Test
Lanthanum hexaboride (LaB6) and cerium hexaboride (CeB6) cathodes are ideal for many small spot size applications such as SEM, TEM, surface analysis and metrology, and for high current applications such as microwave tubes, lithography, electron-beam welders, X-ray sources and free electron lasers. Greater brightness from low work function yielding higher currents at lower temps than tungsten.
Type: CEBIX (CeB6)
Angle: 90°
Tips: 16 mm
Lanthanum hexaboride (LaB6) and cerium hexaboride (CeB6) cathodes are ideal for many small spot size applications such as SEM, TEM, surface analysis and metrology, and for high current applications such as microwave tubes, lithography, electron-beam welders, X-ray sources and free electron lasers. Greater brightness from low work function yielding higher currents at lower temps than tungsten. Cambridge SMVM base.
Type: CEBIX (CeB6)
Angle: 90°
Tips: 16 mm
Lanthanum hexaboride (LaB6) and cerium hexaboride (CeB6) cathodes are ideal for many small spot size applications such as SEM, TEM, surface analysis and metrology, and for high current applications such as microwave tubes, lithography, electron-beam welders, X-ray sources and free electron lasers. Greater brightness from low work function yielding higher currents at lower temps than tungsten. Philips base.
Type: CEBIX (CeB6)
Angle: 90°
Tips: 16 mm
Sometimes referred to as 'braid', carbon fibre consists of eight separate strands of individual carbon fibre braided together. The fibre is manufactured so that, when cut, the ends resist unravelling. The fibre density is about 1.6g/m. Carbon Fibre fine strands are convenient to use and result in thin to medium coating using a single strand or several lengths.
Lanthanum hexaboride (LaB6) and cerium hexaboride (CeB6) cathodes are ideal for many small spot size applications such as SEM, TEM, surface analysis and metrology, and for high current applications such as microwave tubes, lithography, electron-beam welders, X-ray sources and free electron lasers. Greater brightness from low work function yielding higher currents at lower temps than tungsten.
Type: CEBIX (CeB6)
Angle: 90°
Tips: 20 mm
Type: non-shunted
Lanthanum hexaboride (LaB6) and cerium hexaboride (CeB6) cathodes are ideal for many small spot size applications such as SEM, TEM, surface analysis and metrology, and for high current applications such as microwave tubes, lithography, electron-beam welders, X-ray sources and free electron lasers. Greater brightness from low work function yielding higher currents at lower temps than tungsten.
Type: CEBIX (CeB6)
Angle: 90°
Tips: 16 mm
Type: non-shunted
Lanthanum hexaboride (LaB6) and cerium hexaboride (CeB6) cathodes are ideal for many small spot size applications such as SEM, TEM, surface analysis and metrology, and for high current applications such as microwave tubes, lithography, electron-beam welders, X-ray sources and free electron lasers. Greater brightness from low work function yielding higher currents at lower temps than tungsten.
Type: CEBIX (CeB6)
Angle: 90°
Tips: 16 mm
Lanthanum hexaboride (LaB6) and cerium hexaboride (CeB6) cathodes are ideal for many small spot size applications such as SEM, TEM, surface analysis and metrology, and for high current applications such as microwave tubes, lithography, electron-beam welders, X-ray sources and free electron lasers. Greater brightness from low work function yielding higher currents at lower temps than tungsten.
Type: CEBIX (CeB6)
Angle: 90°
Tips: 16 mm
Type: non-shunted