A zoom lens system which allows a reduction in size. This zoom lens makes two points at different distances have an optically conjugate relationship, and sequentially includes, from a first conjugate point side at a longer distance to a second conjugate point side at a shorter distance, a first lens unit having a negative optical power, a second lens unit, a third lens unit, a fourth lens unit, a fifth lens unit, and a sixth lens unit. A plurality of lens units of the first to sixth lens units move for zooming, and at least one lens unit of the first to sixth lens units has a diffractive optical element.
A zoom lens system discloses a zoom lens system which is small in size and exhibits favorable optical performance. The zoom lens system, according to the present invention includes, in order from the front to the rear: a first lens unit having negative optical power; a second lens unit having positive optical power; a third lens unit having positive optical power; a fourth lens unit having positive optical power; and a fifth lens unit having positive optical power. Of these five lens units, at least three lens units move at the time of zooming. Further, the fifth lens unit is provided with a positive lens element having a relatively high refractive index.
A zoom lens includes, in order from the enlarging side: a first lens group that has negative refractive power, is movable for focusing, and is stationary during zooming; second, third, and fourth lens groups that are movable for zooming; and a fifth lens group that is stationary during zooming. The second, third, fourth, and fifth lens groups have positive refractive powers. The second, third, and fourth lens groups move nearer the enlarging side when the zoom lens zooms toward the telephoto end. The ratios of the focal lengths of the first, first through third, fourth, and fifth lens groups to the focal length of the zoom lens satisfy four conditions. The fourth lens group is a biconvex lens element. A projection display device uses the zoom lens.
A zoom lens for a projection display device includes, in order from the long conjugate length side, a first lens group having negative refractive power and including at least one aspheric surface, a second lens group having positive refractive power and including at least two lens components, a third lens group, a fourth lens group having positive refractive power, and fifth and sixth lens groups. The second, third, fourth, and fifth lens groups move with coordinated movements during zooming. Preferably, the zoom lens satisfies three conditions related to the wide-angle and telephoto focal lengths and the focal lengths of the third and fifth lens groups, the fifth lens group has positive refractive power, and the first and fifth lens groups have particular lens element and lens component constructions. A projection display device uses the zoom lens.
A zoom optical system includes, in order from the reduction conjugate side to the magnification conjugate side, a first lens unit having a positive optical power; a second lens unit having a negative optical power; a third lens unit having a positive optical power; and a fourth lens unit having a negative optical power, wherein in an entire zoom range, a magnification-side conjugate position relative to a reduction-side conjugate position, and the position of a pupil of the zoom optical system relative to the reduction-side conjugate position are each substantially fixed, and the interval between the first lens unit and the second lens unit at a telephoto end is larger than the interval between the first lens unit and the second tens unit at a wide-angle end.