Product Details
Bolt Style Wire Clamps for Solid Wire Controls
The best for less!
- Many applications: carb heat, cabin air, defrost controls, oxygen control and more
- Unique design to reduce wire stress
- Heat treated stainless steel for wear and corrosion resistance


| Part Number | A – Bolt Dia. (in) | B – Wrench Size (in) | C – Thick (in) | D – Grip Length (in) | E – Hole Position (in) | F – Shank Length (in) | G – Hole Dia. (in) | T – Thread | Application |
|---|---|---|---|---|---|---|---|---|---|
|
MCS2323-1 |
0.188 |
3/8 |
0.125 |
0.250 |
0.183 |
0.653 |
0.073 |
0-32 |
Carb heat, starter, mixture, cabin heat, fuel shutoff, strainer drain, defrost, shutter, wastegate, oxygen control, de-ice, heater, airbox, alternate air, flap/elevator, pressure air dump, heat exchanger |
|
MCS2323-2 |
0.250 |
7/16 |
0.156 |
0.312 |
0.325 |
0.781 |
0.073 |
1/4-28 |
Cabin heat, mixture, defrost, cabin heat |
|
MCS2323-3 |
0.250 |
7/16 |
0.156 |
0.188 |
0.199 |
0.539 |
0.073 |
1/4-28 |
Strainer drain, cowl flaps, carb heat, alternate air |
|
MCS2323-4 |
0.250 |
7/16 |
0.156 |
0.313 |
0.312 |
0.781 |
0.073 |
1/4-28 |
Mixture, flap indicator, flap guide, fuel shut-off |
|
MCS2323-5 |
0.188 |
3/8 |
0.125 |
0.125 |
0.188 |
0.531 |
0.073 |
10-32 |
Cabin air, carb heat, starter, airbox, defrost, flap, shutter, oxygen |
|
MCS2323-6 |
0.250 |
7/16 |
0.156 |
0.188 |
0.355 |
0.656 |
0.073 |
1/4-28 |
Mixture, hopper, induction |
|
MCS2323-7 |
0.188 |
3/8 |
0.125 |
0.250 |
0.192 |
0.656 |
0.076 |
10-32 |
Fuel shut-off, alternate air, flap elevator trim |
|
MCS2323-8 |
0.188 |
3/8 |
0.125 |
0.250 |
0.202 |
0.656 |
0.096 |
10-32 |
Fuel shut-off oxygen control |
|
MCS2323-9 |
0.250 |
7/16 |
0.156 |
0.438 |
0.343 |
0.906 |
0.129 |
1/4-28 |
Flap control, flap guide |
|
MCS2323-10 |
0.188 |
3/8 |
0.125 |
0.125 |
0.204 |
0.477 |
0.079 |
10-32 |
Fuel shut-off, heat exchanger |
|
MCS2323-11 |
0.188 |
3/8 |
0.125 |
0.250 |
0.266 |
0.656 |
0.076 |
10-32 |
Mixture, bleed air, fuel selector, flap/elevator |
|
MCS2323-12 |
0.250 |
7/16 |
0.156 |
0.188 |
0.357 |
0.656 |
0.073 |
1/4-28 |
Mixture, cabin heat, pressurization |
|
MCS2323-13 |
0.250 |
7/16 |
0.156 |
0.313 |
0.271 |
0.781 |
0.073 |
1/4-28 |
Mixture, alternate air, bleed air |
|
MCS2323-14 |
0.188 |
3/8 |
0.125 |
0.125 |
0.132 |
0.531 |
0.082 |
10-32 |
Cabin heat, cabin air |
|
MCS2323-19 |
0.188 |
3/8 |
0.125 |
0.125 |
0.200 |
0.531 |
0.094 |
10-32 |
Defroster |
Eligible Aircraft
| Make | Model | Start S/N | End S/N | Qty/Aircraft | Location | Eligibility Chart |
|---|---|---|---|---|---|---|
| Cessna | 172R | 17280001 | 17299999 | 1 | fuel shutoff | 6189 |
| Cessna | 172RG | 172RG0001 | 172RG1191 | 1 | carb heat | 6189 |
| Cessna | 172S | 172S8001 | 172S99999 | 1 | fuel shutoff | 6189 |
| Cessna | 310P | 310P0001 | 310P0240 | 2 | alternate air | 6189 |
| Cessna | 310Q | 310Q0001 | 310Q0204 | 2 | alternate air | 6189 |
| Cessna | 337G | 33701463 | 33701550 | 1 | flap/elevator trim | 6189 |
| Cessna | F337G | F3370056 | F33700063 | 1 | flap/elevator trim | 6189 |
| Cessna | FT337GP (FP337) | FP3370001 | FP3370008 | 1 | flap/elevator trim | 6189 |
| Cessna | T337G | P3370001 | P3370148 | 1 | flap/elevator trim | 6189 |
Part Number Information
Supersedes Part Numbers
0450311-7 (Textron, Inc.) | S2323-7 (Textron, Inc.)
Cross-reference information
Cross Reference Reference only: Please verify the product is eligible for your aircraft before adding to your cart. OEM Part Number McFarlane Part Number Comment 0450311-7 MCS2323-7 S2323-7 MCS2323-7
Additional product information
Approval: FAA PMA SupersedesPartNumber: 0450311-7 (Manufacturer: Textron, Inc.) SupersedesPartNumber: S2323-7 (Manufacturer: Textron, Inc.)
Frequently Asked Questions
Why is my new engine control too long/short?
There are several things that could be different such as engine/aircraft modifications, rigging/clocking of control arm or adjustment of rod end will be needed, placement of clamps or brackets may be different, or a previous installation change such as routing from original.
What is the minimum bend radius for my engine control?
McFarlane's Storage and Packaging Specification requires a specific packaging minimum radius based on the length of the control, type of wire used, and the configuration of the control end(s). Please contact us to determine the exact requirements for your specific control.
How do I trim my engine control to length?
Please reference the Installation Instructions included with your new control.
How do I clean and sanitize a McFarlane Push-Pull Control?
We make the following cleaning and sanitizing recommendations to be completed between flights: Recommended Cleaning Process 1. Put on clean disposable gloves prior to cleaning and disinfection. 2. Pull controls back to the fully retracted position to expose the full length of the control shafts. 3. Apply isopropyl alcohol to a clean microfiber towel. Do not spray any solution directly on the controls or any other surfaces or components in the aircraft. !!! WARNING: DO NOT USE BLEACH WIPES ON ANY MCFARLANE CONTROL !!! 4. Gently and thoroughly wipe down every control knob surface and control shaft. 5. Let cleaning solution dry on these surfaces (contact time). 6. Use a clean and dry microfiber cloth to wipe away any solution residue left on knob and control shaft surface. 7. Remove all gloves, towels, and cleaning supplies from the work area in the aircraft. Please contact McFarlane Sales directly at 866-920-2741 or 785-594-2741 or sales@mcfarlaneaviation.com if you have any additional questions regarding the disinfection of our controls.
How do I keep contaminants out of my fuel system?
The fuel selector valve works in unscreened fuel. Contaminated fuel can cause selector valve seal damage. When fueling from possibly contaminated fuel sources McFarlane recommends the use of a fuel filter, such as Mr. Funnel or another filtering device, to reduce trash in the fuel system.
What pressure is used to test the fuel selector valves after repairs?
We pressure test our repaired valves to a minimum of 5 psi using precision controlled air pressure and a calibrated low pressure indicator. This pressure is above the normal fuel pressure on the valve and below the limits of the springs in the valve. Each valve is submerged in Stoddard solvent while the air pressure is applied to the valve. The valves are then tested in each position to assure that there are no inter-port or external leaks. Leaks are detected by looking for air bubbles escaping from the valve.
How do I know when to replace or service my fuel selector valve?
The most common indication of external fuel valve leaks is the smell of avgas in the cabin. Most valves are located under the cabin floor. Fuel stain on the valve and drain plug or drain valve or on the belly of the aircraft can also indicate external leakage. External leaks are generally around the actuation valve stem. Internal leaks are detected when the fuel is turned off and fuel continues to drip during fuel system maintenance. Inner port leakage will allow fuel from one tank to leak into another fuel tank. This type leak is difficult to detect. Fuel transfer from one tank to another with the fuel valve selected to one tank only will indicate inner-port leakage. An extended period of time is needed to detect fuel transfer from one tank to another. Generally if internal leakage is detected when servicing the fuel system, it is likely there is also inner-port leakage.





