Detailed sailboat specifications and datasheets since 2015
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Catalina 470 (Fin keel) vs Catalina 470 (Wing keel) vs Catalina 470 (Tall rig)

Main featuresCatalina 470 Fin keelCatalina 470 Wing keelCatalina 470 Tall rig
Model
Catalina 470
Catalina 470
Catalina 470
Version
Fin keel
Wing keel
Tall rig
Hull type
Monohull
Monohull
Monohull
Category
Offshore cruising sailboat
Offshore cruising sailboat
Offshore cruising sailboat
Sailboat builder
Catalina Yachts
Catalina Yachts
Catalina Yachts
Sailboat designer
Country
United States
United States
United States
Construction
Hull and deck: GRP (glass reinforced polyester)
Hull and deck: GRP (glass reinforced polyester)
Hull and deck: GRP (glass reinforced polyester)
First built hull
1998
1998
1998
Last built hull
Discontinued
Discontinued
Discontinued
Appendages
Keel : L-shaped keel (with bulb)
Keel : wing keel
Keel : L-shaped keel (with bulb)
Helm
Twin helm wheels
Twin helm wheels
Twin helm wheels
Rudder
Single spade rudder
Single spade rudder
Single spade rudder
Unsinkable
No
No
No
Trailerable
No
No
No
EC design category
 iThe CE design category indicates the ability to cope with certain weather conditions (the sailboat is designed for these conditions)

A: Wind < force 9, Waves < 10m
B: Wind < force 8, Waves < 8m
C: Wind < force 6, Waves < 4m
D: Wind < force 4, Waves < 0,5m
A
A
A
 
Main dimensionsCatalina 470 Fin keelCatalina 470 Wing keelCatalina 470 Tall rig
Overall length
47’ 11”14.6 m
47’ 11”14.6 m
47’ 11”14.6 m
Hull length
46’ 4”14.12 m
46’ 4”14.12 m
46’ 4”14.12 m
Waterline length
42’12.8 m
42’12.8 m
42’12.8 m
Beam (width)
14’4.27 m
14’4.27 m
14’4.27 m
Draft
7’ 10”2.39 m
5’ 6”1.68 m
7’ 10”2.39 m
Mast height from DWL
63’ 4”19.3 m
63’ 4”19.3 m
67’ 8”20.65 m
Light displacement (MLC)
27271 lb12370 kg
27750 lb12587 kg
27271 lb12370 kg
Ballast weight
9019 lb4091 kg
9548 lb4331 kg
9019 lb4091 kg
Ballast type
Lead
Lead
Lead
 
Rig and sailsCatalina 470 Fin keelCatalina 470 Wing keelCatalina 470 Tall rig
Upwind sail area
1010 ft²93.83 m²
1010 ft²93.83 m²
1091 ft²101.4 m²
I
 iFore triangle height (from mast foot to fore stay top attachment)
58’ 2”17.75 m
58’ 2”17.75 m
62’ 8”19.1 m
J
 iFore triangle base (from mast foot to bottom of forestay)
17’5.18 m
17’5.18 m
17’5.18 m
P
 iMainsail hoist measurement (from tack to head)
51’ 6”15.7 m
51’ 6”15.7 m
55’ 11”17.04 m
E
 iMainsail foot measurement (from tack to clew)
20’6.1 m
20’6.1 m
20’6.1 m
Rigging type
Sloop Marconi masthead
Sloop Marconi masthead
Sloop Marconi masthead
Mast configuration
Deck stepped mast
Deck stepped mast
Deck stepped mast
Rotating spars
No
No
No
Number of levels of spreaders
2
2
2
Spreaders angle
0 °
0 °
0 °
Spars construction
Aluminum spars
Aluminum spars
Aluminum spars
Standing rigging
1x19 strand wire
1x19 strand wire
1x19 strand wire
 
PerformancesCatalina 470 Fin keelCatalina 470 Wing keelCatalina 470 Tall rig
Upwind sail area to displacement
 iThe ratio sail area to displacement is obtained by dividing the sail area by the boat's displaced volume to the power two-thirds.

The ratio sail area to displacement can be used to compare the relative sail plan of different sailboats no matter what their size.

Upwind: under 18 the ratio indicates a cruise oriented sailboat with limited performances especially in light wind, while over 25 it indicates a fast sailboat.
189 ft²/T17.54 m²/T
187 ft²/T17.34 m²/T
204 ft²/T18.96 m²/T
Displacement-length ratio (DLR)
 iThe Displacement Length Ratio (DLR) is a figure that points out the boat's weight compared to its waterline length. The DLR is obtained by dividing the boat's displacement in tons by the cube of one one-hundredth of the waterline length (in feet).
The DLR can be used to compare the relative mass of different sailboats no matter what their length:

a DLR less than 180 is indicative of a really light sailboat (race boat made for planning), while a DLR greater than 300 is indicative of a heavy cruising sailboat.
167
170
167
Ballast ratio
 iThe Ballast ratio is an indicator of stability; it is obtained by dividing the boat's displacement by the mass of the ballast. Since the stability depends also of the hull shapes and the position of the center of gravity, only the boats with similar ballast arrangements and hull shapes should be compared.

The higher the ballast ratio is, the greater is the stability.
33 %
34 %
33 %
Critical hull speed
 iAs a ship moves in the water, it creates standing waves that oppose its movement. This effect increases dramatically the resistance when the boat reaches a speed-length ratio (speed-length ratio is the ratio between the speed in knots and the square root of the waterline length in feet) of about 1.2 (corresponding to a Froude Number of 0.35) . This very sharp rise in resistance, between speed-length ratio of 1.2 to 1.5, is insurmountable for heavy sailboats and so becomes an apparent barrier. This leads to the concept of "hull speed".
The hull speed is obtained by multiplying the square root of the waterline length (in feet) by 1.34.
8.68 knots
8.68 knots
8.68 knots
 
Auxiliary engineCatalina 470 Fin keelCatalina 470 Wing keelCatalina 470 Tall rig
Engine(s)
1 inboard engine
1 inboard engine
1 inboard engine
Engine(s) power
75 HP
75 HP
75 HP
Fuel type
Diesel
Diesel
Diesel
Fuel tank capacity
88 gal333 liters
88 gal333 liters
88 gal333 liters
 
Accommodations and layoutCatalina 470 Fin keelCatalina 470 Wing keelCatalina 470 Tall rig
Cockpit
Closing aft cockpit with opening system
Closing aft cockpit with opening system
Closing aft cockpit with opening system
Cabin(s) (min./max.)
2 / 3
2 / 3
2 / 3
Berth(s) (min./max.)
4 / 8
4 / 8
4 / 8
Head(s) (min./max.)
2 / 3
2 / 3
2 / 3
Freshwater tank capacity
214 gal810 liters
214 gal810 liters
214 gal810 liters
Holding tank capacity
66 gal250 liters
66 gal250 liters
66 gal250 liters
Fridge/ice-box capacity
50.2 gal190 liters
50.2 gal190 liters
50.2 gal190 liters
Boiler capacity
19.8 gal75 liters
19.8 gal75 liters
19.8 gal75 liters
Maximum headroom
7’ 6”2.29 m
7’ 6”2.29 m
7’ 6”2.29 m
 
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