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ADIN1300CCPZ-R7 Folha de dados(PDF) 22 Page - Analog Devices

Nome de Peças ADIN1300CCPZ-R7
Descrição Electrónicos  Robust, Industrial, Low Latency and Low Power 10 Mbps
PDF  79 Pages
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Fabricante Electrônico  AD [Analog Devices]
Página de início  http://www.analog.com
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ADIN1300CCPZ-R7 Folha de dados(HTML) 22 Page - Analog Devices

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ADIN1300
Data Sheet
Rev. 0 | Page 22 of 79
POWER-DOWN MODES
The ADIN1300 supports a number of power-down modes:
hardware, software, and energy detect power-down, and EEE
LPI mode. The lowest power mode is hardware power-down
mode where the device is turned fully off and is not accessible.
Hardware Power-Down Mode
Hardware power-down mode is useful when operation of the
ADIN1300 is not required and power must be minimized. The
ADIN1300 enters hardware power-down mode when the
RESET_N pin is asserted and held low. In this mode, all analog
and digital circuits are disabled, the CMU is disabled, the clocks
are gated off, and the only power is the leakage power of the
circuits. The management interface registers are not accessible
in this mode.
The following events occur in hardware power-down mode:
All analog and digital circuits are disabled.
The MAC interface output pins (output pins with respect
to the ADIN1300) are tristated. Internally, these pins have
a weak pull-down resistor, so these outputs are pulled low.
This assumes no external pull-up resistors connected to
these pins.
All internal clocks are gated off.
The PHY output clock (available on the GP_CLK pin) is
disabled.
The output reference clock (available on the CLK25_REF pin)
is disabled.
The management interface registers are not accessible.
Software Power-Down Mode
In software power-down mode, the ADIN1300 is powered down,
the management interface can be accessed, and the ADIN1300
can be configured. The ADIN1300 does not attempt to bring up
links until enabled.
Software power-down mode is useful when the device is being
configured by software before links are brought up. The
ADIN1300 can be configured to enter software power-down
mode after reset using the appropriate pull-up/pull-down
resistors on the LINK_ST pin and LED_0 pin, which sets the
default value of the SFT_PD bit, Address 0x0000, to 1. The
ADIN1300 also enters software power-down mode when the
SFT_PD bit is set to 1. In software power-down mode, the
analog and digital circuits are in a low power state. Typically, the
CMU is disabled, most clocks are gated off, and the clock for
the remaining digital circuitry runs at 25 MHz. Any signal or
energy on the MDI pins (MDI_x_x) is ignored and no links are
brought up. The management interface registers are accessible
and the device can be configured using software. If the
ADIN1300 is configured to output a 125 MHz clock on the
GP_CLK pin, the CMU is enabled and the power in this mode
is higher.
The following events occur in software power-down mode:
All analog transmit and receive circuits are disabled.
The MAC interface output pins (output pins with respect
to the ADIN1300) are driven to a known idle state. All
outputs except RXC/RX_CLK are driven low and
RXC/RX_CLK is driven high.
Most internal clocks are gated off.
The output reference clock (if enabled) is available on the
CLK25_REF pin.
The selected PHY output clock (if enabled) is available on
the GP_CLK pin.
The management interface registers are accessible.
The ADIN1300 exits software power-down mode when the
SFT_PD bit is cleared. At this point, the PHY attempts to bring
up links according to its configuration. For example, if
autonegotiation is enabled and all speeds are enabled, it advertises
all speeds and starts to send autonegotiation link pulses.
Energy Detect Power-Down Mode
In energy detect power-down mode, the ADIN1300 is powered
down but still monitors the line for signal energy. Typically, the
ADIN1300 enters this mode when there is no cable plugged in
and remains in this mode until a remote link partner is available.
Energy detect power-down mode can be enabled using the
appropriate pull-up/pull-down resistors on the LINK_ST pin
and LED_0 pin (see Table 23) or by setting the NRG_PD_EN
bit (PHY_CTRL_STATUS_2 register, Address 0x0015) to 1. When
the PHY is in normal operation (not software power-down) and
energy detect power-down mode is enabled, the PHY enters
energy detect power-down mode after a number of seconds of
silence on the line. This is a very low power mode in which the
analog and digital circuits are in a low power state. Typically,
the CMU is disabled and most clocks are gated off. If the
ADIN1300 is configured to output a 125 MHz clock on the
GP_CLK pin, the CMU is enabled and the power in this mode
is higher. The PHY monitors the line for signal energy and sends
a link pulse once every second. If signal energy is detected, the
PHY exits energy detect power-down mode and starts sending
link pulses.
The following events occur when in energy detect power-down
mode:
All analog and digital circuits are disabled.
Most internal clocks are gated off.
The output reference clock (if enabled) is available on the
CLK25_REF pin.
The selected PHY output clock (if enabled) is available on
the GP_CLK pin.
The management interface registers are accessible.
The PHY monitors the line for signal energy.



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