Zoom lens, image pickup apparatus, and image pickup system
A zoom lens includes a plurality of lens units including, in order from an object side to an image side, a first lens unit having negative refractive power, a second lens unit having positive refractive power, a third lens unit having negative refractive power, and a fourth lens unit having positive refractive power. A distance between adjacent lens units changes during zooming. The second lens unit includes at least one negative lens. Predetermined inequalities are satisfied.
1 . A zoom lens comprising:
a plurality of lens units including, in order from an object side to an image side, a first lens unit having negative refractive power, a second lens unit having positive refractive power, a third lens unit having negative refractive power, and a fourth lens unit having positive refractive power,
wherein a distance between adjacent lens units changes during zooming,
wherein the second lens unit includes at least one negative lens, and
wherein the following inequalities are satisfied:
20
<
v
2
n
<
2
8
0.
<
f
2
/
f
4
<
0
.
4
0
12
<
Lw
/
fw
<
55
where v2n is a minimum value of an Abbe number of the negative lens, f2 is a focal length of the second lens unit, f4 is a focal length of the fourth lens unit, Lw is an overall optical length of the zoom lens at a wide-angle end, and fw is a focal length of the zoom lens at the wide-angle end.
2 . The zoom lens according to claim 1 , wherein the following inequality is satisfied:
0
.
0
0
<
f
1
/
f
3
<
0
.
4
1
where f1 is a focal length of the first lens unit, and f3 is a focal length of the third lens unit.
3 . The zoom lens according to claim 1 , wherein the following inequality is satisfied:
-
0
.
9
5
<
f
1
/
f
2
<
-
0.55
where f1 is a focal length of the first lens unit.
4 . The zoom lens according to claim 1 , wherein the following inequality is satisfied:
-
0
.
4
8
<
f
2
/
f
3
<
-
0.12
where f3 is a focal length of the third lens unit.
5 . The zoom lens according to claim 1 , wherein the following inequality is satisfied:
-
1.43
<
f
3
/
f
4
<
-
0.63
where f3 is a focal length of the third lens unit.
6 . The zoom lens according to claim 1 , wherein the first lens unit includes three lenses or less.
7 . The zoom lens according to claim 1 , wherein the following inequality is satisfied:
-
1.51
<
D
1
/
f
1
<
-
0.81
where D1 is a distance on an optical axis from a lens surface closest to an object to a lens surface closest to an image plane of the first lens unit, and f1 is a focal length of the first lens unit.
8 . The zoom lens according to claim 1 , wherein the following inequality is satisfied:
0
.
0
0
<
D
34
w
/
Lw
<
0
.
0
3
where D34w is a distance on an optical axis from a lens surface closest to an image plane of the third lens unit to a lens surface closest to an object of the fourth lens unit at the wide-angle end.
9 . The zoom lens according to claim 1 , wherein the following inequality is satisfied:
3.4
<
z
<
9
.
0
where z is a magnification variation ratio.
10 . The zoom lens according to claim 1 , wherein the second lens unit at a telephoto end is located on the object side of the second lens unit at the wide-angle end.
11 . An image pickup apparatus comprising:
a zoom lens having a plurality of lens units; and
an image sensor configured to receive an image formed by the zoom lens,
wherein the plurality of lens units includes, in order from an object side to an image side, a first lens unit having negative refractive power, a second lens unit having positive refractive power, a third lens unit having negative refractive power, and a fourth lens unit having positive refractive power,
wherein a distance between adjacent lens units changes during zooming,
wherein the second lens unit includes at least one negative lens, and
wherein the following inequalities are satisfied:
20
<
v
2
n
<
2
8
0.
<
f
2
/
f
4
<
0
.
4
0
12
<
Lw
/
fw
<
5
5
where v2n is a minimum value of an Abbe number of the negative lens, f2 is a focal length of the second lens unit, f4 is a focal length of the fourth lens unit, Lw is an overall optical length of the zoom lens at a wide-angle end, and fw is a focal length of the zoom lens at the wide-angle end.
12 . An image pickup system comprising:
a zoom lens having a plurality of lens units; and
a control unit configured to control the zoom lens during zooming,
wherein the plurality of lens units includes, in order from an object side to an image side, a first lens unit having negative refractive power, a second lens unit having positive refractive power, a third lens unit having negative refractive power, and a fourth lens unit having positive refractive power,
wherein a distance between adjacent lens units changes during zooming,
wherein the second lens unit includes at least one negative lens, and
wherein the following inequalities are satisfied:
20
<
v
2
n
<
2
8
0.
<
f
2
/
f
4
<
0
.
4
0
12
<
Lw
/
fw
<
5
5
where v2n is a minimum value of an Abbe number of the negative lens, f2 is a focal length of the second lens unit, f4 is a focal length of the fourth lens unit, Lw is an overall optical length of the zoom lens at a wide-angle end, and fw is a focal length of the zoom lens at the wide-angle end.
13 . The image pickup system according to claim 12 , wherein the control unit is separate from the zoom lens, and includes a transmitter configured to transmit a control signal for controlling the zoom lens.
14 . The image pickup system according to claim 12 , wherein the control unit is separate from the zoom lens, and includes an operation unit configured to operate the zoom lens.
15 . The image pickup system according to claim 12 , further comprising a display unit configured to display information regarding zooming of the zoom lens.