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LAN8820 데이터시트(PDF) 21 Page - Microchip Technology

부품명 LAN8820
상세설명  RGMII 10/100/1000 Ethernet Transceiver
PDF  83 Pages
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제조업체  MICROCHIP [Microchip Technology]
홈페이지  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

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 2009-2015 Microchip Technology Inc.
DS00001871B-page 21
LAN8820/LAN8820I
3.5
Interrupt Management
The device supports multiple interrupt capabilities which are not a part of the IEEE 802.3 specification. An active low
asynchronous interrupt signal may be generated on the IRQ pin when selected events are detected, as configured by
the Interrupt Mask Register.
To set an interrupt, the corresponding mask bit in the Interrupt Mask Register must be set (see Table 3-3). When the
associated event occurs, the IRQ pin will be asserted. When the corresponding event to deassert IRQ is true, the IRQ
pin will be deasserted. All interrupts are masked following a reset.
Note 3-2
The ENERGYON bit of the 10/100 Mode Control/Status Register (17.1) defaults to “1” after a
hardware reset. If no energy is detected before 256mS, the ENERGYON bit will be cleared. When
ENERGYON is “0” and energy is detected, due to the establishment of a valid link or the PHY auto-
negotiation moving past the ability detect state, the ENERGYON bit will be set and the INT7 bit of
the Interrupt Source Flags Register will assert. If ENERGYON is set and the energy is removed, the
INT7 bit will assert. The ENERGYON bit will clear 256mS after the interrupt. If the PHY is in manual
mode, INT7 will be asserted 256mS after the link is broken. If the PHY is auto-negotiating, INT7 will
be asserted 256mS after the PHY returns to the ability detect state (maximum of 1.5S after the link
Note:
Table 3-3 utilizes register index and bit number referencing in lieu of individual names. For example,
“30.10” is used to reference bit 10 (transmitter elastic buffer overflow interrupt enable) of the Interrupt Mask
Register (register index 30).
TABLE 3-3:
INTERRUPT MANAGEMENT TABLE
Mask
Interrupt Source Flag
Interrupt Source
Event to Assert
IRQ
Event to Deassert
IRQ
30.15:11
29.15:11
RESERVED
-NA-
-NA-
-NA-
-NA-
30.10
29.10
Transmitter Elastic
Buffer Overflow
-NA-
-NA-
(Note 3-3)
Transmitter Elastic
Buffer Overflow
Overflow condition
resolved
30.9
29.9
Transmitter Elastic
Buffer Underflow
-NA-
-NA-
(Note 3-3)
Transmitter Elastic
Buffer Underflow
Underflow condition
resolved
30.8
29.8
Idle Error Count
Overflow
10.7:0
Idle Error Count
Idle Error Count
Overflow
Reading register 10
30.7
29.7
ENERGYON
17.1
ENERGYON
Rising 17.1
(Note 3-2)
Falling 17.1 or
Reading register 29
30.6
29.6
Auto-Negotiation
complete
1.5
Auto-Negotiate
Complete
Rising 1.5
Falling 1.5 or
Reading register 29
30.5
29.5
Remote Fault
Detected
1.4
Remote Fault
Rising 1.4
Falling 1.4, or
Reading register 1 or
Reading register 29
30.4
29.4
Link Down
1.2
Link Status
Falling 1.2
Reading register 1 or
Reading register 29
30.3
29.3
RESERVED
-NA-
-NA-
-NA-
-NA-
30.2
29.2
Parallel Detection
Fault
6.4
Parallel
Detection Fault
Rising 6.4
Falling 6.4 or
Reading register 6, or
Reading register 29 or
Re-AutoNegotiate or
Link down
30.1
29.1
Auto-Negotiation
Page Received
6.1
Page Received
Rising 6.1
Falling of 6.1 or
Reading register 6, or
Reading register 29
Re-auto-negotiate, or
Link Down.



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