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Altera

10M02SCE144C8G – Integrated Circuit – Altera

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Part Number
10M02SCE144C8G
Manufacturer
Altera
Condition
New — trusted and guaranteed
Documentation
Full lot documentation with every shipment

Specifications

Category
Integrated Circuits (ICs)EmbeddedFPGAs (Field Programmable Gate Array)
Mfr
Altera
Series
MAX® 10
Packaging
Tray
Part Status
Active
DigiKey Programmable
Not Verified
Number of LABs/CLBs
125
Number of Logic Elements/Cells
2000
Total RAM Bits
110592
Number of I/O
101
Voltage - Supply
2.85V ~ 3.465V
Mounting Type
Surface Mount
Operating Temperature
0°C ~ 85°C (TJ)
Package / Case
144-LQFP Exposed Pad
Supplier Device Package
144-EQFP (20x20)
Full Description
10M02SCE144C8G

About this part

10M02SCE144C8G – MAX® 10 FPGA – 2,000 Logic Elements – Altera

Accelerate your embedded designs with the Altera 10M02SCE144C8G FPGA from the MAX® 10 series. This high-performance field-programmable gate array delivers exceptional flexibility and integration for rapid prototyping and industrial applications. PCX exclusively supplies this active-status IC with guaranteed authenticity and same-day shipping.

Key Features

Technical Details

This MAX® 10 FPGA features a non-volatile architecture with instant-on capability, eliminating external configuration memory. Its 144-LQFP exposed pad package ensures reliable thermal management in space-constrained designs. The device supports dual-configuration flash and integrates analog-to-digital converters (ADCs), making it ideal for highly integrated systems. Full datasheet available at PCXCo.com/resources.

Typical Applications

About Altera

Altera, now part of Intel, pioneered programmable logic solutions with over three decades of industry leadership. Their FPGAs are renowned for balancing power efficiency with high computational density, serving mission-critical applications across aerospace, telecommunications, and industrial sectors.

Altera’s MAX® 10 series represents a breakthrough in cost-optimized programmability, integrating features traditionally requiring discrete components. Rigorous qualification processes ensure reliability in extreme environments, making Altera the preferred choice for design engineers worldwide.

About FPGAs

Field-Programmable Gate Arrays (FPGAs) provide reconfigurable hardware circuits that can be programmed post-manufacturing. Unlike fixed-function ICs, FPGAs allow designers to implement custom digital circuits, modify logic functions, and accelerate parallel processing tasks through hardware description languages (HDL).

FPGAs bridge the gap between ASICs and microcontrollers, offering rapid development cycles without NRE costs. They excel in real-time signal processing, protocol conversion, and algorithmic acceleration where software-based solutions face latency limitations. Modern FPGAs like the MAX® 10 series incorporate hardened processors, memory blocks, and analog components for complete system-on-chip (SoC) implementations.

Packaging

Available in protective trays for automated assembly. Contact PCX for reel packaging options and quantity pricing.

Frequently Asked Questions

Question: Does this FPGA require external configuration memory?
Answer: No – its integrated flash enables instant-on operation without external configuration devices.

Question: What development tools support the MAX® 10 series?
Answer: Altera Quartus Prime software provides full design suite support (download via Intel website).

Question: Is this model suitable for automotive applications?
Answer: This industrial-grade (0°C–85°C) variant is ideal for factory automation. For automotive, consider AEC-Q100 qualified alternatives.

Question: Can I migrate designs from older MAX devices?
Answer: Yes – MAX® 10 offers pin-compatibility with MAX II CPLDs and migration utilities.

Question: Does PCX provide technical documentation?
Answer: Yes – access datasheets, application notes, and reference designs at PCXCo.com/resources.

Question: How does this compare to Cyclone® series FPGAs?
Answer: MAX® 10 offers lower power and cost for control-plane applications, while Cyclone targets high-bandwidth processing.

Disclaimer: Product images are representational. Refer to datasheets for exact dimensions.

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