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ADIN2111CCPZ-R7 Folha de dados(PDF) 23 Page - Analog Devices

Nome de Peças ADIN2111CCPZ-R7
Descrição Electrónicos  Low Complexity, 2-Port Ethernet Switch with Integrated 10BASE-T1L PHYs
PDF  129 Pages
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Fabricante Electrônico  AD [Analog Devices]
Página de início  http://www.analog.com
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Data Sheet
ADIN2111
HARDWARE CONFIGURATION PINS
analog.com
Rev. A | 23 of 129
OVERVIEW
The ADIN2111 can operate in unmanaged or managed configura-
tions with the use of the hardware configuration pins.
The hardware configuration pins are standard pins with an alternate
bootstrap function. The ADIN2111 reads the configuration pin level
immediately after power-up, hardware reset, or software reset,
and configures the two PHY settings accordingly. When active,
the ADIN2111 immediately attempts to bring up a link on each
PHY, and the hardware configuration pins can then be used with
their main pin function. These pins can be used in unmanaged or
managed configuration.
The unmanaged configuration refers to the ADIN2111 PHY param-
eters being configured by the hardware configuration pins. This
mode can be used when the system requires a static configuration
of the ADIN2111 port settings without the need for software control.
In this context, the port to port operation on the ADIN2111 is
configured in cut through.
The managed configuration refers to the full control of the
ADIN2111 using software via the SPI. The two PHYs, MAC layer,
and the store and forward switch can be configured in software.
The configuration pins can be connected to the external host or
hardware configured using pull-up/pull-down resistors. When active,
the host controller can override any of the ADIN2111 hardware
configurations set by the hardware pins after power-up, hardware
reset, or software reset.
UNMANAGED APPLICATIONS
In unmanaged applications, it is possible to configure the ADIN2111
using the hardware configuration pins without any software inter-
vention. In that case, the ADIN2111 is configured by default in cut
through mode (port to port forwarding).
Software power-down after reset must be disabled on both port
PHYs for unmanaged applications, or the ADIN2111 associated
PHY remains in power-down indefinitely, because the device can
only exit power-down from register operation using the SPI (see the
Software Power-Down Mode section).
MANAGED APPLICATIONS
In managed applications, the ADIN2111 can be configured by a
host controller via the SPI. The host controller can dynamically
configure the device as required by the application.
In managed applications, the software power-down after reset func-
tionality can be enabled because the host controller brings the
ADIN2111 to active mode using the management interface.
HARDWARE CONFIGURATION PIN
FUNCTIONS
The following functions are configurable from the ADIN2111 hard-
ware configuration pins:
PHY 1 software power-down mode after reset
PHY 2 software power-down mode after reset
PHY 1 transmit amplitude configuration
PHY 2 transmit amplitude configuration
OPEN Alliance or generic SPI
SPI CRC/protection
All of the hardware configuration pins have internal pull-up or
pull-down resistors, as shown in Table 8. The default mode of
operation is shown in Table 16. If an alternative mode of operation
is required, refer to Table 17 for the suggested external pin control.
Table 16. Default Hardware Configuration Modes
Hardware Configuration Pin Function
Default Mode (Pin Floating)
Port 1 Software Power-Down Mode
After Reset
Enabled
Port 2 Software Power-Down Mode
After Reset
Disabled
Port 1 Transmit Amplitude
1.0 V p-p and 2.4 V p-p
Port 2 Transmit Amplitude
1.0 V p-p and 2.4 V p-p
SPI Protocol
OPEN Alliance
SPI CRC/Protection
Enabled
Table 17. Recommended Control for Hardware Configuration Pins
Required
Pin Level
Managed Configuration
Options
Unmanaged Configuration
Options
High
4.7 kΩ external pull-up resistor 4.7 kΩ external pull-up resistor
Host GPIO output high1
Low
External pull-down resistor
External pull-down resistor
Host GPIO output low1
Floating pin2
Host GPIO tristated2
Floating pin2
1 A low value series resistor is recommended.
2 An external pull-down resistor is recommended.
Software Power-Down After Reset
The P1_SWPD_EN (respectively P2_SWPD_EN) hardware config-
uration pin signal is used to enable or disable the software pow-
er-down after reset feature for PHY 1 (respectively PHY 2). The
power-down bit (CRSM_SFT_PD) in the software power-down con-
trol register is set based on the Px_SWPD_EN signal status during
power-up, hardware reset, or software reset. CRSM_SFT_PD can
also be set using the SPI via the MDIO bridge to enable software
power-down after reset.
The P1_SWPD_EN pin has a weak internal pull-down resistor.
Therefore, by default, the ADIN2111 Port 1 is configured with
software power-down after reset enabled.
The P2_SWPD_EN pin has a weak internal pull-up resistor. There-
fore, by default, the ADIN2111 Port 2 is configured with software
power-down after reset disabled.



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