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AtMega644P_Datasheet.pdf
Value 0 0 0 0 0 0 0 0 25 2593O–AVR–02/12 6.5.6 GPIOR0 – General Purpose I/O Register 0 Bit 7 6 5 4 3 2 1 0 0x1E (0x3E) MSB LSB GPIOR0 Read/Write R/W R/W R/W R/W R/W R/W R/W R/W Initial Value 0 0 0 0 0 0 0 0 Note: 1. SRWn1 =
in „Alkoholmessgerät programmieren“ · Mikrocontroller und Digitale Elektronik ·
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atmega644.pdf
Value 0 0 0 0 0 0 0 0 25 2593O–AVR–02/12 6.5.6 GPIOR0 – General Purpose I/O Register 0 Bit 7 6 5 4 3 2 1 0 0x1E (0x3E) MSB LSB GPIOR0 Read/Write R/W R/W R/W R/W R/W R/W R/W R/W Initial Value 0 0 0 0 0 0 0 0 Note: 1. SRWn1 =
in „SPI-Kommunikation Atmega644 - ADS1118“ · Mikrocontroller und Digitale Elektronik ·
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VK16K33Datasheet.pdf
a START condition, slave address with R/W/ Register address, a Data and a STOP condition. Command Byte Received Command and Single Data Byte Received 22/34 Rev 1.2017-06-27 ▯ ▯S▯n~QClð ¡Nýc gCY’ F‘;Nªt▯▯ ▯ T|ßN”ÿ▯ ‚Q ▯HQ▯Qÿ▯818588▯9T8E▯L▯9▯▯
in „VK16K33 vs HT16K33“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
avr_f64.c
; w >>= 1; } w=rounded_sqrt_of_integer128(w, wL); f_combi_from_fixpoint(&x, 0, (xex+1)/2 + 500, &w); return x; } #endif #ifdef F_WITH_exp float64_t f_exp(float64_t x) { uint8_t f_sign, f_sign2; int16_t f_ex
in „64 Bit float Emulator in C, IEEE754 compatibel“ · Projekte & Code ·
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Datei
avr_f64.c
; w >>= 1; } w=rounded_sqrt_of_integer128(w, wL); f_combi_from_fixpoint(&x, 0, (xex+1)/2 + 500, &w); return x; } #endif #ifdef F_WITH_exp float64_t f_exp(float64_t x) { uint8_t f_sign, f_sign2; int16_t f_ex
in „64 Bit float Emulator in C, IEEE754 compatibel“ · Projekte & Code ·
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B1nn.pdf
'W&Q0H70O7HN7(&KH,&D0RH'<0)'W&Q0H70O7HN7(&KH,&0&QW''0,HN0\%S\\<0FDELU0880O\70&K<\D LD 3K8\,&KH,K,60W,<0NH'\7W,SK,60O\70GYR:0.EVDPRD 1Y;2 1W&KS03K8\,&KH,D0JQ\H7\NKSW''$0\%WSN0 W'(\0&QH/,0/KNQH(N0NH'\7W,S
in „IPL Lampe Blitzcounter rücksetzten“ · Mikrocontroller und Digitale Elektronik ·
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AD7416_7_8_f.pdf
Voltage Range 2.625 2.625 V max 2.5 V + 5%. IN 2.375 2.375 V min 2.5 V – 5%. Input Impedance 40 40 kW min Input Capacitance 10 10 pF max ON-CHIP REFERENCE Nominal 2.5 V. Reference Error ±25 ±25 mV max Temperature Coefficient 80 80 ppm/∞C typ DIGITAL INPUTS Input High VoltageIHV VDD ¥ 0.7 V DD¥ 0.7 V
in „I²C-Code - fehlt noch was?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Liste.txt
Safe ware Controller 2x Pic16f628a Program Memory Size (KB) 3.5 // SRAM Bytes 224// EEPROM in bytes 128 //1-UART, 3x PIC 12F683 MCU, PICmicro, 3,5 KB, 20 MHz, Dip-8 1x PIC 12F508 Flash in Bytes 768 B // RAM Size: 25 B // Speed: 4 MHz 2x HD64180RCP8X HITACHI PLCC-68 8bit MPU + 1xSTC15W408S Flash 8K Sram
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ATMEGA8_DATENBLATT.pdf
/8 (From prescaler) 0 1 1 clkT2S/32 (From prescaler) 1 0 0 clk /64 (From prescaler) T2S 1 0 1 clk /128 (From prescaler) T2S 1 1 0 clk /256 (From prescaler) T2S 1 1 1 clkT2S/1024 (From prescaler) Timer/Counter Register – TCNT2 Bit 7 6 5 4 3 2 1 0 TCNT2[7:0] TCNT2 Read/Write R/W R/W R/W R/W R/W R/W R/W
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
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0901.3482v1.pdf
Before the function receive is invoked the stack pointer destination address into registers r24 and r25, and loads the is at address 0x1060. byte to inject into r18. The second gadget, gadget2, copies the registers r24, r25 into registers r30, r31 using the“move • When the function is invoked the call
in „Mikrocontroller Viren“ · Offtopic ·
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SAM-V71Q-SAM-V71N-SAM-V71J_Datasheet.pdf
Datasheet_12-Oct-16 15.4.6.1 Program Status Register Name: PSR Access: Read/Write 31 30 29 28 27 26 25 24 N Z C V Q ICI/IT T 23 22 21 20 19 18 17 16 – 15 14 13 12 11 10 9 8 ICI/IT – ISR_NUMBER 7 6 5 4 3 2 1 0 ISR_NUMBER The Program Status Register (PSR) combines: • Application Program Status Register
in „Atmel SAMV71 CAN FD“ · Mikrocontroller und Digitale Elektronik ·
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NUVOTON_M058_M0516.pdf
AA0 AD8 D0 CQ0 AA8 TANT-A AD1 4 D1 VQ1 5 AA1 AD9 4 D1 VQ1 5 AA9 AD2 7 6 AA2 AD10 7 6 AA10 AD3 8 D2 Q2 9 AA3 AD11 8 D2 Q2 9 AA11 AD4 13 D3 Q3 12 AA4 AD12 13 D3 Q3 12 AA12 AD5 14 D4 Q4 15 AA5 AD13 14 D4 Q4 15 AA13 S S AD6 17 D5 Q5 16 AA6 AD14 17 D5 Q5 16 AA14 S S AD7 18 D6 Q6 19 AA7 AD15 18 D6 Q6 19 AA15
in „ARM Cortex M0 NUVOTON M058ZBN auslesen / flashen“ · Mikrocontroller und Digitale Elektronik ·
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kit160-6.pdf
bis 8-fach e gezoomt werden. Mit dem größten Zeichensatz 16x8 lassen sich somit bei 8-fach Zoom (=128x64) v bildschirmfüllende Worte und Zahlen darstellen. b h KONTRASTEINSTELLUNG t n Der Kontrast des Displays wird über das integrierte Poti eingestellt und bleibt, durch die On-Board W Temperaturkompensation
in „Display ansteuern - Fehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ak4528vm-en-datasheet.pdf
De-emphasis Control Pin 21 DEM1 I De-emphasis Control Pin 22 VT - Output Buffer Power Supply Pin, 2.7 ∼ 5.25V 23 VD - Digital Power Supply Pin, 4.75 ∼ 5.25V 24 DGND - Digital Ground Pin 25 AOUTL− O Lch Negative Analog Output Pin 26 AOUTL+ O Lch Positive Analog Output Pin 27 AOUTR− O Rch Negative Analog Output
in „Daisy: Eingebettete Plattform für Audioprojekte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AK5388AEQ.pdf
Input Leakage Current Iin - - 10 A MS1494-E-03 2014/02 - 9 - [AK5388A] SWITCHING CHARACTERISTICS (Ta=25C; AVDD1/2=4.75 5.25V; DVDD1/2=3.0 3.6V; CL=20pF) Parameter Symbol min typ max Unit Master Clock Timing Master Clock 128fs: fCLK 1.024 24.576 27.648 MHz Pulse Width Low tCLKL 0.4fCLK ns Pulse Width
in „Audio-ADC - Taktfrequenzen I2S“ · Mikrocontroller und Digitale Elektronik ·
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avrdude.pdf
6 t10 ATtiny10 t11 ATtiny11 t12 ATtiny12 t13 ATtiny13 t15 ATtiny15 t2313 ATtiny2313 t24 ATtiny24 t25 ATtiny25 t26 ATtiny26 t261 ATtiny261 t4 ATtiny4 t4313 ATtiny4313 t44 ATtiny44 t45 ATtiny45 t461 ATtiny461 t5 ATtiny5 t84 ATtiny84 t85 ATtiny85 t861 ATtiny861 t88 ATtiny88 t9 ATtiny9 x128a1 ATxmega128A1
in „AVRDude als Tool in AVR Studio 4 einbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TRC103_Transceiver_RFM_121129.pdf
kHz Table 15 0x03 - MCFG03 [default 0x07] Name Bits R/W Description - 7 Not used BR = F XTAL(64*(D + 1)), where D is the Bit_Rate value and bit rate BR XTALare in kHz Bit_Rate 6..0 r/w 0 ≤ D ≤ 127 for FSK, 5 ≤ D ≤ 127 for OOK Bit_Rate default = 7, BR = 25
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Schematic_Atmega32U2_Ult.GPS_NOR-Flash_Sheet_1_20200330171408.pdf
AVR-ISP-6SMD Zenerdiode 17 MISO 1 2 VTG GND 24 (PD0/MISO/PCINT3)PB3 18 MOSI 4 5 RST B 32 PC1(RESET/dW) (T1/PCINT4)PB4 19 SCK 3 6 GND Reset B C1 AVCC (PCINT5)PB5 1 XTAL1 (PCINT6)PB6 20 Ladebuchse Kond. 22 pF 2 PC0(XTAL2) (PCINT7/OC.0A/OC.1C)PB7 21 AVR ISP QUARZ 16MHZ 6 C2 (OC.0B/INT0)PD0 7 (AIN0/INT1)
in „Datei auf SD-Karte via AVR auf Computer übertragen“ · Mikrocontroller und Digitale Elektronik ·
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AVR_USB_GPS.pdf
14 (SCLK/PCINT1)PB1 15 AVR ISP 16 (PDI/MOSI/PCINT2)PB2 17 B 24 (PD0/MISO/PCINT3)PB3 18 B PC1(RESET/dW) (T1/PCINT4)PB4 W25Q128 U3 32 AVCC (PCINT5)PB5 19 1 XTAL1 (PCINT6)PB6 20 1 8 22 pF 2 21 CS# VCC C1 PC0(XTAL2) (PCINT7/OC.0A/OC.1C)PB7 2DO/MISO HOLD# QUARZ 6 3WP# CLK6 16MHZ (OC.0B/INT0)PD0 4GND DI/MOSI
in „Datei auf SD-Karte via AVR auf Computer übertragen“ · Mikrocontroller und Digitale Elektronik ·
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PIC18F46J11_39932D.pdf
Function is Assigned to RP3 Output Pin bits (see Table 10-14 for peripheral function numbers) REGISTER 10-25: RPOR4: PERIPHERAL PIN SELECT OUTPUT REGISTER 4 (BANKED ECAh) U-0 U-0 U-0 R/W-0 R/W-0 R/W-0 R/W-0 R/W-0 — — — RP4R4 RP4R3 RP4R2 RP4R1 RP4R0 bit 7 bit 0 Legend: R/W = Readable, Writable if IOLOCK = 0
in „PIC18F46J11 und RTC. Quarz nötig? Anfängerfrage Übersicht verloren ;-(“ · Mikrocontroller und Digitale Elektronik ·
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Datei
OpenHardwareMonitor.txt
ICAgICAgICAgICAgICAgICAgIABSZXYgMS4wICAgICAgICAgICAgICAgICAAICAg ICAgICAgICAgICAgICAgICAgICAgICAgICAgICAATm8gQXNzZXQgVGFnICAgICAg ICAgICAgICAgICAgICAAAAQqBAABA8YCVQYCAP/7678DAoUAgAziCUEIBQAGAAcA AAAAAgIEBADGAENQVSAxAEludGVsAEdlbnVpbmUgSW50ZWwoUikgQ1BVAAAHEwUA
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ADE7758.pdf
PowerFactorwithExternalReferenceandIntegratorOff 0.3 0.6 0.5 0.2 0.4 ) z PF = 1 % % 5 0.3 ( 0.1 PF = +0.5, +25°C ( 5 R R O 0.2 R PF = +1, +25°C R T R R C E 0 E E 0.1 N T S PF = 0.5 E E E 0 C C R E –0.1 E H P P I–0.1 PF = –0.5, +25°C W PF = +0.5, +85°C –0.2 –0.2 1 PF = +0.5, –40°C - 0 3 –0.3 - 4 4 –0.3 0 –0.4
in „Strom und Spannungsmessung 220V“ · Mikrocontroller und Digitale Elektronik ·
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Datei
asl_unterstuetzte_prozessoren.txt
68HC12 68HC12X S912ZVC19F0MKH S912ZVC19F0MLF S912ZVCA19F0MKH S912ZVCA19F0MLF S912ZVCA19F0WKH S912ZVH128F2CLQ S912ZVH128F2CLL S912ZVH64F2CLQ S912ZVHY64F1CLQ S912ZVHY32F1CLQ S912ZVHY64F1CLL S912ZVHY32F1CLL S912ZVHL64F1CLQ S912ZVHL32F1CLQ S912ZVHL64F1CLL S912ZVHL32F1CLL S912ZVFP64F1CLQ S912ZVFP64F1CLL S912ZVH128F2VLQ S912ZVH128F2VLL S912ZVH64F2VLQ S912ZVHY64F1VLQ S912ZVHY32F1VLQ S912ZVHY64F1VL S912ZVHY32F1VLL S912ZVHL64F1VLQ 68HC16 68RS08 H8/300L HD6413308 H8/300 HD6413309 H8/300H HD6475328 HD6475348 HD6475368 HD6475388 SH7000
in „gas as a68 m68k - was nimmt man ?“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan_FARBE.pdf
FSMC_NE4 127 PG12 FSMC_NE4 FSMC_NE4/CS 3V3 PA8 3V3 PD3 3 100nF Y1 PC15 9 PC15-OSC32_OUT PG13/FSMC_A24 128 PG13 A24 10K 10K 32.768KHz PG14/FSMC_A25 129 PG14 A25 USER1 USER2 CON3 3V3 BEEP PD0 114 132 PG15 SD_CS 2 D2 PD1 115 PD0/FSMC_D2 PG15 C21 20pF JP6 B P SDIO_CMD D3 PD2 116 PD1/FSMC_D3 6 PB4 JNTRST B U4
in „STM32 Port-Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mispav.cpp
), DigPotWertA, diff, iMenu ); #endif switch( iMenu ) { case 0x10: // USoll einstellen vkanal[XUS].w += ddiff*POTIFAKTOR ; Ausgabe_w_Usoll( vkanal[XUS].w ); // Und Darstellung berechnen und Ausgeben auf dac(0 break ; case 0x11 : // ISoll einstellen vkanal[XIS].w += ddiff*POTIFAKTOR ; Ausgabe_w_Isoll( vkanal[XIS].w ); // Und Darstellung berechnen und Ausgeben auf dac(1 break ; default: // Anderen Menuepunkt vorwaehlen MENU( iMenu, diff) ; if ( iMenu > 128 ) iMenu = 0 ; if ( iMenu >= 5 ) iMenu = 4 ; break ; } //
in „Implementierung von Menüs auf alphanumerischen Displays“ · Mikrocontroller und Digitale Elektronik ·
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CS8415A_data.pdf
Mode MSB (0Dh) and Interrupt 2 Mode LSB (0Eh) ................................................... 25 8.11 Receiver Channel Status (0Fh) (Read Only) .............................................................................. 25 8.12 Receiver Error (10h) (Read Only) ................................
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Diplom_Mangalathu.pdf
Praxis lässt sich der GesamtwiderstandR effs. Abb. 2.15) am einfachsten über die Messung der Spulengüte Q [Chen89] ermitteln, die durch die Beziehung Q = ω HFL (2.41) R eff gegeben ist. Die Spulengüte Q ist ein Maß für die Qualität einer Spule, d.h. je höher die Güte Q , desto empfindlicher die Spule. Dennoch
in „Nuclear magnetic resonanc NMR“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TARGET__HiQTRX_V24S_Circuit.pdf
0 1 2 3 4 5 6 7 C B B B B B B B B B B B B B B R S B B B B B B B B IC1 D D D D D D D D D D D D D D W C D D D D D D D D U4 14 13 12 11 10 9 8 7 6 5 4 3 2 1 10 9 8 7 6 5 4 3 2 1 REG104_25 8 C1 A1 1 +2.5V LB2 2 OUT IN E1 - K1 2 1 1 5 7 L 2 GND C2 P A2 R FB B DEN 6 C 3 n n n n n n E 2 A N 4 E2 A K2 0 0
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TM014EDH05-V2.pdf
MICRO-ELECTRONICS TM014EDH05 V2.0 1 General Specifications Feature Spec Size 1.45 inch Resolution 128(RGB) x 128 Interface CPU 8bits/SPI 4W/SPI 3W Color Depth 65/262k Technology Type a-Si Display Spec Pixel Pitch (mm) 0.203x 0.203 Pixel Configuration R.G.B Vertical Stripe Display Mode TM with Normally
in „[V] 1,4" TFT Displays NEU“ · Markt ·
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service_nb_ipc_8170.pdf
I 8 . T 2 M O 3 3 E E 0 P 7 0 5 M P W N 3 O 3 T - T T 0 1 M A E L 3 3 8 A H 6 0 , 2 Q 7 Q Q 5 U U Q 1 Q Q 4 W W W o 5 2 5 4 5 1 1 , 1 5 6 1 1 c 5 P 1 1 , P Q P 0 S S t 5 Q P 5 5 0 3 P W W o 0 1 U 0 1 3 Q S S ( , Q 0 U , 0 W W ) 1 1 4 5 1 , 3 3 , , 5 Q Q S S Q Q 5 5 W W 4 Q 9 6 4 S Q 5 P W 3 6 Q 5 Q Q 0 S , 5 7 6 1 8 7 P 2 2 2 2 2 2 4 4 4 4 2 2 3 3 3 2 2 2 2 2 2 2 2 2 2 a 7 7 7 7 7 7 2 2 2 2 7 7 7 7 7 7 8 8 8 8 8 8 8 8 8 t 0 0 0 0 0 0 6 6 6 6 9 1 0
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Datei
avr910.asm
Fusebits brne w24 ldi s_data,0x58 rcall wrser ; wrser(0x58) SPI write (byte 1) rjmp w25 ;====== 'Q' - Read extendet Fusebits ============================================== w24: cpi u_data,'Q' ; 'Q' Read extendet Fusebits brne w30 ldi s_data,0x50 ; SPI load (byte 1) rcall wrser ; wrser(0x50) SPI write (byte 1) w25: ldi s_data,0x08 ; SPI load (byte 2) w26: rcall wrser ; wrser(0x00) SPI write (byte 2) clr s_data rcall wrser ;
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Datei
avr910.asm
Fusebits brne w24 ldi s_data,0x58 rcall wrser ; wrser(0x58) SPI write (byte 1) rjmp w25 ;====== 'Q' - Read extendet Fusebits ============================================== w24: cpi u_data,'Q' ; 'Q' Read extendet Fusebits brne w30 ldi s_data,0x50 ; SPI load (byte 1) rcall wrser ; wrser(0x50) SPI write (byte 1) w25: ldi s_data,0x08 ; SPI load (byte 2) w26: rcall wrser ; wrser(0x00) SPI write (byte 2) clr s_data rcall wrser ;
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A300_ATMEGA8xxx.pdf
From prescaler) T2S 0 1 1 clk /32 (From prescaler) T2S 1 0 0 clkT2S/64 (From prescaler) 1 0 1 clkT2S/128 (From prescaler) 1 1 0 clkT2S/256 (From prescaler) 1 1 1 clkT2S/1024 (From prescaler) Timer/Counter Register – Bit 7 6 5 4 3 2 1 0 TCNT2 TCNT2[7:0] TCNT2 Read/Write R/W R/W R/W R/W R/W R/W R/W R/W Initial
in „atMega8-16 Au beschreiben“ · Mikrocontroller und Digitale Elektronik ·
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RTL8111B_8168B_Registers_DataSheet_1.0.pdf
0 0 0 0 0 0 0 0 0Eh HTR R 0 0 0 0 0 0 0 0 0Fh BIST R 0 0 0 0 0 0 0 0 10h IOAR R 0 0 0 0 0 0 0 IOIN W - - - - - - - - 11h RW IOAR15 IOAR14 IOAR13 IOAR12 IOAR11 IOAR10 IOAR9 IOAR8 12h RW IOAR23 IOAR22 IOAR21 IOAR20 IOAR19 IOAR18 IOAR17 IOAR16 13h RW IOAR31 IOAR30 IOAR29 IOAR28 IOAR27 IOAR26 IOAR25 IOAR24
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LM94022.pdf
S e Connection Diagram Typical Transfer Characteristic n o SC70-5 Output Voltage vs Temperature r w t h C a s Top View 20143001 s See NS Package Number MAA05A A B O u p u 20143024 t © 2007 National Semiconductor Co201430ion www.national.com Q 2 4 Typical Application 9 M / Full-Range Celsius Temperature
in „Suche nach einem Temperatursensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Grundig_ST70-780_text_Service-Manual.pdf
110.95 24n u36/MKP10 846.51 5,6/NKS3 3,3k/2% 330k 25"PH SF 142V 6,8/1W BAV21 1,3 1,3 1,3 27 0,68u/ 14n/FKP1 S2000N 0,21u 0,33u -029.59 124.95 20n u68/MKP10 846.21 5,6/NKS3 3,9k/2% ? 29"PH SF 142V 6,8/1W BAV21 1,3 1,3 1,3 27 0,68u/ 14n/FKP1 S2000N 0,27u
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMG7420PLFC-X.pdf
LMG7420PLFC-X-9 PAGE 2-2/2 NO. 3. GENERAL SPECIFICATIONS (1) Part Name LMG7420PLFC-X (2) Module Size 159.4(W)mm x 101.0(H)mm x11.0(D)mm max. (3) Dot Size 0.47(W)mm x 0.47(H)mm (4) Dot Pitch 0.50(W)mm x 0.50(H)mm (5) Number Of Dots 240(W) x 128(H)dots (6) Duty 1/128 (7) LCD Type Film type black / white (Negative
in „Hitachi LCD LMG7420PLFC-X - Fake oder Original?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds_fs200r12pt4_2_2_de-en.pdf
Charakteristische Werte / Characteristic Values min. typ. max. Nennwiderstand Rated resistance TC= 25°C R 25 5,00 k Abweichung von R100 Deviation of R100 TC= 100°C, R 100= 493 R/R -5 5 % Verlustleistung Power dissipation TC= 25°C P25 20,0 mW B-Wert R2= R 25p [B 25/501/T2- 1/(298,15 K))] B25/50 3375 K
in „IGBT Verlustleistungsberechnung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Display.pdf
INCREMENT TIMING REFERENCE 0 When writing to graphic display RAM or reading from graphic display RAM q 1 Only when writing to graphic display RAM (read modify) w q This is effective when subsequently writing and reading the successive address areas. w This is effective in the case that, after reading
in „LC-Display Sharp M078CKA ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lh155.pdf
INCREMENT TIMING REFERENCE 0 When writing to graphic display RAM or reading from graphic display RAM q 1 Only when writing to graphic display RAM (read modify) w q This is effective when subsequently writing and reading the successive address areas. w This is effective in the case that, after reading
in „Suche sehr dünnes Grafikdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lh155.pdf
INCREMENT TIMING REFERENCE 0 When writing to graphic display RAM or reading from graphic display RAM q 1 Only when writing to graphic display RAM (read modify) w q This is effective when subsequently writing and reading the successive address areas. w This is effective in the case that, after reading
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PDF
TLC59116.pdf
accordance with JESD 51-7. DISSIPATION RATINGS POWER RATING DERATING FACTOR (1) POWER RATING PACKAGE TA≤ 25°C TA> 25°C TA= 85°C PW (TSSOP) 1207 mW 9.6 mW/°C 628 mW (1) This is the inverse of the junction-to-ambient thermal resistance when board mounted and with no air flow. RECOMMENDED OPERATING CONDITIONS
in „Verstehe TWI überhaupt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Exp_Meth_In_RF_Des--Wes_Hayward.pdf
22K the addition of a used an alternative approach here. A 51-12 buffer amplifier, Q2. 7:-W resistor was tack soldered into the circuit at the output point shown in Fig 100 1.34 and the output voltage was measured with an oscilloscope and 10X probe. The Q3 output was 123 mW, 7 V peak-to-peak
in „Literatur zum Selbstbau von Sendern und Empfängern“ · HF, Funk und Felder ·
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PDF
RTD2660-Board.pdf
RESETB V8_6/VIN-0 42 C R8 10k 126 41 C 1 C5 XO 127 CEC V8_7/VIN+0 40 液液液液液电液液液电电 C35 XI 128 XO VCLK/AVS1 39 106 C36 22pF XO XI V8_0/AHS1 0.1uF GND 5VA 1 R27 0K PANEL_VCC R9 10K R42 V33S 129 R260K 3 C34 NC_1M GND EPAD 0 Q2 106 Y1 T _ _ _ _ _ _ _ _ 1 DGND V33S 27MHZ D E 2 2 1 1 0 0 C C N N D
in „Parallel RGB Frequenz/Einzelbild?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Defektfused.txt
serial program mode : yes parallel program mode : yes Timeout : 200 StabDelay : 100 CmdexeDelay : 25 SyncLoops : 32 ByteDelay : 0 PollIndex : 3 PollValue : 0x53 Memory Detail : Block Poll Page Polled Memory Type Mode Delay Size Indx Paged Size Size #Pages MinW MaxW ReadBack ----------- ---- ----- --
in „Projekt fertiggestellt: MP3 Player für Kinder auf ATTiny-Basis“ · Projekte & Code ·
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PDF
INF.pdf
to 40% V OUT ) -dV/dtoff 0.3 0.7 1 V/µs R L1Ω 8) 9) Thermal resistance thCHase to heatsink (about 0.25 K/W with silicone paste) not included! Decrease of bbbelow 10 V causes slowly a dynamic increase oONto a higher value oON(Static)s long as bIN> VbIN(u) maxONincrease is less than 10 % per second Jor
in „Mosfet Verarmungstyp?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tmp275.pdf
380 µA TEMPERATURE RANGE Specified Range −40 +125 °C Operating Range −55 +127 °C Thermal Resistance qJA MSOP-8 250 °C/W SO-8 150 °C/W (1)Specified for 12-bit resolution. 3 www.ti.com SBOS363D − JUNE 2006 − REVISED AUGUST 2007 TYPICAL CHARACTERISTICS At A = +25°C and V+ = 5.0V, unless otherwise noted.
in „Abmessungen Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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BTS555_20030925.pdf
and Characteristics On-state resistance (Tab to pins 1,5, see measurement circuit page 7) I =30A, T =25°C: 1) L j R ON -- 1.9 2.5 mΩ V IN, I =L0A ,T j150°C: -- 3.3 4.0 IL=120A ,T j150°C: -- -- 4.0 V bb=6 V , I L20A ,T j150°C: R ON(Static) -- 4.6 9.0 10) Nominal load current (Tab to pins 1,5) IL(ISO) 128
in „Elektronische Sicherung für Akku“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AIO486.PDF
4 DQ1 22 DQ5 40 CAS0# 58 DQ31 5 DQ19 23 DQ23 41 CAS2# 59 VCC 6 DQ2 24 DQ6 42 CAS3# 60 DQ32 7 DQ20 25 DQ24 43 CAS1# 61 DQ14 8 DQ3 26 DQ7 44 RAS0# 62 DQ33 9 DQ21 27 DQ25 45 RAS1# 63 DQ15 10 VCC 28 A7 46 N. C. 64 DQ34 11 N. C. 29 N. C. 47 W# 65 DQ16 12 A0 30 VCC 48 N. C. 66 N. C. 13 A1 31 A8 49 DQ9 67
in „AIO486 CPU-Board“ · Offtopic ·
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PDF
AIO486.PDF
4 DQ1 22 DQ5 40 CAS0# 58 DQ31 5 DQ19 23 DQ23 41 CAS2# 59 VCC 6 DQ2 24 DQ6 42 CAS3# 60 DQ32 7 DQ20 25 DQ24 43 CAS1# 61 DQ14 8 DQ3 26 DQ7 44 RAS0# 62 DQ33 9 DQ21 27 DQ25 45 RAS1# 63 DQ15 10 VCC 28 A7 46 N. C. 64 DQ34 11 N. C. 29 N. C. 47 W# 65 DQ16 12 A0 30 VCC 48 N. C. 66 N. C. 13 A1 31 A8 49 DQ9 67
in „AIO486 CPU-Board“ · Offtopic ·