EVB9311 SMSC, EVB9311 Datasheet - Page 95

EVALUATION BOARD LAN9311-NU

EVB9311

Manufacturer Part Number
EVB9311
Description
EVALUATION BOARD LAN9311-NU
Manufacturer
SMSC
Series
0133r
Datasheet

Specifications of EVB9311

Main Purpose
Interface, Ethernet
Embedded
No
Utilized Ic / Part
LAN9311
Primary Attributes
2 Ports, 100BASE-TX/10BASE-T, Managed
Secondary Attributes
2 PHYs with HP Auto-MDIX, Auto- Flow Control, 32-bit CRC, MDI/MDI-X
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
638-1076
Two Port 10/100 Managed Ethernet Switch with 16-Bit Non-PCI CPU Interface
Datasheet
SMSC LAN9311/LAN9311i
7.2.9.1
7.2.9.2
7.2.10
7.2.10.1
Note: The power-down modes of each PHY (Port 1 PHY and Port 2 PHY) are controlled
Note: The PHY power-down modes do not reload or reset the PHY registers.
PHY General Power-Down
This power-down mode is controlled by bit 11 of the
(PHY_BASIC_CONTROL_x). In this mode the entire PHY, except the PHY management control
interface, is powered down. The PHY will remain in this power-down state as long as bit 11 is set.
When bit 11 is cleared, the PHY powers up and is automatically reset.
PHY Energy Detect Power-Down
This power-down mode is enabled by setting bit 13 (EDPWRDOWN) of the
Control/Status Register
detected on the line, the entire PHY is powered down except for the PHY management control
interface, the SQUELCH circuit, and the ENERGYON logic. The ENERGYON logic is used to detect
the presence of valid energy from 100BASE-TX, 10BASE-T, or auto-negotiation signals and is
responsible for driving the ENERGYON signal (bit 1) of the
(PHY_MODE_CONTROL_STATUS_x).
In this mode, when the ENERGYON signal is cleared, the PHY is powered down and no data is
transmitted from the PHY. When energy is received, via link pulses or packets, the ENERGYON signal
goes high, and the PHY powers up. The PHY automatically resets itself into its previous state prior to
power-down, and asserts the INT7 interrupt (bit 7) of the
(PHY_INTERRUPT_SOURCE_x). The first and possibly second packet to activate ENERGYON may
be lost.
W h e n b i t 1 3 ( E D P W R D O W N ) o f t h e
(PHY_MODE_CONTROL_STATUS_x)
The energy detect power down feature is part of the broader power management features of the
LAN9311/LAN9311i and can be used to trigger the power management event output pin (PME). This
is accomplished by enabling the energy detect power-down feature of the PHY as described above,
and setting the corresponding energy detect enable (bit 14 for Port 1 PHY, bit 15 for Port 2 PHY) of
the
on page 46
PHY Resets
In addition to the chip-level hardware reset (nRST) and Power-On Reset (POR), the PHY supports
three block specific resets. These are discussed in the following sections. For detailed information on
all LAN9311/LAN9311i resets and the reset sequence refer to
Note: The DIGITAL_RST bit in the
PHY Software Reset via RESET_CTL
The PHY can be reset via the
setting bit 1 (PHY1_RST), and the Port 2 PHY is reset by setting bit 2 (PHY2_RST). These bits are
self clearing after approximately 102uS. This reset does not reload the configuration strap values into
the PHY registers.
Power Management Control Register
independently.
Only a hardware reset (nRST) or an EEPROM RELOAD command will automatically reload
the configuration strap values into the PHY registers. For all other PHY resets, these values
will need to be manually configured via software.
for additional information.
(PHY_MODE_CONTROL_STATUS_x). When in this mode, if no energy is
Reset Control Register
DATASHEET
Reset Control Register (RESET_CTL)
is low, energy detect power-down is disabled.
(PMT_CTRL). Refer to
95
P o r t x P H Y M o d e C o n t r o l / St a t u s R e g i s t e r
(RESET_CTL). The Port 1 PHY is reset by
Port x PHY Interrupt Source Flags Register
Port x PHY Mode Control/Status Register
Port x PHY Basic Control Register
Section 4.2, "Resets," on page
Section 4.3, "Power Management,"
does not reset the PHYs.
Revision 1.7 (06-29-10)
Port x PHY Mode
36.

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