FIELD OF THE INVENTION
[0001] The present invention relates to a method and apparatus for minimising noise from
air moving devices. In particular, the present invention pertains to a system for
reducing noise from a fan filter unit in clean room facility.
BACKGROUND OF THE INVENTION
[0002] It is common for modem production and testing facility to control the particles in
the air that circulates within clean room facility in order to ensure the quality
of its output. Whether be it wafer dies, compact discs or memory disk drives, effective
fan filter units are needed to not only keep the particles contents within the clean
room at acceptable levels but also to circulate the air which the worker breathe.
[0003] Such powerful fan filter units create excessive noise however. It is known that the
insulation material are lined along the conduit to or within the fan filter units
to reduce the noise generate by the fan blowers. Over time, however, the particles
or fiber from the insulation material are dislodged from the surface and contaminate
the clean room facility.
[0004] The problem associated with the particle contents in clean room facility is exacerbated
in confined space or enclosures such as a multi-story wafer fabrication plant. By
confined space, the present invention envisages the height of the ceiling to be less
than three meters. Because of the low height clearance, the noise from fan filter
units is particularly pronounced.
OBJECT OF THE INVENTION
[0005] It is an object of the present invention to minimise the noise generated by fan filter
units without increasing the particle counts of a clean room facility connected to
such units.
[0006] It is another object of the present invention to minimise the noise generated by
fan filter units without doing away existing fan blower in a confined clean room facility.
SUMMARY OF THE INVENTION
[0007] The present invention is a system of geometric guides and baffles for directing and
diffusing the external air drawn from a fan blower before distributing the flow evenly
to the outlet a fan filter unit. This arrangement not only reduces the turbulence
within a fan filter unit but also maintains the particle count of air drawn through
the same system. Furthermore, the present invention is implemented in dimensions substantially
similar to that of the fan blower. As such, the present invention minimises noise
of a fan filter unit even in confined clean room facility.
BRIEF DESCRIPTION OF THE DRAWINGS
[0008]
FIG. 1 is a exploded, right side, perspective elevational view of the present invention
being integrated as part of a fan filter unit (filter not shown).
FIG. 2 is a front, cross sectional elevational view of the system of geometric guides
and baffles of the present invention together with filter of a fan filter unit.
FIG. 3 is a top, plan elevational view of section A-A in FIG. 2 highlighting the S
shaped guide and curved baffle of the present invention.
FIG. 4 shows the locations in the fan filter units where the velocity of airflow were
are measured.
FIG. 5 is a chart comparing the average velocity of airflow of a fan filter unit with
and without the present invention over a range of fan blower power supply (measured
in Hz).
FIG. 6 is a chart comparing the noise level from a fan filter unit with and without
the present invention and is measured at a location one meter directly below the outlet
of the unit.
DESCRIPTION OF THE EMBODIMENT OF THE INVENTION
[0009] A method and apparatus for minimising noise from a fan filter unit is described.
In the following description, numerous specific details are set forth such as guides
and baffles, etc. in order to provide a thorough understanding of the present invention.
In other instances, well-known parts such as the motors for the fan blower and ducts
connected to the fan filter units are not shown in order not to obscure the present
invention.
[0010] FIG. 1 is a exploded, right side, perspective elevational view of the present invention
being integrated as part of a fan filter unit 10 (filter not shown). The fan filter
unit comprises a fan blower 12 disposed within a base plate 14, a top housing 16 and
side housings 22 respectively. The fan blower is supported in the base plate by a
mounting 20 on the underside of the base plate. Not shown but crucial to the fan filter
unit 10 is a motor disposed underneath the fan blower 12 for providing rotational
movement for the fan blower.
[0011] By itself, the fan filter unit draws air externally from an air inlet 18 and discharges
it via outlet opening 19 as shown in FIG. 2. At the outlet opening is disposed a filter
32 for removing large particles or contaminants. While the fan filter unit is effectively
is circulating or ventilating air in clean room facility, the noise generated by such
unit is annoying. It is a practice in the industry to insulate the fan filter unit
by lining the interior of the fan filter with insulating materials such as sponge,
PVC foam, or fiber glass. Unfortunately, over time such insulating material tend to
contaminate clean room facility as particles from the surface is dislodged and introduced
into the air flow through the fan filter unit. Without the knowledge of the clean
room operator, the fan filter unit becomes a source of contaminant. In the process,
the output from clean room facility such as wafer die, compact discs or disk drives
is contaminated.
[0012] Referring again to FIG. 1, the present invention is a method and apparatus for placing
geometric guides and baffles in strategic locations along the path of airflow within
the fan filter unit to minimise noise from it without contaminating the air flowing
through it. The present invention comprises at least a set of S shaped guides 24 disposed
circumferentially the fan blower, another set of porous baffles 26 and curved baffles
28 for diffusing and directing air from the S shaped guides 24 and finally a V shaped
baffle 30 below the fan blower for distributing air evenly to the filter 30.
[0013] FIG. 3 is a top, plan elevational view of section A-A in FIG. 2 highlighting the
S shaped guide and curved baffle of the present invention. The S shaped guides 24
are contoured to receive the discharged air from the fan blower 12 (shown in dotted
circle) and guide the flow of air with minimum amount of turbulence towards a set
of perforated baffles 26. Preferably the S shaped guides are made of metallic material
whose spring back effect enable the installer to install it easily by inserting it
between a plurality of clips disposed on the base plate 14. The perforated baffles
26 can be a sheet of metal with a matrix of holes. In the preferred embodiment of
the present invention, the holes are 3.3 mm in diameter with about 50% spacing. The
perforated baffles disposed at angles of about 45 degree to diffused the air from
the S shaped guides 24. Adjacent and below the lower edge of the perforated baffles
26 are disposed the curved baffles 28 for redirecting the flow of air below the base
plate. Although the curved baffles 28 can take on a straight leading edge, the present
invention recommends straight but sloping leading edges 35 as illustrated in FIGS
2 and 3. Note also in FIG. 3 that the placement of S shaped guides 24, the perforated
baffles 26, and the curved baffles 28 are symmetrical to each other with reference
to a rotational axis of 180 degrees centered at the fan blower. Last but not the least
is the V shaped baffle 30 disposed below the fan blower mounting for distributing
the air flow evenly before discharging it through the outlet opening 19 of the fan
filter unit 10.
[0014] FIG. 5 is a chart comparing the average velocity of airflow of a fan filter unit
with and without the present invention over a range of fan blower settings (measured
in Hz). The average velocity of airflow is measured at fifteen different points in
the fan filter unit and illustrated in FIG. 4 respectively. Referring to FIG. 5, one
can appreciate that the average velocity of a fan filter unit with the present invention
is higher and more even than that without the present invention. It is evident that
pressure loss of a fan filter unit having the present invention is less than that
without the present invention. As such, considerable energy saving over time can be
achieved.
[0015] Finally and most importantly, FIG. 6 is a chart comparing the noise level from a
fan filter unit with and without the present invention and is measured at a location
one meter directly below the outlet of the unit. Measured one meter below a fan filter
unit, the present invention allows the fan filter unit to operate with far less noise
than one without the present invention.
[0016] While the present invention has been described particularly with reference to FIGS.
1 to 6 with emphasis on a method and apparatus for minimising noise from a fan filter
unit, it should be understood that the figures are for illustration only and should
not be taken a limitation on the invention. In addition, it is clear that the method
and apparatus of the present invention have utility in many applications where noise
reduction is required. It is contemplated that many changes and modifications may
be made by one of ordinary skill in the art without departing from the spirit and
the scope of the invention as described.
1. A fan filter unit, said fan filter unit comprising at least a fan blower (12) disposed
on a base plate (14), a top housing (16) coupled to said base plate (14) with an inlet
opening (18) and a side housing (22) coupled to said top housing (16) for enclosing
the fan filter unit, said side housing (22) further having an outlet opening, the
fan (12) being for drawing air through the inlet opening (18) and for discharging
air through the outlet opening, characterized in that the fan filter unit has
at least a pair of S-shaped guides (24) disposed on said base plate (14) within
said fan filter unit and circumferentially of said fan blower (12) for receiving air
discharged therefrom;
guide means (26, 28) disposed within the fan filter unit and at the output of said
S shaped guides (24) for diffusing the airflow therefrom; and for directing airflow
to below said base plate (14); and
means for evenly distributing the airflow,
whereby the flow of air is guided with reduced turbulence compared to a fan filter
unit which does not have the S shaped guides (24), first guide means (26) and second
guide means (28), whereby the noise from said fan filter unit is minimised without
requiring conventional sound insulation material in contact with the airflow path
and without introducing contaminants from such sound insulation material into the
airflow through the fan filter unit.
2. A fan filter unit as claimed in claim 1 wherein the guide means comprises first guide
means (26) disposed within the fan filter unit and at the output of said S shaped
guides (24) for diffusing the airflow therefrom and second guide means (28) disposed
within said fan filter unit and adjacent to said first guide means (26) for directing
airflow to below said base plate (14)
3. A fan filter unit as claimed in claim 2 wherein the guide means (26) comprise a pair
of first baffles.
4. A fan filter unit as in claim 3 wherein said first baffles are perforated.
5. A fan filter unit as claimed in claim 2, wherein said second guide means comprise
a pair of second baffles (28).
6. A fan filter unit as in claim 5, wherein said second baffles (28) are curved.
7. A fan filter unit as in claim 5, wherein said second baffles (28) are flat.
8. A fan filter unit as in claim 1, wherein the means for distributing the airflow comprises
guide means located below the base plate (14).
9. A fan filter unit as in claim 8, wherein the guide means located below the base plate
(14) comprises baffle means.
10. A fan filter unit as in claim 9, wherein the baffle means for evenly distributing
the airflow comprises at least one baffle (30) disposed on the underside of the base
plate, the flow of air being guided with reduced turbulence compared to a fan filter
unit which does not have the S shaped guide (24 guide means (26, 28) and V shaped
baffle (30).
11. A fan filter unit as in claim 10, wherein the baffle (30) disposed on the underside
of the base plate is V-shaped.
12. A fan filter unit as in any of claims 1 to 11 wherein said S-shaped guides, said guide
means (26, 28), said baffle (30) disposed on the underside of the base plate or all
of them are made of metal.
13. A fan filter unit as in claim 1 wherein said S shaped guides (24) are coupled to said
base plate with a plurality of clips (36).
14. A fan filter unit as in claim 3 wherein said first baffles (26) are disposed at an
angle of 45 degrees with respect to the surface of said side housing.
15. A fan filter unit as in claim 5 wherein the lower edges of the second baffles (28)
are substantially curved.
16. A fan filter unit as claimed in claim 5 wherein the lower edges of the second baffles
(28) between the comers are substantially straight.
17. A method for minimising noise from a fan filter unit, said fan filter unit comprising
at least a fan blower (12) disposed on a base plate (14), a top housing (16) coupled
to said base plate (14) with an inlet opening (18) and a side housing (22) coupled
to said top housing (16) for enclosing the fan filter unit, said side housing (22)
further having an outlet opening, the fan being for drawing air through the inlet
opening (18) and for discharging the air through the outlet opening, said method being
characterized by comprising the steps of:
providing a pair of S shaped guides (24) disposed on said base plate(14) within said
fan filter unit and circumferentially of said fan blower (12) for receiving air discharged
therefrom;
diffusing the airflow and directing the airflow below said base plate (14) with guide
means (26,28) disposed within the fan filter unit and at the output of said S shaped
guides (24); and evenly distributing the airflow;
whereby the flow of air is guided with reduced turbulence compared to a fan filter
unit which does not have the pair of S shaped guides (24) and guide means (26, 28),
whereby the noise from said fan filter unit is minimised without requiring conventional
sound installation material in contact with the airflow path and without introducing
contaminants from such sound insulation material into the airflow flowing through
the fan filter unit.