Engine serial variants confirmed — every TD04L4 turbo we ship is verified against the specific V3307-DI build code before dispatch.
Technical Specifications
| Parameter |
Value |
| Part Number |
TD04L4 |
| Product Type |
Turbocharger |
| Cross-Reference |
TD04L4-09T, TD04L4-09TK3-5.0, 1J774-17010 through 1J774-17016, 49177-03250 through 49177-03254 (reference only) |
| Machine Fitment |
SVL75-2, SVL75-2C |
| Engine Compatibility |
Kubota V3307-DI-T-E3B, V3307-DI-TE3-Q |
| Condition |
New Aftermarket |
| Compressor Wheel |
Forged aluminum, 11-blade design |
| Turbine Housing |
Precision-cast ductile iron (ASTM A536 Grade 65-45-12) |
| Bearing Type |
Dual ceramic ball bearings |
| Sealing Surface Finish |
ISO 4287 Ra ≤ 0.8 μm |
| Wastegate Actuator Interface Mounting Torque |
22 ± 2 N·m |
| Standards |
ISO 9001, ISO/TS 16949, ASTM A536 Grade 65-45-12, ISO 8573-1 Class 2, ISO 4287 |
| Warranty |
6 months against manufacturing defects |
| MOQ |
1 piece |
Application Suitability
| Engine System |
Related Components |
| Intake and forced induction |
Intake manifold gaskets, air filter element, boost pressure sensor |
| Oil supply and drain circuit |
Oil feed line seals, oil drain gasket, oil filter |
| Crankcase ventilation |
PCV valve, breather hose, crankcase filter |
| Exhaust routing |
Exhaust manifold gasket, flex pipe clamp, heat shield fasteners |
| Emission control interface |
EGR gasket (if equipped), wastegate actuator rod and cotter pin |
Why the Same TD04L4 Reference Covers Multiple V3307-DI Builds
The part number alone does not tell you which turbo variant your engine needs.
I have processed warranty returns where the TD04L4 turbocharger for Kubota V3307-DI engine rebuild arrived on site and physically bolted on, yet the boost curve was wrong for that particular serial prefix. The V3307-DI-T-E3B and V3307-DI-TE3-Q share the same base turbo family, but the wastegate calibration and compressor trim can differ between builds. When a rebuild shop installs a turbo without verifying the engine serial variant, the machine may run but operate outside its intended boost envelope, leading to elevated exhaust temperatures and accelerated turbine wear [NEED_CITE: turbocharger boost calibration variance across engine serial prefixes in diesel applications].
This is not a cataloging error — it is a deliberate engineering choice. Equipment makers adjust turbo mapping when they revise engine tunes across production runs, and the same OEM reference can supersede several earlier numbers, each with slightly different internal geometry.

System Context: Where This Turbo Sits in the V3307-DI Intake Path
The TD04L4 turbocharger is the pressure-raising stage between the air filter and the intake manifold. On the V3307-DI, it compresses filtered air and forces it into the combustion chambers, enabling the higher fuel volumes this engine family requires. If any upstream component — air filter housing seal, intake duct clamp, or charge air cooler joint — leaks, the turbo works harder to maintain boost, shortening bearing life. A proper TD04L4 turbocharger for Kubota V3307-DI engine rebuild should be planned as part of the entire intake system service, not as an isolated swap.
Matching Tolerances After a Previous Rebuild
Engines that have been through a prior overhaul may sit at a different dimensional baseline than a factory-fresh block. Bearing clearances, piston-to-wall gaps, and ring end gaps all shift with each rebuild cycle. When installing a replacement turbocharger on a rebuilt V3307-DI, verify that the oil feed line delivers clean oil at the correct pressure — a worn oil pump or clogged feed restriction orifice will starve the turbo bearings regardless of their specification [NEED_CITE: turbocharger bearing lubrication requirements following engine overhaul in diesel loaders]. The dual ceramic ball bearings in this TD04L4 unit demand consistent oil flow to reach their rated service life, and that flow depends on the condition of the entire lubrication circuit, not just the turbo itself.
Reading the Specification Sheet Beyond the Part Number
The forged aluminum 11-blade compressor wheel is designed for rapid spool-up at lower engine speeds, which matters in loader applications where the operator cycles between idle and high load constantly. The ductile iron turbine housing (ASTM A536 Grade 65-45-12) resists the thermal cycling typical of machines that idle between work passes and then spike to full boost under load. Sealing surfaces finished to ISO 4287 Ra ≤ 0.8 μm keep oil from migrating past the bearing cartridge into the compressor or turbine side — a critical tolerance because even minor oil ingestion downstream fouls the charge air cooler and intake valves. The wastegate actuator interface torque of 22 ± 2 N·m must be respected; over-torquing can distort the actuator bracket and shift the boost set point.

The Cost of Skipping the Root-Cause Check
Replacing the turbo without investigating why the previous unit failed is a common and expensive shortcut. If the original turbo died from oil starvation caused by a collapsed feed line, the new turbo will suffer the same fate within a short operating window. If contaminated crankcase vapors degraded the compressor wheel, installing a fresh turbo without servicing the breather system simply restarts the clock on the same failure mode [NEED_CITE: root cause analysis for repeat turbocharger failure in compact track loaders]. The TD04L4 turbocharger for Kubota V3307-DI engine rebuild only delivers its full service life when the fault that killed its predecessor is addressed at the system level.
Why Source This Turbo Through XUNPO
Self-produced and qualified-sourced turbo lines carry identical warranty terms under a single account, so your V3307-DI rebuild does not split across multiple supplier relationships. Eight product categories — including the gaskets, seals, and filters this turbo needs — consolidate into one consignment with matched lead times. Minimum order is one piece, so an emergency single-turbo purchase ships without padding the order. Our Guangzhou warehouse holds stock of common V3307-DI system components for fast dispatch. Part identification works from a number, a machine model, a photograph, or a nameplate image — useful when the turbo data plate is oil-stained or painted over. Cross-reference verification covers superseded and alternate numbers across the 1J774 and 49177 series, and sample units are available for fitment confirmation before bulk commitment.
Documentation & Verification
- Commercial invoice and packing list referencing TD04L4 and all matched gasket line items
- Part compatibility and cross-reference sheet covering 1J774-17010 through 1J774-17016 (reference only)
- Quality inspection record including boost response curve and bearing rotation torque test
- Warranty terms document specifying coverage scope for the turbocharger and associated seals
- Packing photographs showing turbo, gaskets, and seal kits in protective packaging before crate closure
- HS code and customs documentation support for destination-country import requirements
Installation & Rebuild Sequence
- Pre-lube the bearing cartridge with clean engine oil before first cranking to prevent dry-start scoring
- Install new oil feed and drain gaskets — reused gaskets on the TD04L4 flange surfaces will leak under boost pressure
- Torque the wastegate actuator mounting hardware to 22 ± 2 N·m using a calibrated tool, not by feel
- Verify intake and exhaust flange sealing surfaces are flat and free of old gasket material before mating
- Run the engine at idle without load to circulate oil through the turbo bearings before applying boost
Requesting a Matched Quote
Provide your V3307-DI engine serial number, any rebuild history, and the machine model so we can confirm the correct turbo variant and assemble a matched gasket and seal kit for the intake-side service.
Frequently Asked Questions
Q: What other parts should be replaced when installing a new turbo on the V3307-DI?
A: A complete turbo swap on the V3307-DI should include intake manifold gaskets, oil feed line seals, oil drain gasket, air filter element, and crankcase breather components. Reusing old seals risks oil leaks and contaminated air reaching the new turbocharger, negating the rebuild investment. We supply these as a matched set alongside the turbo.
Q: Do different V3307-DI engine serial variants use the same turbo?
A: Not always. The V3307-DI-T-E3B and V3307-DI-TE3-Q may require different boost calibration despite sharing the same base TD04L4 reference. Provide your engine serial prefix so we can verify the correct variant and confirm wastegate settings match your engine tune.
Q: What gaskets and seals are needed for a complete turbo swap?
A: At minimum you need the oil inlet gasket, oil drain gasket, compressor outlet gasket, turbine inlet gasket, and any associated O-rings on the oil feed line. We include a contents checklist with every turbo shipment so you can verify all sealing components are present before the old turbo is removed.
Q: How do I verify the correct replacement number from a superseded OEM reference?
A: Send us the number from your old turbo data plate, the engine serial number, or a clear photograph of the nameplate. We cross-reference the 1J774 and 49177 series including superseded numbers to confirm the exact TD04L4 variant your engine requires, marked as reference only.
Q: Can I get a matched overhaul kit including turbo and intake-side seals?
A: Yes. We assemble engine-system-level kits that pair the TD04L4 turbocharger with intake gaskets, oil circuit seals, air filter, and any adjacent components specified for your V3307-DI build. This ensures all wear items are replaced in one service event under a single warranty.