A Field Programmable Gate Array XC73108-10PG144I is an integrated circuit that falls under the AMD Xilinx brand. All XC73108-10PG144I EPLDs include programmable power management features to specify high-performance or low-power operation on an individual Macrocell-by-Macrocell basis. Unused Macrocells are automatically turned off to minimize power dissipation. Designers can operate speed-critical paths at maximum performance, while non-critical paths dissipate less power. Xilinx development software supports XC73108-10PG144I EPLD design using third-party schematic entry tools, HDL compilers, or direct equation-based text files. Using a PC or a workstation and one of these design capture methods, designs are automatically mapped to this device in a matter of minutes. This device is available in plastic and ceramic leaded chip carriers, pin-grid-array (PGA), ball-grid-array (BGA), and quad flat pack (QFP) packages. Package options include both windowed ceramic for design prototypes and one-time programmable plastic versions for cost-effective production volume. View Substitutes & Alternatives, datasheets, stock, pricing from Authorized Distributors, as well as other FPGAs goods, at www.vemeko.com.
Fast function blocks and high-density function blocks comprise the advanced dual-block architecture (XC7354, XC7372, XC73108, XC73144).
Interconnect matrix at 100%
High-speed arithmetic carry network with 18-bit accumulators operating at 43 to 61 MHz and a 1 ns ripple-carry latency per bit
Several separate clocks
Every input can be set to be registered, latched, or direct.
24 mA high-drive output with 3.3 V or 5 V I/O operation
3.3 V ±0.3 V JEDEC Standard (8-1A) is met.
Options for power control
Several security components to safeguard designs
Equipped with design and verification tools that are industry standard
Consumer electronics
Medical devices
Defense applications
The embedded OEM
Software defined radio
Any-to-any connectivity
Programmable logic controller
Specification | Value |
---|---|
Typical 22V10 Equivalent | 12 |
Number of Macrocells | 108 |
Number of Function Blocks | 12 |
Number of Flip-Flops | 198 |
Number of Fast Inputs | 12 |
Number of Signal Pins | 120 |
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