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SSD1331_v1.2.pdf
COM14 Row14 RAM14 Row22 RAM22 Row14 RAM22 Row14 RAM14 Row22 RAM22 Row14 RAM22 COM15 Row15 RAM15 Row23 RAM23 Row15 RAM23 Row15 RAM15 Row23 RAM23 Row15 RAM23 COM16 Row16 RAM16 Row24 RAM24 Row16 RAM24 Row16 RAM16 Row24 RAM24 Row16 RAM24 COM17 Row17 RAM17 Row25 RAM25 Row17 RAM25 Row17 RAM17 Row25 RAM25 Row17
in „Spannungsreglerproblem durch Frequenzen bei Arduino Adafruit“ · Mikrocontroller und Digitale Elektronik ·
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PIC32MX3XX_Data_Sheet.pdf
31:0 Inverts selected bits CHEMSK, read yields undefined value BF88_4040 CHEW0 31:24 CHEW0<31:24> 23:16 CHEW0<23:16> 15:8 CHEW0<15:8> 7:0 CHEW0<7:0> BF88_4050 CHEW1 31:24 CHEW1<31:24> 23:16 CHEW1<23:16> 15:8 CHEW1<15:8> 7:0 CHEW1<7:0> BF88_4060 CHEW2 31:24 CHEW2<31:24> 23:16 CHEW2<23:16> 15:8 CHEW2<
in „PIC32 und Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD815_SOP.pdf
Flexible Configuration Differential Input and Output Driver NC 1 24 NC or Two Single-Ended Drivers NC 2 23 NC Industrial Temperature Range NC 3 22 NC High Output Power NC 4 21NC Thermally Enhanced SOIC 5 AD815 20 400 mA Minimum Output Drive/Amp, R L= 10 ⍀ THERMAL 6 TOP VIEW 19 THERMAL Low Distortion HEAT
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From_analog_to_digital_-_p281.pdf
h(t − τ)dτ (21) −∞ \ ∞ Y∞ = u(τ) · δ(τ − nT s · h(t − τ)dτ (22) −∞ n=−∞ Y∞ = u(nT s · h(t − nT s (23) n=−∞ ∞ Y sinπF (s − nT ) s u rt) = u(nT s · F s πF (t − nT ) . (24) n=−∞ s s The form sin(x)/x is the cardinal sine of x. It appears very often in signal processing mathematics and is also written as
in „SNR bei ADCs“ · Analoge Elektronik und Schaltungstechnik ·
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AD9834.pdf
Specifications Signal-to-Noise Ratio 55 60 dB fMCLK= 75 MHz, OUT= fMCLK4096 Total Harmonic Distortion −66 −56 dBc fMCLK= 75 MHz, OUT= fMCLK4096 Spurious-Free Dynamic Range (SFDR) Wideband (0 to Nyquist) −60 −56 dBc fMCLK= 75 MHz, OUT= fMCLK75 Narrow Band (±200 kHz) B Grade −78 −67 dBc fMCLK= 50 MHz, OUT= fMCLK50 C Grade −74 −65 dBc fMCLK= 75 MHz, OUT= fMCLK75 Clock Feedthrough −50 dBc Wake-UpTime 1 ms COMPARATOR InputVoltage Range 1 V p-p AC-coupled internally Input Capacitance 10 pF Input High-Pass Cutoff Frequency 4 MHz Input
in „AD8934 - DDS SPI Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6300_RM-217_RM-222_schematics.pdf
J2835 M8 RFBusEn1X GENIO14 Y19 14 22 GENIO22 D6 6 A2 EN2 B2 D1 B1 R2 B3 MMCCLK 4 3 GENIO15 AA19 15 23 GENIO23 D7 7 ~4V C2 LatchClk B3 D2 C1 R3 C3 MMCDA 5 { 0 15 K4 TxIP GENIO16 W7 16 24 GENIO24 WRX 17 D1 R4 D3 6 1 K3 GENIO17 V7 17 25 GENIO25 TE 21 VBAT A1 VBAT B1 VMMC 7 TxIN W6 18 VCCB 8 RFCONV(11:0)
in „Nokia 6300 Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OV528_DS_1.3.pdf
Pin Descriptions – Misc. (7 pins) 15 Table 20. OV528-T100 Pin Descriptions –Internal MC I/O Ports (23 pins) 15 Table 21. OV528-T100 Pin Descriptions – Power & Ground (22 pins) 15 Table 22. OV528-B64 Pin Descriptions – All Pins in Numeric Order 16 Table 23. OV528-B64 Pin Descriptions – Camera Interface
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trm-868-eur-463941_4_.pdf
LP Mode @9.6kbps –104 dBm Input IP3 −40 dBm 4 LO Leakage −65 dBm 5 Adjacent Channel Rejection –48 dBc 6 IF Bandwidth – 2 – – 3 – Pin Assignments EUR Series Transceiver Specifications 2 1 Parameter Symbol Min. Typ. Max. Units Notes DTS Mode 600 kHz 3 NC N N 4 CMD G LP Mode 200 kHz 5 RXD Transmitter Section 6 TXD Output Power P O 13 15 dBm 7 CTS VCC 19 8 NC Harmonic Emissions P H -50 dBc 5 9 NC Frequency Deviation 10 C2D 11 RESET GND 18 DTS Mode ±80 kHz 12 GND GND 17 LP Mode ±40 kHz 13 ANT GND 16 Interface Section 14 GND GND 15 Input Logic Low VI L 0 0.3*Vcc VDC Figure 5: EUR Series
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PDF
trm-868-eur-463941.pdf
LP Mode @9.6kbps –104 dBm Input IP3 −40 dBm 4 LO Leakage −65 dBm 5 Adjacent Channel Rejection –48 dBc 6 IF Bandwidth – 2 – – 3 – Pin Assignments EUR Series Transceiver Specifications 2 1 Parameter Symbol Min. Typ. Max. Units Notes DTS Mode 600 kHz 3 NC N N 4 CMD G LP Mode 200 kHz 5 RXD Transmitter Section 6 TXD Output Power P O 13 15 dBm 7 CTS VCC 19 8 NC Harmonic Emissions P H -50 dBc 5 9 NC Frequency Deviation 10 C2D 11 RESET GND 18 DTS Mode ±80 kHz 12 GND GND 17 LP Mode ±40 kHz 13 ANT GND 16 Interface Section 14 GND GND 15 Input Logic Low VI L 0 0.3*Vcc VDC Figure 5: EUR Series
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Datei
dmesg_complete.txt
found [ 1.100149] hub 1-0:1.0: 4 ports detected [ 1.100217] ehci_hcd 0000:00:1d.7: PCI INT A -> GSI 23 (level, low) -> IRQ 23 [ 1.100226] ehci_hcd 0000:00:1d.7: setting latency timer to 64 [ 1.100229] ehci_hcd 0000:00:1d.7: EHCI Host Controller [ 1.100269] ehci_hcd 0000:00:1d.7: new USB bus registered
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Modulkarte__2_11_07__Netzeinschub_regelbar.pdf
ikkondensator 470 pF 400 V, C9 1 19 Diode lN 4007, VlO, Vl3 2 20 Z-Diode ZPD 2 ,7 , Vl2 1 21 T ra n s is to r BC 557 B, V7, V9 2 22 T ra n s is to r BD 249, V14 1 23 T ra n s is to r BD 242, V ll 1 24 IC LH 723 CN S pannungsregler, IC 1 1 25 S c h a ltd ra YVt 1 x 0 ,5 /0 ,9 (sie h e D r a h tlis te ) n. B edarf
in „suche Infos zu Trafo aus der KE-Ausbildung (Bundespost)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
pk2cmdminus_supported_devices.txt
Midrange/Standard 0x000021A0 PIC12HV752 Midrange/Standard 0x00001520 PIC12LF1552 Midrange/Standard 0x00002BC0 PIC16F72 Midrange/Standard 0x000000A0 PIC16F73 Midrange/Standard 0x00000600 PIC16F74 Midrange/Standard 0x00000620 PIC16F76 Midrange/Standard 0x00000640 PIC16F77 Midrange/Standard 0x00000660 PIC16F84A
in „Programmieren eine PIC18F2585 mir einem HEX-File“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Quellcode.asm
0x7F, 0x7F, 0x7F, 0x7F ; RAM-Variable LRAM_0x20 equ 0x20 LRAM_0x21 equ 0x21 LRAM_0x22 equ 0x22 LRAM_0x23 equ 0x23 LRAM_0x24 equ 0x24 LRAM_0x25 equ 0x25 LRAM_0x26 equ 0x26 LRAM_0x27 equ 0x27 LRAM_0x28 equ 0x28 LRAM_0x29 equ 0x29 LRAM_0x2A equ 0x2A LRAM_0x2B equ 0x2B LRAM_0x2C equ 0x2C LRAM_0x2D equ 0x2D
in „Unbekannter Quellcode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt.pdf
ADC121C021QIMK/NOPB SOT-23- DDC 6 1000 178.0 8.4 3.2 3.2 1.4 4.0 8.0 Q3 THIN ADC121C021QIMKX/ SOT-23- DDC 6 3000 178.0 8.4 3.2 3.2 1.4 4.0 8.0 Q3 NOPB THIN ADC121C027CIMK/NOPB SOT-23- DDC 6 1000 178.0 8.4 3.2 3.2 1.4 4.0 8.0 Q3
in „ADC121 I²C-AD-Wandler funktioniert nicht, wieso?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IP-4GVI83_Manual.pdf
the front panel Power On/Off the button, and the other is the "Soft Off" function (coming from the M/Bc onboard circuit controller) that can be controlled by the operating system ® ® such as Windows 98/SE/ME/2000 or Windows XP. 1.3.6 IP-4GVI83 Series Overview Function / Model IP-4GVI83 ® ¡ Chipset Intel
in „Problem mit alter ISA-Karte in neuem Board“ · PC Hard- und Software ·
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Datei
ff.c
switch (fs->fs_type) { case FS_FAT12 : bc = (UINT)clst; bc += bc / 2; if (move_window(fs, fs->fatbase + (bc / SS(fs))) != FR_OK) break; wc = fs->win[bc++ % SS(fs)]; /* Get 1st byte of the entry */ if (move_window(fs, fs->fatbase + (bc / SS(fs
in „Arduino Sloeber - C Code einbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
loopback.pdf
! See Datasheet! 004 005 .def temp =r16 006 .def address =r21 007 .def value =r22 008 .def mask =r23 ; for BitModify 009 .def stack =r24 010 .def stack2 =r25 011 ; mcp2515 Instructions: 012 .equ WRITE =0b00000010 013 .equ READ =0b00000011 014 .equ RESET =0b11000000 015 .equ BITMODIFY =0b00000101 016
in „CAN übertragung brich ca. nach 10 sek ab“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BinHex.h
0x1F #define 0b00100000 0x20 #define 0b00100001 0x21 #define 0b00100010 0x22 #define 0b00100011 0x23 #define 0b00100100 0x24 #define 0b00100101 0x25 #define 0b00100110 0x26 #define 0b00100111 0x27 #define 0b00101000 0x28 #define 0b00101001 0x29 #define 0b00101010 0x2A #define 0b00101011 0x2B #define
in „bitmasken in C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
io.h> #include <util\delay.h> int main(){ int i,j,k,t,s,laenge; int zeichen[100]; char showtext[] = "aBcHjMpOxZ.,:!?"; /*Dieser Text soll angezeigt werden*/ char zeichensatz[] = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789\x20\x2E\x2C\x3A\x3B\x21\x3F\x22\x27\x2D\x5F\x2B\x2A\x23\x3C\x3E
in „Fehler bei 7x5 Dotmatrix mit mega32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
circuitjs-Statron_3201.txt
zCk6Qz0CBeRATZkjKWhjltNwvDyvwlpzlIlmXqg3jKJg6AEBiepgC2WgmPI5oQNoyh6RAmAEO25jwDgxAKGUJhsMJ1jOK4tSGm6ICGkKJX+j5piVTwpKlaYho2ue5r1S0ny1F5vhtc0PVOV1rUWg1H5dU6pVOoBC62j5TqsJ13RTa6yk2k6lgnJ663TWtXSWltq2lEcvnPoNwhud1bmsoaggGvZPq6ndAGmHg7rtVaTSkpdJqmDd5ViL0VSec9u1OuBKTSIFwVYGFEXaNFCJnA4+QQOFQhoOFZiXmlFD2Nge7iIW1GwC46DXJa803BTwjSU8ywJmsVOelNdaIOoJPsxzWAMAQ6lcXwfAECQwnILi04YwAXowAB2jBSsw2YATw6m2AQ61uhQiD4cw
in „Frage zum Statron 3201“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elektor.pdf
load, 13 21 Fb+ 13 21 R30 such as may be present with a long 14 22 R30 14 22 1k speaker cable. 1k 15 23 Fb 0 15 23 Fb0 The leads for the secondary of the 16 24 * 16 24 * transformer are formed by bringing 17 25 17 25 the tinned ends of the windings out 18 26 18 26 to the terminal board. If you use one
in „Röhrenverstärkerstufe ECC XX welches System zuerst?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
8051_Instructions.pdf
LJMP adrl 6 22 RET 42 ORL dadr,A 62 XRL dadr,A 82 ANL A2 MOV C,badr C2 CLR C E2 MOVX A,@R0 03 RR A 23 RL A 43 ORL dadr,#c8 63 XRL dadr,#c8 83 MOVC A,@A+PC A3 INC DPTR C3 CLR A E3 MOVX A,@R1 04 INC A 24 ADD A,#c8 44 ORL A,#c8 64 XRL A,#c8 84 DIV AB A4 MUL AB C4 SWAP A E4 CLR A 05 INC dadr 25 ADD A,dadr
in „Wieviel Zyklen pro Befehl??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GS503__Communication_Protocol__von_http-www.iconcox.com-uploads-soft-140917-1-14091GT538.pdf_.pdf
Device ID Device ID users 15 digits of IMEI number. For example:123456789012345, Device ID:0x01 0x23 0x45 0x67 0x89 0x01 0x23 0x45 4.5.1.1.2 Type identity code Type identity code occupies 2 bytes. The type of the device can be judged on the basis of this identity code. GS503 Senior Phone has different
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PDF
AD7302.pdf
zeros are latched into the input registers of each DAC update occurs on the rising edge of WR. Figure 23 shows the and the DAC registers are in transparent mode, thus the output timing associated with the automatic update mode of operation of both DACs is held at ground potential until a write takes and
in „(S) AD7302BNZ DAC DIP20“ · Markt ·
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Datei
iom88.h
USART0 Control and Status Register A */ SFR_B(TWAMR, 0xBD) /* 2-wire Serial Interface */ SFR_B(TWCR, 0xBC) /* 2-wire Serial Interface Control Register */ SFR_B(TWDR, 0xBB) /* 2-wire Serial Interface Data Register */ SFR_B(TWAR, 0xBA) /* 2-wire Serial Interface Address Register */ SFR_B(TWSR, 0xB9) /* 2-wire
in „IAR Embedded Workbench for Atmel AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6800_Instruction_Set.PDF
14 !NBA! AB 1 2 AND Accumulators 21 00010101 025 15 ! 22 00010110 026 16 TAB AB 1 2 Transfer A to B 23 00010111 027 17 TBA AB 1 2 Transfer B to A 24 00011000 030 18 ! 25 00011001 031 19 DAA A 1 2 Decimal Adjust A 26 00011010 032 1A ! 27 00011011 033 1B ABA AB 1 2 Add B to A 28 00011100 034 1C ! 29 00011101
in „Neues aus der KI“ · Offtopic ·
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MC1496.pdf
Capacitance cp − 5.0 − pF oo Input Bias Current 7 − ▯A I − 12 30 I ▯ I1 ▯ I4 ; I ▯ I8 ▯ I10 bS bS 2 bC 2 bC − 12 30 Input Offset Current 7 − I − 0.7 7.0 ▯A ioS ioS= I1−I4ioC= I8−I10 IioC − 0.7 7.0 Average Temperature Coefficient of Input Offset Current 7 − TC − 2.0 − nA/⋅C Iio (A = −55⋅C to +125⋅C) Output
in „Analogmultiplizierer aufbauen - Audiobereich“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD725.pdf
GAIN (%) MIN = –0.06 MAX = 0.43 pk–pk = 0.49 0.5 0.00 0.07 –0.05 0.20 0.22 0.39 0.5 0.00 –0.06 0.15 0.23 0.43 0.38 0.4 0.4 0.3 0.3 0.2 0.2 0.1 0.1 0.0 0.0 –0.1 –0.1 –0.2 –0.2 DIFFERENTIAL PHASE (deg) MIN = –0.33 MAX = 1.17 pk–pk = 1.50 DIFFERENTIAL PHASE (deg) MIN = –0.44 MAX = 1.34 pk–pk = 1.79 2.0 0.00
in „(F)UZE-Box Zusatzmodul für AVR NET-IO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSA00206265.pdf
=2 Phase INERTIALLOAD 100g-cm EXCITING MODE =2 Phase INERTIALLOAD 100g-cm STEPPING MOTORS 19 SIZE 23 SERIES SST55D3030 DRIVER SDU2201 CURRENT =0.6 A/Phase SST55D3030 DRIVER TYPEA(C=1µF,R=0) VOLTAGE V : w=12 V EXCITING MODE =2 Phase INERTIALLOAD 100g-cm 2 EXCITING MODE =2 Phase INERTIALLOAD 100g-cm 2
in „Daten zu einem Schrittmotor herausfinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MPU-6050.pdf
Do not connect. 20 Y Y CPOUT Charge pump capacitor connection 22 Y Y RESV Reserved. Do not connect. 23 Y SCL / SCLK I C serial clock (SCL); SPI serial clock (SCLK) 23 Y SCL I C serial clock (SCL) 24 Y SDA / SDI I C serial data (SDA); SPI serial data input (SDI) 2 24 Y SDA I C serial data (SDA) 2, 3, 4
in „MPU 6050 Gyrosensor auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PS-MPU-6000A-00v3.4.pdf
Do not connect. 20 Y Y CPOUT Charge pump capacitor connection 22 Y Y RESV Reserved. Do not connect. 23 Y SCL / SCLK I C serial clock (SCL); SPI serial clock (SCLK) 23 Y SCL I C serial clock (SCL) 2 24 Y SDA / SDI I C serial data (SDA); SPI serial data input (SDI) 2 24 Y SDA I C serial data (SDA) 2, 3,
in „Neigungswinkelinkelmessung beweglicher Teile“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet_SC_rev_C_full.pdf
assigned to individual controller models as follows: { SC-felix model 1 { SC-felix 24dxa0840-C00 JEF01-A10BC { SC-felix model 2 { SC-felix 24dxa1040-C00 JEF01-A10BC { SC-raptor model 1 { SC-raptor 24dxa0840-C00 JEF01-A10BC { SC-raptor model 2 { SC-raptor 24dxa1040-C00 JEF01-A10BC { SC-serpent model 1 { SC-serpent 24dxa0840-C00 JEF01-A10BC { SC-serpent model 2 { SC-serpent 24dxa1040-C00 JEF01-A10BC ▯ Other con▯guration { any non-standard con▯guration of the controller described in this datasheet. ▯ OEM solution { controller could be customized
in „UART mit Optokopplern galvanisch trennen bei unterschiedlichen Spannungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
go-SSD1325.pdf
ROW1 ROW29 ROW1 ROW29 COM2 ROW2 ROW30 ROW2 ROW30 COM3 ROW3 ROW31 ROW3 ROW31 : : : : : : : : : : COM23 ROW23 ROW51 ROW23 ROW51 COM24 ROW24 ROW52 ROW24 ROW52 COM25 ROW25 ROW53 ROW25 ROW53 COM26 ROW26 ROW54 ROW26 ROW54 : : : : : : : : : : COM49 ROW50 ROW77 ROW50 ROW77 COM51 ROW51 ROW78 ROW51 ROW78 COM52
in „Wie Dc/Dc-Wanlder aktivieren? (Display)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
go-SSD1325.pdf
ROW1 ROW29 ROW1 ROW29 COM2 ROW2 ROW30 ROW2 ROW30 COM3 ROW3 ROW31 ROW3 ROW31 : : : : : : : : : : COM23 ROW23 ROW51 ROW23 ROW51 COM24 ROW24 ROW52 ROW24 ROW52 COM25 ROW25 ROW53 ROW25 ROW53 COM26 ROW26 ROW54 ROW26 ROW54 : : : : : : : : : : COM49 ROW50 ROW77 ROW50 ROW77 COM51 ROW51 ROW78 ROW51 ROW78 COM52
in „Densitron OLED“ · Mikrocontroller und Digitale Elektronik ·
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xapp694.pdf
with data on din/dout and the sync pulse. 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 clock din SYNC n-2 SYNC n-1 SYNC n DATA0 DATA1 DATA6 DATA7 DATA8 sync dout DATA[7:0] DATA[7:0] data_ready x694_07_033104 Figure 7: Control State Machine Block Timing
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Datei
dude511.txt
Device code: 0x21 = (unknown) avrdude: Recv: " [22] Device code: 0x22 = (unknown) avrdude: Recv: # [23] Device code: 0x23 = (unknown) avrdude: Recv: $ [24] Device code: 0x24 = (unknown) avrdude: Recv: % [25] Device code: 0x25 = (unknown) avrdude: Recv: & [26] Device code: 0x26 = (unknown) avrdude: Recv
in „avrdude - Probleme unter Mac OS X 10.7 (Lion)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dude511_mit_arduino_conf.txt
Device code: 0x21 = (unknown) avrdude: Recv: " [22] Device code: 0x22 = (unknown) avrdude: Recv: # [23] Device code: 0x23 = (unknown) avrdude: Recv: $ [24] Device code: 0x24 = (unknown) avrdude: Recv: % [25] Device code: 0x25 = (unknown) avrdude: Recv: & [26] Device code: 0x26 = (unknown) avrdude: Recv
in „avrdude - Probleme unter Mac OS X 10.7 (Lion)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
User-Guide_L200.pdf
of the power transistor (dar- beenintroducedtolimittheoutputcurrentsothatthe lingtonformedbyQ22andQ23)and theoutputcur- dissipated power does not bring the junction tem- peratureabovethevaluesallowed.Theoperationof rent is limited. The limit depends on the current this circuit canbe summarizedas follows
in „Bastel Anleitung Funktion Generator und oder Labor Netzteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS1211.pdf
21.0 22.0 22.0 22.5 the rejection in the stopband (frequencies higher than the 40 20.0 21.5 22.0 22.5 23.0 first notch frequency) may only be –40dB. 50 20.0 21.5 21.5 22.0 23.0 60 19.5 21.0 21.5 22.0 23.0 These factors must be considered in the overall system 100 18.0 20.0 21.0 21.5 22.5 design. For example
in „Hardware SPI vs. BIT BANGING AD Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet__HIG__-_BTM41x_Modules-1590941.pdf
...................................................................................................23 9 Related Documents and Files.............................................................................................. 24 Embedded Wireless Solutions 3 Laird Technologies Support Center: Americas
in „[V] Bluetooth Module 2x BTM411 Class2 und 1xBTM331A“ · Markt ·
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PDF
rfm63dw.PDF
..........66 3.4. Receiver Description............................................................ 23 7.1. Crystal Resonator Specification...........................................66 3.4.1. Architecture...................................................................... 23 7.2. Software for Frequency
in „JDY-40 ein neuer Geniestreich aus China?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Panasonic_Smd.pdf
""%@COC*A #FF>0$AH@1MHA>@*+A@ = !"""@COC*A 9A-A>AM'A@=*IMHI>HC &8L@N"%% /,@0&=@L@ 1"% /,@8�@9L 1%23# Explanation of Part Numbers E R J 3 G E Y J 1 0 2 V ✽ When omitted, all other P/N factors shall be moved up respectively. Design and specifications are subject to change without notice. Ask factory for
in „SMD - Widerstände günstig abzugeben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
crc_m16.c
}; // Table of CRC values for low-order byte const unsigned char CRCM16LoArray[256]= { 0x00,0x11,0x23,0x32,0x46,0x57,0x65,0x74,0x8C,0x9D, 0xAF,0xBE,0xCA,0xDB,0xE9,0xF8,0x10,0x01,0x33,0x22, 0x56,0x47,0x75,0x64,0x9C,0x8D,0xBF,0xAE,0xDA,0xCB, 0xF9,0xE8,0x21,0x30,0x02,0x13,0x67,0x76,0x44,0x55, 0xAD,0xBC,
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Datei
Main.lst
20 21 xdata unsigned char seriennummerHALLO _at_ 0x011A; 22 xdata unsigned char var0 _at_ 0x011B; 23 xdata unsigned char var1 _at_ 0x011C; 24 xdata unsigned char var2 _at_ 0x011D; 25 xdata unsigned char var3 _at_ 0x011E; 26 xdata unsigned char var4 _at_ 0x011F; 27 xdata unsigned char var5 _at_ 0x0120
in „Interrupt stört Programmablauf und umgekehrt?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
serial_logamatic_monitoring_2.txt
RX: 04 08 33 00 08 FF 3C FB FF 28 00 02 46 00 00 RX: 04 08 34 00 0A 01 0A 83 00 00 00 00 03 00 00 BC DA 00 0E 70 RX: 04 08 FD 00 63 03 77 08 11 52 79 00 36 0F 33 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 RX: 04 08 FE 00 63 02 98 53 04 53 05 20 08 06 FF FF FF FF FF FF FF FF FF FF FF FF FF FF FF
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Datei
main.lst
, 0x30 ; 48 b6: 81 50 subi r24, 0x01 ; 1 b8: 90 40 sbci r25, 0x00 ; 0 ba: e0 40 sbci r30, 0x00 ; 0 bc: e1 f7 brne .-8 ; 0xb6 <__EEPROM_REGION_LENGTH__+0x36> be: 00 c0 rjmp .+0 ; 0xc0 <__EEPROM_REGION_LENGTH__+0x40> c0: 00 00 nop _delay_ms(1000); char hello[] = "Hi\r\n"; c2: 85 e0 ldi r24, 0x05 ; 5 c4
in „Attiny412 - String über USART“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pt2262Dec.asm
3 2 1 0 ; SetupSchritt Schalt PON MaxSet .def Schritt=R22 ; Schritt Zwischenspeicher .def T0high1=R23 ; Timer OVL Zaehler .def LBefehl=R30 ; letzter Befehl .def ServoAL= R24 .def ServoAH= R25 .def ServoBL= R26 .def ServoBH= R27 .equ Amin = 590 ; Servo A .equ Amax = 2270 .equ Bmin = 590 ; Servo B .equ
in „Probleme bei 433Mhz Datenübertragung“ · Mikrocontroller und Digitale Elektronik ·
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hex.pdf
The audio format used on the SCO link. yes 0x00: CVSD 0x01: µ-Law 0x02: A-Law 0x03-0xFF: reserved 23 0067-0068 RfcommLatency 0x0000 Configures the default poll period of master to slave.no 0x0000: No requirement (default 40slots) 0x0002-0x0190: Valid link latency 24 0069-006C Frequency 0x00000000 The
in „EEPROM Memory Map“ · Mikrocontroller und Digitale Elektronik ·
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156346062-STi7105.pdf
AUX_VDP_FIFO_EMPTY_IRQ 0xB80 INTREQ00[9] i n COMPO_CAP_BF 0xBA0 INTREQ00[10] n o Compo Capture d COMPO_CAP_FF 0xBC0 INTREQ00[11] n C o PIO0_INTERRUPT 0xC00 INTPRI00[15:12] INTREQ00[12] d COMMs/PIO PIO1_INTERRUPT 0xC80 INTPRI00[19:16] INTREQ00[13] f i PIO2_INTERRUPT 0xD00 INTPRI00[23:20] INTREQ00[14] l PIO6_INTERRUPT
in „Motorola Vip19x0 (Big brother of Vip1710)“ · Mikrocontroller und Digitale Elektronik ·
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Java_AVR32_doc32049.pdf
0xBB 3 23 Create a new object new_quick 0xDD 3 13 Create a new object newarray 0xBC 2 19 Create new array nop 0x00 1 Do nothing pop 0x57 1 Pop top operand stack word pop2 0x58 1 Pop top two operand stack words
in „Arm(e)s JAVA - Jazelle“ · Mikrocontroller und Digitale Elektronik ·