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Datei
dut.v
//Resettasks task Rcv_Reset; begin Rcv_Data <= 8'b0; Rcv_Done <= 1'b1; Rcv_State <= State_Idle; Rcv_Counter <= 32'b0; Rcv_Pointer <= 4'b0; Rcv_True_Counter <= 32'b0; Rcv_False_Counter <= 32'b0; Prev_RxD <= RxD; Rcv_has_synchronized <= 1'b0; end endtask task Sd_Reset; begin TxD <= 1'b1; Sd_Done <= 1'b1; Sd_Counter <= 32'b0; Sd_State <= State_Idle; Sd_Pointer <= 4'b0; end endtask //Statemachine Recieve always @(posedge Clk) begin //Resetblock if(Rst) Rcv_Reset(); else begin case(
in „UART Sende/Empfangsbaustein, Verilog, schaut mal jemand drüber?“ · FPGA, VHDL & Co. ·
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Datei
hope.c
<< PB1)|(1 << PB2)|(1 << PB3)|(1 << PB4)); DDRD &=~((1 << PD5)|(1 << PD6)|(1 << PD7)); PORTD |=((1 << PD5)|(1 << PD6)|(1 << PD7)); /*Interaput initialisierung ------------------------------*/ TCCR1B |= (1<<
in „Atmega88 region text overflowed by 156 bytes“ · Mikrocontroller und Digitale Elektronik ·
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Datei
vga_generator.v
8'b1; else pixel_x <= 8'b0; if (hs_end && !h_max) vga_hs <= 1'b1; else vga_hs <= 1'b0; if (hr_start) h_act <= 1'b1; else if (hr_end) h_act <= 1'b0; end //vertical control signals always@(posedge clk or negedge
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Datei
KlassenDemo_09Jul2012.py
= ", InstanzKI_B.iVariable1) print ("InstanzKI_B.iVariable2 = ", InstanzKI_B.iVariable2) print ("InstanzKI_B.iInstanzenZaehlerA sollte 1 sein.") print ("InstanzKI_BA.iInstanzenZaehlerB sollte 3 sein.") print ("\n\n")
in „Python 3: Warum klappt die Initialisierung einer Klasse nicht?“ · Softwareentwicklung ·
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PDF
DAT-31-PP.pdf
2500 3000 3500 4000 Frequency (MHz) Frequency (MHz) ATTENUATION (2dB) @ +25°C, +85°C, -45°C ATTENUATION (4dB) @ +25°C, +85°C, -45°C 2.5 4.5 2.4 -45°C 4.4 -45°C +25°C 2.3 +25°C 4.3 +85°C +85°C 2.2 4.2 2.1 4.1 B ) ( 2 B 4 ( 1.9 3.9 1.8 3.8 1.7 3.7 1.6 3.6 1.5 3.5 0 500
in „Signalpegel mit Pin-Dioden einstellen?“ · HF, Funk und Felder ·
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PDF
SCH2.pdf
1 2 3 4 5 6 7 8 9 A A B B S10R_L S10S_L H1R_L H1S_L H10R_L H10S_L S1R_L S1S_L D15 A1 A1 A2 A2 A1 A1 A2 A2 D51 A1 A1 A2 A2 D65 A1 A1 A2 A2 D8 A3 A4 D30 A3 A4 D44 A3 A4 D58 A3 A4 BAT60J A3 A4 BAT60J A3 A4 BAT60J A3 A4 BAT60J A3 A4 BAT60J D16 B1 B2 BAT60J D38 B1 B2 BAT60J D52 B1 B2 BAT60J D66 B1 B2 D9 B3 B1 B2 B4 D31 B3 B1 B2 B4 D45 B3 B1 B2 B4 D59 B3 B1 B2 B4 C BAT60J B3 B4 BAT60J B3 B4 BAT60J B3 B4 BAT60J B3 B4 C BAT60J D17 BAT60J D39 BAT60J
in „Fehlersuche Code Arduino IDE ESP32 - Timer Interrupt - NTP-Client“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pa-transformer-pcb-2.kicad_pcb.txt
83b4-8ce191d8caf7) ) (pad "1" thru_hole circle (at 0 0) (size 10.16 10.16) (drill 6.1) (layers F&B.Cu *.Mask) (tstamp 6bd531c9-0cf8-4b64-9688-1b653e4c221e)) ) (footprint "Connector:Banana_Jack_1Pin" (layer
in „Upload to AISLER from KiCAD Problem - no drills found.“ · Platinen ·
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PDF
Datenblatt__CMX602B_ds-1627030.pdf
Microsystems Plc 2 D/602B/2 Calling Line Identifier CMX602B 1.2 Block Diagram Figure 1 Block Diagram 2003 CML Microsystems Plc 3 D/602B/2 Calling Line Identifier CMX602B 1.3 Signal List Packages Signal Description D4/P3/E4
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HAMEG_HM1507-3_Oscilloscope_Service.pdf
1 0 8 3 C 4 0 0 8 B 9 CE _ 5 1R l U © 1 1 0 on 5 1R l H F R 3 0 9 6 R 096687B R Q Q rÿ R 4 0 9 3 © C\ R 4 0 2 1 ii2Q © 5 DO TRG r o i 5 IC 4000B CEl\ 3 1O O T R -B -I N 5 1 LDv i 1 0 0 R .. y H F R 3098
in „HM 1507-3 bootet nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT-210_V3NewFormat.pdf
— DC - 0.5 GHz dB — 1.3 1.5 DC - 1.0 GHz dB — 1.5 1.8 DC - 2.0 GHz dB — 2.0 — Attenuation Accuracy DC - 1.0 GHz ± (0.15 dB + 3% of Atten Setting in dB) dB DC - 2.0 GHz ± (0.30 dB + 3% of Atten Setting in dB) dB VSWR Ratio
in „Suche digital einstellbare Dämpfung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Pulse_Leo.ino
) | (1 << COM1B1); tccr1b_setup = 0 | (1 << WGM13) | (1 << WGM12); OCR1A = periode - 1; OCR1B = duty - 1; switch (prescaler) { case 1 : tccr1b_setup |= (1 << CS10); break; // prescaler 1 case 8 : tccr1b_setup
in „Präzise Pulse aus Arduino Leonardo“ · Mikrocontroller und Digitale Elektronik ·
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PDF
27512EP_EDA.pdf
jmp NZ,X3 219 IN A,[P05] 220 jmp X4 221 ; 222 X3 cmp 005 223 CCF 224 jmp C,L1B68 225 cmp 003 226 L1B68 IN A,[P05] 227 SET 6,A 228 jmp NC,L1B70 229 X4 RES 6,A 230 L1B70 SET 4,A 231 RES 5,A 232 OUT [P05],A 233 mov HL,[ARGU1] 234 mov DE,[D18F6] 235 L1B7D mov C,P09 236 OUT [C],D 237
in „EDA-Dateien bearbeiten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
minirv32ima.cpp
immm4; break; case 0b001: if ( rs1 != rs2 ) pc = immm4; break; case 0b100: if ( rs1 < rs2 ) pc = immm4; break; case 0b101: if ( rs1 >= rs2 ) pc = immm4; break; //BGE case 0b110: if ( (uint32_t)rs1 < (uint32_t)rs2 ) pc = immm4
in „RISC/V kommt in Schwung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Can.h
>> 3) & 00011111b; a = (rxb1sidh & 00000111b) << 5; b = (rxb1sidl & 11100000b) >> 3; pCanMsg->Can.Eid[2] = a | b | (rxb1sidl & 00000011b); pCanMsg->Can.Eid[1] = rxb1eidh; pCanMsg->Can.Eid[0] = rxb1eidl; pCanMsg->Can.DlcAndRtr
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PDF
Sp3A-DSP-1800A-Starter-Schematic-Rev1.pdf
DDR2_UDM_0 ETH_Tx_D2 1A2 1B2 GMII_TXD1 11 IO_L47p_3 V1 DDR2_LDM_0 ETH_Tx_D3 B6 1A3 1B3 B1 GMII_TXD2 11 IO_L47n_3 V2 B5 1A4 1B4 B2 GMII_TXD3 11 IO_L48p_3 T10 R137 22R0 ETH_Tx_D4 C6 1A5 1B5 C1 GMII_TXD4 11 B IO_L48n_3 T9 RST_DQS_DIV
in „Schematics von Spartan 3A-DSP 1800 Board“ · FPGA, VHDL & Co. ·
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PDF
EM638325_SDRAM.pdf
DBy1 DBy2 DBy3 DBz0 DBz1DBz2 Commandte Command Command Command Commandge Commandte Command Bank A Bank B Bank B Bank B Bank B Bank B Bank B Preliminary 37 Rev 1.4 Oct. 2005 EtronTech 2Mega x 32 SDRAM EM638325
in „SDRAM Burst lesen ohne Unterbrechung über Column, Row und Banks hinaus“ · FPGA, VHDL & Co. ·
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PDF
systemhandbuch_isr.pdf
Komponenten und Bezeichnungen: Sole-/Wasser-Wärmepumpe Wasser-/Wasser-Wärmepumpe K25/26 K25/26 Q9 Q9 B21 B21 K2/E1B82 K2/E12 B82 E15 F E9 E10 E15 F E9 E10 P K1/E1B81 P P K1/E11 P E26 P E26 P B81 B91 B91 B83 B83 Q8/E14 B92 B71 Q8/E14 B92 B71 E24 F E24 F Luft-/Wasser-Wärmepumpe K25/26 Q9 B21 K2/E12 B82
in „Brötje ISR Plus Kommunikation / LPB“ · Haus & Smart Home ·
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Datei
estimator.c
{ b_B[3 * r1] = A[r1]; b_B[1 + 3 * r1] = A[r1 + 7]; b_B[2 + 3 * r1] = A[r1 + 14]; } r1 = 0; r2 = 1; r = 2; maxval = fabs(b_A[0]); a = fabs(b_A[1]); if (a > maxval) { maxval = a; r1 = 1; r2 = 0; } if (fabs(b_A[2]) > maxval) { r1 = 2; r2 = 1; r = 0; } b_A[r2] /= b_A[r1]; b_A[r] /= b_A[r1]; b_A[3 + r2] -= b_A[3 + r1] * b_A[r2]; b_A[3 + r] -= b_A[3 + r1] * b_A[r]; b_A[6 + r2] -= b_A[6 + r1] * b_A[r2]; b_A[6
in „EKF Code Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
kueche_2.lst
f6d6 .db $D6,$F6 ;Ö,ö 0000ab fcdc .db $DC,$FC ;Ü,ü 0000ac b0e2 .db $E2,$B0 ;ß,° lcdmap2: 0000ad e1e1 .db $E1,$E1 ;Ä,ä 0000ae efef .db $EF,$EF ;Ö,ö 0000af f5f5 .db $F5,$F5 ;Ü,ü 0000b0 dfe2 .db $E2,$DF ;ß,° 0000b1 00ff .db $FF,$00 ;invalid .include "rs485.asm"
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Datei
Can.h
>> 3) & 00011111b; a = (rxb1sidh & 00000111b) << 5; b = (rxb1sidl & 11100000b) >> 3; pCanMsg->Can.Eid[2] = a | b | (rxb1sidl & 00000011b); pCanMsg->Can.Eid[1] = rxb1eidh; pCanMsg->Can.Eid[0] = rxb1eidl; pCanMsg->Can.DlcAndRtr
in „MCP25055 CAN I/O Expander wie einfach programmieren?“ · Haus & Smart Home ·
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PDF
SwissArmyKnife.pdf
, 2 i0 –10 0 c = 1,N = 8 0 a 1 I1 –0.1 –20 –5 0 5 10 –1 0 1 –0.5 0 0.5 –0.5 0 0.5 Time Real Part Frequency Frequency 0 2 Differencer 1 a1 P a 0 = 1,a 1 0,a = 2, r 0 n0 –10 0 b 0 1,b = 11,b = 0, 2 g c 1 0 –1 –10 5 10 I –1 0 1 –2–0.5 0 0.5 –0.5 0 0.5 Time Real Part Frequency Frequency Integrator 1 r1 0 2 a a 0 = 1,a 1 1,a = 2, y b = 1,b = 0,b = 0, 0.5 a0 –10 0 0 1 2 i ci= 0 a 0 I1 –20 –2 0 5 10 –1 0 1 –0.5 0 0.5 0.5 0
in „The Swiss Army Knife of Digital Networks“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
UPS051_20Application_20Note_20V3.5.pdf
timing Please refer to the data sheet of UPS051. 4 Appendix D ’ GC U OT A CT 5 Fig (a). Fig (b). 6 G G B t e e n R R r B G B r R i G B G r R R o G ’ 1 B R B D 0 G G L S B P U t y o m e m m r R f t G d 4 y B l p i R f 3 o G l B p 2 m R x 1 e G o B t a t x . 3 i F 8 +15V +15V VCCD -10V -10V C1 R1
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PDF
nokia_6085_rm-198_service_schematics_v2.pdf
to Mic 1n0 150p Vbias C2102 220R Mic1N B1 220R/100MHz L2100 B2 GND2 H1 MicB1 HFSpP 1 2u2 C2270 56nH L2101 3 GND GND HFSpN C2 1n0 4 IHF speaker L2271 C2271 C2272 C2105 C2106 56nH 2 AUDIO(8:0) FM radio 5 E1 Mic3P
in „H179IT01 1,7" TFT aus Nokia Handy - Daten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PE4302.pdf
Truth 0 0 0 0 0 1 0 1 dB Table, Parallel Mode). 0 0 0 0 1 0 0 2 dB Table 6. Parallel PUP Truth Table 0 0 0 1 0 0 0 4 dB 0 0 1 0 0 0 0 8 dB P/S LE PUP2 PUP1 Attenuation State 0 1 0 0 0 0 0 16 dB 0 0 0 0 Reference Loss 0 1 1 1 1 1 1 31.5 dB 0 0 1 0 8 dB Note: Not all 64 possible combinations of C0.5-C16 are shown in table 0 0 0 1 16 dB 0 0 1 1 31 dB Serial Interface 0 1 X X Defined by C0.5-C16 The serial interface is a
in „Einstellbares Dämpfungsglied, Stufenschalter gesucht“ · HF, Funk und Felder ·
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PDF
Einfuehrung_in_Matlab.pdf
b=[1,2,3,4] oder b=[1 2 3 4] erzeugen b=[1 2 3 4]. • Eingabe von spaltenorientierten Zahlenfeldern: Die Eingabezeilen c=[1;2;3;4] oder [1 (CR) 1 2 (CR) 2 3 (CR) erzeugen c = 4 ] 3 . 4 . • Eingabe von einfachen
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3d_drucker_print_v16.pdf
100uF 100uF 820 A02 IO35 IO21 STEP-Y SPI_MISO B1Z1 4 B2Z3 B4B-XH-A(LF)(SN) STEP-X +5V 330 STEP-E4 7 IO32 GND2 32 Z-1/D 5 4 A1Z1 3 3 SPI_MISO 4 5 B1Z3 4 4 3 6 B2X B4B-XH-A(LF)(SN) DIR-E4 8 IO33 IO19 31 SPI_MISO SPI_SCK 6 3 A2Z1 2 2 Z-3/D 5 4 A1Z3 3
in „Eigenes 3D-Drucker Board - Viele Fragen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
decoder11n.ino
firstsig;//das erste Dit bzw. Daa //Codetabelle Morsezeichen: /*static char codetab[59]={5,0x18,0x1a,0x0c,2,0x12,0x0e,0x10,4,0x17,0x0d, 0x14,7,6,0x0f,0x16,0x1d,0x0a,8,3,9,0x11,0x0b,0x19,0x1b, 0x1c,0x3f,0x2f,0x27,0x23,0x21,0x20,0x30,0x38,0x3c,0x3e, 0x15,0x1e,0x13,0x8c,0x1f,0x55,0x73,0x78,0x6a,0x4c,0x61
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Datei
test.ino.asm
TOV0)) && (t < 255)) 1b4: a8 9b sbis 0x15, 0 ; 21 1b6: 05 c0 rjmp .+10 ; 0x1c2 <micros+0x24> 1b8: 2f 3f cpi r18, 0xFF ; 255 1ba: 19 f0 breq .+6 ; 0x1c2 <micros+0x24> m++; 1bc: 01 96 adiw r24, 0x01 ; 1 1be: a1 1d adc r26, r1
in „Atmega328 1-Wire mit Timer CTC/PWM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ALgAn102.bas
+ ' T v O Ô Ì \ Š l ð Ç Ý Ý LPM R17,Z+ ' T v O Ô ÌTimer1 Ý è l ð Ç Ý Ý LPM R18,Z ; LDI R19,1 'Timer1 Ì v X P ð Ý è SBRC R16,7 'If v X P l=x1? Then LDI R19,2 IN R20,Tccr1b ANDI R20,$F8 OR R20,R19 Out Tccr1b , R20 Out Ocr1ah , R18 'Timer1 ä r W X ^A ð Ý è Out
in „Bascom .def not found“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCA9306.pdf
Ω Rpu(B)= 1.18 kΩ R pu(B) 1.82 kΩ 1.5 V R pu(A) 1.1 kΩ R pu(A) none R pu(A) none R pu(A) none R pu(B) 1.1 kΩ Rpu(B)= 866 Ω Rpu(B)= 1.18 kΩ R pu(B) 1.78 kΩ 1.8 V Rpu(A)= 1.47 kΩ R pu(A) none R pu(A) none Rpu(B)= 1.47 kΩ Rpu(B)= 1.15 kΩ R pu(B) 1.78 kΩ 2.5 V Rpu(A)= 1.96 kΩ R pu(A) none Rpu(B)= 1.96 kΩ R pu(B) 1.78 kΩ 3.3 V R pu(A) none R = 1.74 kΩ pu(B) PCA9306 All information provided in this document is
in „[V] ONSEMI Dual bidirectional PCA9306 I2C-bus and SMBus Voltage-level translator (30St für10€)“ · Markt ·
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PDF
PCA9306.pdf
Ω Rpu(B)= 1.18 kΩ R pu(B) 1.82 kΩ 1.5 V R pu(A) 1.1 kΩ R pu(A) none R pu(A) none R pu(A) none R pu(B) 1.1 kΩ Rpu(B)= 866 Ω Rpu(B)= 1.18 kΩ R pu(B) 1.78 kΩ 1.8 V Rpu(A)= 1.47 kΩ R pu(A) none R pu(A) none Rpu(B)= 1.47 kΩ Rpu(B)= 1.15 kΩ R pu(B) 1.78 kΩ 2.5 V Rpu(A)= 1.96 kΩ R pu(A) none Rpu(B)= 1.96 kΩ R pu(B) 1.78 kΩ 3.3 V R pu(A) none R = 1.74 kΩ pu(B) PCA9306 All information provided in this document is
in „[V] .Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (30St/10€)“ · Markt ·
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PDF
PCA9306.pdf
Ω Rpu(B)= 1.18 kΩ R pu(B) 1.82 kΩ 1.5 V R pu(A) 1.1 kΩ R pu(A) none R pu(A) none R pu(A) none R pu(B) 1.1 kΩ Rpu(B)= 866 Ω Rpu(B)= 1.18 kΩ R pu(B) 1.78 kΩ 1.8 V Rpu(A)= 1.47 kΩ R pu(A) none R pu(A) none Rpu(B)= 1.47 kΩ Rpu(B)= 1.15 kΩ R pu(B) 1.78 kΩ 2.5 V Rpu(A)= 1.96 kΩ R pu(A) none Rpu(B)= 1.96 kΩ R pu(B) 1.78 kΩ 3.3 V R pu(A) none R = 1.74 kΩ pu(B) PCA9306 All information provided in this document is
in „[V] ca. 190St.Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (20St/8€)“ · Markt ·
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PDF
PCA9306.pdf
Ω Rpu(B)= 1.18 kΩ R pu(B) 1.82 kΩ 1.5 V R pu(A) 1.1 kΩ R pu(A) none R pu(A) none R pu(A) none R pu(B) 1.1 kΩ Rpu(B)= 866 Ω Rpu(B)= 1.18 kΩ R pu(B) 1.78 kΩ 1.8 V Rpu(A)= 1.47 kΩ R pu(A) none R pu(A) none Rpu(B)= 1.47 kΩ Rpu(B)= 1.15 kΩ R pu(B) 1.78 kΩ 2.5 V Rpu(A)= 1.96 kΩ R pu(A) none Rpu(B)= 1.96 kΩ R pu(B) 1.78 kΩ 3.3 V R pu(A) none R = 1.74 kΩ pu(B) PCA9306 All information provided in this document is
in „V] ca. 170 St.Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator (20St/8€)“ · Markt ·
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PDF
PCA9306.pdf
Ω Rpu(B)= 1.18 kΩ R pu(B) 1.82 kΩ 1.5 V R pu(A) 1.1 kΩ R pu(A) none R pu(A) none R pu(A) none R pu(B) 1.1 kΩ Rpu(B)= 866 Ω Rpu(B)= 1.18 kΩ R pu(B) 1.78 kΩ 1.8 V Rpu(A)= 1.47 kΩ R pu(A) none R pu(A) none Rpu(B)= 1.47 kΩ Rpu(B)= 1.15 kΩ R pu(B) 1.78 kΩ 2.5 V Rpu(A)= 1.96 kΩ R pu(A) none Rpu(B)= 1.96 kΩ R pu(B) 1.78 kΩ 3.3 V R pu(A) none R = 1.74 kΩ pu(B) PCA9306 All information provided in this document is
in „[V] Konvolut Dual bidirectional PCA9306 I2C-bus and SMBus voltage-level translator“ · Markt ·
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PDF
STM32MP151A_Block_Diagram.pdf
GPIOC 16b 16 13 8b D QUADSPI (dual) 4 6 DLYBSD1 GPIOD 16b 16 37 16b FMC M (SDMMC1 DLY control) R DLYBSD2 14 8b L SDMMC1 T I A (SDMMC2 DLY control) GPIOE 16b 16 D F : 14 8b L SDMMC2 I I GPIOF 16b 16 D T F X Y A
in „STM32MP1 von ST“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DB_CD4052BE.pdf
“ON” CHANNEL(S) CD4051B 0 0 0 0 0 0 0 0 1 1 0 0 1 0 2 0 0 1 1 3 0 1 0 0 4 0 1 0 1 5 0 1 1 0 6 0 1 1 1 7 1 X X X None CD4052B INHIBIT B A 0 0 0 0x, 0y 0 0 1 1x, 1y 0 1 0 2x, 2y 0 1 1 3x, 3y 1 X X None CD4053B INHIBIT A OR B
in „[S] CD4052BE von TI“ · Markt ·
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PDF
DELL_VOSTRO_3300__WIstron_Winery13_MB_DIS_.pdf
E1 M_B_DM1 M_A_DQ20 G7 SA_DQ19 M_B_DQ23 J1 SB_DQ22 SB_DM1 H3 M_B_DM2 M_A_DQ21 G10 SA_DQ20 M_B_DQ24 J5 SB_DQ23 SB_DM2 K1 M_B_DM3 M_A_DQ22 J7 SA_DQ21 B9 M_A_DM0 M_B_DQ25 K2 SB_DQ24 SB_DM3 AH1 M_B_DM4 M_A_DQ23
in „Bios programmieren mit Dual Bios Main.Bin und EC.Bin ?“ · Softwareentwicklung ·
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Datei
Z80Mem.asm
.db 0x3D, 0x20, 0x2E, 0xD1 .db 0xF1, 0x30, 0x13, 0x20 .db 0x37, 0xE1, 0xC1, 0x70 .db 0x2B, 0x71, 0x2B, 0xC1 .db 0x70, 0x2B, 0x71, 0x2B .db 0xC1, 0x70, 0x2B, 0x71 .db 0x18, 0xEA, 0xF5, 0xD5 .db 0x21, 0x02, 0x01, 0xCB .db 0x7E,
in „ZAtmel: ein minimalistisches Z80-System“ · Projekte & Code ·
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Datei
IMG_1577_96.c
0x53, 0x03, 0x87, 0x38, 0xAF, 0x4D, 0xD7, 0x10, 0x0B, 0x7B, 0x94, 0xF1, 0xB1, 0xFE, 0x9B, 0x1C, 0x35, 0x72, 0x6B, 0x39, 0x12, 0x0F, 0xCC, 0x01, 0xEB, 0x53, 0xC1, 0x79, 0x35, 0xBC, 0xA1, 0xE3, 0x66, 0x56, 0x07, 0xA8, 0x38, 0xDE, 0xA9, 0x6F, 0xC5, 0x21,
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Datei
Code.txt
konfiguriert ldi tmp1,0b11111111 out DDRB,tmp1 ldi tmp1,0b11110111 out DDRD,tmp1 ;hier wird der Pullupwiederstand abgeschaltet ldi tmp1,0b00000000 out portb,tmp1 ldi tmp1,0b00000000 out portd,tmp1 ;-----------------------
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PDF
m1306b.pdf
divulged without prior written agreement. WM_PRJ_M13_UGD_001 -003 November 11, 2006 Fastrack M1306B User Guide Packaging 2 Packaging 2.1 Contents The complete package contents of the Fastrack M1306B consists of (see Figure 1): • one packaging box (A), • one M1306B (B), • two holding bridles (C), •
in „[V] gebrauchtes GSM-Modem von Wavecom Fastrack“ · Markt ·
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PDF
epr.pdf
voltage: 02:20V, 03:30V, 06:60V, 08:80V, 20:200V, 25:250V, 35:350V, 40:400V, 60:600V Contact type: 1A:1 form A, 1B:1 form B, 1C:1 form A/1 form B 2A:2 form A, 2B:2 form B Load type: 0:DC, 1:AC&DC Package type: 2:DIP, 3:SMD, 4:SOP Series name: EPR:MOS RELAY 1 For the latest product information, Please
in „Optokoppler für ARM's“ · Mikrocontroller und Digitale Elektronik ·
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PDF
big_pcb.PDF
17 G1 R51 17 G1 R83 17 G1 R99 17 G1 R131 17 G1 R147 17 G1 R179 17 G1 74HC1381 1 10 R4 PIP2N10B1 R36 PI2IN20B1 R52 PIP2N30B1 R84 PI2IN40B1 R100 PI2IN5B17 R132 PI2IN60B1 R148 PI2IN70B1 R180 PI2IN8B17 GND PIOUT01
in „STC LED Cube 8x8x8 RGB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TM1637_datasheet.pdf
MSB LSB B7 B6 B5 B4 B3 B2 B1 B0 显示地址 1 1 0 0 0 0 00H 1 1 0 0 0 1 01H 1 1 无关项,填 0 0 1 0 02H 1 1 0 0 0 1 1 03H 1 1 0 1 0 0 04H 1 1 0 1 0 1 05H 该指令用来设置显示寄存器的地址;如果地址设为0C6H 或更高,数据被忽略,直到有效地址被设定; 上电时,地址默认设为00H。 3、显示控制 MSB LSB B7 B6 B5 B4 B3 B2 B1 B0 功能 说明 1 0 0 0 0 设置脉冲宽度为 1/16 1 0 0 0 1 设置脉冲宽度为 2/16 1 0 0 1 0 设置脉冲宽度为 4/16 1 0 0 1 1 消光数量设置 设置脉冲宽度为 10/16 1 0 无关项,填 1 0 0 设置脉冲宽度为 11/16 0 1 0 1 0 1 设置脉冲宽度为 12/16 1 0 1 1 0 设置脉冲宽度为
in „7-Segmentanzeige an Atmega32“ · Mikrocontroller und Digitale Elektronik ·
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MCP320412-bitA-DConverterDatasheet.pdf
a high impedance node, leaving the CLK running to clock out the LSB-first data or zeros. FIGURE 5-1: Communication with the MCP3204 or MCP3208. CYC tCSH CS t SUCS Power Down CLK Start D IN D2 D1 D0 Don’t Care SGL/ DIFF HI-Z NulB11 B8 B7 B6 B5 B4 B3 B2 B1 B0 B1 B2 B3 B4 B5 B6 B7 B8 B9 B10B11 * HI-Z
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Datei
generic_fifo_dc_gray.v
<= wp_gray_next; assign wp_bin_next = wp_bin + {{aw{1'b0}},1'b1}; assign wp_gray_next = wp_bin_next ^ {1'b0, wp_bin_next[aw:1]}; always @(posedge rd_clk) if(!rd_rst) rp_bin <= {aw+1{1'b0}}; else if(rd_clr) rp_bin <= {aw+1{1'b0}}; else if(re) rp_bin <= rp_bin_next; always @(posedge rd_clk) if(!rd_rst) rp_gray <= {aw+1{1'b0}}; else if(rd_clr) rp_gray <= {aw+1{1'b0}}; else if(re) rp_gray <= rp_gray_next; assign rp_bin_next = rp_bin + {{aw{1'b0}},1'b1}; assign rp_gray_next = rp_bin_next ^ {1'b0, rp_bin_next[aw:1]}; /
in „FT2232H in FT245 FIFO Mode - kein Burst möglich“ · FPGA, VHDL & Co. ·
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filemon-winavr-20060125.log.txt
CREATENEW READWRITE DENYNONE 140 19:27:56 Avr-gcc:FFE5124B Seek F:\TEMP\CC5B2CGB.S SUCCESS Beginning Offset: 0 / New offset: 0 141 19:27:56 Avr-gcc:FFE5124B Seek F:\TEMP\CC5B2CGB.S SUCCESS End Offset: -1 / New offset: -1 142 19:27:56 Avr-gcc:FFE5124B Seek F:
in „avr-gcc: _spawnv: No such file or directory“ · Mikrocontroller und Digitale Elektronik ·
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STM32_Min_System_Dev_Board.pdf
/PD0 1 2 B 7 A3 B5 7 R4 B0 18 8 A4 B4 8 100k B1 19 PB0/ADC12_IN8/TIM3_CH3[TIM1_CH2N] C13 C14 9 A5 B3 9 BOOT1 20 PB1/ADC12_IN9/TIM3_CH4[TIM1_CH3N] 10 A6 A15 10 B3 39 PB2/BOOT1 12p 12p 11 A7 CN5 A12 11 B4 40 JTDO[PB3/TIM2_CH2/TRACESWO/SPI1_SCK] 12 +3.3V DRP6 +3.3V 12 41 JNTRST[PB4/TIM3_CH1/SPI1_MISO] 13 B0 A11 13 B5 PB5/I2C1_SMBAL[TIM3_CH2/SPI1_MOSI] 14 B1 1 2 A10 14 B6 42 PB6/I2C1_SCL/TIM4_CH1[USART1_TX] 15 B10 BOOT0 3 4 BOOT1 A9 15 B7
in „STM32F103C8T6 ARM STM32 Minimum System Development Board Module For Arduino“ · Mikrocontroller und Digitale Elektronik ·
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STM32_Min_System_Dev_Board.pdf
/PD0 1 2 B 7 A3 B5 7 R4 B0 18 8 A4 B4 8 100k B1 19 PB0/ADC12_IN8/TIM3_CH3[TIM1_CH2N] C13 C14 9 A5 B3 9 BOOT1 20 PB1/ADC12_IN9/TIM3_CH4[TIM1_CH3N] 10 A6 A15 10 B3 39 PB2/BOOT1 12p 12p 11 A7 CN5 A12 11 B4 40 JTDO[PB3/TIM2_CH2/TRACESWO/SPI1_SCK] 12 +3.3V DRP6 +3.3V 12 41 JNTRST[PB4/TIM3_CH1/SPI1_MISO] 13 B0 A11 13 B5 PB5/I2C1_SMBAL[TIM3_CH2/SPI1_MOSI] 14 B1 1 2 A10 14 B6 42 PB6/I2C1_SCL/TIM4_CH1[USART1_TX] 15 B10 BOOT0 3 4 BOOT1 A9 15 B7
in „billige stm32 minimalsysteme für 2,99 euro - taugt das was?“ · Mikrocontroller und Digitale Elektronik ·
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test3.txt
??G%*t90R*b0M*r512S*r4U*v90A*v88B*v85C*v0I*v53A*v5B*v25C*v1I*v2A*v22B*v64C*v2I*v23A*v14B*v17C*v3I*v63A*v21B*v15C*v4I*v12A*v10B*v8C*v5I*v3A*v26B*v25C*v6I*v10A*v4B*v27C*v7I*v4A*v4B*v6C*v8I*v4A*v4B*v6C*v9I*v4A*v4B*