ROTARY CUTTER WITH SENSORIZED GEAR BOXES
A rotary cutter includes a gear box, a sensor coupled to the gear box and configured to measure a condition of the gear box, a light source coupled to the gear box, and processing circuitry communicatively coupled to the sensor and the light source. The processing circuitry is configured to cause the light source to illuminate at the gear box in response to determining that a measurement from the sensor satisfies a criterion.
1 . A rotary cutter, comprising:
a gear box;
a sensor coupled to the gear box and configured to measure a condition of the gear box;
a light source coupled to the gear box; and
processing circuitry communicatively coupled to the sensor and the light source, wherein the processing circuitry is configured to cause the light source to illuminate in response to determining that a measurement from the sensor satisfies a criterion.
2 . The rotary cutter of claim 1 , wherein the rotary cutter further comprises a blade coupled to an output of the gear box and a drive member coupled to an input of the gear box, wherein the gear box comprises gears configured to transfer rotation of the drive member to rotation of the blade.
3 . The rotary cutter of claim 1 , wherein the sensor is disposed inside the gear box.
4 . The rotary cutter of claim 1 , wherein:
the gear box comprises a cover;
the cover comprises a port;
the rotary cutter comprises a plug positioned in the port; and
the sensor is disposed on the plug such that the sensor is inside the gear box; and
the rotary cutter comprises a wire extending from the sensor, through the plug, and out of the gear box via the port.
5 . The rotary cutter of claim 1 , wherein:
the processing circuitry is physically spaced apart from the gear box;
the rotary cutter comprises a cable extending from the processing circuitry;
the rotary cutter comprises circuitry positioned at the gear box and configured to provide electrical connection between the cable, the sensor, and the light source.
6 . The rotary cutter of claim 1 , wherein the sensor is a temperature sensor and the criterion comprises a threshold temperature.
7 . The rotary cutter of claim 1 , wherein the sensor is an accelerometer and the criterion comprises a threshold vibration frequency or threshold vibration amplitude.
8 . The rotary cutter of claim 1 , wherein the light source is positioned on the gear box.
9 . The rotary cutter of claim 1 , further comprising:
an additional gear box; and
an additional light source positioned on the additional gear box;
wherein the processing circuitry is communicatively coupled to the additional light source.
10 . The rotary cutter of claim 1 , further comprising an additional sensor spaced apart from the gear box, wherein the additional sensor is configured to measure a condition of a portion of the rotary cutter other than the gear box.
11 . The rotary cutter of claim 10 , wherein the rotary cutter comprises a mower deck and the additional sensor is coupled to the mower deck.
12 . A method of operating a rotary cutter, comprising:
measuring, by a sensor disposed in a gear box of the rotary cutter, a condition of the gear box;
determining, by processing circuitry and based on a signal from the sensor, whether the condition satisfies a criterion;
causing, by the processing circuitry, a light source positioned at the gear box to illuminate in response to determining that the condition satisfies the criterion.
13 . The method of claim 12 , further comprising driving rotation of a blade coupled to an output of the gear box by providing rotational power via a drive member coupled to an input of the gear box and transforming, by gears of the gear box, the rotational power from the drive member into the rotation of the blade.
14 . The method of claim 12 , comprising transmitting the signal from the sensor to the processing circuitry via a wire extending from the sensor and through a plug positioned in a port of the gear box to the processing circuitry.
15 . The method of claim 12 , comprising transmitting the signal from the gear box to the processing circuitry with the processing circuitry spaced apart from the gear box.
16 . The method of claim 12 , wherein the condition is temperature and the criterion is a threshold temperature.
17 . The method of claim 12 , wherein the condition is vibration frequency or amplitude and the criterion is a threshold vibration frequency or threshold vibration amplitude.
18 . The method of claim 12 , further comprising measuring, by an additional sensor positioned on a mower deck of the rotary cutter, a condition of the mower deck and providing, from the additional sensor, a signal indicative of the condition of the mower deck to the processing circuitry.
19 . A gear box for a rotary cutter comprising:
walls defining an interior volume;
a cover coupled to the walls, the cover comprising a port;
a plug positioned in the port;
a sensor disposed on the plug such that the sensor is positioned in the interior volume; and
a wire extending from the sensor along the plug and out of the interior volume via the port.
20 . The gear box of claim 19 , further comprising a light source coupled to the cover.