Proline X PO 10D-S W T1 sealed wedge enclosure, product photos pending. Placeholder graphic reading Photos Coming Soon.
Proline X PO 10D-S W T1 sealed wedge enclosure, product photos pending. Placeholder graphic reading Photos Coming Soon.

Proline X

Performance Optimized Wedge Sealed Dual 10" Enclosure | Rockford Fosgate T1D210

SKU: PO 10D-S W T1 BB

QUICK SPECS
  • Best For: Dual Rockford Fosgate T1D210 Trunk-Fit Builds
  • Net Volume: 0.750 cu ft per driver (0.85 cu ft Gross)
  • Alignment: Qtc 0.709, fc 45.3 Hz, F3 45.2 Hz
  • Driver Match: Rockford Fosgate T1D210, dual 2 ohm
  • Impedance: dual 2 ohm pair, 2 or 0.5 ohms
  • Construction: Dual Chamber | Rear-Firing Wedge | V-Groove/Dado | Double 1.5" Baffle | Threaded Inserts
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Shipping Included No freight charges at checkout. What you see is what you pay.
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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.
$ 339.99
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Proline X PO 10D-S W T1 sealed wedge enclosure, product photos pending. Placeholder graphic reading Photos Coming Soon.

Performance Optimized Wedge Sealed Dual 10" Enclosure | Rockford Fosgate T1D210

Enclosure Type Sealed
External Dimensions 31.34" W x 15" H x 13.28" D at base tapering to 7.82" D at top
Net Volume 1.50cu ft
Tuning Frequency N/A (Sealed)
Cutout Diameter Direct Fit
Front Panel Thickness 1.5"
Max Mounting Depth Direct Fit
INSTALLER'S TAKE

0. at Qtc 0.709 and F3 45.2 Hz anechoic, per chamber, computed from published Thiele-Small.

On impedance: Each driver is a dual 2 ohm. Wired in series a driver is 4 ohms, and the pair in parallel gives 2 ohms. All four coils in parallel is 0.5 ohms, which almost nothing is stable into, so 2 ohms is the sensible target.

Measure the base depth. This cabinet is 13.28 inches deep at the trunk floor, 7.82 at the top, and 31.34 wide.

Product Details
Specifications
Performance Graphs
Materials
Product Details

Performance Optimized Wedge | Rockford Fosgate T1D210

Dual 10" Sealed Wedge Enclosure | Rear-Firing Trunk-Load Design

0.750 ft3 Net Per Driver0.85 ft3 Gross Per ChamberQtc 0.709Dual Chamber Wedge31.34" x 15" x 7.82/13.28"Built in Tennessee

Two Rockford Fosgate T1D210 in a Sealed Wedge

Rockford Fosgate's Power T1, 16 mm of one-way travel on a 600 watt rating. The alignment below is computed from published Thiele-Small parameters.

0.750 cubic feet net per driver, the same airspace the single version of this cabinet holds. The alignment is identical: Qtc 0.709 either way.

Two Fully Separate Chambers

A full divider runs floor to ceiling and front to back, giving each T1D210 its own sealed 0.85 cu ft gross chamber. Neither cone loads against the other, so the pair stays predictable under hard excursion instead of modulating each other's air load.

Trunk-Load Wedge Design Explained

The drivers mount on the vertical trunk-lid-side face and fire rearward into the trunk cavity.

Seat-Side Face Matches Seat Lean

Angled face matches the roughly 20 degree factory seat lean.

Trunk-Lid-Side Face Fires the Woofers

Vertical baffle, cones firing rearward into the trunk cavity.

Trunk Cavity Loading

The trunk acts as an acoustic extension for a smoother presentation.

Preserves Trunk Cargo Space

The wedge tucks against the seat back and the space in front stays usable.

Engineered for the Rockford Fosgate T1D210

At 0.750 cubic feet net per driver the Rockford Fosgate T1D210 runs a system Qtc of 0.709 with resonance at 45.3 Hz. Half power lands at 45.2 Hz anechoic, before any cabin gain.

Alignment Numbers

Qtc 0.709 · fc 45.3 Hz · F3 45.2 Hz anechoic

Mounting Geometry

Vertical baffle CNC cut to 9.0625 in at both positions. Driver mounting depth 6.375 in required. Threaded inserts pressed into the baffle backside at every mounting location.

Performance Series Construction, Driver-Specific Tuning

Langboard Elite MDF

Premium 3/4 in MDF throughout.

V-Groove and Dado Joinery

CNC cut V-grooves at every panel intersection, sides and divider seated in dados.

Double-Layer 1.5" Front Baffle

Two bonded 3/4 in MDF sheets at the driver face.

Pre-Wired Terminal Cup

Proline X ABS and carbon fiber composite, 12 gauge OFC pre-wired to both driver positions.

Wiring the Pair to Your Amplifier

Each driver is a dual 2 ohm. Wired in series a driver is 4 ohms, and the pair in parallel gives 2 ohms. All four coils in parallel is 0.5 ohms, which almost nothing is stable into, so 2 ohms is the sensible target.

Power handling is 1200 watts RMS total across the pair. Aim for roughly 840 to 1200 watts at the final wired impedance.

Built in Tennessee, Backed by Audio Intensity

Cut and assembled in Tullahoma, Tennessee on our own CNC equipment. Finished in plush black carpet. 1 year limited warranty. Enclosure only, the drivers are purchased separately. Call or text 931-563-5151.

Rockford Fosgate T1D210 Dual: Two Chambers, One Wedge

0.750 cubic feet net per driver at Qtc 0.709, F3 45.2 Hz, cut direct fit and built to order in Tennessee.

Specifications
SpecificationValue
SeriesProline X Performance Optimized Wedge
Compatible DriverRockford Fosgate T1D210, quantity 2. Direct fit
ConfigurationDual 10 inch, dual chamber sealed wedge
Mounting PositionTrunk or cargo area, tall face against the rear seat back
Firing DirectionRearward into the trunk. Not a down fire design, no feet included
External Width31.34 in
External Height15 in at the seat face
External Depth13.28 in at the base, tapering to 7.82 in at the top
Internal Volume, Gross1.70 cu ft total, 0.85 per chamber
Internal Volume, Net Acoustic1.500 cu ft total, 0.750 per driver
AlignmentQtc 0.709, fc 45.3 Hz, F3 45.2 Hz anechoic
Driver Cutout9.0625 in
Driver Mounting Depth6.375 in required
Power Handling1200 watts RMS total across the pair
ImpedanceDual 2 ohm per driver
MaterialLangboard Elite MDF
ConstructionCNC cut, V-groove and dado joinery
Panel Thickness0.75 in
Front Baffle1.5 in, double baffle
Internal BracingFull chamber divider
Driver MountingThreaded inserts at every mounting location, stainless machine screws included
Terminal CupsOne Proline X ABS and carbon fiber composite, side mounted, pre wired 12 gauge OFC
DampingLight polyfill wall lining, does not alter acoustic volume
CarpetPlush black
Weight44.4 lb
Warranty1 Year Limited
Built InTullahoma, Tennessee
Performance Graphs
Net airspace
0.75
cu ft per chamber
System Qtc
0.71
sealed
Half power
45.2
Hz · F3
Xmax at
557
W RMS · no filter
With 25 Hz subsonic
760
W RMS · +36%
Amplifier
600
W RMS recommended
This enclosure holds 0.75 cu ft net per chamber. In it the Rockford Fosgate T1D210 runs a system Qtc of 0.71 with half power at 45.2 Hz, and the cone reaches its 16.0 mm travel limit at 557 W, below the driver’s 600 W thermal rating, so travel is what stops you here, not heat. Run a subsonic filter at 25 Hz and that becomes 760 W — +203 W, or 36 percent more power for the same 16.0 mm of travel.

01Is it a sealed driver?

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

EBP = Fs ÷ Qes = 58.5
SEALED 0–50 TRANSITION 50–100 PORTED 100–150 0 50 100 150 D2 58.5
D2 · EBP 58.5
At 58.5 the T1D210 sits in the transition band, not the sealed band. That is not a mismatch: a transition motor works in either alignment, and sealed buys a smaller box and a gentler roll-off at the cost of some low-end output. Stage 02 shows what this airspace actually does with it.

02What the box does to it

0.75 cu ft against a 15.4 L Vas.

α = Vas ÷ Vb = 0.73  ·  Fc = Fs√(α+1) = 45 Hz  ·  Qtc = 0.71
20 30 50 70 100 150 200 +6 +0 -6 -12 -18 -24 FREQUENCY · Hz LEVEL · dB −3 dB
D2 · Qtc 0.71, Fc 45 Hz, F3 45.2 Hz
The box lifts resonance from 34.5 Hz free-air to 45 Hz and half power lands at 45.2 Hz, anechoic, before any cabin gain.

03The 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 16.0 mm — and a bigger one once a subsonic filter stops it wasting travel below the passband.

PXmax = 557 W unfiltered  →  760 W with a 25 Hz subsonic
20 30 50 70 100 150 200 0 4 8 12 16 20 FREQUENCY · Hz CONE TRAVEL · mm PAST LINEAR TRAVEL · Xmax 16.0 mm 557 W reaches Xmax here
D2 · 557 W, no filterD2 · 760 W with subsonic at 25 Hz, 24 dB/octXmax 16.0 mm one-way
Every trace touches the limit and no further, because each is drawn at the exact power that puts that coil on 16.0 mm. Unfiltered that is 557 W, reached first at 20 Hz. It sits under the 600 W the driver can take thermally, so the enclosure sets the ceiling, not the voice coil. The dashed traces are the same driver behind a subsonic filter at 25 Hz, 24 dB/oct: stopping the cone wasting travel below the passband lets it take 760 W before hitting the same 16.0 mm. That is 36 percent more amplifier for the price of one filter setting.
ParamValueUnitNote
Fs34.50Hzfree-air resonance
Qts0.540D2
Vas15.40Lequivalent compliance
Sd345.0cm²effective piston area
Xmax16mmone-way linear travel
Pe600Wcontinuous RMS
SPL82.2dB1 W / 1 m, derived from T/S

Driver parameters as published by rockfordfosgate.com. Curves computed against this enclosure’s actual net airspace.

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

Will this enclosure fit two T1D210?

Why 0.750 cubic feet net per driver?

What amplifier power should I run, and what impedance?

How does a wedge enclosure improve the sound in a trunk installation?

Why two separate chambers instead of one shared one?

What is the expected low-frequency extension?

Do I need to add polyfill or damping?

Are the drivers included?

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