WO2002023515A1 - Electronic display apparatus - Google Patents

Electronic display apparatus Download PDF

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Publication number
WO2002023515A1
WO2002023515A1 PCT/US2000/025098 US0025098W WO0223515A1 WO 2002023515 A1 WO2002023515 A1 WO 2002023515A1 US 0025098 W US0025098 W US 0025098W WO 0223515 A1 WO0223515 A1 WO 0223515A1
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WO
WIPO (PCT)
Prior art keywords
lights
array
master
microprocessor
arrays
Prior art date
Application number
PCT/US2000/025098
Other languages
French (fr)
Inventor
David J. Hoch
Original Assignee
Hoch David J
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hoch David J filed Critical Hoch David J
Priority to PCT/US2000/025098 priority Critical patent/WO2002023515A1/en
Priority to AU2000274833A priority patent/AU2000274833A1/en
Publication of WO2002023515A1 publication Critical patent/WO2002023515A1/en

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Classifications

    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F3/00Labels, tag tickets, or similar identification or indication means; Seals; Postage or like stamps
    • G09F3/005Identification bracelets, e.g. secured to the arm of a person
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B62LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
    • B62JCYCLE SADDLES OR SEATS; AUXILIARY DEVICES OR ACCESSORIES SPECIALLY ADAPTED TO CYCLES AND NOT OTHERWISE PROVIDED FOR, e.g. ARTICLE CARRIERS OR CYCLE PROTECTORS
    • B62J6/00Arrangement of optical signalling or lighting devices on cycles; Mounting or supporting thereof; Circuits therefor
    • B62J6/01Electric circuits
    • B62J6/015Electric circuits using electrical power not supplied by the cycle motor generator, e.g. using batteries or piezo elements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B62LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
    • B62JCYCLE SADDLES OR SEATS; AUXILIARY DEVICES OR ACCESSORIES SPECIALLY ADAPTED TO CYCLES AND NOT OTHERWISE PROVIDED FOR, e.g. ARTICLE CARRIERS OR CYCLE PROTECTORS
    • B62J6/00Arrangement of optical signalling or lighting devices on cycles; Mounting or supporting thereof; Circuits therefor
    • B62J6/20Arrangement of reflectors, e.g. on the wheel spokes ; Lighting devices mounted on wheel spokes
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F21/00Mobile visual advertising
    • G09F21/04Mobile visual advertising by land vehicles
    • G09F21/045Mobile visual advertising by land vehicles supported by the wheels

Definitions

  • This invention relates generally to devices for displaying information or images, and more particularly, to a display apparatus for producing an optical illusion of displayed images using time/position multiplexing and persistence of vision of a viewer.
  • the characteristic persistence of vision of human viewers has been used to advantage in previous display devices.
  • the Bell U.S. Patent 4,470,044 uses a modulated array of lights to create momentary perceptible visual images when scanned asynchronously by the human eye. There, the display device relies on saccadic eye movement between two points of eye fixation, the device itself remains stationary.
  • the Nobile et al. U.S. Patent 5,057,827 describes a motor actuated rotating member where an array of LEDs are turned on and off using time or position division multiplexing so that to an observer an image is generated over the path of the array.
  • the Belcher et al. U.S. Pat. No. 5,302,965 describes a rotating display device which rotates vertical columns of light emitting diodes.
  • the light emitting diodes arranged in the columns sweep around a cylindrical surface.
  • a control circuit turns the light emitting diodes on and off to provide an image display on the surface.
  • the Belcher et al . display device requires a complex electromechanical device with a motor for rotating the LED columns at a uniform rate of rotation.
  • the Eason U.S. Patent 5,748,157 describes a hand held wand with an LED column actuated by an inertial switch.
  • the wand can be swung back and forth while the lights are periodically turned on and off.
  • the Tokimoto U.S. Patent 5,548,300 also describes a manually operated wand with an array of LED lights .
  • the wand can be swung around an operating fulcrum.
  • the fulcrum supplies relative angular position information and rotation speed information for synchronizing the turning the lights.
  • a disadvantage of traditional persistence of vision display devices is that complex electromechanical devices are required for producing uniform oscillating or rotating.
  • the prior art devices also cannot readily adjust to different and variable periods or cycle times in different uses.
  • the devices with a singular linear array of light are also not suited for slowly moving display systems, or for use in conditions where there is a significant amount of ambient background ligh .
  • a light display is mounted on a bicycle wheel.
  • the display includes a plurality of arrays of lights .
  • the arrays include at least one master array, and a number of additional slave arrays .
  • Each of the arrays is attached to a spoke of the bicycle wheel.
  • a sensor mounted on the wheel is actuated by a magnet mounted on the bicycle frame.
  • the sensor is used to determine the angular velocity of the wheel .
  • the sensor can be attached to a coil of wire where a current is induced when the coil passes through the magnetic field.
  • a microprocessor mounted on the wheel and connected to the sensor, and individually connected to each array of lights by a cable, includes a memory which stores a plurality of display patterns.
  • the microprocessor modulates the plurality of arrays of light according to a selected one of the plurality of display patterns and the sensed angular velocity of the rotating wheel to form an image using persistence of vision of a viewer.
  • the display device with multiple light arrays can be used rotating objects having a relatively low angular velocity, such as bicycle wheel .
  • the device can be used in places where there is a significant level of ambient background light, such as public roads .
  • Figure 1 is a side view of linear arrays of lights mounted on spokes of a bicycle wheel
  • Figure 2 shows the array of lights mounted on a bicycle
  • Figures 3a-3f show possible light patterns
  • Figure 4 is a block diagram of master and slave light arrays
  • Figure 5 is a schematic of a master array
  • Figure 6 is a schematic of a slave array
  • Figure 7 is a side view of a bicycle wheel with one master and two slave arrays
  • Figure 8 is a partially cut-away view of a master arrays
  • Figure 9 is shows arrays attached to a wheel hub.
  • the apparatus comprises one or more linear arrays 101-103 of light-emitting diodes (LEDs), and circuitry 200 to activate the light arrays.
  • the arrays 101-103 and control circuitry 200 are for mounting on spokes of a bicycle wheel 110, either the front, back, or both wheels . It should be understood that the apparatus can also be arranged on other rotating or oscillating objects.
  • At least one array 101, and the control circuitry 200 is a ""master” array, and the additional arrays 102-103 are “slaves" arrays connected to the master by cables 105 for serial communication.
  • Other configurations can include a single master, one master and one slave, one master and two slaves (as shown) , one master and three slaves, and so forth.
  • the light arrays are respectively mounted on master and slave housings described in greater detail below. The housings can be used to attach the arrays to moving objects, such as, wheels.
  • Each array includes, for example, sixteen LEDs. The number of lights can be adjusted for radii of different lengths.
  • the control circuit 200 includes a battery compartment that holds, for example, four batteries and a microprocessor.
  • the end of the master array nearest to the rim of the wheel includes a sensor 106, for example, a coil including about a hundred turns of wire. A current is induced in the coil whenever it passes through a magnetic field. The current can be amplified and detected by the sensor. Alternatively, the sensor can be a reed switch, or a solid-state magnetic-field Hall-effect sensor.
  • the sensor 106 is actuated by a magnet that can be attached to the fork of the bicycle frame. In other words, the magnet is stationary while the arrays and the sensor rotate.
  • the sensor 106 is used to synchronous the operation of the lights as the wheel 110 rotates.
  • the entire apparatus is operated by control buttons 108.
  • the microprocessor can synchronize images and patterns displayed by the LEDs to the speed of the wheel. This allows images to be “frozen” or controllably “scrolled” in one direction or the other. Because the entire linear array of lights is swept during motion, it appears to the viewer as if the entire wheel is illuminated.
  • Each array contains a series of LEDs.
  • Each LED is mounted inside a plastic housing that contains a series ⁇ light-pipes" that split the light path from the single LED into two light paths, each perpendicular the rotation of the wheel. This is done so that the images or geometric patterns can be seen from either side of the wheel, using only a single LED. By using only a single LED and splitting the light as such, costs are reduced.
  • An alternative embodiment eliminates the light pipe and includes two rows of LEDs pre-mounted perpendicular the rotation of the wheel. This configuration allows different colors to be generated on the left and right sides of the wheel by using two different colored LEDs on each side.
  • slave arrays 102-103 can be spaced around the rim. Slave arrays are similar in appearance to the master array but do not contain a microprocessor and other additional circuitry. The slaves are attached to the master using cables 105 and a series of in-line connectors.
  • the master can determine how many slaves are attached by detecting the presence of "pull-down-resistor" in the slaves connected to the master by cables 105. This sensing for the number of spokes can be done when power is initially turned on. Depending on how many slave arrays are detected, the internal timings of microprocessor can be adjusted to generate the appropriate patterns. With a larger number of slave, the consistency, image quality and persistence to the observer is significantly better, particularly in lighted areas .
  • Each slave can also include a battery compartment for additional batteries . Power available om any of the arrays can be combined to operate the apparatus.
  • a configuration including a single master and multiple slaves can continue to operate even when a number of slaves or the master has as dead batteries. Only one of the arrays needs to have good batteries, and these good batteries power the entire apparatus .
  • a memory connected to the microprocessor can store a large number of patterns, images, and messages, for example, hundreds. These images can be played out in a random, sequential, or fixed pattern. Selection of the playback method is done via the pushbutton switches 108 located in the master array, see Figure 1.
  • Figures 3a-3f show additional possible patterns, for example, spokes, rings, a spiral, letters, petals, and a geometric pattern.
  • the display devices In the usual case, where a number of display devices are used, the display devices should be spaced as close to evenly as possible around the wheel. For bicycles, a number of arrangements for spokes exist. Many wheels have thirty-two spokes, while others have thirty-three. When attaching three display devices on a wheel with 36 spokes, for instance, each display device is placed evenly, each 120 degrees from each other, around the wheel. When trying to attach three display devices to a 32 spoked wheel, it is impossible using mechanical connections to spokes to evenly distribute the display devices around the wheel. In this case, for a 32 spoked wheel, the display devices could be connected at 0 degrees, 123.75 degrees, and at 247.5 degrees, for example.
  • the microprocessor When displaying text and other patterns, the microprocessor must know how the display devices are distributed around the wheel. The processor executes timing experiments and adjusts the light patterns based on the separation of the display devices. If the display devices are not evenly spaced around the rim, and the microprocessor does not adjust for this, gaps and overlapping images will occur.
  • the master display device 101 can be programmed using the control buttons 108 to understand the spoke pattern on the wheel. For instance, the user might enter 32 or 36 or some other number. The user could also specifically indicate to "spoke" spacing between the devices.
  • the microprocessor automatically determines the number of attached display devices using the pull- down resistors, this together with the device spacing information, is sufficient information to adjust the modulation so that continuous images without gaps or overlapping are generated.
  • FIG. 4 is a block diagram of the circuitry 200 for one master display device 101 and three slave display devices 102-104.
  • the circuitry includes batteries 201 for powering the microprocessor 202, memory 220, and LEDs 230.
  • the slaves are equipped with programming ID resistors 240. The number of slaves is sensed by sensing circuit 250.
  • the LEDs are activated via series-parallel conversion/LED drivers 260. Power sharing among the master and the slaves is accomplished by battery share diodes 270.
  • FIG. 5 is a detailed schematic of the control circuit 200 of the master display device 101.
  • the microprocessor 202 e.g., a PIC16C from Microchip Technology Inc., is clocked by a 4 MHz crystal 203.
  • the microprocessor 202 includes memory 220 for storing the possible patterns. As shown, the two banks of eight LEDs 230' and 230'' are driven via serial to parallel converters 231, and the LEDs are connected to resistor networks 232.
  • Figure 6 is a detailed schematic of a slave display device, where resistor 205 is a pull-down resistor for detecting the slave.
  • Figure 7 shows the master display device 101 and the two slave display devices 102-103 attached to the bicycle wheel 110.
  • the display devices 101-103 have a propeller shape.
  • each display device is mounted in a propeller shaped housing 800 having top and bottom part 801-802.
  • the components for example, the LEDs 201, microprocessor 202 and clock 203 are mounted on a circuit board 810.
  • the batteries 201 are mounted between the circuit board and the bottom part of the housing.
  • the housing includes cut-outs for a series of light-pipes 820 that split the light path from the single LEDs into two light paths, each perpendicular the rotation of the wheel.
  • the display device is attached to a spoke near the rim by a clip 107 located on the bottom part opposite the sensor 106 in the top part.
  • the other end of the display devices 101-103 can be attached to the hub 115 of the wheel by elastic straps 116.
  • the apparatus can also be mounted on automobile wheels, ceiling fans, wiper blades, airplane propellers, or other rotating or oscillating objects.

Abstract

A light display is mounted on the spokes of a rotating bicycle wheel. The display includes a plurality of arrays of lights, each array attached to one of the spokes. A sensor on wheel, actuated by a magnet mounted on the frame, senses the angular velocity of the rotating wheel with respect to the bicycle frame. A microprocessor, mounted on the wheel and connected to the sensor, and individually connected to each of the plurality of arrays of lights by a cable, includes a memory which stores a plurality of display patterns. The microprocessor modulates the plurality of arrays of light according to a selected one of the plurality of display patterns and the sensed angular velocity of the rotating wheel to form an image using persistence of vision of a viewer.

Description

Electronic Display Apparatus
Field of the Invention
This invention relates generally to devices for displaying information or images, and more particularly, to a display apparatus for producing an optical illusion of displayed images using time/position multiplexing and persistence of vision of a viewer.
Background of the Invention
The characteristic persistence of vision of human viewers has been used to advantage in previous display devices. The Bell U.S. Patent 4,470,044 uses a modulated array of lights to create momentary perceptible visual images when scanned asynchronously by the human eye. There, the display device relies on saccadic eye movement between two points of eye fixation, the device itself remains stationary.
The Nobile et al. U.S. Patent 5,057,827 describes a motor actuated rotating member where an array of LEDs are turned on and off using time or position division multiplexing so that to an observer an image is generated over the path of the array.
The McEwen et al. U.S. Patent . 5,180,912 and U.S. Patent 5,192,864 describe a linear array of LEDs that also is stationary. There, a rotating mirrored surface or facet of a polygon is used to create the effect of rotary motion of the LED array. The persistence of vision of a human observer produces a two dimensional image as the LEDs are selectively controlled.
The Belcher et al. U.S. Pat. No. 5,302,965 describes a rotating display device which rotates vertical columns of light emitting diodes. The light emitting diodes arranged in the columns sweep around a cylindrical surface. A control circuit turns the light emitting diodes on and off to provide an image display on the surface. The Belcher et al . display device requires a complex electromechanical device with a motor for rotating the LED columns at a uniform rate of rotation.
The Eason U.S. Patent 5,748,157 describes a hand held wand with an LED column actuated by an inertial switch. The wand can be swung back and forth while the lights are periodically turned on and off.
The Tokimoto U.S. Patent 5,548,300 also describes a manually operated wand with an array of LED lights . The wand can be swung around an operating fulcrum. The fulcrum supplies relative angular position information and rotation speed information for synchronizing the turning the lights. A disadvantage of traditional persistence of vision display devices is that complex electromechanical devices are required for producing uniform oscillating or rotating. The prior art devices also cannot readily adjust to different and variable periods or cycle times in different uses. The devices with a singular linear array of light are also not suited for slowly moving display systems, or for use in conditions where there is a significant amount of ambient background ligh .
Summary of the Invention
A light display is mounted on a bicycle wheel. The display includes a plurality of arrays of lights . The arrays include at least one master array, and a number of additional slave arrays .
Each of the arrays is attached to a spoke of the bicycle wheel. A sensor mounted on the wheel is actuated by a magnet mounted on the bicycle frame. The sensor is used to determine the angular velocity of the wheel . The sensor can be attached to a coil of wire where a current is induced when the coil passes through the magnetic field.
A microprocessor, mounted on the wheel and connected to the sensor, and individually connected to each array of lights by a cable, includes a memory which stores a plurality of display patterns. The microprocessor modulates the plurality of arrays of light according to a selected one of the plurality of display patterns and the sensed angular velocity of the rotating wheel to form an image using persistence of vision of a viewer.
As an advantage, the display device with multiple light arrays can be used rotating objects having a relatively low angular velocity, such as bicycle wheel . In addition, with multiple reinforcing lights, the device can be used in places where there is a significant level of ambient background light, such as public roads .
Brief Description of the Drawings
Figure 1 is a side view of linear arrays of lights mounted on spokes of a bicycle wheel;
Figure 2 shows the array of lights mounted on a bicycle;
Figures 3a-3f show possible light patterns;
Figure 4 is a block diagram of master and slave light arrays; Figure 5 is a schematic of a master array;
Figure 6 is a schematic of a slave array; Figure 7 is a side view of a bicycle wheel with one master and two slave arrays; Figure 8 is a partially cut-away view of a master arrays; and
Figure 9 is shows arrays attached to a wheel hub.
Detailed Description of the Preferred Embodiments
As shown in Figure 1, the apparatus according to my invention comprises one or more linear arrays 101-103 of light-emitting diodes (LEDs), and circuitry 200 to activate the light arrays. The arrays 101-103 and control circuitry 200 are for mounting on spokes of a bicycle wheel 110, either the front, back, or both wheels . It should be understood that the apparatus can also be arranged on other rotating or oscillating objects.
At least one array 101, and the control circuitry 200 is a ""master" array, and the additional arrays 102-103 are "slaves" arrays connected to the master by cables 105 for serial communication. Other configurations can include a single master, one master and one slave, one master and two slaves (as shown) , one master and three slaves, and so forth. The light arrays are respectively mounted on master and slave housings described in greater detail below. The housings can be used to attach the arrays to moving objects, such as, wheels.
Each array includes, for example, sixteen LEDs. The number of lights can be adjusted for radii of different lengths. The control circuit 200 includes a battery compartment that holds, for example, four batteries and a microprocessor. The end of the master array nearest to the rim of the wheel includes a sensor 106, for example, a coil including about a hundred turns of wire. A current is induced in the coil whenever it passes through a magnetic field. The current can be amplified and detected by the sensor. Alternatively, the sensor can be a reed switch, or a solid-state magnetic-field Hall-effect sensor. The sensor 106 is actuated by a magnet that can be attached to the fork of the bicycle frame. In other words, the magnet is stationary while the arrays and the sensor rotate. The sensor 106 is used to synchronous the operation of the lights as the wheel 110 rotates. The entire apparatus is operated by control buttons 108. As shown in Figure 2, when a cyclist rides a bicycle 210 during low-light or night time conditions, the array 101 attached to a spoke rotate as the wheel 110 spins . When the end of an array containing the sensor 106 passes the magnet 107 on the frame, a contact closure is made. In cases where the coil is used, a current is induced, and for a Hall-effect sensor, the magnetic field is interrupted. The frequency of actuation determines the angular velocity of the wheel. With this information, the microprocessor can synchronize images and patterns displayed by the LEDs to the speed of the wheel. This allows images to be "frozen" or controllably "scrolled" in one direction or the other. Because the entire linear array of lights is swept during motion, it appears to the viewer as if the entire wheel is illuminated.
Each array contains a series of LEDs. Each LED is mounted inside a plastic housing that contains a series Λlight-pipes" that split the light path from the single LED into two light paths, each perpendicular the rotation of the wheel. This is done so that the images or geometric patterns can be seen from either side of the wheel, using only a single LED. By using only a single LED and splitting the light as such, costs are reduced. An alternative embodiment eliminates the light pipe and includes two rows of LEDs pre-mounted perpendicular the rotation of the wheel. This configuration allows different colors to be generated on the left and right sides of the wheel by using two different colored LEDs on each side.
When a single master array 101 is used, the rider must go approximately twenty mph for the light display to appear as solid light to the human eye. At this speed, the brain "merges" the LEDs into a uniform, consistent image. To allow patterns to be viewed at slower rider velocities, additional slave arrays 102-103 can be spaced around the rim. Slave arrays are similar in appearance to the master array but do not contain a microprocessor and other additional circuitry. The slaves are attached to the master using cables 105 and a series of in-line connectors.
The master can determine how many slaves are attached by detecting the presence of "pull-down-resistor" in the slaves connected to the master by cables 105. This sensing for the number of spokes can be done when power is initially turned on. Depending on how many slave arrays are detected, the internal timings of microprocessor can be adjusted to generate the appropriate patterns. With a larger number of slave, the consistency, image quality and persistence to the observer is significantly better, particularly in lighted areas .
Each slave can also include a battery compartment for additional batteries . Power available om any of the arrays can be combined to operate the apparatus. A configuration including a single master and multiple slaves can continue to operate even when a number of slaves or the master has as dead batteries. Only one of the arrays needs to have good batteries, and these good batteries power the entire apparatus .
A memory connected to the microprocessor can store a large number of patterns, images, and messages, for example, hundreds. These images can be played out in a random, sequential, or fixed pattern. Selection of the playback method is done via the pushbutton switches 108 located in the master array, see Figure 1.
Figures 3a-3f show additional possible patterns, for example, spokes, rings, a spiral, letters, petals, and a geometric pattern.
In the usual case, where a number of display devices are used, the display devices should be spaced as close to evenly as possible around the wheel. For bicycles, a number of arrangements for spokes exist. Many wheels have thirty-two spokes, while others have thirty-three. When attaching three display devices on a wheel with 36 spokes, for instance, each display device is placed evenly, each 120 degrees from each other, around the wheel. When trying to attach three display devices to a 32 spoked wheel, it is impossible using mechanical connections to spokes to evenly distribute the display devices around the wheel. In this case, for a 32 spoked wheel, the display devices could be connected at 0 degrees, 123.75 degrees, and at 247.5 degrees, for example.
When displaying text and other patterns, the microprocessor must know how the display devices are distributed around the wheel. The processor executes timing experiments and adjusts the light patterns based on the separation of the display devices. If the display devices are not evenly spaced around the rim, and the microprocessor does not adjust for this, gaps and overlapping images will occur.
To prevent this, the master display device 101 can be programmed using the control buttons 108 to understand the spoke pattern on the wheel. For instance, the user might enter 32 or 36 or some other number. The user could also specifically indicate to "spoke" spacing between the devices. The microprocessor automatically determines the number of attached display devices using the pull- down resistors, this together with the device spacing information, is sufficient information to adjust the modulation so that continuous images without gaps or overlapping are generated.
Figure 4 is a block diagram of the circuitry 200 for one master display device 101 and three slave display devices 102-104. The circuitry includes batteries 201 for powering the microprocessor 202, memory 220, and LEDs 230. The slaves are equipped with programming ID resistors 240. The number of slaves is sensed by sensing circuit 250. The LEDs are activated via series-parallel conversion/LED drivers 260. Power sharing among the master and the slaves is accomplished by battery share diodes 270.
Figure 5 is a detailed schematic of the control circuit 200 of the master display device 101. The microprocessor 202, e.g., a PIC16C from Microchip Technology Inc., is clocked by a 4 MHz crystal 203. The microprocessor 202 includes memory 220 for storing the possible patterns. As shown, the two banks of eight LEDs 230' and 230'' are driven via serial to parallel converters 231, and the LEDs are connected to resistor networks 232.
Figure 6 is a detailed schematic of a slave display device, where resistor 205 is a pull-down resistor for detecting the slave.
Figure 7 shows the master display device 101 and the two slave display devices 102-103 attached to the bicycle wheel 110. In this configuration, the display devices 101-103 have a propeller shape.
As shown, in Figure 8, each display device is mounted in a propeller shaped housing 800 having top and bottom part 801-802. The components, for example, the LEDs 201, microprocessor 202 and clock 203 are mounted on a circuit board 810. The batteries 201 are mounted between the circuit board and the bottom part of the housing. The housing includes cut-outs for a series of light-pipes 820 that split the light path from the single LEDs into two light paths, each perpendicular the rotation of the wheel. The display device is attached to a spoke near the rim by a clip 107 located on the bottom part opposite the sensor 106 in the top part. As shown in Figure 6, the other end of the display devices 101-103 can be attached to the hub 115 of the wheel by elastic straps 116.
Although the embodiments shown are for mounting on a bicycle, it should be understood that the apparatus can also be mounted on automobile wheels, ceiling fans, wiper blades, airplane propellers, or other rotating or oscillating objects.
This invention is described using specific terms and examples . It is to be understood that various other adaptations and modifications may be made within the spirit and scope of the invention. Therefore, it is the object of the appended claims to cover all such variations and modifications as come within the true spirit and scope of the invention.

Claims

Claims
I claim: 1. A light display apparatus for mounting on an a moving object attached to a fixed frame, comprising: a master array of lights mounted on the moving object; a sensor mounted on the rotating object sensing a velocity of the moving object with respect to the fixed frame; a microprocessor, mounted on the moving object and connected to the master array of lights and the sensor, including a memory storing a plurality of display patterns, the microprocessor modulating the master array of lights according to a selected one of the plurality of display patterns and the sensed velocity of the moving object to form an image using persistence of vision of a viewer.
2. The apparatus of claim one wherein the fixed frame is a bicycle, and the moving object is a rotating wheel having an angular velocity.
3. The apparatus of claim further including a housing for mounting the master array of lights, the sensor, and the microprocessor, and means for attaching the housing to a spoke of the wheel.
4. The apparatus of claim 1 further including a plurality of slave arrays of lights mounted on the moving object, each slave array of lights individually connected to the microprocessor and modulated according to the selected one of the plurality of display patterns and the sensed velocity.
5. The apparatus of claim 4 further including means for determining the number of slave arrays of lights .
6. The apparatus of claim 4 further including means for distributing and sharing power among the master and slave array of lights.
7. The apparatus of claims 4 further including means for unique identifying each of the plurality of slave array of lights .
8. The apparatus of claim 1 wherein a serial signal for modulating the array of lights is converted to a parallel signal.
9. The apparatus of claim 1 wherein the sensor is attached to a wire coil, and a magnet is mounted on the frame.
10. The apparatus of claim 1 wherein the sensor is a solid-state magnetic-field Hall-effect integrated circuit.
11. The apparatus of claim 1 wherein a magnet for actuating the sensor is mounted on the fixed frame.
12. The apparatus of claim 1 wherein batteries for operating the master array of lights and the microprocessor are mounted in the housing.
13. The apparatus of claim 1 further including control buttons for selecting one of the plurality of display patterns.
14. The apparatus of claim 1 including means for splitting light emitted by the array of lights into two different directions .
15. The apparatus of claim 4 wherein the master and slave arrays of lights are spaced equally apart.
16. The apparatus of claim 4 wherein the master and slave arrays of lights are spaced unequally apart, and further including means for adjusting the modulation of the master and slave array of lights according to the unequal spacing of the master and slave arrays to form a continuous single image using persistence of vision of a viewer.
17. A light display apparatus for mounting on an a moving object attached to a fixed frame, comprising: a plurality of arrays of lights mounted on a rotating bicycle wheel; a sensor mounted on the wheel sensing an angular velocity of the rotating wheel with respect to a bicycle frame; a microprocessor, mounted on the rotating wheel and connected to the sensor and individually connected to each of the plurality of arrays of lights by a cable, including a memory storing a plurality of display patterns, the microprocessor modulating the plurality of arrays of light according to a selected one of the plurality of display patterns and the sensed angular velocity of the rotating wheel to form an image using persistence of vision of a viewer.
18. A method for displaying a light pattern on an a moving object attached to a fixed frame, comprising the steps of: mounting a master array of lights on the moving object; sensing a velocity of the moving object with respect to the fixed frame; storing a plurality of display patterns in a memory of a microprocessor; modulating the master array of lights according to a selected one of the plurality of display patterns and the sensed velocity of the moving object to form an image using persistence of vision of a viewer.
19. The method of claim 18 wherein a plurality of slave arrays of lights are mounted on the moving object, each slave array of lights individually connected to the microprocessor and modulated lights individually connected to the microprocessor and modulated according to the selected one of the plurality of display patterns and the sensed velocity.
PCT/US2000/025098 2000-09-14 2000-09-14 Electronic display apparatus WO2002023515A1 (en)

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Cited By (9)

* Cited by examiner, † Cited by third party
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GB2409440A (en) * 2003-12-22 2005-06-29 Civil Engineering Dynamics Ltd Vehicle wheel lighting
BG64549B1 (en) * 2002-09-11 2005-07-29 ШИВАРОВ Стефан Device for data visualization
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CN104952391A (en) * 2015-06-29 2015-09-30 刘兴华 Coding method of LED display device based on persistence of vision
CN108962104A (en) * 2018-06-20 2018-12-07 上海绘自传网络科技有限公司 One kind being used for two wheeler wheel picture showing method

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US7417555B2 (en) 2002-09-11 2008-08-26 Chivarov Stefan N Device for visualization of information on a rotating visible surface
BG64549B1 (en) * 2002-09-11 2005-07-29 ШИВАРОВ Стефан Device for data visualization
GB2409440A (en) * 2003-12-22 2005-06-29 Civil Engineering Dynamics Ltd Vehicle wheel lighting
BE1016557A3 (en) * 2005-03-18 2007-01-09 Ivan Jos Christine Peeters Lighting for a bike like a bike.
FR2887360A1 (en) * 2005-06-15 2006-12-22 Damien Roty Message e.g. logo, displaying system for use in motor vehicle, has case on which display with light emitting diodes are fixed and activated based of rotation speed of vehicle wheel using computer, such that each diode forms message point
EP1813520A3 (en) * 2006-01-25 2011-03-30 H Grossman Limited Tricycle
GB2434856A (en) * 2006-01-25 2007-08-08 H Grossman Ltd Tricycle with illuminated direction indicators
GB2434856B (en) * 2006-01-25 2011-03-30 H Grossman Ltd Improved vehicles
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US8033560B2 (en) 2006-01-25 2011-10-11 H. Grossman Limited Human-propelled vehicle
KR101071757B1 (en) 2009-03-20 2011-10-11 최승범 Bycycle having safety system and burglarproof system
GB2477213A (en) * 2010-01-26 2011-07-27 H Grossman Ltd Illuminated wheel
CN104952391A (en) * 2015-06-29 2015-09-30 刘兴华 Coding method of LED display device based on persistence of vision
CN108962104A (en) * 2018-06-20 2018-12-07 上海绘自传网络科技有限公司 One kind being used for two wheeler wheel picture showing method

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