Features
- Logic & Mixed Signal Circuits
- Highly Versatile Macro Cells
- Read Back Protection (Read Lock)
- 1.8 V (±5%) to 5 V (±10%) VDD
- 1.8 V (±5%) to 5 V (±10%) VDD2 (VDD2 ≤ VDD)
- Operating Temperature Range: -40°C to 85°C
- RoHS Compliant / Halogen-Free
Macrocells Overview
- Four Analog Comparators (ACMP);
- Two Voltage References (Vref);
- Seventeen Combination Function Macrocells:
- Three Selectable DFF/Latch or 2-bit LUTs;
- One Selectable Continuous DFF/Latch or 3-bit LUT;
- Four Selectable DFF/Latch or 3-bit LUTs;
- One Selectable Pipe Delay or 3-bit LUT;
- One Selectable Programmable Function Generator or 2-bit LUT;
- Five 8-bit delays/counters or 3-bit LUTs;
- Two 16-bit delays/counters or 4-bit LUTs;
- Asynchronous State Machine:
- Eight States;
- Flexible input logic from state transitions;
- Serial Communications:
- I2C Protocol compliant;
- Pipe Delay - 16 stage/3 output (Part of Combination Function Macrocell);
- Programmable Delay;
- Additional Logic Functions - 2 Deglitch Filters with Edge Detectors;
- Two Oscillators (OSC):
- Configurable 25 kHz/2 MHz;
- 25MHz Ring Oscillator;
- Crystal Oscillator;
- Eight Byte RAM + OTP User Memory:
- RAM Memory space that is readable and writeable via I2C;
- User defined initial values transferred from OTP.
Description
The SLG46532 provides a small, low power component for commonly used mixed-signal functions. The user creates their circuit design by programming the one time Non-Volatile Memory (NVM) to configure the interconnect logic, the I/O Pins and the macro cells of the SLG46532. This highly versatile device allows a wide variety of mixed-signal functions to be designed within a very small, low power single integrated circuit. The additional power supply (VDD2) on the SLG46532 provides the ability to interface two independent voltage domains within the same design. Users can configure pins, dedicated to each power supply, as inputs, outputs, or both (controlled dynamically by internal logic) to both VDD and VDD2 voltage domains. Using the available macro-cells designers can implement mixed-signal functions bridging both domains or simply pass through level-translation in both High to Low and Low to High directions.
Applications
- Personal Computers and Servers
- PC Peripherals
- Consumer Electronics
- Data Communications Equipment
- Handheld and Portable Electronics
| Part Number | Status | Samples | Stock | Package | Budgetary Price (USD) | Lead Count (#) | Carrier Type | Moisture Sensitivity Level (MSL) | Pb (Lead) Free | Temp. Range (°C) | Country of Assembly | Country of Wafer Fabrication |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| SLG46532V | Obsolete | N/A | Out of Stock | STQFN | 1ku | $0.655 | 20# | Tape & Reel | 1 | Yes | -40 to +85°C | CHINA, TAIWAN | TAIWAN |
- Application NotePDF 351 KB R19AN0532EE0200 Rev.2.00 May 05, 2026This application note presents the in‑system debug (ISD) capability of GreenPAK™ devices with an I²C interface, allowing designers to modify configuration registers directly on the target PCB without reprogramming NVM. ISD accelerates development by enabling quick adjustments to macrocell settings and routing during real‑time operation. In‑system debug simplifies debugging and supports multiple devices on the same I²C bus.
- Application NotePDF 330 KB R19AN0518EE0200 Rev.2.00 Apr 28, 2026The note explains how to integrate GreenPAK programmable mixed-signal devices with Arduino using Renesas' Arduino Library over I²C. It details installing the library, using macros for I²C-compatible GreenPAK chips, and simplifying code development for configuring and controlling GreenPAK functions through the Arduino IDE.
- White PaperAsynchronous state machines offer ultra-fast transitions, low static current, robust design, and voltage tolerance, ideal for IoT and portable devices. Unlike low-power microcontrollers like TI’s MSP430, Silego’s GreenPAK integrates a programmable asynchronous state machine to optimize size and battery life. This paper compares design tradeoffs and guides users in choosing between microcontrollers and asynchronous state machines.
Recommended Documents (1)
Datasheets (1)
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- Application NotePDF 351 KB R19AN0532EE0200 Rev.2.00 May 05, 2026This application note presents the in‑system debug (ISD) capability of GreenPAK™ devices with an I²C interface, allowing designers to modify configuration registers directly on the target PCB without reprogramming NVM. ISD accelerates development by enabling quick adjustments to macrocell settings and routing during real‑time operation. In‑system debug simplifies debugging and supports multiple devices on the same I²C bus.
- Application NotePDF 330 KB R19AN0518EE0200 Rev.2.00 Apr 28, 2026The note explains how to integrate GreenPAK programmable mixed-signal devices with Arduino using Renesas' Arduino Library over I²C. It details installing the library, using macros for I²C-compatible GreenPAK chips, and simplifying code development for configuring and controlling GreenPAK functions through the Arduino IDE.
- White PaperAsynchronous state machines offer ultra-fast transitions, low static current, robust design, and voltage tolerance, ideal for IoT and portable devices. Unlike low-power microcontrollers like TI’s MSP430, Silego’s GreenPAK integrates a programmable asynchronous state machine to optimize size and battery life. This paper compares design tradeoffs and guides users in choosing between microcontrollers and asynchronous state machines.
Application Notes & White Papers (3)
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Errata & Technical Updates (1)
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Discover GreenPAK™, a configurable mixed‑signal IC platform that replaces discrete logic and streamlines system design. By combining analog, digital, and power functions in a compact, low‑power device, GreenPAK enables fast customization through an intuitive GUI without added complexity. Engineers can reduce BOM cost, lower power consumption, simplify PCB routing, accelerate time‑to‑market, and take advantage of in‑system configurability, making GreenPAK a strong fit for building smarter and more efficient designs across a wide range of applications.
The video introduces how GreenPAK™ enables engineers to create custom mixed‑signal IC designs quickly and easily. It highlights how GreenPAK simplifies development, helping teams turn ideas into flexible, working solutions without complex hardware redesigns.
Additional Videos
Support Communities
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Wrong chip detected in GreenPAK Designer
... SLG46535V-DIP boards on the SLG4DVKDIP board. When I clicked the Emulation button, I got a warning "Current project was specified for SLG46535V revision. But SLG46532V was detected in the tool." The package the SLG46535V-DIP board came in is marked SLG46535V-DIP, the silkscreen on the board shows SLG46535V ...
May 4, 2022