ATXMEGA128B3-MH

Microchip Technology
556-ATXMEGA128B3-MH
ATXMEGA128B3-MH

Gam.:

Aprašymas:
8 bitų mikrovaldikliai - MCU 8/16-bit AVR MCU

ECAD modelis:
Atsisiųskite nemokamą Library Loader, kad galėtumėte konvertuoti šį failą darbui su ECAD įrankiu. Sužinokite daugiau apie ECAD Modelį.

Prieinamumas

Turime sandėlyje:
Ne Sandėlyje Esantys
Gamintojo numatytas pristatymo laikas
4 Savaičių Apytikriai apskaičiuotas gamybos laikas gamykloje.
Min. 260   Užsakoma po 260
Vieneto kaina:
-,-- €
Plėt. Kaina:
-,-- €
Numatomas Įkainis:
Šis Produktas Siunčiamas NEMOKAMAI

Kainodara (EUR)

Qty. Vieneto kaina
Plėt. Kaina
4,59 € 1 193,40 €

Produkto Požymis Atributo vertė Pasirinkite Požymį
Microchip
Gaminio kategorija: 8 bitų mikrovaldikliai - MCU
RoHS:  
AVR
128 kB
8 kB
QFN-64
32 MHz
12 bit
36 I/O
1.6 V
3.6 V
SMD/SMT
8 bit/16 bit
- 40 C
+ 85 C
XMEGA B3
Tray
Analoginė maitinimo įtampa: 1.6 V to 3.6 V
Prekės Ženklas: Microchip Technology
Duomenų RAM type: SRAM
Duomenų ROM dydis: 2 kB
Duomenų ROM type: EEPROM
Įvesties / išvesties įtampa: 1.6 V to 3.6 V
Interface Type: I2C, SPI, USART, USB
Jautrus drėgmei: Yes
ADC kanalų skaičius: 8 Channel
Laikmačių / skaitiklių: 2 Timer
Procesoriaus serija: AVR XMEGA
Gaminys: MCUs
Gaminio tipas: 8-bit Microcontrollers - MCU
Programos atminties tipas: Flash
Gamyklinės pakuotės kiekis: 260
Subkategorija: Microcontrollers - MCU
Prekinis pavadinimas: XMEGA
Laikmačiai Watchdog: Watchdog Timer
Vieneto Svoris: 206,300 mg
Rasta produktų:
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Pasirinkti atributai: 0

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TARIC:
8542319000
CNHTS:
8542319090
CAHTS:
8542310000
USHTS:
8542310015
JPHTS:
854231032
KRHTS:
8542311000
MXHTS:
8542310302
ECCN:
5A992.C

Functional Safety Solutions

Microchip Technology Functional Safety Solutions offer robustness, reliability, and safety to end-products. In some application segments, these requirements are formalized and mandatory, while in others, they are implemented to differentiate the product and take the step from a good product to an excellent product. The standards for functional safety depend on the market that is targeted. Many standards support multiple levels of rigorousness, which are applied depending on the likelihood and severity of the hazard. The methods of addressing hazards range from detecting single failures and putting the system into a safe state to full redundancy, where failures should not only be detected but also corrected without any interruption or degradation of service.

Atmel AVR ATXMEGA Microcontrollers with USB - INACTIVE

Atmel AVR ATXMEGA Microcontrollers with USB offers 3 data memory features and various peripheral features. AVR ATXMEGA256A3B Microcontrollers feature 256 KB of in-system self-programmable flash, 4 KB of EEPROM and 16 KB of internal SRAM. AVR ATXMEGA256A3U Microcontrollers feature 64-256 KB of in-system self-programmable flash, 2-4 KB of EEPROM and 4-16 KB of internal SRAM. AVR ATXMEGA32A4U Microcontrollers feature 16-128 KB of in-system self-programmable flash, 1-2 KB of EEPROM and 2-8 KB of internal SRAM. AVR ATXMEGA256A3U and ATXMEGA32A4U Microcontrollers offer USB device interface USB 2.0 full speed (12Mbps) and low speed (1.5Mbps) device compliant and 32 endpoints with full configuration flexibility. Typical applications for Atmel AVR ATXMEGA Microcontrollers include optical, climate control, HVAC and Zigbee®.
Learn More

AVR® XMEGA® 8/16-bit Microcontrollers

Microchip AVR XMEGA 8/16-bit Microcontrollers are low-power, high-performance and peripheral-rich CMOS 8/16-bit microcontrollers based on the AVR enhanced RISC architecture. By executing instructions in a single clock cycle, the Microchip AVR XMEGA 8/16-bit Microcontrollers achieve throughputs CPU approaching one million instructions per second (MIPS) per megahertz, allowing the system designer to optimize power consumption versus processing speed. AVR XMEGA 8/16-bit Microcontrollers combine a rich instruction set with 32 registers that are directly connected to the arithmetic logic unit (ALU), allowing two independent registers to be accessed in a single instruction, executed in one clock cycle. The resulting architecture is more code efficient while achieving throughputs many times faster than conventional single-accumulator or CISC based microcontrollers.