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MPX4100.pdf
Transfer Function: 4.5 VOUT= Vs* (.01059*P-.152) – Error 4.0 VS = 5.1 Vdc 3.5 TEMP = 0 to 85°C 20 kPa TO 105 kPa MAX 3.0 MPX4100A TYP s 2.5 o ( 2.0 p u 1.5 MIN O 1.0 0.5 0 5 1 1 2 2 3 3 4 4 5 5 6 65 7 7 8 8 9 9 0 0 5 0 1 1 1 Pressure (ref. to sealed vacuum) in kPa Figure 4. Output versus Absolute Pressure
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Arduino_Mega_Shield_V1R11.PDF
01J2P03J4A5 76A0 78A9P01A1P82A3P84A5P86J7 80J9A1 COJ5 COJ6 COJ7 COJ8 COJ1 COJ2 COJ3 COJ4 A0 PJ9P 18PA07P16PA05PJ4P 13PA02PJ0 P01PJ09P28PA07PJ6P 25PA04PJ3PA20PJ1P 31PA09PJ8P 37PA06PJ5PA34PJ0P 32PA01PJ1PA49PJ08PJ7PA06PJ5P 40PA03PJ2PA41 COU1 U4P15A56U7P08A59U6P01 12A63U4P05A6P17P08U9 A7 U1P12A73U4P05A7617
in „Arduino Mega 2560, schaltschranktauglich“ · Projekte & Code ·
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C_D-TECH_HPR417C_EPM_1515D2.pdf
218 245 5 68 HPR404C 5 ±12 ±30 20 212 235 5 68 HPR405C 5 ±15 ±25 20 220 220 5 75 HPR406C 12 5 150 10 90 100 5 69 HPR407C 12 12 62 10 81 90 5 77 HPR408C 12 15 50 10 81 90 5 77 HPR409C 12 ±5 ±75 10 88 98 5 71 HPR410C 12 ±12 ±30 10 81 90 5 74 HPR411C 12 ±15 ±25 10 81 90 5 77 HPR412C 15 5 150 8 72 80 5 69
in „[V] DC/DC-Wandler In: 15V, Out 2x15V, Ideal zur Dual-Spg.-Versorgung von OPs bei nur Single Spg.“ · Markt ·
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Elektronik.pdf
Odd_Even 1 Tast_LED TMC_MISO TMC_MISO . 1 2 PD11 A T D D D D D A Tast_LED + A R1ST 14 NRST A D D D D D D PA0 22 ADC1_16 TMC_MOSI TMC_MOSI P_Service ADC1_4 PA9 3 4 PD14 10k V V V V V V V 23 ADC1_17 PA8 5 6 PD15 C3 PA1 Encoder0A_5V Encoder1B_5V TMC_SCLK TMC_SCLK GND 94 BOOT0 PA2 24 ADC1_14 P_Basket ADC1_8 PC9
in „50ns Delay mit STM32H7“ · Mikrocontroller und Digitale Elektronik ·
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stm32-comstick-ds.pdf
Sheet 5 Pin Assignment X400: Pin Signal name Pin Signal name 1 +3.3V 2 +3.3V 3 Reset 4 Enum 5 PC0 6 PA4 7 -- 8 -- 9 -- 10 GND 11 PE4 12 -- 13 PE6 14 -- 15 PA5 16 PE2 17 PA6 18 -- 19 -- 20 -- 21 GND 22 GND 23 PD5 24 PC5 25 -- 26 PD6 27 PB2 28 PD1 29 PD0 30 -- 31 -- 32 GNDA 33 GND 34 -- 35 PC8 36 -- 37 PD15 38 PA7 39 PD14 40 PC9 41 PC12 42 -- 43 -- 44 GND 45 -- 46 -- 47 PE8 48 BOOT0 49 PD2 50 PE9 51 PC7 52 PC13 53 GND 54 GND 55 -- 56 (reserved) 57 PE14 58 PB7 59 PB14 60 -- 61 PC6 62 PA8 63 -- 64 -- STM32-comStick
in „STM32-comStick USB-Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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i_o-Platine.pdf
Uein(VCC) 3 C ext. ein/aus U4 TMR 3-1222 DIODE R7 10R 1284238 5 + C31 51 64 VCC n.c 6 4.7yF IN_1 50 PA0/AD0 AVCC + Uaus 7 +12V IN_2 49 PA1/AD1 21 Common IN_3 PA2/AD2 VCC -Uaus 8 -12V IN_4 48 PA3/AD3 VCC 52 +5V IN_5 47 PA4/AD4 R6 10R DC/DC Wandler TMR 3-1222 IN_6 46 PA5/AD5 AREF 62 IN_7 45 IN_8 44 PA6/AD6 25 PA7/AD7 PD0/SCL/INT0 26 10 PD1/SDA/INT1 27 + C14 + C12 CS_Analog-Input 11 PB0/SS PD2/RXD1/INT2 28 4.7yF 4.7yF SCK 12 PB1/SCK PD3/TXD1/INT3 29 MOSI 13 PB2/MOSI PD4/ICP1 30 CAN_OFF MISO PB3/MISO PD5/TXCAN
in „AT90CAN128 wird heiß nachdem Programm läuft“ · Mikrocontroller und Digitale Elektronik ·
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Resources_an5457-rf-matching-network-design-guide-for-stm32wl-series-stmicroelectronics.pdf
HpMax and PaSel parameters passed through the Set_PaConfig () command. 5.1.2 Optimal settings There are some RF power amplifier (PA) configurations that maximize the efficiency of the PA when the maximum output power
in „STM32WLE5CCU6 LoRa-Antennenendesign review“ · HF, Funk und Felder ·
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AN5457.pdf
HpMax and PaSel parameters passed through the Set_PaConfig () command. 5.1.2 Optimal settings There are some RF power amplifier (PA) configurations that maximize the efficiency of the PA when the maximum output power
in „868MHz Impedanzmatching - Fragen zum Matching-vorgehen“ · HF, Funk und Felder ·
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SPEC-2400__LV_and_C__L_-_May_2013_.pdf
equations in the User’s Manual to calculate allowable duty cycle for specific conditions. 1.00000 µA 50 pA 0.035% + 600 pA 5 pA 3. For sink mode, 1µA to 100mA range, accuracy is: ±(0.15% + offset*4) 10.0000 µA 500 pA 0.033% + 2 nA 50 pA For 1A range, accuracy is: ±(1.5% + offset*8) 100.000 µA 5 nA 0.031%
in „Messunsicherheiten Keithly 2400 Sourcemeter“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Diagramm eines ETS-Sweep PA0 Messverlaufs
ETS-Sweep PA0 (Rohwerte) Quelle: UART-Log · Fenster t0..t0+500 ns · dt=3 ns · pre=48 Ticks (~280 ns vor PA8-Fall) · nur geplottete UART-Stichproben bis t0+240 ns t0+108 ns Flanke beginnt t0+108 ns 10 % (~410) t0+114 ns 50 % (~2048) t0+186 / +204 ns 90 % / Plateau 4.1K 2K 0 6 24 42 60 78 96 114 132 150 168 186 204 222 240 X-Achse: t0 + ns (Sweep-Start mit Pretrigger). Y-Achse: ADC-Counts. Oszi-Vergleich: PA8-Fall ca. t0+280 ns; steiler Anstieg hier
in „Auflösung der Abtastung eines periodischen Signals mit ADC“ · Mikrocontroller und Digitale Elektronik · · Oszi-Bilder
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ezaehler.pdf
MID-Konformitätskennzeichen. Dieses besteht aus: P = 0,5 % · P P = 3 · I · U A N N N N • CE-Zeichen PA= 0,005 · 6.900 WP =N3 ·10 A · 230 V • Metrologiezeichen M P = 34,5 W P = 6.900 W A N - • Jahreszahl der Konformitätsbewertung t • Nummer der benannten Stelle i e Grenzstrom i h t z Diese Kennzeichnung
in „Bedeutung 5(32)A“ · Analoge Elektronik und Schaltungstechnik ·
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P6201_x10_900MHz_FET_Probe.pdf
03 RES,FXD,FILM:11.0K OHM,0.25%,0.125W,TC=T2 19701 5033RC11K00C R290 321-0381-03 RES,FXD:METAL FILM;90.5K OHM,0.25%,0.125W, 19701 5033RC90K90C TC=50 PPM R293 308-0714-00 RES,FXD,WW:46.4 OHM,1%,1W 91637 RS1A-B46R40F R295 325-0121-00 RES,FXD,FILM:90K OHM,0.5%,0.05W,TC=T0 64537 PME50 90 K OHM R298 308-0715
in „Eigenbautastköpfe“ · Analoge Elektronik und Schaltungstechnik ·
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doc4779atr2406.pdf
0/90 degree phase shifter for the IR_MIXER and to be used by the PC for the phase detector PD (f PD = 1.728 MHz). Open loop modulation is supported. 3.5 Power Supply An integrated bandgap-stabilized voltage
in „Gauss Anpassung Register“ · Mikrocontroller und Digitale Elektronik ·
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AT91SAM7A3-EK.pdf
TIOB7/PB27 93 PB26 25 GND ADC1_AD4/SCK1/TIOA7/PB26 92 PB25 31 GND ADC1_AD3/CTS1/TIOB6/PB25 91 PB24 TWD PA0 A1 PB0 B1 C1 GND ADC1_AD2/RTS1/TIOA6/PB24 PB23 TWCK PA1 PB1 39 GND ADC1_AD1/TIOB5/PB23 90 PB22 RXD0 PA2 A2 TF0 PB2 B2 RXD0 C2 60 GND ADC1_AD0/TIOA5/PB22 89 A3 B3 C3 C15 C16 C17 71 GND AT91SAM7A3 ADC0
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San_Ace_92RF38_E-1100637.pdf
voltage range Operating voltage range PWM duty - Speed characteristics example Forward Reverse (inchO) (Pa) (inch O) (Pa) 電圧:DCge: 12VDC 160 PPWMデューティcycle 0% PWPWMデューティ0%le (min ) PW M周波数:25 kHzy: 25 kHz 0.60 0.60 160 0.55 140 13.8 V/12 V 0.55 140 13.8 V/12 V 6000 5500 min-1 0.50 0.50 r0.45 120 10.2 V r
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XCore407I.pdf
<>FSMC_A17/TIM4_CH1/USART3_RTS PIU20mcu0100 PD12 PA13 PIU20mcu0PA13<>JTMS-SWDIO PD13<>FSMC_A18/TIM4_CH2 PIU20mcu0101 PD13 PA14 PIU20mcu0PA14<>JTCK-SWCLK PD14<>FSMC_D0/TIM4_CH3 PIU20mcu0104 PD14 PA15 PIU20mcu0PA15<>JTDI/SPI3_NSS/I2S3_WS/TIM2_CH1_ETR/SPI1
in „STM32 Board von Waveshare“ · Mikrocontroller und Digitale Elektronik ·
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INA137.pdf
, V = ±18V, R = 2k , G = 1/2, and Ref Pin connected to Ground, unless otherwise noted. A S L INA137PA, UA INA2137PA, UA PARAMETER CONDITIONS MIN TYP MAX UNITS AUDIO PERFORMANCE Total Harmonic Distortion + Noise, f = 1kHz VIN= 10Vrms 0.0005 % Noise Floor, RTO1) 20kHz BW –106 dBu (1) Headroom, RTO THD+
in „Differenzverstärker IC gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
tiny_oled_spi_3wire_b.ino
--- --------------------------------------------------------------------- */ const int clk = 4; // PA4 const int data = 5; // PA5 const int dc = 0; // PA0 #define sck_set() (digitalWrite(clk,HIGH)) #define sck_clr() (digitalWrite(clk,LOW)) #define mosi_set() (digitalWrite(data,HIGH)) #define mosi_clr
in „ATtiny85 benötige Taster und kein freier Port“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.cpp
CS_PIN); CRC8 crc8; CRC16 crc16; // HM-400 Serial No: 1121 73109025 // uint8_t addrWR[5] = {0x25, 0x90, 0x10, 0x73, 0x01}; uint8_t addrWR[4] = {0x73, 0x10, 0x90, 0x25}; uint8_t addrDTU[4] = {0x72, 0x81, 0x90, 0x05}; typedef struct Hoymiles_Data_95_t { uint32_t timestamp; float pv_voltage; float pv_ampere
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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EtherBoardSch.pdf
D4 16 6 A4 74HC373 MEGA128 5 - 1 91 D D5 17 D4 A4 5 A5 A0 2 3 D0 D0 51 24 RN2C 1 IC4A 2 INT3 SD12 90 1 3 5 7 D D6 18 D5 A5 4 A6 A1 5 Q0 D0 4 D1 D1 50 AD0/PA0 X1 Q1 4K7 3 INT2 SD13 88 RN1A RN1B RN1C RN1D D7 19 D6 A6 3 A7 A2 6 Q1 D1 7 D2 D2 49 AD1/PA1 GND GND /NICINT 2 HC04 1 4 INT1 SD14 87 1K0 1K0 1K0 1K0 D7 A7 25 A8 A3 9 Q2 D2 8 D3 D3 48 AD2/PA2 23 6 INT0 SD15 A8 Q3 D3 AD3/PA3 X2 6M4 2 4 6 8 /CSR 20 CS A9 24 A9 A4 12 Q4 D4 13 D4 D4 47 AD4/PA4 A0 5 SA0 LED0 61 /WR 27 WE A10 21 A10 A5 15 Q5 D5 14 D5 D5 46 AD5/PA5 PEN 1 VCC A1 7 SA1 LED1 62 /RD
in „Elektronik über ein Ethernet Netzwerk steuern?“ · Mikrocontroller und Digitale Elektronik ·
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STM32F107.pdf
9 9 9 9 9 9 9 9 9 8 8 8 8 8 8 8 8 8 8 7 7 7 7 PE2 1 1 75 VDD_2 PE3 2 74 VSS_2 PE4 3 73 NC PE5 4 72 PA 13 PE6 5 71 PA 12 VBAT 6 70 PA 11 PC13-TAMPER-RTC 7 69 PA 10 PC14-OSC32_IN 8 68 PA 9 PC15-OSC32_OUT 9 67 PA 8 VSS_5 10 66 PC9 VDD_5 11 65 PC8 OSC_IN 12 64 PC7 OSC_OUT 13 LQFP100 63 PC6 NRST 14 62 PD15
in „STM32-comStick USB-Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HY-SmartSTM32_SCH.pdf
_TX U2_RX 26 PA2/USART2_TX/TIM5_CH3/ADC123_IN2/TIM2_CH3 PD2/TIM3_ETR/USART5_RX/SDIO_CMD 84 WEN SDIO_CMD USART2_RX SF_CS 29 PA3/USART2_RX/TIM5_CH4/ADC123_IN3/TIM2_CH4 PD3/FSMC_CLK/USART2_CTS 85 LCD_RD CAM_WEN SF_CS PA4
in „STM32 can Message“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UC1701.pdf
temperature compensation coefficient (%-per- C) BIAS o 0b : TC curve definition = -0.05% /oC APC0 8 90H 1b : TC curve definition = -0.11% / C APC1 8 -- APC0 [1:0] : WA, automatic column/row Wrap Around. WA[0] : 0: PA wrap around disable 1: PA wrap around enable. WA[1] : 0: CA wrap around disable 1: CA
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Datenlogger_V1.pdf
1 2 3 4 5 6 7 8 VDD VCC 0 u A JP1 p S A D S IC1 ANT1 POWER_GND Pa1 0 Sup 0 N POWER_VSS Pa2 0 G In 8 1 In 0 BTM-222_ALL Pa3 0 IN OUT 2 In 0 Log ON/OFF a a SENSE a a a a a a 0 P P VOTAB 6 Pas 0 P P P P P P Pwr 0 P$1_GND P$38_GND P$3Pwr 0 O POWER C1 C2 In 3 C3 C4 C5 C6
in „Datenlogger mit PIC18F“ · Mikrocontroller und Digitale Elektronik ·
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MOT.pdf
V/ P — 0.4 — mV/kPa (5) Linearity MPX2100D Series — –0.25 — 0.25 %V FSS MPX2100A Series — –1.0 — 1.0 (5) Pressure Hysteresis (0 to 100 kPa) — — 〉 0.1 — %V FSS Temperature Hysteresis5(–40⋅C to +125⋅C) — — 〉 0.5 — %V FSS
in „Rasberry pi mit pi Face und Drucksensor“ · Mikrocontroller und Digitale Elektronik ·
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POF_PA.pdf
Ratioplast-Optoelectronics GmbH E03 IP 001 01 004 04/03 Seite 1v. 1 Plastic optical fiber(POF)-cable 980/1000µm simplex, PA* jacket PMMA** fiber PA* jacket 980/1000µm Dia: 2,2mm Technical Data Dimensions core diameter 980µm cladding diameter 1000+/-60µm cable diameter 2,2+/-0,07mm Outer jacket Material/colour PA*, black Delivery
in „Datenübertragung per Glasfaser“ · Mikrocontroller und Digitale Elektronik ·
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M7_Kondensatormotor_Spaltpolmotor_V5.pdf
m = 3 Zweisträngige Drehfeldwicklung Dreisträngige Drehfeldwicklung Phasenverschiebung: π π 90 2π 2π 120 m 2 m 3 Räumlicher Winkel: π π π 90 2π 2π 120 (mit 2p = 2) pm 12 2 pm 13 Spulenanordnung Spulenersatzschaltbild Strangbezeichnung Sinusstromspeisung Bild 1.1
in „Kondensatormotor zu großer Kondensator: Phasenverschiebung über 90°?“ · Analoge Elektronik und Schaltungstechnik ·
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ADA4817-1_4817-2.pdf
Drift 7 μV/°C Input Bias Current 2 20 pA TMINoT MAX 100 pA Input Bias Offset Current 1 pA Open-Loop Gain 62 65 dB INPUT CHARACTERISTICS Input Resistance Common mode 500 GΩ Input Capacitance Common mode 1.3 pF Differential mode 0.1 pF Input
in „Alternative zum OPA656“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADA4817-1_4817-2.pdf
Drift 7 μV/°C Input Bias Current 2 20 pA TMINoT MAX 100 pA Input Bias Offset Current 1 pA Open-Loop Gain 62 65 dB INPUT CHARACTERISTICS Input Resistance Common mode 500 GΩ Input Capacitance Common mode 1.3 pF Differential mode 0.1 pF Input
in „Wittig(welec) DSO W20xxA Hardware“ · Mikrocontroller und Digitale Elektronik ·
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A20_Bananapi_Schematic.pdf
/SPI3_MISO/PA8 SDC3_D0/PI6 B17 AB17 TVOUT2 LCD0_D6/LVDS0_VPC/PD6 AC12 ERXERR D10 ERXERR/SPI3_CS1/I2S1_MCLK/PA9 SDC3_D1/PI7 A16 TV-OUT3 TVOUT3 LCD0_D7/LVDS0_VNC/PD7 AB11 LCD0-D7 ERXDV E10 ERXDV/GRXCTL/UART1_TX/PA10 SDC3_D2/PI8 B16 LCD0_D8/LVDS0_VP3/PD8 AC11 LCD0-D8 EMDC D11 MDC/UART1_RX/PA11 SDC3_D3/PI9 SATA LCD0_D9/LVDS0_VN3/PD9 Y15 LCD0-D9 EMDIO E11 MDIO/UART6_TX/UART1_RTS/PA12 LCD0_D10/LVDS1_VP0/PD10 AA15 LCD0-D10 ETXEN ETXEN/GTXCTL/UART6_RX/UART1_CTS/PA13 EINT LCD0_D11/LVDS1_VN0/PD11
in „DDR3 RAM Datenleitung beliebig anschliessen“ · Mikrocontroller und Digitale Elektronik ·
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opa4348_1_.pdf
OPA348 OA48 PA8® OPA2348 OA PA 38 38 OPA4348 SBOS213C – NOVEMBER 2001 – REVISED MAY 2002 1MHz, 45 µ A, CMOS, Rail-to-Rail OPERATIONAL AMPLIFIERS FEATURES DESCRIPTION ● LOW I : 45 µA typical The OPA348 series amplifiers
in „ADC im Messbereich kleiner 1V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MT6252_Design_Notice.pdf
corners. This reduces signal reflections and impedance changes. ¾When it becomes necessary to turn 90¢, use two 45¢ turns or an arc instead of making a single 90¢ turn. This reduces reflections on the signal by minimizing impedance discontinuities. ¾Do not route signal traces under crystals, oscillators
in „Amparos GPS Tacker - Pollin Schnäppchen“ · Mikrocontroller und Digitale Elektronik ·
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LDO_Oscillosation.pdf
1 ) ≈ (SC R +1 SC R( +1) …(3) O ds b ESR Based on the equation3 above, zero (Z ESR) and poles (Po, Pa, and Pb) can be found as follows. Z = 1 ESR 2πR ESRC O The first pole is 1 PO= 2πC O ds The second pole depends on the input impedance of the PMOS, R parand Cpar, 1 Pa= 2πR par par The third pole is
in „Low Drop Netzteil (Diskret) / Theoretischer Versuch“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD8551_8552_8554.pdf
INPUT CHARACTERISTICS OffsetVoltage VOS 1 5 μV −40°C ≤T A +125°C 10 μV Input Bias Current IB 10 50 pA AD8551/AD8554 −40°C ≤T A +125°C 1.0 1.5 nA AD8552 −40°C ≤T A +85°C 160 300 pA AD8552 −40°C ≤T A +125°C 2.5 4 nA Input Offset Current IOS 20 70 pA AD8551/AD8554 −40°C ≤T A +125°C 150 200 pA AD8552 −40
in „Chopper Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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lcd_manual.pdf
Instruction Set ! , $%#& %,! & %,! ; &%,! %, ▯2,[▯ #$ # : ▯ ▯1 !47 1$ N+]▯ L:73,\ 30,9 30,9 05;09 /L:73,\ ,90, 90:;690/L:73,\ 1964 ▯ 4: :KL1; ,5/36,/,//90:: .6X5;09 ZL;K # ,//90:: + L:73,\ X9:69 #0:;690/L:73,\ 1964 :KL1; ,5/36,/,//90:: ▯ 4: +640 .6X5;09 ZL;K # ,//90:: + 5;9\ 6/0 , $ $70.L1\ .X9:69 ,/Y,5.0/L90
in „Fehler bei 4Bit LCD Init?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lcd-spec.pdf
Instruction Set ! , $%#& %,! & %,! ; &%,! %, ▯2,[▯ #$ # : ▯ ▯1 !47 1$ N+]▯ L:73,\ 30,9 30,9 05;09 /L:73,\ ,90, 90:;690/L:73,\ 1964 ▯ 4: :KL1; ,5/36,/,//90:: .6X5;09 ZL;K # ,//90:: + L:73,\ X9:69 #0:;690/L:73,\ 1964 :KL1; ,5/36,/,//90:: ▯ 4: +640 .6X5;09 ZL;K # ,//90:: + 5;9\ 6/0 , $ $70.L1\ .X9:69 ,/Y,5.0/L90
in „LCD Tutorial“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lcd_manual.pdf
Instruction Set ! , $%#& %,! & %,! ; &%,! %, ▯2,[▯ #$ # : ▯ ▯1 !47 1$ N+]▯ L:73,\ 30,9 30,9 05;09 /L:73,\ ,90, 90:;690/L:73,\ 1964 ▯ 4: :KL1; ,5/36,/,//90:: .6X5;09 ZL;K # ,//90:: + L:73,\ X9:69 #0:;690/L:73,\ 1964 :KL1; ,5/36,/,//90:: ▯ 4: +640 .6X5;09 ZL;K # ,//90:: + 5;9\ 6/0 , $ $70.L1\ .X9:69 ,/Y,5.0/L90
in „LCD will nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
10MHz_200W_PA_mit_getrennten_Speisedrosseln.pdf
U V2 G G + 3.25V + 28V - Taste = A - 0 0 H H I I J J 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 10MHz_200W_PA_mit_getrennten_Speisedrosseln Zeitverhalten 120 110 100 90 80 70 60 50 40 30 ) 20 ( g 10 u 0 n a -10 p S -20 -30 -40 -50 -60 -70 -80 -90 -100 -110 -120 99.55µ 99.65µ 99.75µ 99.85µ 99.95µ 100.05µ 100.15µ Zeit (s) V(1) V(4) V(21) V(TK2) - DrainspannungV(TK4) - PA Ausgang V(TK7) - Dummy Load
in „Oberwellen bei KW-PA-Schaltungen wie MRF300“ · HF, Funk und Felder ·
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PDF
T7-mod-obelix2007.pdf
~{RESET} V B B B B B B B B D C A A A A R17 10k R3_{d P P P P P P P P G V P P P P 100K 10k A0 1 PB5 PA4 33 r R2_{d} SDA þÿ^{U_{Zener}}/_{10} ! 8 d 10k R1_{d} R16 8 W t i 10k SCL 2 PB6 PA5 32 1M VBAT 1 2 5 e d þÿU_{Battery} ! 1 C D r e R e t Display (on separate board). 3 PB7 PA6 31 e o Z v 4 30 0k ~{RESET} PA7 21 C21 C R 5 29 V 8 VCC AREF Internal 1 U_{Ref} Buffer B C 6 U1 28 B GND GND C17 ATmega644PA-A 2 7 27 C XTAL2 AVCC VUSB C4 Y1 16MHz VCC +5V 8 26 XTAL1 PC7 R0 0R82 C3 C16 R15 C1 1 VBAT 9 PD0 PC6 25 470k
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Datei
AVR_T_DS18S20.cpp
//////////////////////// // // ATMega32: // // +----_----+ // LCD-DB4 ------ (XCK/T0) PB0 | 1 40 | PA0 (ADC0) // LCD-DB5 ------ (T1) PB1 | 2 39 | PA1 (ADC1) // LCD-DB6 ---- (INT2/AIN0) PB2 | 3 38 | PA2 (ADC2) // LCD-DB7 ----- (OC0/AIN1) PB3 | 4 37 | PA3 (ADC3) // LCD-RS ----------- (-SS) PB4 | 5 36 | PA4 (ADC4) // LCD-EN ---------- (MOSI) PB5 | 6 35 | PA5 (ADC5) // (MISO) PB6 | 7 34 | PA6 (ADC6) // (SCK) PB7 | 8 33 | PA7 (ADC7) // -RESET | 9 32 | AREF // VCC | 10 31 | GND // GND | 11 30 | AVCC // XTAL2
in „DS18S20 Temperatur auslesen mit C geht nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
210_Flow_sensor.pdf
Sealing material 4) FPM Fluoro elastomer 2 connection copper tube (max. DN 20) N Tube connection Plastic PA6T / 6I outside thread K (see dimension diagram) K outside thread G (see dimension diagram) G 1)against GND only 2incl. 3xDi inlet and outlet side 3)Pv in Pa; Q in l/min 4No drinking water approval Huba
in „Counter Baustein“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AVR4100.pdf
MegaAVR ATmega168PA X32K_1v8_ULP MegaAVR ATmega169 X32K_1v8 MegaAVR ATmega169A X32K_1v8_ULP MegaAVR ATmega169P X32K_1v8_ULP MegaAVR ATmega169PA X32K_1v8_ULP MegaAVR ATmega16A X32K_2v7 MegaAVR ATmega2560 X32K_1v8 MegaAVR
in „Passende Kondensatoren für Uhrenquarz gesucht“ · Mikrocontroller und Digitale Elektronik ·
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doc8377.pdf
Xplained I/O expansion header – J2. Pin J2 ATmega1284P pin Shared with onboard functionality (1) 1 ADC0 PA0 Possible to connect to AREF 2 ADC1 PA1 - 3 ADC2 PA2 - 4 ADC3 PA3 - 5 ADC4 PA4 - 6 ADC5 (2) PA5 Filter output (2) 7 ADC6 PA6 Light sensor (2) 8 ADC7 PA7 NTC sensor 9 GND - - 10 VCC_ANA_P3V3 - - Notes
in „[V] MEGA-1284P-XPLAINED“ · Markt ·
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HE3_LED_Wuerfel.pdf
6 MISO0MISO 13 PB2 (PDI/PCINT2/MOSI) PA2 (AD2) P0U1048 48 H2 4 A2 SCL P0U205 A P0CON105 PB3 (PDO/PCINT3/MISO) PA3 (AD3) P0CON204 P0U2VSS SDA A GND CON1 T_Ok0T0OK 14 P0U1014 P0U1047 47 CON2 0 P0CON10N0T0UP PB4 (PCINT4/OC.2A) PA4 (AD4) P0U1046
in „Microcontroller Atmel AT90USB1287 stürzt ab“ · Mikrocontroller und Digitale Elektronik ·
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CY7C68016A.pdf
RDY1/*SLWR CTL5 98 6 RDY2 97 A3 7 RDY3 A2 96 8 RDY4 95 9 A1 RDY5 A0 94 10 AVCC GND 93 11 92 XTALOUT PA7/*FLAGD/SLCS# 12 XTALIN PA6/*PKTEND 91 13 AGND 90 PA5/FIFOADR1 14 NC PA4/FIFOADR0 89 15 NC 88 D7 16 NC D6 87 17 AVCC D5 86 18 85 DPLUS CY7C68013A/CY7C68014A PA3/*WU2 19 DMINUS 128-pin TQFP PA2/*SLOE
in „CY7C68013A-56pins“ · Mikrocontroller und Digitale Elektronik ·
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Velo_Elements_Innenlager_20130718.pdf
√ √ √ √ √ √ √ 2 118 L — 26,30 27,80 118,35 √ √ √ √ √ √ √ 3 120 K 114,5 / 115 / 116 / 117 24,40 25,90 120,00 √ √ √ √ √ √ √ √ √ 4 120 K +1 117,3 25,40 26,90 120,00 √ √ √ 5 120 L 117,5 / 119 / 122 26,40 27,90 120,00 √ √ √ √ √ √ √ √ √ 6 120 L +1 122,5 27,40 28,90 120,00 √ √ √ 7 128 K 123 28,40 29,90 128,00 √ √ √ √ √ √ √ √ √ 8 128 K +1 127 29,40 30,90 128,00 √ √ √ 9 128 L 131 30,40 31,90 128,00 √ √ √ √ √ √ √ √ √ 10 128 L +1 132 31,40 32,90 128,00 √ √ √ 11 133,65 K 127 29,40 30,90 133,65 √ √ √ √ √ √ √ √ √ 12 133,65 K +1 — 30,40 31,90 133,65 √ √ √ 13
in „Prüfstand für Drehmoment bauen.“ · Mikrocontroller und Digitale Elektronik ·
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xmega_a1.pdf
PQ1 PQ2 PJ7 PJ2 PE7 PE6 PE5 PE4 PE3 PR1 PR0 RESET/ PDI_DATA PQ3 PC2 PE2 PE1 PE0 VCC F PDI_CLK G GND PA1 PA4 PB3 PB4 PC1 PC6 PD7 PD6 GND H AVCC PA2 PA5 PB2 PB5 PC0 PC5 PD5 PD4 PD3 J PA0 PA3 PB0 PB1 PB6 PC3 PC4 PC7 PD2 PD1 K PA6 PA7 GND AVCC PB7 VCC GND VCC GND PD0 4 8067I–AVR–04/09 XMEGA A1 3. Overview
in „Welchen Wert hat der Pull-up-Widerstand dieses XMega?“ · Mikrocontroller und Digitale Elektronik ·
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iAQ-2000_interface_V33_high_I2C_12_09.pdf
Interface description AS +49 7121 514 86-0 Date Approved by Reg. no. Version Page 03.12.2009 MH/HU PA1 1 (4) iAQ-2000 interface description 2 This document describes the readout of the iAQ-2000 sensor module with I C, RS232 TTL, analog and PWM interface. 2 Chapter 1: I C Chapter 2: PWM Chapter 3: RS232
in „Geruchssensor - Air Wick Fresh Matic“ · Mikrocontroller und Digitale Elektronik ·
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CCA550JZ1.pdf
O Connector: MA44-10PA-SH(70) (Hirose) Size: 19mm(H) ~ 27mm(W) ~ 7.5mm(D) Weight: 13g (approx.) (T.B.D) Temperature Operating: -30 to +70 Storage: -40 to +85 Japan Radio Co., Ltd. 4/9 No. TS-049558 2.2 I/O CONNECTOR PIN FUNCTIONS
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digit32.pdf
. Nx,ueheuwiendorarbsgrud 1 ADC0804 oD conv. U1 ADC0804LCN-NS5.0/1 1 LM358 Op-Amp U2 LM358-ND .8/1 pae iond e perimef e or, 3 1i21/4WRes. 5% R1.R2, R3.0KQ .26/5 2/5 1 39kQ1/4WRes. 5% R4 39KQ Sources 1 33kU1/4WRes. 5% R5 33KQ 2/5 2 24kQ 1/4W Res.5% R,R7 24KQ 2/5 Digi-oprtin 1 4.3kQ1/4WRes. 5% R8 4.3KQ
in „LM358 als Verstärker - stimmt das denn so?“ · Analoge Elektronik und Schaltungstechnik ·