PIC18F87K90-E/PT

Microchip Technology
579-PIC18F87K90-E/PT
PIC18F87K90-E/PT

Gam.:

Aprašymas:
8 bitų mikrovaldikliai - MCU 128KB Flash,4KB RAM LCD

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

Prieinamumas: 4 342

Turime sandėlyje:
4 342 Galime išsiųsti iš karto
Gamintojo numatytas pristatymo laikas
6 Savaičių Apytikriai apskaičiuotas gamybos laikas gamykloje, jei dalių kiekis didesnis nei nurodyta.
Min. 1   Užsakoma po 1
Vieneto kaina:
-,-- €
Plėt. Kaina:
-,-- €
Numatomas Įkainis:

Kainodara (EUR)

Qty. Vieneto kaina
Plėt. Kaina
5,65 € 5,65 €
4,70 € 117,50 €
4,69 € 558,11 €
10 115 Pasiūlymas

Produkto Požymis Atributo vertė Pasirinkite Požymį
Microchip
Gaminio kategorija: 8 bitų mikrovaldikliai - MCU
RoHS:  
PIC18
128 kB
4 kB
TQFP-80
64 MHz
12 bit
69 I/O
1.8 V
5.5 V
SMD/SMT
8 bit
- 40 C
+ 125 C
PIC18F8xK90
Tray
Prekės Ženklas: Microchip Technology
Duomenų RAM type: SRAM
Interface Type: I2C, SPI
Jautrus drėgmei: Yes
ADC kanalų skaičius: 24 Channel
Laikmačių / skaitiklių: 11 Timer
Procesoriaus serija: PIC18
Gaminys: MCUs
Gaminio tipas: 8-bit Microcontrollers - MCU
Programos atminties tipas: Flash
Gamyklinės pakuotės kiekis: 119
Subkategorija: Microcontrollers - MCU
Prekinis pavadinimas: PIC
Vieneto Svoris: 366,700 mg
Rasta produktų:
Norėdami rodyti panašius produktus, pažymėkite bent vieną langelį
Pasirinkite bent vieną žymimąjį langelį, kad būtų rodomi panašūs šios kategorijos produktai.
Pasirinkti atributai: 0

Kad ši funkcija veiktų, reikia įjungti „JavaScript“.

Reglamentavimo kodai
TARIC:
8542319000
CNHTS:
8542319090
CAHTS:
8542310000
USHTS:
8542310075
JPHTS:
8542310324
KRHTS:
8542311000
MXHTS:
8542310399
ECCN:
3A991.a.2
Klasifikacija pagal kilmę
Kilmės šalis:
Tailandas
Šalis, kurioje pagaminta:
Ne
Distribucijos šalis:
Ne
Šalis gali keistis siuntimo metu.

PIC18F K90 nanoWatt XLP™ Microcontrollers

Microchip Technology PIC18F K90 nanoWatt XLP™ Microcontrollers, featuring nanoWatt XLP technology and the Charge Time Measurement Unit (CTMU) module, provide ideal solutions for battery-powered LCD applications utilizing touch interfaces. With up to 24 channels of capacitive touch sensing, these MCUs enable high system integration, combining large segmented LCDs with the capability for a high number of touch sliders, buttons, and keys or touch screen technology. Industry-leading low power operation exhibited by these microcontrollers helps to extend battery life in applications such as portable medical devices, thermostats, security systems, utility meters, small appliances, and electronic door locks.

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.

Automotive 8-Bit Microcontrollers

Microchip Technology Automotive 8-Bit Microcontrollers include MCUs with the PIC® and AVR® architecture. Capturing the best features of both architectures enables Microchip to offer plentiful solutions for every type of automotive system. From Human Machine Interface (HMI) applications based on touch technology to underhood applications requiring high-temperature robustness to simple watchdog-type applications requiring a small form factor, users can find extensive options that meet specific requirements.

eXtreme Low Power XLP Microcontrollers

Microchip Technology eXtreme Low Power XLP Microcontrollers (MCUs) with nanoWatt Technology are useful in designing embedded applications with extremely low power consumption. These devices offer a typical current consumption of less than 100nA for Power Down current (IPD), 800nA Watchdog Timer current (IWDT), and 800nA Real-time Clock and Calendar (IRTCC).