R5F524TAADFP#31

Renesas Electronics
968-R5F524TAADFP#31
R5F524TAADFP#31

Ürt.:

Açıklama:
32-bit Mikrodenetleyiciler - MCU 32BIT MCU RX24T 256K/16K QFP100

ECAD Modeli:
Bu dosyayı ECAD Aracınız için dönüştürmek için ücretsiz Library Loader dosyasını indirin. ECAD Model hakkında daha fazla bilgi edinin.

Stokta Var: 435

Stok:
435 Hemen Gönderilebilir
Fabrika Teslim Süresi:
14 Hafta Gösterilenden daha büyük miktarlar için fabrikada tahmini üretim süresi.
Minimum: 1   Çoklu: 1
Birim Fiyat:
-,-- €
Toplam Fiyat:
-,-- €
Tahmini Gümrük Vergisi:

Fiyatlandırma (EUR)

Miktar Birim Fiyat
Toplam Fiyat
4,44 € 4,44 €
3,14 € 31,40 €
2,80 € 252,00 €
2,66 € 718,20 €
2,57 € 1.387,80 €
2,55 € 2.754,00 €

Alternatif Ambalajlar

Ürt. Parça Numarası:
Paketleme:
Tray
Stok Durumu:
Stokta Var
Fiyat:
4,14 €
Min:
1

Ürün Niteliği Öznitelik Değeri Özellik Seçin
Renesas Electronics
Ürün Kategorisi: 32-bit Mikrodenetleyiciler - MCU
RoHS:  
RX24T
SMD/SMT
LFQFP-100
RXv2
8 kB
16 kB
32 bit
12 bit
80 MHz
80 I/O
2.7 V
5.5 V
- 40 C
+ 85 C
Tray
Analog Besleme Voltajı: 5.5 V
Marka: Renesas Electronics
DAC Çözünürlüğü: 8 bit
Veri RAM Tipi: SRAM
Veri ROM Boyutu: 256 kB
Veri ROM Tipi: ROM
Arayüz Türü: CAN, I2C, SCI, SPI, UART
Neme Duyarlı: Yes
ADC Kanal Sayısı: 17 Channel
İşlemci Serisi: RX24T
Ürün: MCUs
Ürün Tipi: 32-bit Microcontrollers - MCU
Program Bellek Türü: Flash
Fabrika Paket Miktarı: 90
Alt kategori:: Microcontrollers - MCU
Güvenlik Zamanlayıcısı: Watchdog Timer
Birim Ağırlık: 600 mg
Bulunan ürünler:
Benzer ürünleri göstermek için en az bir onay kutusu seçin
Bu kategorideki benzer ürünleri göstermek için yukarıda en az bir onay kutusu seçin.
Seçilen özellikler: 0

Bu işlev için JavaScript'in etkinleştirilmesi gerekir.

CNHTS:
8542319090
CAHTS:
8542310000
USHTS:
8542310025
TARIC:
8542319000
MXHTS:
8542310302
ECCN:
3A991.a.2

RX24T 80MHz 32-Bit Microcontrollers (MCUs)

Renesas Electronics RX24T 80MHz 32-Bit Microcontrollers (MCUs) are suited for dual inverter control. The RX24T has a built-in Floating-Point Unit (FPU) to easily program complex inverter control algorithms. This feature also allows the user to drive two motors simultaneously. These features also significantly reduce the time required for software development and maintenance. The Renesas RX24T microcontrollers operate in a wide voltage range from 2.7V to 5.5V, useful for inverter control.

RX200 32-Bit Microcontrollers

Renesas Electronics RX200 32-Bit Microcontrollers (MCUs) provide a balance between power efficiency and performance. These MCUs consume 0.12mA/MHz current during operation and only 0.8μA in standby mode (with RAM contents retained). The RX200 MCUs feature 54MHz maximum operating speed of the CPU and delivers high performance of 4.16 CoreMark/MHz. These MCUs support an operating voltage range of 1.62V to 5.5V. The RX200 MCUs come with peripheral function modules such as the MTU2 16-bit timer unit with advanced functionality, RTC, 12-bit A/D converter, and temperature sensor. These MCUs include numerous hardware options to assist the implementation of functional safety that simplifies the process of obtaining IEC 60730 certification for electric home appliances.

Air Duct System Solutions

Renesas Electronics Air Duct System Solutions demonstrate an air duct system that purifies the air inside homes by sensing the temperature, humidity, and air quality. This solution includes the RL78 microcontroller (MCU) series, which has a variety of functions, a wide lineup, and a standby function. This reduces current consumption to minimize standby power. The solution also includes the RX23T MCU that enables efficient motor control.

RX 32-bit Microcontrollers

Renesas Electronics RX 32-bit Microcontrollers (MCUs) are built around the high-performance RXv1/RXv2 CPU core and combine excellent operation performance with superior power efficiency. These MCUs come with various resources, such as Integrated Development Environments (IDE), debugging tools, programming tools, and middleware. The RX 32-bit MCUs consists of four product series such as RX700, RX600, RX200, and RX100. These MCUs share basic CPU architecture and peripherals and provide upward code compatibility. This maximizes design flexibility and facilitates software reuse.