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SLG46620V

SLG46620V

Renesas
A GreenPAK variant suitable for compact signal-conditioning and state-machine implementations.
Active2,527 in stock

Overview

The SLG46620V is a GreenPAK programmable mixed-signal matrix designed to integrate common system functions into a single ultra-small STQFN package. It provides a flexible collection of macrocells including logic, timers, and analog components that allow engineers to replace dozens of discrete components while maintaining extremely low power consumption as low as 0.28uA at 1.8V.

Why Choose This Part

This device offers significant board space savings by consolidating discrete logic, comparators, and timers into a 2mm x 3mm footprint. Its highly versatile macrocells and wide operating voltage range (1.71V to 5.5V) make it an ideal choice for power-sensitive applications where minimizing standby current is critical.

Applications

System Reset and Power Sequencing
Implement complex power-on reset (POR) sequences and multi-rail monitoring without a dedicated microcontroller.
Signal Conditioning
Utilize the internal 8-bit ADC and DACs for basic analog sensor processing and threshold detection.
I/O Expansion and Level Shifting
Bridge multiple voltage domains ranging from 1.71V to 5.5V while adding 17 additional I/O lines to a host processor.
Hardware State Machines
Offload timing-critical logic and debounce circuits from the main MCU to dedicated hardware macrocells.

Key Specifications

Mounting Type Surface Mount
Number of I/O 17
Package / Case 20-UFQFN
Number of Gates 2
Programmable Type OTP
Number of Macrocells 1
Operating Temperature -40degC ~ 85degC (TA)
Supplier Device Package 20-STQFN (2x3)
Voltage Supply - Internal 1.71V ~ 1.89V, 3V ~ 3.6V, 4.5V ~ 5.5V

Getting Started

Development is performed using the Renesas GreenPAK Designer software, which provides a schematic-based GUI for configuring macrocells and routing. For hardware prototyping, the SLG46620V-DIP evaluation board can be used with the GreenPAK Advanced Development Platform to program and emulated designs via USB.

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