LIFCL-40-9BG256I
| Part Description |
CrossLink-NX™ Field Programmable Gate Array (FPGA) IC 163 1548288 39000 256-LFBGA |
|---|---|
| Quantity | 1,373 Available (as of May 5, 2026) |
| Product Category | Field Programmable Gate Array (FPGA) |
|---|---|
| Manufacturer | Lattice Semiconductor Corporation |
| Manufacturing Status | Active |
| Manufacturer Standard Lead Time | 20 Weeks |
| Datasheet |
Specifications & Environmental
| Device Package | 256-CABGA (14x14) | Grade | Industrial | Operating Temperature | -40°C – 100°C | ||
|---|---|---|---|---|---|---|---|
| Package / Case | 256-LFBGA | Number of I/O | 163 | Voltage | 950 mV - 1.05 V | ||
| Mounting Method | Surface Mount | RoHS Compliance | ROHS3 Compliant | REACH Compliance | REACH Unaffected | ||
| Moisture Sensitivity Level | 3 (168 Hours) | Number of LABs/CLBs | 9750 | Number of Logic Elements/Cells | 39000 | ||
| Number of Gates | N/A | ECCN | EAR99 | HTS Code | 8542.39.0001 | ||
| Qualification | N/A | Total RAM Bits | 1548288 |
Overview of LIFCL-40-9BG256I – CrossLink-NX™ Field Programmable Gate Array (FPGA) IC 256-LFBGA
The LIFCL-40-9BG256I is a CrossLink-NX™ Field Programmable Gate Array (FPGA) IC from Lattice Semiconductor Corporation delivered in a 256-LFBGA (256-CABGA, 14×14) surface-mount package. It integrates 39,000 logic elements and approximately 1.55 Mbits of embedded memory with 163 I/O pins to support complex logic and connectivity requirements.
Designed for industrial-grade operation, this device runs from a 0.95–1.05 V supply and is specified for an operating temperature range of −40 °C to 100 °C. The part is RoHS compliant and intended for applications that require mid-range logic density, substantial on-chip RAM, and a robust thermal envelope.
Key Features
- Core Logic 39,000 logic elements provide mid-range programmable logic capacity for custom logic and signal processing tasks.
- Embedded Memory Approximately 1.55 Mbits of on-chip RAM supports frame buffering, data queues, and state storage without external memory.
- I/O 163 user I/O pins enable extensive peripheral connections and multi-channel interfacing.
- Power Operates from a 0.95 V to 1.05 V supply, suitable for low-voltage system designs.
- Package & Mounting 256-LFBGA (256-CABGA, 14×14) in a surface-mount form factor for compact board-level integration.
- Temperature & Grade Industrial-grade device specified for −40 °C to 100 °C operation.
- Compliance RoHS compliant for regulatory environmental requirements.
Unique Advantages
- Balanced logic and memory resources: 39,000 logic elements paired with ~1.55 Mbits of embedded RAM enable integration of both control logic and buffer/storage on-chip.
- High I/O count: 163 I/Os provide flexibility for multi-signal interfaces, peripheral expansion, and parallel data paths.
- Industrial temperature range: Specified −40 °C to 100 °C for deployment in temperature-challenging environments.
- Low-voltage operation: 0.95–1.05 V supply range supports modern low-voltage system architectures and power-conscious designs.
- Compact surface-mount package: 256-LFBGA (14×14) enables high-density PCB implementations while maintaining a standard form factor.
- Regulatory compliance: RoHS compliance simplifies material compliance for manufacturing and procurement.
Why Choose LIFCL-40-9BG256I?
The LIFCL-40-9BG256I positions itself as a mid-density FPGA option that combines significant programmable logic (39,000 logic elements), substantial on-chip RAM (approximately 1.55 Mbits), and a high I/O count (163) within a compact 256-LFBGA surface-mount package. Its industrial temperature rating (−40 °C to 100 °C) and RoHS compliance make it suitable for robust, long-lived deployments where thermal range and materials compliance matter.
This device is appropriate for designs that require integrated logic, buffering, and a large number of external connections while operating on a low-voltage supply. Manufactured by Lattice Semiconductor Corporation, it provides a clearly defined set of resources for engineers targeting scalable, board-level FPGA implementations in industrial environments.
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