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Display_TC1604A_01.PDF
- 1 W 3 L : I: : 1 L 0 : O E CM P E . E V A EE E : Y O Y N L IT T D T T T I O DI E O H A A R V NT A M LR I P D I WR R V KE N I C O IE T R AT H D L L VO S D BO C . 2 3 45 6 7 89 M 1 Ver.V00 2011-06-07 - 4 - TC1604A
in „Display TC1604A 01 - LED Spannung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ECW1J-64182.pdf
0.578 ± 0.20) (.250) (.375) 27.69 ± 0.25 (1.090 ± .010) 21.11 11.10 .97 (.831) (.437) 28.50 ± 0.25 8 X R 8.99 (1.122 ± .010) .635 (.038) (.354) 3 X 1.52 DIA. (.025) 2.54 2.54 10.90 12.24 19.76 (.060) CHANNEL A CHANNEL B (.100) 2 X (.100) (.429) (.778) 7.24 ± 0.25 COMMON 5.08 1.07 (.482) (.285 ± .010
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document.pdf
Zero- amplifying signal and detecting signal. It is crossing detecting circuit is shown below. the same as the function of the radios' resonant circuit which can extract the 3.3. FSK-KQ330 line carrier module waveform of the singal; L2 and C5 also The module uses low voltage power line constitute the
in „Datenübertragung bei Netzausfall , Powerline.“ · Analoge Elektronik und Schaltungstechnik ·
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TMC2209_datasheet_rev1.07.pdf
(time until reply is sent): 0, 1: 8 bit times (Attention: Don’t use in multi-slave) 2, 3: 3*8 bit times 4, 5: 5*8 bit times W 0x03 4 SLAVECONF 6, 7: 7*8 bit times 8, 9: 9*8 bit times 10, 11: 11*8 bit times 12, 13: 13*8 bit times 14, 15
in „Industrielle [3D-Drucker] Bastelgrundlagen“ · Mechanik, Gehäuse, Werkzeug ·
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SMPD_MOSFET_and_IGBTs_Product_Brief.pdf
ADVANTAGES CONFIGURATIONS APPLICATIONS Ultra-low and compact package profile Buck DC-DC converters (5.3mm height x 24.8mm length x 32.3mm width) Boost Battery chargers Surface mountable via standard reflow process Full-bridge Switching and resonant power supplies (Available in Tape & Reel packaging) Half-bridge
in „IXYS Bauteil / Keine Info gefunden“ · Analoge Elektronik und Schaltungstechnik ·
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HAL5xx_Datasheet.pdf
top view 3 0.55 1 2 3 1.15 0.4 0.4 0 14.0 0.36 〉5 min. 0.4 0 1.5 3.0 0.42 1.27 1.27 branded side 2.54 0.06〉 0.04 SPGS0022-5-A3/2E branded side Fig. 3–1: 45⋅ 0.8 Plastic Small Outline Transistor Package SPGS7002
in „Auswertung Hallsensor / Sensor mit Stromausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
esp32-c3_technical_reference_manual_en.pdf
Stores the first 32 bits of KEY2. (RO) Register 4.58. EFUSE_RD_KEY2_DATA2_REG (0x00E4) TA _A EY EK FS E 31 0 0x000000 Reset EFUSE_KEY2_DATA2 Stores the second 32 bits of KEY2. (RO) Register 4.59. EFUSE_RD_KEY2_DATA3_REG (0x00E8) 3 AA Y_ _K USE EF 31 0 0x000000 Reset EFUSE_KEY2_DATA3
in „Mit dem ESP32C3 laufen lernen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
esp32-c3_technical_reference_manual_en.pdf
Stores the first 32 bits of KEY2. (RO) Register 4.58. EFUSE_RD_KEY2_DATA2_REG (0x00E4) TA _A EY EK FS E 31 0 0x000000 Reset EFUSE_KEY2_DATA2 Stores the second 32 bits of KEY2. (RO) Register 4.59. EFUSE_RD_KEY2_DATA3_REG (0x00E8) 3 AA Y_ _K USE EF 31 0 0x000000 Reset EFUSE_KEY2_DATA3
in „ESP32C3 > PLL“ · Mikrocontroller und Digitale Elektronik ·
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an9768_surge_protect.pdf
protection of integrated circuits having 5V supply voltages . 200 60kW 100 50 10kW 20 60 10 0W ZEN V8Z W E RP 6K A21 k 5 7kW E6.8 0mm E DE W 2 VICE O 3.5kW P 1 0.5 0.2 0.1 100ns 200 1µs 2 10µs 20 100µs 1000µs PULSETIME FIGURE 6. PEAK PULSE POWER vs PULSETIME 10-107 Application Note 9768 The zener diode
in „Fachliteratur Entwurf Blitzductor“ · Analoge Elektronik und Schaltungstechnik ·
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LCD-Display.PDF
). 5 R/W H/L R/W = “H”: Read mode. R/W = “L”: Write mode. 6 E H/L An enable signal for writing or reading data. 7 DB0 H/L 8 DB1 H/L 9 DB2 H/L 10 DB3 H/L This is an 8-bit bi-directional data bus. 11 DB4 H/L 12 DB5 H/L 13 DB6 H/L 14 DB7 H/L 15 LED+ +5.0V Power supply
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TC1602A-09I.PDF
). 5 R/W H/L R/W = “H”: Read mode. R/W = “L”: Write mode. 6 E H/L An enable signal for writing or reading data. 7 DB0 H/L 8 DB1 H/L 9 DB2 H/L 10 DB3 H/L This is an 8-bit bi-directional data bus. 11 DB4 H/L 12 DB5 H/L 13 DB6 H/L 14 DB7 H/L 15 LED+ +5.0V Power supply
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TC1602E-01.pdf
operation, DB3~ DB0). For 8-bit MPU, the 8-bit data is transferred by 8-busline (DB0~DB7). - 6 - Ver.V00 2010-09-16 TC1602E-01 AC CHARACTERISTICS (1) Write Mode (Writing data from MPU to SPLC780D1) Write Mode Timing
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Datei
Configuration_adv.h
shifted) IC * Smoothie 0x2C (0x58) 0x2D (0x5A) MCP4451 * AZTEEG_X3_PRO 0x2C (0x58) 0x2E (0x5C) MCP4451 * MIGHTYBOARD_REVE 0x2F (0x5E) MCP4018 */ #define DIGIPOT_I2C_ADDRESS_A 0x2C // unshifted slave address for first DIGIPOT
in „Marlin Firmware mit dem ATMEL STUDIO 7 auf das Arduino Mega 2560 Board flashen“ · Mikrocontroller und Digitale Elektronik ·
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Firmware_issues.pdf
and listed in old “issue list”, posting once again in this list as reminder) FPGA design revision 83E8 sample rate 1GS/s clocks skew (must be always 1000ps): Clock 8‐>Clock 1: 1010ps Clock 1‐>Clock 7: 1250ps Clock 7‐>Clock 2: 550ps Clock 2‐>Clock 6: 1230ps Clock 6‐>Clock 3: 1000ps Clock 3‐>Clock 5: 1280ps
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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pdf-generaltechnicalinformation.pdf
relevant standards (IEC 60384-1 and IEC 60384-4). Preferred capacitance values are taken from the E3 or E6 series. We specify specifies C Rn μF as the AC capacitance measured at 100 Hz or 120 Hz and 20 °C, to IEC 60384-4. Please read Important notes Page 8 of 39 and Cautions and warnings. General technical
in „BEHRINGER EURODESK MX 8000 Netzteil Schaltplan / Daten“ · Analoge Elektronik und Schaltungstechnik ·
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abel-HDL_Reference.pdf
"intermediate signal equations M = A&B&C; X = M # (B$C); Y = (A&D) # (A&E) # M; Figure 3-5. Declarations and Equations Figure 3-6. Schematic with Intermediate Signal M Both design descriptions are functionally the same. Without the intermediate
in „Pal Assembler Abel 3 (Data IO)“ · PC Hard- und Software ·
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PDF
RC28F256J3C-125.pdf
Packaging Shipping Media information see www.intel.com/design/packtech/index.htm 12 Datasheet 256-Mbit J3 (x8/x16) 3.3 VF-BGA (J3) Package ® Figure 5. Intel StrataFlash Memory (J3) VF BGA Mechanical Specifications Ball A1 Ball A1 Corner Corner D S1 S2 1 2 3 4 5 6 7 8 8 7 6 5 4 3 2 1 A A B B C C E D D E E
in „Passender Ersatz für Intel RC28F256J3C-125“ · Mikrocontroller und Digitale Elektronik ·
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1MA98_4E_dB_or_not_dB.pdf
stages of a receiver. The total gain a is computed as follows: a = -0.7 dB + 12 dB - 7 dB + 23 dB = 27.3 dB. 8 Conversion from decibels to percentage and vice versa The term “percent” comes from the Latin and literally means “per hundred”. 1% means one hundredth of a value. 1%of x 0,01x When using percentages
in „Wie stehen dBm und Volt zueinander?“ · HF, Funk und Felder ·
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INF-8020.pdf
pattern (24+3 bits) 2. 1 byte of sub-channel data (14+3 bits) 3. 24 bytes of data (24 x (14+3) bits) 4. 8 bytes of CIRC code (8 x (14+3) bits) Total: 588 bits. Data, sub-channel and CIRC bytes are encoded with an
in „ATAPI Packet Commands“ · Mikrocontroller und Digitale Elektronik ·
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PDF
8020rev26.pdf
pattern (24+3 bits) 2. 1 byte of sub-channel data (14+3 bits) 3. 24 bytes of data (24 x (14+3) bits) 4. 8 bytes of CIRC code (8 x (14+3) bits) Total: 588 bits. Data, sub-channel and CIRC bytes are encoded with an
in „CD-ROM Laufwerk“ · Mikrocontroller und Digitale Elektronik ·
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Spannungsregler_LM2776_Switched_Capacitor_Inverter.pdf
MAY 2015–REVISED FEBRUARY 2017 Typical Characteristics (continued) (Typical Application circuit, V = 3IN V unless otherwise specified.) -2.5 2.06 T = -40°C TA= -40°C -2.6 T = 25°C 2.04 T = 25°C A A -2.7 T A 85°C TA= 85°C -2.8 2.02 z -2.9 H 2.00 V ( T -3.0 c U e 1.98 V -3.1 u -3.2 r 1.96 F -3.3 1.94 -3.4
in „Geregelte negative Spannung mit LM2664 und LP2980 - geht das überhaupt?“ · Analoge Elektronik und Schaltungstechnik ·
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1809271221_Texas-Instruments-DAC5571IDBVR_C24061.pdf
Figure 2. LINEARITY ERROR AND ABSOLUTE ERROR DIFFERENTIAL LINEARITY ERROR vs CODE (+105°C) 16 0.4 0.3 VDD = 5 V at 105°C VDD = 5 V,AT = 25°C B 0.2 S 0.1 − −0.1 8 E −0.2 V L −0.3 m −0.4 r −0.5 r 0 E 00.2 u 0.15 u S 0.1 O L 0.05 −8 − −0.05 L −0.1 D −0.15 −0.2 −16 −0.25 0 32 64 96 128 160 192 224 256 0
in „Hilfe bei der Berechnung (Voltage Divider)“ · Analoge Elektronik und Schaltungstechnik ·
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MAX6956_i2c_28_LED.pdf
5 VLED= 2.4V 5 V+ = 2.5V TO 5.5V,PORT= 0.6V 5 X 26 A 16 X ) 22 M ) V+ = 5.5V M ) M A A A 14 ( 20 ( 25 ( N LED DROP = 2.4V N N E 18 E E 12 U U 24 U C 16 C C 10 I LED DROP = 1.8V I 23 I S 14 S V+ = 3.3V S 8 R R R P 12 P 22 P 10 6 8 21 4 6 20 2 2.0 2.5
in „Suche IC für LED Bar-Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irg4bc30w.pdf
wave, I=I PK) 100 100 ) ( A t t J= 150 C° e e u r C C 10 e ° r i J = 150 C i J= 25 C m 10 m - - - - o o c TJ= 25 C c 1 l l o C , , C IC I V GE = 15V V CC = 50V 20µs PULSE WIDTH 5µs PULSE WIDTH 1 0.5.0 6.0 7.0 8.0 9.0 10.0 11.0 1 10 VCE , Collector-to-Emitter
in „Ersatz für IGBT G4BC30W“ · Analoge Elektronik und Schaltungstechnik ·
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AppNote_0513_Relay_Contact_Life.pdf
energy. As a result, arc duration will be shortened and material loss will be minimized. i = C dv = 1 x 10 -6 28 x .63 = 8.8A / msec. dt 2.0 x 10-6 avg Contact Protection Diagram where; .63 is the capacitor voltage loss during one time constant of 2.0 msec. This di/dt isn’t very severe and a wide variety
in „Frage zur Strombelastbarkeit (DC) von Relais“ · Analoge Elektronik und Schaltungstechnik ·
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KS0073.pdf
9 8 7 6 4 4 4 4 4 4 3 3 3 3 3 3 3 3 3 3 2 2 2 2 2 2 2 2 2 2 1 1 1 1 E E E E E E E E E E E E E E E E E E E E E E E E E E E E E E S S S S S S S S S S S S S S S S S S S S S S S S S S S S S S 2 1 8 7 6 5 4 3
in „Eigene Zeichen bei LCD mit KS0073 für blöde“ · Mikrocontroller und Digitale Elektronik ·
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0901.3482v1.pdf
buffer over- 0x1061 other 0xXX ADDR L flow vulnerability. 0x1060 @ret H 0x38 0x2b 0x105F @ret 0x22 0x58 5.2 Meta-gadgets L 0x105E tmpbuff[3] 0 0x03 As discussed in Section 3, it is very difficult for a remote 0x105D tmpbuff
in „Mikrocontroller Viren“ · Offtopic ·
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Quasimodo_jig_revA.pdf
paragraph of Appendix A explains why}, and in my own audio work I usually select Cs to be about 15X greater than Cx. When fitting a snubber to existing equipment that already has a Cx installed, I would of course install that same value of Cx into the Quasimodo test jig, and also install a Cs which
in „Stromversorgung Extra Kondensatoren“ · Analoge Elektronik und Schaltungstechnik ·
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DM164.pdf
28 IOUT20 IOUT2 10 27 IOUT21 IOUT1 11 26 IOUT22 IOUT0 12 25 IOUT23 3 4 5 6 7 8 9 0 1 2 3 4 1 1 1 1 1 1 1 2 2 2 2 2 B P P 1 E 1 2 S _ _ _ M N K U D V S S E X X X A E D O V A V V O E E E L D I R R R A QFN48 (Top View) N K H 2 K 4 3 O L O O T I C T D C S S C S T C O D D
in „8 RGB Leds stufenlos ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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DM164.pdf
28 IOUT20 IOUT2 10 27 IOUT21 IOUT1 11 26 IOUT22 IOUT0 12 25 IOUT23 3 4 5 6 7 8 9 0 1 2 3 4 1 1 1 1 1 1 1 2 2 2 2 2 B P P 1 E 1 2 S _ _ _ M N K U D V S S E X X X A E D O V A V V O E E E L D I R R R A QFN48 (Top View) N K H 2 K 4 3 O L O O T I C T D C S S C S T C O D D
in „20mA Led Treiber mit möglichst vielen Kanälen“ · Mikrocontroller und Digitale Elektronik ·
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ds18s20.pdf
has been received error–free by the bus master. The equivalent polynomial function of this CRC is: 8 5 4 CRC = X + X + X + 1 The DS18S20 also generates an 8–bit CRC value using the same polynomial function shown above and provides this value to the bus master to validate the transfer of data bytes.
in „Messabweichung beim 1-wire DS1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_002.pdf
has been received error–free by the bus master. The equivalent polynomial function of this CRC is: 8 5 4 CRC = X + X + X + 1 The DS18S20 also generates an 8–bit CRC value using the same polynomial function shown above and provides this value to the bus master to validate the transfer of data bytes.
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CAN_BUS.pdf
rising clock edge, how fast does the clock have to be achieve 600 MB/s? 600 MByte/s = 600 MBytes/s * 8 bits/1Byte = 4800Mb/s Clock period = 1/4800e06 Clock Frequence = 1/clock period = 4800e06 = 4.8e09 = 4.8GHz Example of 8-bit Data Transfer (parallel) D7 D0 Data = 0x8A (hex) = 10001010 (binary) Parallel Transfer D7 1 D6 0 8 data bits D5 0 transferred on D4 0 clock edge, 1 D3 takes 8 data D2 0 lines. D1 1 D0 0 Example of 8-bit Data Transfer (serial) D7 D0 Data = 0x8A (hex) = 10001010 (binary) Serial Transfer D7 D6 D5 D4
in „CAN mir das einer mal erklären?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ET050000DH6.pdf
EYE (DISTANCE 5mm OVER) 0.4mm < ∅ ≤ 0.5mm 1 OR LESS (DISTANCE 5mm OVER) ∅ > 0.5mm NG D ≤ 8mm 1 OR LESS NEWTON RING 8mm < D NG 02101300-01-02 MODEL NO . VERSION PAGE E M E R G I N G D I S P L A Y TECHNOLOGIES CORPORATION E T 0 5 0 0 0 0 D H 6 5 22 1 3 . INSPECTION CRITERION 13.1 APPLICATION
in „AP7000 und ICnova ADB1000: Bisschen wenig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLC59116.pdf
s). Global blinking period (seconds) = (GFRQ[7:0] + 1) / 24 LED Driver Output State Registers 0 to 3 (LEDOUT0 to LEDOUT3) Table 8 describes LED Driver Output State Registers 0 to 3. Table 8. LEDOUT0 to LEDOUT3 – LED Driver Output State Registers 0 to 3 (Address 14h to 17h) Bit Description (1) ADDRESS
in „Verstehe TWI überhaupt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
35Diy_Instruments_for_Amateur_Space.pdf
detector profile and its bandwidth needs (Example 4-1). Example 4-1. Examples of data types Brightness: e.g. 3.846 x 1,026 W in luminosity, 4.83 absolute magnitude Spectral: e.g. "color image plus IR/thermal" Timing: e.g. "On during the day, off at night" You can also mix these data goals. An imaging spectrometer
in „Atmega8 und Weltraum“ · Offtopic ·
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PWS-865-PQspec083107.pdf
only 0x18 AC current limit (If AC current upper limit; same scale factor as 0x14 available) 0x19 DC current limit (if DC current upper limit; same scale factor as 0x15 available) 0x1A Power supply Power supply
in „[V] PC im 19" Gehäuse mit Supermicro X8SAX, Core i7 940, GeForce 9600 GT, 24 GB“ · Markt ·
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DCL10_ds593.pdf
33 Virtex-5 33 Spartan 5 Spartan-II 33 Spartan-3 33 Spartan-3A 33 Spartan-3AN 33 (50, 200 and 400 densities) Spartan-3AN 20 (700 and 1400 densities) Spartan-3E 30 DS593 (v1.2.1) March 17, 2011 www.xilinx.com 8 Platform Cable USB II iMPACT Cable Status
in „USBprog CPLD Starterkit Wie bauen?“ · FPGA, VHDL & Co. ·
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PDF
TS80C51U2_ATMELCorporation.pdf
ROM (bytes) EPROM (bytes) VQFP44 1.4 TS80C51U2 0 0 TS83C51U2 16k 0 TS87C51U2 0 16k 4. Block Diagram x Dx c s E D D R T V V T T R T (2) (2) (1) (1) (3) (3) XTAL1 RAM /EPROM XTAL2 UART_0 256x8 16Kx8 Timer2 UART_1 ALE/PROG C51 PSEN CORE IB-bus CPU EA/VPP (2) RD Timer 0 INT Parallel I/O Ports WatchDog (2
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DC-DC.pdf
at very high frequencies. These signals can be picked up very easily by "antennas" as small as the 3" ground lead on the scope probe. Assuming the probes are reasonably well matched, the B channel probe will pick up the same radiated signal as the A channel probe, which allows this "common-mode" signal
in „Step UpDown“ · Mikrocontroller und Digitale Elektronik ·
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max1481-max1486.pdf
X ) M ) M ) M M ( 320 ( ( T T 40 T 20 E 300 E E A U R R C C 30 C 15 X L 280 U U P MAX1484/MAX1486 T 20 T 10 1 S 260 O O 4 10 5 8 240 4 220 0 0 -60 -40 -20 0 20 40 60 80 100 0 1 2 3 4 5 0 1 2 3 4 5 / M
in „MODBUS Protokoll MSP430“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AMIS-30543-D.pdf
011 100 xxx xxx ESM[2:0] 001 010 000 000 000 000 000 011 100 % of Imax Comp Comp Comp full full MSP[8:0] 1/128 1/64 1/32 1/16 1/8 1/4 1/2 2ph 1ph Coil X Coil Y 000000000 0 0 0 0 0 0 0 0 0 100 000000001 1 1 100 000000010 2 1 2 100 000000011 3 4 100 000000100 4 2 1 5 100 000000101 5 6 100 000000110 6 3
in „Puls aus Sinuswelle herausrechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irf3205.pdf
Gate-to-Source Voltage 1000 1000 OPERATION IN THIS AREA LIMITED ) BY R DS(on) A t n 10µs r ) u ( C t 100 i e r r 100µs D T J 175°C u e 100 C r i e r 1ms e D R T = 25°C , 10 , J ID D 10ms IS TC = 25°C TJ = 175°C VGS = 0V Single Pulse 10 A 1 A 0.6 1.0 1.4 1.8 2.2 2.6 3.0 1 10 100 V SD , Source-to-Drain Voltage
in „Schaltung zu Kondensatorentladungsschweißen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 1 1 1 2 2 2 2 2 2 2 2 2 2 3 3 3 3 3 3 3 3 3 0 # # # # # # # # # # # # # # 3 2 1 0 # # # 7 6 5 4 N C X A T A UI P D E C 0 P A D G L CS L Q
in „(Windows/Winbond) CPU Temperatur auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC4067.pdf
description Table 2. Pin description Symbol Pin Description Z 1 common input or output Y7, Y6, Y5, Y4, Y3, Y2, Y1, Y0, Y15, 2, 3, 4, 5, 6, 7, 8, 9, 16, 17, 18, 19, 20, 21, 22, 2independent input or output Y14, Y13, Y12, Y11, Y10, Y9, Y8 S0, S1, S3, S2 10, 11, 13, 14 address input 0 GND 12 ground (0 V) E
in „Kontrolle Eagle Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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LF2407_EZDSP_INC.pdf
ID for mailbox 3 (upper 16 bits) */ #de▯ne MSGCTRL3 (volatile unsigned int *)0x721A /* CAN RTR and DLC for mailbox 3 */ #de▯ne MBX3A (volatile unsigned int *)0x721C /* CAN 2 of 8 bytes of mailbox 3 */ #de▯ne MBX3B (volatile unsigned int *)0x721D /* CAN 2 of 8 bytes of mailbox 3 */ #de▯ne MBX3C (volatile unsigned int *)0x721E /* CAN 2 of 8 bytes of mailbox 3 */ #de▯ne MBX3D (volatile unsigned int *)0x721F /* CAN 2 of 8 bytes of mailbox 3
in „TMS320LF2407 ???“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Hitachi_SP10Q005-T.pdf
L Y 1 3 X X 6 6 1 1 2 3 I I ) 3 Y F + - ~ 2 M 1 F CD D D D( 0 L L L . L DN E E D C F M C D V V G L L KAOHSIUNG HITACHI Sh. ELECTRONICS CO.,LTD. DATE May.12.’99No. 7B64PS 2707-SP10Q005-T-2 PAGE 7-1/1 8. INTERFACE TIMING CHART 8.1 TIMING CHART 26.0 S<=T<=44.6 S LOAD T/60 CP X320 X1 X2 D3 Y1 Y5 Y237 D2 Y2 Y6 Y238 D1 Y3 Y7 Y239 D0 Y4 Y8 Y240 300 ns max M LOAD 320*T YD M NOTE 1. DO NOT INPUT OVER 320 PULSES TO LOAD. KAOHSIUNG HITACHI
in „Hitachi SP10Q003 // SP10Q005 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irlb3034pbf-Datasheet.pdf
www.irf.com IRLB3034PbF 100000 100000 VGS VGS 60µs PULSE WIDTH TOP 10V ≤60µs PULSE WIDTH TOP 15V ≤ ) 8.0V Tj = 25°C 8.0V Tj = 175°C (10000 4.5V A 4.5V t 3.5V t10000 3.5V e 3.0V e 3.0V u 2.7V r 2.7V C 1000 BOTTOM 2.5V C BOTTOM 2.5V c e u r 1000 o o - 100 - - - i i r r 100 , 10 , ID ID 2.5V 2.5V 1 10 0.1
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PDF
IRLB3034PbF.pdf
www.irf.com IRLB3034PbF 100000 100000 VGS VGS 60µs PULSE WIDTH TOP 10V ≤60µs PULSE WIDTH TOP 15V ≤ ) 8.0V Tj = 25°C 8.0V Tj = 175°C (10000 4.5V A 4.5V t 3.5V t10000 3.5V e 3.0V e 3.0V u 2.7V r 2.7V C 1000 BOTTOM 2.5V C BOTTOM 2.5V c e u r 1000 o o - 100 - - - i i r r 100 , 10 , ID ID 2.5V 2.5V 1 10 0.1
in „Aufwärtsschaltregler bauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRLB3034.pdf
www.irf.com IRLB3034PbF 100000 100000 VGS VGS 60µs PULSE WIDTH TOP 10V ≤60µs PULSE WIDTH TOP 15V ≤ ) 8.0V Tj = 25°C 8.0V Tj = 175°C (10000 4.5V A 4.5V t 3.5V t10000 3.5V e 3.0V e 3.0V u 2.7V r 2.7V C 1000 BOTTOM 2.5V C BOTTOM 2.5V c e u r 1000 o o - 100 - - - i i r r 100 , 10 , ID ID 2.5V 2.5V 1 10 0.1
in „Logic Level Mosfet - Welcher "kann mehr"“ · Analoge Elektronik und Schaltungstechnik ·