Microchip ATXMEGA32E5-MU, 16 bit AVR, ATXMEGA32E5 Microcontroller, 32 MHz, 32kB FLASH, 32-Pin VQFN
- RS-stocknr.:
- 133-1731
- Fabrikantnummer:
- ATXMEGA32E5-MU
- Fabrikant:
- Microchip
Bulkkorting beschikbaar
Subtotaal (1 verpakking van 2 eenheden)*
€ 6,19
(excl. BTW)
€ 7,49
(incl. BTW)
GRATIS bezorging voor bestellingen vanaf € 75,00
Op voorraad
- 142 stuk(s) klaar voor verzending vanaf een andere locatie
Heeft u meer nodig? Klik op 'Controleer leverdata' voor extra voorraad en levertijden.
Aantal stuks | Per stuk | Per verpakking* |
|---|---|---|
| 2 - 8 | € 3,095 | € 6,19 |
| 10 - 22 | € 3,02 | € 6,04 |
| 24 - 98 | € 2,935 | € 5,87 |
| 100 + | € 2,87 | € 5,74 |
*prijsindicatie
- RS-stocknr.:
- 133-1731
- Fabrikantnummer:
- ATXMEGA32E5-MU
- Fabrikant:
- Microchip
Specificaties
Datasheets
Wetgeving en conformiteit
Productomschrijving
Zoek vergelijkbare producten door een of meer kenmerken te selecteren.
Alles selecteren | Attribuut | Waarde |
|---|---|---|
| Merk | Microchip | |
| Series | ATXMEGA32E5 | |
| Product Type | Microcontroller | |
| Package Type | VQFN | |
| Mount Type | Surface | |
| Pin Count | 32 | |
| Device Core | AVR | |
| Data Bus Width | 16bit | |
| Program Memory Size | 32kB | |
| Interface Type | PDI, SPI, TWI, USART | |
| Maximum Clock Frequency | 32MHz | |
| RAM Size | 4kB | |
| Maximum Supply Voltage | 3.6V | |
| Minimum Operating Temperature | -40°C | |
| Number of Programmable I/Os | 26 | |
| Analogue Comparators | 2 | |
| Maximum Operating Temperature | 85°C | |
| Standards/Approvals | No | |
| Length | 5mm | |
| Height | 0.85mm | |
| Width | 5 mm | |
| Minimum Supply Voltage | 1.6V | |
| Number of Timers | 1 | |
| Automotive Standard | ISO/TS 16949 | |
| ADCs | 16 x 12 Bit | |
| Instruction Set Architecture | RISC | |
| Program Memory Type | FLASH | |
| Alles selecteren | ||
|---|---|---|
Merk Microchip | ||
Series ATXMEGA32E5 | ||
Product Type Microcontroller | ||
Package Type VQFN | ||
Mount Type Surface | ||
Pin Count 32 | ||
Device Core AVR | ||
Data Bus Width 16bit | ||
Program Memory Size 32kB | ||
Interface Type PDI, SPI, TWI, USART | ||
Maximum Clock Frequency 32MHz | ||
RAM Size 4kB | ||
Maximum Supply Voltage 3.6V | ||
Minimum Operating Temperature -40°C | ||
Number of Programmable I/Os 26 | ||
Analogue Comparators 2 | ||
Maximum Operating Temperature 85°C | ||
Standards/Approvals No | ||
Length 5mm | ||
Height 0.85mm | ||
Width 5 mm | ||
Minimum Supply Voltage 1.6V | ||
Number of Timers 1 | ||
Automotive Standard ISO/TS 16949 | ||
ADCs 16 x 12 Bit | ||
Instruction Set Architecture RISC | ||
Program Memory Type FLASH | ||
8/16-Bit AVR XMEGA Microcontrollers
Atmel AVR XMEGA microcontrollers deliver the best possible combination of real-time performance, high integration and low power consumption for 8/16-bit MCU applications.
Atmel AVR XMEGA devices employ advanced analogue-to-digital converters (ADCs) that deliver both high speed and high resolution. These ADCs offer up to four conversion channels with different result registers, which can have different setup and configuration processes. This provides easier use since different software modules can access and use an ADC independently.
The Event System facilitates inter-peripheral signaling for short and 100% predictable response time. This ensures real-time control, and also offloads the CPU because each time an event is used, one interrupt with context switch is eliminated. Most of the peripherals and the DMA controller are connected to the Event System. The AVR XMEGA E series features an asynchronous peripheral Event System instead.
The AVR XMEGA 4-channel direct memory access (DMA) controller can be used for fast, CPU-independent data transfer between any combination of data memory and peripherals.
AVR XMEGA devices use the Atmel AVR CPU. The instruction set and design of the CPU are tuned to minimize code size and maximize execution speed. Its true single-cycle execution of arithmetic and logic operations means AVR XMEGA microcontrollers perform close to 1MIPS per MHz. The fast-access register file with 32 x 8-bit general-purpose working registers is directly connected to the arithmetic logic unit (ALU). During a single clock cycle, the ALU can be fed two arbitrary registers, do a requested operation, and write back the result. It provides efficient support for 8-, 16- and 32-bit arithmetic.
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