ML620Q156A-NNNTBWATL Allicdata Electronics
Allicdata Part #:

ML620Q156A-NNNTBWATLTR-ND

Manufacturer Part#:

ML620Q156A-NNNTBWATL

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: ROHM Semiconductor
Short Description: IC MCU 16BIT 64KB FLASH 52TQFP
More Detail: nX-U16/100 ML620100 Microcontroller IC 16-Bit 8.4M...
DataSheet: ML620Q156A-NNNTBWATL datasheetML620Q156A-NNNTBWATL Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Program Memory Size: 64KB (32K x 16)
Supplier Device Package: 52-TQFP (10x10)
Package / Case: 52-TQFP
Operating Temperature: -40°C ~ 105°C (TA)
Oscillator Type: Internal
Data Converters: A/D 12x10b
Voltage - Supply (Vcc/Vdd): 1.8 V ~ 5.5 V
RAM Size: 2K x 8
EEPROM Size: 1K x 16
Program Memory Type: FLASH
Series: ML620100
Number of I/O: 34
Peripherals: POR, PWM, WDT
Connectivity: I²C, SPI, UART/USART
Speed: 8.4MHz
Core Size: 16-Bit
Core Processor: nX-U16/100
Part Status: Obsolete
Packaging: Tape & Reel (TR) 
Description

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The ML620Q156A-NNNTBWATL is an 8-bit microcontroller with features designed to meet the needs of embedded applications. It is capable of functioning as both a standalone device as well as a connected peripheral device. The ML620Q156A-NNNTBWATL is a highly integrated microcontroller that is capable of handling a wide range of tasks. It has a core processing unit (CPU) that is capable of executing instructions at up to 8 million cycles per second, and the device contains 256K of flash memory, with additional RAM and ROM options available. The ML620Q156A-NNNTBWATL has integrated two analog-to-digital converters (ADCs), two serial ports, two pulse-width modulation (PWM) outputs, a real-time clock (RTC), an external bus interface (EBI), a watchdog timer, and an internal oscillator. It also contains multiple SFRs (status flags) that provide information about the current state of the system.

The ML620Q156A-NNNTBWATL is designed to work in a variety of embedded applications, ranging from small applications (such as smart meters and home automation systems) to larger-scale embedded communications (such as industrial control systems). It can be used in both wired and wireless systems, either as the main processing unit or as a peripheral system. The ML620Q156A-NNNTBWATL is capable of handling a variety of tasks, including analog data acquisition, digital signal processing, communication system interfacing, and microprocessor-based control.

The ML620Q156A-NNNTBWATL\'s working principle is based on the Von Neumann architecture. This architecture is used in many types of microcontrollers, including the ML620Q156A-NNNTBWATL. It is based on the idea that the processor should have access to both data and instructions at the same time. This allows the processor to rapidly access the data required for any task, and to execute the instruction set associated with it. In the Von Neumann architecture, the processor has access to data and instructions that can be stored in either RAM or ROM. The processor also has an internal address space, which is used to access the data and instructions stored in either RAM or ROM. This enables the processor to quickly and easily access any data or instruction it requires.

The ML620Q156A-NNNTBWATL uses a Harvard architecture, which is similar to the Von Neumann architecture but with some critical differences. The Harvard architecture uses separate areas for both data and instructions, allowing for more efficient access to each. This is accomplished by having two buses- one for data and one for instructions. This allows the processor to access both data and instructions at the same time, allowing for faster execution of instructions. Additionally, the Harvard architecture also includes an instruction cache, which can store frequently used instructions for faster access.

The ML620Q156A-NNNTBWATL is a powerful and versatile 8-bit microcontroller that can be used in a variety of embedded applications. It is capable of handling a wide range of tasks, including analog data acquisition, digital signal processing, communication system interfacing, and microprocessor-based control. The device incorporates the Von Neumann and Harvard architectures, allowing for fast and efficient instruction set execution. It also features 256K of flash memory, two analog-to-digital converters, two serial ports, two pulse-width modulation outputs, a real-time clock, and an external bus interface.

The specific data is subject to PDF, and the above content is for reference

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