DS5003FPM-16+ Allicdata Electronics
Allicdata Part #:

DS5003FPM-16+-ND

Manufacturer Part#:

DS5003FPM-16+

Price: $ 16.05
Product Category:

Integrated Circuits (ICs)

Manufacturer: Maxim Integrated
Short Description: IC MCU 8BIT NVSRAM 80QFP
More Detail: 8051 DS500x Microcontroller IC 8-Bit 16MHz Externa...
DataSheet: DS5003FPM-16+ datasheetDS5003FPM-16+ Datasheet/PDF
Quantity: 28
1 +: $ 14.59080
10 +: $ 13.76800
25 +: $ 11.01410
Stock 28Can Ship Immediately
$ 16.05
Specifications
Program Memory Type: NVSRAM
Base Part Number: DS5003
Supplier Device Package: 80-QFP (14x20)
Package / Case: 80-BQFP
Operating Temperature: 0°C ~ 70°C (TA)
Oscillator Type: External
Data Converters: --
Voltage - Supply (Vcc/Vdd): 4 V ~ 5.5 V
RAM Size: --
EEPROM Size: --
Series: DS500x
Program Memory Size: External
Number of I/O: 32
Peripherals: Power-Fail Reset, WDT
Connectivity: EBI/EMI, SIO, UART/USART
Speed: 16MHz
Core Size: 8-Bit
Core Processor: 8051
Part Status: Active
Packaging: Tray 
Description

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 DS5003FPM-16+ (also referred to as the FPM-16+) is an embedded microcontroller manufactured by Texas Instruments (TI). The FPM-16+ is a high-performance, low-cost microcontroller with an ARM Cortex-M3 core and a single-chip 16-bit µP extended to 32-bits with a powerful 16-bit multiply-accumulate instruction. It is designed to have low power consumption, allowing it to be used in applications such as portable medical devices, aerospace systems and smart home automation applications, among others.

The FPM-16+ is designed with a 32-bit ARM Cortex-M3 core, allowing it to be used in applications requiring high performance and low power consumption. It has up to 512 KB of on-chip Flash memory and up to 32 KB of RAM, ensuring its capability to store large amounts of data and provide ample space for executing related tasks. Additionally, the processor includes 4 16-bit timers, a 4-channel DMA controller and an 8-channel ADC, which can be used to capture and process data from multiple sources concurrently. Due to its low power consumption, the FPM-16+ can be power disrupted and dynamically reconfigured to execute various tasks with its on-chip resources.

In terms of communication, the FPM-16+ has a variety of peripheral serial I/O interfaces, including SPI, I2C, UART and CAN. These interfaces allow the processor to communicate with other peripherals and external devices, such as memory and sensors. Additionally, the FPM-16+ is equipped with an Ethernet controller, which allows communication with networked devices over a wired connection. This allows the processor to be used in applications requiring a high data transmission rate and low latency.

The FPM-16+ can be used in numerous applications, including but not limited to, portable medical devices, aerospace systems, automotive systems, industrial automation and control systems, consumer electronics, and smart home automation. Its low power consumption and high performance make it an ideal choice for any application requiring small form factors and high performance.

The FPM-16+ operates on a RISC architecture and supports a range of software development tools, allowing developers to quickly and easily write software and applications for the microcontroller. The processor utilizes a Harvard architecture, allowing developers the ability to prioritise instruction and data transfers. Additionally, the FPM-16+ has a wide range of advanced instruction set extensions, allowing developers to write highly optimised programs.

In terms of security, the FPM-16+ has an integrated secure bootloader, which allows the processor to be securely programmed. This reduces the potential for malicious code to be executed on the processor. Additionally, the processor supports asymmetric encryption algorithms and secure hash algorithms, which allow for secure communication with other devices and systems.

Overall, the FPM-16+ is a powerful and low-cost microcontroller, capable of handling applications requiring high performance and low power consumption. Its robust instruction set and wide range of features make it an ideal choice for any application requiring a high level of embedded intelligence and control.

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

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