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ORSPI4 Datasheet(PDF) 23 Page - Lattice Semiconductor

No. de pieza ORSPI4
Descripción Electrónicos  Dual SPI4 Interface and High-Speed SERDES FPSC
PDF  263 Pages
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Fabricante Electrónico  LATTICE [Lattice Semiconductor]
Página de inicio  http://www.latticesemi.com
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ORSPI4 Datasheet(HTML) 23 Page - Lattice Semiconductor

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Lattice Semiconductor
ORCA ORSPI4 Data Sheet
23
nally in an EEPROM or any other storage media. Serial EEPROMs provide a simple, low pin-count method for con-
figuring FPGAs.
The RAM is loaded by using one of several configuration modes. Supporting the traditional master/slave serial,
master/slave parallel, and asynchronous peripheral modes, the Series 4 also utilizes its microprocessor interface
and Embedded System Bus to perform both programming and readback. Daisy chaining of multiple devices and
partial reconfiguration are also permitted.
Other configuration options include the initialization of the embedded-block RAM memories and FPSC memory, as
well as system bus options and bit stream error checking. Programming and readback through the JTAG
(IEEE
1149.2
) port is also available, meeting In-System Programming (ISP) standards (IEEE 1532 Draft).
FPSC Configuration
Configuration of the ORSPI4 occurs in two stages: FPGA bit-stream configuration and embedded core setup.
Prior to becoming operational, the FPGA goes through a sequence of states, including power-up, initialization, con-
figuration, start-up, and operation. The FPGA logic is configured by standard FPGA bit-stream configuration means
as discussed in the
ORCA Series 4 FPGA data sheet.
After the FPGA configuration is complete, the options for the embedded core are set based on the contents of reg-
isters that are accessed through the FPGA system bus. The system bus itself can be driven by an external
Pow-
erPC compliant microprocessor via the MPI block or via a user master interface in FPGA logic. A simple IP block
that drives the system by using the user register interface and very little FPGA logic is available in the
MPI/System
Bus Technical Note (TN-1017). This IP block sets up the embedded core via a state machine and allows the
ORSPI4 to work in an independent system without an external microprocessor interface.
ORSPI4 Package Options
The ORSPI4 FPSC is available in two package options: a 1036 ftSBGA and a 1156 fpBGA. The 1036 pin package
provides an OR4E06 FPGA array (16,192 LEs, 148 Kbits of Embedded Block RAM), 498 FPGA user I/Os, two
SPI4 interfaces (or one SPI4 interface and a quad high-speed SERDES interface), and a high-speed QDRII SRAM
Controller. The 1156 pin package provides an OR4E06 FPGA array (16,192 LEs, 148 Kbits of Embedded Block
RAM), 356 FPGA user I/Os, two SPI4 interfaces (SERDES interface not available on this package), and a high-
speed QDRII SRAM Controller.
Additional Information
Contact your local Lattice representative for additional information regarding the
ORCA Series 4 FPGA devices, or
visit our website at: http://www.latticesemi.com/orca
Links to Specs and Standards
Optical Internetworking Forum – OIF-SPI4-02.0 - www.oiforum.com
Fibre Channel Physical and Signaling Interface – FC-PH ANSI X3.230-1994 - www.t11.org
10 Gigabit Ethernet – IEEE P802.3ae - www.ieee.org
18Mb QDR-II SRAM 2-word burst – MT54W512H36B - www.cypress.com/products/micron/micron.cfm
18Mb QDR-II SRAM 4-word burst – MT54W512H36B - www.cypress.com/products/micron/micron.cfm
36Mb QDR-II SRAM 2-word burst – KTR323682M - www.samsung.com/Products/Semiconductor/SRAM/index.htm
36Mb QDR-II SRAM 4-word burst – KTR323684M - www.samsung.com/Products/Semiconductor/SRAM/index.htm



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