Lattice Semiconductor Corporation LC5768MV-75F484C
- Part Number:
- LC5768MV-75F484C
- Manufacturer:
- Lattice Semiconductor Corporation
- Ventron No:
- 3123188-LC5768MV-75F484C
- Description:
- IC CPLD 768MC 7.5NS 484FBGA
- Datasheet:
- LC5768MV-75F484C
Lattice Semiconductor Corporation LC5768MV-75F484C technical specifications, attributes, parameters and parts with similar specifications to Lattice Semiconductor Corporation LC5768MV-75F484C.
- MountSurface Mount
- Mounting TypeSurface Mount
- Package / Case484-BBGA
- Number of Pins484
- Operating Temperature0°C~90°C TJ
- PackagingTray
- Published2000
- SeriesispXPLD® 5000MV
- Pbfree Codeno
- Part StatusObsolete
- Moisture Sensitivity Level (MSL)3 (168 Hours)
- ECCN CodeEAR99
- HTS Code8542.39.00.01
- Reach Compliance Codenot_compliant
- Frequency200MHz
- Base Part NumberLC5768
- Pin Count484
- Operating Supply Voltage3.3V
- Programmable TypeIn System Programmable
- Max Supply Voltage3.6V
- Min Supply Voltage3V
- Operating Supply Current40mA
- Number of I/O317
- Nominal Supply Current40mA
- RAM Size48kB
- Memory TypeEEPROM, SRAM
- Propagation Delay7.5 ns
- Number of Logic Elements/Cells24
- Number of Programmable I/O100
- Number of Macro Cells768
- Voltage Supply - Internal3V~3.6V
- RoHS StatusNon-RoHS Compliant
- Lead FreeLead Free
LC5768MV-75F484C Overview
Lattice Semiconductor Corporation is a well-known brand in the technology industry, particularly in the field of Embedded - CPLDs (Complex Programmable Logic Devices). This chip, belonging to the Embedded - CPLDs category, is a highly versatile and efficient component that has gained popularity since its publication in 2000. Its series, ispXPLD® 5000MV, is a testament to its advanced capabilities and cutting-edge technology. The base part number, LC5768, further highlights its unique identity and sets it apart from other chips in the market. One of the key features of this chip is its operating supply voltage of 3.3V, which ensures stable and reliable performance. Its maximum supply voltage of 3.6V and minimum supply voltage of 3V make it suitable for a wide range of applications. The nominal supply current of 40mA is an important parameter to consider, as it directly affects the power consumption and efficiency of the chip. With 100 programmable I/O and 768 macro cells, this chip offers a high level of customization and flexibility, making it a top choice for designers and engineers. It is worth noting that this chip is non-RoHS compliant, indicating that it may contain certain hazardous materials. This is an important factor to consider when using the chip in any project, as it may have implications for environmental and health regulations. However, the advanced features and capabilities of this chip make it a highly sought-after component in the market, and its popularity continues to grow among tech enthusiasts and professionals alike. Lattice Semiconductor Corporation has once again proven its expertise and innovation in the field of Embedded - CPLDs, making this chip a valuable addition to any project.
LC5768MV-75F484C Features
484-BBGA package
317 I/Os
The operating temperature of 0°C~90°C TJ
484 pin count
484 pins
LC5768MV-75F484C Applications
There are a lot of Lattice Semiconductor Corporation LC5768MV-75F484C CPLDs applications.
USB Bus
Interface bridging
DMA control
I2C BUS INTERFACE
Bootloaders for FPGAs
Auxiliary Power Supply Isolated and Non-isolated
Boolean function generators
Pattern recognition
PULSE WIDTH MODULATION (PWM)
Power up sequencing
Lattice Semiconductor Corporation is a well-known brand in the technology industry, particularly in the field of Embedded - CPLDs (Complex Programmable Logic Devices). This chip, belonging to the Embedded - CPLDs category, is a highly versatile and efficient component that has gained popularity since its publication in 2000. Its series, ispXPLD® 5000MV, is a testament to its advanced capabilities and cutting-edge technology. The base part number, LC5768, further highlights its unique identity and sets it apart from other chips in the market. One of the key features of this chip is its operating supply voltage of 3.3V, which ensures stable and reliable performance. Its maximum supply voltage of 3.6V and minimum supply voltage of 3V make it suitable for a wide range of applications. The nominal supply current of 40mA is an important parameter to consider, as it directly affects the power consumption and efficiency of the chip. With 100 programmable I/O and 768 macro cells, this chip offers a high level of customization and flexibility, making it a top choice for designers and engineers. It is worth noting that this chip is non-RoHS compliant, indicating that it may contain certain hazardous materials. This is an important factor to consider when using the chip in any project, as it may have implications for environmental and health regulations. However, the advanced features and capabilities of this chip make it a highly sought-after component in the market, and its popularity continues to grow among tech enthusiasts and professionals alike. Lattice Semiconductor Corporation has once again proven its expertise and innovation in the field of Embedded - CPLDs, making this chip a valuable addition to any project.
LC5768MV-75F484C Features
484-BBGA package
317 I/Os
The operating temperature of 0°C~90°C TJ
484 pin count
484 pins
LC5768MV-75F484C Applications
There are a lot of Lattice Semiconductor Corporation LC5768MV-75F484C CPLDs applications.
USB Bus
Interface bridging
DMA control
I2C BUS INTERFACE
Bootloaders for FPGAs
Auxiliary Power Supply Isolated and Non-isolated
Boolean function generators
Pattern recognition
PULSE WIDTH MODULATION (PWM)
Power up sequencing
LC5768MV-75F484C More Descriptions
CPLD ispXPLD 5000MV Family 225K Gates 768 Macro Cells 150MHz 3.3V 484-Pin FBGA
Complex Programmable Logic Devices - CPLDs 3.3V 317 I/O
IC CPLD 768MC 7.5NS 484FPBGA
EE PLD 9.5 ns PBGA484
OEMs, CMs ONLY (NO BROKERS)
Contact for details
Complex Programmable Logic Devices - CPLDs 3.3V 317 I/O
IC CPLD 768MC 7.5NS 484FPBGA
EE PLD 9.5 ns PBGA484
OEMs, CMs ONLY (NO BROKERS)
Contact for details
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