V IN= 12V, VOUT = 3.3V, VIN = 12V, VOUT = 3.3V, I = 3A (Resistance Load) V = 12V, V = 3.3V, No Load I = 3A (Resistance Load) OUT IN OUT OUT V EN VEN VEN 5V/div. 5V/div. 5V/div. V OUT V 2V/div. V 2V/div. OUT 2V
in „Spannungsregelung mit MP1584 und MP2307“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mp2307.pdf
Through Shutdown Through Shutdown Through Enable Waveforms Enable Waveforms Enable Waveforms V IN= 12V, VOUT = 3.3V, VIN = 12V, VOUT = 3.3V, I = 3A (Resistance Load) V = 12V, V = 3.3V, No Load I = 3A (Resistance Load) OUT IN OUT OUT V EN VEN VEN 5V/div. 5V/div. 5V/div. V OUT V 2V/div. V 2V/div. OUT 2V
in „Step Down - Stabil 5V 3A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mp2307.pdf
Through Shutdown Through Shutdown Through Enable Waveforms Enable Waveforms Enable Waveforms V IN= 12V, VOUT = 3.3V, VIN = 12V, VOUT = 3.3V, I = 3A (Resistance Load) V = 12V, V = 3.3V, No Load I = 3A (Resistance Load) OUT IN OUT OUT V EN VEN VEN 5V/div. 5V/div. 5V/div. V OUT V 2V/div. V 2V/div. OUT 2V
in „Empfehlung Step Down Converter IC“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.asm
============================================= ; ATmega8 Maker-Clock-FM-Radio mit PLL & 7-Segment + DS1307 ; CPU: 4 MHz RC-Oszillator intern ; Ports: ; SDA = PC4, SCL = PC5 (I²C DS1307) ; PORTD: Display-ZIFA/B/C/D, LATCH, SEGI, LM_SIN, LM_SCK ; PORTB: Tasten, EEPROM-Adr ; =============================
in „Probleme mit DS1307 und dessen Zeitausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
embmega32_sch.pdf
4K7 1N4148 7 PB5(MOSI) PA5(ADC5) 34 32.768KHz PB6 8 PB6(MISO) PA6(ADC6) 33 PA6 PB0 PB0 1 2 GND GND DS1307 PB7 PB7(SCK) PA7(ADC7) PA7 PB1 PB1 GND GND BAT 3V 9 PB2 3 4 GND RES RESET PB2 PB3 5 6 GND GND 10 30 PB3 PB4 7 8 GND GND +5V VCC AVCC +5V PB4 PB5 9 10 GND GND +5V FR01 10 PB5 11 12 GND AREF 32 PB6
in „AVR ISP Programmer an ATmega32 Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HF500-30.pdf
Breakdown voltage VBR TJ= 25°C 700 V Internal MOSFET (DRAIN) VCC = 10.5V, ID= 0.1A, On-state resistance R DS_ON TJ= 25°C 1.4 1.6 Ω Supply Voltage Management (VCC) VCC level (increasing) where the VCC OFF 11 12 13 V internal regulator stops VCC level (decreasing) where the IC shuts down and the VCC UVLO 6 7
in „Marking Code Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hauptplatine.pdf
VCC PIU203 100nF L7805CV 100nF PIY202 PIY201 PIU201SDA VBAT PIU202X1 PIU207 32kHz X2 SQW/OUT 0 P7OP7 12 10 PIU204 BT1T1 PIP701 GND C11 C12 GND Battery POT4 PIP702 1 10 Cap 10 Cap DS1307 T4 2 P2P 12.5pF 12.5pF 02 Taster P6OP6 PIP208010 9 PIP207 VCC PIP601 GND PIP206 8 7 PIP205 PIP602 1 VCC PIP204 6 5 PIP203
in „AVR Wecker mit Netzwerk“ · Mikrocontroller und Digitale Elektronik ·
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Datei
aetzgeraet.asm
.include "m8def.inc" .equ twi_bit_rate = 0x20 ;für 100 kHz .equ sla_w = 0x92 ;Adresse für DS1631 Write .equ sla_r = 0x93 ;Adresse für DS1631 Read .equ start = 0x08 .equ rstart = 0x10 .equ mt_sla_ack = 0x18 .equ mt_data_ack = 0x28 .equ mr_sla_ack = 0x40 .equ mr_data_ack = 0x50 .equ mr_data_nack = 0x58 .def komma = r10 .def einer = r11 .def zehner = r12 .def einr = r5 .def zehnr = r6 .def hundtr = r7 .def multi = r18 .def temp2 = r17 .def data = r20 ;Daten zur TWI Übertragung .def receive_l = r21 .def receive_h = r22 .def count = r19 .org 0x000 rjmp
in „i2c problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_FLEX003__v1_03.07.2008_.pdf
RC7/RX/DT/SDO Pin 29 AN11/RB11 Pin 30 TCK/RA1 Pin 9 RA3/AN3/V ref+ Pin 10 RC6/TX/CK Pin 31 U2CTS/RF12 Pin 32 U2RTS/RF13 Pin 11 RA5/AN4/HLVDin/C2 out Pin 12 RC2/CCP1 Pin 33 AN13/RB13 Pin 34 AN12/RB12 Pin 13 RC1/T1OSI/CCP2/UOE# Pin 14 RA4/T0CKI/C1 /Rout Pin 35 IC7/U1CTS/CN20/RD14 Pin 36 AN15/OCFB/CN12/
in „LED blinken lassen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
http.cpp
rtc_temp, ".5"); } strcat (rtc_temp, "°C"); } else { strcpy (rtc_temp, "offline"); } uint_fast8_t ds18xx_is_up = get_numvar (DS18XX_IS_UP_NUM_VAR); if (ds18xx_is_up) { temp_index = get_numvar (DS18XX_TEMP_INDEX_NUM_VAR); sprintf (ds18xx_temp, "%d", temp_index / 2); if (temp_index % 2) { strcat (ds18xx_temp, ".5"); } strcat (ds18xx_temp, "°C"); } else { strcpy (ds18xx_temp, "offline"); } rtc_temperature_correction = get_numvar (RTC_TEMP_CORRECTION_NUM_VAR); if (rtc_temperature_correction) { sprintf (rtc_temperature_correction_str
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DA-Converter.pdf
over temperature,MINT AT MAX . For all other limits A T A25˚C. / 3 VCC = 5 VDC ± 5% 8 V = 4.75 V V = 12 V 0 CC DC CC DC C VCC = 15.75 VDC ± 5% D Parameter Conditions See to 15 V ±5% Limit Note DC Units Tested Design Typ Limit Limit (Note 12) (Note 5) (Note 6) CONVERTER CHARACTERISTICS FS/˚C Power Supply
in „Problem mit DA-Wandler“ · Mikrocontroller und Digitale Elektronik ·
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MachXO2FamilyDataSheet.pdf
array output. 2-11 Architecture MachXO2 Family Data Sheet Figure 2-8. sysMEM Memory Primitives AD[12:0] DIA[8:0] DI[8:0] DI[8:0] ADW[8:0] ADA[12:0] ADB[12:0] DI[17:0] ADR[12:0] CLK CLKA CLKB BE[1:0] CE CEA CEB CLKW CLKR OCE CER EBR DO[8:0] RSTA EBR RSTB CEW EBR RST WEA WEB RST DO[17:0] WE CSA[2:0] CSB
in „Statemachine springt in falsche "states" warum?“ · FPGA, VHDL & Co. ·
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700185_wiesmeier_christoph_2016.pdf
R44 R135k3 RP 2 RR51 R 3 N R150 R156 R158 R32 R37 R41 R45 R49 R53 _B 0 R 1 9 10052 R30 QM 0 I Q3 R C 12 / 2W 12 / 2W 12 / 2W 12 /TP1 12 / 2W 12 / 2W 12 / 2W1002 / 2W 12 / 2W TL 1 R150 R156 R158 R32 R37 R41 R45 R49 R53 3 B R164 A61 27 100 9D595CH478 7 D595CH67 5 1 4 3 0 2 L21 NA 1 12 / 2W 12 / 2W 12 / 2W
in „2A 1s Li-ion Lader + Protection“ · Analoge Elektronik und Schaltungstechnik ·
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CodeBoard_2_0_Schematic.pdf
+5V +5V 1 C12 2 IC1 100nF C1 33p 1 21 XTAL1 Display Q P27-A15 31 X2-9 D0 +5V - - - - - GND N P26-A14 30 X2-10 D1 2 2 2 2 2Display G C2 33p P25-A13 29 X2-12 D2 X XX XX X2-26 +5V 20 XTAL2 P24-A12 28 X2-11 D3 X2-5 27
in „8051: An Port 0 kann nichts ausgegeben werden“ · Mikrocontroller und Digitale Elektronik ·
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CodeBoard_2_0_Schematic.pdf
+5V +5V 1 C12 2 IC1 100nF C1 33p 1 21 XTAL1 Display Q P27-A15 31 X2-9 D0 +5V - - - - - GND N P26-A14 30 X2-10 D1 2 2 2 2 2Display G C2 33p P25-A13 29 X2-12 D2 X XX XX X2-26 +5V 20 XTAL2 P24-A12 28 X2-11 D3 X2-5 27
in „8051: An Port 1 nur 3.5V anstatt 5V ?“ · Mikrocontroller und Digitale Elektronik ·