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PDF
Brick_MCU_PinAssignments_ref2.pdf
10, P1-23, P1-24, P2-1, P2-2, P2-23, P2-24 GND 35 AGND P2-11 VDD 46,47,54,55 VDD_RF see VDD_D AVREF 34 AVREF P2-12 VDD 24,25 VDD_D P1-1, P2-21, P2-22 Table 2 Pin assignments Am Brauhaus 12 GmbH Document-Number: ANS2011-Brick-PinInfo 01099 Dresden Preliminary Germany Revision: 2 www.an-solutions.de Page
in „LM73 über TWI/I2C mit Atmega1281 auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
techb_myethernet_de_en.pdf
Input / Output byte-by-byte .....................33 5.3.5 SharedRAM (Pin 1000…3999)................34 5.3.5 SharedRAM (pin 1000…3999)................34 5.3.6 SharedEEPROM (Pin 5000…7999)........35 5.3.6 SharedEEPROM (pin 5000...7999).........35 5.4 Externe Schnittstelle - TWI.........................
in „Ulrich Radigs TCP/IP Stack auf MyAvr, ENC startet immer neu, Soft Spi Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HX8347-D_DS_T_v02_090324.pdf
- - - - DPL HSPL VSPL EPL - control 2 (0) (0) (0) (0) RGB interface 33 control 3 W/R - HBP[7:0] - 34 RGB interface W/R - HBP[9:8] VBP[5:0] - control 4 36 Panel W/R - - - - - SS_P GS_Pan REV_Pa BGR_P - Characteristic anel el nel anel OTP_ OTP_O OTP_PP OTP_P 38 OTP Control 1 W/R - OTP_PTM[1:0] OTP_VARDJ
in „HX8347 Display Treiber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PE4302.pdf
Combination - - 1.0 < 2.2 GHz ±(0.15 + 5% of atten setting)dB 1 dB Compression 1 MHz - 2.2 GHz 30 34 - dBm Input IP32 Two-tone inputs 1 MHz - 2.2 GHz - 52 - dBm +18 dBm Return Loss DC - 2.2 GHz 15 20 - dB 50% control to 0.5 dB Switching Speed - - 1 µs of final value Notes: 1. Device Linearity will begin
in „Einstellbares Dämpfungsglied, Stufenschalter gesucht“ · HF, Funk und Felder ·
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PDF
Datenblatt_PIC12F1822.pdf
RC2 1 = SDO function is on RA4 bit 5 SSSEL: Pin Selection bit For 8 Pin Devices (PIC12F/LF1822): 0 = SS function is on RA3 1 = SS function is on RA0 For 14 Pin Devices (PIC16F/LF1823): 0 = SS function is on RC3 1 = SS function is on RA3 bit 4 Unimplemented: Read as ‘0’ bit 3 T1GSEL: Pin Selection bit 0
in „PIC12F1822-PWM Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_PIC12F1822.pdf
RC2 1 = SDO function is on RA4 bit 5 SSSEL: Pin Selection bit For 8 Pin Devices (PIC12F/LF1822): 0 = SS function is on RA3 1 = SS function is on RA0 For 14 Pin Devices (PIC16F/LF1823): 0 = SS function is on RC3 1 = SS function is on RA3 bit 4 Unimplemented: Read as ‘0’ bit 3 T1GSEL: Pin Selection bit 0
in „Interrupt-PIC12F1822“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
RC2 1 = SDO function is on RA4 bit 5 SSSEL: Pin Selection bit For 8 Pin Devices (PIC12F/LF1822): 0 = SS function is on RA3 1 = SS function is on RA0 For 14 Pin Devices (PIC16F/LF1823): 0 = SS function is on RC3 1 = SS function is on RA3 bit 4 Unimplemented: Read as ‘0’ bit 3 T1GSEL: Pin Selection bit 0
in „Auflösung PWM-Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
RC2 1 = SDO function is on RA4 bit 5 SSSEL: Pin Selection bit For 8 Pin Devices (PIC12F/LF1822): 0 = SS function is on RA3 1 = SS function is on RA0 For 14 Pin Devices (PIC16F/LF1823): 0 = SS function is on RC3 1 = SS function is on RA3 bit 4 Unimplemented: Read as ‘0’ bit 3 T1GSEL: Pin Selection bit 0
in „8Bits und 2Bits in eine Integer-Variable“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
RC2 1 = SDO function is on RA4 bit 5 SSSEL: Pin Selection bit For 8 Pin Devices (PIC12F/LF1822): 0 = SS function is on RA3 1 = SS function is on RA0 For 14 Pin Devices (PIC16F/LF1823): 0 = SS function is on RC3 1 = SS function is on RA3 bit 4 Unimplemented: Read as ‘0’ bit 3 T1GSEL: Pin Selection bit 0
in „Timer2 auf 10bit einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC12FLF1822PIC16FLF1823.pdf
RC2 1 = SDO function is on RA4 bit 5 SSSEL: Pin Selection bit For 8 Pin Devices (PIC12F/LF1822): 0 = SS function is on RA3 1 = SS function is on RA0 For 14 Pin Devices (PIC16F/LF1823): 0 = SS function is on RC3 1 = SS function is on RA3 bit 4 Unimplemented: Read as ‘0’ bit 3 T1GSEL: Pin Selection bit 0
in „PIC16lf1823 General purpose I/Os mit Schmitt Trigger ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
uwe-100-120.pdf
standards Pre-bias operation for startup protection +V IN +VOUT SWITCH VOLTAGE DRIVE REGULATOR +SENSE SS PWM −VOUT –VIN −SENSE ON/OFF REFERENCE CONTROL AMPLIFIER, ISOLATION TRIM AND FEEDBACK TRIM Typical topology is shown. Figure 1. Simplified Block Diagram For full details go to www.murata-ps.com/rohs
in „DC DC Konverter schwingt auf PWM-Frequenz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
68HC11GR.ass
a/d result register1 ADR2 equ $32 a/d result register2 ADR3 equ $33 a/d result register3 ADR4 equ $34 a/d result register4 OPTION equ $39 system configuration options PROG equ $3A eeprom programming register HPRIO equ $3C highest priority interrupt INIT equ $103D ram i/o mapping register CONFIG equ $3F
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Datei
68HC11GR.ass
a/d result register1 ADR2 equ $32 a/d result register2 ADR3 equ $33 a/d result register3 ADR4 equ $34 a/d result register4 OPTION equ $39 system configuration options PROG equ $3A eeprom programming register HPRIO equ $3C highest priority interrupt INIT equ $103D ram i/o mapping register CONFIG equ $3F
in „MC68HC11 MOPS 1.3e GLCD KS0108 Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSA00206265.pdf
Phase Ω/Phase mH/Phase kg-cm g-cm 2 LEAD kg L SST55D1010 SST55D1011 1.8 2.6 1.7 1.5 1.9 3.0 55 6 0.34 38 (SST55D1C010) (SST55D1C011) (0.38) SST55D1020 SST55D1021 1.8 4 1.1 3.6 4.8 3.3 55 6 0.34 38 (SST55D1C020) (SST55D1C021) (0.38) SST55D1030 SST55D1031 1.8 12 0.4 30 31.5 2.9 55 6 0.34 38 (SST55D1C030
in „Daten zu einem Schrittmotor herausfinden“ · Mikrocontroller und Digitale Elektronik ·
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ADNS-2700.pdf
00 01 00 00 nn 00 80 06 00 01 00 00 12 00 Returns: 12 01 00 02 00 00 00 08 vv vv pp pp dd dd mm PP ss 01 Example: vv vv = vendor id pp pp = product id (vendor specified) dd dd = device id (vendor specified) (bcd rev_id byte) mm = iManufacturer PP = iProduct ss = iSerialNumber (00 – no string) Example
in „USB Maus mit USART auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cy7c1345g_8_1_.pdf
DQB BYTE B DQ C 9 72 DQ B V SSQ 10 71 VSSQ V 11 DDQ 70 VDDQ DQ C 12 69 DQB DQ 13 C 68 DQB NC 14 67 V SS V DD 15 CY7C1345G 66 NC NC 16 65 V DD VSS 17 64 ZZ DQ 18 D 63 DQA DQ D 19 62 DQA V 20 DDQ 61 VDDQ V SSQ 21 60 VSSQ DQ D 22 59 DQA BYTE D DQ D 23 58 DQ BYTE A A DQ D 24 57 DQA DQ D 25 DQ 56 A V SSQ 26
in „Frage zum miniLa (Logic Analyzer)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UCC25600_AppNote.pdf
sufficient voltage output from the upstream PFC pre-regulator. This signal is used to hold down the SS pin (pin 4) whenever the output voltage from the PFC stage is insufficient for the resonant converter to produce a regulated output. In this case a simple NPN bipolar transistor is used to ground the SS pin whenever the CONV_OFF control signal is high. 4.3 5-W Bias Converter The 5-W bias supply is produced by a simple flyback converter. This regulator provides 15-VDC bias to power the control circuits
in „Resonanzkoverter: Tank dimensionieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
23x256.pdf
High-level output V CC-0.5 — — V IOH= -400 μA voltage D006 ILI Input leakage — — ±0.5 μA CS = VCC, VIN= SS OR VCC current D007 ILO Output leakage — — ±0.5 μA CS = VCC, VOUT= VSS ORV CC current D008 ICCRead — — 3 mA FCLK = 1 MHz; SO = O — — 6 mA FCLK = 10 MHz; SO = O Operating current — — 10 mA FCLK = 20 MHz
in „AVR: Port wiederholt schnellstmöglich auslesen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
89C51CC01C-SLSUM.pdf
driven with T CLCH, T = 5 ns, V = V + 0.5V, V = V - 0.5V; XTAL2 N.C; Port 0 = V ; EA = RST CHCL IL SS IH CC CC = V SS (see Figure 60.). 3. Power-down I CC is measured with all output pins disconnected; EA = V CC, PORT 0 = V CC; XTAL2 NC.; RST = V SS (see Figure 61.). In addition, the WDT must be inactive
in „Bit Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
r5f2136cy.h
------------------------------------------------------------------------- DTC Transfer Vector Area 34 ------------------------------------------------------------------------------------*/ typedef union DTCVCT34_T { io_byte REG; struct { io_byte B0:1; io_byte B1:1; io_byte B2:1; io_byte B3:1; io_byte B4:1; io_byte B5:1; io_byte B6:1; io_byte B7:1; } BIT; } DTCVCT34; #define DTCVCT34 (*(volatile union DTCVCT34_T *) 0x2C22) /*------------------------------------------------------------------------------------ DTC Transfer Vector Area 35 --------------------------
in „Universelle Mikrocontroller Toolchain (Linux)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LS0208UD06.pdf
Temperature.............................................................................................34 . 5.3.4.Aging By Damp Heat Constant................................................................................34 E V 5.3.5.Mixed Gases And Damp Heat (Cyclic).....................................
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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PDF
CY7C63813-SXC-Cypress-Semiconductor-datasheet-11779157.pdf
Document 38-08035 Rev. *P Page 74 of 86 CY7C63310, CY7C638xx Figure 28-7. SPI Master Timing, CPHA = 1 SS (SS is under firmware control in SPI Master mode) T SCKL SCK (CPOL=0) T SCKH SCK (CPOL=1) TMDO MOSI MSB LSB MISO MSB LSB TMSU TMHD Figure 28-8. SPI Slave Timing, CPHA = 1 SS TSSS TSSH T SCKL SCK (CPOL
in „Welche Relais und Controller zum Schalten von USB?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
init_ili9225.h
define BLUE0 0x1086 #define BLUE1 0x3188 #define BLUE2 0x4314 #define BLUE3 0x861C #define CYAN0 0x3D34 #define CYAN1 0x1DF7 #define GREEN0 0x0200 #define GREEN1 0x0208 #define LCD_CS_SET {sbi(PORT(LCD_CTRL_CS),LCD_CS);} #define LCD_RS_SET sbi(PORT(LCD_CTRL_RS),LCD_RS) #define LCD_SDA_SET sbi(PORT(LCD_CTRL_SDA
in „2.2" 176x220 SPI TFT - Kennt jemand dieses Modell?“ · Mikrocontroller und Digitale Elektronik ·
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MapCom.pdf
PIU201 PIU2020NLVCC P02 PID2001PID2002D_G WDII PIU1010 PIU1051D0 ALE PIU2011OE VCC R1R SCKCK 11 PB0 (SS) PA0 (AD0) 50 AD1 LE A 2,2k LED_G0 PI12011PB1 (SCK) PA1 (AD1) PIU49 AD2 AD7 2 19 A7NLA7 A U3U P0 D212 LED_R LED_R0 PI13012PB2 (MOSI) PA2 (AD2) PIU48 AD3 AD6 PI3202 D1 Q1 PI18 A6NLA6 PID2101 PID2102 NLOUT
in „[V] Weiterer M8, GPS, GSM Siemens M20, ATmega128“ · Markt ·
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Datei
HWMonitor.txt
X2 3800+ hardware monitor Temperature sensor 0 41°C (105°F) [0x5A] (Core #0) Temperature sensor 1 34°C (93°F) [0x53] (Core #1) Dump hardware monitor Hardware monitor ----------------------------------------------------- SAMSUNG HD155UI hardware monitor Temperature sensor 0 28°C (82°F) [0x1C] (HDD) Dump
in „CPU Temperatursensor defekt => Absturz“ · PC Hard- und Software ·
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PDF
SFH_7060__Lead__Pb__Free_Product_-_RoHS_Compliant.pdf
(typ. centroid 535 (±10) nm (I = 20 mA) (max.)) F Spectral bandwidth at 50% of I max (typ.) 34 nm (F = 20 mA) Half angle (typ.) ± 60 ° Rise and fall time of I (typ.) t, t 32 ns e r f (10% and 90% of I e max (F = 100 mA, t p 16 µs, R =L50 ) Forward voltage (typ. V F 3.2 (≤ 3.70) V (F = 20
in „Wie funktioniert der O2-Sensor von einem Pulsoximeter?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SFH_7060__Lead__Pb__Free_Product_-_RoHS_Compliant.pdf
(typ. centroid 535 (±10) nm (I = 20 mA) (max.)) F Spectral bandwidth at 50% of I max (typ.) 34 nm (F = 20 mA) Half angle (typ.) ± 60 ° Rise and fall time of I (typ.) t, t 32 ns e r f (10% and 90% of I e max (F = 100 mA, t p 16 µs, R =L50 ) Forward voltage (typ. V F 3.2 (≤ 3.70) V (F = 20
in „Transimpedanzwandler für SFH7060“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
schematic.PDF
COR6 COR3 PIC2301 PIC2302 PID208A6 Y6 PID2012 PIR3201 PIR3202 PODDUT2_N PIC2402 PIC2401 PIU201 R33 R34 R35 R36 R37 PIC2501 PIC2502 100n 848P40 PID209A7 Y7 PID2011 PIU204 0R 33R 33R 33R 1k +15V -15V R383 V3V CC27 PIU205 PIU202 PIR3301 PIR3302 PIR3401 PIR3402 PIR3501 PIR3502 PIR3601 PIR3602 PIR3701 PIR3702
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Datei
MPHexEditor.pas
; Word('0')..Word('9'): if ssCtrl in Shift then begin if ssShift in Shift then begin LIntRow := GetPosAtCursor(Col, Row); SetBookmarkVals(Key - Ord('0'), LIntRow, FPosInCharField); end else begin GotoBookmark(Key - Ord('0')); end; end; VK_SHIFT: if (Shift = [ssShift]) or (Shift = [ssShift, ssCtrl]) then begin // selektion starten FIsSelecting := True; end; VK_DELETE: if (not FReadOnlyView) then begin if (SelCount > 0) and (InsertMode or (Shift = [ssCtrl]))
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PDF
panasonic_tx-w32d5dpf.pdf
-S41 (HYPERBAND) CATV S21-S41 (HYPERBAND) Intermediate Frequency: Zwischenfrequenz: Video 38,9MHz, 34MHz Video 38,9MHz, 34MHz Sound 32,9MHz, 33,4MHz, 33,16MHz Sound 32,9MHz, 33,4MHz, 33,16MHz 32,4MHz, 40,4MHz, 33,05MHz 32,4MHz, 40,4MHz, 33,05MHz 32,66MHz 32,66MHz Colour 34,47MHz (PAL) Colour 34,47MHz (PAL) 34,5MHz, 34,65MHz (SECAM) 34,5MHz, 34,65MHz (SECAM) Video/Audio Terminals: Video/Audio Anschlüsse: AV1 IN Video (21 pin) 1V p-p 75 AV1 EINGANG Video (21 pin) 1V p-p 75 Audio (21 pin) 500mV rms 10k Audio
in „Panasonic TX-W32D5DPF“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DOKUMENTATION_MSP430-F2013.pdf
(see Notes 1) 2.2 V VSS VSS +0.25 I = 6 mA (see Notes 2) 2.2 V V V +0.6 V Low-level output (OLmax) SS SS V OL voltage I(OLmax)= 1.5 mA (see Notes 1) 3 V VSS VSS +0.25 I(OLmax)= 6 mA (see Notes 2) 3 V VSS V SS+0.6 NOTES: 1. The maximum total current, IOHmax and OLmax , for all outputs combined, should
in „MSP430 2013 XOUT/XIN ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
USB_Type-C_Spec_R2.1_-_May_2021.pdf
Assemblies Wire Number Signal Name Wire Gauge (AWG) 1 GND_PWRrt1 20-28 2 PWR_V BUS1 20-28 3 CC 32-34 4 UTP_Dp 28-34 5 UTP_Dn 28-34 6 SDPp1 26-34 7 SDPn1 26-34 8 SDPp2 26-34 9 SDPn2 26-34 10 SDPp3 26-34 11 SDPn3 26-34 12 SDPp4 26-34 13 SDPn4 26-34 14 SBU_A 32-34 15 SBU_B 32-34 16 GND_PWRrt2 20-28 17
in „USB-C Dual-Role-Device DRD mit integriertem OTG FS PHY“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Programmtext.txt
Adc = Single , Prescaler = Auto 'SPI Deklaration Config Spi = Soft , Din = None , Dout = Portc.3 , Ss = None , Clock = Portb.6 'Pinkonfiguration Config Portb.7 = Output 'SPI enable Rechteck Config Portc.4 = Output 'SPI Enable Spannung Config Portc.5 = Output 'SPI enable Strom Config Portc.6 = Output
in „Fehler = Register Setzen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DV-20400.pdf
C 4.50 4.80 5.10 Driving Vop V 20 C 4.35 4.65 4.95 voltage 50 C 4.20 4.50 4.80 o Contrast K 20 C 1.34 4.99 5.17 -- Frame freq. f -- 32 64 128 Hz Response ton -- 32 250 20 C ms time toff -- 117 250 DATA VISION 03/09/19 6/ 22 SPECIFICATIONSFORLIQUIDCRYSTALDISPLAYMODULE MODELNO:DV-20400-S1FBLY/R22 2.6.1
in „LCD_4Bit_PIC_Init“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SCHEMATIC1___PAGE1.pdf
512kB NVRAM 2x 512kB FLASH 74HC05 1 1 2 3 4 6 7 8 8 8 1 1 1 1 MC68332ACAG25 1 2 D3 D7 D4 D5 1 TP0 34 D D D D D D D D D D D D D D 115 A0 K6X4008C1F K6X4008C1F AM29F040 TP1 33 TP0 D D D D D D D D D D D D D D A0 39 A1 A1 12 13 D0 A1 12 13 D8 A1 12 13 D0 D3B TP2 32 TP1 V V V V V V V V V V V V V V A1 40
in „Schaltung mit 68332“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WIZ830MJ_Datasheet_V_1.2.pdf
Datasheet 4.Dimensions 11 TOP WIZ8 10M J Data shee t Symbols Dimensions (mm) Symbols Dimensions (mm) A 34.00 H 6.50 B 30.48 I 2.54 C 25.40 J 2.54 D 3.00 K 15.90 E 4.00 L 13.50 F 50.00 M 6.00 G 3.30 - - © Copyright 2008 WIZnet Inc. All rights reserved WIZ830MJ Datasheet 5.Schematic 12 TOP WIZ8 10M J Data
in „[V] Ethernet Webserver mit ATMEGA128 und 2x Ohne MCU“ · Markt ·
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Datei
main.c
ADC/SRAM - in // PB2 = D16 MOSI ADC/DAC/SRAM - out // PB1 = D15 SCK ADC/DAC/SRAM - out // PB0 = D17 SS (gibt SPI frei) LED - out // PORTB pullup enable fuer Eingänge PORTB = (1<<PB7) | (1<<PB6) | (1<<PB5) | (1<<PB4) | (1<<PB3) | (0<<PB2) | (0<<PB1) | (0<<PB0); // PortB Daten Register: Enable pullup //
in „Atmega32U4-Board: USB-Ausgabe in Betrieb nehmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RTL8111B_8168B_Registers_DataSheet_1.0.pdf
...................................................................................................34 5.4. D EFAULT V ALUES A FTER EEPROMA UTOLOAD ......................................................................................................38 5.5. P OWER M ANAGEMENT FUNCTION ................
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PDF
ATmega32.pdf
reset once the SS pin is driven high. The SS pin is useful for packet/byte synchronization to keep the slave bit counter synchronous with the master clock generator. When the SS pin is driven high, the SPI Slave will
in „STK500 als ISP“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATM16_doc2466.pdf
reset once the SS pin is driven high. The SS pin is useful for packet/byte synchronization to keep the Slave Bit Counter synchronous with the Master Clock generator. When the SS pin is driven high, the SPI Slave will
in „ISP - Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ateme16.pdf
reset once the SS pin is driven high. The SS pin is useful for packet/byte synchronization to keep the Slave Bit Counter synchronous with the Master Clock generator. When the SS pin is driven high, the SPI Slave will
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ateme16.pdf
reset once the SS pin is driven high. The SS pin is useful for packet/byte synchronization to keep the Slave Bit Counter synchronous with the Master Clock generator. When the SS pin is driven high, the SPI Slave will
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Mega32.pdf
the user. All other pins are inputs. When SS is driven high, all pins are inputs, and the SPI is passive, which means that it will not receive incoming data. Note that the SPI logic will be reset once the SS pin is driven high. The SS pin is useful
in „AVR Timer/Counter Zeit berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN-1126.pdf
the ac current componentissuppliedbyQ1,while forD4,theaccomponent the input power is 3.4 A × 10 V = 34 W. Notice that the output power is 170 V × 200 mA = 34 W, with no losses; therefore, the is supplied by CC4. 9. The current waveform through CC4 is similar to that input power equals the output power
in „180VDC-Netzteil Ausgangsstrom zu gering“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MB1137.pdf
32 P0CN11032 P0SB14602 P0SB14601 P0CN10033 4 P0CN1004 P0CN12031 32 P0CN12032 AGND VBAT P0CN1103333 34 P0CN11034 PB00PB0 PD10PD1P0SB17402 P0SB17401 A0 PA30PA3 P0CN9011 2 P0CN902 PD70PD7 D51 USART_B_SCLK P0CN10055 6 P0CN1006 PE110PE11 D5 TIMER_A_PWM2 PA10N0PA10 P0CN12033 34 P0CN12034 PC4N0PC4 PC20PC2 PC10PC1
in „Suche Mikrocontroller mit 16Bit ADCs und DACs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32VF103_User_Manual_EN_V1.0.pdf
30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 Reserved 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 EXTI3_SS[3:0] EXTI2_SS[3:0] EXTI1_SS[3:0] EXTI0_SS[3:0] rw rw rw rw Bits Fields Descriptions 31:16 Reserved Must be kept at reset value 15:12 EXTI3_SS [3:0] EXTI 3 sources selection 0000: PA3 pin 0001: PB3 pin
in „STM32F103C8T6 => GD32VF103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
156346062-STi7105.pdf
SYSTEM_CONFIG34[12,4]=00 SYSTEM_CONFIG34[12,4]=10 SYSTEM_CONFIG4[5]=0 v D Name DVO0[9] PWM_OUT1 USB1_PRT_PWR Description First DVO output PWM 1 output USB 1 PRT power PIO4[5] Direction O O O Configuration SYSTEM_CONFIG34[13,5]=00 SYSTEM_CONFIG34[13,5]=10 SYSTEM_CONFIG34[13,5]=11 Name DVO0[10] PWM_COMPARE_OUT1 USB2_PRT_OVCUR Description First DVO output PWM 1 compare output USB 2 PRT overcurrent PIO4[6] l Direction O O I e n Configuration SYSTEM_CONFIG34
in „Motorola Vip19x0 (Big brother of Vip1710)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
innoswitch3-ep_family_datasheet.pdf
the tSS(RAMP) will assume control and require a successful handshake to relinquish time period. control to the secondary controller. In the event of a short-circuit or overload at start-up, the device will As
in „Fritz Repeater 2400“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Steuersystem_Gew_shaus_4.pdf
PTCAire BasicC X5-3 ADC3 PA3 37 BasicC ADC4 PA4 36 BasicC X14-1 ADC5 PA5 35 BasicC X14-2 ADC6 PA6 34 SwNivea BasicC X15-4 ADC7 PA7 33 BasicC AIN0 PB2 3 BasicC AIN1 PB3 4 BasicC SCK PB7 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
in „Einfaches µC Betriebssystem - z. B. für SPS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M00790_VGM096096A2F01_revA04_-_GLYN.pdf
5.0 uA VDD and IDD1 - - - 0 uA VCC _C off ICC1 - - - 0 uA C.I.E(White) (x) x,y(CIE1931) 0.26 0.30 0.34 - (y) 0.29 0.33 0.37 - C.I.E(Red) (x) x,y(CIE1931) 0.61 0.65 0.69 - (y) 0.30 0.34 0.38 - (x) 0.25 0.29 0.33 - C.I.E(Green) x,y(CIE1931) (y) 0.54 0.58 0.62 - (x) 0.10 0.14 0.18 - C.I.E(Blue) x,y(CIE1931
in „DCDC Wandler Berechnungsproblem“ · Analoge Elektronik und Schaltungstechnik ·