MODULAR PACKAGING FOR RUGGED ELECTRONICS ENCLOSURES
20200317147 ยท 2020-10-08
Inventors
Cpc classification
H05K5/0073
ELECTRICITY
B60R11/00
PERFORMING OPERATIONS; TRANSPORTING
B60R16/0238
PERFORMING OPERATIONS; TRANSPORTING
H05K5/0247
ELECTRICITY
International classification
B60R16/023
PERFORMING OPERATIONS; TRANSPORTING
H05K7/20
ELECTRICITY
Abstract
A cabinet enclosure for mounting to a vehicle and providing an inner cavity isolated from a surrounding environment. The cabinet enclosure includes a removable module including a frame and a plurality of mounts on the frame for receiving an electrical component. A housing defines the inner cavity and includes a plurality of predefined mounting locations within the inner cavity configured to receive the removable module. The housing is configured to protect the inner cavity from exposure to moisture, heat, vibration and/or electromagnetic forces. An interface element secures the housing to a vehicle.
Claims
1. A cabinet enclosure for mounting to a vehicle and providing an inner cavity isolated from a surrounding environment, the cabinet enclosure comprising: a removable module including a frame and a plurality of mounts on the frame for receiving an electrical component; a housing defining the inner cavity and including a plurality of predefined mounting locations within the inner cavity configured to receive the removable module, the housing configured to protect the inner cavity from exposure to moisture, heat, vibration and/or electromagnetic forces; and an interface element for securing the housing to a vehicle.
2. The cabinet enclosure of claim 1, wherein the plurality of predefined mounting locations includes one or more of the following: front fasteners, rear guide pins or rear shock pins for insertion and extraction of the removable module into and from the inner cavity of the cabinet enclosure.
3. The cabinet enclosure of claim 1, wherein the housing includes a front opening and a door for closing the front opening, the front opening configured to allow the removable module to be removed from and inserted into the housing through the front opening.
4. The cabinet enclosure of claim 1, further comprising an electrical harness secured in the inner cavity, the electrical harness including a plurality of connectors for selectively connecting the electrical component of the removable module to an external panel of the cabinet enclosure and/or to an electrical component of an additional removable module.
5. The cabinet enclosure of claim 1, further comprising a panel positioned in the inner cavity for providing electromagnetic isolation of the electrical component of the removable module from another electrical component mounted in the inner cavity of the housing.
6. The cabinet enclosure of claim 1, further comprising a plurality of harnesses disposed within the inner cavity of the housing and additional electrical components mounted to additional removable modules wherein the plurality of harnesses separately inter-connect the additional electrical components to each other and/or to an external panel mounted to the housing.
7. The cabinet enclosure of claim 1, wherein the electrical component is one of the following: a communication module (with Ethernet switches and routers), a computation module (with servers, network attached storage devices) or a Human-Machine-Interface module (with visual or audible alarms, KVM switches, displays, printers).
8. The cabinet enclosure of claim 1, wherein the removable module includes a set of standardized electrical interfaces on a rear panel to interface with an electrical harness disposed in the inner cavity of the housing.
9. The cabinet enclosure of claim 1, further comprising at least one of a cooling unit and a power distribution unit disposed in the inner cavity.
10. The cabinet enclosure of claim 1, wherein the removable module includes a ballast element mounted in one of a plurality of positions on the removable module.
11. The cabinet enclosure of claim 1, wherein the removable module includes electromagnetic interference mitigating features for providing electromagnetic isolation of the removable module from additional removable modules mounted in the inner cavity of the housing.
12. The cabinet enclosure of claim 11, wherein the electromagnetic interference mitigating features include one or more of the following: conductive panels, conductive gaskets, conductive screens for air ways or electrical filters on power or signal cables.
13. The cabinet enclosure of claim 1, further comprising an additional removable module wherein the removable module and the additional removable module are independently removable from and insertable into the inner cavity of the housing.
14. The cabinet enclosure of claim 1, further comprising at least one of guides, a railing system or slides mounted to the housing and engaging the removable module for allowing the removable module to be inserted into and removed from the inner cavity of the housing.
15. A removable module for insertion into and removal from an enclosure, the removable module comprising: a frame; a plurality of mounts on the frame for receiving an electrical component; and a set of standardized electrical interfaces on a rear panel to interface with an electrical harness.
16. The removable module of claim 15, wherein the removable module includes a ballast element mounted in one of a plurality of positions on the removable module.
17. The removable module of claim 15, wherein the removable module includes electromagnetic interference mitigating features for providing electromagnetic isolation of the removable module from neighboring components.
18. The removable module of claim 17, wherein the electromagnetic interference mitigating features include one or more of the following: conductive panels, conductive gaskets, conductive screens for air ways or electrical filters on power or signal cables.
19. The removable module of claim 15, wherein the electrical component is one of the following: a communication module (with Ethernet switches and routers), a computation module (with servers, network attached storage devices) or a Human-Machine-Interface module (with visual or audible alarms, KVM switches, displays, printers).
Description
DESCRIPTION OF THE DRAWINGS
[0038]
[0039]
[0040]
[0041]
[0042]
[0043]
DETAILED DESCRIPTION
[0044] As used herein, the word ship is not meant to convey the application of the enclosures and enclosure modules disclosed herein to be exclusively for use on marine vessels. The word ship only depicts an example of a type of vehicle, where the enclosures and modules can be used. The enclosures and modules can be applied to other vehicles for underwater, ground and airborne applications.
[0045] This present disclosure relates to modular COTS packaging for rugged electronics enclosures. The enclosure includes a cabinet structure and electro-mechanical modules to shelter commercial grade electronics from harsh environments. Examples of harsh environmental conditions include, but are not limited to, shock, vibration, electromagnetic interference, power disturbances, water drip, humidity, and high or low temperatures.
[0046] Referring to the drawings and in particular
[0047] The enclosure or cabinet structure 100 shown in
[0048] Enclosure 100 has a set of mechanical and electrical interfaces, such as items 102, 103 and 104, which can remain constant for the life expectancy of the enclosure onboard a ship. This is consistent with the goal to prevent modification to the cabinet surroundings as the housed COTS electronics are modified, exchanged, replaced.
[0049] As shown in
[0050] In some embodiments, enclosure 100 has a design and construction that allows for partial or complete disassembly (by means of fasteners or other mechanical-type devices), so to be hatchable (enclosure 100 can be disassembled into smaller pieces allowing for the pieces to fit through an access hatch as partially disassembled, or fully disassembled) and re-assembled and installed at final destination location in an onboard vehicle with no disturbance to hull, bulkhead, passage ways, other structures, and surrounding equipment. In some embodiments, enclosure 100 is able to fit through hatches as a whole without need for disassembly.
[0051] Referring to
[0052] In some embodiments, module 200 can feature EIA-310 compliant mounts or mounting provisions in a variety of sizes (in U height and depth). For example, module 200 can feature a set of standardized electrical interfaces on a rear panel to interface with the enclosure electrical harness. Also, module 200 can allow for the COTS items to retain all their mechanical and electrical properties when installed.
[0053] In some embodiments, module 200 includes removable and adjustable ballasts. The ballasts can be secured or removed by the use of mechanical devices such as fasteners. The ballasts retain established mechanical properties, such as mass, center of gravity location. Further the ballasts remain in compliance with human factors, such as 2-man lift weight limitations.
[0054] In some embodiments, module 200 and enclosure 100 have supporting guides that mate and/or rail systems, and/or slides for the purpose of easily and safely inserting and extracting each module individually from enclosure 100.
[0055] Referring to
[0056] Enclosure 100 allows module 200, as shown in
[0057] In some embodiments, enclosure 100 has a pre-defined mounting pattern to accommodate installation and removal of modules 200, from the front of the enclosure. The mounting pattern can include some/all of the following: front fasteners, rear guide pins, rear shock pins, and sliding mechanism to ease insertion and extraction of module from the enclosure. This provides standardized mechanical devices to interface with modules.
[0058] Modules 200 can be transported to and from the ship using handles 204. While modules 200 are built in a manner to allow disassembly and reassembly, it is envisioned these modules be of an overall size compatible with ship walkways.
[0059] As electronics modules change through time at a user's location, such as onboard a ship, enclosure 100 has weight ballasts 105 to allow adjustment and compensate for such change. This ensures that the overall loaded cabinet or enclosure 100 retains known mechanical properties, such as natural frequencies, so to remain certified to a user's standards and deemed sea worthy when used on a ship. Advantageously, the use of weight ballasts 105 allows compensation for changes in sprung mass, and shifts in the center of gravity in the enclosure 100 as the payload of module 200 changes over time. Advantageously, adjusting the weight ballasts 105, allows the overall enclosure 100 to retain its natural frequency, and removes the need for requalification of the enclosure 100 for shock and vibration standards.
[0060] Referring to
[0061] In some embodiments, each module 300 offers a standard mounting scheme to COTS electronics. An example of such standard is the EIA-310 compliant vertical rails. Modules 300 can have a variety of sizes, defined in U-unit of height per the EIA-310 standard, and depth. To complement the interface to COTS, module 300 can include electrical interface panels 304 and electrical cable support 305.
[0062] In some embodiments, each module 300 is designed and built to be self-sufficient in the cabinet or enclosure 100, with housekeeping features added. These augmented capabilities can include any combination of power distribution 301, controls and monitoring alarms 302, and cooling fans 303. It should be noted that these capabilities at the module level can be supplemental to similar function already embedded in enclosure 100 as per
[0063] In some embodiments, cabinet or enclosure 100 has a pre-defined electrical harness, with one or more supporting cable retractors, ladders, slides, and other apparatus, connected to the enclosure external surfaces (such as Input/output panels with connectors and human interface panels with indicators and switches) to remain secured and fully functional regardless of modules being connected to the harness within enclosure 100. This provides that standardized electrical means or devices can interface with the modules.
[0064] In some embodiments, enclosure 100 offers added housekeeping capabilities, such as power distribution, cooling, self-diagnostics (monitoring power or cooling failure). These additional capabilities can be present in the individual modules and/or the COTS electronics installed in the modules.
[0065] Referring to
[0066] While enclosure 100 as depicted in
[0067] In some embodiments, enclosure 100 has ways or means to segregate modules 400 for the purpose of mitigating effects of electromagnetic interferences. This segregation can include physical barriers and/or dividers, of conductive properties. Also, in lieu of a single electrical harness, multiple harnesses can be used to interfaces between modules 400 and/or from modules to the external interfaces of enclosure 100 to prevent cross-talk, and protect EMI receptor cables/signals from emitter cables.
[0068] In some embodiments, module 400 includes electromagnetic interference mitigating features, to shield the electronics it contains from the other modules and enclosure 100. Such electromagnetic interference mitigating features at the module level can be sole or in addition to other features, described above, of enclosure 100. Electromagnetic interference mitigating features include, but are not limited to, one or more conductive panels, conductive gaskets, conductive screens for air ways (sometimes referred to as honeycomb or wire mesh), electrical filters on power and signal cables.
[0069] In some embodiments, a modular electronics packaging system is provided. This system allows for the use of COTS to be integrated and tested outside of a rugged enclosure, against a constant subset of environmental requirements, to minimize cost of development and qualification for such COTS to be installed into a vehicle and fielded for a specific purpose.
[0070] In some embodiments, a modular electronics packaging system allows for the use of COTS for the purpose of meeting a specific subset of functional requirements including, but not limited to, a communication module (with Ethernet switches and routers), a computation module (with servers, network attached storage devices), Human-Machine-Interface module (with visual or audible alarms, KVM (keyboard, video and mouse) switches, displays, printers).
[0071] While the present disclosure has been described with reference to one or more exemplary embodiments, it will be understood that various changes can be made and equivalents can be substituted for elements thereof without departing from the scope of the present disclosure. In addition, many modifications can be made to adapt a particular situation or material to the teachings of the present disclosure without departing from the scope hereof.