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PDF
LT8609_StepDown.pdf
SYNC = 1.9V l 45 60 ns MinimumOff Time 115 ns Oscillator Frequency R = 221k, I = 0.5A l 155 200 245 kHz FSET LOAD l RFSET= 60.4k, LOAD= 0.5A 640 700 760 kHz RFSET= 18.2k, LOAD= 0.5A l 1.925 2.00 2.075 MHz Top Power NMOS On-Resistance LOAD = 1A 185 mΩ Top Power NMOS Current Limit l 3.4 4.5 5.7 A BottomPower
in „LT8609 MSOP Platine. Ich bekomms einfach nicht hin.“ · Platinen ·
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PDF
AN2131_datasheet.PDF
805x Devices Intel Dallas Cypress Feature DS80C320 EZ-USB 8031 8051 80C32 80C52 Clocks per instruction cycle 12 12 12 12 4 4 Program / Data Memory - 4 KB ROM - 8 KB ROM - 8 KB RAM Internal RAM 128 bytes 128 bytes 256 bytes 256 bytes 256 bytes 256
in „Aufrufen von Funktion legt auch vorherigen Teil des Programms lahm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN2131_datasheet.PDF
805x Devices Intel Dallas Cypress Feature DS80C320 EZ-USB 8031 8051 80C32 80C52 Clocks per instruction cycle 12 12 12 12 4 4 Program / Data Memory - 4 KB ROM - 8 KB ROM - 8 KB RAM Internal RAM 128 bytes 128 bytes 256 bytes 256 bytes 256 bytes 256
in „Einteilung von data, pdata, xdata, code?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm2676.pdf
The LM2676 series of regulators are monolithic integrated circuits which provide all of the active kHz synchronous converter functions for a step-down (buck) switching regulator • Efficiency up to 94% capable of driving up to 3-A loads with excellent line • Simple and easy to design with (using off-the-shelf
in „[V] 45St. Schaltregler LM2676SX-3.3/NOPB TO263-7 SIMPLE SWITCHER® High Efficiency 3-A Step-Down“ · Markt ·
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PDF
lm2676_2_.pdf
The LM2676 series of regulators are monolithic integrated circuits which provide all of the active kHz synchronous converter functions for a step-down (buck) switching regulator • Efficiency up to 94% capable of driving up to 3-A loads with excellent line • Simple and easy to design with (using off-the-shelf
in „[V] 45St. Schaltregler LM2676SX-3.3/NOPB TO263-7 SIMPLE SWITCHER® High Efficiency 3-A Step-Down“ · Markt ·
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PDF
OP184_284_484.pdf
Slew Rate SR R L 2 kΩ 2.4 4.0 V/μs Full-Power Bandwidth BW p 1% distortion, L = 2 kΩ,O = 29V p-p 35 kHz SettlingTime tS To 0.01%, 10V step 4 μs Gain Bandwidth Product GBP 4.25 MHz Phase Margin ΦM 50 Degrees NOISE PERFORMANCE Voltage Noise enp-p 0.1 Hz to 10 Hz 0.3 μV p-p Voltage Noise Density en f = 1 kHz 3.9 nV/√Hz Current Noise Density n 0.4 pA/√Hz 1Input offset voltage measurements are performed by automated test equipment approximately 0.5 seconds after application of power. Rev. G | Page 5 of 24
in „Bestellbezeichnung OP184ESZ / OP184FSZ“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Lenovo_schematic.pdf
LC FUTURE CENTER. UMA Date: Monday, December 09, 201Sheet 6 of 59 5 4 3 2 1 5 4 3 2 1 RTC_X1 +3VS RC32 2 1 10M_0402_5% RTC_X2 1 1 RPC2 CC3 JME1 ODD_DETECT# 1 8 VCCRTC 1U_0402_10V6K SHORT PADS SATA0GP 2 7 YC1 1 2 2 @ SATA2GP 3 6 2 SATA3GP 4 5 2 32.768KHZ_12.5PF_200458-PG14 2 RC33 1 2 20K_0402_1% SRTC_RST
in „Pin Belegung bei dem Chip“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm3444.pdf
will equal: 30127554 FIGURE 12. AC Line The average current rating should be greater than: I = I (D ) DS-MAX LED(-AVE) MAX Figure 12 shows the AC waveform. One can easily see that RE-CIRCULATING DIODE the peak voltage (V PEAK) will always be: The LM3444 Buck converter requires a re-circulating diode D10
in „High Brightness LEDs > 50W µC als regelbare KSQ“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EM6126_DS.pdf
79 S32 Row 32 Row 32 Row 32 Row 48 S33 x-addreess = 0 Row 33 Row 47 S34 x-addreess = 1 Row 34 Row 46 S35 x-addreess = 2 Row 35 Row 45 S36 x-addreess = 3 Row 36 Row 44 S37 Row 37 Row 43 x-addreess = 4 S38 x-addreess
in „LCD mit SPI ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
APW7080.pdf
Regulation IOUT= 0 ~ 4A - 0.4 - % OSCILLATOR AND DUTY FOSC Free Running Frequency VIN 4.5 ~ 26V 340 380 420 kHz Foldback Frequency VFB = 0V - 80 - kHz Maximum Converter’s Duty Cycle - 93 - % Minimum Pulse Width of LX VIN 4.5 ~ 26V - 200 - ns CURRENT-MODE PWM CONVERTER Gm Error Amplifier Transconductance - 400
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Datei
tn816def.inc
status bit mask .equ CLKCTRL_OSC20MS_bp = 4 ; 20MHz oscillator status bit position .equ CLKCTRL_OSC32KS_bm = 0x20 ; 32KHz oscillator status bit mask .equ CLKCTRL_OSC32KS_bp = 5 ; 32KHz oscillator status bit position .equ CLKCTRL_XOSC32KS_bm = 0x40 ; 32.768 kHz Crystal Oscillator status bit mask .equ
in „ATtiny816 wo finde ich def.inc“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Exp_Meth_In_RF_Des--Wes_Hayward.pdf
produced 14053.0 to 14068.4 kHz (15.4-kHz shift.) In another example, an 18-MHz crystal shifted 13.3 kHz with no inductance, but shifted over 25 kHz when 3.7 jiH was added. 5.4 jiH in that circuit produced unstable operation, emphasizing
in „Literatur zum Selbstbau von Sendern und Empfängern“ · HF, Funk und Felder ·
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PDF
MAX3949_Datenblatt.pdf
, FAULT) 3-WIRE DIGITAL INTERFACE TIMING CHARACTERISTICS (Figure 5) SCL Clock Frequency f 400 1000 kHz SCL SCL Pulse-Width High CH 500 ns SCL Pulse-Width Low tCL 500 ns SDA Setup Time DS 100 ns SDA Hold Time DH 100 ns SCL Rise to SDA Propagation t 5 ns Time D CSEL Pulse-Width Low tCSW 500 ns CSEL Leading
in „MAX3949 über I2Can Arduino wird nicht gefunden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
iotn814.h
CLKCTRL_CLKSEL_enum { CLKCTRL_CLKSEL_OSC20M_gc = (0x00<<0), /* 20MHz internal oscillator */ CLKCTRL_CLKSEL_OSCULP32K_gc = (0x01<<0), /* 32KHz internal Ultra Low Power oscillator */ CLKCTRL_CLKSEL_XOSC32K_gc = (0x02<<0), /* 32.768kHz external crystal oscillator */ CLKCTRL_CLKSEL_EXTCLK_gc = (0x03<<0), /* External clock
in „Attiny417/814/816/817 und avr-gcc, avr-libc“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sony_ht-ct260h.pdf
/ A10, SCP2_MOSI SD_A11, EXT_A11 87 EXT--A9 EXT--D13 5 4 SD_D13 SD_A6 31 A5 DQ5 11 SD_D6 FLASH_SPI_32Mbit_EON25F32 SPI_FLASH_CLK 1 GPIO11, PCP_A3, AS#, SCP2_MISO / SDA SD_A9, EXT_A9 88 EXT--A8 SD_A7 32 A6 DQ6 13 SD_D7 GPIO38, PCP_WR# / DS#, SCP2_CLK SD_A8, EXT_A8 90 EXT--A7 EXT--D12 8 1 SD_D12 SD_A8
in „(V) 2 Platinen aus einer Sony Soundbar und Nixie Röhren“ · Markt ·
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PDF
VHF-COMM.1983.3.pdf
D 5: HP 2600 (Hewlett Packard) or similar cording 10the lollowing equation: Schollky diode II+ 150 kHz lUi - 50kHz D 6: 1 N 4148. 1 N 4151 or similar swilching diode 6 6 L 1 32 turns 0' 0 2 mm dia. enamelled copper 1" lower rreouencv Ilmil wire in special coilset, (7V IS) with core ful upper nrnn 01me
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s3esk_authentication.pdf
intervals can operate. These interrupts mean that PicoBlaze executes an interrupt service routine at 256KHz and this results in a 1KHz PRF with 8-bit resolution. B – The ‘security_disable_outputs‘ signal also initialises in the Low state and therefore all LED outputs are driven with the corresponding PWM
in „Reverse Engineering verhindern/erschweren“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
MT6252.pdf
types Pin Name Type Description Power Domain TEST_MODE DIO Factory test mode enable input VRTC XOUT AO 32.768 KHz crystal output VRTC BT_POWENI DIO Bluetooth Power Enable VDD33 BT_32KEN DIO Bluetooth 32KHz clk VDD33 RF Control CircuitryIO Pulse-width modulated signal a s e f oVDD33 BPI_BUS1 DIO RF hard-wire
in „Amparos GPS Tacker - Pollin Schnäppchen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GLCD.pdf
--- --- 400 Vrms Lamp current*1 IFL Ta= 25°C 4.0 5.0 6.0 mArms Frequency*1 fFL Ta= 25°C --- 30 --- kHz *1 FL inverter: CXA-L10L *2 The voltage capable of starting discharge and keeping stable discharge.When the voltage gradually increases, glow discharge will increase and FL tube terminals will be connected
in „Problem mit IC6963“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM4863.pdf
headphones. n Single-ended mode THD+N at 75mW into Boomer audio power amplifiers were designed specifically32Ω 0.5%(max) l provide high quality output power from a surface mountn Shutdown current 0.7µA(typ) i package while requiring few external components. To sin Supply voltage range 2.0V to 5.5V r speaker
in „PAM8403 wo/wie am Raspberry Pi 3 anlöten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADIS16250.pdf
RESPONSE 3 dB Bandwidth See Analog Bandwidth section for adjustment 50 Hz Sensor Resonant Frequency 14 kHz Turn-onTime SLEEP mode recovery to 2°/sec of final value 60 ms Initial power-up to first data-ready pulse 160 SELF-TEST STATE Change for Positive Stimulus 320°/sec dynamic range setting 439 721 1092
in „ADIS16250 Gyro Code von Hersteller?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADIS16250.pdf
RESPONSE 3 dB Bandwidth See Analog Bandwidth section for adjustment 50 Hz Sensor Resonant Frequency 14 kHz Turn-onTime SLEEP mode recovery to 2°/sec of final value 60 ms Initial power-up to first data-ready pulse 160 SELF-TEST STATE Change for Positive Stimulus 320°/sec dynamic range setting 439 721 1092
in „Probleme mit Code für Gyro ADIS16250“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADIS16250.pdf
RESPONSE 3 dB Bandwidth See Analog Bandwidth section for adjustment 50 Hz Sensor Resonant Frequency 14 kHz Turn-onTime SLEEP mode recovery to 2°/sec of final value 60 ms Initial power-up to first data-ready pulse 160 SELF-TEST STATE Change for Positive Stimulus 320°/sec dynamic range setting 439 721 1092
in „Drift bei Gyro ADIS16250“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RS0012.pdf
2538.75 300 30 WRB 877.3 -337.5 65 COMR<16> 2460.75 300 31 SDA 1015 -337.5 66 DUMMY_PAD 2398.75 300 32 SCL 1151.1 -337.5 67 SEG<100> 2351.25 300 33 OSC 1308.5 -337.5 68 SEG<99> 2303.75 300 34 DISP 1444.6 -337.5 69 SEG<98> 2256.25 300 35 SYNC 1567.6 -337.5 70 SEG<97> 2208.75 300 7 RS0012 PAD NO. PAD Name
in „OLED RAYSTAR REX001602B“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RS0012.pdf
2538.75 300 30 WRB 877.3 -337.5 65 COMR<16> 2460.75 300 31 SDA 1015 -337.5 66 DUMMY_PAD 2398.75 300 32 SCL 1151.1 -337.5 67 SEG<100> 2351.25 300 33 OSC 1308.5 -337.5 68 SEG<99> 2303.75 300 34 DISP 1444.6 -337.5 69 SEG<98> 2256.25 300 35 SYNC 1567.6 -337.5 70 SEG<97> 2208.75 300 7 RS0012 PAD NO. PAD Name
in „Brauche Hilfe Oled Display 2x16 EA W162-X3LG“ · Mikrocontroller und Digitale Elektronik ·
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PDF
user.guide.hcmos.pdf
CD HE s Power dissipation, typ. (mW) Gate static 0.0000025 0.001 10 2 19 1.2 8.5 5.5 dynamic @100 kHz 0.075 0.1 10 2 19 1.2 8.5 5.5 static 0.000005 0.001 300 100 500 60 − 190 Counter dynamic @100 kHz 0.125 0.120 300 100 500 60 − 190 Propagation delay (ns) typical 8 94 40 10 9.5 3 4 1.5 3 Gate maximum 14 190 80 20 15 5 7 2.5 4 Delay/power product (pJ) 4 Gate at 100 kHz 0.52 9 4 100 19 57 4.8 13 16.5 Maximum clock frequency (MHz) typical 55 4 12 25 33 100 60 160 125 D-type flip-flop minimum 30 2 6 15 25 75 40 − 100 typical 45 2 6 32 32 70 45 − 125 Counter minimum 25
in „Unterschied 74HCxx, 74ACxx, 74LVCxx ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
user.guide.hcmos.pdf
CD HE s Power dissipation, typ. (mW) Gate static 0.0000025 0.001 10 2 19 1.2 8.5 5.5 dynamic @100 kHz 0.075 0.1 10 2 19 1.2 8.5 5.5 static 0.000005 0.001 300 100 500 60 − 190 Counter dynamic @100 kHz 0.125 0.120 300 100 500 60 − 190 Propagation delay (ns) typical 8 94 40 10 9.5 3 4 1.5 3 Gate maximum 14 190 80 20 15 5 7 2.5 4 Delay/power product (pJ) 4 Gate at 100 kHz 0.52 9 4 100 19 57 4.8 13 16.5 Maximum clock frequency (MHz) typical 55 4 12 25 33 100 60 160 125 D-type flip-flop minimum 30 2 6 15 25 75 40 − 100 typical 45 2 6 32 32 70 45 − 125 Counter minimum 25
in „74HCT Ausgangsstrom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCF8833_1.pdf
Objective specification STN RGB - 132 × 132 × 3 driver PCF8833 handbook, full pagewidth 36 rows 131 96 32 63 32 rows PCF8833 32 rows 95 64 columns 0 31 32 rows 0 31 32 DISPLAY 63 64 95 96 131 MGU934 Fig.25 Row sequence for BRS = 0 and TRS = 0. handbook, full pagewidth 36 rows 96 131 63 32 32 rows PCF8833
in „Versorgung einer LCD Anzeige und MC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GM47_Integrators_Manual_R1C.pdf
µs tPDLP PCMO valid from PCMCLK (rise) 2.5 µs Name Description Typ. Unit F PCM clock frequency 200 kHz PCMCLK TPCMCLK PCM clock period with 50/50 mark space ratio 5 µs FPCMSYN PCM sync frequency 8 kHz 54 LZT 123 7263 R1C 2. SYSTEM CONNECTOR INTERFACE Typical Rise/Fall times Rise Time Fall Time Unit PCMCLK
in „GM47 GSM Spannungsversorgung aus LiIo-Akku“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc6462.pdf
software must perform a complete configuration. To speed up the boot sequence when booting at 32 kHz EBI CS0 (BMS=0), the user must take the following steps: 1. Program the PMC (main oscillator enable or bypass mode). 2. Program and start the PLL. 3. Reprogram the SMC setup, cycle, hold, mode timings
in „Externes SRAM + Atmel AT91SAM7SE“ · Mikrocontroller und Digitale Elektronik ·
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Datei
iotn3217.h
CLKCTRL_CLKSEL_enum { CLKCTRL_CLKSEL_OSC20M_gc = (0x00<<0), /* 20MHz internal oscillator */ CLKCTRL_CLKSEL_OSCULP32K_gc = (0x01<<0), /* 32KHz internal Ultra Low Power oscillator */ CLKCTRL_CLKSEL_XOSC32K_gc = (0x02<<0), /* 32.768kHz external crystal oscillator */ CLKCTRL_CLKSEL_EXTCLK_gc = (0x03<<0), /* External clock
in „Neue 8-Bit Tinys vorgestellt: 417/814/816/817“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dac8512.pdf
4 Clock Width High CH 30 10 ns Clock Width Low t 30 10 ns CL Load Pulse Width LDW 20 ns Data Setup DS 15 10 ns Data Hold DH 15 5 ns Clear Pulse Width CLRW 30 20 ns Load Setup LD1 15 ns Load Hold LD2 10 ns Select CSS 30 ns Deselect CSH 20 ns AC CHARACTERISTICS 4 Voltage Output Settling Time t To ±1 LSB
in „µC soll Strom rausgeben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
onkyo_tx_nr_616_service_manual.pdf.pdf
: UNLOCK HD : HDDVD STEP-7 e.g. SP00F_00F00409 1 2 3 4 5 6 7 8 9 10 11 12 13 14 26 27 28 29 30 31 32 26. AudioIF DA830 input 30. DIR sequence number IH : AUD_IF_I2S_H 00 SEQ_DIG_POWEROFF /* POWER OFF*/ DS : AUD_IF_DSD 10 SEQ_DIG_RESET /* DIR RESET*/ IS : AUD_IF_I2S 11 SEQ_DIG_POWERON_WAIT /* POWER ON
in „Onkyo verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EN_UM_N32G45x_Series_User_Manual_V3.pdf
of saving the cost of the 32.768 kHz crystal, but the clock accuracyis worse than the LSE. To wake up from STOP2 mode using the RTC alarm event, you need: Configure EXTI 17 rising edge trigger. Configure RTC to enable RTC alarm
in „ALLPOWERS S2000 PRO Reparaturhilfe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A20_Bananapi_Schematic.pdf
STBY-EN B VRA1 W20 VRA1 LRADC0 AB23 LRADC0 ADC LCD1_D20/ERXDV/CAN_TX/EINT20/CSI1_D20/PH20 D2 CAN_TX B CLK32K-IN F1 X32KI CLK SRC AGND U19 LRADC1 AB22 LRADC1 LCD1_D21/EMDC/CAN_RX/EINT21/CSI1_D21/PH21 D3 CAN_RX CLK32K-OUT F2 E1 OSC24MI N23 X32KO LCD1_D22/EMDIO/KP_OUT2/SDC1_CMD/CSI1_D22/PH22 E2 EMAC-PWR-EN N22
in „DDR3 RAM Datenleitung beliebig anschliessen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Elektronikladen07.pdf
Meßgeräte und Bedienterminals. Der ColdFire Prozessor MCF5329 beeinduckt durch seine Leistungsdaten: ▯ 32 Bit Embedded Prozessor mit 211 MIPS Rechenleistung bei 240 MHz Takt ▯ Standard Background Debug Schnittstelle ▯ 32 Bit Daten- und 32 Bit Addressbus ▯ 32 KB sRAM, 16 KB Unified Cache ▯ SVGA LCD Grafik-Controller
in „MC68000 von Motorolla“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fn8271_1_.pdf
1.2V ISHARE S P P I R SET 0Ω 732Ω 1.47kΩ 2.2kΩ PVCC= 5.0V 10µF 5k VOUT 1.5V 1.8V 2.0V 2.5V R SET 3.32kΩ 4.42kΩ 5.11kΩ 6.98kΩ FIGURE 21. 3.3V OPERATION VOUT 3.3V 5.0V 6.0V VIN 5.0V R SET 10kΩ 16.2kΩ 20kΩ DO NOT CROSS 5.5V VOUT VIN VOUT 1 U The output voltage accuracy can be improved by maintaining the
in „Spannungsregler 5V 10A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STC89C51RC-en.pdf
may be preceded by a label. The storage initialization/reservation directives are described below. DS (Define Storage) The format for the DS (define storage) directive is [label:] DS expression The DS directive reserves space in byte units. It can be used in any segment type except BIT. The expression
in „stc89c52rc programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DE200610__1_.pdf
höhere Taktfrequenzen. Und sparsam ist der anderem auf ein 32-KByte-ROM, ein 32-KByte-RAM und 32 I/O-Lei- neue Baustein auch: Bei der sehr niedrigen Taktfrequenz 20 kHz tungen zu. Ein interner Systemmanager, hier „Hub“ genannt, koor- und nur einem COG in Betrieb
in „ekg schaltung aus heft 10/2006“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Ferrite_als_magnetostriktive_Resonatoren_eth-32736-02.pdf
100 k H z 200k H z 1 Mischhydroxyd 15 % NiO, 35 % ZnO, 50 % 4 6 0 0,12 6 8 Fe203 2 a Sulfate 17,5% 32,5% 50 % 400 0,20 8 12 b Sulfate 50 % 400 10 30 17,5% 32,5% 0,80 c Sulfate 17,5% 32,5% 52,5% 755 0,17 6 10 3 Oxalate 17,5% 32,5% 50 % 370 0,15 11 11 4 Oxyde-Hydroxyd 25 25 % 50 % 530 2,8 43 67 %MgO, B
in „Ferritkernsättigung von außen detektieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Acer_Aspire_5742G_Compal_LA-5893P_Rev0.1_Schematic.pdf
1 2 3 NC OSC 4 1 R671 @ R615 10K_0603_5% 2 NC OSC 1 C366 10M_0402_5% U41A +RTCBATT_R 1U_0603_10V6K 32.768KHZ_12.5PF_Q13MC14610002 2 REV1.0 1 1 2 C722 B13 D33 LPC_AD0 LPC_AD0 36 D 2 1 PCH_RTCX2 D13 RTCX1 FWH0 / LAD0 B33 LPC_AD1 D RTCX2 FWH1 / LAD1 C32 LPC_AD2 LPC_AD1 36 D8 18P_0402_50V8J FWH2 / LAD2 A32
in „Laptop Akkus ausbauen und mit Netzteil betreiben“ · PC Hard- und Software ·
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PDF
ADIS16209-246154.pdf
0.19 mg/√Hz rms ACCELEROMETERFREQUENCYRESPONSE Sensor Bandwidth 50 Hz Sensor Resonant Frequency 5.5 kHz 2 ACCELEROMETER SELF-TEST STATE Output Change When Active At 25°C 706 1343 1973 LSB TEMPERATURE SENSOR Output at 25°C 1278 LSB Scale Factor −0.47 °C/LSB ADC INPUT Resolution 12 Bits IntegralNonlinearity
in „Neigungswinkelinkelmessung beweglicher Teile“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
VHF-COMM.1984.3.pdf
AWACSaircraft. this has the AWACS reconnaissance aircraft. They already been realized; in this case, the DS operate a ns-evstem over the whole of the L system is operating in the same frequency band (915 - 1215 MHz)with a data rateol R = range as the TACAN and IFF-equipment 01 56 kHz and a spread bandwidth
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PDF
VHF-COMM.1984.3.pdf
AWACSaircraft. this has the AWACS reconnaissance aircraft. They already been realized; in this case, the DS operate a ns-evstem over the whole of the L system is operating in the same frequency band (915 - 1215 MHz)with a data rateol R = range as the TACAN and IFF-equipment 01 56 kHz and a spread bandwidth
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PDF
Lenovo_Z50-70_NM-A273_ACLUA_MB_Rev0.3_schematic_.pdf
CENTER. ACLUA 5 4 3 2 Date: Thursday, Decemb1r 26, 2Sheet 6 of 59 WWW.AliSaler.Com 5 4 3 2 1 RTC_X1 RC32 2 1 10M_0402_5% RTC_X2 RPC2 +3VS CC3 1 1 JME1 ODD_DETECT# 1 8 VCCRTC 1U_0402_10V6K SHORT PADS SATA0GP 2 7 YC1 1 2 2 2 @ SATA3GP 4 5 2 32.768KHZ_12.5PF_200458-PG14 2 RC33 1 2 20K_0402_1% SRTC_RST# CC4
in „Laptop defekt: Kommunikation EC - PCH - CPU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Components_alphabetic_order.pdf
] carrier 1 GHz carrier frequency for sideband noise calculation Type lin [lin, log, list] Start 1 kHz Stop 10 kHz Points 10 reltol 0.001 relative tolerance for convergence abstol 0.1 µA absolute tolerance for convergence MaxIter 500 maximum number of iterations before error HICUM L0 HICUM level 0, version
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PDF
Hc11dat.pdf
Time-Out Periods Frequency Tolerance CR[1:0] = 00 CR[1:0] = 01 CR[1:0] = 10 CR[1:0] = 11 1 MHz -0/+32.768 ms 32.768 ms 131.072 ms 524.288 ms 2.097 s 2 MHz -0/+16.384 ms 16.384 ms 65.536 ms 262.144 ms 1.049 s 3 MHz -0/+10.923 ms 10.923 ms 43.691 ms 174.763 ms 699.051 ms 4 MHz -0/+8.192 ms 8.192 ms 32.768
in „68HC11 MC68HC11 Layout gesucht PLCC68“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC68HC11F1FN.pdf
Time-Out Periods Frequency Tolerance CR[1:0] = 00 CR[1:0] = 01 CR[1:0] = 10 CR[1:0] = 11 1 MHz -0/+32.768 ms 32.768 ms 131.072 ms 524.288 ms 2.097 s 2 MHz -0/+16.384 ms 16.384 ms 65.536 ms 262.144 ms 1.049 s 3 MHz -0/+10.923 ms 10.923 ms 43.691 ms 174.763 ms 699.051 ms 4 MHz -0/+8.192 ms 8.192 ms 32.768
in „MC68HC11F1FN (EEPROM) von Motorola zu verkaufen“ · Markt ·
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PDF
131412.pdf
function is not used. See applications ** See Application Hints.ion. © 2006 National Semiconductor CorporaDS101266 www.national.com 5 6 3 Typical Application Circuits (Continued) P / 6 3 P L 10126634 *SD and ERROR pins must be pulled high through a 10kΩ pull-up resistor. Connect the ERROR pin to ground if this
in „Spannungsversorgung mit Pc-Netzteil stabil genug?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BST-BMA220-DS000-05.pdf
(SPI) 0x32 0x19 softreset 0x00 0x30 0x18 suspend 0x00 0x2E 0x17 unused WDT_TO_en WDT_TO_sel SPI3 0x00 0x2C 0x16 reserved 0x00 0x2A 0x15 reserved 0x00 0x28 0x14 reserved 0x00 0x26 0x13 reserved 0x00 0x24 0x12 reserved
in „Beschleunigungsensor Bosch BMA220“ · Mikrocontroller und Digitale Elektronik ·