Subsystems
CGS-240 Manual
6/15/2021
Page 62 of 148
6.2.8
VENT VALVE, SOL 2
The vent valve, SOL 2, is used to vent pressure from the saturator
during shutdown and whenever the system is not generating
humidity. It is configured as a normally-open valve, meaning that it
vents whenever it is de-energized (whenever there is no power
applied).
When the humidity generator is generating humidity, SOL 2 is
energized to allow the saturator to pressurize normally. When the
humidity generator is generating, the ECB’s DC CONTROL –
RLY 13
sources 24 VDC to energize the vent solenoid causing it to stop
venting. An LED on RLY 13 also indicates the relay status. When the
LED is on, the solenoid coil is energized and the valve is not venting.
Note that during normal operation of the humidity generator, the coil
is energized and the valve will be hot to the touch.
6.2.9
DRYER BLEED, SOL 10 (OPTIONAL)
The air dryer operates by continuously bleeding a small flow of air past a water permeable membrane. The air
dryer may optionally be equipped with a dryer bleed valve. When the system is running, the bleed valve energizes
to activate the drying operation. While drying, a few liter/min of air bleeds from the dryer. When the system is
shut down and dry air is no longer required, the valve deactivates, preventing air from bleeding unnecessarily. If no
bleed valve is installed, the dryer bleeds continuously regardless of system run status or dry air demand.
6.3
FLUID SYSTEM
There are several separate and distinct fluid systems in the humidity generator. The saturator fluid circulation
system, utilizing a 30-50% mixture of propylene glycol and water, is used to control the temperature of the
saturator. The fluid in this system, while thermally coupled to the saturator, never comes in direct contact with the
gas stream.
The chamber fluid circulation system, utilizing a 30-50% mixture of propylene glycol and water, is used to control
the temperature of the chamber and window. The saturator and chamber fluid circulation systems, while
independently controlled, utilize a common fluid expansion tank and therefore share a common fluid source.
A separate fluid system, utilizing distilled water only, is used to humidify the incoming gas, and is the main source
of humidity in the system’s outgoing gas stream. Humidification is accomplished by maintaining a set water level
within the presaturator. This liquid level control system requires sufficient distilled water supply level be
maintained by the operator. A distilled water reservoir tank is located within the lower cabinet.
6.3.1
DISTILLED WATER SUPPLY
Distilled water is required and must be maintained at a sufficient level in the distilled water reservoir tank in the
lower cabinet. This tank is connected via a suction tube to the presaturator via the preset fill pump.
The operator is responsible for maintaining distilled water in this tank, filling it when required.
SOL 2
Figure 6.15
Содержание CGS-240
Страница 1: ...CGS 240 RH Systems LLC 1225 W Houston Ave Gilbert AZ 85233 Manual...
Страница 97: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 97 of 148 8 2 ILLUSTRATIONS Figure 8 1 CGS 240...
Страница 98: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 98 of 148 Figure 8 2...
Страница 99: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 99 of 148 Figure 8 3...
Страница 100: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 100 of 148 Figure 8 4...
Страница 101: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 101 of 148 Figure 8 5 Figure 8 6...
Страница 102: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 102 of 148 Figure 8 7 Figure 8 8...
Страница 103: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 103 of 148 Figure 8 9...
Страница 104: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 104 of 148 Figure 8 10...
Страница 105: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 105 of 148 Figure 8 11 Figure 8 12...
Страница 106: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 106 of 148 Figure 8 13 Figure 8 14...
Страница 107: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 107 of 148 Figure 8 15...
Страница 108: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 108 of 148 Figure 8 16...
Страница 109: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 109 of 148 Figure 8 17...
Страница 110: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 110 of 148 Figure 8 18...
Страница 111: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 111 of 148 Figure 8 19...
Страница 112: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 112 of 148 Figure 8 20...
Страница 113: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 113 of 148 Figure 8 21...
Страница 114: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 114 of 148 Figure 8 22...
Страница 115: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 115 of 148 Figure 8 23...
Страница 117: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 117 of 148 Figure 8 25...
Страница 118: ...Illustrated Parts Breakdown CGS 240 Manual 6 15 2021 Page 118 of 148 Figure 8 26...
Страница 120: ...Drawings CGS 240 Manual 6 15 2021 Page 120 of 148...
Страница 121: ...Drawings CGS 240 Manual 6 15 2021 Page 121 of 148 Figure 9 3 Refrigeration System...
Страница 122: ...Drawings CGS 240 Manual 6 15 2021 Page 122 of 148 Figure 9 4 Pneumatic System...
Страница 123: ...Drawings CGS 240 Manual 6 15 2021 Page 123 of 148 Figure 9 5 Fluid System...
Страница 124: ...Drawings CGS 240 Manual 6 15 2021 Page 124 of 148 Figure 9 6 AC Distribution...
Страница 125: ...Drawings CGS 240 Manual 6 15 2021 Page 125 of 148 Figure 9 7 AD0 3 LVL4...
Страница 126: ...Drawings CGS 240 Manual 6 15 2021 Page 126 of 148 Figure 9 8 Power Distribution...
Страница 127: ...Drawings CGS 240 Manual 6 15 2021 Page 127 of 148 Figure 9 9 RLY 1 14...
Страница 128: ...Drawings CGS 240 Manual 6 15 2021 Page 128 of 148 Figure 9 10 PT 12 Temp Board...
Страница 129: ...Drawings CGS 240 Manual 6 15 2021 Page 129 of 148 Figure 9 11 UART 0 3...
Страница 130: ...Drawings CGS 240 Manual 6 15 2021 Page 130 of 148 Figure 9 12 Access to Presat Drain Fitting...
Страница 131: ...Drawings CGS 240 Manual 6 15 2021 Page 131 of 148 Figure 9 13 Access to Sat Drain Fittings...
Страница 132: ...Drawings CGS 240 Manual 6 15 2021 Page 132 of 148 Figure 9 14 Temperature Probes...
Страница 133: ...Drawings CGS 240 Manual 6 15 2021 Page 133 of 148 Figure 9 15 Pressure Transducers Manifold...