IDT89HPES64H16ZABR IDT, Integrated Device Technology Inc, IDT89HPES64H16ZABR Datasheet - Page 3

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IDT89HPES64H16ZABR

Manufacturer Part Number
IDT89HPES64H16ZABR
Description
IC PCI SW 64LANE 16PORT 1156BGA
Manufacturer
IDT, Integrated Device Technology Inc
Datasheet

Specifications of IDT89HPES64H16ZABR

Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
89HPES64H16ZABR

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3(a), the master and slave SMBuses are tied together and the PES64H16 acts both as a SMBus master as well as a SMBus slave on this bus. This
requires that the SMBus master or processor that has access to PES64H16 registers supports SMBus arbitration. In some systems, this SMBus
master interface may be implemented using general purpose I/O pins on a processor or micro controller, and may not support SMBus arbitration. To
support these systems, the PES64H16 may be configured to operate in a split configuration as shown in Figure 3(b).
The PES64H16 supports reading and writing of the serial EEPROM on the master SMBus via the slave SMBus, allowing in system programming of
the serial EEPROM.
Hot-Plug Interface
device, the PES64H16 utilizes an external I/O expander, such as that used on PC motherboards, connected to the SMBus master interface. Following
reset and configuration, whenever the state of a Hot-Plug output needs to be modified, the PES64H16 generates an SMBus transaction to the I/O
expander with the new value of all of the outputs. Whenever a Hot-Plug input changes, the I/O expander generates an interrupt which is received on
the IOEXPINTN input pin (alternate function of GPIO) of the PES64H16. In response to an I/O expander interrupt, the PES64H16 generates an
SMBus transaction to read the state of all of the Hot-Plug inputs from the I/O expander.
General Purpose Input/Output
outputs, or alternate functions. Some GPIO pins are shared with other on-chip functions. These alternate functions may be enabled via software,
SMBus slave interface, or serial configuration EEPROM.
IDT 89HPES64H16 Data Sheet
As shown in Figure 3, the master and slave SMBuses may be used in a unified or split configuration. In the unified configuration, shown in Figure
In the split configuration, the master and slave SMBuses operate as two independent buses and thus multi-master arbitration is never required.
The PES64H16 supports PCI Express Hot-Plug on each downstream port (ports 1 through 15). To reduce the number of pins required on the
The PES64H16 provides 32 General Purpose I/O (GPIO) pins that may be individually configured as general purpose inputs, general purpose
(a) Unified Configuration and Management Bus
PES64H16
MSMBCLK
MSMBDAT
SSMBCLK
SSMBDAT
Processor
SMBus
Master
Bit
Table 1 Master and Slave SMBus Address Assignment
1
2
3
4
5
6
7
EEPROM
Figure 3 SMBus Interface Configuration Examples
Serial
...
Devices
SMBus
Other
SSMBADDR[1]
SSMBADDR[2]
SSMBADDR[3]
SSMBADDR[5]
Address
SMBus
Slave
3 of 49
0
1
1
(b) Split Configuration and Management Buses
PES64H16
MSMBADDR[1]
MSMBADDR[2]
MSMBADDR[3]
MSMBADDR[4]
Address
Master
SMBus
MSMBCLK
MSMBDAT
SSMBCLK
SSMBDAT
1
0
1
Processor
SMBus
Master
EEPROM
Serial
...
Devices
SMBus
Other
October 7, 2008

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