Pressure Limits: The Two Magic Numbers#
Two numbers govern every FRC pneumatic system, found in the Game Manual's Robot Construction (R) rules:
- Maximum stored pressure: 120.0 psi (~827 kPa / 8.2 Bar), set by R807. No off-board or pre-pressurized storage is allowed — air comes only from your onboard compressor.
- Maximum working pressure: 60.0 psi (R808), delivered through a single primary adjustable, relieving regulator. You may add more regulators downstream of the primary, but never raise pressure above 60 psi on the working side.
The compressor must stop automatically at ~120 psi or less under controller (roboRIO) control, and a mechanical relief valve is the independent backstop.
Only Permitted, COTS Parts#
A central rule (R802): every pneumatic part must be commercial off-the-shelf (COTS) — you may not fabricate your own pressure vessels or valves — and rated by its manufacturer for at least 125 psi anywhere in the system, or at least 70 psi if installed strictly downstream of the primary regulator.
Permitted Devices (R804)#
The permitted-device list (R804 in the 2026 manual) includes: pressure vent plug valves; pressure relief valves; solenoid valves (1/8 in NPT max port); tubing (1/4 in OD max); pressure transducers, gauges, passive needle valves, manifolds, and fittings; check and quick-exhaust valves; shutoff valves; pressure regulators (60 psi max outlet); pneumatic cylinders and rotary actuators; pneumatic storage tanks; one compliant compressor; debris/water filters; and venturi/vacuum-generating valves.
Compressor and Modification Limits#
The compressor flow rate must not exceed 1.1 cfm nominal at 12VDC at any pressure (R806). Pneumatic components generally may not be modified (R803), with narrow exceptions: cutting tubing, integrating wiring/controls, normal assembly and connection, removing mounting pins from cylinders, and labeling.
High-Pressure Circuit Restriction (R809)#
The high-pressure side (upstream of the regulator) is restricted by R809 to: the compressor, relief valve, pressure switch, vent plug, gauge, storage tank(s), tubing, transducers, filters, and fittings — and nothing else. Solenoids and cylinders must live downstream of the regulator.
Always Check the Current Manual#
Rule numbers and exact wording change yearly. The Pneumatics Manual explicitly says it does not supersede the Game Manual — verify every rule against the current season's Game Manual before competition.
the part worth keeping
Key takeaways
- Stored pressure max is 120 psi (R807); working pressure max is 60 psi through a single primary adjustable, relieving regulator (R808).
- Only COTS pneumatic parts are legal (R802), rated for 125+ psi anywhere or 70+ psi downstream of the regulator; R804 lists the permitted devices.
- Compressor flow must not exceed 1.1 cfm nominal at 12VDC (R806), and air may come only from the onboard compressor.
- Components generally cannot be modified except for narrow allowances (R803); always re-verify rule numbers against the current Game Manual.
Mechanical, Build & PneumaticsSafety, Rules, and Testinglesson 1 of 3
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Sources and corrections
This lesson is AI-assisted: drafted from primary sources, then reviewed and edited by hand. Errors still get through. When one is reported we fix it and write down what changed, in public, in the corrections log.
sources and further reading
- frcmanual.com2026 FRC Game Manual - Robot Construction Rules (R)
- firstfrc.blob.core.windows.net2026 FRC Inspection Checklist (PDF)
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answer sheet
Lesson quiz
All 3 right completes the lesson. Miss one and only that question comes back, anything you already answered correctly stays banked.
0 of 3 answered
01Under FRC rules, what is the maximum allowed stored (main) pressure anywhere in a robot's pneumatic system?
02What is the maximum working pressure that may be delivered to the pneumatic actuators on an FRC robot?
03What is the role of the primary pressure regulator in an FRC pneumatic system?
Answer every question to submit.
All 47 lessons in Mechanical, Build & Pneumaticsopenclose
01 / prerequisites
02 / drivetrains
03 / power-transmission
04 / structure-materials-fasteners
05 / mechanisms-fabrication-assembly
06 / pneumatics-fundamentals
07 / pneumatic-components
08 / build-wire-program
09 / safety-rules-testing
10 / worked-examples-mini-projects
- Not read yet:Mini-Project 1: A Single-Jointed Arm From Math to Motion
- Not read yet:Mini-Project 2: A Two-Stage Cascade Elevator
- Not read yet:Mini-Project 3: A Velocity-Controlled Flywheel Shooter
- Not read yet:Mini-Project 4: A Pivoting Roller Intake
- Not read yet:Mini-Project 5: Integrating a COTS Swerve Module
11 / common-mistakes-troubleshooting
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- Not read yet:Closed-Loop Mechanisms That Oscillate, Sag, or Stall
- Not read yet:Field-Ready Reliability: Inspection, Spares, and the Pit Checklist
12 / advanced-techniques-case-studies
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- Not read yet:Designing for Weight, Stiffness, and Manufacturability
- Not read yet:Case Studies: Learning From Open Alliance Robots