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LT084AC27500-v05R.pdf
Pixels Display Data (MSB) TB5 13 B0 Blue Pixels Display Data (LSB) TB6 15 B1 Blue Pixels Display Data TC0 16 B2 Blue Pixels Display Data TC1 18 B3 Blue Pixels Display Data TC2 19 B4 Blue Pixels Display Data TC- No.11 RxIN2- TC3 20 B5 Blue Pixels Display Data (MSB) TC4 22 HSYNC H-Sync TC+ No.12 RxIN2+ TC5
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PDF
MC_productmatrix_022005.pdf
1,8V USB + I†C 10/100 V1.3 - MMU 2x256 Core; 1536KB ! MHz TC11IB-64D96E 96MHz ~10ns V2.0 - 3,3V IO 64KB DRAM 96 6xGPT ASC + SSC + PCI + MMCI P-BGA-388 - TC1910 - - 3xASC+SSC+I2C P-LBGA-208 66MHz ~15ns - ! 144KB 40 3xGPT OCDS 1 ! TC1912 4GB ! ! 3xASC+SSC+I2C ! ! ! P-LBGA-208 TC1920 100MHz 10ns V2.0 - 164kB 64 6 / 12Bit 6xGPT 3xASC+SSC+I2C+SDLM P-LBGA-260 - TC1765N-L40EB 2xASC P-LBGA-260 TC1765T-L40EB - ! 256 2,5V 48KB 77 24 / 12Bit 56 - TWINCAN TC1765T-L40U GPTA 2xSSC Bare
in „8051-Derivat mit zwei UART gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EN0170EJ1V0DS00.PDF
TIMING (1) mode: NTSC, internal CLK Parameter Symbol min. typ. max. Unit Remarks CLK Frequency 1 / tc – 6.36 – MHz – – 157.32 – ns Rise/fall tcrf – – 70 ns – Duty tch / tc 0.4 0.5 0.6 – – HS Frequency th 60.38 63.56 66.74 s 15.734 kHz – 404 – CLK (typ.) Display thd – 50.34 – s – – 320 – CLK Pulse-width
in „Luminance Control Signal“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s1d13700.pdf
edge 0.5Tc - 5 ⎯ 0.5Tc - 4 ⎯ ns t5 FPDAT[3:0] hold from FPSHIFT falling edge 0.5Tc - 5 ⎯ 0.5Tc - 4 ⎯ ns t6 FPLINE rising edge delay from FPSHIFT rising edge 0 4 0 4 ns t7 Latch pulse width Tc - 5 ⎯ Tc - 4 ⎯ ns
in „LPC2140 an S1D13700 Display driver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s1d13700.pdf
edge 0.5Tc - 5 ⎯ 0.5Tc - 4 ⎯ ns t5 FPDAT[3:0] hold from FPSHIFT falling edge 0.5Tc - 5 ⎯ 0.5Tc - 4 ⎯ ns t6 FPLINE rising edge delay from FPSHIFT rising edge 0 4 0 4 ns t7 Latch pulse width Tc - 5 ⎯ Tc - 4 ⎯ ns
in „[V] 8 LCDs 320x240 s/w, 6 Zoll, Touch, inkl Controller“ · Markt ·
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PDF
s1d13700.pdf
edge 0.5Tc - 5 ⎯ 0.5Tc - 4 ⎯ ns t5 FPDAT[3:0] hold from FPSHIFT falling edge 0.5Tc - 5 ⎯ 0.5Tc - 4 ⎯ ns t6 FPLINE rising edge delay from FPSHIFT rising edge 0 4 0 4 ns t7 Latch pulse width Tc - 5 ⎯ Tc - 4 ⎯ ns
in „Erste GLCD (Touch) -Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s1d13700.pdf
edge 0.5Tc - 5 ⎯ 0.5Tc - 4 ⎯ ns t5 FPDAT[3:0] hold from FPSHIFT falling edge 0.5Tc - 5 ⎯ 0.5Tc - 4 ⎯ ns t6 FPLINE rising edge delay from FPSHIFT rising edge 0 4 0 4 ns t7 Latch pulse width Tc - 5 ⎯ Tc - 4 ⎯ ns
in „[v] LCDs 320x240 s/w, 6 Zoll, Touch, inkl Controller“ · Markt ·
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PDF
s1d13700_320-240_display.pdf
edge 0.5Tc - 5 ⎯ 0.5Tc - 4 ⎯ ns t5 FPDAT[3:0] hold from FPSHIFT falling edge 0.5Tc - 5 ⎯ 0.5Tc - 4 ⎯ ns t6 FPLINE rising edge delay from FPSHIFT rising edge 0 4 0 4 ns t7 Latch pulse width Tc - 5 ⎯ Tc - 4 ⎯ ns
in „Anstuerung eines Grafik LCDs. Fragen zu Display und Controller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
1K88 III 24223K h 24252 2415K2 2422K1 24235 247K58 2 1 a „1K22 SV PP- 012V 2 2 C484722 t 1 PP* 5D3/TC4E25.2 8 vs» C4813 1 e .Q R43K74 523/1C4e25 I-3. N2 2 n C42412 TI2s2Cn 2 GND G 2 2 / R4853 3 C4844 “ í TV-LINE TC4222 DAZZZ vs' IC4888 u 122›< 2 2.12 „E1243 429/1C5221.9 C4811 IQI I§I IiI IiI m RDU6SB7ER
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Datei
probieren.asm
Bezeichnung begin: rjmp main ; 1 Power ON RESET reti ; 2 Int0- Interrupt reti ; 3 Int1- Interrupt reti ; 4 TC2 Compare Match reti ; 5 TC2 Overflow reti ; 6 TC1 Capture reti ; 7 TC1 Compare Match A reti ; 8 TC1 Compare Match B reti ; 9 TC1 Overflow reti ;10 TC0 Overflow reti ;11 SPI, STC = Serial Transfer Complete
in „Hat schonmal einer ein Opel TID ->erfolgreich<-angesteuert ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
99geraete.txt
TL062 CD4070 CD4011 2-06a 06 43 DT830B 3.5 TSC7106 2-06b 43 CM2300 3.5 TSC7106 2-07a 07 48 M830B 3.5 TC7106 2-07b 07 48 DT830B 3.5 TC7106 2-08a 08 54 DT830C 3.5 TSC7106 LM308 CD4011 TL062 LM334 2-08b 54 CM2400 3.5 TSC7106 LM308 CD4011 TL062 LM334 2-09 09 61 DT830D 3.5 TSC7106 --- LC4011 TL062 2-10a 11
in „Suche Schaltplan / Bed-Anleitung Mastech M840D DMM gute Qualität“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fft232.asm
---------------; ; Program code area .cseg rjmp reset ; RESET rjmp 0 ; INT0 rjmp 0 ; INT1 rjmp 0 ; TC2 COMP rjmp 0 ; TC2 OVF rjmp 0 ; TC1 CAPT rjmp 0 ; TC1 COMPA rjmp 0 ; TC1 COMPB rjmp 0 ; TC1 OVF rjmp 0 ; TC0 OVF rjmp 0 ; SPI rjmp 0 ; USART RXC rjmp 0 ; USART UDRE rjmp 0 ; USART TXC ; rjmp isr_adc
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
fft232.asm
---------------; ; Program code area .cseg rjmp reset ; RESET rjmp 0 ; INT0 rjmp 0 ; INT1 rjmp 0 ; TC2 COMP rjmp 0 ; TC2 OVF rjmp 0 ; TC1 CAPT rjmp 0 ; TC1 COMPA rjmp 0 ; TC1 COMPB rjmp 0 ; TC1 OVF rjmp 0 ; TC0 OVF rjmp 0 ; SPI rjmp 0 ; USART RXC rjmp 0 ; USART UDRE rjmp 0 ; USART TXC ; rjmp isr_adc
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
schematic-T962.pdf
P1.18/TRACEPKT2 P0.31 DB1 P1.17/TRACEPKT1 RED DB0 7 16 P1.16/TRACEPKT0 P0.28/AD0.1/CAP0.2/MAT0.2 13 TC1 (SHT 3) 2 7 ISP E 6 53 P0.18/CAP1.3/MISO1/MAT1.3 R 4 2.54-5P R/W 5 54 P0.19/MAT1.2/MOSI1/CAP1.2 P0.29/AD0.2/CAP0.3/MAT0.3 14 TC2 (SHT 3) RS 4 2 P0.22/AD1.7/CAP0.0/MAT0.0 V0 3 P0.14/DCD1/EINT1/SDA1 41
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PDF
IRF4905.pdf
Operating Temperature l Fast Switching R DS(on) = 0.02Ω G l P-Channel l FullyAvalancheRated S ID= -74A Description FifthGenerationHEXFETsfromInternationalRectifier utilize advanced processing techniques to achieve extremely low on-resistance per silicon area. This benefit, combined with the fast switching
in „P Kanal Mosfet schlägt immer wieder mal Durch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP6241.pdf
Gain, Slew Rate G30 0 30 12 11 1 R30 30 0 1.00K C30 30 0 10p G31 0 31 3 4 2 I31 0 31 DC 65 R31 31 0 1 TC=3.67M,5.32U GD31 30 0 TABLE {V(30,31)} ((-100,-1u)(0,0)(1m,.1)(2m,2)) G32 32 0 3 4 -1.9 I32 32 0 DC 105 R32 32 0 1 TC=3.43M,4.42U GD32 0 30 TABLE {V(30,32)} ((-2m,2)(-1m,.1)(0,0)(100,1u)) G33 0 33 30
in „Spicemodell MCP6241“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
murata_resonators.pdf
, 4.19, 4.91, 5.00, 6.00, 8.00, 10.00MHz) *2 At -20 to +80D *3 For 10 years at room temperature *4 TC74HCU04 is used as the standard circuit for the MXJ040 series. *5 If connected with incorrect orientation, the above specification may not be guaranteed. *6 CSTCS series shall be recommended in automotive
in „Interessante Unbekannte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADV7175A.pdf
bit wide register. ing and rising edge remains constant)—see Figure 48. TTXREQ Rising Edge Control (TC07–TC04) TC07 TC06 TC05 TC04 TC03 TC02 TC01 TC00 These bits control the position of the rising edge of TTXREQ. It can be programmed from zero CLOCK cycles to a max of 15 TTXR EQ RISING EDGE CONTROL TTXR EQ FALLING EDGE CONTROL CLOCK cycles—see Figure 48. TC07 TC06TC05 TC04 TC03 TC02TC01 TC00 0 0 0 0 0 PCLK 0 0 0 0 0 PCLK TTXREQ Falling Edge Control (TC03–TC00) 0 0 0 1 1 PCLK 0 0 0 1 1 PCLK These bits control the position of the falling edge of TTXREQ. "
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PDF
Lenovo_Z50-70_NM-A273_ACLUA_MB_Rev0.3_schematic_.pdf
@ 1 TP_DC_TEST_B2 B2 DAISY_CHAIN_NCTF_B262 DAISY_CHAIN_NCTF_A62 A62 TP_DC_TEST_A62 1 @ TC74 DC_TEST_A61_B61 B61 DAISY_CHAIN_NCTF_B3 DAISY_CHAIN_NCTF_AV1 AW1 TP_DC_TEST_AW1 1 @ TC76 DC_TEST_B62_B63 B62 DAISY_CHAIN_NCTF_B62 DAISY_CHAIN_NCTF_AW2 AW2 DC_TEST_AY2_AW2 DC_TEST_C1_C2 BC1 DAISY_CHAIN_NCTF_B63
in „Laptop defekt: Kommunikation EC - PCH - CPU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Keysight-Agilent-HP-1142A.pdf
1% 0.125W TF TC=±100 24546 CT4-1/8-TO-3651-F R10 0698-4431 RESISTOR 2.05K 1% 0.125W TF TC=0±100 24546 CT4-1/8-TO-2052-F R11 0699-1203 RESISTOR 120.0 1% 0.125W TF TC=0±25 28480 0699-1203 R12 0757-0434 RESISTOR 3.65K 1% 0.125W TF TC=0±100 24546 CT4-1/8-TO-3651-F R13 0757-0420 1 RESISTOR 750 1% 0.125W TF TC=0±100 24546 CT4-1/8-TO-751-F R14 0698-4002 2 RESISTOR 5K 1% 0.125W TF TC=0±100 24546 CT4-1/8-TO-5001-F R15 0699-1203 RESISTOR
in „Isolierter Tastkopf, Isolated Oscilloscope Probe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Peavey_Semiconductors_Cross_Ref_2009.pdf
74LS624N 70420624 I.C. STK-6237 70406237 70406237 GRAPHIC EQ TC-9135 70409135 HEX PANEL SW TC-9144 70409144 LOGIC CHIP TDA-7000 70407000 FM TUNER I.C. TDA-8444 (DAC) 70408444 OCTUPLE 6 BIT TLC-274B 70400274
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Peavey_Semiconductors_CrossRef_2010.pdf
74LS624N 70420624 I.C. STK-6237 70406237 70406237 GRAPHIC EQ TC-9135 70409135 HEX PANEL SW TC-9144 70409144 LOGIC CHIP TDA-7000 70407000 FM TUNER I.C. TDA-8444 (DAC) 70408444 OCTUPLE 6 BIT TLC-274B 70400274
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
21483b.pdf
TC9400/9401/9402 Voltage-to-Frequency/Frequency-to-Voltage Converters Features General Description VOLTAGE-TO-FREQUENCY The TC9400/TC9401/TC9402 are low cost voltage-to- frequency (V/F) converters, utilizing
in „Frequenzen vervielfachen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sony_str-ks360_ks360s_ver-1.0_sm.pdf
AEP, UK) DCACON/OFF 22k (KS360/KS360S: US, CND) R1143 C1076 DCACON/OFF 1 47k (KS360S:AUS) 100 0.01 TC74VHC153B 2 ∗R1039 p p . . . TC74VHC153A TC74VHC153B 1k (KS360/KS360S: 2 0 2 3 3 3 TC74VHC153A 3 AEP (for HT-SS360), UK (for HT-SS360)) . . . . . . . . . . . . . . . . . . . . 2 1 2 BD3842CLK 47k (KS360S
in „Sony STR KS360S Verstärker geht auf Standby, LED blinkt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
FFT232b.asm
---------------; ; Program code area .cseg rjmp reset ; RESET rjmp 0 ; INT0 rjmp 0 ; INT1 rjmp 0 ; TC2 COMP rjmp 0 ; TC2 OVF rjmp 0 ; TC1 CAPT rjmp 0 ; TC1 COMPA rjmp 0 ; TC1 COMPB rjmp 0 ; TC1 OVF rjmp 0 ; TC0 OVF rjmp 0 ; SPI rjmp 0 ; USART RXC rjmp 0 ; USART UDRE rjmp 0 ; USART TXC ; rjmp isr_adc
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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tmpz84c015-stamp-64k.pdf
D1 14 D1 3 J3 1 EV CLK/TRG0 2 2 c A2 10 628128 15 D2 TMPZ84C015 NC A3 9 A2 D2 17 D3 2 10 BUSREQ ZC/TC0 74 A18 8 A3 U1 D3 18 BUSREQ 1 NC 3 A19 3 3 A4 A4 D4 D4 2 12 U2 80 A5 7 A5 D5 19 D5 1 BUSACK CLK/TRG1 D0 4 4 A17 A6 6 A6 SRAM D6 20 D6 BUSACK 75 A7 5 21 D7 J5 ZC/TC1 A16 27 A7 128Kx8 D7 D1 5 5 A8 26 A8 A0 6 A0 CLK/TRG2 79 CLK2 A9 A9 A1 5 D2 6 6 A15 A10 23 A10 4 A1 76 A11 25 A11 A2 3 A2 ZC/TC2 D3 7 7 A14 A12 4 A3 A3 28 A12 A4 2 A4 CLK/TRG3 78 A13 A13 A13 A5 1 D4 8 8 A14 3 A14 A6 100 A5 77 A15 31 A15 99 A6 ZC/TC3 Vcc D5 9 9 A12 2 A7 A7 CONN1 A16 A8 98 A8 1 A11 A9 97 A9 2 D6 10 10 R1 A10 96
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
navico_3g.pdf
Mirrored: MC34717 Dual5A lit dimly Buck U19, U24 TC4427AE Gate Driver Cyclone 5E disabled U11 TPS54240 2.5A Buck U30 AR801 5 Q8,Q9 240 MHztransimpedanc e FDS6912A Amp 30V 6A N MOSFET 128 Mbyte 24MHz sine NAND EEPROM 5.0Vout U1 TPS54240 2.5A Buck lit i.MX6
in „Reparaturbericht: i.MX6 Resetschaltung in Navico Schiffsradar“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BD901_NPN_Darlington.pdf
VCB = 100 V IE= 0 BD901 0.2 ICBO current V = 45 V I = 0 T = 100°C BD895 2 mA CB E C VCB = 60 V IE= 0 TC = 100°C BD897 2 VCB = 80 V IE= 0 TC = 100°C BD899 2 VCB = 100 V IE= 0 TC = 100°C BD901 2 I Emitter cut-off V = 5 V I = 0 (see Notes 3 and 4) 2 mA EBO current EB C Forward current hFE transfer ratio VCE
in „12V mit MTP3055VL und 5V schalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mXwqzyt.pdf
°C F 10 e k A e 5 P 0 0.001 0 70 90 110 130 150 0.2 0.6 1.0 1.4 1.8 2.2 1 5 10 50 Case Temperature Tc (°C) Forward Voltage VF(V) Overcurrent Cycles FML-22S Tc—I F (AV) Derating V FI F Characteristics (Typical) IFMS Rating 10 20 65 ) ) t/T 1/2 A ( ( 10 ( 60 S V F I 20ms ( 8 D.C. A I IF t/T 1/6 F t 50
in „Diode Ersatztyp?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
grundig_sonoclock_690.pdf
ADJUST FOR REMARK TP1,2 90MHz Speaker 90MHz L101 Max. o/p Vol. at max. position TP1,2 106MHz „ „ 106MHz TC102 „ „ „ „ 4) 75KHZ CRYSTAL OUTPUT ADJUST ADJUST FOR REMARK TP6,7 CHECK ONLY 75KHz± 10HZ 5) 1.8432MHZ CRYSTAL OUTPUT ADJUST ADJUST FOR REMARK TC201 TC201 1.8432MHz± 10HZ Note : 1. Use the digital meter
in „Radio Grundig sonoclock 690 - schaltet sich aus“ · Haus & Smart Home ·
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PDF
semicon.pdf
MBM29LV800TA 10PN Flash LCC48 2100 IC Mitsubishi M5M28F101VP 10 Flash TSOP32 480 IC Atmel AT49F040 70TC Flash TSOP32 1560 IC Sony CXK5V8512TM 10LL 64K x 8 Sram TSOP32 500 IC AM29LV800BB 90EA Flash TSOP48 356 IC ST 93S66 WMM6T SO 8 2500 IC Elpida R2518AB 8C DDR ram BGA 126 x SN74LCX00 MTCX SO14 500 IC Texas SN74ALVCH16374 DGGR 16 bit D register SO42 758 IC Texas SN74ABT16245A 16 bit bus driver SO42 242 x SN74AS373 SO20 500 x Philips SN74HCT374D SO20W 798 IC QS29FCT52 ATSO SO20W 372 IC IDT 72235 LB 15TF 2K x
in „4" TFT für 7,97€“ · Markt ·
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PDF
OM6206U_Z.pdf
(4) Tcut T °C) (1) TC0. (2) TC1. (3) TC2. (4) TC3. Fig.13 Temperature coefficients behaviour. 2001 Nov 14 16 Philips Semiconductors Product specification 65 × 102 pixels matrix LCD driver OM6206 8.10 Set VOP value Two overlapping
in „Display VG-G090651 von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AppleIISd.pdf
GND 28C64ASO GND ST1_-5V 34 SV1 1-2: Read Only 50 2-3: Read / Write ST1_+12V D 33 D ST1_-12V SV2 / TC1 C9 C8 C7 Program CPLD 100n 100n 100n 3 V TC1 + 1 V V 10 9 2 5 3 TDI 8 7 3 + + TDO TCK ST1_+5V 25 IN OUT 3 TCK 6 5 GND TDO 4 N N O 3 TMS 4 3 TDI 5 2C GND 1C 3C 2C + 2 1 TMS 6 V IC2 V V V C1 C2 IC1P +C3 LM1117DTX-3.3 +C13 C4 C5 C6 IC4SUPPLY C10 C11 C12 TC2050-IDC GND SV2 100n 100n N 10u/16V 10u/16V 100n 100n 100n N N N 10n 10n 10n 1G 4G 1G 2G E ST1_GND 26 E GND SD_A2 18.11.19 20:25 Sheet: 1/1 1 2 3 4 5 6 7 8 4 1 C C 6 1 E TC1 L 6 1 C C 2 V 1 S R4 5 CC
in „[S] Bestücken einer Apple II SD Karte SMD und THT“ · Markt ·
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PDF
HVG-100-SPEC.pdf
) AC/L(Brown) 3 6 tc SVT 18AWG×2C AC/N(Blue) STW 18AWG×3C -V(Black) . 3 +V(Red) 9 ψ4.2×4PL ‧ tc : Max. Case Temperature . 3 File Name:HVG-100-SPEC 2025-04-17 100W Constant Voltage + Constant Current LED Driver HVG-100 series
in „0-10V auf z.B. 4-7V skalieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
emw3165.pdf
ADC1_8 SPI1_NSS/I2S1_WS,SPI3_NSS/I2S3_WS, 38 PA4 I/O TC USART2_CK,ADC1_4 39 VDD S - - 40 VDD S - - 41 ANT - - External Antenna Pad 1. S = Supply pin. I = Input only pin. I/O = Input/output pin. 2. FT = 5 V tolerant I/O; TC = Standard 3.6 V I/O. 3. Pin4~7
in „EMW3165 - Der ESP8266 Killer ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BD650.pdf
IE= 0 BD650 -0.2 Collector cut-off V CB= -120 V IE= 0 BD652 -0.2 ICBO mA current V CB= -40 V IE= 0 TC = 150°C BD646 -2.0 V = -50 V I = 0 T = 150°C BD648 -2.0 CB E C V CB= -60 V IE= 0 TC = 150°C BD650 -2.0 V = -70 V I = 0 T = 150°C BD652 -2.0 CB E C Emitter cut-off IEBO current V EB= -5 V IC= 0 (see Notes
in „Kann man das so machen? PNP Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
uc3a1512.h
_TC_IRQ1 449 #define AVR32_TC_IRQ2 450 #define AVR32_TC_A0_0_0_PIN 55 #define AVR32_TC_A0_0_0_FUNCTION 0 #define AVR32_TC_A1_0_0_PIN 57 #define AVR32_TC_A1_0_0_FUNCTION 0 #define AVR32_TC_A2_0_0_PIN 59 #define AVR32_TC_A2_0_0_FUNCTION 0 #define AVR32_TC_B0_0_0_PIN 56 #define AVR32_TC_B0_0_0_FUNCTION 0 #define AVR32_TC_B1_0_0_PIN 58 #define AVR32_TC_B1_0_0_FUNCTION 0 #define AVR32_TC_B2_0_0_PIN 60 #define AVR32_TC_B2
in „Registernamen AT32UC3A1512“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32-P207-P407_rev_D.pdf
/ETH_RMII_TXD0/ETH_MII_TXD0/O74_HS_IOTG_HS_VBUS PB13 R128 20k 100nF 3.3VA VDDA PB13/SPI2_SCK/I2S2_CK/USART3_CTS/TIM1_CH1N/CAN2_TX/OTG_HS_ULPI_D6/ETH_RMII_TXD1/ETH_MII_TXD1/OTG_75_VBUSOTG_HS_DM R60 22R PB14/SPI2_MISO/TIM1_CH2N/TIM12
in „Mit STM32F4 einen Laser ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TXbuddy.asm
either signal edge to trigger INT0 out MCUCR, wr ; ldi wr, 1<<INT0 ; out GIMSK,wr ; permit INT0 ; TC1 (measure PWM signal duration) ldi wr, 1<<CS11 ; TC1 clock=system clock/8 out TCCR1B, wr ; 1 clock cycle=1 microsecond ; wait for PWM transition before starting TC1 wtftrans_1: sbic PWMport, PWMpin rjmp
in „Anfängerfrage zu AVR Tiny12“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fft3.asm
---------------; ; Program code area .cseg rjmp reset ; RESET rjmp 0 ; INT0 rjmp 0 ; INT1 rjmp 0 ; TC2 COMP rjmp 0 ; TC2 OVF rjmp 0 ; TC1 CAPT rjmp 0 ; TC1 COMPA rjmp 0 ; TC1 COMPB rjmp 0 ; TC1 OVF rjmp isr_adc ; TC0 OVF rjmp 0 ; SPI rjmp 0 ; USART RXC rjmp 0 ; USART UDRE rjmp 0 ; USART TXC ; rjmp isr_adc
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
fft3.asm
---------------; ; Program code area .cseg rjmp reset ; RESET rjmp 0 ; INT0 rjmp 0 ; INT1 rjmp 0 ; TC2 COMP rjmp 0 ; TC2 OVF rjmp 0 ; TC1 CAPT rjmp 0 ; TC1 COMPA rjmp 0 ; TC1 COMPB rjmp 0 ; TC1 OVF rjmp isr_adc ; TC0 OVF rjmp 0 ; SPI rjmp 0 ; USART RXC rjmp 0 ; USART UDRE rjmp 0 ; USART TXC rjmp isr_adc
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
datasheet_1_.pdf
edge 0.5Tc - 5 0.5Tc - 4 ns t5 FPDAT[3:0] hold from FPSHIFT falling edge 0.5Tc - 5 0.5Tc - 4 ns t6 FPLINE rising edge delay from FPSHIFT rising edge 0 4 0 4 ns t7 Latch pulse width Tc - 5 Tc - 4 ns
in „Display Ansteuerung mit Epsonlohnenswert oder zu aufwendig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s1d13700.pdf
edge 0.5Tc - 5 0.5Tc - 4 ns t5 FPDAT[3:0] hold from FPSHIFT falling edge 0.5Tc - 5 0.5Tc - 4 ns t6 FPLINE rising edge delay from FPSHIFT rising edge 0 4 0 4 ns t7 Latch pulse width Tc - 5 Tc - 4 ns
in „Quarz für S1D13700“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan mit ESP32-S2-MINI-2-N4 und Peripherie
U2 ESP32-S2-MINI-2-N4, 3.3V, GND, BOOT, EN, RX, TX, U1 SN74AHCT125DR, LED1 bis LED4, SOUND, REL, U3 AP63205WU-7, VIN, GND, OUT, U4 HT7838_C3011187 3.3V, C1 bis C10, R1 10k, GT-TC029B-H025-L1N, GT-TC029B-H025-L1N, KF2EDGR-5.0B-2P, KF2EDGR-5.0B-6P, KF2EDGR-2.54
in „WLED ESP32 Controller bauen“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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TC1797_UM_v1.1.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . 12-72 [1] User´s Manual I-18 V1.1, 2009-05 TC1797 Table of Contents 12.11.5 Standard Access Phases . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12-74 [1] 12.11.6 Burst Length Control . . . . . . . . . . . . . . . . . . . . . . .
in „TC1797 - keine Datenblätter?“ · Mikrocontroller und Digitale Elektronik ·
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Display_2_sch.pdf
IC2A 1 1 1 1 V 4 2 V 3 1 V (A10)PC2 5 5 5 GND 1 (A9)PC1 22 1 + + + +5V 2 (A8)PC0 21 3 PB0 3 5 IC2B 74AC02N PB1 4 (RD)PD7 17 4 PB2 5 16 6 PB3 6 (WR)PD6 15 74AC02N PB4 7 (OC1A)PD5 14 8 (XCK)PD4 13 MOSI (INT1)PD3 MISO 9 (INT0)PD2 12 D 1 SCK 10 (TXD)PD1 11 N 2 (RXD)PD0 10 G 3 SV1 4 V MEGA8515-P 5 5 + SV3
in „Grafikfähiger LCD Controller für 320x240 LCD mit 4 Graustufen“ · Projekte & Code ·
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GLCD_mit_Graustufen_32K_NT.pdf
8 IC3C 7805 +5V 10 12V 1N4001 C 4 C 4 C 6 C 8 C 9 1 R8 LED1 0 C 1 C 1 C 1 C 2 V 2 IN OUT 2 V V V V 74HC02N D2 + C14 GND 1,5K C4 C5 C6 C7 C8 C9 IC3P IC4P IC5P IC6P C15 C16 IC2P D D D D 11 IC3D IC9 GND n n n n n n 7 G 7 G 8 G 4 G 13 470µ 330n 100n 0 0 0 0 0 0 0 D 1 12 1 1 1 1 1 1 1 G 74HC02N GND GND GND
in „Grafikfähiger LCD Controller für 320x240 LCD mit 4 Graustufen“ · Projekte & Code ·
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MGA-62563__AV02-1237EN_.pdf
FREQUENCY (GHz) 6 1.62 0.42 -112 0.21 2.1 6.5 1.68 0.47 -102.3 0.28 2.34 Figure 34. MAG vs. Frequency. 7 1.74 0.52 -92.9 0.35 2.56 7.5 1.92 0.55 -82.2 0.47 2.91 8 2.04 0.57 -71.5 0.65 3.23 8.5 2.22 0.61 -60 0.85 3.65 9 2.32 0.65 -52.5 1.13 4.09 9.5 2.2 0.75 -43.5 1.41 4.55 10 2.39 0.74 -38.6 1.71 4.94 13 MGA
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Adapter.pdf.pdf
programator nie będzie przekraczał 3 mA. Rys. 1. Schemat elektryczny programatora ZL9PRG w w w .b tc .p l 2 ZL9PRG – Programator ISP układów PLD i mikrokontrolerów firmy Atmel (v. 1.0) ZL9PRG umożliwia jednoczesne programowanie wielu układów CPLD pod warunkiem, że są one połączone w łańcuch JTAG. !
in „AT89S52 ISP“ · Mikrocontroller und Digitale Elektronik ·
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zl9prg.pdf
programator nie będzie przekraczał 3 mA. Rys. 1. Schemat elektryczny programatora ZL9PRG w w w .b tc .p l 2 ZL9PRG – Programator ISP układów PLD i mikrokontrolerów firmy Atmel (v. 1.0) ZL9PRG umożliwia jednoczesne programowanie wielu układów CPLD pod warunkiem, że są one połączone w łańcuch JTAG. !
in „AT89S8253 programmieren“ · Mikrocontroller und Digitale Elektronik ·