AU80610004671AAS LBMH Intel, AU80610004671AAS LBMH Datasheet - Page 9

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AU80610004671AAS LBMH

Manufacturer Part Number
AU80610004671AAS LBMH
Description
MPU, ATOM PROCESSOR, D410, FC-BGA8
Manufacturer
Intel
Series
ATOM - D400r
Datasheet

Specifications of AU80610004671AAS LBMH

Core Size
64bit
Cpu Speed
1.66GHz
Digital Ic Case Style
BGA
No. Of Pins
559
Operating Temperature Range
0°C To +100°C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Processor Configuration Registers
Datasheet
RW1C-S
RW-K
RW-L
RW-L-K
RW-V
RW-V-L
RW-V-L-S
RW-S
RW-O
RW-O-S
Item
Read/Write 1 to Clear/Sticky bit(s). These bits can be read. Internal
events may set this bit. A software write of 1 clears (sets to 0) the
corresponding bit(s) and a write of 0 has no effect. Bits are not cleared by
"warm" reset, but will be reset with a cold/complete reset.
Read/Write/Key bit(s). These bits can be read and written by software.
Additionally this bit, when set, prohibits some other target bit field from
being writeable (bit fields become Read Only).
Read/Write/Lockable bit(s). These bits can be read and written by
software. Additionally there is a Key bit (which is marked RW-K or RW-L-K)
that, when set, prohibits this bit field from being writeable (bit field
becomes Read Only).
Read/Write/Lockable/Key bit(s). These bits can be read and written by
software. This bit, when set, prohibits some other bit field(s) from being
writeable (bit fields become Read Only). Additionally there is a Key bit
(which is marked RW-K or RW-L-K) that, when set, prohibits this bit field
from being writeable (bit field becomes Read Only).
Conceptually, this may be a cascaded lock, or it may be self-locking when in
its non-default state. When self-locking, it differs from RW-O in that writing
back the default value will not set the lock.
Write/Volatile bit(s). These bits can be read and written by software.
Hardware may set or clear the bit based on internal events, possibly sooner
than any subsequent software read could retrieve the value written.
Read/Write/Volatile/Lockable bit(s). These bits can be read and
written by software. Hardware may set or clear the bit based upon internal
events, possibly sooner than any subsequent software read could retrieve
the value written Additionally there is a bit (which is marked RW-K or RW-L-
K) that, when set, prohibits this bit field from being writeable (bit field
becomes Read Only).
Read/Write/Volatile/Lockable/Sticky bit(s). These bits can be read
and written by software. Hardware may set or clear the bit based upon
internal events, possibly sooner than any subsequent software read could
retrieve the value written Additionally there is a bit (which is marked RW-K
or RW-L-K) that, when set, prohibits this bit field from being writeable (bit
field becomes Read Only). These bits return to their default values on cold
reset.
Read/Write/Sticky bit(s). These bits can be read and written by
software. Bits are not returned to their default values by "warm" reset, but
will return to default values with a cold/complete reset.
Read/Write Once bit(s). Reads prior to the first write return the default
value. The first write after warm reset stores any value written. Any
subsequent write to this bit field is ignored. All subsequent reads return the
first value written. The value returns to default on warm reset. If there are
multiple RW-O or RW-O-S fields within a DWORD, they should be written all
at once (atomically) to avoid capturing an incorrect value.
Read/Write Once/Sticky bit(s). Reads prior to the first write return the
default value. The first write after cold reset stores any value written. Any
subsequent write to this bit field is ignored. All subsequent reads return the
first value written. The value returns to default on cold reset. If there are
multiple RW-O or RW-O-S fields within a DWORD, they should be written all
at once (atomically) to avoid capturing an incorrect value.
Definition
9

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