A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta
A bearing in which an outer ring is formed from a thin steel plate by precision drawing, the raceway surface is surface-hardened, and then a needle-shaped roller and a retainer are assembled.[Features]・ It has the smallest cross-sectional height of any bearing with an outer ring, enabling space reduction and cost savings.・ Compact design is possible with the shaft directly as the raceway surface without using the inner ring.・ The outer ring has a structure in which the needle roller and the reta