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Ultra H2O Complete Kit

Sale price $184.00

Ultra H2O
Nozzle Size

The Ultra H2O Complete Kit brings together every core component of the Ultra H2O system into one premium, ready-to-use package. Designed in-house at The Rag Company, each piece was engineered from the ground up to work seamlessly together, delivering a pressure washing experience that’s refined, intuitive, and built around the details. Inside you’ll receive the Ultra H2O Spray Gun, Foam Cannon, Spray Wand, and your choice of Spray Nozzle orifice size, giving you everything you need to get started—just add your pressure washer, hose, and water supply. Whether you’re an enthusiast or a professional detailer, this complete system was created to elevate every wash with premium materials, thoughtful design, and purpose-built performance from start to finish. 

Why You’ll Love It:

  • Comfortable Ergonomics with Rubberized Touch Points 
  • Incorporated stainless-steel internals, designed to last  
  • 360° integrated swivel for a tangle free hose experience  
  • Impact-resistant body composition for daily detailing use  
  • Included Stainless Auto Lock Quick Disconnect  
  • Dedicated 40° spray pattern optimized for vehicle washing.
  • Rubberized protective shroud helps protect delicate surfaces.
  • Rebuildable system for years of service
  • For Detailers and Car Enthusiasts who want a better washing experience 

What’s Included 

  • (1) ULTRA H2O Spray Gun
  • (1) ULTRA H2O Foam Cannon with Chemical-Resistant HDPE Bottle
  • (1) ULTRA H2O Spray Wand
  • (1) ULTRA H2O Spray Nozzles (Includes 3.0, 4.0, or 5.0 Orifice Sizes)
  • (1) Weighted Pickup Tube Assembly & Dual Orifice Fittings (1.1mm and 1.25mm)
  • (1) Single-Hand Auto-lock Quick Coupler Fitting Set
  • (1) M15 to M22 Installation Adapter with Female Hose Fitting and Extra Thread Seal Tape 

Product Specs 

  • Internal Material: Full Stainless Steel Internal Flow Paths & Connections 
  • Badging Architecture: Exclusive Limited Run Titanium H2O Gun Badge 
  • Adjustment Architecture: Positive Tactile Detent Knobs & Indexing Fan Controls 
  • Swivel Capabilities: Integrated 360° Stainless Steel Hose Swivel 
  • Disconnect Style: True Single-Handed Auto-lock Quick Coupler
  • System Integration: Fully Unified Design with Grip Zones, Nozzle Storage, and Easy Marking ID 

How to Use 

Before You Start: 

  • Ensure your pressure washer system is completely powered off and depressurized before connecting kit elements such as the Spray Gun 
  • Select and install the correct nozzle orifice size (3.0, 4.0, 5.0) or foam cannon orifice (1.1mm, 1.25mm) matching your machine's GPM/PSI specs 
  • Check that the quick-connect plug and ensure the nozzle body is completely locked and secured onto your spray gun or wand. 
  • Grip the textured rubberized shroud confidently to verify a secure seating before pulling the trigger mechanism 
  • Test spray away from the vehicle 

Application: 

  • Make sure the pressure washer water lines are active  
  • Insert the Ultra H2O Spray Wand or Foam Cannon plug directly into the single-handed auto-lock quick coupler socket of your spray gun until it clicks 
  • For your nozzle, verify the directional orientation of the 40-degree spray angle markings to align with your intended fan width 
  • Switching to the foam cannon? Store your extra auxiliary nozzles directly into the built-in nozzle holder on the gun body for quick access during washing 
  • For foam cannon, dial the tactile detent knobs precisely to adjust your soap ratio or rotate the clicking 360° barrel for horizontal/vertical fan adjustments 
  • Squeeze the buttery smooth trigger to apply a thick, ultra-dense blanket of clinging foam or a crisp 40-degree rinse stream, engaging the trigger lock to reduce fatigue 
  • When rinsing, squeeze your spray gun trigger to deliver an ultra-precise, consistent fan of water over the automotive paintwork surfaces 
  • Release pressure, decouple the nozzle tip, and store it directly into the integrated nozzle holder on the gun body when finished 

Warranty 

Warranty Coverage 

The Rag Company warrants that the Ultra H2O Limited Edition Launch Kit components will be free from defects in materials and workmanship for 90 days from the date of purchase, under normal use and operating conditions. 

If a defect arises during the warranty period, The Rag Company will, at its discretion: 

  • Repair the product, 
  • Replace it with an identical or equivalent model, or 
  • Issue store credit for the original purchase price. 

What’s Not Covered 

This warranty does not cover: 

  • Damage from misuse, impact, or abuse 
  • Operation above or below recommended pressure parameters 
  • Clogging from unfiltered or contaminated water solution 
  • Normal wear and tear (e.g., dial wear, mesh filter degradation, nozzle discoloration, scuffing) 
  • Use in unauthorized industrial settings 
  • Modifications or unauthorized repairs 
  • Accidental drops or tool damage from storage/mishandling 

Filing a Warranty Claim 

To file a claim, contact support@theragcompany.com and provide: 

  • Proof of purchase 
  • Description of issue 
  • Photos and/or video of the defect 
  • Confirmation of operating pressure and use conditions 

Limitations of Liability 

This warranty is non-transferable and applies only to the original purchaser. The Rag Company is not responsible for incidental or consequential damages arising from product failure. 

This limited warranty gives you specific legal rights; you may also have additional rights depending on your jurisdiction. 

Pressure Washer Orifice Calculator

The Rag Company · 40° detailing tips

Other sizes
4.0
orifice · 40° fan
5.0
orifice · 40° fan
Coverage chart
The 3.0 covers
Flow1.0–1.5 GPM
Sweet spot1.5 GPM @ 1,000 PSI
Target working PSI → Flow rate (GPM) →
Compact electric washers — Karcher K-series, Sun Joe SPX, Ryobi 1700

ULTRA H2O NOZZLE FAQ's

Will the wrong nozzle damage my pump?

Only if it's too small. An undersized orifice forces your pump to push its rated flow through too tight an opening. Pressure climbs past your machine's rated max, the unloader valve cycles into bypass over and over, and the motor draws extra current with each cycle. Sustained that way, the motor windings overheat and the seals start cooking. That's how pumps burn out.

Our calculator's recommendation is always equal to or larger than the calculated orifice — we round up, never down. That keeps you on the safe side of the unloader threshold by design.

The other two sizes you see are informational. If a smaller orifice would overpressure your pump, we'll mark it amber with a warning. A larger orifice is never dangerous — it just drops your pressure below target.

How we calculate this

Most calculators size for rated PSI. We size for paint-safe PSI. Manufacturer pressure numbers are great for stripping paint off siding — and exactly what you don't want hitting your clearcoat.

The orifice math uses GPM and target PSI: orifice = GPM × √(4000 ÷ target PSI). Pressure washer pumps are positive-displacement, so they push roughly the same flow regardless of pressure — which means GPM is the input that matters for sizing the orifice. Your machine's rated PSI just tells you how much pressure capacity the pump has, not how much flow makes it through the tip.

Pick your target — paint-safe rinse, general wash, wheels — and the calculator finds the orifice that throttles your flow down to that pressure. The actual PSI we show is what you'll see at the tip with our recommended size.

This methodology comes straight from the Obsessed Garage spreadsheet.

Why don't you ask for rated PSI?

Short answer: it doesn't change which orifice you should use.

A pressure washer pump produces flow first, pressure second. The flow is roughly the same whether your machine is rated 1,500 PSI or 3,000 PSI — so the orifice math, which works backwards from flow and your target pressure, doesn't care about the rated number.

What rated PSI does tell you is whether your pump can keep up with your target. For paint-safe targets, basically every detailing-class machine has plenty of headroom. We'd rather not clutter the calculator with a slider that mostly doesn't change the answer. (For the full physics on how rated PSI relates to actual tip pressure, see the next question.)

Wait — can a low-PSI machine actually produce more pressure with a smaller orifice?

Yes — and this trips up nearly everyone the first time they hear it. Rated PSI is not a ceiling. It's a single data point.

Here's what's actually happening: the pump is a positive-displacement device. It moves a fixed volume of water per cycle (your rated GPM) regardless of what's at the other end. Pressure is just what happens when that flow hits a restriction. Smaller orifice = more restriction = higher pressure. The relationship is exact: PSI = 4,000 × (GPM ÷ orifice)².

So yes — you can absolutely take a "1,500 PSI" machine and produce 2,500+ PSI at the tip with a tight enough orifice. You shouldn't. Here's what stops you in practice:

  • The unloader valve. Every pressure washer has one. When pressure climbs past its setpoint (usually 10–20% above rated PSI), it dumps water back to the pump inlet. The unloader on a 1,500 PSI machine kicks in around 1,650–1,800 PSI. Push past that and it cycles constantly — bypass, build, bypass, build — which is what burns out unloaders and pumps.
  • Pump and motor stress. Even before the unloader trips, you're loading components beyond what the manufacturer rated them for. Continuous operation past rated PSI shortens pump life dramatically.
  • Hose and fitting limits. Most consumer hoses are rated to ~3,000 PSI, but the connections, wand, and trigger have their own limits.

This is exactly why we don't recommend anything tighter than a 3.0 orifice. The math could call for a 2.0 on a low-flow machine, but at that flow + that orifice, the actual tip pressure would push way past unloader setpoints on most consumer pumps. The 3.0 is our floor specifically to keep that from happening.

So: rated PSI tells you what your machine is designed to sustain, not what it's capable of. Our calculator targets a working pressure (1,000 PSI by default) that sits comfortably below the unloader setpoint of any detailing-class washer, which is why the rated number rarely matters for the recommendation.

Will my pressure washer make 1,000 PSI?

Almost certainly yes. Every detailing-class pressure washer on the market is rated 1,500 PSI or higher — we couldn't find one in common use rated below that. The 1,000 PSI working pressure target sits comfortably below that floor.

And here's the part that's important: the orifice doesn't demand 1,000 PSI from the pump. It produces whatever pressure the flow restriction creates — usually somewhere between 600 and 1,400 PSI depending on your machine's GPM. As long as your machine can sustain the "Actual PSI" value shown in the calculator, you're set. For any of the three orifice sizes paired with any consumer or prosumer pressure washer, that's a given.

The one exception: very small battery-powered units (under 1,200 PSI rated, under 1 GPM) might not have enough capability for the 5.0 orifice at the higher target settings. If your machine is in that range, stick to the 1,000 PSI default and you'll be fine.

Rated vs. measured GPM — which should I use?

Rated is what the manufacturer prints on the box and the spec plate. It's based on lab conditions and a generous interpretation of "working flow." Most machines deliver 70–85% of their rated GPM in real use.

Measured is what came out of an actual flow test — a flow meter on the gun. If you've done the test (or you trust someone like Obsessed Garage who has), use those numbers. They size more accurately.

If you don't have measured numbers, rated is fine — the calculator gives you a slightly larger orifice than strictly necessary, which leans toward gentler flow. Better than the other direction.

Why we lead with 40° tips

A 40° fan is the most forgiving spray angle for vehicle work. It's wide enough to cover a panel quickly and gentle enough to use on clear coats, wraps, PPF, and ceramic coatings without much standoff drama. For most detailers, most of the time, it's the right call.

A 25° fan has a place too — wheels, lower rocker panels, undercarriage, engine bays, and other areas where you want a little more bite without going to a pressure washer setting that'd strip paint. Used at the right standoff, it's perfectly safe on automotive surfaces. We're working on a 25° tip now — keep an eye out.

Below 25°, things get more committed. 15° and 0° tips multiply impact pressure dramatically — they're built for stripping siding or cutting concrete, not for the $80,000 truck in your bay. We don't recommend those angles for vehicle work.

For soap application, a foam cannon does the job better than a 65° soap tip ever could — denser foam, longer cling, no chemical injector required.

The full breakdown — why orifice size is non-negotiable

The orifice is what creates pressure. Your pump produces flow. The tip restricts that flow into a small opening, and that restriction is what builds PSI. Without a properly sized tip, your machine doesn't make pressure — it just moves water.

An undersized tip will kill your pump. Too small an opening and water can't escape fast enough. Pressure climbs to your machine's max, the unloader cycles into bypass over and over, and seals start cooking. Run a too-small tip long enough and you'll be rebuilding the head.

An oversized tip drops cleaning power — but for paint, that's the point. A bigger orifice drops working pressure. For detailing, that's a feature, not a bug. Drop pressure to 1,000 PSI and you can wash a panel without watching the wax come off with the dirt.

Tips wear out. Even ceramic-insert nozzles erode. A worn orifice is a slightly larger orifice, which means slightly less pressure every time. If your machine isn't hitting like it used to, replace the tip before you replace the pump. They're cheap insurance.

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