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Modes and Applications
Frequency
Nom: 50KHz
Spring Const.
Nom: 225N/m
Geometry
Rectangular
Tip Radius
40nmMaterial
Stainless Steel
Frequency
Nom: 0KHz
Spring Const.
Nom: 0N/m
Geometry
Thermal
Tip Radius
<30nmMaterial
Silicon
Frequency
Nom: 320KHz
Spring Const.
Nom: 42N/m
Geometry
Rectangular
Tip Radius
10nmMaterial
0.01 - 0.025 Ωcm Antimony (n) doped SiCoating
B: Reflective Aluminum
Frequency
Nom: 0KHz
Spring Const.
Nom: 0N/m
Geometry
Thermal
Tip Radius
<30nmMaterial
Silicon
Frequency
Nom: 320KHz
Spring Const.
Nom: 42N/m
Geometry
Rectangular
Tip Radius
10nmMaterial
0.01 - 0.025 Ωcm Antimony (n) doped SiCoating
B: Reflective Aluminum
Frequency
Nom: 78KHz
Spring Const.
Nom: 2.5N/m
Geometry
Thermal
Tip Radius
<30nmMaterial
Silicon
Frequency
Nom: 350KHz
Spring Const.
Nom: 35N/m
Geometry
RectangularMaterial
0.01 - 0.02 Ωcm Antimony (n) doped SiCoating
B: 40 ± 10nm of Al
Frequency
Nom: 350KHz
Spring Const.
Nom: 35N/m
Geometry
RectangularMaterial
0.01 - 0.02 Ωcm Antimony (n) doped SiCoating
CarbonB: Reflective Aluminum
Frequency
Nom: 75KHz
Spring Const.
Nom: 2.8N/m
Tip Radius
40nmMaterial
Side-coating of 35 nm NiCo and a backside reflex coating of AlCoating
B: Al
CALL TO ORDER
Frequency
Nom: 75KHz
Spring Const.
Nom: 2.8N/m
Tip Radius
40nmMaterial
Side-coating of 20 nm NiCo and a backside reflex coating of AlCoating
B: Al
CALL TO ORDER
Frequency
Nom: 75KHz
Spring Const.
Nom: 2.8N/m
Tip Radius
40nmMaterial
Side-coating of 10 nm NiCo and a backside reflex coating of AlCoating
B: Al
CALL TO ORDER
Frequency
Nom: 75KHz
Spring Const.
Nom: 2.8N/m
Tip Radius
40nmMaterial
Side coating of 35 nm Ni and an Al backside reflex coating.Coating
B: Al
CALL TO ORDER
Frequency
Nom: 75KHz
Spring Const.
Nom: 2.8N/m
Tip Radius
40nmMaterial
Side-coating of 20 nm NiCo and a backside reflex coating of AlCoating
B: Al
CALL TO ORDER
Frequency
Nom: 67KHz
Spring Const.
Nom: 0.32N/m
Geometry
A - Triangular
Tip Radius
40nm
CALL TO ORDER
CALL TO ORDER