Save to myST

Parking management

Parking cars or commercial vehicles in congested urban areas can be a nightmare and it’s also wasting time and energy with associated CO2 emissions. A smart parking system can help drivers identify and reserve free parking spot and pay fees through a mobile app.

Our products and solutions

To help design smart parking systems, we have a range of ranging and proximity sensors, as well as low-power wireless connectivity solutions and SW packages enabling simple cloud connectivity, together with low-power STM32 microcontrollers.

All tools & software

    • Part number
      Status
      Description
      Type
      Supplier

      STSW-AEKEXP-DSK

      Active

      AutoDevKit Explorer desktop application for Windows

      Evaluation Tool Software ST
      STSW-AEKEXP-DSK

      Description:

      AutoDevKit Explorer desktop application for Windows
    • Part number
      Status
      Description
      Type
      Supplier

      ST Protection Finder

      Active

      Protection product finder application for Android, iOS and Wandoujia

      Finder Apps ST
      ST Protection Finder

      Description:

      Protection product finder application for Android, iOS and Wandoujia
    • Part number
      Status
      Description
      Type
      Supplier

      STSW-BNRGLP-Mesh

      Active

      Mesh over Bluetooth low energy

      Wireless Connectivity Software ST
      STSW-BNRGLP-Mesh

      Description:

      Mesh over Bluetooth low energy

All Hardware Evaluation Tools

    • Part Number
      Description
      Core product
      Tool Type
      Supplier
      Sort by: part number

      STEVAL-ISA055V1

      Active

      0.7 A / 1.2 V synchronous buck converter with enable function based on the ST1S12XX

      - Power supplies and converters -
      STEVAL-ISA055V1
      Active

      0.7 A / 1.2 V synchronous buck converter with enable function based on the ST1S12XX

      STEVAL-ISA084V1

      Active

      4 A peak, 800 kHz fixed-frequency PWM synchronous step-down demonstration board with enable on/off based on the ST1S40

      - Power supplies and converters -
      STEVAL-ISA084V1
      Active

      4 A peak, 800 kHz fixed-frequency PWM synchronous step-down demonstration board with enable on/off based on the ST1S40

      STEVAL-ISA099V1

      Active

      3 A step-down switching demonstration board based on the L7986 in DFN10 package

      L7986 Power supplies and converters -
      STEVAL-ISA099V1
      Active

      3 A step-down switching demonstration board based on the L7986 in DFN10 package

      STEVAL-ISA141V1

      Active

      2 A, 2 MHz, Vout = 3.3 V, high-efficiency dual-mode buck-boost DC-DC converter based on the STBB3J

      STBB3J Power supplies and converters -
      STEVAL-ISA141V1
      Active

      2 A, 2 MHz, Vout = 3.3 V, high-efficiency dual-mode buck-boost DC-DC converter based on the STBB3J

      STEVAL-ISA152V1

      Active

      3.3 V/3 A high efficiency step down DC-DC converter (VIN= 4.5 to 60 V) based on the L7987

      L7987 Power supplies and converters -
      STEVAL-ISA152V1
      Active

      3.3 V/3 A high efficiency step down DC-DC converter (VIN= 4.5 to 60 V) based on the L7987

      STEVAL-ISA158V1

      Active

      38 V - 2 A synchronous step-down switching regulator evaluation board based on the A6986

      A6986 Power supplies and converters ST
      STEVAL-ISA158V1
      Active

      38 V - 2 A synchronous step-down switching regulator evaluation board based on the A6986

      STEVAL-ISB035V1

      Active

      Li-Ion/Li-Po battery power management evaluation board based on STBC03

      STBC03 Power supplies and converters ST
      STEVAL-ISB035V1
      Active

      Li-Ion/Li-Po battery power management evaluation board based on STBC03

      STEVAL-ISB041V1

      Active

      Li-Ion/Li-Po battery power management evaluation board based on STBC02

      STBC02 Power supplies and converters ST
      STEVAL-ISB041V1
      Active

      Li-Ion/Li-Po battery power management evaluation board based on STBC02