Campbell Scientific CR6 CR6 Measurement and Control System - Page 465

Maintenance - Details

Page 465 highlights

9. Maintenance - Details Reading List: • Maintenance - Overview (p. 88) • Maintenance - Details (p. 465) • Protect the CR6 from humidity and moisture. • Replace the internal lithium battery periodically. 9.1 Moisture Protection When humidity levels reach the dew point, condensation occurs and damage to CR6 electronics can result. Effective humidity control is the responsibility of the user. The CR6 module is protected by a packet of silica gel desiccant, which is installed at the factory. This packet is replaced whenever the CR6 is repaired at Campbell Scientific. The module should not normally be opened except to replace the internal lithium battery. Adequate desiccant should be placed in the instrumentation enclosure to provide added protection. 9.2 Replacing the Internal Battery CAUTION Fire, explosion, and severe-burn hazard. Misuse or improper installation of the internal lithium battery can cause severe injury. Do not recharge, disassemble, heat above 100 °C (212 °F), solder directly to the cell, incinerate, or expose contents to water. Dispose of spent lithium batteries properly. The CR6 contains a lithium battery that operates the clock and SRAM when the CR6 is not powered. The CR6 does not draw power from the lithium battery while it is fully powered by a power supply (p. 81). In a CR6 stored at room temperature, the lithium battery should last approximately TBD years (less at temperature extremes). In installations where the CR6 remains powered, the lithium cell should last much longer. While powered from an external source, the CR6 measures the voltage of the lithium battery ever 24 hours. This voltage is displayed in the Status table (see the appendix Status Table and Settings (p. 581) ) in the Lithium Battery field. A new battery supplies approximately 3.6 Vdc. Replace the battery when voltage is approximately 2.7 Vdc. • When the lithium battery is removed (or is allowed to become depleted below 2.7 Vdc and CR6 primary power is removed), the CRBasic program and most settings are maintained, but the following are lost: o Run-now and run-on power-up settings. o Routing and communication logs (relearned without user intervention). o Time. Clock will need resetting when the battery is replaced. o Final-memory data tables. 465

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9.
Maintenance — Details
Reading List:
Maintenance — Overview
(p. 88)
Maintenance — Details
(p. 465)
Protect the CR6 from humidity and moisture.
Replace the internal lithium battery periodically.
9.1
Moisture Protection
When humidity levels reach the dew point, condensation occurs and damage to
CR6 electronics can result.
Effective humidity control is the responsibility of the
user.
The CR6 module is protected by a packet of silica gel desiccant, which is installed
at the factory.
This packet is replaced whenever the CR6 is repaired at Campbell
Scientific.
The module should not normally be opened except to replace the
internal lithium battery.
Adequate desiccant should be placed in the instrumentation enclosure to provide
added protection.
9.2
Replacing the Internal Battery
CAUTION
Fire, explosion, and severe-burn hazard.
Misuse or improper
installation of the internal lithium battery can cause severe injury.
Do not
recharge, disassemble, heat above 100 °C (212 °F), solder directly to the cell,
incinerate, or expose contents to water.
Dispose of spent lithium batteries
properly.
The CR6 contains a lithium battery that operates the clock and SRAM when the
CR6 is not powered.
The CR6 does not draw power from the lithium battery
while it is fully powered by a
power supply
(p. 81).
In a CR6 stored at room
temperature, the lithium battery should last approximately TBD years (less at
temperature extremes).
In installations where the CR6 remains powered, the
lithium cell should last much longer.
While powered from an external source, the CR6 measures the voltage of the
lithium battery ever 24 hours. This voltage is displayed in the
Status
table (see the
appendix
Status Table
and Settings
(p. 581)
) in the
Lithium Battery
field.
A new
battery supplies approximately 3.6 Vdc.
Replace the battery when voltage is
approximately 2.7 Vdc.
When the lithium battery is removed (or is allowed to become depleted below
2.7 Vdc and CR6 primary power is removed), the CRBasic program and most
settings are maintained, but the following are lost:
o
Run-now and run-on power-up settings.
o
Routing and communication logs (relearned without user intervention).
o
Time. Clock will need resetting when the battery is replaced.
o
Final-memory data tables.
465