LC5768MV-75F256C

Lattice Semiconductor Corporation LC5768MV-75F256C

Part Number:
LC5768MV-75F256C
Manufacturer:
Lattice Semiconductor Corporation
Ventron No:
3629689-LC5768MV-75F256C
Description:
IC CPLD 768MC 7.5NS 256FBGA
ECAD Model:
Datasheet:
LC5768MV-75F256C

Quick Request Quote

Please send RFQ , We will respond immediately.

Part Number
Quantity
Company
E-mail
Phone
Comments
Specifications
Lattice Semiconductor Corporation LC5768MV-75F256C technical specifications, attributes, parameters and parts with similar specifications to Lattice Semiconductor Corporation LC5768MV-75F256C.
  • Mount
    Surface Mount
  • Mounting Type
    Surface Mount
  • Package / Case
    256-BGA
  • Operating Temperature
    0°C~90°C TJ
  • Packaging
    Tray
  • Published
    2000
  • Series
    ispXPLD® 5000MV
  • JESD-609 Code
    e0
  • Pbfree Code
    no
  • Part Status
    Obsolete
  • Moisture Sensitivity Level (MSL)
    3 (168 Hours)
  • Number of Terminations
    256
  • ECCN Code
    EAR99
  • Terminal Finish
    Tin/Lead (Sn63Pb37)
  • Additional Feature
    YES
  • HTS Code
    8542.39.00.01
  • Subcategory
    Programmable Logic Devices
  • Technology
    CMOS
  • Terminal Position
    BOTTOM
  • Terminal Form
    BALL
  • Peak Reflow Temperature (Cel)
    225
  • Supply Voltage
    3.3V
  • Terminal Pitch
    1mm
  • Reach Compliance Code
    not_compliant
  • Reflow Temperature-Max (s)
    30
  • Base Part Number
    LC5768
  • Pin Count
    256
  • JESD-30 Code
    S-PBGA-B256
  • Qualification Status
    Not Qualified
  • Operating Supply Voltage
    3.3V
  • Programmable Type
    In System Programmable
  • Max Supply Voltage
    3.6V
  • Min Supply Voltage
    3V
  • Operating Supply Current
    40mA
  • Number of I/O
    193
  • Nominal Supply Current
    40mA
  • Memory Type
    EEPROM, SRAM
  • Propagation Delay
    9.5 ns
  • Number of Logic Elements/Cells
    24
  • Max Frequency
    250MHz
  • Number of Programmable I/O
    176
  • Output Function
    MACROCELL
  • Number of Macro Cells
    768
  • JTAG BST
    YES
  • Voltage Supply - Internal
    3V~3.6V
  • Delay Time tpd(1) Max
    7.5ns
  • Height Seated (Max)
    2.1mm
  • Length
    17mm
  • Width
    17mm
  • RoHS Status
    Non-RoHS Compliant
  • Lead Free
    Lead Free
Description
LC5768MV-75F256C Overview
Lattice Semiconductor Corporation offers a highly efficient solution for embedded systems with their Embedded - CPLDs (Complex Programmable Logic Devices) chip. This chip falls under the Embedded - CPLDs (Complex Programmable Logic Devices) category and boasts 256 terminations with a Tin/Lead (Sn63Pb37) terminal finish. The terminal position is located at the bottom and has a ball terminal form. With a maximum supply voltage of 3.6V and a minimum supply voltage of 3V, this chip is suitable for a wide range of applications. Its memory type includes EEPROM and SRAM, and it has a low propagation delay of only 9.5 ns. With a maximum frequency of 250MHz and a length of 17mm, this chip is a top choice for embedded systems.

LC5768MV-75F256C Features
256-BGA package
193 I/Os
The operating temperature of 0°C~90°C TJ
256 pin count

LC5768MV-75F256C Applications
There are a lot of Lattice Semiconductor Corporation LC5768MV-75F256C CPLDs applications.

POWER-SAVING MODES
State machine design
White goods (Washing, Cold, Aircon ,...)
INTERRUPT SYSTEM
Software-driven hardware configuration
Preset swapping
Wireless Infrastructure Base Band Unit and Remote Radio Unit
Field programmable gate
I2C BUS INTERFACE
USB Bus
LC5768MV-75F256C More Descriptions
CPLD ispXPLD 5000MV Family 225K Gates 768 Macro Cells 150MHz 3.3V 256-Pin FBGA
Complex Programmable Logic Devices - CPLDs 3.3V 193 I/O
IC CPLD 768MC 7.5NS 256FPBGA
Certification
  • ISO 9001
  • ISO 13485
  • ISO 45001
  • ASA
  • ESD
  • DUNS
  • SMTA
  • ROHS

Latest News

  • 07 October 2023

    An Introduction to TDA7266SA Dual Bridge Amplifier

    Ⅰ. What is TDA7266SA?Ⅱ. Symbol, footprint and pin connection of TDA7266SAⅢ. Technical parametersⅣ. Features of TDA7266SAⅤ. How to configure the gain of TDA7266SA?Ⅵ. How is the short circuit...
  • 07 October 2023

    How does IRF640 differ from IRF740?

    Ⅰ. What is MOSFET?Ⅱ. Overview of IRF640Ⅲ. Overview of IRF740Ⅳ. IRF640 vs IRF740: SymbolⅤ. IRF640 vs IRF740: Technical parametersⅥ. IRF640 vs IRF740: FeaturesⅦ. IRF640 vs IRF740: Working principleⅧ....
  • 08 October 2023

    2N3773 Transistor Equivalent, Features and Applications

    Ⅰ. 2N3773 transistor overviewⅡ. Symbol and pin connection of 2N3773Ⅲ. Technical parametersⅣ. What are the features of 2N3773?Ⅴ. How does the 2N3773 achieve amplification and switching functions in...
  • 08 October 2023

    IRFP260N Power Mosfet Transistor: Symbol, Features and Working Principle

    Ⅰ. IRFP260N transistor descriptionⅡ. Symbol, footprint and pin connection of IRFP260NⅢ. Technical parametersⅣ. Features of IRFP260NⅤ. How does IRFP260N work and how does it drive IRFP260N?Ⅵ. Absolute maximum...
  • cost

    Help you to save your cost and time.

  • package

    Reliable package for your goods.

  • fast

    Fast Reliable Delivery to save time.

  • service

    Quality premium after-sale service.