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PDF
de302.pdf
used to move back and forth between the LCD panel’s default screen, and main menu screen: N P 6 1 4 0 5 S N : 6 1 4 0 5 1 9 2 . 1 6 8 . 1 2 7 . 2 5 4 H M A I N M E N U S E R V E R S E T T I N G ↓ In addition, you only need to remember to: • Use theSEL button to move up one level (i.e., left to right
in „[V] Moxa NPort Server DE-302 Device Server LAN auf 2x RS232 (25€)“ · Markt ·
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PDF
sihld24_Mosfet.pdf
1.8 A a Pulsed Drain Current DM 20 Linear Derating Factor 0.0083 W/°C Single Pulse Avalanche Energy E 91 mJ AS Maximum Power Dissipation T A 25 °C PD 1.3 W Peak Diode Recovery dV/dtc dV/dt 4.5 V/ns Operating Junction and Storage Temperature Range TJ, stg - 55 to + 175 d °C Soldering Recommendations (
in „Mosfet sperrt nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Telit_Easy_GPRS_User__Guide_r9.pdf
activated with identification number 0. The use of this context is analogue to that of GPRS contexts. 4.2 Commands overview This paragraph describes the configuration and the activation of the GSM context and the new AT commands implemented to facilitate the use of Easy GSM and Easy GPRS in the same device
in „Probleme mit AT-Befehlen für GPRS Datenübertragung TELIT 864“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7920.pdf
RAM read Timing Diagram of 8-bit Parallel Bus Mode Data Transfer RS RW E Upper Lower Upper Lower Upper Lower DB0-DB7 4-bit 4-bit 4-bit 4-bit 4-bit 4-bit Instruction write Dummy read RAM read Timing Diagram of 4-bit Parallel Bus Mode Data Transfer www.DataSheet4U.com V4.0
in „avr asm st7920“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7920-1.pdf
data pins (DB7~DB4). The lower 4 bits (bit-3~bit-0) data will be transfered second through data pins (DB7~DB4). The (DB3~DB0) data pins are not used during 4-bit transfer mode. RS RW E DB0-DB7 Instruction write Dummy read RAM read Timing Diagram of 8-bit Parallel Bus Mode Data Transfer RS RW E Upper Lower Upper Lower Upper Lower DB0-DB7 4-bit 4-bit 4-bit 4-bit 4-bit 4-bit Instruction write Dummy read RAM read Timing Diagram of 4-bit Parallel Bus Mode Data Transfer V4.0 25/49 2008/08/18 ST7920
in „DDRAM Adressierung (DG-14032 GLCD)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7920.pdf
data pins (DB7~DB4). The lower 4 bits (bit-3~bit-0) data will be transfered second through data pins (DB7~DB4). The (DB3~DB0) data pins are not used during 4-bit transfer mode. RS RW E DB0-DB7 Instruction write Dummy read RAM read Timing Diagram of 8-bit Parallel Bus Mode Data Transfer RS RW E Upper Lower Upper Lower Upper Lower DB0-DB7 4-bit 4-bit 4-bit 4-bit 4-bit 4-bit Instruction write Dummy read RAM read Timing Diagram of 4-bit Parallel Bus Mode Data Transfer V4.0 25/49 2008/08/18 ST7920
in „Display mit ST7920 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7920.pdf
data pins (DB7~DB4). The lower 4 bits (bit-3~bit-0) data will be transfered second through data pins (DB7~DB4). The (DB3~DB0) data pins are not used during 4-bit transfer mode. RS RW E DB0-DB7 Instruction write Dummy read RAM read Timing Diagram of 8-bit Parallel Bus Mode Data Transfer RS RW E Upper Lower Upper Lower Upper Lower DB0-DB7 4-bit 4-bit 4-bit 4-bit 4-bit 4-bit Instruction write Dummy read RAM read Timing Diagram of 4-bit Parallel Bus Mode Data Transfer V4.0 25/49 2008/08/18 ST7920
in „Display mit ST7920 Controller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ICL7660.pdf
OSCILLATOR FREQUENCY AS A OF EXTERNAL OSC. CAPACITANCE FUNCTION OF TEMPERATURE 5 o 100 100 TA= 25 C ) 4 ( 90 P + 90 V+ = +5V Y EFF I 3 N 80 80 I A E 2 I 70 70 m G F + T 1 E 60 60 I O N N V 0 I 50 50 E T S R P -1 E 40 40 U T V C O -2 O 30 30 L C P -3 R 20 o 20 U E TA= 25 C S -4 O 10 V+= +5V 10 SLOPE 55Ω
in „Ladungspumpe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slyt584_SEPIC_2xDr_Step-Up-Down_Buck-Boost.pdf
ideal waveforms in CCM are shown in stays OFF, and the two-switch buck-boost converter then Figure 4. The voltage conversion ratio is the same as that operates in boost mode. Similar to the typical boost con- of a typical buck converter: verter, the output voltage is regulated by controlling Q2. V The
in „Weidezaun gegen Schnecken mit Netztrafo und Rohr DN160 für Hobbygärtner“ · Projekte & Code ·
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PDF
ICL7660.pdf
OSCILLATOR FREQUENCY AS A OF EXTERNAL OSC. CAPACITANCE FUNCTION OF TEMPERATURE 5 100 100 TA= 25°C ) 4 ( 90 90 V+ = +5V Y PEFF I+ 3 C 80 80 I ) E 2 I 70 70 m G F ( T 1 E 60 60 I L N N V 0 I 50 50 E T S R U -1 E 40 40 U T V C U -2 N 30 30 L O C P -3 R 20 20 U E TA= 25°C S -4 W 10 + 10 SLOPE 55Ω P V = +
in „+5V zu -5V wie?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
7660CPA.pdf
OSCILLATOR FREQUENCY AS A OF EXTERNAL OSC. CAPACITANCE FUNCTION OF TEMPERATURE 5 100 100 TA= 25°C ) 4 ( 90 90 V+ = +5V Y PEFF I+ 3 C 80 80 I ) E 2 I 70 70 m G F ( T 1 E 60 60 I L N N V 0 I 50 50 E T S R U -1 E 40 40 U T V C U -2 N 30 30 L O C P -3 R 20 20 U E TA= 25°C S -4 W 10 + 10 SLOPE 55Ω P V = +
in „OPV mit +4,5/-4,5V von einer 9V Batterie betreiben“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ICL7660.pdf
OSCILLATOR FREQUENCY AS A OF EXTERNAL OSC. CAPACITANCE FUNCTION OF TEMPERATURE 5 100 100 TA= 25°C ) 4 ( 90 90 V+ = +5V Y PEFF I+ 3 C 80 80 I ) E 2 I 70 70 m G F ( T 1 E 60 60 I L N N V 0 I 50 50 E T S R U -1 E 40 40 U T V C U -2 N 30 30 L O C P -3 R 20 20 U E TA= 25°C S -4 W 10 + 10 SLOPE 55Ω P V = +
in „Spannungsabfall durch drei Tl074 :-S“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datasheet_MIC2875.pdf
Current. vs. Temperature. 5.20 0.904 VOUT = 5.0V L = 1μH ) COUT= 22μF ) ( 5.10 OUT = 500mA ( 0.902 E E G G A T L L O 5.00 O 0.900 V V T C P A T TA= 125℃ B U 4.90 TA= 25℃ D 0.898 ADJUSTABLE O ADJUSTABLE E VOUT = 5.0V R2 = 910kΩ T = -40℃ F R2 = 910kΩ R3 = 200kΩ A R3 = 200kΩ 4.80 2.5 3.0 3.5 4.0 4.5 5.0
in „MI2875 PG-PIN“ · Analoge Elektronik und Schaltungstechnik ·
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en.DM00091010.pdf
6 5 4 3 2 1 0 9 8 7 6 5 4 3 2 0 3 3 2 2 2 2 2 2 2 2 2 2 1 1 1 1 1 1 1 1 1 1 9 8 7 6 5 4 3 2 1 0 Y N N P Y N Y s s s s s s D O s s s s O B D O s D O 0x00 RCC_CR e e e e e e L L e e e e S E E E HSICAL[7:0] HSITRIM
in „EFM32F030 und Standby“ · Mikrocontroller und Digitale Elektronik ·
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590998-da-01-en-LED_LAUFSCHRIFT_ROT.pdf
U41 U42 U43 U44 U45 U46 U47 U4A U4B U4C U4D U48 U49 U4E U4F U50 U51 U52 U53 U54 U55 U56 U57 U58 U59 U5A U5B U5C U5D U5E U5F U60 U6 U62 U63 U64 U65 U66 U67 U68 U69 U6A U6B U6C U6D U6E U6F U70 U71 U72 U73 U74 U75 U76 U77 U78 U79 U7A
in „LED Laufschrift Programmierung von "Grafiken"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet-590998-mc-crypt-am03127-h11.pdf
U41 U42 U43 U44 U45 U46 U47 U4A U4B U4C U4D U48 U49 U4E U4F U50 U51 U52 U53 U54 U55 U56 U57 U58 U59 U5A U5B U5C U5D U5E U5F U60 U6 U62 U63 U64 U65 U66 U67 U68 U69 U6A U6B U6C U6D U6E U6F U70 U71 U72 U73 U74 U75 U76 U77 U78 U79 U7A
in „Farb-LED Display via RS232 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Configuration_adv.h
91 #define E2_MICROSTEPS 16 #define E3_MAX_CURRENT 1000 #define E3_SENSE_RESISTOR 91 #define E3_MICROSTEPS 16 #define E4_MAX_CURRENT 1000 #define E4_SENSE_RESISTOR 91 #define E4_MICROSTEPS 16 #endif // TMC26X //
in „Marlin Firmware mit dem ATMEL STUDIO 7 auf das Arduino Mega 2560 Board flashen“ · Mikrocontroller und Digitale Elektronik ·
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A500_ETV570G2DHU.pdf
TECHNOLOGIES CORPORATION E T V 5 7 0 G 2 D H U 3 0-1 DOC . FIRST ISSUE R E C O R D S OF R E V I S I O N APR.21, 2009 REVISED D A T E PAGE S U M M A R Y NO. AUG.25, 2009 3 4. ELECTRICAL CHARACTERISTICS POWER SUPPLY CURRENT FOR
in „VGA Grafikkarte mit AVR und 8MB SDRAM“ · Projekte & Code ·
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PDF
ETQ570G2DH6.pdf
CONTROLLED BY BACKLIGHT CURRENT OF LEDCTRL BACKLIGHT CURRENT V.S. LEDCTRL 42 40 38 )36 m32 (30 N28 E26 R24 U20 T18 H16 I14 K12 C10 B6 4 2 0 0 0.20.4 0.60.8 1.01.2 1.41.6 1.82.0 2.2 2.42.5 LEDCTRL (V) 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 Q 5
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slau157o_CCS.pdf
www.ti.com/support. A Code Composer Studio specific Wiki page (FAQ) is available, and the Texas Instruments E2E Community support forums for the MSP430 and Code Composer Studio v4.2 provide open interaction with peer engineers, TI engineers, and other experts. Additional device-specific information can be found
in „MSP430 - erstes Debuggen - valid setup“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD-ADXL345.pdf
=3.3V 20 20 18 18 )16 )16 ( ( N N I14 I14 T A L12 L12 U U O O P10 P10 F F O 8 O 8 T N E E C 6 C 6 E E P 4 P 4 2 2 0 5 0 0 –150 –100 –50 0 50 100 150 - –150 –100 –50 0 50 100 150 5 9 9 ZERO g OFFSET (mg) 0 ZERO g OFFSET (mg) 0 Figure5.Y-AxisZero gOffsetat25°C,V S =2.5V Figure8.Y-AxisZero
in „MOSI-Pegel viel zu niedrig, aber warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATTINY_3216_DB.pdf
function ©2020 Microchip Technology Inc. Complete Datasheet DS40002205A-page 14 ATtiny3216/3217 Pinout 4.2 24-Pin VQFN I D P T E E / A A C C C C P P P P P P 4 3 1 0 9 2 2 2 2 2 1 PA2 1 18 PC1 EXTCLK/PA3 2 17 PC0 GND 3 16 PB0 V DD 4 15 PB1 PA4 5 14 PB2TOSC2 PA5 6 13 PB3/OSC1 7 8 9 1 1 1 Note: It is recommended
in „Attiny 3216 QTouch Funktion“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sloa058.pdf
closely. It is best to de-tune it slightly, by selecting the resistor to virtual ground to be one E-96 1% resistor value off, for instance. +Vcc C1 C2 NOTCH +Vcc R4 C1 = C2 = C Cin R3 C3 = 2C R1 = R2 = R Vin Vcc/2 + R3 = R/2 - Vout Fo = 1/(2 RC) C3 R5 R4 = R5: HIGH R1 R2 The only control over Q is
in „Offset auf Sallen Key-Filter geben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AppNote_SingleSupply_OpAmp_Designs.pdf
closely. It is best to de-tune it slightly, by selecting the resistor to virtual ground to be one E-96 1% resistor value off, for instance. +Vcc C1 C2 NOTCH +Vcc R4 C1 = C2 = C Cin R3 C3 = 2C R1 = R2 = R Vin Vcc/2 + R3 = R/2 - Vout Fo = 1/(2 RC) C3 R5 R4 = R5: HIGH R1 R2 The only control over Q is
in „Bias-Voltage für ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Mixer_Musings.pdf
HereitcanbeseenthatdiodesD1/D2turnOFF ofFig.9revealedthattheLObaluntransformer at almost the exact same time that diodes T1anddiodesD1/D2formedaswitchtoground D3/D4 turn ON. As shown in Fig. 13, the time thatisturnedONduringthenegativehalfofthe discrepancy is corrected to less than 2nSec. LO signal, while
in „Ladderfilter berechnen und bauen“ · HF, Funk und Felder ·
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PDF
Trask_Mixer_Musings.pdf
HereitcanbeseenthatdiodesD1/D2turnOFF ofFig.9revealedthattheLObaluntransformer at almost the exact same time that diodes T1anddiodesD1/D2formedaswitchtoground D3/D4 turn ON. As shown in Fig. 13, the time thatisturnedONduringthenegativehalfofthe discrepancy is corrected to less than 2nSec. LO signal, while
in „Mischer selber bauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Trask_Mixer_Musings.pdf
HereitcanbeseenthatdiodesD1/D2turnOFF ofFig.9revealedthattheLObaluntransformer at almost the exact same time that diodes T1anddiodesD1/D2formedaswitchtoground D3/D4 turn ON. As shown in Fig. 13, the time thatisturnedONduringthenegativehalfofthe discrepancy is corrected to less than 2nSec. LO signal, while
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PDF
irl7833.pdf
Reverse Recovery Charge ––– 34 51 nC 2 www.irf.com IRL7833/S/L 1000 1000 TOP 10V VGS 7.0V TOP 7.0V ) 4.5V ) 4.5V ( 3.7V ( 3.7V n 3.5V t 3.5V e 3.3V e 3.3V u 100 3.0V u 100 3.0V C BOTTOM 2.7V C BOTTOM 2.7V c c u u 2.7V o o - - - - i 10 2.7V i 10 r r , , I ID 20µs PULSE WIDTH 20µs PULSE WIDTH Tj = 25°C
in „Beschaltung Mosfet für Brushless-Regler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
310J---FIDamp.pdf
OSCILLATOR -5- ATTLILA I IL'iD TRANSISTOR PROVIDES LOGARITHMR IESPONSE rNrTrA,FrAS ib ts to-''A 2rlol4rr" N= HANU-ES 9 DECADE LOW DRIFT AND NOISE SIGNAL RANGE PERMITS MICROVOLT FROM lpA RESOLUTION TO lmA lsE INPIJT SIGNAL Nine Decade Logarithmic Amplifier Ultra High lmpedance Buffer R- lolon C= lOsF e6. ot *-l.lre5 Ro 3'lo"n PERI\4ITS DAY-LONGTI[4E CONSTANTS .LOW (RC\ TO5SECS) : VALUE RESISTORS SPECIFY GAIN Long Term lntegrator High ImpedanceNoninverting Ampl ifier S O.zrl0a)tr4PRlvls PER ROOT Hz BELOW lHz to-r4AMpB|ASCURRENT :
in „DC-Messverstärker (Chopper) mit Kapazitätsdioden (diskret)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RGB16_Trend_ScreenKeys_Datasheet.pdf
to all 4 addresses one after the other. 0x00 e, 0xEE o, 0x28 o, 0xAA e Initialize MUX register for all ScreenKey displays Set decoder to all 4 addresses one after the other. 0x00 e, 0xEF o, 0x02 o, 0x05 o, 0xAA e Switch off background lighting to all ScreenKey displays Set decoder to all 4 addresses one after the other. 0x00 e, 0xED o, 0x00 o, 0xAA e Inscribe all ScreenKeys with blanks Set decoder to all 4 addresses
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PDF
AN00022_COMPASS.pdf
dependent on sensor sensitivity S and SCU amplification. Assuming that the synchronous rectifier (block 4) has an amplification magnitude of 1, the output voltage becomes: R4 R22 V out(x,y )= H e(x,y )×S × × (10) R bridge R10 In this case, Vout can be adjusted by varying e.g. R22 or R10. 5.5.9 SCU with Microcontroller
in „Fluglage messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN00022_COMPASS.pdf
dependent on sensor sensitivity S and SCU amplification. Assuming that the synchronous rectifier (block 4) has an amplification magnitude of 1, the output voltage becomes: R4 R22 V out(x,y )= H e(x,y )×S × × (10) R bridge R10 In this case, Vout can be adjusted by varying e.g. R22 or R10. 5.5.9 SCU with Microcontroller
in „Schwächste Signale aus dem Rauschen herausholen. Verständliche Erklärung gesucht.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN00022_COMPASS.pdf
dependent on sensor sensitivity S and SCU amplification. Assuming that the synchronous rectifier (block 4) has an amplification magnitude of 1, the output voltage becomes: R4 R22 V out(x,y )= H e(x,y )×S × × (10) R bridge R10 In this case, Vout can be adjusted by varying e.g. R22 or R10. 5.5.9 SCU with Microcontroller
in „elektronischen Kompass bauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN00022_COMPASS.pdf
dependent on sensor sensitivity S and SCU amplification. Assuming that the synchronous rectifier (block 4) has an amplification magnitude of 1, the output voltage becomes: R4 R22 V out(x,y )= H e(x,y )×S × × (10) R bridge R10 In this case, Vout can be adjusted by varying e.g. R22 or R10. 5.5.9 SCU with Microcontroller
in „Problem mit Kompass Achsen (Mega644p + HMC5883L)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Protel_99_SE_Traning_Manual_PCB_Design.pdf
Click on the Add button to display the Component Type dialog box. 2. Enter the designator prefix ( e.g. R) in the Designator Prefix field 3. Click on the down arrow in the Component Type field to display drop down menu. 4. Select the appropriate component type (e.g. Resistor) 5. Note! Components which
in „Protel 99“ · Platinen ·
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PDF
BGA_Breakouts_and_Routing.pdf
if you tried to mix some kind of staggered via pattern along the diagonal of the corner. See Figure 4- 19. Most any pattern will result in the same number of escape traces plus or minus a few so you may as well go with a simple pattern. 3. Short dog-bone in the transition areas. The pins between the
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PDF
MC9S08MM128RM.pdf
oprx8,SP SP1 9E E5 ff 4 prpp Branch if Less Than or Equal To BLE rel (if Z| (N V) 1) (Signed) REL 93 rr 3 ppp – 1 1 – – – – – BLO rel Branch if Lower (if C = 1) (Same as BCS)REL 25 rr 3 ppp – 1 1 – – – – – BLS
in „Freescale s08mm128 und USB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM3404.pdf
Illumination u ■ Industrial Lighting a o Typical Application r o r D i i g i g h o w e 20205401 r E D s © 2008 National Semiconduct202054poration www.national.com V 4 0 Connection Diagrams 3 M / 4 0 3 M L 8-Lead Plastic PSOP-8 Package NS Package Number MRA08B 8-Lead Plastic SO-8 Package02
in „Extreme Störungen LM3404“ · Mikrocontroller und Digitale Elektronik ·
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Datei
crt.s
#4 strlo R0, [R2], #4 blo 1b /* Clear uninitialized variables .bss section (Zero init) */ mov R0, #0 ldr R1, =_bss_start ldr R2, =_bss_end 2: cmp R1, R2 strlo R0, [R1], #4 blo 2b /* Enter the C code */
in „AT91 - sprintf - Fehlermeldung.undefined reference to end“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6502_-_Integration.pdf
33 –hexadecimal 21h– is worked up as decimal 21, therefore, the two 4-bit parts of the byte contain one decimal digit). When making an addition or a subtraction, the results have to be corrected because the ALU makes a binary addition. Both digits have to be checked; if
in „Frage zu Sprungvorhersagen bei modernen CPUs“ · PC Hard- und Software ·
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PDF
Berkeley_1.pdf
are doped the same type; the middle region is doped the opposite type. EE105 Fall 2007 Lecture 4, Slide 6 Prof. Liu, UC Berkeley NPN BJT Operation (Qualitative) In the forward active mode of operation: • The collector
in „Anfänger frage: Wiederstand in Transitor schaltung warum?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LEGO_PowerFunctions.pdf
for two PF plugs and one LED. Motor driver Data IR Receiver Receiver LED Motor driver Channel 1 - 4 Application Schematics Channel 1 2 3 4 Vcc Vcc Vcc 1 A0 ON A1 S1 A2 S2 A3 B0 D0 Dual IR B1 D1 Motor Receiver B2 D2 Driver B3 D3 4 Document title: Init: Date: Version: LEGO Power Functions RC GMu 21.01.2008
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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PDF
4pole.pdf
fulfilled by using four pole electrolytics signal paths as well, because the most other firms - as i.e. FRAKO from Germany - power amplifiers reservoir is conceptually followed Sprague, and developed four pole placed in series with the loudspeaker line. electrolytics. The main issue is not only that,
in „4 Pole axial electrolytic capacitor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BTS4140N.pdf
0 d 1 5 D e v ic e : B T S 4 1 4 0 L im it D a te C o d e : E 0 1 5 0 O N O -M o d e : O N / O F F 1 0 O F F C o u p lin g P o inV B B M o n ito rin g : O u t M o d u la tio n : C W 5 M e a s u re m e n t:Pfw d 0 1 1 0 1 0 0 1 0 0 0 f / M H z Typ. V bb -Pin Susceptibility at PWM-Mode 4 0 3 5 3 0 2 5 m 2 0 d 1 5 D e v ic e : B T S 4 1 4 0 L im it D a te C o d e : E 0 1 5 0 P W M L o a d : 2 2 0 O h m 1 0 O -M o d e : P W M 1 0 0 H z 5 0 % C o u p lin g P o in tV B B M o n ito rin g
in „+12V mit +3.3V schalten P-MOSFET?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Atmel-9251-ATA6836C-ATA6838C-Open-Load-Detection_Application-Note.pdf
is properly connected. 1.3.2 Single-ended Low-side Open-load A low-side load as shown in Figure 1-4 cannot be monitored for an open-load condition. In this case, regardless of the state of the load, open or closed, the result will be the same when activating open-load detection (OLD = 0). The corresponding HSx = 1 for the associated output (OUTx) in both instances. Figure 1-4. Low-side Load Configuration VS HSx OUTx LSx GND 4 ATAN0013 [APPLICATION NOTE] 9251E–AUTO–04/15 1.3.3 Low-side Open-load: H-bridge Configuration A low-side load configured in an H-bridge as shown in
in „Keine Open Load Meldung bei ata6836c und IFX9201SG!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ET0350G0DH6.pdf
) : THE DISPLAY PATTERN IS ALL “WHITE”. NOTE ( 3 ) : INTERNAL CIRCUIT DIAGRAM OF BACKLIGHT NOTE ( 4 ) : AMBIENT TEMP .VS. ALLOWABLE FORWARD CURRENT. (PER LED) 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 3 5 0 G 0 D H 6 6 4 5 . TIMING CHARACTERISTICS
in „TFT- Ansteuerung ET0350G0DH6 (Glyn) mit HX8238 LCD Driver und Microchip Graphic Lib“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ET0350G0DH6-EMERGINGDISPLAY.pdf
) : THE DISPLAY PATTERN IS ALL “WHITE”. NOTE ( 3 ) : INTERNAL CIRCUIT DIAGRAM OF BACKLIGHT NOTE ( 4 ) : AMBIENT TEMP .VS. ALLOWABLE FORWARD CURRENT. (PER LED) 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 3 5 0 G 0 D H 6 7 4 5 . TIMING CHARACTERISTICS
in „[V] LCDs 5,7" und 3,5"“ · Markt ·
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ECW1J-64182.pdf
MOUNTED - HOUSING B PCB MOUNTING DIMENSIONS SOLDER HOLES - HOUSING C Dimensions not given are the same as Bushing Mounted. (Housing Styles B and E) Dimensions not given are the same as Bushing Mounted. L 5.74 9.02 23.37 ± 0.25 (.226) (.355) (.920 ± .010) 11.4 26.975 15.2 (.450) (1.062) .762 (.600) 2.54
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PDF
CCP_Tricks.pdf
Step #3: Determine CCPR1L and CCP1CON<5:4> a) CCPR1L:CCP1CON<5:4> = DutyCycle*0x3FF = 0x1FF b) CCPR1L = 0x1FF >> 2 = 0x7F, CCP1CON<5:4> = 3 Step #4: Configure CCP1CON The CCP module is configured in PWM mode with the Least Significant bits of
in „Lüfter über PWM, Bauteilauswahl?!?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FB180SA10P.pdf
vishay.com Revision: 30-Jul-10 FB180SA10P Power MOSFET, 180 A Vishay Semiconductors 1000 2.5 TOP 15V e ID= 180A 10V n A 7.0V t t 6.0V i 2.0 n 5.5V e r BOTTOM 4.5V R u100 n ) C O d1.5 c c zi u u a o S m - o o - 4.5V - (1.0 i 10 i r r D , , ) 0.5 I o S 20µs PULSE WIDTH D VGS =10V TJ= 25 C R 0.0 1 -60 -40
in „MOSFET wird sehr heiß“ · Analoge Elektronik und Schaltungstechnik ·