US20200185447A1 - Image capturing module and portable electronic device - Google Patents
Image capturing module and portable electronic device Download PDFInfo
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- US20200185447A1 US20200185447A1 US16/285,739 US201916285739A US2020185447A1 US 20200185447 A1 US20200185447 A1 US 20200185447A1 US 201916285739 A US201916285739 A US 201916285739A US 2020185447 A1 US2020185447 A1 US 2020185447A1
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- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10F—INORGANIC SEMICONDUCTOR DEVICES SENSITIVE TO INFRARED RADIATION, LIGHT, ELECTROMAGNETIC RADIATION OF SHORTER WAVELENGTH OR CORPUSCULAR RADIATION
- H10F39/00—Integrated devices, or assemblies of multiple devices, comprising at least one element covered by group H10F30/00, e.g. radiation detectors comprising photodiode arrays
- H10F39/80—Constructional details of image sensors
- H10F39/804—Containers or encapsulations
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- H01L27/14636—
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- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10F—INORGANIC SEMICONDUCTOR DEVICES SENSITIVE TO INFRARED RADIATION, LIGHT, ELECTROMAGNETIC RADIATION OF SHORTER WAVELENGTH OR CORPUSCULAR RADIATION
- H10F39/00—Integrated devices, or assemblies of multiple devices, comprising at least one element covered by group H10F30/00, e.g. radiation detectors comprising photodiode arrays
- H10F39/80—Constructional details of image sensors
- H10F39/811—Interconnections
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- H01L27/14621—
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- H01L27/14627—
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N23/00—Cameras or camera modules comprising electronic image sensors; Control thereof
- H04N23/50—Constructional details
- H04N23/54—Mounting of pick-up tubes, electronic image sensors, deviation or focusing coils
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N23/00—Cameras or camera modules comprising electronic image sensors; Control thereof
- H04N23/50—Constructional details
- H04N23/55—Optical parts specially adapted for electronic image sensors; Mounting thereof
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N23/00—Cameras or camera modules comprising electronic image sensors; Control thereof
- H04N23/57—Mechanical or electrical details of cameras or camera modules specially adapted for being embedded in other devices
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- H04N5/2253—
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- H04N5/2254—
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- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10F—INORGANIC SEMICONDUCTOR DEVICES SENSITIVE TO INFRARED RADIATION, LIGHT, ELECTROMAGNETIC RADIATION OF SHORTER WAVELENGTH OR CORPUSCULAR RADIATION
- H10F39/00—Integrated devices, or assemblies of multiple devices, comprising at least one element covered by group H10F30/00, e.g. radiation detectors comprising photodiode arrays
- H10F39/011—Manufacture or treatment of image sensors covered by group H10F39/12
- H10F39/018—Manufacture or treatment of image sensors covered by group H10F39/12 of hybrid image sensors
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- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10F—INORGANIC SEMICONDUCTOR DEVICES SENSITIVE TO INFRARED RADIATION, LIGHT, ELECTROMAGNETIC RADIATION OF SHORTER WAVELENGTH OR CORPUSCULAR RADIATION
- H10F39/00—Integrated devices, or assemblies of multiple devices, comprising at least one element covered by group H10F30/00, e.g. radiation detectors comprising photodiode arrays
- H10F39/80—Constructional details of image sensors
- H10F39/805—Coatings
- H10F39/8053—Colour filters
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- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10F—INORGANIC SEMICONDUCTOR DEVICES SENSITIVE TO INFRARED RADIATION, LIGHT, ELECTROMAGNETIC RADIATION OF SHORTER WAVELENGTH OR CORPUSCULAR RADIATION
- H10F39/00—Integrated devices, or assemblies of multiple devices, comprising at least one element covered by group H10F30/00, e.g. radiation detectors comprising photodiode arrays
- H10F39/80—Constructional details of image sensors
- H10F39/806—Optical elements or arrangements associated with the image sensors
- H10F39/8063—Microlenses
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- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10F—INORGANIC SEMICONDUCTOR DEVICES SENSITIVE TO INFRARED RADIATION, LIGHT, ELECTROMAGNETIC RADIATION OF SHORTER WAVELENGTH OR CORPUSCULAR RADIATION
- H10F39/00—Integrated devices, or assemblies of multiple devices, comprising at least one element covered by group H10F30/00, e.g. radiation detectors comprising photodiode arrays
- H10F39/80—Constructional details of image sensors
- H10F39/809—Constructional details of image sensors of hybrid image sensors
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- H10W72/5445—
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- H10W72/932—
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- H10W90/754—
Definitions
- the present disclosure relates to an image capturing module and portable electronic device, and more particularly to an image capturing module and a portable electronic device for reducing the width of an image sensor.
- CMOS image sensors can be easily integrated into portable electronic products with special requirements.
- CMOS image sensors can be easily integrated into portable electronic products with small integration space, such as smart phones, tablets or notebooks, etc.
- the present disclosure provides an image capturing module and a portable electronic device.
- the present disclosure provides an image capturing module, including a circuit substrate, an image sensing chip, a filter element, and a lens assembly.
- the circuit substrate has an upper surface and a lower surface.
- An image sensing chip is disposed on the upper surface of the circuit substrate.
- a filter element is disposed on the image sensing chip.
- the lens assembly includes a holder structure disposed on the circuit substrate and a lens structure disposed on the holder structure.
- the upper surface of the circuit substrate includes a chip placing area, a first solder area, and a second solder area.
- the first solder area is connected between a first side of the chip placing area and a first side of the circuit substrate
- the second solder area is connected between a second side of the chip placing area and a second side of the circuit substrate
- a third side of the chip placing area is connected to a third side of the circuit substrate.
- the upper surface of the image sensing chip includes an image sensing area, a carrier area, a first conductive area and a second conductive area.
- the first conductive area is connected between a first side of the carrier area and a first side of the image sensing chip
- the second conductive area is connected between a second side of the carrier area and a second side of the image sensing chip
- the carrier area surrounds the image sensing area
- a third side of the carrier area is connected to a third side of the image sensing chip.
- the lower surface of the filter element has a light transmitting area and a connecting area surrounding the light transmitting area.
- the first conductive area and the second conductive area of the image sensing chip are electrically and respectively connected to the first solder area of the circuit substrate and the second solder area, the connecting area of the filter element corresponds to the carrier area of the image sensing chip.
- the present disclosure provides a portable electronic device, including a portable electronic module and an image capturing module.
- the image capturing module deposed on the portable electronic module including a circuit substrate, an image sensing chip, a filter element, and a lens assembly.
- the circuit substrate has an upper surface and a lower surface.
- the image sensing chip is disposed on the upper surface of the circuit substrate.
- the filter element is disposed on the image sensing chip.
- the lens assembly includes a holder structure disposed on the circuit substrate and a lens structure disposed on the holder structure.
- the upper surface of the circuit substrate includes a chip placing area, a first solder area, and a second solder area.
- the first solder area is connected between a first side of the chip placing area and a first side of the circuit substrate
- the second solder area is connected between a second side of the chip placing area and a second side of the circuit substrate
- a third side of the chip placing area is coupled to a third side of the circuit substrate.
- the upper surface of the image sensing chip includes an image sensing area, a carrier area, a first conductive area, and a second conductive area.
- the first conductive area is connected between a first side of the carrier area and a first side of the image sensing chip
- the second conductive area is connected between a second side of the carrier area and a second side of the image sensing chip
- the carrier area surrounds the image sensing area
- a third side of the carrier area is connected to a third side of the image sensing chip.
- the lower surface of the filter element has a light transmitting area and a connecting area surrounding the light transmitting area.
- the first conductive area of the image sensing chip and the second conductive area are electrically and respectively connected to the first solder area and the second solder area of the circuit substrate, and the connecting area of the filter element corresponds to the carrier area of the image sensing chip.
- the present disclosure provides another image capturing module, including a circuit substrate, an image sensing chip, a filter element, and a lens assembly.
- the circuit substrate has an upper surface and a lower surface.
- the image sensing chip is disposed on the upper surface of the circuit substrate.
- a filter element is disposed on the image sensing chip.
- the lens assembly includes a holder structure disposed on the circuit substrate and a lens structure disposed on the holder structure.
- the upper surface of the circuit substrate includes a chip placing area and a first solder area, and the first solder area is connected between a first side of the chip placing area and a first side of the circuit substrate.
- the upper surface of the image sensing chip includes an image sensing area, a carrier area, and a first conductive area.
- the first conductive area is connected between a first side of the carrier area and a first side of the image sensing chip, and the carrier area surrounds the image sensing area.
- the lower surface of the filter element has a light transmitting area and a connecting area surrounding the light transmitting area.
- the first conductive area of the image sensing chip is electrically connected to the first solder area of the circuit substrate, and the connecting area of the filter element corresponds to the carrier area of the image sensing chip.
- the image capturing module and the portable electronic device provided by the present disclosure can reduce the width or size of the image sensing chip in the horizontal direction by the technical features of “the upper surface of the circuit substrate including a chip placing area, a first solder area, and a second solder area; the first solder area connected between a first side of the chip placing area and a first side of the circuit substrate, the second solder area connected between a second side of the chip placing area and a second side of the circuit substrate and a third side of the chip placing area connected to a third side of the circuit substrate.”, “the upper surface of the image sensing chip including an image sensing area, a carrier area, a first conductive area, and a second conductive area; the first conductive area connected between a first side of the carrier area and a first side of the image sensing chip, the second conductive area connected between a second side of the carrier area and a second side of the image sensing chip, the carrier area surrounding the image sensing area, and
- the image capturing module provided by the present disclosure can reduce the width or size of the image sensing chip in the horizontal direction by the technical features of “the upper surface of the circuit substrate including a chip placing area and a first solder area, and the first solder area connected between a first side of the chip placing area and a first side of the circuit substrate.”, “the upper surface of the image sensing chip including an image sensing area, a carrier area, and a first conductive area; the first conductive area connected between a first side of the carrier area and a first side of the image sensing chip, and the carrier area surrounding the image sensing area.”, “the lower surface of the filter element having a light transmitting area and a connecting area surrounding the light transmitting area.” and “the first conductive area of the image sensing chip electrically connected to the first solder area of the circuit substrate, and the connecting area of the filter element corresponding to the carrier area of the image sensing chip.”.
- FIG. 1 is a cross-section view of an image capturing module according to a first embodiment of the present disclosure.
- FIG. 2 is a top view of a circuit substrate according to the first embodiment of the present disclosure.
- FIG. 3 is a top view of an image sensing chip according to the first embodiment of the present disclosure.
- FIG. 4 is a top view of a filter element according to the first embodiment of the present disclosure.
- FIG. 5 is a front view after connecting the circuit substrate, the image sensing chip, and the filter element according to the first embodiment of the present disclosure.
- FIG. 6 is a top view of a circuit substrate according to a second embodiment of the present disclosure.
- FIG. 7 is a top view of an image sensing chip according to the second embodiment of the present disclosure.
- FIG. 8 is a front view after connecting the circuit substrate and the image sensing chip according to the second embodiment of the present disclosure.
- FIG. 9 is a first top view of a circuit substrate according to a third embodiment of the present disclosure.
- FIG. 10 is a second top view of an image sensing chip according to the third embodiment of the present disclosure.
- FIG. 11 is a first front view after connecting the circuit substrate and the image sensing chip according to the third embodiment of the present disclosure.
- FIG. 12 is a second top view of the circuit substrate according to the third embodiment of the present disclosure.
- FIG. 13 is a second top view of the image sensing chip according to the third embodiment of the present disclosure.
- FIG. 14 is a second front view after connecting the circuit substrate and the image sensing chip according to the third embodiment of the present disclosure.
- FIG. 15 is a schematic view of a portable electronic device according to a fourth embodiment of the present disclosure.
- Numbering terms such as “first”, “second” or “third” can be used to describe various components, signals or the like, which are for distinguishing one component/signal from another one only, and are not intended to, nor should be construed to impose any substantive limitations on the components, signals or the like.
- a first embodiment of the present disclosure provides an image capturing module M, which includes a circuit substrate 1 , an image sensing chip 2 , a filter element 3 , and a lens assembly 4 .
- the circuit substrate 1 has an upper surface 11 and a lower surface 12 .
- the circuit substrate 1 may be a PCB hard board (such as BT, FR4, and FR5 material), a soft and hard bonding board or a ceramic substrate, etc., but the present disclosure is not limited thereto.
- the upper surface 11 of the circuit substrate 1 includes a chip placing area 13 , a first solder area 14 , and a second solder area 15 .
- the chip placing area 13 can be a solderless area.
- the first solder area 14 is connected between a first side 131 of the chip placing area 13 and a first side 101 of the circuit substrate 1
- the second solder area 15 is connected between a second side 132 of the chip placing area 13 and a second side 102 of the circuit substrate 1
- a third side 133 of the chip placing area 13 is connected to a third side 103 of the circuit substrate 1 .
- the image sensing chip 2 is disposed on the upper surface 11 of the circuit substrate 1 .
- the upper surface 21 of the image sensing chip 2 includes an image sensing area 22 , a carrier area 23 , a first conductive area 24 , and a second conductive area 25 .
- the first conductive area 24 is connected between a first side 231 of the carrier area 23 and a first side 201 of the image sensing chip 2
- the second conductive area 25 is connected between a second side 232 of the carrier area 23 and a second side 202 of the image sensing chip 2
- the carrier area 23 surrounds the image sensing area 22
- a third side 233 of the carrier area 23 is connected to a third side 203 of the image sensing chip 2 .
- the image sensing chip 2 can be a complementary metal oxide semiconductor (CMOS) sensor or any sensor with an image capturing function, but the present disclosure is not limited thereto.
- CMOS complementary metal oxide semiconductor
- the image sensing chip 2 can be electrically and respectively connected to the first solder area 14 and the second solder area 15 of the circuit substrate 1 through the first conductive area 24 and the second conductive area 25 .
- the image capturing module M further includes a filter element 3 disposed on the image sensing chip 2 .
- the filter element 3 can be directly disposed on the image sensing chip 2 by an adhesive (as shown in FIG. 1 ), or the filter element 3 can be disposed above the image sensing chip 2 by a plurality of pillars (not shown).
- the filter element 3 may be a coated glass or a non-coated glass, but the present disclosure is not limited thereto.
- the lower surface 31 of the filter element 3 has a light transmitting area 32 and a connecting area 33 surrounding the light transmitting area 32 , and the connecting area 33 of the filter element 3 corresponds to the carrier area 23 of the image sensing chip 2 .
- an adhesive 6 is disposed between the carrier area 23 and the connecting area 33 , so that the filter element 3 is disposed on the carrier area 23 of the image sensing chip 2 by the adhesive 6 .
- the adhesive 6 may be an adhesive made of epoxy or silicone, or may be a UV glue, a thermoset adhesive or an AB glue, but the present disclosure is not limited thereto.
- the image capturing module M further includes a lens assembly 4 which includes a holder structure 41 disposed on the circuit substrate 1 and a lens structure 42 disposed on the holder structure 41 .
- the holder structure 41 may be a common base or any kind of voice coil motor (VCM), and the lens structure 42 may be composed of a plurality of lenses, corresponds to the image sensing area 22 , and may be fixedly or movably disposed on the non-holder structure 41 according to different usage requirements, but the present disclosure is not limited thereto.
- the holder structure 41 may be disposed on the upper surface 101 of the circuit substrate 1 by an adhesive (not shown), but the present disclosure is not limited thereto.
- two sides of the circuit substrate 1 and the image sensing chip 2 can be electrically connected to each other by disposing the first solder area 14 , the second solder area 15 , the first conductive area 24 and the second conductive area 25 . Therefore, the width or size in the horizontal direction of the other two sides of the circuit substrate 1 and the image sensing chip 2 can be reduced. That is, since the solder area and the conductive area can be omitted on the other two sides of the circuit substrate 1 and the image sensing chip 2 , the width of the circuit substrate 1 and the image sensing chip 2 in the horizontal direction (X direction) can be reduced. Thereby, the size of the image sensing chip 2 in the horizontal direction is reduced.
- the first solder area 14 includes a plurality of first solder pads 151
- the second solder area 15 includes a plurality of first solder pads 151
- the first conductive area 24 includes a plurality of first conductive parts 241 electrically connected to the first solder pads 151 by respectively passing through a plurality of second conducting wires 251
- the second conductive area 25 includes a plurality of second conductive parts 251 electrically connected to the second solder pads 151 by respectively passing through a plurality of second conducting wires 52 .
- the first solder area 14 is disposed opposite to the second solder area 15 .
- a plurality of first solder pads 141 may be disposed on the first solder area 14 of the circuit substrate 1
- a plurality of second solder pads 151 may be disposed on the second solder area 15
- a plurality of first conductive parts 241 may be disposed on the first conductive area 24 of the image sensing chip 2
- a plurality of second conductive parts 251 may be disposed on the second conductive area 25 .
- the plurality of first conductive parts 241 of the image sensing chip 2 are electrically connected to the plurality of first solder pads 141 by respectively passing through the plurality of first conducting wires 51
- the plurality of second conductive parts 251 are electrically connected to the plurality of second solder pads 151 by respectively passing through a plurality of second conducting wires 52 ,.
- a fourth side 134 of the chip placing area 13 of the circuit substrate 1 is connected to a fourth side 104 of the circuit substrate 1
- a fourth side 234 of the carrier area 23 is connected to a fourth side 204 of the image sensing chip 2 .
- the first side 101 of the circuit substrate 1 is disposed opposite to the second side 102
- the third side 103 of the circuit substrate 1 is disposed opposite to the fourth side 104 .
- the first side 131 of the chip placing area 13 is disposed opposite to the second side 132
- the third side 133 of the chip placing area 13 is disposed opposite to the fourth side 134 .
- the first side 201 of the image sensing chip 2 is disposed opposite to the second side 202
- the third side 203 of the image sensing chip 2 is disposed opposite to the fourth side 204
- the first side 231 of the carrier area 23 is disposed opposite to the second side 232
- the third side 233 of the carrier area 23 is disposed opposite to the fourth side 234 .
- the fourth side 134 of the chip placing area 13 overlaps the fourth side 104 of the circuit substrate 1
- the fourth side 234 of the carrier area 23 connects and overlaps to the fourth side 204 of the image sensing chip 2 .
- a second embodiment of the present disclosure provides an image capturing module M, which includes a circuit substrate 1 , an image sensing chip 2 , a filter element 3 , and a lens assembly 4 .
- the biggest difference between the second embodiment and the first embodiment of the present disclosure is that, the upper surface 11 of the circuit substrate 1 includes a third solder area 16 , and the third solder area 16 connected between a fourth side 104 of the chip placing area 13 and a fourth side 104 of the circuit substrate 1 .
- the upper surface 21 of the image sensing chip 2 includes a third conductive area 26 connected between a fourth side 234 of the carrier area 23 and a fourth side 204 of the image sensing chip 2 .
- the first conductive area 24 and the second conductive area 25 of the image sensing chip 2 are electrically and respectively connected to the first solder area 14 and the second solder area 15 of the circuit substrate 1 .
- the present disclosure can provide a third solder area 16 disposed between the fourth side 104 of the chip placing area 13 and the fourth side 104 of the circuit substrate 1 according to different design requirements, and the image sensing chip 2 corresponds to a third conductive area 26 disposed between the fourth side 234 of the carrier area 23 and the fourth side 204 of the image sensing chip 2 .
- a plurality of third solder pads 161 may be disposed on the third solder area 16
- a plurality of third conductive parts 261 may be disposed on the third conductive area 26 of the image sensing chip 2 . Therefore, the plurality of third conductive parts 261 of the image sensing chip 2 are electrically connected to the plurality of third solder pads 161 by relatively passing through the plurality of third conducting wires 53 .
- a second embodiment of the present disclosure provides an image capturing module M, which includes a circuit substrate 1 , an image sensing chip 2 , a filter element 3 , and a lens assembly 4 .
- the biggest difference between the third embodiment and the first embodiment of the present disclosure is that, the upper surface 11 of the circuit substrate 1 includes a chip placing area 13 and a first solder area 14 connected between a first side 131 of the chip placing area 13 and a first side 101 of the circuit substrate 1 .
- the upper surface 21 of the image sensing chip 2 includes an image sensing area 22 , a carrier area 23 , and a first conductive area 24 .
- the first conductive area 24 is connected between a first side 231 of the carrier area 23 and a first side 201 of the image sensing chip 2 , and the carrier area 23 surrounds the image sensing area 22 .
- the first conductive area 24 of the image sensing chip 2 is electrically connected to the first solder area 14 of the circuit substrate 1 .
- the first solder area 14 includes a plurality of first solder pads 141
- the first conductive portion 241 includes a plurality of first conductive parts 241 electrically connected to the first solder pads 141 by respectively passing through a plurality of first conducting wires 51 .
- the present disclosure can provide a first solder area 14 disposed between the first side 131 of the chip placing area 13 and the first side 101 of the circuit substrate 1 according to different design requirements, and the first conductive area corresponding to the first solder area 14 is disposed between the first side 231 of the carrier area 23 and the first side 201 of the image sensing chip 2 .
- the image capturing module M of the present disclosure can be provided with a solder area disposed on one side of the circuit substrate 1 and a conductive area relatively disposed on one side of the image sensing chip 2 to electrically connect the circuit substrate 1 and the image sensing chip 2 , thereby the width or size of the at least two sides of the circuit substrate 1 and the image sensing chip 2 in the horizontal direction can be reduced.
- the image sensing chip 2 of the image capturing module M of the third embodiment of the present disclosure can be designed as an eccentricity.
- the upper surface 11 of the circuit substrate 1 of the image capturing module M includes a third solder area 16 connected between a fourth side 104 of the chip placing area 13 and a fourth side 104 of the circuit substrate 1 ;
- the upper surface 21 of the image sensing chip 2 includes a third conductive area 26 connected between a fourth side 234 of the carrier area 23 and a fourth side 204 of the image sensing chip 2 .
- a plurality of third solder pads 161 may be disposed on the third solder area 16 , and a plurality of third conductive parts 261 may be disposed on the third conductive area 26 of the image sensing chip 2 . Therefore, the plurality of third conductive parts 261 of the image sensing chip 2 are electrically connected to the plurality of third solder pads 161 by respectively passing through the plurality of third conducting wires 53 .
- a fourth embodiment of the present disclosure provides a portable electronic device Z, which includes a portable electronic module P and an image capturing module M.
- the image capturing module M is disposed on the portable electronic module, and the image capturing module M includes a circuit substrate 1 , an image sensing chip 2 , a filter element 3 , and a lens assembly 4 .
- the portable electronic module P may be a mobile phone, a notebook computer or a tablet computer, but the present disclosure is not limited thereto; moreover, any one of the image capturing module M in the first to fourth embodiments may be installed in the portable electronic module P, so that the electronic module P can perform image capturing through the image capturing module M.
- the above-mentioned embodiment is for exemplary purpose only and is not intended to limit the disclosure.
- the image capturing module and the portable electronic device provided by the present disclosure can reduce the width or size of the image sensing chip in the horizontal direction by the technical features of “the upper surface 11 of the circuit substrate 1 including a chip placing area 13 , a first solder area 14 , and a second solder area 15 ; the chip placing area 13 being a solderless area; the first solder area 14 connected between a first side 131 of the chip placing area 13 and a first side 101 of the circuit substrate 1 , the second solder area 15 connected between a second side 132 of the chip placing area 13 and a second side 102 of the circuit substrate 1 , and a third side 133 of the chip placing area 13 connected to a third side 103 of the circuit substrate 1 .”, “the upper surface 21 of the image sensing chip 2 including an image sensing area 22 , a carrier area 23 , a first conductive area 24 , and a second conductive area 25 ; the first conductive area 24 connected between a first
- the image capturing module provided by the present disclosure can reduce the width or size of the image sensing chip in the horizontal direction by the technical features of “the upper surface 11 of the circuit substrate 1 including a chip placing area 13 and a first solder area 14 connected between a first side 131 of the chip placing area 13 and a first side 101 of the circuit substrate 1 .”, “the upper surface 21 of the image sensing chip 2 including an image sensing area 22 , a carrier area 23 , and a first conductive area 24 ; the first conductive area 24 connected between a first side 231 of the carrier area 23 and a first side 201 of the image sensing chip 2 , and the carrier area 23 surrounding the image sensing area 22 .”, “the lower surface 31 of the filter element 3 having a light transmitting area 32 and a connecting area 33 surrounding the light transmitting area 32 .” and “the first conductive area 24 of the image sensing chip 2 electrically connected to the first solder area 14 of the circuit substrate 1 , and the connecting area 33 of the filter
- the image capturing module M and the portable electronic device Z of the present disclosure have the circuit substrate 1 and the image sensing chip 2 electrically connected to each other by the first solder area 14 and the first conductive area 24 on at least one side of the circuit substrate 1 and the image sensing chip 2 so as to electrically connect the circuit substrate 1 and the image sensing chip 2 . Therefore, the width or size in the horizontal direction of the circuit substrate 1 and at least two sides of the image sensing chip 2 can be reduced. That is, since the at least one side of the circuit substrate 1 and the image sensing chip 2 can omit the disposed of the solder area and the conductive area, the width of the circuit substrate 1 and the image sensing chip 2 in the horizontal direction (X direction) can be reduced. Thereby, the size of the image sensing chip 2 in the horizontal direction can be reduced.
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Abstract
Description
- This application claims the benefit of priority to Taiwan Patent Application No. 107143673, filed on Dec. 5, 2018. The entire content of the above identified application is incorporated herein by reference.
- Some references, which may include patents, patent applications and various publications, may be cited and discussed in the description of this disclosure. The citation and/or discussion of such references is provided merely to clarify the description of the present disclosure and is not an admission that any such reference is “prior art” to the disclosure described herein. All references cited and discussed in this specification are incorporated herein by reference in their entireties and to the same extent as if each reference was individually incorporated by reference.
- The present disclosure relates to an image capturing module and portable electronic device, and more particularly to an image capturing module and a portable electronic device for reducing the width of an image sensor.
- In the conventional technology pertaining to related art, the special advantage of Complementary Metal-Oxide-Semiconductor (CMOS) image sensors is characterized by “low power consumption” and “small volume”. Therefore, CMOS image sensors can be easily integrated into portable electronic products with special requirements. For example, CMOS image sensors can be easily integrated into portable electronic products with small integration space, such as smart phones, tablets or notebooks, etc.
- However, the width of conventional CMOS image sensors still cannot be effectively shortened. Therefore, how the width of the conventional CMOS image sensor can be effectively shortened by making improvements to the structural design thereof has become an important issue in the industry.
- In response to the above-referenced technical inadequacies, the present disclosure provides an image capturing module and a portable electronic device.
- In one aspect, the present disclosure provides an image capturing module, including a circuit substrate, an image sensing chip, a filter element, and a lens assembly. The circuit substrate has an upper surface and a lower surface. An image sensing chip is disposed on the upper surface of the circuit substrate. A filter element is disposed on the image sensing chip. The lens assembly includes a holder structure disposed on the circuit substrate and a lens structure disposed on the holder structure. The upper surface of the circuit substrate includes a chip placing area, a first solder area, and a second solder area. The first solder area is connected between a first side of the chip placing area and a first side of the circuit substrate, the second solder area is connected between a second side of the chip placing area and a second side of the circuit substrate, and a third side of the chip placing area is connected to a third side of the circuit substrate. The upper surface of the image sensing chip includes an image sensing area, a carrier area, a first conductive area and a second conductive area. The first conductive area is connected between a first side of the carrier area and a first side of the image sensing chip, the second conductive area is connected between a second side of the carrier area and a second side of the image sensing chip, the carrier area surrounds the image sensing area, and a third side of the carrier area is connected to a third side of the image sensing chip. The lower surface of the filter element has a light transmitting area and a connecting area surrounding the light transmitting area. The first conductive area and the second conductive area of the image sensing chip are electrically and respectively connected to the first solder area of the circuit substrate and the second solder area, the connecting area of the filter element corresponds to the carrier area of the image sensing chip.
- In one aspect, the present disclosure provides a portable electronic device, including a portable electronic module and an image capturing module. The image capturing module deposed on the portable electronic module, including a circuit substrate, an image sensing chip, a filter element, and a lens assembly. The circuit substrate has an upper surface and a lower surface. The image sensing chip is disposed on the upper surface of the circuit substrate. The filter element is disposed on the image sensing chip. The lens assembly includes a holder structure disposed on the circuit substrate and a lens structure disposed on the holder structure. The upper surface of the circuit substrate includes a chip placing area, a first solder area, and a second solder area. The first solder area is connected between a first side of the chip placing area and a first side of the circuit substrate, the second solder area is connected between a second side of the chip placing area and a second side of the circuit substrate, and a third side of the chip placing area is coupled to a third side of the circuit substrate. The upper surface of the image sensing chip includes an image sensing area, a carrier area, a first conductive area, and a second conductive area. The first conductive area is connected between a first side of the carrier area and a first side of the image sensing chip, the second conductive area is connected between a second side of the carrier area and a second side of the image sensing chip, the carrier area surrounds the image sensing area, and a third side of the carrier area is connected to a third side of the image sensing chip. The lower surface of the filter element has a light transmitting area and a connecting area surrounding the light transmitting area. The first conductive area of the image sensing chip and the second conductive area are electrically and respectively connected to the first solder area and the second solder area of the circuit substrate, and the connecting area of the filter element corresponds to the carrier area of the image sensing chip.
- In one aspect, the present disclosure provides another image capturing module, including a circuit substrate, an image sensing chip, a filter element, and a lens assembly. The circuit substrate has an upper surface and a lower surface. The image sensing chip is disposed on the upper surface of the circuit substrate. A filter element is disposed on the image sensing chip. The lens assembly includes a holder structure disposed on the circuit substrate and a lens structure disposed on the holder structure. The upper surface of the circuit substrate includes a chip placing area and a first solder area, and the first solder area is connected between a first side of the chip placing area and a first side of the circuit substrate. The upper surface of the image sensing chip includes an image sensing area, a carrier area, and a first conductive area. The first conductive area is connected between a first side of the carrier area and a first side of the image sensing chip, and the carrier area surrounds the image sensing area. The lower surface of the filter element has a light transmitting area and a connecting area surrounding the light transmitting area. The first conductive area of the image sensing chip is electrically connected to the first solder area of the circuit substrate, and the connecting area of the filter element corresponds to the carrier area of the image sensing chip.
- Therefore, one of the beneficial effects of the present disclosure is that the image capturing module and the portable electronic device provided by the present disclosure can reduce the width or size of the image sensing chip in the horizontal direction by the technical features of “the upper surface of the circuit substrate including a chip placing area, a first solder area, and a second solder area; the first solder area connected between a first side of the chip placing area and a first side of the circuit substrate, the second solder area connected between a second side of the chip placing area and a second side of the circuit substrate and a third side of the chip placing area connected to a third side of the circuit substrate.”, “the upper surface of the image sensing chip including an image sensing area, a carrier area, a first conductive area, and a second conductive area; the first conductive area connected between a first side of the carrier area and a first side of the image sensing chip, the second conductive area connected between a second side of the carrier area and a second side of the image sensing chip, the carrier area surrounding the image sensing area, and a third side of the carrier area connected to a third side of the image sensing chip.”, “the lower surface of the filter element having a light transmitting area and a connecting area surrounding the light transmitting area.” and “the first conductive area and the second conductive area of the image sensing chip electrically and respectively connected to the first solder area of the circuit substrate and the second solder area, and the connecting area of the filter element corresponding to the carrier area of the image sensing chip.”.
- Another beneficial effects of the present disclosure is that the image capturing module provided by the present disclosure can reduce the width or size of the image sensing chip in the horizontal direction by the technical features of “the upper surface of the circuit substrate including a chip placing area and a first solder area, and the first solder area connected between a first side of the chip placing area and a first side of the circuit substrate.”, “the upper surface of the image sensing chip including an image sensing area, a carrier area, and a first conductive area; the first conductive area connected between a first side of the carrier area and a first side of the image sensing chip, and the carrier area surrounding the image sensing area.”, “the lower surface of the filter element having a light transmitting area and a connecting area surrounding the light transmitting area.” and “the first conductive area of the image sensing chip electrically connected to the first solder area of the circuit substrate, and the connecting area of the filter element corresponding to the carrier area of the image sensing chip.”.
- These and other aspects of the present disclosure will become apparent from the following description of the embodiment taken in conjunction with the following drawings and their captions, although variations and modifications therein may be affected without departing from the spirit and scope of the novel concepts of the disclosure.
- The present disclosure will become more fully understood from the following detailed description and accompanying drawings.
-
FIG. 1 is a cross-section view of an image capturing module according to a first embodiment of the present disclosure. -
FIG. 2 is a top view of a circuit substrate according to the first embodiment of the present disclosure. -
FIG. 3 is a top view of an image sensing chip according to the first embodiment of the present disclosure. -
FIG. 4 is a top view of a filter element according to the first embodiment of the present disclosure. -
FIG. 5 is a front view after connecting the circuit substrate, the image sensing chip, and the filter element according to the first embodiment of the present disclosure. -
FIG. 6 is a top view of a circuit substrate according to a second embodiment of the present disclosure. -
FIG. 7 is a top view of an image sensing chip according to the second embodiment of the present disclosure. -
FIG. 8 is a front view after connecting the circuit substrate and the image sensing chip according to the second embodiment of the present disclosure. -
FIG. 9 is a first top view of a circuit substrate according to a third embodiment of the present disclosure. -
FIG. 10 is a second top view of an image sensing chip according to the third embodiment of the present disclosure. -
FIG. 11 is a first front view after connecting the circuit substrate and the image sensing chip according to the third embodiment of the present disclosure. -
FIG. 12 is a second top view of the circuit substrate according to the third embodiment of the present disclosure. -
FIG. 13 is a second top view of the image sensing chip according to the third embodiment of the present disclosure. -
FIG. 14 is a second front view after connecting the circuit substrate and the image sensing chip according to the third embodiment of the present disclosure. -
FIG. 15 is a schematic view of a portable electronic device according to a fourth embodiment of the present disclosure. - The present disclosure is more particularly described in the following examples that are intended as illustrative only since numerous modifications and variations therein will be apparent to those skilled in the art. Like numbers in the drawings indicate like components throughout the views. As used in the description herein and throughout the claims that follow, unless the context clearly dictates otherwise, the meaning of “a”, “an”, and “the” includes plural reference, and the meaning of “in” includes “in” and “on”. Titles or subtitles can be used herein for the convenience of a reader, which shall have no influence on the scope of the present disclosure.
- The terms used herein generally have their ordinary meanings in the art. In the case of conflict, the present document, including any definitions given herein, will prevail. The same thing can be expressed in more than one way. Alternative language and synonyms can be used for any term(s) discussed herein, and no special significance is to be placed upon whether a term is elaborated or discussed herein. A recital of one or more synonyms does not exclude the use of other synonyms. The use of examples anywhere in this specification including examples of any terms is illustrative only, and in no way limits the scope and meaning of the present disclosure or of any exemplified term. Likewise, the present disclosure is not limited to various embodiments given herein. Numbering terms such as “first”, “second” or “third” can be used to describe various components, signals or the like, which are for distinguishing one component/signal from another one only, and are not intended to, nor should be construed to impose any substantive limitations on the components, signals or the like.
- Referring to
FIG. 1 toFIG. 5 , a first embodiment of the present disclosure provides an image capturing module M, which includes acircuit substrate 1, animage sensing chip 2, afilter element 3, and alens assembly 4. - Firstly, the
circuit substrate 1 has anupper surface 11 and alower surface 12. For example, thecircuit substrate 1 may be a PCB hard board (such as BT, FR4, and FR5 material), a soft and hard bonding board or a ceramic substrate, etc., but the present disclosure is not limited thereto. Further, theupper surface 11 of thecircuit substrate 1 includes achip placing area 13, afirst solder area 14, and asecond solder area 15. Thechip placing area 13 can be a solderless area. Thefirst solder area 14 is connected between afirst side 131 of thechip placing area 13 and afirst side 101 of thecircuit substrate 1, thesecond solder area 15 is connected between asecond side 132 of thechip placing area 13 and asecond side 102 of thecircuit substrate 1, and athird side 133 of thechip placing area 13 is connected to athird side 103 of thecircuit substrate 1. - Secondly, the
image sensing chip 2 is disposed on theupper surface 11 of thecircuit substrate 1. Further, theupper surface 21 of theimage sensing chip 2 includes animage sensing area 22, acarrier area 23, a firstconductive area 24, and a secondconductive area 25. The firstconductive area 24 is connected between afirst side 231 of thecarrier area 23 and afirst side 201 of theimage sensing chip 2, the secondconductive area 25 is connected between asecond side 232 of thecarrier area 23 and asecond side 202 of theimage sensing chip 2, thecarrier area 23 surrounds theimage sensing area 22 and athird side 233 of thecarrier area 23 is connected to athird side 203 of theimage sensing chip 2. For example, theimage sensing chip 2 can be a complementary metal oxide semiconductor (CMOS) sensor or any sensor with an image capturing function, but the present disclosure is not limited thereto. - Therefore, the
image sensing chip 2 can be electrically and respectively connected to thefirst solder area 14 and thesecond solder area 15 of thecircuit substrate 1 through the firstconductive area 24 and the secondconductive area 25. - The image capturing module M further includes a
filter element 3 disposed on theimage sensing chip 2. For example, thefilter element 3 can be directly disposed on theimage sensing chip 2 by an adhesive (as shown inFIG. 1 ), or thefilter element 3 can be disposed above theimage sensing chip 2 by a plurality of pillars (not shown). In addition, thefilter element 3 may be a coated glass or a non-coated glass, but the present disclosure is not limited thereto. Further, thelower surface 31 of thefilter element 3 has alight transmitting area 32 and a connectingarea 33 surrounding thelight transmitting area 32, and the connectingarea 33 of thefilter element 3 corresponds to thecarrier area 23 of theimage sensing chip 2. An adhesive 6 is disposed between thecarrier area 23 and the connectingarea 33, so that thefilter element 3 is disposed on thecarrier area 23 of theimage sensing chip 2 by the adhesive 6. For example, the adhesive 6 may be an adhesive made of epoxy or silicone, or may be a UV glue, a thermoset adhesive or an AB glue, but the present disclosure is not limited thereto. - In addition, the image capturing module M further includes a
lens assembly 4 which includes aholder structure 41 disposed on thecircuit substrate 1 and alens structure 42 disposed on theholder structure 41. For example, theholder structure 41 may be a common base or any kind of voice coil motor (VCM), and thelens structure 42 may be composed of a plurality of lenses, corresponds to theimage sensing area 22, and may be fixedly or movably disposed on thenon-holder structure 41 according to different usage requirements, but the present disclosure is not limited thereto. In addition, theholder structure 41 may be disposed on theupper surface 101 of thecircuit substrate 1 by an adhesive (not shown), but the present disclosure is not limited thereto. - In summary, two sides of the
circuit substrate 1 and theimage sensing chip 2 can be electrically connected to each other by disposing thefirst solder area 14, thesecond solder area 15, the firstconductive area 24 and the secondconductive area 25. Therefore, the width or size in the horizontal direction of the other two sides of thecircuit substrate 1 and theimage sensing chip 2 can be reduced. That is, since the solder area and the conductive area can be omitted on the other two sides of thecircuit substrate 1 and theimage sensing chip 2, the width of thecircuit substrate 1 and theimage sensing chip 2 in the horizontal direction (X direction) can be reduced. Thereby, the size of theimage sensing chip 2 in the horizontal direction is reduced. - Further, the
first solder area 14 includes a plurality offirst solder pads 151, thesecond solder area 15 includes a plurality offirst solder pads 151, the firstconductive area 24 includes a plurality of firstconductive parts 241 electrically connected to thefirst solder pads 151 by respectively passing through a plurality ofsecond conducting wires 251, and the secondconductive area 25 includes a plurality of secondconductive parts 251 electrically connected to thesecond solder pads 151 by respectively passing through a plurality ofsecond conducting wires 52. Thefirst solder area 14 is disposed opposite to thesecond solder area 15. For example, a plurality offirst solder pads 141 may be disposed on thefirst solder area 14 of thecircuit substrate 1, a plurality ofsecond solder pads 151 may be disposed on thesecond solder area 15. In contrast, a plurality of firstconductive parts 241 may be disposed on the firstconductive area 24 of theimage sensing chip 2 and a plurality of secondconductive parts 251 may be disposed on the secondconductive area 25. Therefore, the plurality of firstconductive parts 241 of theimage sensing chip 2 are electrically connected to the plurality offirst solder pads 141 by respectively passing through the plurality offirst conducting wires 51, and the plurality of secondconductive parts 251 are electrically connected to the plurality ofsecond solder pads 151 by respectively passing through a plurality ofsecond conducting wires 52,. - It is worth mentioning that a
fourth side 134 of thechip placing area 13 of thecircuit substrate 1 is connected to afourth side 104 of thecircuit substrate 1, and afourth side 234 of thecarrier area 23 is connected to afourth side 204 of theimage sensing chip 2. Thefirst side 101 of thecircuit substrate 1 is disposed opposite to thesecond side 102, and thethird side 103 of thecircuit substrate 1 is disposed opposite to thefourth side 104. Thefirst side 131 of thechip placing area 13 is disposed opposite to thesecond side 132, and thethird side 133 of thechip placing area 13 is disposed opposite to thefourth side 134. Thefirst side 201 of theimage sensing chip 2 is disposed opposite to thesecond side 202, and thethird side 203 of theimage sensing chip 2 is disposed opposite to thefourth side 204. Thefirst side 231 of thecarrier area 23 is disposed opposite to thesecond side 232, and thethird side 233 of thecarrier area 23 is disposed opposite to thefourth side 234. For example, thefourth side 134 of thechip placing area 13 overlaps thefourth side 104 of thecircuit substrate 1, and thefourth side 234 of thecarrier area 23 connects and overlaps to thefourth side 204 of theimage sensing chip 2. - However, the above-mentioned embodiment is for exemplary purpose only and the present disclosure is not limited thereto.
- Referring to
FIG. 6 toFIG. 8 , a second embodiment of the present disclosure provides an image capturing module M, which includes acircuit substrate 1, animage sensing chip 2, afilter element 3, and alens assembly 4. ComparingFIG. 6, 7, 8 withFIG. 2, 3, 5 , the biggest difference between the second embodiment and the first embodiment of the present disclosure is that, theupper surface 11 of thecircuit substrate 1 includes athird solder area 16, and thethird solder area 16 connected between afourth side 104 of thechip placing area 13 and afourth side 104 of thecircuit substrate 1. Theupper surface 21 of theimage sensing chip 2 includes a thirdconductive area 26 connected between afourth side 234 of thecarrier area 23 and afourth side 204 of theimage sensing chip 2. The firstconductive area 24 and the secondconductive area 25 of theimage sensing chip 2 are electrically and respectively connected to thefirst solder area 14 and thesecond solder area 15 of thecircuit substrate 1. - For example, the present disclosure can provide a
third solder area 16 disposed between thefourth side 104 of thechip placing area 13 and thefourth side 104 of thecircuit substrate 1 according to different design requirements, and theimage sensing chip 2 corresponds to a thirdconductive area 26 disposed between thefourth side 234 of thecarrier area 23 and thefourth side 204 of theimage sensing chip 2. Furthermore, a plurality ofthird solder pads 161 may be disposed on thethird solder area 16, and a plurality of thirdconductive parts 261 may be disposed on the thirdconductive area 26 of theimage sensing chip 2. Therefore, the plurality of thirdconductive parts 261 of theimage sensing chip 2 are electrically connected to the plurality ofthird solder pads 161 by relatively passing through the plurality of third conducting wires 53. - However, the above-mentioned embodiment is for exemplary purpose only and the present disclosure is not limited thereto.
- Referring to
FIG. 9 toFIG. 14 , a second embodiment of the present disclosure provides an image capturing module M, which includes acircuit substrate 1, animage sensing chip 2, afilter element 3, and alens assembly 4. ComparingFIG. 9, 10, 11 withFIG. 2, 3, 5 , the biggest difference between the third embodiment and the first embodiment of the present disclosure is that, theupper surface 11 of thecircuit substrate 1 includes achip placing area 13 and afirst solder area 14 connected between afirst side 131 of thechip placing area 13 and afirst side 101 of thecircuit substrate 1. Theupper surface 21 of theimage sensing chip 2 includes animage sensing area 22, acarrier area 23, and a firstconductive area 24. The firstconductive area 24 is connected between afirst side 231 of thecarrier area 23 and afirst side 201 of theimage sensing chip 2, and thecarrier area 23 surrounds theimage sensing area 22. The firstconductive area 24 of theimage sensing chip 2 is electrically connected to thefirst solder area 14 of thecircuit substrate 1. Thefirst solder area 14 includes a plurality offirst solder pads 141, and the firstconductive portion 241 includes a plurality of firstconductive parts 241 electrically connected to thefirst solder pads 141 by respectively passing through a plurality offirst conducting wires 51. - For example, the present disclosure can provide a
first solder area 14 disposed between thefirst side 131 of thechip placing area 13 and thefirst side 101 of thecircuit substrate 1 according to different design requirements, and the first conductive area corresponding to thefirst solder area 14 is disposed between thefirst side 231 of thecarrier area 23 and thefirst side 201 of theimage sensing chip 2. In other words, the image capturing module M of the present disclosure can be provided with a solder area disposed on one side of thecircuit substrate 1 and a conductive area relatively disposed on one side of theimage sensing chip 2 to electrically connect thecircuit substrate 1 and theimage sensing chip 2, thereby the width or size of the at least two sides of thecircuit substrate 1 and theimage sensing chip 2 in the horizontal direction can be reduced. - Further, another configurations of the image capturing module M of the third embodiment of the present disclosure refers to
FIG. 12 toFIG. 14 . Furthermore, theimage sensing chip 2 of the image capturing module M of the third embodiment of the present disclosure can be designed as an eccentricity. For example, theupper surface 11 of thecircuit substrate 1 of the image capturing module M includes athird solder area 16 connected between afourth side 104 of thechip placing area 13 and afourth side 104 of thecircuit substrate 1; relatively, theupper surface 21 of theimage sensing chip 2 includes a thirdconductive area 26 connected between afourth side 234 of thecarrier area 23 and afourth side 204 of theimage sensing chip 2. A plurality ofthird solder pads 161 may be disposed on thethird solder area 16, and a plurality of thirdconductive parts 261 may be disposed on the thirdconductive area 26 of theimage sensing chip 2. Therefore, the plurality of thirdconductive parts 261 of theimage sensing chip 2 are electrically connected to the plurality ofthird solder pads 161 by respectively passing through the plurality of third conducting wires 53. - However, the above-mentioned embodiment is for exemplary purpose only and the present disclosure is not limited thereto.
- Referring to
FIG. 15 andFIG. 1 toFIG. 14 , a fourth embodiment of the present disclosure provides a portable electronic device Z, which includes a portable electronic module P and an image capturing module M. The image capturing module M is disposed on the portable electronic module, and the image capturing module M includes acircuit substrate 1, animage sensing chip 2, afilter element 3, and alens assembly 4. For example, the portable electronic module P may be a mobile phone, a notebook computer or a tablet computer, but the present disclosure is not limited thereto; moreover, any one of the image capturing module M in the first to fourth embodiments may be installed in the portable electronic module P, so that the electronic module P can perform image capturing through the image capturing module M. However, the above-mentioned embodiment is for exemplary purpose only and is not intended to limit the disclosure. - In conclusion, one of the beneficial effects of the present disclosure is that the image capturing module and the portable electronic device provided by the present disclosure can reduce the width or size of the image sensing chip in the horizontal direction by the technical features of “the upper surface 11 of the circuit substrate 1 including a chip placing area 13, a first solder area 14, and a second solder area 15; the chip placing area 13 being a solderless area; the first solder area 14 connected between a first side 131 of the chip placing area 13 and a first side 101 of the circuit substrate 1, the second solder area 15 connected between a second side 132 of the chip placing area 13 and a second side 102 of the circuit substrate 1, and a third side 133 of the chip placing area 13 connected to a third side 103 of the circuit substrate 1.”, “the upper surface 21 of the image sensing chip 2 including an image sensing area 22, a carrier area 23, a first conductive area 24, and a second conductive area 25; the first conductive area 24 connected between a first side 231 of the carrier area 23 and a first side 201 of the image sensing chip 2, the second conductive area 25 connected between a second side 232 of the carrier area 23 and a second side 202 of the image sensing chip 2, the carrier area 23 surrounding the image sensing area 22, and a third side 233 of the carrier area 23 connected to a third side 203 of the image sensing chip 2.”, “the lower surface 31 of the filter element 3 having a light transmitting area 32 and a connecting area 33 surrounding the light transmitting area 32.” and “the first
conductive area 24 and the secondconductive area 25 electrically and respectively connected to thefirst solder area 14 and thesecond solder area 15 of thecircuit substrate 1, and the connectingarea 33 of thefilter element 3 corresponding to thecarrier area 23 of theimage sensing chip 2.”. - Another beneficial effect of the present disclosure is that, the image capturing module provided by the present disclosure can reduce the width or size of the image sensing chip in the horizontal direction by the technical features of “the
upper surface 11 of thecircuit substrate 1 including achip placing area 13 and afirst solder area 14 connected between afirst side 131 of thechip placing area 13 and afirst side 101 of thecircuit substrate 1.”, “theupper surface 21 of theimage sensing chip 2 including animage sensing area 22, acarrier area 23, and a firstconductive area 24; the firstconductive area 24 connected between afirst side 231 of thecarrier area 23 and afirst side 201 of theimage sensing chip 2, and thecarrier area 23 surrounding theimage sensing area 22.”, “thelower surface 31 of thefilter element 3 having alight transmitting area 32 and a connectingarea 33 surrounding thelight transmitting area 32.” and “the firstconductive area 24 of theimage sensing chip 2 electrically connected to thefirst solder area 14 of thecircuit substrate 1, and the connectingarea 33 of thefilter element 3 corresponding to thecarrier area 23 of theimage sensing chip 2.”. - Furthermore, compared with the related art, the image capturing module M and the portable electronic device Z of the present disclosure have the
circuit substrate 1 and theimage sensing chip 2 electrically connected to each other by thefirst solder area 14 and the firstconductive area 24 on at least one side of thecircuit substrate 1 and theimage sensing chip 2 so as to electrically connect thecircuit substrate 1 and theimage sensing chip 2. Therefore, the width or size in the horizontal direction of thecircuit substrate 1 and at least two sides of theimage sensing chip 2 can be reduced. That is, since the at least one side of thecircuit substrate 1 and theimage sensing chip 2 can omit the disposed of the solder area and the conductive area, the width of thecircuit substrate 1 and theimage sensing chip 2 in the horizontal direction (X direction) can be reduced. Thereby, the size of theimage sensing chip 2 in the horizontal direction can be reduced. - The foregoing description of the exemplary embodiments of the disclosure has been presented only for the purposes of illustration and description and is not intended to be exhaustive or to limit the disclosure to the precise forms disclosed. Many modifications and variations are possible in light of the above teaching.
- The embodiments were chosen and described in order to explain the principles of the disclosure and their practical application so as to enable others skilled in the art to utilize the disclosure and various embodiments and with various modifications as are suited to the particular use contemplated. Alternative embodiments will become apparent to those skilled in the art to which the present disclosure pertains without departing from its spirit and scope.
Claims (10)
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| TW107143673A TWI685125B (en) | 2018-12-05 | 2018-12-05 | Image capturing module and portable electronic device |
| TW107143673 | 2018-12-05 |
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| WO2017163926A1 (en) * | 2016-03-24 | 2017-09-28 | ソニー株式会社 | Image pickup device and electronic apparatus |
| CN111193852B (en) * | 2016-03-28 | 2021-10-15 | 宁波舜宇光电信息有限公司 | Camera module and manufacturing method thereof |
| US10848657B2 (en) * | 2016-04-29 | 2020-11-24 | Lg Innotek Co., Ltd. | Camera module having a slim overall structure and portable device comprising same |
| JP6696884B2 (en) * | 2016-10-25 | 2020-05-20 | 京セラ株式会社 | Substrate for mounting electronic element and electronic device |
| CN110089101B (en) * | 2017-02-08 | 2023-08-08 | 宁波舜宇光电信息有限公司 | Image pickup module, molded photosensitive assembly thereof, manufacturing method of molded photosensitive assembly and electronic equipment |
| TWM550473U (en) * | 2017-05-12 | 2017-10-11 | 海華科技股份有限公司 | Portable electronic device and image capturing module and bearing component thereof |
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2018
- 2018-12-05 TW TW107143673A patent/TWI685125B/en active
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2019
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| EP3664139A1 (en) | 2020-06-10 |
| KR102192184B1 (en) | 2020-12-18 |
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| US10658414B1 (en) | 2020-05-19 |
| EP3664139C0 (en) | 2024-11-20 |
| JP2020092398A (en) | 2020-06-11 |
| JP6743219B2 (en) | 2020-08-19 |
| EP3664139B1 (en) | 2024-11-20 |
| TWI685125B (en) | 2020-02-11 |
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