Retail storefronts, hospitality districts, restaurants, pedestrian shopping corridors, mixed-use developments, corporate campuses, branded wayfinding programs, and projecting identity signs that need dimensional illuminated graphics visible from both directions.
Double-sided illuminated blade signs with routed metal faces and dimensional acrylic graphics.
Push-through Blade Signs combine fabricated aluminum or 304 stainless steel faces with routed openings and dimensional acrylic letters, logos, or shapes that project through the cabinet surface. The standard configuration is double-sided for visibility in both directions along the façade, while a single-sided version remains available upon request when one primary viewing direction is preferred.
Opaque metal faces frame illuminated acrylic graphics that push through the cabinet surface, creating a dimensional day-and-night appearance with front glow and visible edge depth. The standard presentation is double-sided; single-sided construction is available on request.
Viewing configuration, artwork feasibility, stroke widths, acrylic projection, cabinet size and depth, arm and wall-plate structure, finish, LED color, controls, power routing, service access, and permitting inputs before fabrication begins.
Fabrication data for Push-through Blade Signs.
Review the standard double-sided Push-through Blade Sign construction, routed metal faces, dimensional acrylic graphics, cabinet depth, projecting-arm structure, lighting, service access, and quote requirements. Single-sided construction is available upon request.
Double-sided Push-through Blade Sign system.
The standard presentation below shows the double-sided configuration with two opposing push-through faces, routed metal panels, internal LED illumination, a fabricated projecting cabinet, and an engineered wall-arm assembly. Single-sided construction is available upon request.
Double-Sided Push-through Blade Sign
Two opposing routed metal faces receive dimensional acrylic graphics to provide illuminated visibility from both directions along the façade. The cabinet, internal framing, support arms, and service method are engineered around sign size, wall condition, wind exposure, and maintenance access. Single-sided construction is available upon request.
The drawing shows the two face assemblies, routed metal panels, push-through acrylic graphics, internal LED layout, center support structure, and overall cabinet depth relationship.
The finished sign presents illuminated push-through graphics to both directions of travel with a dimensional metal-and-acrylic appearance. Single-sided construction remains possible upon request when a one-direction view is preferred.
Plate size, arm count, reinforcement, welds, fastener pattern, and finish are engineered around cabinet size, weight, projection, wall construction, and exposure.
The cabinet face is routed to the approved artwork, then deburred, reinforced, welded, and finished to preserve clean edges, registration, and structural stability.
Acrylic material, thickness, projection, diffusion, color, backing plate, attachment, and service method are coordinated with the routed openings.
LED placement, reflective surfaces, power supplies, controls, disconnects, wire routing, labeling, thermal conditions, and service access are coordinated before fabrication.
Wall penetrations, weather sealing, arm attachment, hardware requirements, lifting, and installer notes are finalized before shipment.
Primary production specifications.
Final construction depends on viewing configuration, artwork, routed-opening geometry, acrylic projection, cabinet depth, internal framing, LED layout, service access, wall construction, exposure, and installation requirements.
Graphic projection, cabinet depth, and structural support are engineered together.
The approximately 2.5-inch minimum depth is a starting point only. Final depth, overall size, acrylic projection, arm structure, lighting, service access, wind exposure, and wall attachment are reviewed as one assembly.
Orientation and viewing paths establish the cabinet, LED, acrylic, and internal framing system.
Final depth depends on LED throw, acrylic diffusion, face count, backing plates, framing, service access, and visual proportion.
Narrow strokes, isolated centers, small counters, sharp corners, and connected elements may require wider features, radii, tabs, reinforcement, or artwork adjustment.
Projection is selected around scale, stroke width, edge glow, material thickness, attachment, cabinet proportions, handling, and viewing distance.
Artwork, viewing distance, projection limits, structural loads, acrylic span, handling, freight, and site access are reviewed.
Mechanical attachment, bonding, backing plates, overlap, clearances, replaceability, thermal movement, and water management are coordinated.
Arm length, wall plate, cabinet location, clearances, sight lines, and local projecting-sign restrictions are coordinated.
Arm count, spacing, plate dimensions, welds, anchors, concealed backing, and attachment access are reviewed.
Cabinet area, projection, arm moment, wall capacity, anchor loads, exposure, and jurisdictional requirements are evaluated.
Panel removal, fasteners, backing plates, arm interference, controller location, and field service procedures are confirmed before fabrication.
Dimensional illumination through projecting acrylic graphics.
Static white illumination is the standard platform, with RGBW available when specified and engineered for cabinet depth, acrylic color, projection, controls, power access, and required color performance.
LED layout is selected around the standard double-sided face arrangement, routed openings, acrylic material, projection, cabinet depth, internal framing, reflective surfaces, service access, and target brightness. Single-sided construction can also be detailed upon request.
Warm through daylight white is coordinated with acrylic color, edge behavior, graphic treatment, environment, and brand appearance.
Available by project with a dedicated white channel, compatible controls, power planning, ventilation, and accessible controller location.
LED spacing, center framing, reflective surfaces, depth, acrylic diffusion, and projection are coordinated to keep both faces visually consistent.
Central framing, LED orientation, wiring, service path, backing plates, and acrylic transmission are reviewed together for the double-sided build.
Acrylic color, diffusion, graphic treatment, thickness, LED distance, and internal reflections influence front brightness and color.
Acrylic projection, edge polish or diffusion, side masking, vinyl, printing, and ambient viewing conditions determine visible edge glow.
Opening fit, backing plates, seams, baffles, gaskets, service panels, and acrylic overlap are detailed to reduce unintended leakage.
Power quantity, location, ventilation, circuit loading, disconnects, controls, and replacement access are confirmed.
Internal passages, wall penetrations, strain relief, grounding, weather protection, and installer connections are documented.
Panel seals, acrylic attachment, weep paths, penetrations, corrosion protection, thermal cycling, and access are reviewed.
Materials selected around structure, acrylic projection, lighting, and brand standards.
Cabinet, faces, arms, wall plate, acrylic graphics, backing plates, graphic treatment, finish, environment, lighting, service, and mounting are coordinated as one system.
Suitable for cabinets, routed faces, wall plates, internal framing, powder coating, and custom-painted architectural finishes.
Suitable for routed faces, cabinets, wall plates, brushed or polished presentation, paint, electroplating, and compatible premium finishes.
Color, thickness, diffusion, projection, impact requirements, edge treatment, attachment, service access, and exterior exposure are selected around the artwork.
Colored acrylic supports solid illuminated color; translucent vinyl supports brand matching; UV printing supports gradients, imagery, and detailed artwork where compatible.
Visible edge glow and daytime appearance are controlled through machining, polishing, sanding, paint, vinyl, film, and project-specific masking.
Backing plates, fasteners, adhesives, overlaps, thermal movement, replacement access, and water management are coordinated by project.
Pantone/PMS, Sherwin-Williams, physical samples, gloss, texture, and architectural references can be coordinated.
Brushed, polished, mirror, plated, electroplated, and PVD-style effects are reviewed for metal compatibility, grain direction, handling, and exposure.
Information required for an accurate quote.
Supplying project details upfront helps confirm viewing configuration, push-through feasibility, acrylic projection, cabinet depth, lighting, structure, mounting, pricing, production requirements, freight, and lead time.
Vector artwork and clear wall information let us review routed openings, stroke widths, counters, acrylic projection, backing plates, cabinet depth, arm structure, wall plate, anchors, power, and service access.
Start a QuoteVector files are preferred. Include both face layouts if the two sides use different graphics.
Confirm the required viewing directions, sign orientation, pedestrian or traffic approach, and whether the standard double-sided presentation should be modified.
Provide cabinet width, height, depth, wall projection, desired acrylic projection, clearances, and known code restrictions.
Provide illuminated colors, desired edge glow, graphic treatment, day/night references, and separate artwork for each side when applicable.
Provide preferred material, paint or powder-coat color, brushed or polished references, and architectural finish requirements.
Include substrate, internal backing, elevation, access, exposure, sign height, available electrical service, and permit constraints.
Provide wall assembly information, attachment access, concealed conditions, structural drawings, or engineer requirements when available.
Confirm power location, wall penetrations, wire path through the arms, RGBW controller requirements, and installer responsibilities.
Provide projection limits, clearance requirements, lift access, delivery restrictions, installation sequence, and special packaging needs.