Designed Wolf Lemke, this Standard Class sailplane first flew in 1987, and uses a modified LS-6 fuselage. It is fitted with a tail ballast tank for trimming purpose.
Span: 15 m / 49.2 ft Area: 9.74 sq.m / 104.84 sq.ft Aspect ratio: 23 Empty Weight: 235 kg / 520 lb Payload: 251 kg / 553 lb Gross Weight: 541 kg / 553 lb Wing Loading: 55.54 kg/sq.m / 11.35 lb/sq.ft Water Ballast: 0 L/DMax: 43 Seats: 1
Designed by Wolf Lemke, the 15 m racing class LS-6 first flew in 1983. The flaps are linked to the ailerons. Approach control is by top surface Schempp-Hirth airbrakes. Forty were built.
The type became popular with competition pilots — the first two places being won in the 1985 World Glid¬ing Championships at Rieti, Italy; the first three places in the 1987 Worlds in Benalla, Australia; and the first four places (using later B and C models) at Uvalde in Texas in 1991.
The LS-6a and -6b models had an optional 5 kg / 12 lb fin ballast tank.
At the 1991 World Championships at Uvalde, TX, the first four places were taken by LS-6b’s and LS-6c’s.
The LS-6 comes with tip extensions increasing the span to 17.5 m. (LS- 6c/ 17.5) and 18.0 m. (LS-6c/18.0 m.)
Structure: composite/ CFRP mainspar/ Kevlar
Span: 15 m / 49.2 ft Area: 10.5 sq.m / 113 sq.ft Aspect ratio: 21.4 Airfoil: Wortmann mod. Empty Weight: 250 kg / 551 lb Payload: 275 kg / 606 lb Gross Weight: 525 kg / 1157 lb Wing Load: 50 kg/sq.m / 10.25 lb/sq.ft Water Ballast: 180 kg / 397 lb L/DMax: 40 Seats: 1
Design work on this Standard Class sailplane began by Wolf Lemke in the winter of 1978 as the successor to the LS-1. The LS4 has a modified LS3-a GFRP/foam sandwich fuselage married to a new thin-section Wortmann mod. wing mounted in the mid position, and with a double taper planform, and a variety of rigging improvements. It has larger upper-surface double segment Schempp-Hirth type air brakes in the upper surfaces, but flaps are not fitted. The cantilever T-tail has separate elevators rather than an all-moving tailplane,and the retractable monowheel has rubber suspension and a cable-operated brake. There is a rubber bumper type tailskid with a semi-recessed tailwheel offered as an alternative. The pilot sits under a canopy that hinges upward and forward to open, and up to 140 litres of water ballast can be carried. The same glassfibre/foam sandwich construction as the LS3’s is employed.
The prototype LS- 4, registered D-6680, first flew 28 March 1980. Production began in the autumn of that year and by the spring of 1981 50 LS4s had been built out of 160 on order.
The type took the first seven places in the Standard Class at the 1981 World (Gliding Championships at Paderborn, West Germany.
The improved LS-4a has an increased gross weight and ballast capacity and strengtened landing gear. LS-4s took the first 6 places (and 21 out of the first 25) in the Standard Class at the 1983 World Championships at Hobbs, NM.
Over 600 were built.
Span: 49 ft 2.5 in Length: 22 ft 1 in Area: 10.5 sq.m / 113 sq.ft Aspect ratio: 21.4 Airfoil: Wortmann mod Empty Weight: 238 kg / 525 lb Payload: 234 kg / 515 lb Gross Weight: 472 kg / 1040 lb Wing Load: 44.9 kg/sq.m / 9.21 lb/sq.ft Water Ballast: 140 kg / 308 lb L/DMax: 40.2 102 kph / 55 kt / 63 mph MinSink: 0.60 m/s / 1.97 fps / 1.17 kt at 51.5 mph Seats: 1
Developed by Wolf Lemke and Walter Schneider from the LS1-f via the LS2, which never went into production, the LS3’s design and construction began in 1975.
Like the LS1 -f, the LS3 is a cantilever mid-wing monoplane with a T-tail; the wings are of glassfibre/foam sandwich construction as are the one-piece ‘flaperons’, or combined ailerons and flaps, which form the entire trailing edge; from 1979 the ‘flaperons’ have been replaced by conventional flaps and ailerons. There are air brakes in the upper wing surfaces and there is provision for up to 309lb of water ballast. The semi-monocoque fuselage, very similar to the LS1-f’s, has a hinged one-piece flush-fitting canopy under which the pilot sits in a semi-reclining position. There is a retractable rubber-sprung monowheel with a drumbrake, and a tailskid. The fin and rudder, and the tailplane and elevators mounted on top of them, are all of glassfibre/foam construction. There is a mechanism to prevent the air brakes from opening at an incorrect flap setting, and the one-piece ‘flaperons’ enabled shorter, steeper landing approaches to be made than with conventional ailerons drooping in conjunction with the flaps. The flaperons are coupled with dive brakes to reduce approach and landing speeds. The prototype first flew on 4 February 1976 at Egels bach in Germany.
All LS-3 series use a fuselage similar to that developed for the Standard Class LS-1f, which features a front- hinged canopy and a fixed stabilizer on a T- tail.
Rolladen-Schneider LS3 ZK-GLI
The LS3-a, which first flew in prototype form in the spring of 1978, differs from the LS3 chiefly in having horizontal and vertical tail surfaces of greater area and different aerofoil sections, and the empty weight reduced to 551 Ib; the maximum weight and performance remain the same. The LS-3a version has separate flaps and ailerons.
A 17m span version, designated LSS-a-17, was developed with detachable wing tips which can be removed to restore the span to 15m with no change in gross weight, the LS3 itself conforming to the Standard Class 15m span.
More than 200 LS3s had been ordered by mid-January 1978; by the beginning of 1980 a total of 358 of all versions had been built.
Span: 15m / 49 ft 2.5 in Length: 22 ft 3.75 in Height: 3 ft 11.25 in Aspect ratio: 21.4 Airfoil: Wortmann mod Wing area: 109.8 sqft Empty Weight: 263kg / 580lb Payload: 208kg / 458lb Gross Weight: 471kg / 1038lb Wing Load: 44.86 kg/sq.m / 9.17 lb/sq.ft Water Ballast: 0 Max speed: 168 mph (in smooth air) Max aero-tow speed: 118 mph MinSink: 0.61 m/s / 1.97 fps / 1.18 kt at 43.5 mph L/DMax: 40:1 at 68.5 mph Seats: 1 Structure: fiberglass
LS3A Wing span: 15.0 m / 49 ft 2 in Length: 6.8 m / 22 ft 3 in Height: 1.2m / 3ft 11.25 in Wing area: 10.2 sq.m / 109.8 sq ft Wing section: Wortmann Aspect ratio: 22.0 Empty weight: 246 kg / 542 lb Max weight: 470 kg / 1,036 lb Water ballast: 120 kg / 265 lb Max wing loading: 46.0 kg/sq,m / 8.19 lb/sq ft Max speed: 135 kt / 250 km/h Stalling speed: 35 kt / 65 km/h Min sinking speed: 0.55 m/sec / 1.8 ft/sec at 38 kt / 70 km/h Max rough air speed: 135 kt / 250 km/h Best glide ratio: 40 at 59 kt / 110 km/h
Designed by Wolf Lemke, the LS2 was developed from the LS1-f but never went into production even though in prototype form, flown by Helmut Reichmann, it won the Standard Class section of the 1974 World Championships in Australia. Further developed, the LS3’s design and construction began in 1975.
Span: 15 m Area: 10.29 sq.m Aspect ratio: 21.87 Airfoil: FX 67-K-170 Empty Weight: 240 kg Gross Weight: 360 kg Wing Loading: 34.99 kg/sq.m Water Ballast: 0 MinSink: 0.65 m/s 80 kph L/DMax: 40 100 kph Seats: 1
Walter Schneider and Wolf Lemke commenced glider production in 1968 with the LS1 in the standard class. The LS-1 Standard Class design resulted from the collaboration of Wolf Lemke and Walter Schneider after they had worked together on the Akaflieg Darmstadt D-36 project. The LS1 was produced by Walter Schneider, at first under the name Segelflugzeugbau Schneider OHG, but later as Rolladen-Schneider Flugzeugbau GmbH.
Two prototypes of the LS1 competed in the German National Championships of 1968, taking first and second places out of 44 competitors, and the prototypes were fitted with a novel form of air brake consisting of a portion of the trailing edge hinging upwards inboard of the ailerons, and hinged close to its midchord line so that the air brake’s leading edge moved down while its trailing edge moved upwards. These brakes were found to be effective only at certain speeds, however, and so production LSls featured conventional Schempp-Hirth air brakes.
Characterised by a cantilever mid wing and a T-tail, the LS1 is of glassfibre and PVC foam construction, with the pilot seated in a semi-reclining position under a large one-piece flush-fitting canopy. The LS1-C featured an all-moving tailplane instead of the tailplane and elevators of earlier versions, and the LS1-d introduced provision for water ballast, over 200 of these two versions being built. The LS1-f has a redesigned rudder and reverts to a fixed tailplane and elevator; there is provision for up to 198 lb of water ballast and the monowheel is now retractable instead of fixed as on earlier versions, and has rubber shock absorbers. Some improvements have been made to the cockpit interior and the tow release mounted on the landing gear strut has been modified; this can also be fitted in the nose, as required.
The LS1-f first flew in 1972 and made its competition debut in that year’s World Championships at Vrsac, Yugoslavia; an LS1 flown by Helmut Reichmann of Germany had taken first place in the Standard Class at the 1970 World Championships at Marfa, Texas. The LS1 -f went on to take 8th, 10th and 14th places at the 1976 World Championships at Rayskala in Finland. By January 1977 a total of 240 LSI-fs had been built, and a club version of the LS1-f, designated LS1-C Club, was announced.
Span: 15 m / 49.2 ft Area: 9.74 sq.m / 104.8 sq.ft Aspect ratio: 23.1 Airfoil: Wortmann FX-66-S-196 Empty Weight: 230 kg / 507 lb Payload: 160 kg / 353 lb Gross Weight: 390 kg / 860 lb Wing Load: 40.04 kg/sq.m / 8.19 lb/sq.ft Water Ballast: 0 L/DMax: 38 MinSink: 0.64 m/s / 2.1 fps / 1.24 kt Seats: 1
LS1-f First flight: 1972 Span: 15.0 m / 49 ft 2.5 in Length: 6.7 m / 21 ft 11.75 in Height: 1.2m / 3 ft 11.5 in Wing area: 9.75 sq.m / 105 sq ft Wing section: Wortmann FX-66-S-196 mod Aspect ratio: 23.0 Empty weight: 200 kg / 507 lb Max weight: 390 kg / 860 lb Water ballast: 90 kg / 198 lb Max wing loading: 40 kg/sq,m / 8.2 lb/sq ft Max speed: 155 mph (in smooth air) Max rough air speed: 135 kt / 220 km/h Stalling speed: 33.5 kt / 62 km/h Min sinking speed: 0.65 m/sec / 2.1 ft/sec at 43.5 mph / 38 kt / 70 km/h Best glide ratio: 38:1 at 56 mph / 48.5 kt / 90 km/h
A long-range passenger flying boat, the first prototype flew on August 7, 1928.
Two models were produced. The Romar I (Werk Nrs 29,30 and 31), registrations D-1693, D-1734, and D-1747 respectively.
The single Romar II built, Werk Nr 62, went to France on the 1st April 1931 as F-AKEM.
The difference in the models was that the Romar II had BMW VIaU engines driving through a Farman gearbox. At some point the fin was changed on all models.
The three German aircraft, named “Hamburg”, “Bremen” and “Lubeck”, were all scrapped in 1933.
Ro X Romar Engines: 3 x BMW VIUZ, 485kW Wingspan: 36.9 m / 121 ft 1 in Length: 22.0 m / 72 ft 2 in Height: 8.5 m / 28 ft 11 in Max take-off weight: 19000 kg / 41888 lb Empty weight: 9900 kg / 21826 lb Max. speed: 210 km/h / 130 mph Ceiling: 2800 m / 9200 ft Range w/max.fuel: 4000 km / 2486 miles Crew: 4-5 Passengers: 12