Proline X PO 10-P W IDMAX ported wedge enclosure, front baffle with gloss black acrylic insert and pre-wired leads, 27 by 14 inches. Optimized for Image Dynamics IDMAX.
Proline X PO 10-P W IDMAX ported wedge enclosure, side profile with recessed terminal cup, 11.00 inch top, 15.91 inch base, 14 inches tall. Optimized for Image Dynamics IDMAX.
Proline X PO 10-P W IDMAX ported wedge enclosure, front baffle with gloss black acrylic insert and pre-wired leads, 27 by 14 inches. Optimized for Image Dynamics IDMAX.
Proline X PO 10-P W IDMAX ported wedge enclosure, side profile with recessed terminal cup, 11.00 inch top, 15.91 inch base, 14 inches tall. Optimized for Image Dynamics IDMAX.

Proline X

Performance Optimized Wedge Ported 10" Enclosure | Image Dynamics IDMAX10 V4

SKU: PO 10-P W IDMAX BB

QUICK SPECS
  • Alignment: 1.37 cu ft net vented at 34.0 Hz. F3 29.1 Hz anechoic, 4.48 dB passband ripple
  • Driver: Image Dynamics IDMAX10 V4 D2, 500 W RMS, 19.0 mm Xmax, 27.00 Hz Fs
  • Build: Rear-firing wedge, 20 degree rear rake, V-groove and dado joinery, triangular side-exit slot port with a 1/2" rounded mouth, double 1.5" baffle, side-mounted terminal cup
  • Cabinet: 27.00" W x 13.50" H x 15.91" D at base tapering to 11.00" D at top, 16.9 sq in port, ships dry
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Built in Tennessee CNC cut from 3/4" Langboard Elite MDF. V-groove and dado joinery.
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Advanced Terminal Cup Built in-house. ABS/Carbon Fiber. Stainless steel hardware. Copper ring terminals.
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Proline X PO 10-P W IDMAX ported wedge enclosure, front baffle with gloss black acrylic insert and pre-wired leads, 27 by 14 inches. Optimized for Image Dynamics IDMAX.

Performance Optimized Wedge Ported 10" Enclosure | Image Dynamics IDMAX10 V4

Enclosure Type Ported
External Dimensions 27.00" W x 13.50" H x 15.91" D at base tapering to 11.00" D at top
Net Volume 1.37cu ft
Tuning Frequency 34.0 Hz
Port Area 16.9 Square Inches
Cutout Diameter Direct Fit
Front Panel Thickness 1.5"
INSTALLER'S TAKE

7.60 inches of mounting depth is why the Down Fire for this driver stands 8.10 inches tall. The wedge takes the motor in depth instead: the port panel has to clear it, which puts the top depth at 11.00 and the base at 15.91, two and a half inches deeper than the cabinet is tall, and the width at 27 rather than 30 because the flattest curve came out there. Measure the trunk floor.

A 19 mm motor in a cabinet this size costs flatness, 4.48 dB of ripple, and buys reach, an F3 of 29.1 Hz, the lowest of the tens here. The channel runs 0.4 metres per second under its limit at 500 watts and the ripple sits just inside my 4.5 dB rule; this cabinet is close to two gates at once and it is cut exactly as the solver drew it. Image Dynamics' own manual puts the IDMAX10 in 1.5 cubic feet gross at 35 Hz for its Universal alignment; this is 1.78 gross at 34.

Product Details
Specifications
Performance Graphs
Materials
Product Details

Proline X Performance Optimized Wedge 10" Ported

The IDMAX motor in a ten, vented at 34 Hz for a 29.1 Hz reach

1.37 cu ft net Tuned 34.0 Hz F3 29.1 Hz Side slot port Cut for the Image Dynamics IDMAX10 V4 Built in Tennessee
1.37cu ft net
34.0Hz tuning
29.1Hz F3 anechoic
16.9sq in port area

Why this driver is vented at 34.0 Hz

The IDMAX10 V4 carries 7.60 inches of mounting depth and 19 mm of travel on a 27 Hz motor, and that depth is why the Down Fire stands 8.10 inches tall for it. The wedge takes the motor in depth instead: 27 inches wide, 13.5 tall, 11.00 inches at the top and 15.91 at the base, with 1.37 cubic feet net vented at 34 Hz through a 16.9 square inch port.

A 19 mm motor in a cabinet this size costs flatness, 4.48 dB of anechoic ripple, the widest in the line, and buys reach: an F3 of 29.1 Hz, the lowest of the tens here, with 3.11 dB of in-car spread across 25 to 60 Hz at 34 Hz tuning. Image Dynamics' own manual puts the IDMAX10 in 1.5 cubic feet gross tuned to 35 Hz for its Universal alignment; this cabinet is 1.78 gross, vented a hertz lower. The port takes 22.23 of the 22.55 inches a 27 inch cabinet gives and runs at 21.7 metres per second in the channel against a 22.1 limit, 13.3 at the mouth.

Trunk-load wedge, explained

The 20 degree face is the seat side

A factory rear seat back leans about 20 degrees off vertical. The wedge's raked rear panel matches that lean and tucks against it, so the cabinet uses the triangle of trunk floor a square box wastes.

The driver fires rearward

The baffle stays vertical and faces the trunk opening. The trunk acts as the acoustic extension into the cabin; nothing about the driver is angled.

15.91 inches at the base, 11.00 at the top

The port panel has to clear a 7.60 inch motor, and it sets the depth at 10.97 inches of top depth against 9.34 for the magnet alone; the solver rounds to 11.00. That puts the base at 15.91, two and a half inches deeper than the cabinet is tall, and the width at 27 rather than 30 because the flattest curve came out there. 6.91 inches of flat floor stay clear in front of the panel. Measure the trunk floor.

27.00 inches wide

Width is the wedge's free dimension and it buys two things at once here: airspace, and port length, because the port runs the full width of the box.

The port is the product

The port is a triangular slot in the bottom-rear corner. The floor and the raked back wall are two of its three sides; the third is a single panel bevelled to sit flush against both. It runs across the cabinet, opens into the box at the far end and exits through the side panel: a straight run with no bend, 22.23 inches of centreline path.

The channel is an isosceles triangle with 6.00 inch legs, 16.9 square inches, running at 21.7 metres per second at the tuning frequency. The mouth is that same triangle cut through the side panel with its three edges rounded over at 1/2 inch, so the opening at the face is 27.7 square inches and air leaves it at 13.3 metres per second, against the 17.0 metre per second threshold where a slot port starts to chuff. The panel's throat end carries a 3/8 inch roundover for the same reason.

This enclosure ships dry. Polyfill goes in every sealed Proline X cabinet we build. It does not go in this one. Damping material changes the effective volume the port is tuned against, which moves the tuning away from the 34.0 Hz the port was cut for.

Run a subsonic filter

Below tuning the port stops loading the cone and excursion climbs without limit toward DC, so a 27 Hz high-pass at 24 dB per octave is part of the specification. Set it and the same cabinet takes substantially more power for the same cone travel.

Every wattage on the Performance Graphs tab is a mechanical limit, the power at which the cone reaches the end of its linear travel in this box. What the voice coil can dissipate as heat is a separate ceiling set by Image Dynamics.

Cut for this driver, not for a catalogue

Mounting

Cut to Image Dynamics's published 9.646 inch cutout through a double-layer 1.5 inch baffle, with a cosmetic front layer routed for the acrylic insert. Threaded inserts at every mounting location.

Clearance

The channel runs 0.4 metres per second under its limit at 500 watts and the ripple sits just inside the 4.5 dB rule; this cabinet is close to two gates at once and it is cut as the solver drew it. The cone uses 8.5 of its 19.0 mm at rated power with the subsonic filter set. We also build this driver as a 0.75 cubic foot sealed wedge, and the graphs tab compares the two.

Braced

Two windowed C braces run the cabinet profile at the third points of the width and seat on the port panel; the windows keep the cavity one chamber.

Joinery

V-groove and dado throughout, 0.75 inch Langboard Elite MDF, the shell folded from one strip with the sides dropped into dados and the port panel seated in dados of its own.

Power, wiring and warranty

Image Dynamics rate the IDMAX10 V4 at 500 W RMS. Terminal cup is side mounted on the side opposite the port mouth. A dual 2 ohm driver wired parallel presents 1 ohm, which many amplifiers are not stable into; series at 4 ohm is the safe default unless yours is rated for it.

Performance Optimized carries a 1-year warranty. Built to order in Tullahoma, Tennessee. The driver is not included.

Cut, folded and finished for the Image Dynamics IDMAX10 V4. The alignment, the port geometry and the power figures all come from Image Dynamics's published parameters run through our own solver.

Specifications
SeriesProline X Performance Optimized Wedge
Driver-Specific FitmentImage Dynamics IDMAX10 V4 D2 (Dual 2 Ohm)
Enclosure TypePorted | Rear-Firing Trunk Wedge
Baffle ConfigurationVertical Baffle - Driver Fires Rearward Into The Trunk
Wedge Angle20 Degrees On The Rear (Seat-Side) Panel
External Width27.00 Inches
External Height13.50 Inches
Top Depth11.00 Inches
Base Depth15.91 Inches
Internal Volume (Gross)1.78 Cubic Feet
Internal Volume (Net After Displacement)1.37 Cubic Feet
Port TypeTriangular Slot | Bottom-Rear Corner | Straight, No Bend | Side Exit
Port GeometryIsosceles, 6.00 Inch Legs, 16.9 Square Inches, 22.23 Inches Long, Side Mouth
Port Tuning (Fb)34.0 Hz
Port MouthTriangle Through Side A, 1/2 In Roundover On All Three Edges, 27.7 Square Inches At The Face
Port ThroatOpen Far End, 3.02 In Gap To Side B, 3/8 In Roundover On The Panel End
Port Air Velocity21.7 m/s In The Channel, 13.3 m/s At The Flared Mouth (17.0 m/s Chuff Threshold)
Predicted F329.1 Hz (Anechoic)
Passband Ripple4.48 dB (Anechoic)
Subsonic Filter27 Hz High-Pass, 24 dB/Octave - REQUIRED On A Vented Enclosure
Driver Fs27.00 Hz
Driver Qts0.610
Driver Qes / Qms0.704 / 4.550
Driver Vas37.319 Liters / 1.318 Cubic Feet
Driver Sd380.0 Square Centimeters
Driver Mms189.00 g
Driver BL12.80
Driver Re3.4 Ohm
Driver Xmax19mm (One-Way)
Driver Displacement0.11 Cubic Feet (Published by Image Dynamics)
Driver Sensitivity82.8 dB
Driver Power Handling500 Watts RMS
Driver Overall Diameter10.945 Inches (Image Dynamics Spec)
Mounting Depth Required7.598 Inches (Image Dynamics Spec)
Cutout Diameter9.646 Inches (Image Dynamics Spec)
MaterialLangboard Elite 3/4" MDF
ConstructionShopSabre CNC / Two Windowed C Braces At The Third Points, Seated On The Port Panel
JoineryV-Groove and Dado (CNC-Cut)
Front Baffle ConstructionDouble-Layer 1.5" MDF | Cosmetic Front Layer Routed For The Acrylic Insert
Mounting HardwareThreaded Inserts At Every Mounting Location | Stainless Steel Machine Screws Included
Voice Coil ConfigurationDual 2 Ohm
Terminal CupProline X ABS/Carbon Fiber Composite | Side Mounted, Opposite The Port | 12g OFC Pre-Wired
DampingNone - Ships Dry. Polyfill Detunes A Ported Enclosure
Recommended Power350-500 Watts RMS (Image Dynamics Rated: 500W RMS)
Carpet FinishPlush Black
Weight44 lb
Bundle OptionsEnclosure Only (Bring Your Own Image Dynamics IDMAX10 V4)
Warranty1-Year Limited (Enclosure)
ManufacturedTullahoma, Tennessee, USA
Performance Graphs
Net airspace
1.37
cu ft
Tuning
34.0
Hz · Fb
Half power
29.1
Hz · F3, anechoic
Xmax at
2499
W RMS · 27 Hz subsonic
With NO filter
379
W RMS · unfiltered
Port
13.3
m/s at the mouth

01Is this driver right for a ported box?

Efficiency bandwidth product places the motor before anything else is decided.

EBP = Fs ÷ Qes = 38.4
SEALED 0–50 TRANSITION 50–100 PORTED 100–150 0 50 100 150 EBP 38.4
Image Dynamics IDMAX10 V4 D2 · EBP 38.4
Under 50 the raw number leans sealed. The Image Dynamics IDMAX10 V4 D2 reads 38.4, so this is a ported build against the grain of its own EBP: it works because the alignment is tuned for in-car response rather than for an anechoic curve, and because the cabinet holds port area and volume the driver can actually use.

02What the box does to it

1.37 cu ft net against a 37.3 L Vas, vented at 34.0 Hz.

Fb = 34.0 Hz  ·  F3 = 29.1 Hz  ·  passband ripple 4.48 dB
20 30 50 70 100 150 200 +6 +0 −6 −12 −18 −24 FREQUENCY · Hz LEVEL · dB −3 dB Fb 34.0
Image Dynamics IDMAX10 V4 D2 · Fb 34.0 Hz, F3 29.1 Hz
Anechoic, before any cabin gain, with the 27 Hz subsonic filter already applied. The vent takes over below 34 Hz and the cone stops doing the work there, which is what holds travel down at the bottom of the passband.

03Perceived Ported vs Sealed

This cabinet, 1.37 cu ft net vented at 34.0 Hz, against the 0.75 cu ft sealed wedge we build for this driver (PO 10-S W IDMAX BB).

Ported Fb 34.0 Hz  ·  the 0.75 cu ft sealed box runs Qtc 1.01, Fc 45 Hz
20 30 50 70 100 150 200 +6 +0 −6 −12 −18 −24 FREQUENCY · Hz LEVEL · dB +5.6 dB at 39 Hz
Ported · this cabinet, 1.37 cu ft, Fb 34.0 HzSealed wedge we build, 0.75 cu ft, Qtc 1.01
Shaded blue is where the ported alignment is louder for the same power, orange where the sealed one is. The sealed curve is the 0.75 cu ft sealed wedge we build for this driver (PO 10-S W IDMAX BB), not this cabinet with the port blocked: two different boxes, because that is the choice a buyer actually has. Across 25 to 60 Hz the vent is worth 5.6 dB at its widest and 4.2 dB on average. This is the anechoic picture, which is not what you hear in a car.

04Real World Ported vs Sealed

The same two boxes with cabin gain applied, 45 Hz corner, 18 dB ceiling.

Flatness across 25–60 Hz: ported 3.3 dB spread, the 0.75 cu ft sealed box 1.2 dB
20 30 50 70 100 150 200 +6 +0 −6 −12 −18 −24 FREQUENCY · Hz LEVEL · dB +5.6 dB at 39 Hz
Ported, in-car · 3.3 dB spreadSealed wedge we build, 0.75 cu ft, in-car · 1.2 dB spread
Cabin gain lifts both boxes by the same amount, so the gap between them does not change: what changes is the shape each one ends up with. A car pressurises below roughly 45 Hz, which fills in the sealed box's shallower rolloff and over-drives it where the ported box is already flat. Across 25 to 60 Hz, the band kick and bass fundamentals occupy, this alignment holds 3.3 dB of spread against 1.2 dB for the 0.75 cu ft sealed wedge we build for this driver (PO 10-S W IDMAX BB). The sealed curve is flatter on paper; the ported one trades that for output. The two alignments converge at the bottom of the band rather than crossing cleanly, so there is no meaningful subsonic advantage either way here. Cabin gain here is a house assumption, not a measurement of your vehicle.

05The watts that reach Xmax (in this enclosure)

Travel scales with the square root of power, so there is one wattage that puts the cone exactly on Image Dynamics's published 19.0 mm. The two traces are the same cabinet with the subsonic filter switched on and switched off.

PXmax = 2499 W with a 27 Hz subsonic  ·  379 W with none  →  the filter is worth 6.6×
20 30 50 70 100 150 200 0 4 8 12 16 20 24 FREQUENCY · Hz CONE TRAVEL · mm PAST LINEAR TRAVEL · Xmax 19.0 mm 2499 W reaches Xmax here
2499 W · subsonic at 27 Hz, 24 dB/oct379 W · no subsonic filterXmax 19.0 mm one-way, published
Each trace touches the limit and no further, because each is drawn at the exact power that puts the cone on 19.0 mm. With a 27 Hz subsonic that takes 2499 W, reached first at 46 Hz. Take the filter away and the same cabinet reaches 19.0 mm on 379 W — the filter is worth 6.6× the safe power. A vent unloads the cone below tuning, so there is nothing holding it once the box stops loading: on a sealed build a subsonic filter is an improvement, here it is required equipment. The unfiltered trace is still rising where this chart stops at 20 Hz, so treat 379 W as a bound rather than a floor. Every wattage on this page is a MECHANICAL limit, not an electrical one. It is the power at which the cone runs out of linear travel in this cabinet, and nothing more. What the voice coil can dissipate as heat is a separate ceiling set by the driver, not by the box — Image Dynamics rate this one at 500 W RMS, and that is the number that binds first here: heat stops you before travel does, so treat 500 W as the ceiling and the travel figures above as headroom. Final wired impedance, amplifier output and how long you hold the level are all electrical questions this graph does not answer.
Materials
Material

Built From a Spec Sheet, Not a Sales Sheet

Every Proline X Performance Series enclosure is CNC-cut from Langboard Elite MDF, 3/4" (18mm) panels produced to published mill specifications. Most enclosure manufacturers source generic MDF without published data. We can tell you the internal bond rating, the modulus of elasticity, the modulus of rupture, and the face and edge screw holding strength for every panel in this enclosure, because we chose the material based on those numbers, not on price or availability.

Langboard Elite is produced in the United States. The specifications below are pulled directly from Langboard's published mill data and are verifiable. This is the same panel stock used in our full Proline X lineup.

Specifications

Langboard Elite MDF: Published Mill Data

Property Value Why It Matters
Panel Stock Langboard Elite MDF Named, verifiable panel source, not generic "high-density MDF"
Thickness 3/4" (18mm) Industry standard for subwoofer enclosures; panels below this flex under pressure
Density 48.5 lbs/ft³ Higher density = less porosity, better screw retention, reduced resonance
Internal Bond 200 psi Measures resistance to delamination under sustained internal pressure. The most enclosure-relevant spec on this sheet
Modulus of Rupture (MOR) 4,200 psi Bending strength before the panel breaks, relevant for larger unsupported baffle spans
Modulus of Elasticity (MOE) 410,000 psi Stiffness under load; higher MOE means less panel flex under bass pressure, less resonance
Face Screw Holding 325 lbs How firmly the panel surface holds a screw; critical for baffle joint integrity over time
Edge Screw Holding 250 lbs Panel edge retention, relevant for every joint that isn't face-to-face
Internal Bond

200 psi: The Number That Actually Matters for Enclosures

The internal bond rating measures how well the MDF panel resists delamination under sustained pressure applied perpendicular to the face. In a subwoofer enclosure, every bass transient generates a pressure pulse that pushes outward on every panel simultaneously. A panel that begins to delaminate internally loses stiffness gradually. The symptoms are slow: a box that starts to sound softer, less defined, less punchy over months of use. 200 psi internal bond is the spec that determines how long this enclosure holds its acoustic integrity under daily use at real power levels.

Stiffness

410,000 psi MOE: Less Flex, Less Resonance

The modulus of elasticity measures panel stiffness, its resistance to bending under load. A stiffer panel flexes less under the pressure generated by a high-excursion driver at volume. Panel flex is a source of acoustic coloration: the panel itself begins to radiate sound at its own resonant frequency, adding distortion to the output. 410,000 psi stiffness combined with V-groove and dado joinery means the panels stay rigid and the bracing controls resonance at the structure level, not the panel level. The bass you hear comes from the driver, not the box.

Screw Holding

325 lb Face / 250 lb Edge: Joints That Stay Locked

Screw holding strength determines how firmly the panel grips a fastener at the face and at the edge. This matters most at the baffle joint, where the front panel meets the side panels and where the driver is mounted. A panel with low screw holding strength allows fasteners to loosen over time under vibration, leading to air gaps at the joint and loss of acoustic seal. 325 lb face screw holding strength means the baffle hardware stays put. Combined with dado joinery and adhesive, the front panel on a Proline X Performance Series enclosure is not going anywhere.

Sourcing

Named Panel Stock: Not "Premium MDF"

The phrase "premium MDF" or "high-density MDF" appears on marketing copy for enclosures across every price point, from $40 to $400. It is not a specification. It is a description with no defined standard. Langboard Elite is a named, sourced, mill-documented product with published data. We name it in our copy because naming it holds us accountable to the spec. You can look up Langboard Elite independently, verify the numbers on this page, and confirm you are getting what we say you are getting. That is the point.

Why Proline X?

Most enclosures are built to a price point. Proline X is built to a spec. Every box starts with published-data MDF, gets CNC-cut to exact internal volume, and is assembled by hand in our Tennessee facility. The difference shows up in the measurements, and in how the box holds up two years into daily use.

CNC-Cut to Spec

CNC-Cut to Spec

Panels are machine-cut on ShopSabre CNC routers and joined with V-groove and dado joinery. Consistent geometry, no hand-cut variance, no gaps at the joints.

Handcrafted in USA

Handcrafted in USA

Hand-assembled at our facility in Tullahoma, TN. Every enclosure is inspected before it ships.

Tuned to the Build

Tuned to the Build

Internal volume and port geometry are calculated to spec and CNC-cut to exact dimensions. The box performs the same way every time.

Frequently Asked Questions

Why is this enclosure tuned to 34.0 Hz?

Why the 20 degree wedge, and why rear-firing?

Do I need a subsonic filter?

How much power can I run, and at what impedance?

Would a sealed box be better for me?

How does the side port work?

Does this enclosure ship with polyfill?

Is the IDMAX10 V4 included?

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