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Roland-G-70-Service-Manual.pdf
D90 D91 D92 C10 8 1N4148 1N4148 1N4148 1N4148 NIU 1 SW45 SW46 SW47 SW48 D93 D94 D95 D96 D 3 Q17 red red red red D D D D D RN2227 EVQ-PAE 05 R EVQ-PAE 05 R EVQ-PAE 05 R EVQ-PAE 05 R SLI-343URC3F SLI-343URC3F
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
spminterface.h
+15+4 #else const uint16_t bootloader__do_spm[20] BOOTLIBLINK = { #endif 0xbebb, 0x2dec, 0x2dfd, 0x90b0, 0x0068, 0xfcb0, 0xcffc, 0x9320, 0x0068, 0x95e8, 0x90b0, 0x0068, 0xfcb0, 0xcffc, 0xe121, 0x90b0, 0x0068, 0xfcb6, 0xcff0, 0x9508 }; /* 0001e08c <bootloader__do_spm>: 1e08c: bb be out 0x3b, r11 ; 59
in „[ATMega] Programm aus externem EEprom laden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F107-SK-SCH-revA.pdf
P Q 3.3V RESET CIRCUIT 3.3V 1 3.3V_MCU_E U1 3.3V CLOSE 2 50 23 WKUP STATUS LEDS USB CIRCUIT 0 VDD PA0/WKUP/USART2_CTS/ADC12_IN0/TIM2_CH1_ETR/TIM5_CH1/ETH_MII_CRS_WKUP PA0 0 1 75 VDD PA1/USART2_RTS/ADC12_IN1/TIM5_CH2/TIM2_CH2/ETH_MII_RX_CLK/ETH_RMII_REF_CLKETH_RMII_REF_CLK ETH_RMII_MDIO VBUS 1 100 VDD PA2/USART2_TX/TIM5_CH3/ADC12_IN2/TIM2_CH3/ETH_MII_MDIO/ETH_RMII_MDIOETH_RMII_MDIO R8 28 VDD PA3/USART2_RX/TIM5_CH4/ADC12_IN3/TIM2_CH4/ETH_MII_COL LCD_BL PA3 LCD_BL STAT2 STAT3 1 2 3 HN1x3 USB_HOST U2 10k
in „Cortex M3 STM32F107VC beim Reset passiert nichts“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt.pdf
refer to the ACCESSORIES section of this catalogue. Refer also to Reflectors (A.01), Connectors S60-PA-2 S60-PA-5 (A.03) and Fixing Brackets (A.04) of the General Catalogue BROWN Vdc NC OUTPUT + (BROWN)30 Vdc WHITE NC OUTPUT (WHITE) BLACK 0V - NO OUTPUT NO OUTPUT (BLUE) (BLACK) BLUE 6 8 m TECHNICAL DATA SELECTION TABLE N P N P axial optics - 2 m cable 1 1 1 P1 S60-PA-2-B01-NN 956201460 NPN B B B B0 - - - - S60-PA-2-B01-PP 956201300 PNP P P P AP 6 6 6 6 axial optics - M12 connector S S S S S60-PA-5-B01-NN 956201180 NPN Operating distance: 0.1 ... 8 m (on R5) S60-PA
in „[V] Datalogic MEP-593 Lichtschrankenkit - neu in OVP“ · Markt ·
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OPA544_______1_.pdf
CR1 PU22 PA41 PA0PC1PR2P7 PU0 PU0 PA0PR PC2P5CO5PA0 PA23 PA42 COR COR1P0PR0PA0 PU24 PA0 PA0 PA25 PA0 PA0 CO1 P P2 CO6 CO8 CO1 CO1 CP6PA0 P P0 PA32 PA3 PA0PA30 CP2 PA0 PA20 CP PA11 CO1PA30 PA12 CC3 PA20 COP CO5 P PA51 PP01 PA32
in „TDA 7293 Grenzfrequenz (Hochpass / Koppelkondensator)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Quadcopter_V1.0.pdf
PA23 GYRO_INT1 GND GND TDO 91 TDO PA22 52 ADXL_INT2 TCK 90 TCK PA21 51 ADXL_INT1 +3V3 PA20 45 PA19 44 61 GNDANA PA18 43 JP8 GND 60 ADVREF PA17 42 SPI1_MISO PWM1 1 59 41 SPI1_MOSI 2 C14 C15 VDDANA PA16 40 SPI1_SCK /RESET 18 PA15 39 SPI1_CS 1u 10n RESET_N PA14 37 SPI0_SCK JP9 49 PA13 36 1 DP 48 DP PA12 33 SPI0_MOSI PWM2 2 DM DM PA11 SPI0_MISO GND GND VUSB 46 VBUS PA10 31 SPI0_CS AT32UC3A PA9 30 PA8 29 JP10 PA7 28 PWM3 1 XTAL1
in „UC3A1512 Programmier Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
203493453ADF7020_0.pdf
LOW LEVEL POWER AMPLIFIER OUTPUT HIGH LEVEL D6 D5 . D2 D1 P6 . . P2 P1 X X . X X OOK MODE 0 . . X X PA OFF 0 X . X X PA OFF 0 . . 0 0 –16.0dBm 0 0 . 0 0 –16.0dBm 0 . . 0 1 –16 + 0.45dBm 0 0 . 0 1 –16 + 0.45dBm 0 . . 1 0 –16 + 0.90dBm 0 . . 1 0 –16 + 0.90dBm . . . . . . . . . . . . . . . . . . - . . .
in „LFCP_VQ löten/belichten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DM-KIT-SSK_for_BF533.pdf
BF_A2 8 7 UART_TX UART_TX 6 5 UART_RX UART_RX BF_A7 12 11 BF_A6 S MOSI MISO 12 11 SPI_SCLK SPI_SCLK PA1_B 10 9 PA0_B BF_A9 14 13 BF_A8 MISO 14 13 PA1_B PA3_B 12 11 PA2_B PA0_B C BF_A11 16 15 BF_A10 16 15 PA5_B PA5_B 14 13 PA4_B PA4_B C BF_A15 20 19 BF_A14 20 19 PA7_B PA7_A 18 17 PA6_A PA6_B BF_A17 22
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Datei
AVRootloader.asm
include "m8535def.inc" ; ATmega8535 .include "m88def.inc" ; ATmega88 ;.include "m88PAdef.inc" ; ATmega88PA ;.include "m88Pdef.inc" ; ATmega88P ;.include "m8Adef.inc" ; ATmega8A ;.include "m8def.inc" ; ATmega8 ;.include "m8HVAdef.inc" ; ATmega8HVA ;.include "pwm216def.inc" ; AT90PWM216 ;.include "pwm2Bdef.inc" ; AT90PWM2B ;.include "pwm2def.inc" ; AT90PWM2 ;.include "pwm316def.inc" ; AT90PWM316 ;.include "pwm324def.inc" ; AT90PWM324 ;.include "pwm3Bdef.inc" ; AT90PWM3B ;.include "pwm3def.inc" ; AT90PWM3 ;.include
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Datei
AVRootloader.asm
include "m8535def.inc" ; ATmega8535 .include "m88def.inc" ; ATmega88 ;.include "m88PAdef.inc" ; ATmega88PA ;.include "m88Pdef.inc" ; ATmega88P ;.include "m8Adef.inc" ; ATmega8A ;.include "m8def.inc" ; ATmega8 ;.include "m8HVAdef.inc" ; ATmega8HVA ;.include "pwm216def.inc" ; AT90PWM216 ;.include "pwm2Bdef.inc" ; AT90PWM2B ;.include "pwm2def.inc" ; AT90PWM2 ;.include "pwm316def.inc" ; AT90PWM316 ;.include "pwm324def.inc" ; AT90PWM324 ;.include "pwm3Bdef.inc" ; AT90PWM3B ;.include "pwm3def.inc" ; AT90PWM3 ;.include
in „Bootloader von Hagen - Port toggeln während des Flashens“ · Mikrocontroller und Digitale Elektronik ·
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datasheet.pdf
-55/-70/-90 3rd Bus Cycle Data Polling Addresses 555H PA PA tWC tH tRC tS CE tS tE tH OE tHWL tWP tHWH1 WE tPH tH tOE DOUT A0H PD DQ 7 D OUT Data tDS tOH Notes: 1. PA is address of the memory location to be programmed
in „Eprom Hersteller bzw. Vergleichstype gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MBM29LV800.pdf
-70/-90/-12 3rd Bus Cycle Data Polling Addresses 555H PA PA tWC tRC tAS tAH CE tCS tCH tCE OE tWP tWPH tOE tGHWL tWHWH1 WE tDS tOH tDH Data A0H PD DQ 7 DOUT D OUT Notes: 1. PA is address of the memory location
in „650Stk. Flashbausteine 29LV800 1Mx8 / 512k x16, 3,3V“ · Markt ·
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ADF7020.pdf
LOW LEVEL POWER AMPLIFIER OUTPUT HIGH LEVEL D6 D5 . D2 D1 P6 . . P2 P1 X X . X X OOK MODE 0 . . X X PA OFF 0 X . X X PA OFF 0 . . 0 0 –16.0dBm 0 0 . 0 0 –16.0dBm 0 . . 0 1 –16 + 0.45dBm 0 0 . 0 1 –16 + 0.45dBm 0 . . 1 0 –16 + 0.90dBm 0 . . 1 0 –16 + 0.90dBm . . . . . . 8 . . . . . . . . . . . . - . .
in „erfahrung mit adf7020?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test_.pas
program SSDDemo; Device = 90S8515; {--------------------------------------------------------------} { Const Declarations } const BUILD = '000304'; // Version {--------------------------------------------------------------} { functions
in „Schieberegister ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test_.pas
program SSDDemo; Device = 90S8515; {--------------------------------------------------------------} { Const Declarations } const BUILD = '000304'; // Version {--------------------------------------------------------------} { functions
in „Schieberegister ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
C64_ESD.PDF
6S 30 110bDP CODub1 CODSub2 CO1 CO2 CU3 CU4 P PPb P1PA1PD0PD0P P P PPPA0PD0PS3PS4PuP P PA PDu1 PPP PPPPAS1 PDb0 PPA PPPAPDu2 P P PS8 Pb Pu Pb P Pb CODub1 CODSub2 CO1 CO2 CU3 CU4 P PPb P1PA1PD0PD0P P P PPPA0PD0PS3PS4PuP P PA PDu1 PPP PPPPAS1 PDb0 PPA PPPAPDu2
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AVR042_Hardware_Design_Considerations_doc2521.pdf
AT90S2313 – – – >450 >450 Yes AT09S2323 – – – >450 >450 Yes AT90S2343 1.0 – – – – Yes AT90S4433 – – – >450 >450 Yes AT90S8515 – – – >450 >450 Yes AT90S8535 – – – >450 >450 Yes ATmega161 – – – >450 >450 Yes
in „Atmega 8A PU“ · Mikrocontroller und Digitale Elektronik ·
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User_s_Manual_of_ET-STM32F103.pdf
100n 1 16 C1+ VCC C10 C11 100n 100n 3 C1- V+ 2 4 C2+ V- 6 C12 C13 100n 5 15 100n +3V3 J11 C2- GND PA10 R14 12 13 RXD-1 1 100 PA9 11 R1O R1I 14 TXD-1 2 9 T1I T1O 8 3 10 T2I T2OI 7 4 PA3 USART1(Download) PA3-P ICL3232 +3V3 J12 J13 3 2 1 RXD-2 1 PA2 TXD-2 2 PA2-P 3 4 USART2 J14 3 2 1 Cable that is used
in „SPI mit SD Karte antwortet nicht korrekt auf CMD0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
User_s_Manual_of_ET-STM32F103.pdf
100n 1 16 C1+ VCC C10 C11 100n 100n 3 C1- V+ 2 4 C2+ V- 6 C12 C13 100n 5 15 100n +3V3 J11 C2- GND PA10 R14 12 13 RXD-1 1 100 PA9 11 R1O R1I 14 TXD-1 2 9 T1I T1O 8 3 10 T2I T2OI 7 4 PA3 USART1(Download) PA3-P ICL3232 +3V3 J12 J13 3 2 1 RXD-2 1 PA2 TXD-2 2 PA2-P 3 4 USART2 J14 3 2 1 Cable that is used
in „Suche Schalter“ · Mikrocontroller und Digitale Elektronik ·
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ZeilenDekoder.pdf
I5 O5 R8 PAD6 I/O 0 5 XTAL1 PB2 14 I/O 0 In 0 4 I4 O4 15PaOsC1 0 R7 PaPAD5 Pas 0 V 1 13 I/O 0 In 0 3 16PaOsC1 0 PaPsa1s 0 5 p n a (AIN1)PB1 I3 O3 R6 PAD4 + S I P Pwr 020 VCC (AIN0)PB0 12 I/O 0 In 0 2 I2 O2 17PaOsC1 0 R5 PaPAD3 Pas 0 Pwr 010 In 0 1 18PaOsC1 0
in „LED Matrix zum x.ten“ · Mikrocontroller und Digitale Elektronik ·
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STM32_SCH.pdf
64 2 FD2103S T2 31 PA6 PC8 65 R2 32 PA7 PC9 66 PA8 PC10 1 2 1 STP110N7F6 67 78 120 3 68 PA9 PC11 79 69 PA10 PC12 80 70 PA11 TAMPER-RTC\PC13 7 GND 71 PA12 OSC32-IN\PC14 8 PA13/JTMS-SWDIO OSC32-OUT\PC15 72 9 V+ 76 PA14/JTCK-SWCLK PD0 77 PA15/JTDI 81 PD1 82 35 PB0 PD2 83 2 T3 36 PB1 PD3 84 R3 37 PB2/BOOT1 PD4 85 S2 PB3/JTDO PD5 1 2 1 3 STP110N7F6 89 86 1 VCC VB 8 120 90 PB4/JNTRST PD6 87 HIN HO K2 91 PB5 PD7 88 2 7 3 LIN VS 6 1 92 PB6 PD8
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DDS_ONE.pdf
LCD_D0 P I U 1 0 7 PB07P I U 1 0 4 2HOLD## Y0 POVDDCORE P I U 1VDDCORE U1U PA28P I U 1 0 4 1 Y1Y PODDS_CS# P I10 1PA03 AT32UC3B TQFP64 PA19P 39U P TxX x Y2HC49/4H_SMX A POPPowePOEtXTINT0P I U 1PA05 1 PB06P I U POFLASH_CS# PIC302 PIGND1 I A I P O BT_UP U P13 1PA06 2 PA17P 36U PODDS_IOSYNC 0805 OD D D3.3V PBT_DOWNN P I U 1 0 1 4 PA16P I U 1 0 3 5ESET 18p V V V POBT_CYCPOPA30 P I U 1PA30 5 E PA14P I U PMOSII4WRDWNCTL I2 OC4 C1 OC5 61OC6 1 OC7 P1 OC8 C1OC9 POLD_Backlight U 1PA31 6NE N U O PA13P I U POSCK 3 I11206 C20805 620805 20805
in „Signalgenerator entworfen - brauche Feedback!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A4964JPDemoR0.pdf
P7 CO7 PC P PA0 PX P2 PA0P PA0 PU1 P1 P41CC9 CO4 CO14P P4 CR0PA2P0PA0 PA0PX P2 PA0P PA0 PU2 P1CPU8P P0 P P4 CM P2 PA0 PU2 PU6 P P6 CO6 P0COC PA0 PAM602 COF4 CR1 PU2 PU3P P0 COM5 COF1FD CR3 PU2 PU1 PX0 PX0 COGC PA0P1CO1
in „Allegro A4964 Demoboard - ein Phantom?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A4964JPDemoR0.pdf
P7 CO7 PC P PA0 PX P2 PA0P PA0 PU1 P1 P41CC9 CO4 CO14P P4 CR0PA2P0PA0 PA0PX P2 PA0P PA0 PU2 P1CPU8P P0 P P4 CM P2 PA0 PU2 PU6 P P6 CO6 P0COC PA0 PAM602 COF4 CR1 PU2 PU3P P0 COM5 COF1FD CR3 PU2 PU1 PX0 PX0 COGC PA0P1CO1
in „Allegro A4964 Demoboard - ein Phantom?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schematic_Prints.pdf
1 2 3 4 5 6 7 8 P2 P3 GND 1 2 VDD PE1 1 2 PE0 BU1 D1 PA2 3 4 PA3 PB9 3 4 PB8 USB-C SS10 PA4 5 6 PA5 PB7 5 6 PB6 A VBUS 5V PA6 7 8 PA7 PB5 7 8 PB4 A PC4 PC5 PB3 PD7 PB0 9 10 PB1 PD6 9 10 PD5 A1 B12 PB2 11 12 PE7 PD4 11 12 PD3 GND A2 GND GND B11GND PE8 13 14
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PDF
tle2082.pdf
O Full range –1.5 –1.5 25°C 80 91 80 91 RL= 600 Ω Full range 79 79 Large-signal differential 25°C 90 100 90 100 AVD VO =± 2.3 V RL= 2 kΩ dB voltage amplification Full range 89 89 25°C 95 106 95 106 R = 10 kΩ L Full range 94 94 ri Input resistance VIC= 0 25°C 1012 1012 Ω c Inpucapacitance VIC= 0, Common
in „Bauteil gesucht: unbekannter TI-Baustein“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD8610_8620.pdf
−75 +20 +75 pA −40°C <T A +125°C −150 +40 +150 pA InputVoltage Range −2 +3 V Common-Mode Rejection Ratio CMRR V CM= –1.5V to +2.5V 90 95 dB Large SignalVoltage Gain A VO R L 1 kΩ,VO= −3V to +3V 100 180 V/mV OffsetVoltage
in „Regelbare Stromqulle verstehen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ATTiny1624.pdf
Brief DS40002203A-page 5 ATtiny1624/1626/1627 Pinout 3. Pinout 3.1 14-Pin SOIC, TSSOP VDD 1 14 GND PA4 2 13 PA3 (EXTCLK) PA5 3 12 PA2 PA6 4 11 PA1 PA7 5 10 PA0 (UPDI/RESET) (TOSC1) PB3 6 9 PB0 (TOSC2) PB2 7 8 PB1 Input supply Programming, Debug, Reset Ground Clock, crystal PIN on VDD power © 2020 Microchip
in „Neues Produkt AtTiny1624“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XPLAIN_Shematic.pdf
TDI PB5 9 10 C101 GND X GND AVCC GND 18p 100n V_XM C102 8MBSDRAM SpareADC/DAC/ACchannels SDRAM_A7 PA[7..0] 3 SDRAM_A6 1 J101 2 1 C SDRAM_A5 HEADER2x5 5 4 3 2 1 0 1 0 3 2 S S SDRAM_A4 JS100 PA0 1 2 PA1 A A A A A A R R Q Q O O n SDRAM_A3 PA2 3 4 PA3 P P P P P P P P P P T T 1 SDRAM_A2 PA4 5 6 PA5 SDRAM_A1
in „Xplain: Schaltplan gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32VF103_Datasheet_Rev1.0.pdf
D D D 1 1 1 A1 1 3 3 1 0 9 8 0 7 6 5 4 3 7 6 5 4 3 2 1 0 2 1 0 5 4 100 99 98 97 96 95 94 93 92 91 90 89 88 87 86 85 84 83 82 81 80 79 78 77 76 PE2 1 75 VDD_2 PE3 2 74 VSS_2 PE4 3 73 NC PE5 4 72 PA13 PE6 5 71 PA12 VBAT 6 70 PA11 PC13-TAMPER-RTC 7 69 PA10 PC14-OSC32IN PA9 8 68 PC15-OSC32OUT 9 67 PA8 VSS
in „RISC-V: Wird das was?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32VF103_Datasheet_Rev1.0.pdf
D D D 1 1 1 A1 1 3 3 1 0 9 8 0 7 6 5 4 3 7 6 5 4 3 2 1 0 2 1 0 5 4 100 99 98 97 96 95 94 93 92 91 90 89 88 87 86 85 84 83 82 81 80 79 78 77 76 PE2 1 75 VDD_2 PE3 2 74 VSS_2 PE4 3 73 NC PE5 4 72 PA13 PE6 5 71 PA12 VBAT 6 70 PA11 PC13-TAMPER-RTC 7 69 PA10 PC14-OSC32IN PA9 8 68 PC15-OSC32OUT 9 67 PA8 VSS
in „STM32F103C8T6 => GD32VF103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Grasshopper_Adapter_Rev.A.pdf
I U 1 0 6 NLGR EN0 P I U 1 0PD2/GREEN0 PA1/MOSI P I U 1 0 4 NLSPI0MOSI NLRED P I U 1 0PD1/RED7 PA0/MISO P I U 1 0 2 NLSPI0MISO RED6D 66 28 MMC_D3D3 PIU1066 PD0/RED6 PA15/MMC_D3 PIU1028 NLRED PIU10126 PC31/RED5 PA14/MMC_D2 P I U 1 0 2 6 NL MC0D2 C NLRED PIU10124 PC30/RED4 PA13/MMC_D1 PIU1024 NL MC0D1 C NLRED 122 MCI 22 NL MC0D0 PIU10122 PC29/RED3 PA12/MMC_D0 P I U 1 0 2 2 NLRED PIU10120 PC28/RED2 PA11/MMC_CMD P I U 1 0 2 0 NL MC0CMD NLRED PIU10118 PC27/RED1 PA10/MMC_CLK
in „Grasshopper und TFT Display“ · Mikrocontroller und Digitale Elektronik ·
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SED1374_3Sch.pdf
D VCC H2 20 (AD5)PA5 39 D4 7 8 D4 5 3D 3Q 16 A4 A7 5 24 A0 D4 6 D13 V V V V V V V PAD3.2 XTAL2 (AD4)PA4 40 D3 9 10 D3 6 4D 4Q 15 A3 A13 6 23 A12 D3 7 D12 79 H3 GND 21 (AD3)PA3 41 7 5D 5Q 14 7 22 8 D11 RD_/WR 75 GND PAD3.2 VCC XTAL1 (AD2)PA2 D2 D2 6D 6Q A2 A11 /RD D2 D10 /BS (AD1)PA1 42 D1 CON2 D1 8 7D 7Q 13 A1 A10 8 21 A14 D1 9 D9 CNF0 49 H4 LSP8 35 ICP (AD0)PA0 43 D0 GND D0 9 8D 8Q 12 A0 A9 9 20 D7 D0 11 D8 CNF1 48 33 ALE A8 10 19 D5
in „Grafikcontroller S1D13706“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sketch.ino
#include <stdint.h> #define LED PC13 // cause every project must have atleast 1 LED #define RB PA0 #define RE PA1 #define CE PA2 #define CLE PA3 #define ALE PA4 #define WE PA5 #define WP PA6 #define IO_0 PA7 #define IO_1 PB0 #define IO_2 PB1 #define IO_3 PB10 #define IO_4 PB11 #define IO_5 PB9 #define
in „Bluepill TSOP48 NAND Dump Tool Problemchen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AC6905A-Jieli.pdf
IIC interface supports host and device mode Watchdog 1 Crystal Oscillator 16-bit Stereo DAC, SNR > 90dB 1 channels StereoADC, SNR > 90dB 1 channel MIC amplifier Embedded headphone amplifier 1 channels Stereo analog MUX 10-bitADC 2 channels 4 levels Low Voltage Detector Built in Cap Sense Key controller
in „Bluetooth Chip "JL AC1650AP" 3W-Modul CHN“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
GD32F103xx_Datasheet_V2.5.pdf
D D D C C C A1 A 3 3 1 0 9 8 0 7 6 5 4 3 7 6 5 4 3 2 1 0 2 1 0 5 4 100 99 98 97 96 95 94 93 92 91 90 89 88 87 86 85 84 83 82 81 80 79 78 77 76 PE2 1 75 VDD_2 PE3 2 74 VSS_2 NC PE4 3 73 PE5 4 72 PA13 PE6 5 71 PA12 PA11 V BAT 6 70 PC13-TAMPER-RTC 7 69 PA10 PC14-OSC32IN 8 68 PA9 67 PA8 PC15-OSC32OUT 9
in „Unterschiede CS32F103C8T6 und STM32F103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HWSC_S_A0014431442_1-3073393.pdf
±0.25 18 AN barbed port AN barbed port 001BA 0 bar to 1 bar 100KA 015PA 0 psi to 15 psi 040MD -40 40 mbar 435 850 1350 10450 ±0.75 ±0.25 ±0.25 15 1.6BA 0 bar to 1.6 ba160KA 0 kPa to 160 030PA 0 psi to 30 psi 2.5BA 0 bar to 2.5 ba250KA 0 kPa to 250 060PA 0 psi to 60 psi 060MD
in „ESP32 Wroom mit Honeywell Drucksensor verbinden“ · Mikrocontroller und Digitale Elektronik ·
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iPhone_4_schem.pdf
C9 PA_EN_B1 26 1 VCONT OUTPUT 4 C8 OUT PA_EN4 PA_EN_B2 OUT 26 1 C343_RF PA CONTROL 1UF NC 2 NC/GND(TEST TERM) PA_MODE D10 3G_PA_VMODE OUT 26 6.3V 5 NC/GND(TEST TERM) 1 2 CERM NC C1_RF 26M_UE_IN L7 XO PA_BSEL D11 PA_EN_B5 OUT 26 402 GND 2.2PF 25V0.1PF PA_RAMP B11 PA_RAMP 26 3 2 NP0 SYSTEM OUT 201 CLOCK PA_BIAS1 E10 3G_DCDC_REF 5 C77_RF NOSTUFF E11 10PF R68_RF PA_BIAS2 NC AFC_DAC_F 0.00 AFC_DAC K7 AFC_DAC A10 L8_
in „iphone 4 smd abgebrochen“ · Mikrocontroller und Digitale Elektronik ·
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USB3320_STM32F4.pdf
MISO N RBIAS D6 19 PC3/SPI2_MOSI G 8060 1% D7 20 VDD1 CPEN 21 VSSA STP 22 VREF+ XO NXT 23 VDDA DIR PA0/USART2_CTS/USART4_TX/WKUP +3V VBAT CLKOUT 24 PA1/USART2_RTS/USART4_RX VDD33 25 PA2/USART2_TX +1V8 VDD18 REFCLK VDD18 STM32F407VX +3V VDDIO NC N GND U$1G$2 G 26 PA3/USART2_RX 27 VSS2 28 VDD2 29 PA4/SPI1
in „STM32F4 USB High Speed VCP mit USB3320 PHY“ · Projekte & Code ·
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PDF
tmp95fy64f.pdf
40 P93/TO9 P40/A0 87 87 39 39 P92/TO8 P50/RD 88 88 TOP VIEW 38 38 P91/TI9/INT6 P51/WR 89 89 37 37 P90/TI8/INT5 P52/HWR 90 90 LQFP100-P-1414-0.50C 36 36 P75/TO7/INT4 VSS 91 91 35 35 P74/TO5 PA0/AN0 92 92 34 34 P73/TI4/INT3 PA1/AN1 93 93 33 33 P72/TO3/INT2 PA2/AN2 94 94 32 32 P71/TO1 PA3/AN3/ADTRG 95 95 31 31 P70/TI0/INT1 PA4/AN4 96 96 30 30 RESET PA5/AN5 97 97 29 29 EA PA6/AN6 98 98 28 28 X2 PA7/AN7 99 99 27 27 X1 VREFH 100 100 26 26 VSS 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 VREFL 1 25 VCC AVSS
in „[S] Tools für TMP95FY64F von Toshiba“ · Mikrocontroller und Digitale Elektronik ·
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Datei
datensatz.txt
È0@ª<Z/niz 0TªP^/n t È0Tª<[/ndt 0hªP_0n n È0hª<\/n_n 0 ªP_/l t È0 ª<].ldt 0 ªP`/l p È0 ª<^.lap 0šªPa/l h È0šª<_/lZh !0ÀªPb/l f È0Àª<_/lXf &0ÔªPc/l d È0Ôª<`/lWd *0èªPd2l!h È0èª<a/lZh .0 «Pe2l ` È0 «<b/lS` 10 «Pg2l ^ È0 «<c/lQ^ 40(«Pg2l X È0(«<c/lLX 90@«Pg2l R È0@«<d2lFR 90T«Pg2l X È0T«<d2lHT >0h«Pg2l
in „Smart card re-engineering Klimaregler KA 100“ · Softwareentwicklung ·
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Datei
soft-pwm_56leds.c
uint8_t pwm_cycle; volatile bool pwm_change; uint8_t pwm_pin[CHANNELS] = { PL3, PL1, PB3, PG0, PB1, PA1, PA3, PK2, PA0, PA2, PA4, PA6, PE4, PE5, PG5, PE3, PC6, PD1, PD0, PB0, PB2, PL0, PL2, PL4, PC4, PC2, PC0, PG2, PF3, PF2, PF1, PF0, PH5, PH6, PB4, PB5, PK6, PK5, PK4, PK3, PD7, PG1, PL7, PL5, PK1, PK0
in „8-Bit Software PWM für mehr als 8 Kanäle“ · Projekte & Code ·
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Datei
soft-pwm_56leds.c
uint8_t pwm_cycle; volatile bool pwm_change; uint8_t pwm_pin[CHANNELS] = { PL3, PL1, PB3, PG0, PB1, PA1, PA3, PK2, PA0, PA2, PA4, PA6, PE4, PE5, PG5, PE3, PC6, PD1, PD0, PB0, PB2, PL0, PL2, PL4, PC4, PC2, PC0, PG2, PF3, PF2, PF1, PF0, PH5, PH6, PB4, PB5, PK6, PK5, PK4, PK3, PD7, PG1, PL7, PL5, PK1, PK0
in „56x PWM + Serielle Kommunikation mit PC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet-23.pdf
10 94 100 dB G = 100 94 100 dB G = 1000 94 100 dB CMRR at 5 kHz VCM= ±10 V G = 1 74 80 dB G = 10 84 90 dB G = 100 84 90 dB G = 1000 84 90 dB NOISE RTI noise = ni+ (enoG) ) Voltage Noise, 1 kHz Input Voltage Noisenie VIN, IN− = 0 V 14 14 17 nV√Hz Output Voltage Noise,no VIN, IN− = 0 V 90 90 100 nV√Hz RTI
in „Puls von EKG ableiten und weiterverarbeiten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rfax.pdf
PROGS 120/576 1200 C -------/1220 12/24/48/72HR OCEAN WAVE PROG 120/576 0000 -------/1240 24 HR 500hPa TEMPERATURE AND 700hPa DEWPOINT 120/576 0000 DEPRESSION PROG 24HR 850hPa TEMPERATURE WIND AND 700hPa VERTICAL P-VELOCITY PROG -------/1251 36 HR 500hPa TEMPERATURE AND 700hPa DEWPOINT 120/576 0000 DEPRESSION
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PDF
m2560test.pdf
JTAG TMS TCK IC13 PORTA PORTC PA0 78 PA0 MCU PC0 53 PC0 GN0V +5V PA1 77 PA1 PC1 54 PC1 F PA2 76 55 PC2 R PA2 PC2 X1006 O PA3 75 PA3 PC3 56 PC3 P PA4 74 57 PC4 1 2 PA4 PC4 3 4 PA5 73 PA5 PC5 58 PC5 5 6 PF4 PA6 72 PA6 PC6 59 PC6 PA7 71
in „Platinenbau-Projekt ATmega2560“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_SX1261-2_V1.1-1307803.pdf
amplifier optimization keys in the SX1261 and SX1262 transceivers: Table 4-4: Power Amplifier Summary PA Summary Conditions SX1261 SX1262 Max Power withrelevantmatchingand +14 /15 dBm + 22 dBm settings at + 22 dBm, indicative - 118 mA IDDTX 1 at + 14 dBm, indicative 25.5 mA 90/45 mA flat from 3.3 V to 3.7
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ARM_Cortex_Modul.pdf
1 2 3 4 5 6 7 8 U1 3,3V 26 66 C1 PA0 27 PA0/U0RX PB0/PWM2 67 PB0 PA1 28 PA1/U0TX PB1/PWM3 70 PB1 PA2 PA2/SSI0CLK PB2/I2C0SCL PB2 100nF PA3 29 PA3/SSI0FSS PB3/I2C0SDA 71 PB3 PA4 30 PA4/SSI0RX PB4/C0 92 PB4 CAN_H 3,3V PA5 31 PA5/SSI0TX PB5/C0o 91 PB5 U2 P1 PA6 34 PA6/CCP1 PB6/C0+ 90 PB6 GND 3 VDD VREF 5 R1 1 2 A PA7 35 PA7 PB7/TRST 89 PB7 120 CAN_L 3 4 A 1 7 D1 80 10 4 TXD CANH 6 5 6 PC0 79 PC0/TCK/SWCLK PD0/CAN0Rx 11 PD0 RXD CANL J1 7 8 PC1 78 PC1/TMS/SWDIO
in „PoE AVR Modul“ · Markt ·
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PDF
BluePillPlus_V10_SchDoc.pdf
PA10PIP207 7 PB1 7 IP0 PC31 PA13PI U1034 PA13/JTMS/SWDIO PB13/SPI2_SCK/USART3_CTS/TIM1_CH1N PIU1026 PB13 PA11PIP208 8 PB0IP108 8 1 PA14PI U1037 PIU1027 PB14 PA12PIP209 9 PA7PIP109 9 10pFP0 PA15 38 PA14/
in „BluePill STM32 Bezugsquelle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Papst4658N.pdf
Hz Max. freiblasender Volumenstrom (∆p = 0 / = max.) 146,0 m3/h Max. Staudruck (∆p = max. / =0) 78 Pa b.) Betriebsbedingung: 2.950 1/min freiblasend Frequenz: 60 Hz Max. freiblasender Volumenstrom (∆p = 0 / = max.) 170,0 m3/h Max. Staudruck (∆p = max. / =0) 90 Pa 01.02.2019 Seite 6 von 9 Produktdatenblatt
in „Wie Papst Lüfter öffnen?“ · Mechanik, Gehäuse, Werkzeug ·