EP1M350B780C6 provides a speed-optimized PLD design, high-speed differential transceivers, and CDR support. These transceivers feature support for the LVDS, LVPECL, and 3.3-V PCML I/O standards and are implemented using the dedicated serializer, deserializer, and clock recovery circuitry in the HSDI. EP1M350B780C6 may meet high-speed interface needs because to this circuitry, improved I/O elements (IOEs), and support for several I/O standards. The first PLDs with core performance optimization are Mercury devices. To reach peak performance, these LUT-based, improved memory devices make advantage of a network of quick routing resources. These tools are perfect for designs requiring a lot of data paths, registers, math, digital signal processing (DSP), or communications.
| Specification | Value | 
|---|---|
| Series | Mercury | 
| Number of Logic Blocks | 1440 | 
| Number of I/Os | 486 | 
| Operating Supply Voltage | 3.3 V | 
| Maximum Operating Temperature | + 85 C | 
| Mounting Style | SMD/SMT | 
| Package / Case | FBGA-780 | 
| Distributed RAM | 114 kbit | 
| Minimum Operating Temperature | - 40 C | 
| Operating Supply Current | 50 mA | 
| Packaging | Tray | 
 
												
												Buy EP1M120F484I6 Intel / Altera Corporation, Get familiar with the EP1M120F484I6 Mercury PLD at VEK...
 
												
												Buy EP1M350F780I6N Intel / Altera Corporation, Get familiar with the EP1M350F780I6N Mercury PLD at V...
 
												
												Buy EP1M350F780C7 Intel / Altera Corporation, Get familiar with the EP1M350F780C7 Mercury PLD at VEK...
 
												
												Buy EP1M350F780C6 Intel / Altera Corporation, Get familiar with the EP1M350F780C6 Mercury PLD at VEK...
 
												
												Buy EP1M350F780C5 Intel / Altera Corporation, Get familiar with the EP1M350F780C5 Mercury PLD at VEK...