Get free shipping on your order, with any water filter subscription. Find my filter

Open Hamburger Menu
Sears Parts Direct
Tips to find your model number

Coleman PM800 generator Parts

Here are the diagrams and repair parts for Coleman PM800 generator, as well as links to manuals and error code tables, if available.

Coleman PM800 generator
By Schematic
SELECT DIAGRAM
?

This is the number corresponding to the part on the diagram / schematic

Browse Parts for PM800 Generator

  • Bolt, Hex Head M5 X .8 X 45mm for Coleman PM800 - Part 04-7860

    Generator diagram

    Bolt, Hex Head M5 X .8 X 45mm

    Part #04-7860

    The manufacturer no longer makes this part, and there's no substitute part

  • Switch, Rocker 5a-250v, 10a-125v for Coleman PM800 - Part 04-7776

    Generator diagram

    Switch, Rocker 5a-250v, 10a-125v

    Part #04-7776

    The manufacturer no longer makes this part, and there's no substitute part

  • Bolt, Ah 1/4-20 X 1-1/2 (2) for Coleman PM800 - Part 03-5104

    Generator diagram

    Bolt, Ah 1/4-20 X 1-1/2 (2)

    Part #03-5104

    The manufacturer no longer makes this part, and there's no substitute part

  • Hose, 1/4 Id 4219 Rubber (7) for Coleman PM800 - Part 03-6574

    Generator diagram

    Hose, 1/4 Id 4219 Rubber (7)

    Part #03-6574

    The manufacturer no longer makes this part, and there's no substitute part

  • Washer, Base 1/4-20 Ark-plas (6) for Coleman PM800 - Part 04-7824

    Generator diagram

    Washer, Base 1/4-20 Ark-plas (6)

    Part #04-7824

    The manufacturer no longer makes this part, and there's no substitute part

  • Lug, Ground for Coleman PM800 - Part 00-8854

    Generator diagram

    Lug, Ground

    Part #00-8854

    The manufacturer no longer makes this part, and there's no substitute part

  • Bracket, Upper Shroud Pm800 for Coleman PM800 - Part 04-7843

    Generator diagram

    Bracket, Upper Shroud Pm800

    Part #04-7843

    The manufacturer no longer makes this part, and there's no substitute part

  • Washer, Flat 5/16 Pld (2) for Coleman PM800 - Part 00-0992

    Generator diagram

    Washer, Flat 5/16 Pld (2)

    Part #00-0992

    The manufacturer no longer makes this part, and there's no substitute part

  • Foot, Rubber No. 106-w (4) for Coleman PM800 - Part 04-7774

    Generator diagram

    Foot, Rubber No. 106-w (4)

    Part #04-7774

    The manufacturer no longer makes this part, and there's no substitute part

  • Muffler, Fa76 Kaw for Coleman PM800 - Part 04-7738

    Generator diagram

    Muffler, Fa76 Kaw

    Part #04-7738

    The manufacturer no longer makes this part, and there's no substitute part

Coleman Generator PM800 FAQs

An 800-watt class generator can typically run about 4 to 10 hours per tank, depending on the fuel tank size and how hard it’s working. For the Coleman PM800, runtime is mainly driven by load (watts used), fuel capacity, and engine condition; use a light load for the longest run time.

What changes the runtime the most

  • Load level: 25% to 50% load usually runs much longer than near 100% load.
  • Fuel tank size: Bigger tanks mean longer runtime at the same load.
  • Fuel quality and age: Old fuel can reduce efficiency and cause surging.
  • Altitude and temperature: Higher altitude and extreme heat reduce engine output and can increase fuel use.
  • Maintenance: A dirty air filter or worn spark plug can shorten runtime.

Typical runtime expectations (rule of thumb)

Load on the generator What it feels like Typical runtime per tank
Light (25% to 40%) A few small loads 7 to 12 hours
Medium (50% to 70%) Steady household basics 5 to 9 hours
Heavy (80% to 100%) Near max output 3 to 6 hours

How we recommend estimating your real runtime

  1. Add up the watts of what you’ll run (starting watts for motors matter).
  2. Aim to operate around 50% load for a practical balance of runtime and stability.
  3. Do a timed test: fill the tank, run your normal load, and record hours to refill.

Why it matters

Runtime is not just convenience; it helps prevent overloading, reduces nuisance shutdowns, and improves power quality for sensitive items like chargers, small tools, and electronics.

For more DIY electrical testing tips that help diagnose poor runtime or unstable output, use our guide: how to use a multimeter to test electrical parts video.

Last updated: February 2026

The Coleman PM800 generator uses a small 4-stroke gasoline engine; PM800 units are commonly found with a Kawasaki-built engine (often around the 80 cc class). The sure way to identify your exact engine is to read the engine ID tag on your specific PM800.

How to identify the exact engine on your PM800

Use the engine’s identification label, not the generator model number alone, when you need carburetor, ignition, or governor parts.

  • Find the data tag on the blower housing, recoil starter cover, or valve cover area
  • Write down the engine brand (often Kawasaki), plus any model, spec, and serial numbers
  • Take a clear photo of the tag before ordering parts
  • If the tag is missing, look for stamped numbers on the shroud or crankcase
  • Match tune-up parts to the engine ID (spark plug, air filter, carburetor, fuel line)

Typical PM800 output class (so you can sanity-check the unit)

Many PM800 generators are in the compact, low-wattage range. If your label shows a much higher rating, you may have a different Powermate model.

Spec on the label What you may see Why it matters
Running watts About 600 W Confirms you are working with the PM800 class
Surge/max watts About 800 W Helps size loads and diagnose “overload” complaints
Engine type 4-stroke Confirms separate crankcase oil (no fuel mixing)

Why it matters

The generator model number PM800 identifies the Coleman unit, but the engine ID determines the correct fuel-system and ignition parts. Using the engine tag prevents ordering the wrong carburetor or spark plug.

Helpful DIY check when diagnosing “no power”

If the engine runs but you have no AC output, basic electrical testing is the fastest next step.

Last updated: February 2026

On the Coleman PM800 generator, treat 800 watts as peak (surge) power, not an all-day running target. For steady use, plan around about 600 running watts and reserve extra capacity for startup surges from motors and compressors.

What you can run reliably (typical steady loads)

These are usually safe choices when your total stays near 600 running watts:

  • LED lights or a few lamps
  • Phone, tablet, and battery chargers
  • Laptop and small monitor
  • Wi-Fi router and modem
  • Small TV
  • Small box fan (check the label for watts)

Loads that often overload a small generator

These commonly exceed 600 running watts or have high startup surge:

  • Refrigerator or freezer (compressor surge)
  • Microwave, toaster oven, hot plate
  • Coffee maker, electric kettle
  • Space heater
  • Window AC or portable AC
  • Larger power tools (air compressor, table saw)

Quick planning table (typical ranges)

Item type Typical running watts Startup surge? Good fit on PM800?
LED lighting 5 to 100 No Yes
Laptop + charger 45 to 120 No Yes
Router/modem 10 to 30 No Yes
Box fan 40 to 120 Sometimes Usually
Refrigerator/freezer 100 to 300 Yes (often 3x to 7x) Sometimes (one at a time)
Microwave 900 to 1500 No No
Space heater 1000 to 1500 No No

How we recommend sizing your load

  • Add up running watts for everything you want on at the same time.
  • For anything with a motor/compressor, plan for surge watts at startup.
  • Keep a buffer; target 400 to 600 running watts for steadier voltage.
  • Plug in the largest load first, then add smaller loads one at a time.
  • If lights flicker, the engine bogs, or a breaker trips, reduce the load immediately.

Why it matters

Running above the generator’s steady capacity causes low voltage, nuisance breaker trips, and extra heat in motors and electronics. Staying near the PM800’s running limit gives more stable power and fewer shutdowns.

For checking actual draw, see how to use a multimeter to test electrical parts video.

Last updated: February 2026

Symptoms for gas ranges

Main causes: gas supply problem, faulty pressure regulator, clogs in burner or orifice, control system failure, faulty t…

Main causes: burner igniter switch failure, bad spark module, dirty or damaged spark electrode, wiring failure…

Repair guides for gas ranges

How to replace an oven temperature sensor on a gas range

How to replace an oven temperature sensor on a gas range

See how to replace an oven temperature sensor on a gas range.…

Repair time and Difficulty

 15 minutes or less
How to replace a range spark igniter electrode

How to replace a range spark igniter electrode

Learn how to replace the spark igniter electrode for the surface burners on a gas range or dual-fuel range.…

Repair time and Difficulty

 45 minutes or less
How to replace a gas range oven control board

How to replace a gas range oven control board

These step-by-step instructions explain how to replace an oven control board on a gas range…

Repair time and Difficulty

 15 minutes or less

Articles and videos for gas ranges

How to clean and maintain your stove

How to clean and maintain your stove

Learn how to clean and maintain your stove to keep it in top shape.…

Don't wait until the last minute to get your stove ready for the holidays

Don't wait until the last minute to get your stove ready for the holidays

Start now to get your stove ready for the holiday season…

How to clean grates and burners on a gas cooktop video

How to clean grates and burners on a gas cooktop video

Find out how to clean the grates and burners on your gas cooktop.…

Parts & More

Cooktop
Dryer
Garage Door Opener
Gas Range
Microwave
Parts
Range
Refrigerator
Sewing Machine
Side-By-Side Refrigerator
Top-Mount Refrigerator
Treadmill
Vhs Players & Vcrs
Washer
Wet/Dry Vacuum