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SLG47004V

RENSLG47004V

Renesas Electronics Corporation
IC CPLD 20MC 24STQFN
Active3,632 in stock

Overview

The SLG47004V is a highly integrated GreenPAK Advanced Analog Mixed-Signal Matrix that combines programmable logic with sophisticated analog features. It features two programmable bandwidth op-amps, two 1024-position digital rheostats, and an instrumentation amplifier function, allowing engineers to implement complex analog front-ends and control loops in a tiny 3x3mm STQFN package.

Why Choose This Part

This device reduces BOM count by integrating analog switches, comparators, and voltage references with a programmable logic fabric. Its ultra-low power consumption and wide supply range of 2.3V to 5.5V make it ideal for power-constrained designs requiring flexible analog signal processing.

Applications

Software-Controlled Analog Gain
Utilizing the integrated digital rheostats and programmable op-amps to create variable gain amplifiers that can be tuned over I2C.
Precision Sensor Interfacing
Implementing a 3-op amp instrumentation amplifier configuration for low-noise bridge sensor measurement and signal conditioning.
Dynamic System Calibration
Using the 256 bytes of EEPROM and auto-trim options to store and apply offset and gain correction factors for analog circuits.
Custom Hardware Watchdogs
Configuring the combination function macrocells and counters to monitor system health and reset external components via the 7 available I/O pins.

Key Specifications

Mounting Type Surface Mount
Number of I/O 7
Package / Case 24-UFQFN
Programmable Type In System Programmable
Number of Macrocells 20
Operating Temperature -40degC ~ 85degC (TA)
Supplier Device Package 24-STQFN (3x3)
Voltage Supply - Internal 2.3V ~ 5.5V

Getting Started

Designers should download the Renesas Go Configure Software Hub to use the GreenPAK Designer graphical interface for schematic-based configuration. For hardware evaluation, the SLG47004-SKIT provides a socketed development platform to test configurations before permanent programming.

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