DS002AKA SONY | Alldatasheet
Document overview
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Technical content
Features
- The number of active dots: 576,000
- Horizontal resolution: 600 TV lines
- NTSC mode selectable (PAL mode also available through conversion of scanned dot numbers by an external IC)
- Up/down and/or right/left inverse display function
- Full-color display with CF-less projection system
- High luminouce flux: normally-white 120 ANSIlm (typ.)
- Ultra-wide angle lenses for short projection distances (646mm/40", at 4.5% overscanning)
- Image distortion correction floating mechanism to support 27" to 55"
- Relative illumination: 70% or above
- Uses HID lamp (100W) Engine Configuration
- HID lamp
- Lamp driver (DC 300V input)
- High-efficiency illumination system employing glass rods
- Separate RGB illumination systems using dichroic mirrors (DM)
- LCD panel mounting mechanism, adjustable along XYq axes
- LCD panel (LCX019AM) Dots 1199.5 (H) · 480 (V) = 575,760 dots
- Wide fixed focal length lenses for enlarged projection of LCD
- Silent fans for cooling
Applications
Liquid crystal rear projection TV/monitor – 1 – DS002AKA PE97X07-PS Single-Panel Liquid Crystal Optical Engine for Rear Projectors Sony reserves the right to change products and specifications without prior notice. This information does not convey any license by any implication or otherwise under any patents or other right. Application circuits shown, if any, are typical examples illustrating the operation of the devices. Sony cannot assume responsibility for any problems arising out of the use of these circuits. Preliminary
– 2 – DS002AKA Explanation of Basic Operation
- Apply DC 300V to the lamp driver.
- Light emitted by the lamp is focused by an elliptical reflector on a glass rod integrator, and is rendered homogeneous at the output end of the integrator.
- Light output from the integrator passes through a relay lens and collimator lens to become a collimated ray, which is color-separated by a group of dichroic mirrors.
- The color-separated rays are focused on the respective RGB dots by microlenses mounted on the LCX011AM, and distributed.
- After transmitting the panel, the light is enlarged and projected onto a screen by a projection lens. For details of the LCD panel operation, please refer to the LCX019AM specifications. Block Diagram HID Lamp Glass Rod Integrator UV/IR Cut Filter Relay Lens Pre-Polarizer B-DM G-DM Polarizer LCD Panel Lamp Driver Positive (DC 300V) Common Start control input (SCI) GND Signal output Connector 1 Connector 2 Fan 1 Fan 2 R-DM Projection Lens Fan 1 Fan 2 Red: power supply Blue: GND Yellow: sensor output Collimator
– 3 – DS002AKA Pin Description and Operating Conditions Ambient Temperature Optical engine unit (excluding lamp driver)
- Operating temperature Topr 0 to +50 °C
- Storage temperature Tstg –20 to +60 °C Lamp driver unit
- Operating temperature Topr –5 to +65 °C (under forced air cooling)
- Storage temperature Tstg –40 to +85 °C Lamp Driver Unit +5V 4.7kΩ Signal output (Flag output) SCI GND Connector 2 Connector 1 To lamp Pin Description Operating Conditions Connector 1 DC power supply input Connector 2 SCI (start control input) and signal output Connector type positive (DC 300V) common JST (Japan Solderless Terminal) B 3B-PH-K start control input (SCI) GND signal output (flag output) JST (Japan Solderless Terminal) B 2P3-VH-B Input voltage Power consumption Circuit loss Lamp output Lamp startup peak voltage Start control input (SCI) Input voltage Lamp extinguish Lamp light Signal output (flag output) Output voltage Lamp extinguish Lamp light Min. 220 105 3.5 3.5 Typ. 300 110 100 5.0 Max. 390 120 105 1.0 7.0 1.0 Unit V W W W kV V V V V Remarks Input current < 1.0mA Input current < 5.0mA
– 4 – DS002AKA DC Fan Unit (Fan 1, Fan 2) DC fan Sensor output (yellow) I sink 5.0mA max Vcc 28V max Pin Description Item Red cable Blue cable Yellow cable Connector type Fan1, Fan2 power supply (positive) GND sensor output When revolving: low When restrained: high Housing MLX5102-03 Pin MLX5103-TL Remarks rated 12V restraint detection (open collector output) mfg. by Morex Operating Conditions Fan 1 Item Supply voltage Power consumption Current consumption when open Current consumption when restrained Sensor output Vcc Vcc (sat) I sink Min. 10.5 Typ. 12.0 1.4 Max. 13.5 0.14 0.30 1.0 5.0 Unit V W A A V V mA Remarks rated voltage rated voltage rated voltage Fan 2 Item Supply voltage Power consumption Current consumption when open Current consumption when restrained Sensor output Vcc Vcc (sat) I sink Min. 10.5 Typ. 12.0 2.0 Max. 13.5 0.20 0.45 1.0 5.0 Unit V W A A V V mA Remarks rated voltage rated voltage rated voltage For details of the LCD panel operating conditions and pin description, refer to the LCX019AM specifications.
– 5 – DS002AKA Electro-optical Characteristics (Ta = 25°C) LCD driver circuit Projected size 41.8" (40" overscan of 4.5%) Basic Measurement Conditions (1) LCD driving voltage HV DD = 13.5V, VVDD = 13.5V, AVDD = 15.5V VVC = 7.0V, Vcom = 6.8V (2) Lamp output 100W (3) DC fan voltage 12.0V common to Fans 1 and 2 (4) Measurement temperature 25°C unless otherwise specified. (5) Measurement point One point in the center of screen unless otherwise specified. (6) Measurement system Measurement system is as shown below. (7) Video input signal voltage Vsig Vsig = 7.0 ± VAC [V] (VAC: signal amplitude) ∗ Measurement system I 25°C 25°C x y x y x y x y x y Symbol CR25 L Rx Ry Gx Gy Bx By Wx Wy ∆Wx ∆Wy Measurement method Min. 130 0.550 0.300 0.300 0.580 0.125 0.040 0.250 0.300 Typ. 200 120 0.590 0.340 0.340 0.620 0.155 0.070 0.290 0.340 0.005 0.010 Max. 0.640 0.380 0.380 0.660 0.185 0.100 0.330 0.380 0.040 0.040 Unit ANSIlm CIE standards Item R G B W W Contrast ratio Luminous flux Chromaticity Color uniformity
– 6 – DS002AKA 1. Contrast ratio Contrast ratio (CR) is given by the following formula. L(White): Surface illuminance of the screen at the input signal amplitude VAC = 0.5V L(Black): Surface illuminance of the screen at VAC = 4.5V Both luminances are measured by System I. CR = 2. Luminous flux In measurement system I, the average of the luminance at the nine points specified in ANSI standards when the input signal amplitude VAC is 0.5V, multiplied by the effective display area, is computed. L = average illuminance at nine ANSI points (lm/m 2) · effective display area (m2) L (White) L (Black) nine ANSI points: centers of each of the areas obtained by dividing the effective display area into nine smaller areas 3. Chromaticity Raster modes of each color are defined by the representations at the input signal amplitude conditions shown in the table below. System Iuses chromaticity of x and y on the CIE standards here. 4. Color uniformity In the measurement system I, the maximum values of the CIE color differences at the three points in the middle row of the nine ANSI points, measured at an input signal amplitude VAC of 0.5V, are used to compute the color uniformity. ∆Wx = x max – x min ∆Wy = y max – y min For other electro-optical characteristics, refer to the LCX019AM specifications. (Unit: V) R input G input B input 0.5 4.5 4.5 4.5 0.5 4.5 4.5 4.5 0.5 R G B Display raster Signal amplitude (VAC) supplied to each input H/3 H/3 H/3 H V V/3 V/3 V/3
– 7 – DS002AKA Optical Characteristics The optical performance is specified for the following projection conditions. Projection Conditions Item Panel Panel shift Dot pitch Maximum image height Overscan Effective panel size Effective projection size Projection magnification Item Focal length F number Back focus Conjugate length Half angle of view TV distortion* Up/down Right/left Lateral chromatic aberration vs. 550nm 470nm to 0.5H to 0.7H to 0.9H to 1.0H 605nm to 0.5H to 0.7H to 0.9H to 1.0H Design value 21mm ± 5% 1.5 ± 5% 19.52mm (at ∞ ) Remarks in air at 35" projection 698mm 38.52° 0.059% –0.014% –8.0µm –6.2µm 1.9µm 8.7µm 10.3µm 12.6µm 12.6µm 11.6µm at 40" projection 806mm 38.40° 0.301% 0.107% –8.0µm –6.2µm 1.7µm 8.4µm 10.3µm 12.7µm 12.7µm 11.8µm at 55" projection 965mm 38.26° 0.622% 0.271% –7.9µm –6.2µm 1.6µm 8.1µm 10.3µm 12.6µm 12.8µm 11.9µm Setting value none 22.4µm · 41.8µm 16.76mm 4.5% (NTSC) 27 to 55'' 31.67·/40", fixed focus (including distortion) Projection Lens Specifications (design) *1 TV distortion is defined by the diagram and equations below. A B y y xx DC Right/left distortion = (4x)/(A + B) Up/down distortion = (4y)/(C + D)
– 8 – DS002AKA 1. Focus adjustment Loosen the screws (four) holding the projection lens in place, and adjust the eccentricity roller for focus adjustment to change the focus between 27" to 55". Relation between projection size and projection distance* Projection size (diagonal) [inch] 400 500 600 700 800 900 Projection distance [nm] 2. Floating mechanism The floating mechanism corrects for distortion between 27" to 55". At time of shipment, it is optimized for a diagonal of 40" (including 4.5% overscan), but the floating mechanism should be adjusted if the projection size is different and image distortion becomes prominent. Recommended values for different projection sizes are given below, but adjustments should be made such that image distortion is minimized. Recommended floating mechanism settings Projection size (diagonal) [inch] 29.11 35.75 42.95 47.48 51.93 56.42 Recommended floating mechanism setting 4.6 5.6 6.6 7.6 1 The projection distance is the distance from the front edge of the projection lens to the screen.
– 9 – DS002AKA 3. Registration Adjustment of the LCD panel registration, expressed as a horizontal adjustment (∆h) and vertical adjustment (∆v), shall lie within a circle of radius 0.66mm. Servicing Parts The following is a list of parts used in servicing. Part number DS-A001 DS-A002 DS-A003 DS-A004 DS-A005 DS-A006 DS-A007 Name Lamp unit Lamp driver Polarizer unit Diffraction grating unit Projection lens FAN1 FAN2 Construction lamp + lamp housing polarizer + holder diffraction grating + holder Remarks
– 10 – DS002AKA Notes on Handling (1) Cooling 1) This optical engine is provided with DC fans to cool the panel and lamp unit. However, the set should be designed for enough ventilation and convection to ensure sufficient cooling. 2) The lamp should under no circumstances be lit while the cooling DC fans are not operating. The cooling DC fans are provided with sensor output pins to detect operation, and the lamp driver is provided with start control input pins. The set should be designed so that if the cooling fans are not operating, the lamp driver does not operate. 3) When using a dust filter with ventilation orifices, reduced ventilation due to filter clogging can cause rises in temperature, possibly damaging the LCD or other components. The temperature of the optical engine should be controlled, and filters should be changed as appropriate. (2) Lamp unit 1) In order to prevent burns and other accidents, do not directly touch the lamp housing while the lamp is lit or immediately after it has been extinguished. 2) Because of the extremely high focusing power of the ellipsoid reflector, if it is not installed in the specified position, damage to the engine or other problems may arise. Ensure that, if the lamp housing is not mounted in the specified position when changing the lamp, the lamp power supply will not operate. 3) Always use the included lamp driver to light the lamp. If the lamp is turned on and off repeatedly in short cycles, the lamp lifetime will be shortened. 4) The lamp is designed to be lit in a horizontal position. Ensure that the optical axis of the ellipsoid reflector is within ±20° of horizontal. 5) The lamp emits ultraviolet rays while lit and immediately after being extinguished. Be sure not to look directly at the lamp. (3) Protection from dust and dirt Image quality is significantly degraded by dust in the optical engine. Employ a set construction such that after dust is removed by a filter or other means during air cooling, air is blown into the optical engine. 1) Operate in clean environment. 2) Do not touch the surface of a projection lens and polarizer. The surfaces are easily scratched. When cleaning, use a clean-room wiper with isopropyl alcohol. Be careful not to leave stains on the surface. 3) Use ionized air to blow off dust at an optical engine. (4) Static charge prevention 1) Use non-chargeable gloves, or simply use bare hands. 2) Do not touch any electrodes. 3) Wear non-chargeable clothes and conductive shoes. 4) Keep optical engines away from any charged materials. 5) Use ionized air or some other means to discharge.
– 11 – DS002AKA (5) Other handling precautions 1) The DM angles of this optical engine are adjusted to their optimal values, and should not be changed. 2) Do not remove or take apart the engine cover, projection lens, projection lens mount, relay lens, integrator support, or lamp housing. 3) Light emitted from the lamp and from the projection lens may harm the eyes. Do not look directly into the light from the lamp or lens. 4) Do not drop an optical engine. 5) Do not twist or bend an optical engine. 6) Keep an optical engine away from heat source. 7) Do not dampen an optical engine with water or other solvents. 8) Avoid to store or to use an optical engine in high temperature or in high humidity, which may result in optical engine damages.
– 12 – DS002AKA Package Outline (lamp ballast unit) Unit: mm 118 ± 0.2 3.3 (CB2,CB3) 101.8 31.1 22.2 5.0 0.2 5.0 0.2 5.2 (CB1) 150 0.2 280 4.0 max. 1.6 ± 0.14 5.0 ± 0.25.0 ± 0.2 4-φ4.0 25 +2 +0.2
– 13 – DS002AKA Package Outline (optical engine unit)Unit: mm 493.4 ± 1.5 115.0 ± 0.4 15.0 ± 0.4 5.0 ± 0.4 4.0H9 ± 0.1 90.0 ± 0.15 115.0 ± 0.4 125.0 ± 0.4 165.0 ± 0.4 180.0 ± 0.25 (7.0) 37.2 ± 0.3 26.0 ± 0.3 63.1 ± 0.5 50.0 ± 0.3 (60.0)60.0 ± 0.15 128.0 ± 0.25 177.5 ± 0.25 299.1 ± 0.35 100 ± 0.5 120.0 ± 0.15 143.2 ± 0.25 φ4.0H9 128.0 ± 0.5 281.8 ± 0.4 349.6 ± 1.0 2-R2.3 124.6 ± 0.5 (61.6) 3-φ4.8 ± 0.1 15.0 ± 0.1 15.0 ± 0.1 58.2 ± 0.5 (66.0) 35.3 ± 0.3 65.3° 47.1 ± 0.3 55.5 0.5 2.0 50.0 ± 0.3 (11.6) + 0.4 – 0.05 20.0 180.0 ± 0.4 /LiteDiagLines 66.0 ± 0.5 84.2 ± 0.5 52.0 ± 0.5 50.0 ± 0.3 10.0 100.0 52.5 ± 0.5 59.2 ± 0.5 67.2 ± 0.5 ± 0.2 ± 0.5 /LiteDiagLines/LiteDiagLines /LiteDiagLines/LiteDiagLines 68.0 ± 0.4 103.7 ± 0.2 6-φ7.0Height 7.0, Precision of boss position ± 0.4 6-φ2.4 ± 0.02C0.3,Depth 8.0 Precision of PWB holder holes ± 0.4 (X4) (Center of boss) (Center of base hole) (Center of position hole - Surface of 1st lens) 531mm from the screen 68.34 ± 2.5