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10mm Bore Inner Ball Mounted Pillow Block Insert Bearing KP000

1 Review
Availability: In stock
SKU: 52357


  1. Material: Zinc Alloy
  2. Model: KP000
  3. Bore Diameter: 10mm
  4. Total Size: Approx. 67x18x35 (LxWxH) mm
  5. Mounting Hole Diameter: 7 mm


(inc GST)

₹ 161.02 (+18% GST extra)

In stock

Purchase this product now and earn 2 Robu Points!

The 10mm Bore Inner Ball Mounted Pillow Block Insert Bearing KP000 comes with top set screws which makes the inner ring of the bearing fix on the shaft. It is very convenient to install. There is a certain self-aligning ability for the bearing, so it can be mounted on a general accuracy rack.

Well-adapted and widely used. Two-bolt housing with ball bearing insert for ready-to-mount installation. Setscrew locking collar for secure attachment to the guided shaft. Between the inner bearing and outer fixing ring angle can fine tune.

Features :

  1. Durable with high precision
  2. Can withstand great weight
  3. The angle between the inner bearing and the outer fixing ring is adjustable
  4. Easy to install

Package Includes :

1 x 10mm Bore Inner Ball Mounted Pillow Block Insert Bearing KP000




Zinc Alloy

Bore Diameter (B)

10 mm

Length (mm)


Width (mm)


Height (mm)


Weight (gm)


Shipment Weight

0.060 kg

Shipment Dimensions

8 x 6 x 4 cm

15 Days Warranty

This item is covered with a standard warranty of 15 days from the time of delivery against manufacturing defects only. This warranty is given for the benefit of Robu customers from any kind of manufacturing defects.  Reimbursement or replacement will be done against manufacturing defects.

What voids warranty:

If the product is subject to misuse, tampering, static discharge, accident, water or fire damage, use of chemicals & soldered or altered in any way.

1 review for 10mm Bore Inner Ball Mounted Pillow Block Insert Bearing KP000

  1. Rated 4 out of 5

    MANU (verified owner)

    I actually bought it, thinking have enough precision as of the industry standard bearings. But the bearing was having a ‘Yaw’, and it seems to be in between the bearing outer race and housing, I could not use it for my purpose (it demands some level of precision), think it can be resolved if two such bearings are used, but it cannot be done in my case.

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