Description
1C31122G02 This bit configures the module (write) or indicates the configuration
state of the module (read). A “1” indicates that the module is configured.
Note that until the module is configured, reading from addresses 0
through 11 (B in Hex) will produce an attention status.
Bit 1: This bit (write “1”) forces the module into its error state, resulting in the
error LED being lit. The read of bit 1 1C31122G02 indicates that there is an internal
module error, or the Controller has forced the module into the error
state. The state of this bit is always reflected by the module’s Internal Er
ror LED. Whenever this bit is set, 1C31122G02 an attention status is returned to the
Controller when addresses 0 through 11 (B in Hex) are read.
brand | Product Name | Product model | Order No |
EMERSON | modular | 1C31122G02 | nothing |
Place of Origin | Marketable land | Imported or not | defects liability period |
Europe and America | Nationwide and overseas | yes | a year |
Place of shipment | Delivery method | How to use | Applicable industries |
Xiamen | Shunfeng Express | Commissioning and installation | Power Plant Steel Plant Cement Plant Shipboard Papermaking |
Service advantages | Foreign import, goods preparation and supply | Reasonable price and reliable quality | Pictures are for reference only |
Product features | Primary source of goods, supply by model | After sales guarantee | Chen 1810693-7731 |
1C31122G02 These bits are “not used” and are read as “0” under normal operation.
Bit 4: This bit (read) indicates that the module is in the “Warming” state. This
state exists after power up and terminates after 8.16 seconds. The mod
ule will be in the error condition during the warm up period.
Bits 5-6: These bits are “not used” and are read as “0” under normal operation.
Bit 7: This bit is the result of a checksum test of 1C31122G02 the EEPROM. A failure of this
test can indicate a bad EEPROM, but typically indicates that the module
has not been calibrated. A “0” indicates that there is no error condition.
If an error is present, the error will be indicated by the module error LED
being lit. The point fault bit will also be set as all the point data is not
calibrated. The “1” state of this bit indicates an unrecoverable error con
dition in the field.
This bit is “not used” and is read as “0” under normal operation.
Bit 11: This bit (write) is used to initiate self-calibration. The sampling rate dur
ing self-calibration will be 2 per second. The status (read) bit is not used
and is read as “0” under normal operation.
Bit 12: This bit is “not used” and is read as “0” under normal operation.
Bit 13: This bit (read) indicates that the module has internal memory error
(FLASH, checksum, Register, or Static RAM error). If this error is
present, the module error LED is lit, the point fault bit will also be set
since the condition of the module is undetermined.
Bit 14: This bit is “not used” and is read as “0” under normal operation.
Bit 15: This bit indicates the point fault status of the module. It is the logical
“OR” of the eight individual point quality statuses plus bits 1, 7, 12, and
13 of this register. A “0” indicates that all eight points have good quality
and no module errors exist.
When bits 1, 4, 7 or 13 of the Status Register are not set, this bit (when set to “1”)
indicates that at least one of the points has bad quality.
A subsequent read of the Point Quality Register at Address 12 (C in Hex) will reveal
the point(s) that have bad quality (see Table 5-4). The Address 12 (C in Hex) Point
Quality Register contains data only when the module fault is due to a bad point
quality.
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Lead time problem
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