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PDF
ADIS16250.pdf
junction temperature. Rev. 0 | Page 4 of 20 ADIS16250 TIMING SPECIFICATIONS T A −40°C to +85°C, V CC = 5.0 V, unless otherwise noted. Table 2. Parameter Description Min 1 Typ Max 1 Unit fSCLK Fast mode 2 0.01 2.5 MHz Normal mode 2 0.01 1.0 MHz 2 tDATARATE Chip select period, fast mode 40 μs tDATARATE
in „ADIS16250 Gyro Code von Hersteller?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADIS16250.pdf
junction temperature. Rev. 0 | Page 4 of 20 ADIS16250 TIMING SPECIFICATIONS T A −40°C to +85°C, V CC = 5.0 V, unless otherwise noted. Table 2. Parameter Description Min 1 Typ Max 1 Unit fSCLK Fast mode 2 0.01 2.5 MHz Normal mode 2 0.01 1.0 MHz 2 tDATARATE Chip select period, fast mode 40 μs tDATARATE
in „Probleme mit Code für Gyro ADIS16250“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADIS16250.pdf
junction temperature. Rev. 0 | Page 4 of 20 ADIS16250 TIMING SPECIFICATIONS T A −40°C to +85°C, V CC = 5.0 V, unless otherwise noted. Table 2. Parameter Description Min 1 Typ Max 1 Unit fSCLK Fast mode 2 0.01 2.5 MHz Normal mode 2 0.01 1.0 MHz 2 tDATARATE Chip select period, fast mode 40 μs tDATARATE
in „Drift bei Gyro ADIS16250“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1767fas.pdf
12V C3 OPEN 1.2A* I 80 VOUT= 3.3V 2.2 F OR LT1767-3.3 E CERAMIC HIGH SHDN FB = ON SYNC GND VC C1 75 CC D1 10 F 1.5nF UPS120 CERAMIC RC 70 4.7k 0 0.2 0.4 0.6 0.8 1 1.2 1.4 LOAD CURRENT (A) *MAXIMUM OUTPUT CURRENT IS SUBJECT TO THERMAL DERATING. 1767 TA01 1767 TA01a sn1767 1767fas 1 LT1767/LT1767-1.8/ LT1767
in „LT Spice ein IC von Texas Insturments einbinden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ST62T65_Datasheet.pdf
selection of clock sources is control- The clock frequency should not be modified while led by the CC0 and CC1 bits in the AR Status Con- the counter is counting, since the counter may be set to an unpredictable value. For instance, the trol Register, ARSC1. The prescaler division ratio is selected by
in „External RC Network / ST62T65“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST6265C.pdf
selection of clock sources is control- The clock frequency should not be modified while led by the CC0 and CC1 bits in the AR Status Con- the counter is counting, since the counter may be set to an unpredictable value. For instance, the trol Register, ARSC1. The prescaler division ratio is selected by
in „Code Space Overlap Fehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon_TLE9263QX.pdf
ratio between VCC1 and VCC3. The ratio can be calculated as following: ICC 3 = 110 Ω 105 − 15 mV I CC 1 ( a ) (2) I R CC 1 SHUNT I = I CC 1 ⋅110 Ω 105 − 15 mV (b ) CC 3 R SHUNT Example: A shunt resistor with 470mΩ and a load current of 100mA out of VCC1 would result in ICC3 = 191mA. 8.5 Unused Pins In
in „SBC für CAN/LIN bei einem 24V Bordnetz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SMD_Catalog.pdf
pnp dtr 10k + 4k7 50V 100mA 74 2SC5005 Nec N - npn RF 5.5GHz @5V 5mA 75s BAS70-05 Sie B SOT23 dual cc BAS70 75s BAS70-05W Sie B SOT323 dual cc BAS70 75p BAS70-05 Phi B SOT23 dual cc BAS70 75t BAS70-05W Phi B SOT323 dual cc BAS70 75t BAS70-05 Phi B SOT23 dual cc BAS70 75- BAS70-05W Phi B SOT323 dual cc
in „Hilfe bei Bauteilsuche für Mainboard“ · PC Hard- und Software ·
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PDF
Das_Bandfilter_in_der_Praxis_-_Funkbastler_1929.pdf
nur auf die beob zeit die e r s t e nFernverbindungen auf 80m hergestellt achtete Entfernung von 1100 km beziehen, soll jedoch hervor wurden, womit den Ungläubigen nur bewiesen werden möge, gehoben werden, daß zur Nachtzeit 80 m-Sender in Ent daß ihre Abneigung gegen diese — man könnte ja sagen —
in „Ostern- Vielleicht mal wieder Detektorempfänger ?“ · HF, Funk und Felder ·
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PDF
SSD1306B_1.1.pdf
Send command AEh for display OFF OFF V CC OFF V DD V CC OFF t OFF V DD OFF (1)e: Since an ESD protection circuit is connected betweeDDand V CCV CCbecomes lower than VDD whenever V DD is ON and VCC is OFF as shown in the dotted line CC in Figure
in „OLED zeigt nur wirre Pixel am I2C“ · Mikrocontroller und Digitale Elektronik ·
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datasheet.pdf
specification. Pins are not guaranteed to sink current greater than the listed test conditions. Figure 27-1. I CC Test Condition, Active Mode V CC CC V CC VCC P0 RST EA (NC) XTAL2 CLOCK XTAL1 SIGNAL VSS All other pins are disconnected. Figure 27-2. I CC Test Condition, Idle Mode VCC ICC V CC V CC P0 V CC RST EA
in „8051 Ultraschall problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
unsigned int words[15]; } rfm12cfg EEMEM = { 0x8017, 0xC431, 0xa608, 0x94c2, 0xC220, 0x82D8, 0xCA00, 0xCC67, 0xC623, 0, 0 }; void sw(unsigned int word) { PORT_SPI &= ~SS; SPDR = word >> 8; while(!(SPSR & (1<<SPIF))); SPDR = word & 0xff; while(!(SPSR & (1<<SPIF))); PORT_SPI |= SS; } __attribute__((constructor
in „RFM12 als Empfänger für TFA THX301 Funk Wetter Sensor“ · HF, Funk und Felder ·
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PDF
ATmega32.pdf
0.9 VCC(2) VCC + 0.5 RESET pin (3) V Output Low Voltage IOL= 20mA, V CC = 5V 0.7 V OL (Ports A,B,C,D) IOL= 10mA, V CC = 3V 0.5 V Output High Voltage(4) IOH = -20mA, VCC = 5V 4.2 V V OH (Ports A,B,C,D) I = -10mA, V = 3V 2.2 V OH CC Input Leakage V = 5.5V, pin low IIL CC 1
in „STK500 als ISP“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CMD_bm002_bm201.lst
(800EH) 2364 10F2 B7 OR A 2365 10F3 C0 RET NZ 2366 10F4 79 LD A,C 2367 10F5 FE 04 CP 04H 2368 10F7 CC 9F 10 CALL Z,L0323 2369 10FA 21 06 11 LD HL,1106H 2370 10FD 06 00 LD B,00H 2371 10FF 07 RLCA 2372 1100 07 RLCA 2373 1101 4F LD C,A 2374 1102 09 ADD HL,BC 2375 1103 C3 2B 10 JP L0017 2376 1106 54 LD D
in „DDR Schach-Computer Chess Master Diamond reparieren (Dauerton)“ · Mikrocontroller und Digitale Elektronik ·
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Eigenbautastköpfe
der damit verbunden minimalen Steck/Kontaktlänge hat man automatisch einen Resonanzkreis mit ~800-1100Mhz (siehe Anhang).
http://www.reichelt.de/?ACTION=3;ARTICLE=42211;GROUPID=;SID=15SwgWCqwQAQ8AADzTEEse5c3549769892b0c3e2f1cc88c0209d7 In Anbetracht der Tatsache, dass man nicht jeden Tag eine neue Tastkopfspitze braucht und das eine solche SMB Einbaubuchse beim Reichelt gerade mal 1,30€ kostet ist das für mich die perfekte
Analoge Elektronik und Schaltungstechnik ·branadic · ·550 Antworten
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PDF
Z80-Zilog.pdf
3) 2.50 Condition Bits Affected None. Z80 Instruction Set UM008011-0816 Z80 CPU User Manual 263 JP cc, nn Operation IF cc true, PC ← nn Op Code JP Operands cc, nn The first n operand in this assembled object code is the low-order byte of a 2-byte memory address. Description If condition cc is true, the
in „DDR Schach-Computer Chess Master Diamond reparieren (Dauerton)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Display_-_NL10276BC30-04D.pdf
typ.), 1610 (max.) g ABSOLUTE MAXIMUM RATINGS Parameter Symbol Rating Unit Remarks Supply voltage V CC –0.3 to +6.0 V Ta = 25°C Logic input voltage VI –0.3 to VC+0.3 V Lamp voltage VL 2000 Vrms Storage temp. T ST –20 to +60 °C – Operating temp. TOP 0 to +50 °C Module surface Note 1 Relative humidity (
in „VIA Nano Board LVDS Connector“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Display_-_NL10276BC30-04D.pdf
typ.), 1610 (max.) g ABSOLUTE MAXIMUM RATINGS Parameter Symbol Rating Unit Remarks Supply voltage V CC –0.3 to +6.0 V Ta = 25°C Logic input voltage VI –0.3 to VC+0.3 V Lamp voltage VL 2000 Vrms Storage temp. T ST –20 to +60 °C – Operating temp. TOP 0 to +50 °C Module surface Note 1 Relative humidity (
in „günstiges ITX Mainboard mit LVDS Connector“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1331_v1.2.pdf
: The Power OFF sequence Send command AEh for display OFF OFF V CC OFF V DD ,VDDIO V CC GND OFF V DD,V DDIO GND Note: (1Since an ESD protection circuit is connected between V ,V and V , V becomes lower than V DD DDIO CC CC DD whenever V DD,VDDIOis ON and V CC is OFF
in „Spannungsreglerproblem durch Frequenzen bei Arduino Adafruit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
id_ni-mh_1104_e.pdf
Cylin dric al AA size (HR15/51) HHR-150AA /FT Cylin dric al AA size (HR15/51) 2.0 2.0 1.9 Charge : 1100mA (1 lt) x 1.2hrs. 1.9 Charge : 1500mA(1 lt) x 1.2hrs. 2 0 1.8 1.8 9 Charge : 1500mA(1 lt) x 1.2hrs. Dimen sions (mm ) Typic al Charge ch aracteristic s Charge : 1100mA (1 lt) x 1.2hrs. Dimen sions
in „Mit welcher Spannung lädt man eine NIMH Zelle?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
P51XAG30KFA.pdf
A7H UART 0 Transmitter 8 versatility of this scheme: A8H – ABH UART 1 Receiver 9 Slave 0 SADDR = 1100 0000 ACH – AFH UART 1 Transmitter 10 SADEN = 1111 1101 NOTE: Given = 1100 00X0 The transmit and receive vectors could contain the same ISR address to work like a 8051 interrupt scheme Slave 1 SADDR = 1100 0000 SADEN = 1111 1110 Error Handling, Status Flags and Break Detect Given = 1100 000X The UARTs in XA has the following error flags; see Figure 11. In the above example SADDR is the same and the SADEN
in „P51XAG30, Flash schreiben 80C51 Struktur“ · Mikrocontroller und Digitale Elektronik ·
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Thread
Lagerverwaltung Part-DB V0.2.2
Part-DB-Repo rüberziehen, damit wir den zusammen weiter entwickeln können. Die Software steht unter CC-BY-SA 3.0-Lizenz.
EAN / GS1-128, u.v.m. Handbuch: http://www.cipherlab.com/livefiles/en/documents/937/1000_1090+_1100_1105_1200ScannerUserGuide_v3_01.zip
Projekte & Code ·b.r · ·627 Antworten
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PDF
ADIS16250_16255.pdf
20×) (ALL SIDES) 7.00 TYP 5.50 MAX B 0 2 SIDE VIEW 0 Figure24.20-TerminalStackedLandGridArray[LGA] (CC-20-1) Dimensionsshowninmillimeters ORDERING GUIDE Model Temperature Range PackageDescription PackageOption ADIS16250ACCZ 1 −40°C to +85°C 20-Terminal Stacked Land Grid Array [LGA] CC-20-1 ADIS16255ACCZ 1 −40°C to +85°C 20-Terminal Stacked Land Grid Array [LGA] CC-20-1 ADIS16250/PCBZ 1 Evaluation Board for the ADIS16250 1 ADIS16255/PCBZ Evaluation Board for the ADIS16255 1 Z = RoHS Compliant Part. ©2006–2007 Analog Devices, Inc. All rights reserved. Trademarks
in „Bias bei Gyro“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NCR320U_NCR321U.pdf
] - 0.5 V P tot total power dissipation Tamb ≤ 25 °C [2] - 475 mW [3] - 650 mW [4] - 750 mW [5] - 1100 mW T junction temperature - 150 °C j T amb ambient temperature -55 150 °C T stg storage temperature -65 150 °C [1] Between all terminals. [2] Device mounted on an FR4 Printed-Circuit Board (PCB), single-side
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PDF
MAS6180C.pdf
See Compensation Capacitance Options on table 2. Table 2. Compensation Capacitance Options Device CC Crystal Description MAS6180C1 0.75 pF For low C0crystals It should be noted that grounded crystal package has reduced shunt capacitance. This value is about 85% of floating crystal shunt capacitance.
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PDF
C51_API_Program_Examples.pdf
0x0000 and 0x007F of xram */ *((unsigned char xdata*) adress)=0x55; } /* copy xram page to flash at 0x1100 */ __api_wr_code_page(0x1100,0x0000,0x7F); /* write code byte example */ i=0; for(adress=0x1000;adress<0x1006;adress++) { 13 4365A–80C51–07/04 /* write "ABCDEF" at 0x1000 */ __api_wr_code_byte(adress
in „Schreiben in EEPROM eines AT89C51ED2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Flash_API.pdf
0x0000 and 0x007F of xram */ *((unsigned char xdata*) adress)=0x55; } /* copy xram page to flash at 0x1100 */ __api_wr_code_page(0x1100,0x0000,0x7F); /* write code byte example */ i=0; for(adress=0x1000;adress<0x1006;adress++) { 13 4365A–80C51–07/04 /* write "ABCDEF" at 0x1000 */ __api_wr_code_byte(adress
in „Flash Byte lesen / schreiben auf AT89C51RB2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega16.pdf
MHz at Vcc = 5V, T=25c) CALIBRATED 1MHz RC OSCILLATOR FREQUENCY vs.TEMPERATURE 1.03 1.02 1.01 1 V cc5.5V 0.99 V cc5.0V z 0.98 H V cc4.5V ( 0.97 R F 0.96 V cc4.0V V cc3.6V 0.95 V cc3.3V 0.94 V cc3.0V 0.93 V cc2.7V 0.92 -40 -20 0 20 40 60 80 Ta(˚C) Figure 149. RC Oscillator Frequency vs. Operating Voltage
in „DCF auf INT0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSA00206265.pdf
3.42 3.0 1.14 2.6 14.3 430 6 0.95 75 TYPICAL PERFORMANCE REFER TO PAGE 30 FOR DRIVER PULL INT SST57D1100 DRIVER TYPE B SUPPLY V : s=24 V SST57D1200 DRIVER TYPE B SUPPLY V : s=24 V CURRENT =1.0 A/Phase EXCITING MODE =2 Phase CURRENT =2.0 A/Phase EXCITING MODE =2 Phase INERTIALLOAD 100g-cm 2 INERTIALLOAD
in „Daten zu einem Schrittmotor herausfinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430fr5729.pdf
time from LPM3.5 or 0°C to 85°C 310 575 WAKE-UP LPMx.5 (1) µs LPM4.5 to active mode 2 V, 3 V 310 1100 –40°C to 85°C t Wake-up time from RST to active V stable 2 V, 3 V 230 280 µs WAKE-UP RESET mode (2) CC –40°C to 85°C WAKE-UP BOR Wake-up time from BOR or power-up dV CC/dt = 2400 V/s 2 V, 3 V 1.6 ms
in „Implementierung eines ADT7301 an einem MSP430FR5729“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tasse_tee_48.c
0x5617, 0x185D, 0x0106, 0x78EA, 0x318E, 0x9DF5, 0xF79E, 0x9FA1, 0xA1F9, 0xF9DE, 0x0BBE, 0xA289, 0x6CC3, 0xCE7A, 0x42A8, 0xA946, 0x21CC, 0x4154, 0x0815, 0x1000, 0x5F16, 0xFFD8, 0xFFFF, 0x5FAF, 0xF1B4, 0x7FFF, 0xC57D, 0xD618, 0x58A4, 0x3454, 0xF618, 0x0584, 0x1710, 0x1615, 0x40A7, 0x60AC, 0x73D7, 0x983D
in „RGB Bitmap im MCU in C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
l9805e.pdf
depends on the value of OCR1 register; the period depends on the value of OCR2 register. Bit 3, 2 = CC1-CC0 Clock Control. The value of the timer clock depends on these bits: Table 10. Clock Control Bits CC1 CC0 Timer Clock 0 0 CPU / 4 0 1 CPU / 2 1 0 CPU / 8 1 1 External Clock where available 55/125
in „ST L9805-E Motortreiber mit H Brücke und ST7UD05 Kern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EN_UM_N32G45x_Series_User_Manual_V3.pdf
ADC4: 000: TIM3_CC1 event; 100: TIM8_TRGO event; 001: TIM2_CC3 event; 101: TIM5_CC1 event; 010: TIM1_CC3 event; 110: EXTI line 10/TIM5_CC3 event; 011: TIM8_CC1 event; 111: SWSTRRCH. Nations Technologies Inc. 226 / 816
in „ALLPOWERS S2000 PRO Reparaturhilfe“ · Mikrocontroller und Digitale Elektronik ·
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Datei
EPROM_0000_7FFF.lst
1780 0CB9 79 LD A,C 1781 0CBA 11 B3 0A LD DE,0AB3H 1782 0CBD 26 00 LD H,00H 1783 0CBF 6F LD L,A 1784 0CC0 19 ADD HL,DE 1785 0CC1 7E LD A,(HL) 1786 0CC2 B7 L0194: OR A 1787 0CC3 D1 POP DE 1788 0CC4 C1 POP BC 1789 0CC5 C9 RET 1790 0CC6 AF L0192: XOR A 1791 0CC7 D1 POP DE 1792 0CC8 C1 POP BC 1793 0CC9 C9 RET
in „Hilfe bei Z80 Opcodes“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_ATmega32.pdf
z V cc5.0V H 1.95 ( V = 4.5V R cc F 1.9 V cc4.0V V cc3.6V V = 3.3V 1.85 cc V cc3.0V V = 2.7V cc 1.8 -40 -20 0 20 40 60 80 T a˚C) Figure 151. RC Oscillator Frequency vs. Operating Voltage (the devices are calibrated
in „Anschwingvorgang µC & Quarz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv8350f_7_.pdf
mA 1000b = 1100 mA 1001b = 1200 mA 1010b = 1300 mA 1011b = 1400 mA 1100b = 1700 mA 1101b = 1800 mA 1110b = 1900 mA 1111b = 2000 mA Copyright © 2021 Texas Instruments Incorporated Submit Document Feedback 51 Product
in „BLDC-Motor: Überspannung beim Bremsen trotz Durchschaltung aller Low-Side-MOSFETs?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Preisliste_2008-09_Stand_Aug08.pdf
Versand aufTrockeneis Gefahrgut: ✖ ✖ ✖ 7 Art.-Nr. Produktbezeichnung Verpackung Preis in Euro 190300 pCC1BAC/pIndigoBAC-5 Forward Sequencing Primer ❄ 1 nmol 61,00 190305 pCC1BAC/pIndigoBAC-5 Reverse Sequencing Primer ❄ 1 nmol 61,00 190310 pCC2 Forward Sequencing Primer ❄ 1 nmol 61,00 190315 pCC2 Reverse
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Datei
binaer.h
B00001011 0x0B // dez.: 011 #define B1011 0x0B // dez.: 011 #define B00001100 0x0C // dez.: 012 #define B1100 0x0C // dez.: 012 #define B00001101 0x0D // dez.: 013 #define B1101 0x0D // dez.: 013 #define B00001110 0x0E // dez.: 014 #define B1110 0x0E // dez.: 014 #define B00001111 0x0F // dez.: 015 #define
in „0b10101010 ANSI C gerecht?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADXL345.pdf
conflict on the 800 400 1101 145 communication bus. For single-supply operation, V DD I/Oan be 400 200 1100 145 the same as the main supply, VS. In a dual-supply application, 200 100 1011 145 however, V DD I/Oan differfromV Soaccommodate the desired 100 50 1010 145 interface voltage,aslongasV SsgreaterthanV
in „mega8 und ADXL345 an Fleury Soft- I2C / TWI“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Program_Memory.TXT
GOTO 0x1c8 456 1C7 29CD GOTO 0x1cd 457 1C8 1CF0 BTFSS 0x70, 0x1 458 1C9 29CB GOTO 0x1cb 459 1CA 29CC GOTO 0x1cc 460 1CB 29D2 GOTO 0x1d2 461 1CC 29CD GOTO 0x1cd 462 1CD 3185 MOVLP 0x5 463 1CE 252F CALL 0x52f 464 1CF 3180 MOVLP 0 465 1D0 29D2 GOTO 0x1d2 466 1D1 29D2 GOTO 0x1d2 467 1D2 0878 MOVF 0x78,
in „Falsche Quelltextposition beim Debuggen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
[] EEMEM = "A="; unsigned char Gate[] EEMEM = "G="; unsigned char CA[] EEMEM = "CA"; unsigned char CC[] EEMEM = "CC"; unsigned char TestTimedOut[] EEMEM = "Timeout!"; unsigned char DiodeIcon[] EEMEM = {4,31,31,14,14,4,31,4,0}; //Dioden-Icon //Ende der EEPROM-Strings //Watchdog #define WDT_enabled /*
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Datei
reni_v0.67.c
END_TOKEN}, "DOWN_Zerosta "}, // 8000 8010 (8010) 00e1 0005 00f2 00d8 00ff {{0x8010,0x01e2,0x0005,0x00cc,0x00b3,0x00ff, END_TOKEN}, "DOWN_Zerodyn "}, // 8000 8010 (8010) 00e1 0005 00f2 00d8 00ff {{0x8010,0x01e2,0x0005,0x00d0,0x00b7,0x00ff, END_TOKEN}, "DOWN_Measure "}, // 8000 8010 (8010) 00e1 000e 00d0
in „Schreiben eines USB-Treibers mit libusb-win32“ · Softwareentwicklung ·
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PDF
MPQ4210_r1.1_MPS.pdf
= 1 2 kHz Gate Driver Gate source current capability IHG_SO V = 7.2V, 4.7nF load 0.7 A (8) ILG_SO CC 0.85 A HG_SI 1.6 A Gate sink current capability) VCC = 7.2V, 4.7nF load LG_SI 2 A Low-side gate output high V CC- voltage V LS_HIGH 0.05 V Low-side gate output low V LS_LOW 0.05 V voltage High-side gate
in „Controlling DC DC converter with STM32“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
JBT6K71-AS_A__v1.42_2006-02-07_E.PDF
RAM regulator output pin RVDD I Display RAM regulator feedback input pin AVDD Booster capacitor pins CC1P/CC2P CC1M/CC2M I/O Usually, connect a capacitor for booster between CC1P and CC1M, and connect a capacitor between CC2P and CC2M , too (1 μF recommended). When not using booster, leave this pin open
in „LCD aus Benq EL71 Handy“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
output with 12mA cs sink capability Input Low Threshold Voltage Vt- 0.5 0.8 1.1 V V CC = 3.3 V Input High Threshold Voltage Vt+ 1.6 2.0 2.4 V V CC = 3.3 V Hystersis V TH 0.5 1.2 V V CC = 3.3 V Output Low Voltage V OL 0.4 V IOL = 12 mA Input High Leakage LIH +10 μA V IN= 3.3 V Input Low
in „(Windows/Winbond) CPU Temperatur auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ISP1160_PHI.pdf
of 88 Philips Semiconductors ISP1160 Embedded USB Host Controller 13. Power-on reset (POR) When V CC is directly connected to the RESET_N pin, the internal pulse width (t PORP ) will be typically (600 ns to 1000 ns) + X, when V CC is 3.3 V. The time X depends on how fast V CC is rising with respect
in „USB Host Controller (ISP1160) an StrongARM 1110 anbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Atmega128_doc2467.pdf
different settings of SRL2..0 SRL2 SRL1 SRL0 Sector Limits 0 0 0 Lower sector = N/A Upper sector = 0x1100 - 0xFFFF 0 0 1 Lower sector = 0x1100 - 0x1FFF Upper sector = 0x2000 - 0xFFFF 0 1 0 Lower sector = 0x1100 - 0x3FFF Upper sector = 0x4000 - 0xFFFF 0 1 1 Lower sector = 0x1100 - 0x5FFF Upper sector = 0x6000 - 0xFFFF 1 0 0 Lower sector = 0x1100 - 0x7FFF Upper sector = 0x8000 - 0xFFFF 1 0 1 Lower sector = 0x1100 - 0x9FFF Upper sector = 0xA000 - 0xFFFF 1 1 0 Lower sector = 0x1100 - 0xBFFF Upper sector = 0xC000 - 0xFFFF 1 1 1 Lower sector = 0x1100
in „ATMEGA128 Timer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN1543-D.PDF
Parameters Half Bridge Push−Pull condition). This is a direct benefit of the current mode V (BR)CER 700 V* 1100 V to 1600 V* brought by the inductor in series with the V CC line. Inrush Current 3 to 4 timesnom** 2 to 3 timesnom** However, the imbalance in both the power transistors and t window 2.60 μs−3.60 μs
in „Reparatur EVG für T5 Röhre“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RTX1040ProductSpecification_v2.5.pdf
0dB Microphone gain MIC_GAIN[3:0] = 1011 22.0 dB relative to 0dB Microphone gain MIC_GAIN[3:0] = 1100 24.0 dB relative to 0dB Microphone gain MIC_GAIN[3:0] = 1101 26.4 dB relative to 0dB Microphone gain MIC_GAIN[3:0] = 1110 27.9 dB relative to 0dB Microphone gain MIC_GAIN[3:0] = 1111 29.8 dB relative
in „Falls jemand eine Fernsteuer-App fürs Handy sucht.“ · Haus & Smart Home ·
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PDF
XC88xCLM_UM_v1_1.pdf
: 00 Bit Field CC61VH H Capture/Compare Register for Channel CC61 High Type rh FE CCU6_CC62RL Reset: 00 Bit Field CC62VL H Capture/Compare Register for Type rh Channel CC62 Low FF CCU6_CC62RH Reset: 00 Bit Field CC62VH
in „80C517A Paging“ · Mikrocontroller und Digitale Elektronik ·