1622 Ceramic Bearings is a full-ceramic deep-groove ball bearing. Its defined envelope includes 0.5625″ bore, 1.375″ outside diameter, and 0.4375″ width. The listed configuration includes single row construction and open enclosure. Its deep raceway geometry provides the familiar radial ball-bearing load path, with limited axial reaction depending on the installed arrangement.
Construction and Mechanical Function
Deep-groove raceways wrap around the balls to support radial force and, within the selected arrangement, a limited axial reaction. Shaft and housing alignment, installed clearance and ring fits influence load distribution, heat generation and the freedom of the rolling elements to circulate. For 1622 Ceramic Bearings, this behavior must be evaluated within the stated 0.5625″ bore, 1.375″ outside diameter, and 0.4375″ width envelope rather than separated from the surrounding shaft and housing geometry.
Within the 0.5625″ bore and 1.375″ outside-diameter interfaces, the stated load direction is Radial. The dimensions define the interfaces, but they do not alone establish interchangeability. Shoulder location, chamfers, seat geometry and available internal space should be checked with the mating design. For ceramic rolling contacts, avoiding local ring distortion and concentrated contact is especially important because the complete system must distribute load rather than rely on material labels as a substitute for correct support.
Component Materials and Contact Pair
The listed ring, rolling-element and cage materials are selectable configuration options rather than one confirmed combination. The materials must therefore be confirmed for the ordered configuration before their performance implications are applied.
For 1622 Ceramic Bearings, full-ceramic construction identifies ceramic rings and ceramic rolling elements, while the cage or retainer remains a separate component choice. Ceramic compounds can differ substantially in density, thermal expansion, conductivity, toughness and chemical response. The exact compounds must therefore remain component-specific facts, and the construction label alone does not establish a universal corrosion, insulation or temperature rating.
Performance Data in Application
The published performance data include dynamic radial rating 428 lbf and static radial rating 206 lbf. Dynamic and static ratings answer different questions: the dynamic value supports life calculations under rolling load, while the static value addresses permanent-deformation risk under heavy or stationary contact. Neither should be interpreted as a direct permissible machine load without the applicable life, safety and load-distribution calculation.
A listed speed value of 4 × 1,000 rpm provides a configuration-specific reference. The stated operating-temperature information is -176 to 500 °F. Speed and temperature interact through lubricant behavior, cage guidance, seal friction, fit and thermal expansion. A material comparison cannot replace those system checks.
Lubrication and Environmental Control
For 1622 Ceramic Bearings, the enclosure is listed as Open. Open construction relies on the surrounding machine for lubricant retention and contamination control. Seals or shields change that boundary, but no unlisted protection level or maintenance interval should be assumed.
The lubrication entry for 1622 Ceramic Bearings is Without. Lubricant type, quantity and replenishment should suit the actual speed, load, temperature and environment. Compatibility with cage, seal and ceramic/metal contact materials should be checked, particularly when changing from a previously qualified arrangement.
Shaft and Housing Integration
For 1622 Ceramic Bearings, bearing fits must control the loaded rings without imposing harmful distortion or eliminating necessary internal operating freedom. Mounting force should be applied through the ring being fitted, not transmitted through the rolling elements. Clean seats, square shoulders and controlled runout help preserve the intended contact geometry after installation.
The precision notation for 1622 Ceramic Bearings is ABEC-1. That designation should be retained as supplied and not converted to another standard without a validated equivalence. Seat form, shoulder runout, assembly cleanliness and clamping accuracy must be consistent with the required system precision.
Operating Integration
The configuration becomes an operating bearing only after fits, support, lubricant and temperature establish the installed condition. An interference fit can reduce internal clearance, while a temperature difference between shaft, rings and housing can change that condition further. These effects should be evaluated together with the stated material pair because ceramic and metallic components need not expand at the same rate.
Verification of 1622 Ceramic Bearings should follow the actual duty cycle rather than a single published value. Starting, steady running, transient load, shutdown and storage can impose different lubrication, contamination and thermal demands. The selected bearing should be checked for the governing load case, required life, available support stiffness and maintenance method, while preserving every configuration detail that materially affects the contact system.
Application and Selection Guidance
Selection of 1622 Ceramic Bearings should verify the complete dimensional envelope, load direction, component materials, enclosure, lubricant, precision or clearance, and the applicable load and speed data. The surrounding shaft, housing and thermal environment are part of the operating system; they determine whether the supported construction can maintain its intended contact and alignment.
1622 Ceramic Bearings may be considered in compact rotating equipment when its exact material, enclosure and operating configuration fit the duty. Application suitability follows from the complete specification and installation, not from the ceramic label alone.


