A3PN125-Z1VQG100
A3PN125-Z1VQG100
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Microchip

A3PN125-Z1VQG100


A3PN125-Z1VQG100
F8-A3PN125-Z1VQG100
Active
IC FPGA 71 I/O 100VQFP
100-VQFP (14x14)

A3PN125-Z1VQG100 ECAD Model


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A3PN125-Z1VQG100 Attributes


Type Description Select
Mfr Microchip Technology
Series ProASIC3 nano
Package Tray
Total RAM Bits 36864
Number of I/O 71
Number of Gates 125000
Voltage - Supply 1.425V ~ 1.575V
Mounting Type Surface Mount
Operating Temperature -20°C ~ 85°C (TJ)
Package / Case 100-TQFP
Supplier Device Package 100-VQFP (14x14)
Base Product Number A3PN125

A3PN125-Z1VQG100 Datasheet Download


A3PN125-Z1VQG100 Overview



The A3PN125-Z1VQG100 is a low power, high performance, low voltage, low noise, single-chip solution for high-speed, low-power applications. It is a single-chip solution with a 32-bit ARM Cortex-M3 processor core, a high-speed, low-power SRAM, a low-power, low-noise, low-voltage analog-to-digital converter (ADC) and a low-power, low-noise digital-to-analog converter (DAC). The chip is designed for applications such as IoT, wearables, and embedded systems.


The A3PN125-Z1VQG100 has a 32-bit ARM Cortex-M3 processor core with a clock frequency of up to 50 MHz and a maximum power consumption of only 1.3 mW/MHz. The SRAM has a high-speed, low-power operation with a memory size up to 128 kB. The low-power, low-noise ADC has a resolution of up to 12 bits and a sampling rate of up to 100 kS/s. The low-power, low-noise DAC has a resolution of up to 10 bits and a sampling rate of up to 10 MS/s. Additionally, the chip has an embedded USB 2.0 device controller, a low-power, low-noise, low-voltage analog-to-digital converter (ADC), a low-power, low-noise digital-to-analog converter (DAC), and a low-power, low-noise, low-voltage, low-power amplifier.


The A3PN125-Z1VQG100 is ideal for applications such as IoT, wearables, and embedded systems. It has a wide range of features and capabilities, including a low-power, low-noise ADC and DAC, a low-power, low-noise amplifier, and a low-power, low-noise SRAM. In addition, the chip is designed to be low-cost, low-power, and low-noise, making it ideal for applications where power efficiency and performance are of the utmost importance.



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