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SSP_175_OBD_II.pdf
level for vehicles which comply with the Generic Scan Tool currently valid requirements (0.25 g/mi HC). The universal tester to fetch fault messages from fault memory. TLEV (Transitional Low Emission Vehicles) Approval level for vehicles with low exhaust ISO 9141-CARB emission figures (0.125 g/mi HC)
in „SRAM auslesen der von einer anderen CPU genutzt wird“ · Fahrzeugelektronik ·
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PDF
LTC1799f_oscillator_info.pdf
to 85°C 5-LEAD PLASTIC SOT-23 LTND Storage Temperature Range................. –65°C to 150°C JMAX= 125°CJA= 256°C/W LTNE Lead Temperature (Soldering, 10 sec)..................300°C Consult LTC Marketingfor partsspecifiedwithwider operatingtemperature ranges. ELECTRICAL CHARACTERISTICS The denotes the
in „Ein Rechteckgenerator mit LTC1799 - Nachbrenner?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC14538B.PDF
Range SOIC−16 SOIC−16WB • Pin−for−pin Compatible with MC14528B and CD4528B (CD4098) • Use the MC54/74HC4538A for Pulse Widths Less Than 10 ms with 16 14 Supplies Up to 6 V 538B • NLV Prefix for Automotive and Other Applications Requiring ALYWG G Unique Site and Control Change Requirements; AEC−Q100 Qualified
in „Platine Bedieneinheit mit Oszi durchmessen“ · Platinen ·
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PDF
max690a-max805l.pdf
MAX690AESA -40°C to +85°C 8 SO The MAX690A/MAX802L are pin compatible with the MAX690AMJA -55°C to +125°C 8 CERDIP** MAX690 and MAX694. The MAX692A/MAX802M are pin Ordering Information continued at end of data sheet. compatible with the MAX692. *Dice are specified at T = +25°C A Applications **Contact
in „[V] 13St MAX692A SO8 Microprocessor Supervisory Circuits/WD (6€)“ · Markt ·
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PDF
Datenblatt_VPC3_CLF3_UM300.pdf
interface supports the following processor series: Intel: 80C31, 80X86 Siemens: 80C166/165/167 Motorola: HC11-, HC16-, and HC916 types The VPC3+C handles the physical layer 1 and the data link layer 2 of the ISO/OSI-reference-model excluding the analog RS485 drivers. The integrated 4K Byte Dual-Port-RAM serves
in „Profibus an Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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Datei
EMS_Adapter.xml
MygdUBDRQBGCWfEDZkup1C6d8/FQyZvdBU1celdvfvcTin+RdNVlIz0NXeedqkHNUVy7uwSsd/bYynYHaHUolBt6ND56u5JL+IpubAAJHvEbysHAOpoJR74/I++zEiH0CxC8MbVozt2zF91cfxsWvHF3vYpivF1Qsl+fRgbM+Z8DwJ155uk4Q9k+nMX66+e2GW8/gwf/CbzV4dW0Fss7z3TFPfbY05NU7xuvHcXb49aJie9ZfbFRJBwPonoW+VKg3O3v3Fo+t5+rjrqf3S8YtWT5uAKy2OpxTD8Sah5BJRmiZztTj1dLqQpQU0x7Z9B
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Datei
EMS_Adapter.xml
MygdUBDRQBGCWfEDZkup1C6d8/FQyZvdBU1celdvfvcTin+RdNVlIz0NXeedqkHNUVy7uwSsd/bYynYHaHUolBt6ND56u5JL+IpubAAJHvEbysHAOpoJR74/I++zEiH0CxC8MbVozt2zF91cfxsWvHF3vYpivF1Qsl+fRgbM+Z8DwJ155uk4Q9k+nMX66+e2GW8/gwf/CbzV4dW0Fss7z3TFPfbY05NU7xuvHcXb49aJie9ZfbFRJBwPonoW+VKg3O3v3Fo+t5+rjrqf3S8YtWT5uAKy2OpxTD8Sah5BJRmiZztTj1dLqQpQU0x7Z9B
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ADS1211.pdf
DGND DV DV R1 DD DD 10kΩ T0 T1 DGND WR C1 27pF RD X2 XTAL X1 Q D Q D C VSS 2 Q CLK Q CLK 27pF 1/2 74HC74 1/2 74HC74 FIGURE 28. Three-Wire Interface with a 8xC32 Microprocessor. P1.0 8xC51 VCC P1.1 P0.0 P1.2 P0.1 P1.3 P0.2 AVDD P1.4 P0.3 AIN REF IN P1.5 P0.4 DV 1.0µF AIN REFOUT DD P1.6 P0.5 AGND AVDD
in „Hardware SPI vs. BIT BANGING AD Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S7200SH.pdf
T255 T101 bis T255 Zähler Z0 bis Z255 Z0 bis Z255 Z0 bis Z255 Z0 bis Z255 Z0 bis Z255 Schnelle Zähler HC0 bis HC5 HC0 bis HC5 HC0 bis HC5 HC0 bis HC5 HC0 bis HC5 Ablaufsteuerungsrelais (S) S0.0 bis S31.7 S0.0 bis S31.7 S0.0 bis S31.7 S0.0 bis S31.7 S0.0 bis S31.7 Akkumulatoren AC0 bis AC3 AC0 bis AC3 AC0
in „SPS Step 7-Micro/win v4.0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Baumappe_BX-222.0.pdf
- OUT2 TIP-CONN DIFF_B/3.6C 14 4A 4B 13 82 V 1µ C N R23 2k7 X4 KKB3,5STEBS35 V G 7 n 4 C 1 IC8 6 8 74CBTLV3126DBQ 1 C9 R24 GND GND 15k 100n C24 C44 47p 1n C63 100n + D 10µ G GND +3V3_SWI C35 +3V3_SWI © Box 73Amateurfunkservice GmbH 2013 www.funkamateur.de 9 BX-222.0 – FiFi-SDR – 131115 C C . . / / I
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PDF
Acer_Aspire_5742G_Compal_LA-5893P_Rev0.1_Schematic.pdf
IGPU_PWM_SELECT# R367 U 100K_0402_5% 17 DGPU_PWMSEL# R361 0_0402_5% A Y 100K_0402_5% 1 2 G U22 2 UMA@ SG@ 2 3 74AHC1G14GW_SOT3535 5 1 P E UMA ONLY@ 16 DPST_PWM 2 A OY 4 DPST_PWM_1 1 2 INVTPWM G R358 0_0402_5% U24 Reserved for UMA Only C 3 UMA@ C 74AHCT1G125GW_SOT353-5 DIS ONLY@ INVT_PWM 36 INVT_PWM R356 0_0402_
in „Laptop Akkus ausbauen und mit Netzteil betreiben“ · PC Hard- und Software ·
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PDF
STM32F407ZG-board-schematic.pdf
/DCMI_D8/USAR112TX SD_D3/SPI3_MISO 7 10uF/6.3V/TANT 10uF/6.3V/TANT 2 3.3V RESET CIRCUIT Q25.000MHz/HC-49SM(SMD)/20pF R63 NA PC11/UART4_RX/SPI3_MISO/SDIO_D3/DCMI_D4/USART113X SD_CLK/SPI3_MOSI 9 VA AOUTL 3-R 3.3V C44 27pF 150R 24 PC12/UART5_TX/SDIO_CK/DCMI_D9/SPI3_MOSI/I2S3_SD/USA7T3_CKTAMPER PC13 3.3V_A
in „8Mbit/s Manchester Code codieren und decodieren mit STM32F407“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F407ZG-board-schematic.pdf
/DCMI_D8/USAR112TX SD_D3/SPI3_MISO 7 10uF/6.3V/TANT 10uF/6.3V/TANT 2 3.3V RESET CIRCUIT Q25.000MHz/HC-49SM(SMD)/20pF R63 NA PC11/UART4_RX/SPI3_MISO/SDIO_D3/DCMI_D4/USART113X SD_CLK/SPI3_MOSI 9 VA AOUTL 3-R 3.3V C44 27pF 150R 24 PC12/UART5_TX/SDIO_CK/DCMI_D9/SPI3_MOSI/I2S3_SD/USA7T3_CKTAMPER PC13 3.3V_A
in „Problem: SPI Remap am STM32F407ZG“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CPU12RM.pdf
Z: 1; set V: 0; cleared C: 0; cleared Address Access Detail Source Form Mode Object Code HCS12 M68HC12 CLRA INH 87 O O CPU12 Reference Manual, Rev. 4.0 Freescale Semiconductor 125 Instruction Glossary CLRB Clear B CLRB Operation: 0 ⇒ B Description: All bits in accumulator B are cleared to 0. CCR Details
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Heizleiterlegierungen-Handbuch-GER.pdf
5,31 2,5 0,275 286 35,6 78,5 4,91 2,2 0,355 195 27,6 69,1 3,80 2,0 0,430 146 22,8 62,8 3,14 1,9 0,476 125 20,6 59,7 2,84 1,8 0,531 107 18,4 56,5 2,54 1,7 0,595 89,8 16,5 53,4 2,27 1,6 0,671 74,9 14,6 50,3 2,01 1,5 0,764 61,7 12,8 47,1 1,77 1,4 0,877 50,2 11,2 44,0 1,54 1,3 1,02 40,2 9,6 40,8 1,33 1,2 1,19
in „Heizelement aus Widerstandsdraht herstellen.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
96055.pdf
MSComm1.Output = Chr$(ETX) 'I/O Box auf B&B zurücksetzen Seite 80 Anhang Quellcodes cmdbit1.BackColor = &HC0C0C0 'bit zurückgesetzt cmdbit2.BackColor = &HC0C0C0 'bit zurückgesetzt cmdbit3.BackColor = &HC0C0C0 'bit zurückgesetzt cmdbit4.BackColor = &HC0C0C0 'bit zurückgesetzt cmdbit5.BackColor = &HC0C0C0 'bit zurückgesetzt cmdbit6.BackColor = &HC0C0C0 'bit zurückgesetzt cmdbit7.BackColor = &HC0C0C0 'bit zurückgesetzt cmdbit8.BackColor = &HC0C0C0 'bit zurückgesetzt lblswitch1.BackColor = &HC0C0C0 'Farbe ändern >> grau lblswitch2.BackColor = &HC0C0C0
in „[V] Roboterarm 360Grad drehung 4Achsen komplett“ · Markt ·
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magnetic.pdf
∂T 0 ∂R = − µ o − , in Ω ,c ∂t ∂t ∇ (µ To− µ ∇Φo = −∇ (µ T ) −o∇ 0, in Ω c (2.275) T × n = 0, on Γ Hc, (2.276) Φ = Φ ,0 on Γ Hc, (2.277) 1 ∇ T = 0, on Γ Hc, (2.278) σ 1 σ ∇ × T × n = 0, on Γ ,E (2.279) (µ o 0 µ To− µ ∇Φo+ R) n = 0, on Γ ,E (2.280) T n = 0, on Γ .E (2.281) The last boundary condition
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ST_70-780_Service_Manual.pdf
199 BR43281 110 195 C43098 124 228 C61056 290 127 F32412 139 168 BR117 96 144 BR184 168 28 BR46022 125 109 C43249 69 239 C61057 272 128 F33025 145 125 BR118 94 144 BR185 88 89 BR53076 289 178 C43266 95 225 C61063 175 52 BR119 24 74 BR186 56 96 BR53077 287 178 C43282 112 223 C61301 320 13 IC32000 45 190
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DELL_VOSTRO_3300__WIstron_Winery13_MB_DIS_.pdf
26 AVSS 21 AUD_VREFFLT VCC OE# 2 AVSS VREFFILT AUD_DMIC_CLK_Y 4 DY A 3 42 34 AUD_V_B Y GND PVSS V- 74LVC1G125DC-GP AUD_VREG 1 49 GND VREG 37 P G G 0R2J-2-GP 3 X - - 3 G DY 92HD79B1A5NLGXTAX-GP 1 0 K 1 X 1 X 1 0 X R3017 3 V 2 5 2 5 3 K 2 C D 3 3 3 3 C V R3014 2 6 2 C 6 2 C 6 2 D B 1 2 33R2J-2-GP AUD_DMIC_CLK
in „Bios programmieren mit Dual Bios Main.Bin und EC.Bin ?“ · Softwareentwicklung ·
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PDF
Sager_D87P_Service_Manual_Part4.pdf
H8_RESET# 1 PB3/D3/CS4# 69 R599 100K VDD3 D47 SCS751 GND RESET# PB4/D4 68 R593 0 PS_ON [32,35,37] 74HC151 R598 10K PB5/D5 58 C A R641 10K D45 VDD3 PB6/D6 57 D40 SCS751 RCIN# [18] VDD3 C A S D 7 PB7/D7 [20] CIR_RX NMI EN_CIR R602 1M VDD3 G Q30 R592 10K 1SS355 2N7002 8 2 VCC3S R618 STBY# XTAL 100K R590
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Advantest_R4131.pdf
SIA-TL082 R189 RCP-AH15K U23 SIA-4558 R190 RCP-AH1K U24 SIA-393 R191 RCP-AHI8OK ' R192 RCP-AH1K U25 SIM-74HC4538 R193-196 RMF-BJ22KFJ U26 SIM-74HCO3 U27 SIM-74HC00 A - 24 R4131 SERIES ---- B L R 0 1 5 1 1 7 X 0 2 (4 /4 ) Parts No. ADVANTEST Stock No. Parts No. ADVANTEST Stock No. U28 SIM -74HC74 U29 S IA
in „Advantest Spectrum Analyser R4131B Fehler im Netzteil“ · HF, Funk und Felder ·
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PDF
AD7718B.pdf
is connected to the IRQ input of the port bit is then polled to determine the status of RDY. The 68HC11. For interfaces that require control of the CS input on second scheme is to use an interrupt-driven system, in which the AD7708/AD7718, one of the port bits of the 68HC11 (such case the RDY output
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PDF
AD7718_16Bit_SPI_AD-Wandler.pdf
is connected to the IRQ input of the port bit is then polled to determine the status of RDY. The 68HC11. For interfaces that require control of the CS input on second scheme is to use an interrupt-driven system, in which the AD7708/AD7718, one of the port bits of the 68HC11 (such case the RDY output
in „[V] Verschiedene SMD-IC's“ · Markt ·
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PDF
Lenovo_Z50-70_NM-A273_ACLUA_MB_Rev0.3_schematic_.pdf
1 2 0_0402_5% RVG32 1 2 33_0402_5% CRT_HSYNC_R LVG9 1 2 HSYNC_CON @ G UVG3 @ BLM18BA100SN1D 1 1 3 74AHCT1G125GW_SOT353-5 1 @ CVG42 CRT_DDC_CLK d 15P_0402_50V8J 2 CRT_DDC_DAT i 1 1 f CVG43 CVG44 B 100P_0402_50V8J 2 2 68P_0402_50V8J B +5VS @ @ 2 2 1VG50 2 @ 1 RV@38 2 RVG46 RVG47 1K_0402_5% 0_0402_5% n
in „Laptop defekt: Kommunikation EC - PCH - CPU“ · Mikrocontroller und Digitale Elektronik ·
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Datei
imgres.htm
font-size:13px;line-height:16px;padding-top:8px;padding-bottom:4px}.tmxHT{cursor:pointer}input.Sg5kHc{color:rgba(0,0,0,.87);font-size:16px;line-height:18px;width:100%;cursor:pointer}.uWY3hb{border-bottom:1px solid rgba(0,0,0,0.12);overflow:hidden;text-overflow:ellipsis;white-space:nowrap}a.gM8Xcc,a.gM8Xcc:visited{color:rgba(0,0,0,.87);font-size:16px;line-height:26px;text-decoration:none}.Sg5kHc{color:rgba(0,0,0,.87);font-size:16px;line-height:18px;cursor:pointer}.KH2nKe{opacity:0;position:absolute}</style><div id="irc_sh" jsl="$t t-RHI35lUscno;$x 0;" class="r-i0ZfgQrqTgjI"><div class="gfi5jd
in „Anschlussplan Thermoschalter / Electrolux Herd Thermo-Schalter 387207902“ · Haus & Smart Home ·
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PDF
Ferroxcube_Data_Handbook.pdf
− 1000 4A11 850 ≈ 340 ≥ 125 ≈ 105 NiZn 5 10 − 300 4A15 1200 ≈ 350 ≥ 125 ≈ 10 NiZn 10 − 300 4A20 2000 ≈ 260 ≥ 100 ≈ 105 NiZn (1) 5 30 − 1000 4B1 250 ≈ 360 ≥ 250 ≈ 10 NiZn 50 − 1000 4C65 125 ≈ 380(1) ≥ 350 ≈ 105 NiZn 5 30 − 1000
in „Maximale Magnetflussdichte im Ferritkern Temperaturangabe“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
LED_CUBE.txt
**************************************************************************** Name : LED CUBE 8x8x8 74HC595 By : ****************************************************************************************/ #include <TimerOne.h> #include <string.h> #define AXIS_X 1 #define AXIS_Y 2 #define AXIS_Z 3 //--- Pin connected to ST_CP of 74HC595 //--- Gelbe Leitung RCK int latchPin = 10; //--- Pin connected to SH_CP of 74HC595 //--- Schwarze Leitung SCK int clockPin = 13; //--- Pin connected to DS of 74HC595 //--- Lila Leitung SI int dataPin
in „LED-Cube Effekte weiter per Knopfdruck“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Cube_Gro_.ino
**************************************************************************** Name : LED CUBE 8x8x8 74HC595 By : ****************************************************************************************/ #include <TimerOne.h> #include <string.h> #include <SPI.h> #define AXIS_X 1 #define AXIS_Y 2 #define AXIS_Z 3 #define BUTTON_PIN 14 #define TOTAL_EFFECTS 17 //--- Pin connected to ST_CP of 74HC595 //--- Gelbe Leitung RCK int latchPin = 10; //--- Pin connected to SH_CP of 74HC595 //--- Schwarze Leitung SCK int clockPin = 13; //--- Pin connected to DS of 74HC595 //--- Lila Leitung SI int dataPin
in „LED-Cube Effekte weiter per Knopfdruck“ · Mikrocontroller und Digitale Elektronik ·
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PDF
243_Moderne_integrierte_Schaltkreise_fuer_Rundfunkempfaenger.pdf
. . 2.2.4. Anwcndungsschnltung d<.':> A 125 D im ZF-Ver stärkl'r .10 .?l.S. Abgldehhinwc::isc . . .13 2.2.6. Anseh..ltung der AFe llei C-Diodenabgcstimmtcn Tunern , . 3. 1.2.7. AFC·Bcschaltung fiir Drchkondcnsatorlunt'r, .17 1.1.Ie LC-Filtcrvarillnl
in „UKW-Empfänger/Selbstbauanleitung gesucht“ · HF, Funk und Felder ·
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PDF
Datum_LPRO-101.pdf
kHz 100 kHz Test -dBc/Hz -dBc/Hz -dBc/Hz -dBc/Hz -dBc/Hz -dBc/Hz Notes 3-2 99 130 149 158 159 161 2 (74AC04) 3-3 102 130 149 155 157 159 2 (74AC04) 3-4 101 129 134 135 135 135 2, 3 (MC10ELT21D) 3-5 98 118 118 119 119 120 2, 4 (LT1016) TYP LPRO 86 96 138 152 156 158 1 FRK LN 103 130 149 158 160 161 1 1.
in „Ausgangsschaltung 10MHz Referenz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD9834.pdf
Theory of Operation......................................................................14 AD9834 to 68HC11/68L11 Interface....................................... 26 Circuit Description.........................................................................15 AD9834 to 80C51/80L51 Interface.............
in „AD8934 - DDS SPI Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
version_1p3_assembler.lst
A0 MOV P2,R2 4500: 125A 28 ADD A,R0 4501: 125B 40 BD JC E4YY 4502: 125D F5 09 MOV ASTKA,A 4503: 125F E2 MOVX A,@R0 4504: 1260 22 A_D: RET 4505: ; 4506: ;************************************************************ 4507: ;
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avarice_verbose.txt
recv: 0x0e sDATA: reading 5 bytes read: 84 67 00 00 00 recv: 0xf5 recv: 0xda CRC OK Got message seqno 74 (command_sequence == 74) response: 84 67 00 00 00 command[0x07, 1]: 07 recv: 0x1b recv: 0x4b recv: 0x00 recv: 0x05 recv: 0x00 recv: 0x00 recv: 0x00 recv: 0x0e sDATA: reading 5 bytes read: 84 67 00 00
in „XP Eclipse AVR Debugging sehr langsam“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematic__1_.pdf
SDA 5 SDA MIPI_2P SCL SCL 18 MIPI_2N 6 NC 19 GND 7 GND +5V +3.3V 20 MIPI_1P 8 GND 21 MIPI_1N 22 GND HC-FPC-05-10-8RLTAG DSI0_CLK_P 23 2 4 1 1 DSI0_CLKP DSI0_CLK_N24 MIPI_CLKP GND J5 DSI0_CLKN 25 MIPI_CLKN HDGCPH2.54-PZS-2X20 DSI0_P 26 GND 5 5 V V DSI0_P DSI0_N 27 MIPI_0P 8 3 3 DSI0_N 28 MIPI_0N PI_TX
in „Hilfe benötigt! Pi Compute Module 4 Carrier Board ohne Funktion!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Diplomarbeit_24_Kanal_EEG_Recorder.pdf
100kOhm und Cd in einem Bereich von 10- 50nF. Die Spannung E entsteht durch die Bildung von elektrischen hc Doppelschichten (Helmholzschichten) zwischen Elektrode und Haut. Die Größenordnung dieser Gleichspannung liegt bei einigen 10mV und ist somit um 2 bis 3 Zehnerpotenzen höher als das Nutzsignal. Aufgrund
in „EEG-Kappen-Controller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD9857.pdf
VCC W2 CONNECTION K RESET L C GND W11 D CIC TEST POINT DPD J8 PARALLEL PORT DVDD W12 GND U1 VCC P1 74HC574 AVDD 1 1 20 OUT_EN VCC 2 2 D0 Q0 19 C20 3 3 18 VCC 80 79 78 77 76 75 74 73 72 71 70 69 68 67 66 65 64 63 62 61 0.01µF 4 4 D1 Q1 17 E D D D D D D D D D D L K T D D D K K D R4 D2 Q2 L U N N N D D D N N N F C E P N D L L N 5 5 D3 Q3 16 U2 B / G G G V V V G G G V O E D G V F F G 1.3kΩ 6 6 15 SN74HC14 U3 N L D D D D D D D D D O _L R A A E E A VCC D4 Q4 74HC125 E C _ L R R 7 7 D5 Q5 14 1 1A VCC 14 T O I P 8 8 D6 Q6 13 2 6A 13 1 14 P C 9 9 12 3 1Y 12 RBE 2 EN1VCC 13 D13 1 D13 DIFF_CLKEN 60 W6 D7
in „Updatepin zur Aktivierung beschriebener Kontrollregister“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD9857.pdf
VCC W2 CONNECTION K RESET L C GND W11 D CIC TEST POINT DPD J8 PARALLEL PORT DVDD W12 GND U1 VCC P1 74HC574 AVDD 1 1 20 OUT_EN VCC 2 2 D0 Q0 19 C20 3 3 18 VCC 80 79 78 77 76 75 74 73 72 71 70 69 68 67 66 65 64 63 62 61 0.01µF 4 4 D1 Q1 17 E D D D D D D D D D D L K T D D D K K D R4 D2 Q2 L U N N N D D D N N N F C E P N D L L N 5 5 D3 Q3 16 U2 B / G G G V V V G G G V O E D G V F F G 1.3kΩ 6 6 15 SN74HC14 U3 N L D D D D D D D D D O _L R A A E E A VCC D4 Q4 74HC125 E C _ L R R 7 7 D5 Q5 14 1 1A VCC 14 T O I P 8 8 D6 Q6 13 2 6A 13 1 14 P C 9 9 12 3 1Y 12 RBE 2 EN1VCC 13 D13 1 D13 DIFF_CLKEN 60 W6 D7
in „Mit MSP430F2013 parallele Datenübertragung programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avrdude.pdf
simplest would be to just put some resistors in series or better yet use a 3-state buffer driver like the 74HC244. Have a look at http://kolev.info/avrdude-linuxgpio for a more detailed tutorial about using this programmer type. The STK500, JTAG ICE, avr910, and avr109/butterfly use the serial port to commu-
in „AVRDude als Tool in AVR Studio 4 einbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD9833.pdf
68HC11/68L11 microcontroller. The microcontroller is the SPORT transmit alternate framing mode (TFSW = 1). The configured as the master by setting bit MSTRin the SPCRto1. ADSP-21xx is programmed through the
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PDF
Grundig_ST70-780_text_Service-Manual.pdf
199 BR43281 110 195 C43098 124 228 C61056 290 127 F32412 139 168 BR117 96 144 BR184 168 28 BR46022 125 109 C43249 69 239 C61057 272 128 F33025 145 125 BR118 94 144 BR185 88 89 BR53076 289 178 C43266 95 225 C61063 175 52 BR119 24 74 BR186 56 96 BR53077 287 178 C43282 112 223 C61301 320 13 IC32000 45 190
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
B154EW04_VB.pdf
cycle (THA 20.44 Negative 1380 1408 1428 clock Blanking period (THB 100 128 - clock Sync pulse width (HC) 16 32 - clock Back porch (THD 68 75 - clock Sync pulse width + Back 84 107 - clock porch (THC+THD Active display area (T ) 1280 1280 1280 clock HE Front porch (THF 16 21 - clock (Clock ) B154EW04 V.B
in „Notebookdisplay als "normalen" Bildschirm verwenden“ · PC Hard- und Software ·
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Datei
Petra-M10_Einblick_offen.html
font-size:13px;line-height:16px;padding-top:8px;padding-bottom:4px}.tmxHT{cursor:pointer}input.Sg5kHc{color:rgba(0,0,0,.87);font-size:16px;line-height:18px;width:100%;cursor:pointer}.uWY3hb{border-bottom:1px solid rgba(0,0,0,.12);overflow:hidden;text-overflow:ellipsis;white-space:nowrap}a.gM8Xcc,a.gM8Xcc:visited{color:rgba(0,0,0,.87);font-size:16px;line-height:26px;text-decoration:none}.Sg5kHc{color:rgba(0,0,0,.87);font-size:16px;line-height:18px;cursor:pointer}.KH2nKe{opacity:0;position:absolute}</style><div class="gfi5jd"><span jsname="tqp7ud" class="Tk4Yed z1asCe wuXmqc" aria-label="Schließen
in „Lampentaster gesucht“ · Markt ·
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PDF
AD725.pdf
used to create higher quality pictures when there is an S-video circuit that uses one inverter of a 74HC04 package to create a input available on the monitor. crystal oscillator and another inverter to buffer the oscillator Flicker and drive other loads. The logic family must be a CMOS type In a VGA conversion
in „(F)UZE-Box Zusatzmodul für AVR NET-IO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
chargepump.pdf
input –0.3 to V V IN Output short-circuit duration Indefinite Operating temperature range –55 to +125 °C Storage temperature range –65 to +150 °C Junction temperature –55 to +150 °C Lead temperature (soldering, 3s) +240 °C (1) Stresses above these ratings may cause permanent damage. Exposure to absolute
in „chargepump enable eingang“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Neues_Textdokument.txt
**************************************************************************** Name : LED CUBE 8x8x8 74HC595 By : ****************************************************************************************/ #include <TimerOne.h> #include <string.h> #include <pins_arduino.h> //NEU #define AXIS_X 1 #define AXIS_Y 2 #define AXIS_Z 3 //--- Pin connected to ST_CP of 74HC595 //--- Gelbe Leitung RCK int latchPin = 10; //--- Pin connected to SH_CP of 74HC595 //--- Schwarze Leitung SCK int clockPin = 13; //--- Pin connected to DS of 74HC595 //--- Lila Leitung SI int dataPin
in „LED-Cube Effekte weiter per Knopfdruck“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LED_Cube.ino
**************************************************************************** Name : LED CUBE 8x8x8 74HC595 By : ****************************************************************************************/ #include <TimerOne.h> #include <string.h> #include <pins_arduino.h> //NEU #define AXIS_X 1 #define AXIS_Y 2 #define AXIS_Z 3 //--- Pin connected to ST_CP of 74HC595 //--- Gelbe Leitung RCK int latchPin = 10; //--- Pin connected to SH_CP of 74HC595 //--- Schwarze Leitung SCK int clockPin = 13; //--- Pin connected to DS of 74HC595 //--- Lila Leitung SI int dataPin
in „LED-Cube Effekte weiter per Knopfdruck“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Powermeter.pdf
be used. Gain configuration resistors are readily toggled in and out using low-cost switches from 74HC-series logic, as shown in Figure 4. The gain stage shown has a fast switching time and allows high AC gain but a low DC gain. Figure 4. Inverting Amplifier with Variable Gain Uses Bilateral Switches (74HC4066). C1 R11 R12 R13 R2 RS VCC I/O0 R4 C2 I/O1 R3 Calculating the Gain The gain of the inverting amplifier is as follows: Equation 7. Gain Of Inverting Amplifier. R2 A = − R1 Here R1 consists of the
in „230V Leistung erfassen mit ATmega128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
volt230.pdf
be used. Gain configuration resistors are readily toggled in and out using low-cost switches from 74HC-series logic, as shown in Figure 4. The gain stage shown has a fast switching time and allows high AC gain but a low DC gain. Figure 4. Inverting Amplifier with Variable Gain Uses Bilateral Switches (74HC4066). C1 R11 R12 R13 R2 RS VCC I/O0 R4 C2 I/O1 R3 Calculating the Gain The gain of the inverting amplifier is as follows: Equation 7. Gain Of Inverting Amplifier. R2 A = − R1 Here R1 consists of the
in „Netzteil ohne Trafo“ · Mikrocontroller und Digitale Elektronik ·
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energymeter.pdf
be used. Gain configuration resistors are readily toggled in and out using low-cost switches from 74HC-series logic, as shown in Figure 4. The gain stage shown has a fast switching time and allows high AC gain but a low DC gain. Figure 4. Inverting Amplifier with Variable Gain Uses Bilateral Switches (74HC4066). C1 R11 R12 R13 R2 RS VCC I/O0 R4 C2 I/O1 R3 Calculating the Gain The gain of the inverting amplifier is as follows: Equation 7. Gain Of Inverting Amplifier. R2 A = − R1 Here R1 consists of the
in „Leistungsmessung über Shunt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
doc2566.pdf
be used. Gain configuration resistors are readily toggled in and out using low-cost switches from 74HC-series logic, as shown in Figure 4. The gain stage shown has a fast switching time and allows high AC gain but a low DC gain. Figure 4. Inverting Amplifier with Variable Gain Uses Bilateral Switches (74HC4066). C1 R11 R12 R13 R2 RS VCC I/O0 R4 C2 I/O1 R3 Calculating the Gain The gain of the inverting amplifier is as follows: Equation 7. Gain Of Inverting Amplifier. R2 A = − R1 Here R1 consists of the
in „Cadsoft Eagle“ · Platinen ·