Seed delivery apparatus, systems, and methods
A seed delivery apparatus and methods in which a seed conveyor delivers seed from a metering device to a furrow in a controlled manner to maintain seed placement accuracy within the furrow.
1. A seed delivery apparatus to deliver seeds to a planting surface, comprising:
a seed meter configured to entrain and release the seeds from a seed disc at a seed release location;
a seed conveyor disposed to receive the released seeds from said seed disc at an upper end of said seed conveyor, said seed conveyor including:
a housing having an inner wall; and
a belt rotatable within said housing for moving said released seeds from said upper end to a lower end of said seed conveyor;
agitation elements disposed on said inner wall at said upper end, said agitation elements sized to agitate said released seeds entering said seed conveyor so that said released seeds do not become trapped between said inner wall and said rotating belt and are moved by said belt to said lower end of said seed conveyor.
2. The seed delivery apparatus of claim 1 , wherein said agitation elements comprise ribbing.
3. The seed delivery apparatus of claim 1 , wherein said agitation elements are removably attachable to said inner wall.
4. The seed delivery apparatus of claim 1 , wherein said belt includes a plurality of flights spaced along said seed conveyor, wherein adjacent ones of said plurality of flights define a flight gap therebetween, wherein said agitation elements agitate and move said released seeds into said flight gap.
5. The seed delivery apparatus of claim 1 , further comprising:
a seed sensor disposed to detect said released seeds being moved by said belt from said upper end to said lower end.
6. The seed delivery apparatus of claim 5 , wherein said conveyor housing further includes a first sidewall and a second sidewall each disposed laterally adjacent to said inner wall of said housing, wherein said first sidewall has a first sensor opening and said second sidewall has a second sensor opening substantially laterally aligned with said first sensor opening; wherein said seed sensor includes an optical transmitter and an optical receiver, said optical transmitter transmitting an optical signal through said first sensor opening toward said second sensor opening and transverse to a direction of rotation of said belt, said optical receiver receiving said optical signal from said first optical transmitter.