Head-up display
10948718 ยท 2021-03-16
Assignee
Inventors
Cpc classification
G02B2027/013
PHYSICS
B60J1/008
PERFORMING OPERATIONS; TRANSPORTING
G02B2027/012
PHYSICS
International classification
G02B27/00
PHYSICS
Abstract
Head-up display includes: display element for displaying an image, and a projection optical system for projecting the image, which is displayed on display element, onto viewing region of viewer. The projection optical system includes combiner that is disposed at a position in an optical path from display element to viewing region of viewer. Combiner has a surface at which light incident from display element enters; the surface has a curved surface shape. Combiner has an effective region corresponding to viewing region of viewer. In the effective region, combiner has a horizontal cross-sectional shape that changes in thickness along from the center toward an end.
Claims
1. A head-up display, comprising: a display element for displaying an image; and a projection optical system for projecting, onto a viewing region of a viewer, the image displayed on the display element, the projection optical system including a combiner disposed at a position in an optical path from the display element to the viewing region of the viewer, wherein the combiner includes a front surface at which light incident from the display element enters, the front surface having a curved surface shape, the combiner having a center, an upper end, a lower end, a right end, a left end and an effective region corresponding to the viewing region of the viewer; the effective region of the combiner is configured to have a longitudinal cross-sectional shape in which a thickness of the combiner gradually decreases from the upper end to the lower end or gradually decreases from the lower end to the upper end, the effective region of the combiner is configured to have a transverse cross-sectional shape in which the thickness of the combiner gradually increases from the center to the left end when viewed from the viewer, and the effective region of the combiner is configured to have a transverse cross-sectional shape in which the thickness of the combiner gradually increases from the center to the right end when viewed from the viewer.
2. The head-up display according to claim 1, further comprising a reflection element for reflecting the image displayed on the display element so as to guide the image to the viewer.
3. The head-up display according to claim 1, wherein the combiner includes a rear surface, and each of the front and rear surfaces has a shape curving outward in a middle portion of the corresponding surface when viewed from the viewer.
4. The head-up display according to claim 1, wherein the combiner includes a rear surface, and each of the front and rear surfaces has a free-form surface shape.
5. A head-up display, comprising: a display element for displaying an image; and a projection optical system for projecting, onto a viewing region of a driver of a vehicle, the image displayed on the display element, the projection optical system including a windshield disposed at a position in an optical path from the display element to the viewing region of the driver, wherein the windshield includes a front surface at which light incident from the display element enters, the front surface having a curved surface shape, the windshield having a center, an upper end, a lower end, a right end, a left end and an effective region corresponding to the viewing region of the driver; if the viewer looks up the windshield, the effective region of the windshield is configured to have a longitudinal cross sectional shape in which the thickness of the windshield gradually decreases from the lower end to the upper end, the effective region of the windshield is configured to have, for a left hand steering wheel vehicle, a transverse cross-sectional shape in which the thickness of the windshield gradually increases from the center to the left end when viewed from the driver, and the effective region of the windshield is configured to have, for a right hand steering wheel vehicle, a transverse cross-sectional shape in which the thickness of the windshield gradually increases from the center to the right end when viewed from the driver.
6. The head-up display according to claim 5, further comprising a reflection element for reflecting the image displayed on the display element so as to guide the image to the driver.
7. The head-up display according to claim 5, wherein the windshield includes a rear surface, and each of the front and rear surfaces has a shape curving outward in a middle portion of the corresponding surface when viewed from the driver.
8. The head-up display according to claim 5, wherein the windshield includes a rear surface, and each of the front and rear surfaces has a free-form surface shape.
9. The head-up display according to claim 5, wherein the projection optical system includes a reflection element group disposed at a position in an optical path from the display element to the windshield, and reflected surfaces of the reflection element group are concave.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(21) Hereinafter, detailed descriptions of embodiments will be made with reference to the accompanying drawings as deemed appropriate. However, descriptions in more detail than necessary will sometimes be omitted. For example, detailed descriptions of well-known items and duplicate descriptions of substantially the same configuration will sometimes be omitted, for the sake of brevity and easy understanding by those skilled in the art.
(22) Note that the accompanying drawings and the following descriptions are presented to facilitate fully understanding of the present disclosure by those skilled in the art and, therefore, are not intended to impose any limitations on the subject matter described in the appended claims.
(23) 1. Configuration
(24) Hereinafter, a head-up display according to first to fifth embodiments will be described with reference to accompanying drawings.
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First Exemplary Embodiment
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Second Exemplary Embodiment
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Third Exemplary Embodiment
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Fourth Exemplary Embodiment
(29) Head-up display 10 according to the fourth embodiment has substantially the same configuration as head-up display 10 (
Fifth Exemplary Embodiment
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(31) Head-up display 10 according to each of the first to fourth embodiments includes case 200; however, case 200 is not an essential constituent element. Instead of case 200, dashboard 110 of vehicle 100 may have the function of the case.
(32) Head-up display 11 according to the fifth embodiment includes case 300; however, case 300 is not an essential constituent element. Instead of case 300, dashboard 110 of vehicle 100 may have the function of the case.
(33) The image information displayed on elements 210 and 310 is controlled by a controller, not shown, such as a microprocessor. The image information may contain a variety of information that includes an engine rotational speed, vehicle speed, turn signal, road guidance display, following distance, remaining battery life, and current vehicle speed. Each of display elements 210 and 310 may employ a liquid crystal display, organic light-emitting diode (electroluminescence) display, fluorescent indicator (seven-segment display), or plasma display. Instead of display elements 210 and 310, a projector or a scanning laser can be used.
(34) 2. Advantages and Others
(35) Hereinafter, advantages and others of head-up displays 10 and 11 that are configured as described above will be described, with reference to the drawings.
(36) In head-up display 10 shown in
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(38) As shown in
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(40) Moreover,
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(43) Moreover, as shown in
(44) As shown in
(45) In both cases of the left-hand steering wheel and right-hand steering wheel vehicles, windshield 120 has the shape as follows: In a horizontal cross section of windshield 120, the thickness of the windshield increases at greater distances from the center toward at least one of the left end and the right end in the effective region in windshield 120, with the effective region corresponding to the viewing region of viewer D.
(46) Such a shape of each of combiner 230 and windshield 120 enables display lights to be superimposed on one another, with the display lights having been respectively reflected off the front surface and rear surface of a corresponding one of combiner 230 and windshield 120. This prevents the display image from being visually recognized as double images by viewer D.
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(48) In
(49) As shown in
NUMERICAL EXAMPLES
(50) Hereinafter, specific numerical examples of the head-up displays according to the first to fifth embodiments will be described. Note that, throughout Tables of the numerical examples, the unit of all of the lengths is mm (millimeter), and the unit of all of the angles is (degree). Moreover, in each of the numerical examples, a free-form surface is defined by the following equations.
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(52) In these equations, z is the amount of a sag which defines the surface at a position (x, y) from X and Y axes; c is the curvature which defines the surface at the origin of the axes; k is the conic constant; m and n are each an integer not smaller than 0 (zero); and Cj is the coefficient of a monomial expression of x.sup.my.sup.n.
(53) Moreover, in each of the numerical examples, the origin of the coordinates, serving as a reference, is set at the center of display image 510 of display element 500 (display element 210 or display element 310), and X, Y, and Z axes are defined as shown in
(54) Moreover, in eccentricity data in each of the numerical examples, ADE is the amount of rotation on the X axis, from the Z axis direction to the Y axis direction; BDE is the amount of rotation on the Y axis, from the X axis direction to the Z axis direction; and CDE is the amount of rotation on the Z axis, from the X axis direction to the Y axis direction.
First Numerical Example
(55) The projection optical system in the first numerical example corresponds to that according to the first embodiment. Table 1 shows configuration data of the projection optical system in the first numerical example. Table 2 shows coefficients of polynomial free-form surfaces. Table 3 shows specifications of the combiner. T1 to T5 in Table 3 are each a material thickness at x and y coordinates in Equation 1, and correspond to T1 to T5 shown in
(56) TABLE-US-00001 TABLE 1 Surface Eccentricity Data Number Shape X Y Z ADE BDE CDE Display 1 0 0 0 0 0 0 Surface Combiner's 2 Free-Form 0 66.6521 254.0940 26.5125 0 0 Front Surface Surface Combiner's 3 Free-Form 0 68.8841 258.5682 26.5125 0 0 Rear Surface Surface Viewer 4 0 250.8383 147.5347 38.3266 0 0
(57) TABLE-US-00002 TABLE 2 Surface Number Polynomial Coefficients 2 c(Curvature) 0.002776506 C1 0.0000.E+00 C19 4.2910.E11 C2 0.0000.E+00 C20 0.0000.E+00 C3 0.0000.E+00 C21 1.7562.E10 C4 2.1798.E03 C22 0.0000.E+00 C5 0.0000.E+00 C23 0.0000.E+00 C6 2.1663.E03 C24 0.0000.E+00 C7 0.0000.E+00 C25 0.0000.E+00 C8 1.3418.E07 C26 0.0000.E+00 C9 0.0000.E+00 C27 0.0000.E+00 C10 1.8192.E07 C28 0.0000.E+00 C11 3.4803.E09 C29 0.0000.E+00 C12 0.0000.E+00 C30 0.0000.E+00 C13 6.4425.E09 C31 0.0000.E+00 C14 0.0000.E+00 C32 0.0000.E+00 C15 5.3973.E09 C33 0.0000.E+00 C16 0.0000.E+00 C34 0.0000.E+00 C17 1.4853.E11 C35 0.0000.E+00 C18 0.0000.E+00 C36 0.0000.E+00 3 c(Curvature) 0.002126856 C1 0.0000.E+00 C19 4.3241.E11 C2 0.0000.E+00 C20 0.0000.E+00 C3 9.2169.E04 C21 1.5529.E10 C4 1.8446.E03 C22 0.0000.E+00 C5 0.0000.E+00 C23 0.0000.E+00 C6 1.8345.E03 C24 0.0000.E+00 C7 0.0000.E+00 C25 0.0000.E+00 C8 1.4014.E07 C26 0.0000.E+00 C9 0.0000.E+00 C27 0.0000.E+00 C10 1.6462.E07 C28 0.0000.E+00 C11 1.9441.E09 C29 0.0000.E+00 C12 0.0000.E+00 C30 0.0000.E+00 C13 2.6689.E09 C31 0.0000.E+00 C14 0.0000.E+00 C32 0.0000.E+00 C15 4.3992.E09 C33 0.0000.E+00 C16 0.0000.E+00 C34 0.0000.E+00 C17 1.4489.E11 C35 0.0000.E+00 C18 0.0000.E+00 C36 0.0000.E+00
(58) TABLE-US-00003 TABLE 3 Specifications of Combiner Shape nd vd T1 T2 T3 T4 T5 Free-Form 1.531 55.9043 4.976 5.040 5.000 5.102 5.102 Surface Material Thickness Evaluation Coordinates x y T1 0.000 35.000 T2 0.000 35.000 T3 0.000 0.000 T4 100.000 0.000 T5 100.000 0.000
Second Numerical Example
(59) The projection optical system in the second numerical example corresponds to that according to the second embodiment. Table 4 shows configuration data of the projection optical system in the second numerical example. Table 5 shows coefficients of polynomial free-form surfaces. Table 6 shows specifications of the combiner. T1 to T5 in Table 6 are each a material thickness at x and y coordinates in Equation 1, and correspond to T1 to T5 shown in
(60) TABLE-US-00004 TABLE 4 Surface Eccentricity Data Number Shape X Y Z ADE BDE CDE Display 1 0 0 0 0 0 0 Surface Reflection 2 Plane 0 21.1615 77.1504 154.2708 0 0 Element Combiner's 3 Free-Form 0 186.6019 6.2315 54.1588 0 0 Front Surface Surface Combiner's 4 Free-Form 0 190.6551 3.3038 54.1588 0 0 Rear Surface Surface Viewer 5 0 149.3096 385.6326 41.5208 0 0
(61) TABLE-US-00005 TABLE 5 Surface Number Polynomial Coefficients 3 c(Carvature) 0.002937267 C1 0.0000.E+00 C19 1.7897.E11 C2 0.0000.E+00 C20 0.0000.E+00 C3 0.0000.E+00 C21 6.6971.E11 C4 2.2781.E03 C22 0.0000.E+00 C5 0.0000.E+00 C23 0.0000.E+00 C6 2.2495.E03 C24 0.0000.E+00 C7 0.0000.E+00 C25 0.0000.E+00 C8 1.6830.E07 C26 0.0000.E+00 C9 0.0000.E+00 C27 0.0000.E+00 C10 4.3898.E07 C28 0.0000.E+00 C11 4.0967.E09 C29 0.0000.E+00 C12 0.0000.E+00 C30 0.0000.E+00 C13 7.1870.E09 C31 0.0000.E+00 C14 0.0000.E+00 C32 0.0000.E+00 C15 6.7906.E10 C33 0.0000.E+00 C16 0.0000.E+00 C34 0.0000.E+00 C17 6.0362.E12 C35 0.0000.E+00 C18 0.0000.E+00 C36 0.0000.E+00 4 c(Carvature) 0.00193827 C1 0.0000.E+00 C19 1.8263.E11 C2 0.0000.E+00 C20 0.0000.E+00 C3 9.9204.E04 C21 4.6136.E11 C4 1.7684.E03 C22 0.0000.E+00 C5 0.0000.E+00 C23 0.0000.E+00 C6 1.7434.E03 C24 0.0000.E+00 C7 0.0000.E+00 C25 0.0000.E+00 C8 1.7653.E07 C26 0.0000.E+00 C9 0.0000.E+00 C27 0.0000.E+00 C10 3.9586.E07 C28 0.0000.E+00 C11 1.6950.E09 C29 0.0000.E+00 C12 0.0000.E+00 C30 0.0000.E+00 C13 1.7808.E09 C31 0.0000.E+00 C14 0.0000.E+00 C32 0.0000.E+00 C15 2.3624.E09 C33 0.0000.E+00 C16 0.0000.E+00 C34 0.0000.E+00 C17 6.1819.E12 C35 0.0000.E+00 C18 0.0000.E+00 C36 0.0000.E+00
(62) TABLE-US-00006 TABLE 6 Specifications of Combiner Shape nd vd T1 T2 T3 T4 T5 Free-Form 1.531 55.9043 4.972 5.043 5 5.104 5.104 Surface Material Thickness Evaluation Coordinates x y T1 0 35 T2 0 35 T3 0 0 T4 100 0 T5 100 0
Third Numerical Example
(63) The projection optical system in the third numerical example corresponds to that according to the third embodiment. Table 7 shows configuration data of the projection optical system in the third numerical example. Table 8 shows coefficients of polynomial free-form surfaces. Table 9 shows specifications of the combiner. T1 to T5 in Table 9 are each a material thickness at x and y coordinates in Equation 1, and correspond to T1 to T5 shown in
(64) TABLE-US-00007 TABLE 7 Surface Eccentricity Data Number Shape X Y Z ADE BDE CDE Display 1 0 0 0 0 0 0 Surface Combiner's 2 Free-Form 0 64.8012 241.8414 3.0586 0 0 Front Surface Surface Combiner's 3 Free-Form 0 64.5344 246.8342 3.0586 0 0 Rear Surface Surface Viewer 4 0 269.2582 287.5461 21.1173 0 0
(65) TABLE-US-00008 TABLE 8 Surface Number Polynomial Coefficients 3 c(Curvature) 2.6920.E03 C1 0.0000.E+00 C19 4.3789.E11 C2 0.0000.E+00 C20 0.0000.E+00 C3 0.0000.E+00 C21 4.0619.E11 C4 2.2041.E03 C22 0.0000.E+00 C5 0.0000.E+00 C23 0.0000.E+00 C6 2.1360.E03 C24 0.0000.E+00 C7 0.0000.E+00 C25 0.0000.E+00 C8 4.1583.E07 C26 0.0000.E+00 C9 0.0000.E+00 C27 0.0000.E+00 C10 2.8361.E07 C28 0.0000.E+00 C11 3.3286.E09 C29 0.0000.E+00 C12 0.0000.E+00 C30 0.0000.E+00 C13 6.1653.E09 C31 0.0000.E+00 C14 0.0000.E+00 C32 0.0000.E+00 C15 3.2812.E10 C33 0.0000.E+00 C16 0.0000.E+00 C34 0.0000.E+00 C17 2.6639.E11 C35 0.0000.E+00 C18 0.0000.E+00 C36 0.0000.E+00 4 c(Curvature) 2.2392.E03 C1 5.7906.E09 C19 4.3481.E11 C2 5.7906.E09 C20 0.0000.E+00 C3 1.4976.E03 C21 2.61E11 C4 1.9664.E03 C22 0.0000.E+00 C5 0.0000.E+00 C23 0.0000.E+00 C6 1.9035.E03 C24 0.0000.E+00 C7 0.0000.E+00 C25 0.0000.E+00 C8 4.1936.E07 C26 0.0000.E+00 C9 0.0000.E+00 C27 0.0000.E+00 C10 2.5584.E07 C28 0.0000.E+00 C11 2.2347.E09 C29 0.0000.E+00 C12 0.0000.E+00 C30 0.0000.E+00 C13 3.4293.E09 C31 0.0000.E+00 C14 0.0000.E+00 C32 0.0000.E+00 C15 5.3032.E10 C33 0.0000.E+00 C16 0.0000.E+00 C34 0.0000.E+00 C17 2.5816.E11 C35 0.0000.E+00 C18 0.0000.E+00 C36 0.0000.E+00
(66) TABLE-US-00009 TABLE 9 Specifications of Combiner Shape nd vd T1 T2 T3 T4 T5 Free-Form 1.49176 57.4414 5.060 4.954 5.000 5.114 5.114 Surface Material Thickness Evaluation Coordinates x y T1 0.000 35.000 T2 0.000 35.000 T3 0.000 0.000 T4 100.000 0.000 T5 100.000 0.000
Fourth Numerical Example
(67) The projection optical system in the fourth numerical example corresponds to that according to the fourth embodiment. Table 10 shows configuration data of the projection optical system in the fourth numerical example. Table 11 shows coefficients of polynomial free-form surfaces. Table 12 shows specifications of the combiner. T1 to T5 in Table 12 are each a material thickness at x and y coordinates in Equation 1, and correspond to T1 to T5 shown in
(68) TABLE-US-00010 TABLE 10 Surface Eccentricity Data Number Shape X Y Z ADE BDE CDE Display 1 0 0 0 0 0 0 Surface Reflection 2 Plane 23.69056 18.8464 95.0271 158.4785 11.9884 3.5722 Element Combiner's 3 Free- 3.94435 155.4658 6.2300 39.9007 6.3646 9.3336 Front Form Surface Surface Combiner's 4 Free- 3.39008 158.6534 10.0421 39.9007 6.3646 9.3336 Rear Form Surface Surface Viewer 5 50.62999 49.6442 407.4952 22.8106 11.835 7.0677
(69) TABLE-US-00011 TABLE 11 Surface Number Polynomial Coefficients 3 c(Curvature) 2.9343.E03 C1 0.0000.E+00 C19 2.2102.E11 C2 0.0000.E+00 C20 1.3776.E10 C3 0.0000.E+00 C21 1.2970.E10 C4 2.2582.E03 C22 0.0000.E+00 C5 7.0626.E05 C23 0.0000.E+00 C6 2.2094.E03 C24 0.0000.E+00 C7 1.9830.E07 C25 0.0000.E+00 C8 1.9325.E07 C26 0.0000.E+00 C9 2.1687.E07 C27 0.0000.E+00 C10 4.8046.E07 C28 0.0000.E+00 C11 4.1676.E09 C29 0.0000.E+00 C12 2.4881.E10 C30 0.0000.E+00 C13 6.9723.E09 C31 0.0000.E+00 C14 5.6674.E09 C32 0.0000.E+00 C15 1.6794.E09 C33 0.0000.E+00 C16 2.0158.E12 C34 0.0000.E+00 C17 9.3226.E12 C35 0.0000.E+00 C18 1.5933.E11 C36 0.0000.E+00 4 c(Curvature) 2.4363.E03 C1 0.0000.E+00 C19 2.2696.E11 C2 0.0000.E+00 C20 1.4261.E10 C3 1.0410.E03 C21 1.0897.E10 C4 1.9990.E03 C22 0.0000.E+00 C5 6.9122.E05 C23 0.0000.E+00 C6 1.9549.E03 C24 0.0000.E+00 C7 2.3383.E07 C25 0.0000.E+00 C8 1.9206.E07 C26 0.0000.E+00 C9 2.4537.E07 C27 0.0000.E+00 C10 4.3929.E07 C28 0.0000.E+00 C11 2.7438.E09 C29 0.0000.E+00 C12 1.7195.E10 C30 0.0000.E+00 C13 3.4594.E09 C31 0.0000.E+00 C14 5.2986.E09 C32 0.0000.E+00 C15 9.0529.E10 C33 0.0000.E+00 C16 4.3242.E13 C34 0.0000.E+00 C17 8.5824.E12 C35 0.0000.E+00 C18 1.2842.E11 C36 0.0000.E+00
(70) TABLE-US-00012 TABLE 12 Specifications of Combiner Shape nd vd T1 T2 T3 T4 T5 Free-Form 1.49176 57.4414 4.969 5.043 5.000 5.112 5.090 Surface Material Thickness Evaluation Coordinates x y T1 0.000 35.000 T2 0.000 35.000 T3 0.000 0.000 T4 100.000 0.000 T5 100.000 0.000
Fifth Numerical Example
(71) The projection optical system in the fifth numerical example corresponds to that according to the fifth embodiment. Table 13 shows configuration data of the projection optical system in the fifth numerical example. Table 14 shows coefficients of polynomial free-form surfaces. Table 15 shows specifications of the windshield. T1 to T5 in Table 15 are each a material thickness at x and y coordinates in Equation 1, and correspond to T1 to T5 shown in
(72) TABLE-US-00013 TABLE 13 Surface Eccentricity Data Number Shape X Y Z ADE BDE CDE Display 1 0 0 0 0 0 0 Surface First 2 Free- 0.10066 10.35273 38.63691 18.6506 1.2724 0.7698 Mirror Form Surface Second 3 Free- 3.25861 73.62755 10.21311 17.6384 2.8644 1.5035 Mirror Form Surface Windshields 4 Free- 4.5599 136.36839 168.28148 142.2313 5.3783 15.3812 Front Form Surface Surface Windshields 5 Free- 5.12228 140.02706 163.55942 142.2313 5.3783 15.3812 Rear Form Surface Surface Viewer 6 58.51654 360.1382 948.77496 142.2313 5.3783 15.3812
(73) TABLE-US-00014 TABLE 14 Surface Number Polynomial Coefficients 2 c(Curvature) 1.1207.E02 C1 0.0000.E+00 C19 1.5854.E08 C2 0.0000.E+00 C20 4.9352.E09 C3 0.0000.E+00 C21 3.4570.E08 C4 3.3955.E03 C22 8.9481.E11 C5 1.3320.E04 C23 2.6917.E11 C6 5.5411.E03 C24 2.2321.E10 C7 2.8409.E06 C25 2.0953.E11 C8 1.5267.E05 C26 3.6129.E10 C9 2.6042.E06 C27 1.8581.E10 C10 2.1391.E05 C28 3.8333.E10 C11 6.5334.E07 C29 0.0000.E+00 C12 8.8211.E08 C30 0.0000.E+00 C13 9.5366.E08 C31 0.0000.E+00 C14 1.7568.E07 C32 0.0000.E+00 C15 5.4531.E07 C33 0.0000.E+00 C16 2.2916.E10 C34 0.0000.E+00 C17 7.2559.E09 C35 0.0000.E+00 C18 1.0544.E09 C36 0.0000.E+00 3 c(Curvature) 1.2801.E03 C1 0.0000.E+00 C19 2.3176.E10 C2 0.0000.E+00 C20 5.3817.E11 C3 0.0000.E+00 C21 4.2077.E10 C4 2.6756.E03 C22 3.8579.E13 C5 8.1959.E05 C23 8.9571.E14 C6 1.8046.E03 C24 1.5595.E12 C7 4.9954.E09 C25 4.2917.E13 C8 4.7935.E06 C26 4.7577.E12 C9 1.0523.E07 C27 1.5700.E12 C10 3.4600.E06 C28 2.0811.E12 C11 5.5931.E09 C29 0.0000.E+00 C12 1.9268.E09 C30 0.0000.E+00 C13 1.8496.E08 C31 0.0000.E+00 C14 7.9645.E09 C32 0.0000.E+00 C15 6.9779.E09 C33 0.0000.E+00 C16 6.3684.E13 C34 0.0000.E+00 C17 6.0468.E11 C35 0.0000.E+00 C18 2.0036.E11 C36 0.0000.E+00 4 c(Curvature) 9.6494.E04 C1 0.0000.E+00 C19 1.0831.E12 C2 2.8927.E01 C20 3.1717.E14 C3 1.6867.E+00 C21 8.7288.E13 C4 1.3578.E03 C22 3.4952.E14 C5 3.5561.E06 C23 6.7891.E17 C6 1.1300.E03 C24 4.8522.E14 C7 5.8509.E08 C25 4.1448.E17 C8 9.6733.E08 C26 9.0027.E15 C9 1.3382.E07 C27 1.4376.E17 C10 1.0626.E07 C28 1.0902.E15 C11 2.6917.E10 C29 0.0000.E+00 C12 9.4272.E11 C30 0.0000.E+00 C13 7.9349.E10 C31 0.0000.E+00 C14 5.0684.E11 C32 0.0000.E+00 C15 1.4182.E09 C33 0.0000.E+00 C16 7.7588.E14 C34 0.0000.E+00 C17 5.5244.E12 C35 0.0000.E+00 C18 2.3747.E15 C36 0.0000.E+00 5 c(Curvature) 9.7017.E04 C1 0.0000.E+00 C19 4.8352.E12 C2 2.8923.E01 C20 6.6357.E11 C3 1.6816.E+00 C21 2.1275.E11 C4 1.3578.E03 C22 4.0165.E14 C5 3.6151.E06 C23 5.4968.E14 C6 1.1294.E03 C24 1.0040.E13 C7 1.2234.E07 C25 2.8303.E13 C8 5.3512.E08 C26 1.8952.E14 C9 3.8127.E07 C27 7.5516.E13 C10 9.6143.E08 C28 7.1448.E14 C11 3.8620.E10 C29 0.0000.E+00 C12 8.8484.E10 C30 0.0000.E+00 C13 9.4072.E10 C31 0.0000.E+00 C14 2.0440.E09 C32 0.0000.E+00 C15 9.6693.E10 C33 0.0000.E+00 C16 9.3948.E12 C34 0.0000.E+00 C17 2.2480.E12 C35 0.0000.E+00 C18 2.1167.E11 C36 0.0000.E+00
(74) TABLE-US-00015 TABLE 15 Specifications of Windshield Shape nd vd T1 T2 T3 T4 T5 Free-Form 1.5168 64.1664 5.794 6.357 6.000 6.124 5.942 Surface Material Thickness Evaluation Coordinates x y T1 0.000 40.000 T2 0.000 70.000 T3 0.000 0.000 T4 100.000 0.000 T5 100.000 0.000
(75) The head-up displays according to the present disclosure are particularly effectively applicable for use in head-up displays, such as vehicle-mounted head-up displays, which require high image quality.