semi合集-English.pdf - 第2453页
SEMI E87-0705 © SEMI 1999, 2005 22 knows that the ope rator expects to use that port fo r something the host did not request for AM HS based delivery. 3. They enable internal buffer equipment to inform the host that it i…

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11.3.3 Access Mode State Definitions
11.3.3.1 ACCESS MODE — The parent state for the MANUAL and AUTO sub-states.
11.3.3.2 MANUAL — A sub-state of ACCESS MODE. When the production equipment or specified load port is in
this mode, only manual (non-AMHS) carrier transfers are allowed. The production equipment shall have the
capability of generating an alarm if an automated (AMHS) delivery is attempted. If a ChangeAccess service with
the value of MANUAL is received in this state, the equipment shall accept the service and no event is sent for this
action.
11.3.3.3 AUTO — A sub-state of ACCESS MODE. When the production equipment or specified load ports are in
this mode, only automated (AMHS) carrier transfers are allowed. The production equipment shall have the
capability of generating an alarm if a manual delivery is attempted. If a ChangeAccess service with the value of
AUTO is received in this state, the equipment shall accept the service and no event is sent for this action.
11.3.4 Access Mode State Transition Table
11.3.4.1 Table 9 defines the transitions for the Access Mode State Model.
Table 9 Access Mode State Transition Definitions
# Previous State Trigger New state Actions Comments
1 (no state) System restart. MANUAL
or
AUTO
(History)
The access mode
returns to the
mode it was
previous to the
system reset.
Data required to be available for this event
report:
PortID
AccessMode
2 MANUAL The host or operator has
executed a ChangeAccess
service with the value of
AUTO. This trigger can
happen at anytime, except
during a carrier transfer.
AUTO Manual deliveries are not allowed after this
state transition. The operator may also trigger
this transaction from the production
equipment console.
Data required to be available for this event
report:
PortID
AccessMode
3 AUTO The host or operator has
executed a ChangeAccess
service with the value of
MANUAL. This trigger
can happen at anytime,
except during carrier
transfer.
MANUAL The operator may also trigger this transaction
from the production equipment console or a
manual switch at the load port. Automated
transfers are not allowed after this state
transition.
Data required to be available for this event
report:
PortID
AccessMode
12 Reservation State Model
12.1 The purpose of the Reservation State Model is to define the host view of future activity at a specific load port.
12.1.1 In the Reservation State Model, the ReserveAtPort and CancelReservationAtPort services enable the
following items:
1. They enable the host to inform the equipment of a future carrier delivery without specifying the carrier ID and
at the same time allow host based verification. (Equipment based verification is enabled via the Load
Port/Carrier Association State Model, the Bind service, and the Carrier Notification service detailed in §13,
¶15.4.2 and ¶15.4.11 of SEMI E87.)
2. They enable the equipment to send a state change event to the host if the operator (either local or remote)
informs the equipment of a future carrier delivery to a port without specifying the carrier ID. Thus the host

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knows that the operator expects to use that port for something the host did not request for AMHS based
delivery.
3. They enable internal buffer equipment to inform the host that it is physically initiating a carrier out operation
(this carrier has a known or specified ID) and that no AMHS delivery should be scheduled.
4. The Bind and CancelBind services also trigger changes in the Load Port Reservation State Model. If the Load
Port Reservation state model is in the NOT RESERVED state, the Bind service triggers a transition to the
RESERVED state. If the Load Port Reservation is in the RESERVED State, the CancelBind service triggers a
transition to NOT RESERVED.
12.1.2 For internal buffer equipment, the Reservation State Model, the ReserveAtPort service, the
CancelReservationAtPort service, and all other associated functionality are necessary for fundamental compliance to
this standard.
12.1.3 For fixed buffer equipment, the Reservation State Model, the ReserveAtPort service, the
CancelReserveAtPort service, and all other associated functionality is a user option and not necessary for
fundamental compliance.
12.1.4 For equipment implementing the reservation state model, the equipment shall provide a load port reservation
state model for each load port.
12.2 Reservation Visible Signal
12.2.1 When a port reservation has taken place, the equipment shall display a visible signal indicating that the
designated load port is in the Reserved State. Examples of visible signals for the associated load port are: Blinking
LEDs, flags, color indicators, or other methods that allow easy recognition that the load port is reserved; proximity
to or location on the load port is recommended. The visible signal shall remain present as long as the load port state
remains RESERVED. When the state changes to NOT RESERVED the visible indicator shall cease. This
capability is not required for fundamental compliance to CMS.
12.3 Reservation State Model Diagram
NOT
RESERVED
RESERVED
2 3
1
Load Port
Reservation
Figure 5
Reservation State Model Diagram

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12.4 Load Port Reservation State Definitions
12.4.1 LOAD PORT RESERVATION — The super state of the substates NOT RESERVED and RESERVED.
12.4.2 NOT RESERVED — A substate of LOAD PORT RESERVATION, this state is active when there is no
reservation existing at the load port.
12.4.3 RESERVED — A substate of LOADPORT RESERVATION, this state is active when there is a reservation
for future activity at the load port. When in this state, the access mode for a load port may not be changed.
12.5 Load Port Reservation State Transition Table
Table 10 Load Port Reservation State Transition Table
# Previous State Trigger New State Actions Comments
1 (no state) System reset. NOT
RESERVED
No event report is required
for this transition.
2 NOT
RESERVED
Service: If reserved by service,
the host or operator sends a
ReserveAtPort or a Bind service
to the production equipment.
CarrierOut: This happens when
the equipment physically initiates
a CarrierOut operation.
RESERVED If the user has configured
the equipment to use the
reservation visible signal
indicator, it is activated for
this load port.
Data required to be
available for this event
report:
PortID
LoadPortReservationState
CarrierID may be included
when a carrier out or a
bind service triggers this
transition.
3 RESERVED Service: If a reservation is
cancelled by service, the host or
operator sends a CancelBind or a
CancelReservationAtPort.
Carrier arrival: A carrier arrives
at the reserved port.
NOT
RESERVED
If the user has configured
the equipment to use the
reservation visible signal,
the indicator is deactivated
for this load port.
Data required to be
available for this event
report:
PortID
LoadPortReservationState
12.6 Relation of Reservation to Association
12.6.1 The following figure indicates the relationship of Association to Reservation.
Reservation / Association
ASSOCIATED
ID Read
Unload or
carrier in
Complete
Load
Complete
ASSOCIATED
RESERVED
Bind
Carrier Presence
Load
w/o Bind
w/o Reserve
Load
w/ Bind
If fails, then PWC/CC
is received
RESERVED
Reserve
Load
w/ Reserve
ASSOCIATED
Visible Signal
Carrier Out
Complete
Unload
Complete
Carrier Out
St art
RESERVED
ASSOCIATED
Carrier Out
Figure 6
Relation of Reservation to Association