
Allicdata Part #: | MCHC11F1VFNE3-ND |
Manufacturer Part#: |
MCHC11F1VFNE3 |
Price: | $ 13.29 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | NXP USA Inc |
Short Description: | IC MCU 8BIT ROMLESS 68PLCC |
More Detail: | HC11 HC11 Microcontroller IC 8-Bit 3MHz ROMless 6... |
DataSheet: | ![]() |
Quantity: | 1000 |
18 +: | $ 12.08620 |
Program Memory Type: | ROMless |
Base Part Number: | MCHC11 |
Supplier Device Package: | 68-PLCC (25x25) |
Package / Case: | 68-LCC (J-Lead) |
Operating Temperature: | -40°C ~ 105°C (TA) |
Oscillator Type: | Internal |
Data Converters: | A/D 8x8b |
Voltage - Supply (Vcc/Vdd): | 4.75 V ~ 5.25 V |
RAM Size: | 1K x 8 |
EEPROM Size: | 512 x 8 |
Series: | HC11 |
Program Memory Size: | -- |
Number of I/O: | 30 |
Peripherals: | POR, WDT |
Connectivity: | SCI, SPI |
Speed: | 3MHz |
Core Size: | 8-Bit |
Core Processor: | HC11 |
Part Status: | Not For New Designs |
Packaging: | Tube |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
The MCHC11F1VFNE3 microcontroller is a powerful embedded device for making connections and controlling various peripheral devices, especially in industries where a small form factor is needed. With its high clock speed and its advanced architecture, the MCHC11F1VFNE3 is a great choice for applications requiring speed, auditability, and reliability.
The main feature of the MCHC11F1VFNE3 is its high clock speed of up to 150MHz. This makes it ideal for applications where quick responses are necessary, such as real-time feedback applications or running complex algorithms. The device also has analog capabilities, for connecting external sensors or device signals. It has a variety of power-management options, for optimal performance in mobile or embedded applications. Additionally, with its 128KB of RAM and 4KB of boot ROM, the MCHC11F1VFNE3 can store large amounts of data, improving the chances of success in any application.
The MCHC11F1VFNE3 has a range of features that make it a popular choice for embedded applications. Its small form factor means it can fit into narrow spaces, while being powerful enough to control complex tasks. Its ability to operate on low power makes it great for embedded designs, as it can remain active without drawing too much current. The device is also very reliable, as it is designed to withstand harsh environmental conditions, such as extreme temperatures and vibrations. Additionally, its complexity is easily manageable, as its on-chip debugging and test facilities make it easier to diagnose issues.
The MCHC11F1VFNE3 is capable of performing a wide range of tasks, ranging from low-level data collection to high-level system-level control. Its high speed makes it great for applications such as motor control, as it can quickly follow feedback signals to provide high precision. Its analog capabilities also make it suitable for real time measurements, such as voltage and temperature, or for machine vision applications. Additionally, its communication peripherals make it ideal for embedded systems, as it can easily connect to external devices. Finally, its large onboard RAM enables applications such as artificial intelligence, as it can store data and run algorithms.
The MCHC11F1VFNE3\'s working principle is based on the ARM Cortex-M0 microcontroller core. Like any microcontroller, it is programmed using instructions written using a high-level language such as C or C++. These instructions will be stored on the device\'s flash memory and will be executed by the processor. The instructions tell the controller how to interact with the various peripherals connected to it, as well as what action to take based on certain inputs. Once the controller is programmed, it will run the instructions and complete its given task continuously.
In summary, the MCHC11F1VFNE3 is a powerful microcontroller for embedded systems, due to its efficient architecture and its ability to operate on low power. Its wide range of features, as well as its on-chip debugging and test facilities, make it suitable for a variety of applications, from low-level data collection to high-level system-level control. Additionally, its working principle is based on the ARM Cortex-M0 microcontroller core, which relies on instructions written in a high-level language.
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