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EFM8 Universal Bee Mikrocontroller-Entwicklungsboard
DBG, SV GND 0 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 1.1 0 1.2 0 1.3 0 GND 3V3, DBG 2, EFM8 UNIVERSAL BEE, LEVEL 1 SCORE: 0, Game Over, EFM8UB2, EXP, PB1, PB0, LED0, RESET, BAT, USB, ASM, VMCU GND 0 1 1 2 1 3 1 4 1 5 1 6 1 7 0 4.1 4.2 4.3 GND 3V3, VMCU GND, NC, NC, NC, 4.7, 4.6, 4.5, 4.4
in „[V] 8051er Silabs EFM8 Demo/Eval Kit mit LCD & Tretis (18€)“ · Markt · · Platinenfotos
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EFM8 Universal Bee Mikrocontroller-Entwicklungsboard
DBG, SV GND 0 0 1 0 2 0 3 0 4 0 5 0 6 0 7 0 1.1 0 1.2 0 1.3 0 GND 3V3, DBG 2, EFM8 UNIVERSAL BEE, LEVEL 1 SCORE: 0, Game Over, EFM8UB2, EXP, PB1, PB0, LED0, RESET, BAT, USB, ASM, VMCU GND 0 1 1 2 1 3 1 4 1 5 1 6 1 7 0 4.1 4.2 4.3 GND 3V3, VMCU GND, NC, NC, NC, 4.7, 4.6, 4.5, 4.4
in „[V] 8051er Silabs EFM8 Demo/Eval Kit mit LCD & Tretis (18€)“ · Markt · · Platinenfotos
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Mikrocontroller EFM8UB20F64G in einer Verpackung
Stock No:865-6351 Qty: 10 Microcontroller,8bit,8051,64kB,USB,QFP32 MPN: EFM8UB20F64G-B-QFP32 EFM8UB20F64G
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Mikrocontroller EFM8UB20F64G in Kunststoffverpackung
Stock No:865-6351 Qty: 10 Microcontroller,8bit,8051,64kB,USB,QFP32 MPN: EFM8UB20F64G-B-QFP32 EFM8UB20F64G 1922 B
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Mikrocontroller EFM8UB20F64G in Kunststoffbox
Stock No:865-6351 Qty: 10 Microcontroller,8bit,8051,64kB,USB,QFP32 MPN: EFM8UB20F64G-B-QFP32 EFM8UB20F64G 8051 64KB USB 1922 B
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Mikrocontroller EFM8UB20F64G in Kunststoffbox
Stock No:865-6351 Qty: 10 Microcontroller,8bit,8051,64kB,USB,QFP32 MPN: EFM8UB20F64G-B-QFP32 EFM8UB20F64G 8051 64KB USB 1922 B China
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Mikrocontroller EFM8UB20F64G in Kunststoffbox
Stock No:865-6351 Qty: 10 Microcontroller,8bit,8051,64kB,USB,QFP32 MPN: EFM8UB20F64G-B-QFP32 EFM8UB20F64G 8051 64KB USB 1922 B
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Mikrocontroller EFM8UB20F64G in Kunststoffbox
Stock No:865-6351 Qty: 10 Microcontroller,8bit,8051,64kB,USB,QFP32 MPN: EFM8UB20F64G-B-QFP32 EFM8UB20F64G 8051 64KB USB 1922 B
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Text zu simulierten Features eines EFM8BB22F16 Mikrocontrollers
Simulated Features EFM8BB22F16 NOTE Simulation for this device is provided by the default peripheral simulation driver. Complete peripheral simulation is not available and is not planned to be implemented by ARM. The following
in „AT89LP51: keine Powerdown Simulation in uVision möglich“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Mikrocontroller EFM8UB20F64G-B-QFP32 in Verpackung
Stock No:865-6351 Qty: 10 Microcontroller,8bit,8051,64kB,USB,QFP32 MPN: EFM8UB20F64G-B-QFP32 EFM8UB20F64G 8051 64KB USB 1922 B China
in „[V] 20St. SILABS 8051 USB-EFM8UB20F64G-B - QFP32 (15€)“ · Markt · · Fotos
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PDF
ug241-efm8ub2-slstk2001a.pdf
UG241: EFM8UB2-SLSTK2001A User's Guide The SLSTK2001A is an excellent starting point to become familiar with the EFM8UB2™ Universal Bee Microcontroller. TARGET DEVICE • EFM8UB2 Universal Bee Microcontroller The starter kit contains sensors and peripherals demonstrating some of the EFM8UB2's (EFM8UB20F64G-B-QFP48) many capabilities. The kit provides all necessary tools for developing an EFM8UB2 Uni- versal Bee application. • CPU: 8-bit CIP-51 8051 Core • Memory: 64 kB flash and 4352
in „[V] 8051er Silabs EFM8 Demo/Eval Kit mit LCD & Tretis (18€)“ · Markt ·
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PDF
efm8ub2-datasheet-1666225.pdf
EFM8 Universal Bee Family EFM8UB2 Data Sheet The EFM8UB2, part of the Universal Bee family of MCUs, is a KEY FEATURES multi-purpose line of 8-bit microcontrollers with USB feature set. • Pipelined 8-bit
in „[V] 10St. SILABS 8051 USB-EFM8UB20F64G-B - QFP32 (10€)“ · Markt ·
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PDF
efm8ub2-datasheet-1666225.pdf
EFM8 Universal Bee Family EFM8UB2 Data Sheet The EFM8UB2, part of the Universal Bee family of MCUs, is a KEY FEATURES multi-purpose line of 8-bit microcontrollers with USB feature set. • Pipelined 8-bit
in „[V] nochmal 10St. SILABS 8051 USB-EFM8UB20F64G-B - QFP32 (10€)“ · Markt ·
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PDF
efm8ub2-datasheet-1666225.pdf
EFM8 Universal Bee Family EFM8UB2 Data Sheet The EFM8UB2, part of the Universal Bee family of MCUs, is a KEY FEATURES multi-purpose line of 8-bit microcontrollers with USB feature set. • Pipelined 8-bit
in „[V] 20St. SILABS 8051 USB-EFM8UB20F64G-B - QFP32 (15€)“ · Markt ·
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PDF
efm8ub2-datasheet-1666225.pdf
EFM8 Universal Bee Family EFM8UB2 Data Sheet The EFM8UB2, part of the Universal Bee family of MCUs, is a KEY FEATURES multi-purpose line of 8-bit microcontrollers with USB feature set. • Pipelined 8-bit
in „[V] 20St. SILABS 8051 USB-EFM8UB20F64G-B - QFP32 (15€)“ · Markt ·
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PDF
USB-Layout.pdf
Device, or act as a host if a memory card reader or a USB memory stick is connected. A USB capable EFM32 microcontroller can operate as a host, a device or as an OTG dual role device. EFM32 microcontrollers do not support operation as a USB hub. The EFM32 USB stack supports host mode and device mode,
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Mehrere integrierte Schaltkreise in einer Verpackung
EFM8 UB20F64G B01C5G 1938 B EFM8 UB20F64G A00DAC 1708 A EFM8 UB20F64G B0122H 1837 B EFM8 UB20F64G B0122H 1837 B EFM8 UB20F64G B0122H 1837 B
in „[v] 10St. SILABS 8051 EFM8UB20F64G-B-QFP48 (13€)“ · Markt · · Fotos
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Mehrere integrierte Schaltkreise in einer Verpackung
EFM8 UB20F64G B01C5G 1938 B EFM8 UB20F64G A00DAC 1708 A EFM8 UB20F64G B0122H 1837 B EFM8 UB20F64G B0122H 1837 B EFM8 UB20F64G B0122H 1837 B
in „[V] 10St. SILABS 8051 EFM8UB20F64G-B TQFP48 (13€)“ · Markt · · Fotos
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Mehrere integrierte Schaltkreise in einer Verpackung
EFM8 UB20F64G B01C5G 1938 B EFM8 UB20F64G A00DAC 1708 A EFM8 UB20F64G B0122H 1837 B EFM8 UB20F64G B0122H 1837 B EFM8 UB20F64G B0122H 1837 B
in „[V] 10St. SILABS 8051 EFM8UB20F64G-B TQFP48 (12€)“ · Markt · · Fotos
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Datei
i2c_functions_efm32.txt
#include <stdbool.h> #include "efm32.h" #include "efm32_chip.h" #include "efm32_i2c.h" #include "efm32_rtc.h" #include "efm32_cmu.h" #include "efm32_emu.h" #include "efm32_gpio.h" #include "mag3110.h" #include "i2c.h" #include "main_program.h
in „i2c energy micro EFM32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart_example.c
based on rs232a example vom DVK directory ********************************************/ #include "efm32_cmu.h" #include "efm32_gpio.h" #include "efm32_usart.h" #include "efm32_dma.h" #include "uart.h" #include <RTL.h> #include <stdbool.h> OS_TID prot_handler = 0xFFFFFFFF; #define RXBUFSIZE 1 static volatile uint8_t rxRead = 0; static volatile uint8_t rxWrite = 0; static volatile uint8_t rxCount = 0; static volatile uint8_t rxBuffer[RXBUFSIZE]; static volatile uint32_t count = 0; static volatile uint8_t *input
in „EFM32 UART DMA“ · Mikrocontroller und Digitale Elektronik ·
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Mehrere integrierte Schaltkreise in einer Schachtel
EFM8 UB20F64G B018HT 1922 B
in „[V] 10St. Silabs 8051 Controller EFM8UB23F64G QFP32 (10€)“ · Markt · · Fotos
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Mikrocontroller in einer Kunststoffbox mit Etikett
Stock No:865-6351 Qty: 10 Microcontroller, 8bit, 8051, 64kB, USB, QFP32 MPN: EFM8UB20F64G-B-QFP32 Made In China RoHS 0046488211 0164207842
in „[V] 10St. Silabs 8051 Controller EFM8UB23F64G QFP32 (10€)“ · Markt · · Fotos
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PDF
CD_Player_Reparaturanleitung.pdf
einem Technics CD-Player.................................... 1-7 Abbildung 1-4: Oszillogramm der HF (EFM)............................................................ 1-8 Abbildung 1-5: Lasereinheit mit Poti bei einem Pioneer CD-Player......................... 1-9 Abbildung 1-6: Platine von einem Technics
in „DVD-Player reparatur“ · Offtopic ·
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PDF
cd_player_anleitung.pdf
einem Technics CD-Player.................................... 1-7 Abbildung 1-4: Oszillogramm der HF (EFM)............................................................ 1-8 Abbildung 1-5: Lasereinheit mit Poti bei einem Pioneer CD-Player......................... 1-9 Abbildung 1-6: Platine von einem Technics
in „Austausch Lasereinheit CD-Player“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Interrupt wird enabled } void init_PB0_EXTI(void) { GPIO->P[3].MODEH |= 0x02; GPIO->P[3].DOUTSET |= 1<<8; GPIO->EXTIPSELH |= 0x03; GPIO->EXTIFALL |= 1 << 8; GPIO->EXTIRISE &= 0 << 8; GPIO->IEN |= 1 << 8; NVIC_init(1,2); } void set_HFXO(void) { int temp; CMU->CTRL &= 0<<1|0<<0; //HFXO Mode: XTAL CMU->OSCENCMD
in „SHT25 über EFM32-G8XX-DK auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Demo.c
#include <SI_EFM8BB1_Register_Enums.h> #define SBUF SBUF0 #define SCON SCON0 #define TI SCON0_TI #define TR1 TCON_TR1 // long delay void delay (unsigned char val) { volatile short idx, cnt; for (idx=0; idx<=val; idx
in „Wie ein Byte über den UART ausgeben?“ · Mikrocontroller und Digitale Elektronik ·
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Hardware-Layout einer EFM32-G8XX-STK Entwicklungsplatine
Figure 3.1. EFM32-G8XX-STK hardware layout Board controller indicator LED USB interface J-Link indicator LED Battery socket Battery switch 32 kHz crystal User LEDs 32 MHz crystal EFM32 MCU Touch slider and button Touch pad output EFM32 debug EXP header Debug indicator LED Debug in/out interface LCD Breakout pads on board edges
in „Evalsysteme Energy Micro bzw. Silicon Labs“ · Markt · · Layouts
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Datei
IREF_UART_main.c
Includes //----------------------------------------------------------------------------- #include <SI_EFM8SB1_Register_Enums.h> // SFR declarations #include "InitDevice.h" #include <si_toolchain.h> // $[Generated Includes] //----------------------------------------------------------------------------- /
in „Dreistelligen Integer über UART ausgeben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
32-bit-USB-Debug-Adapter-253241.pdf
Ground) 6 SWO / TDO Serial Wire Output (for Serial Wire Viewer or SWV) or JTAG TDO 7 Not Connected 8 TDI JTAG TDI 9 GND (Ground) 10 RESETB This pin should be connected to the RESETB pin of the device. 1 3 5 7 9 2 4 6 8 10 Figure 2. 32-Bit USB Debug Adapter Connector 2 Rev. 0.2 32-Bit SiM3xxxx USB Debug
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Mikrocontroller auf Trays und lose
ATmega328P
in „[V] 10St Silabs 8051 er EFM8UB20F64G TQFP48 (13€)“ · Markt · · Fotos
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Integrierter Schaltkreis auf Schaumstoff
EFMB 0820F54G 90105G 1932 B
in „[V] 10St Silabs 8051 er EFM8UB20F64G TQFP48 (13€)“ · Markt · · Fotos
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Datei
Interrupts.c
======================================== // USER INCLUDES #include <IREF_UART_main.h> #include <SI_EFM8SB1_Register_Enums.h> #include "retargetserial.h" #include "SI_EFM8SB1_Defs.h" SI_SBIT(PA,SFR_P0,2); SI_SBIT(PB,SFR_P0,3); SI_SBIT (LED0, SFR_P1, 1); // '1' means ON, '0' means OFF #ifdef SDCC #include
in „Wie ein Byte über den UART ausgeben?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schematic.pdf
25q80bvsig 1 1 hk32f-g-005-hs 4 1 C 4 OUT B 2 N - 2 2 B D 1 C VCC-3V3 A 3 VCC_BAR C 3 L 2 3 VCC-3V3 4 K1 8 6 VCC_BAR VDD=VCC-3V3 PTH R | 1 J U5 HK32F-G-005-HS R D1 LED_CA 2 P0.0 P1.0 14RFLED R9 1 R21 2 KEY 1 2 1 2 E-FW VCC=VCC-3V3 D3 1 P0efm8bb1.1 13 0R|J|0603 0R|J|0603 2 3 U4 D2 20 P0.2 P1.2 11 Q1 D T 433Module
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Datei
system_init.c
system_init.h" #include "em_cmu.h" #include "em_gpio.h" #include "em_i2c.h" #include "em_vcmp.h" //#include "efm32zg108f16.h" #include "efm32zg222f8.h" #include "slave_i2c_interface.h" void clock_init(void) { //-->using HFRCO at 21MHz as high frequency clock, HFCLK CMU_ClockSelectSet(cmuClock_HF, cmuSelect_HFRCO
in „EFM32 I2C Startup hängt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CP2104-EK.pdf
powers the other components (four green LEDs and RS232 Sipex Part) on the evaluation board. Rev. 0.8 5 CP2104-EK 7. Schematic c a m h c S a o B o a l v E 0 1 P . 4 r g F 6 Rev. 0.8 CP2104-EK D OCUMENT C HANGE L IST Revision 0.1 to Revision 0.2 Updated "6.4. Power Connector (J4)" on page 5 to reflect
in „[V] kleines Eval Kit Silabs CP2104-EK ( USB- RS232)“ · Markt ·
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152291_hmip_broll_km.pdf
R6 +12V 4 FB D2 47K D3 MP1 MP2 MP3 MP4 VDD 2 BYG20J KL1 C4 C5 1N4148W C6 C7 L1 R2 D1 L2 6 DRAIN 5 8 7 R 1 N 1K 3300uH 8 DRAIN 50Vn 50V 25V 50Vn R Ferrit GS1MDWG DRAIN L3 2 C1 D SI-R 9 DRAIN V VDR 275V 10 DRAIN GND 1 1 10n 250mW C2 + C3 + C8 1000uH/0,15A SI1 310V-AC/ X2 R3 2u2 2u2 COMP 5 27K L 400V
in „Homematic Jalousieaktor Umbau auf Roto 24 NT“ · Haus & Smart Home ·
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C8051F02x-DK.pdf
may be connected to the DB-9 connector and transceiver by installing shorting blocks on headers J6, J8, J9 and J10. J6 - Install shorting block to connect UART0 TX (P0.0) to the transceiver. J9 - Install shorting block to connect UART0 RX (P0.1) to the transceiver. J8 - Install shorting block to connect
in „C8051F020 flashen geht nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schalter.pdf
2 JP11 MountingHole_Pad MountingHole_Pad 0 Ohm SolderJumper_2_Open C3225X7R1N106K250AC 6 1 6 1 2 JP8 1 2 3 1 1 2 7 2 7 2 SolderJumper_2_Open 8 3 8 3 1 2 2 JP12 9 4 9 4 C11 Jumper_NC_Dual A C2 5 5 C3225X7R1N106K250AC A C3225X7R1N106K250AC 1 Diverses 1 2 GNDPWR C9 W 1µ, 16V R7 S d Für eine Halbbrücke:
in „Reglermodul für mechatronische Systeme“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Verfuegbare_Teile.pdf
PS - 5S 20 640 768 83 Omron 61F - GP - N2 6 144 172.8 84 Omron H3CR - A8E 1 46 55.2 85 Omron H2C - 8 4 364 436.8 86 Euchner STM1N - 222B024 - M 2 368 441.6 87 Euchner STM2N - 222B024 - M 1 184 220.8 88 Euchner NM01VZA - M 10 330 396 89 Euchner NM02VZA -
in „[V] Diverses Elektromaterial. Lagerauflösung.“ · Markt ·
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Datei
settings.xml
at91rm9200 file="target/at91rm9200.cfg" /> <at91sam3ax_4x file="target/at91sam3ax_4x.cfg" /> <at91sam3ax_8x file="target/at91sam3ax_8x.cfg" /> <at91sam3ax_xx file="target/at91sam3ax_xx.cfg" /> <at91sam3nXX file="target/at91sam3nXX.cfg" /> <at91sam3sXX file="target/at91sam3sXX.cfg" /> <at91sam3u1c file="target
in „STM32 - Code-Blocks + GCC + GDB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LoopController.pdf
2,6304 V) +2.466 V = 0 V H14 5 Summe - A +VDC TX R9 C23 C24 A VDD Vdrive Vdrive H15 470k PI D1 JP3 JP8 R8 RX U3D VPP 10k Wahl Wahl Iprop TSV524xIQ4T 3 1 1 3 + 12 R25 C29 2 U1 2 PD2-Anteil 14 470k PD L1 LM5165 13 Summe L GNDD C14 C17 3 2 1 0 9 8 7 6 5 - 1 SW VIN 2 4µ7 4µ7 3 3 3 3 2 2 2 2 2 R20 7 C15 GNDA
in „Reglermodul für mechatronische Systeme“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TEK-222_RS232_120924.pdf
0831072A520002006C6E6D6E6E6E6C6D6D6D6E6D6E6E6D6D6D6E6D6D6D6D6D6E6D6D6D6C6D6E6E6E6E6D6D6D6D6C6D6C6D6E6C6D6E6C6D6D6C6D6E6D6D 6D6D6D6D6D6C6E6D6E6E6DA6A8A8A8A7A8A8A8A8A8A8A8A8AAA8A9A8A8A6A8A8A7A7A8A8A7A8A8A8A7A7A6A7A8A8A8A7A9A9A8A8A8A8A8A8A7A8A8A7A8A7A7A 7A7A8A8A7A8A8A7A8A7A7A8A7A7A8A8A7A7A8A8A7A7A8A9A8A8A8A7A7A7A8A8A8A8A7A8A8A8A6A8A8A8A9A8A8A8A8A8A7A7A8A7A7A7A8A8A7A7A7A7A8A7A6A7
in „Tektronix TEK-222“ · Markt ·
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PDF
PCF7922ATT.pdf
EROM described below. E-ROM PCF7922 (4 KB) 1FFDH 9.1 Application Code Memory 1FFEH reserved PCF7922 (8 KB) The PCF7922ATT provides up to 16 kByte of Application 3FFDH 3FFEH reserved Code. Each instruction consists of 16 bit and thus occupies PCF7922 (16 KB) two bytes, see Figure 8. Figure 8. Application
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LoopController-V3.pdf
Soll, till PID = Sum = Null. 3) The output of araound 38 V can source LM6165 or DRV8876 directly 3 EFM8BB3 22 nCS JP1 VDD P1.3 U2B Reset 4 RSTB_/_C2CK P1.4 21 Fault Use case via I2C as an common ADC/DAC R49 TSV912IQ2T 2.8 - 3.5 V for VDD: (5:1) 5 * 0,036 MOhm = 180k 1 Boot Bootloader 5 20 DO Control
in „Reglermodul für mechatronische Systeme“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
cp2104.pdf
supported USB bus powered: 4.0 to 5.25 V Four GPIO signals for status and control I/O voltage: 1.8 V to DD Configurable I/O (1.8 V to VDD) using VIOpin Package Configurable I/O (VDD to 5 V) using external pull-up RoHS-compliant 24-pin QFN (4x4 mm) RS-485 mode with bus transceiver control Ordering
in „Frage zu CP2102N und CP2104“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CP2102.pdf
Output High Voltage OH = –10 µA VDD – 0.1 — — VOH OH = –3 mA VDD – 0.7 — — V V — IOH = –10 mA — DD – 0.8 Output Low Voltage I = 10 µA — — 0.1 OL VOL OL = 8.5 mA — — 0.6 V OL = 25 mA — 1.0 — Input High Voltage VIH 2.0 — — V V — — 0.8 V Input Low Voltage IL CP2109 Output High Voltage OH = –10 µA VDD – 0.1
in „USB to UART CP2102 Schema“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CP2102-9.pdf
Output High Voltage OH = –10 µA VDD – 0.1 — — VOH OH = –3 mA VDD – 0.7 — — V V — IOH = –10 mA — DD – 0.8 Output Low Voltage I = 10 µA — — 0.1 OL VOL OL = 8.5 mA — — 0.6 V OL = 25 mA — 1.0 — Input High Voltage VIH 2.0 — — V V — — 0.8 V Input Low Voltage IL CP2109 Output High Voltage OH = –10 µA VDD – 0.1
in „[V] 25St. Silabs CP2102N (QFN24) USB to UART Bridge (10St für 12€)“ · Markt ·
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CP2110.pdf
Asynchronous Serial Data Bus (UART) Interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .17 8. GPIO Pins . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .18 8.1. GPIO.0—Clock Output . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .19 8.2. GPIO.1-2—Hardware Flow Control (RTS and CTS) . . . . . . . . . . . . . . . . . . . . . . . . .19 8.3. GPIO.3—RS-485 Transceiver Bus Control . . . . . . . . . . . . . . . . . . . . . . . . . . . .
in „[V] 10St. Silabs CP2110 Single-Chip HID USB to UART (10€)“ · Markt ·
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PDF
CP2110.pdf
Asynchronous Serial Data Bus (UART) Interface . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .17 8. GPIO Pins . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .18 8.1. GPIO.0—Clock Output . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .19 8.2. GPIO.1-2—Hardware Flow Control (RTS and CTS) . . . . . . . . . . . . . . . . . . . . . . . . .19 8.3. GPIO.3—RS-485 Transceiver Bus Control . . . . . . . . . . . . . . . . . . . . . . . . . . . .
in „[V] 10St. Silabs CP2110 Single-Chip HID USB to UART (10€)“ · Markt ·