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Features

  • Logic and Mixed-Signal Circuits
  • Highly Versatile Macrocells
  • Read Back Protection (Read Lock)
  • 1.8V (±5%) to 5V (±10%) Supply
  • Operating Temperature Range: -40°C to 85°C
  • RoHS-Compliant/Halogen-Free
  • Macrocells Overview
    • Four Analog Comparators (ACMP)
    • Two Voltage References (Vref)
    • Twenty-six Combination Function Macrocells
      • Three Selectable DFF/Latch or 2-bit LUTs
      • Twelve Selectable DFF/Latch or 3-bit LUTs
      • One Selectable Pipe Delay or 3-bit LUT
      • One Selectable Programmable Pattern Generator or 2-bit LUT
      • Five 8-bit delays/counters or 3-bit LUTs
      • Two 16-bit delays/counters or 4-bit LUTs
      • Two Deglitch Filters with Edge Detectors
    • Combinatorial Logic
      • One 4-bit LUT
    • Serial Communications
      • I2C Protocol compliant
    • 16x8 RAM Memory with Defined NVM OTP Initial State
    • Pipe Delay - 16 Stage/3 Output (Part of Combination Function Macrocell)
    • Programmable Delay
    • Two Oscillators (OSC)
      • Configurable 25kHz/2MHz
      • 25MHz RC Oscillator
    • Crystal Oscillator
    • Power-On Reset (POR)
    • Analog Temperature Sensor

Description

The SLG46533V/M provides a small, low-power component for commonly used mixed-signal functions. The user creates their circuit design by programming the one-time programmable (OTP) non-volatile memory (NVM) to configure the interconnect logic, the I/O pins, and the macrocells of the SLG46533V/M. This highly versatile device allows for a wide variety of mixed-signal functions to be designed within a very small, low-power single integrated circuit.

Parameters

AttributesValue
GPIOs (#)18
Nominal VDD1.71 - 5.5
ACMP Channels (#)4
CNT/DLY (Max) (#)7
LUTs (Max) (#)25
D Flip-flops (DFFs) (#)15
Pipe Delay16-stage
# of Programable Delays (#)1
Oscillator TypeConf. OSC, Ring OSC, Crystal OSC
Temperature Sensor (ch) (#)1
InterfaceI2C
Memory TypeOTP
Temp. Range (°C)-40 to +85°C

Package Options

Pkg. TypePkg. Dimensions (mm)Lead Count (#)Pitch (mm)
MSTQFN2.0 x 2.2220.4
TQFN2.0 x 3.0200.4

Application Block Diagrams

Robot vacuum cleaner Interactive block diagram supports camera-based SLAM and includes safe motor drive technology for reliable cleaning.
Robot Vacuum Cleaner
This smart robot vacuum features environment mapping, anti-drop, obstacle detection, auto-recharge, app control.

Additional Applications

  • Personal Computers and Servers
  • PC Peripherals
  • Consumer Electronics
  • Data Communications Equipment
  • Handheld and Portable Electronics

Complete Your Design

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Part NumberStatusSamplesLongevityStockPackageBudgetary Price (USD)Lead Count (#)Carrier TypeMoisture Sensitivity Level (MSL)Pkg. Dimensions (mm)Pb (Lead) FreeTemp. Range (°C)Country of AssemblyCountry of Wafer Fabrication
SLG46533MActiveAvailableIn StockMSTQFN1ku | $0.52122#Tape & Reel12.0 x 2.2Yes-40 to +85°CCHINA, TAIWANTAIWAN
SLG46533VActiveAvailable2034 NovIn StockTQFN1ku | $0.38520#Tape & Reel12.0 x 3.0Yes-40 to +85°CCHINA, TAIWANTAIWAN

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Support Communities

  1. Migration between devices #2 (e.g. SLG46824/6 to SLG46533)

    Dear Forum When having 2 different footprint compatible GreenPAK devices on otherwise identical boards, production testing and later the register updater need to recognise which GreenPAK device is actually assembled (in my example SLG46824 or SLG46826 or SLG46533). Something like a WHO_AM_I register. I think this is done ...

    Jan 23, 2020
  2. Migration between devices (e.g. SLG46824/6 to SLG46533)

    ... now and then. Later in the product life cycle (when design is stable and going to mass production) SLG46824/6 shall be replaced by SLG46533 (OTP). Is there an easy way to migrate an existing design (given it does not exceeed the target device resource) to a different part ...

    Jan 22, 2020
  3. How can I control the GPIO output high/low level of SLG46533 greenpak on my SOC through I2C ?

    Background :SLG46533 acts as an I2C slave and communicates with the SOC via IO6&IO7 Q1. I only found through reg<1867:1864> in the SLG46533 datesheet (Revision 1.30); Its i2c address can be changed, but what is its default i2c slave address? For example, 0x?? Q2. I ...

    May 26, 2025
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