Edwin A. Montie
Philips
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Featured researches published by Edwin A. Montie.
Philips Journal of Research | 1996
T. S. Baller; G.G.P. van Gorkom; Nicolaas Lambert; Edwin A. Montie; P.H.F. Trompenaars; S.T. de Zwart
Abstract The construction of a Zeus panel is discussed. This type of panel has a relatively simple self-aligned construction with a limited number of different components. Due to the low number of connections, rather robust connectors can be used. The complete physical processing cycle, very important for this type of panel, can be as short as 3 h which is shorter than the processing of a standard CRT.
Philips Journal of Research | 1996
G.G.P. van Gorkom; T. S. Baller; P.A. Dessens; Nicolaas Lambert; Henricus Jozef Ligthart; Edwin A. Montie; G.E. Thomas; P.H.F. Trompenaars; S.T. de Zwart
Abstract It is shown that the overall performance of Zeus displays is quite good, as illustrated by photographs of operating panels displaying ‘CRT-quality’ TV pictures. Results of measurements of all relevant performance parameters are presented, as well as an analysis of these data in relation to the design and operation of the displays. Measurements of the luminance as a function of the screen current density and of the screen voltage of Zeus displays are reported. A white D65 luminance of 1000 Cd/m2 is obtained at a screen voltage of 4.5 kV and a screen current density of about 9 μA/cm2. The luminous efficacy of the phosphor screen in the panels is found to be 12 lm/W (in the absence of saturation) for white D65. The efficacy of a 17″ Zeus panel (including transport power dissipation, cathode heating power and addressing power) is about 4 lm/W. The factors determining the internal contrast and colour purity of Zeus panels are discussed. Experiments to determine the relevant contrast parameters are described as well as the results of direct measurements of the internal contrast, colour purity and colour selectivity. Internal contrast values of more than 1000 have been obtained, and a colour selectivity better than 700. The available colour gamut is close to that of CRTs. Preliminary measurements of the external contrast of 17″ panels with a black matrix and front glass with 50% optical transmission yield a contrast value of 60 at an ambient light level of 100 lux. The factors determining the picture uniformity in Zeus displays are discussed. Several panels with good uniformity have been realized. No artefacts associated with moving pictures occur, the only significant artefact is caused by charge transfer effects. The visibility of this effect can be sufficiently reduced by using suitable ‘flush’ pulses and by optimizing the geometry. The displays used for the performance measurements have a quincunx dot arrangement and dot pitches 0.5 × 0.6mm, giving PAL resolution on 28″ panels. Small experimental panels with pitches of 0.3 × 0.5 mm and 0.25 × 0.30 mm have been realized and operate satisfactorily. The viewing angle of Zeus displays is close to 180 degrees. Preliminary tests show that lifetimes well over 10,000 h are possible if the glass surfaces hit by electrons are covered with an MgO coating and if the blue phosphor is coated with a very thin calcium polyphosphate layer.
Philips Journal of Research | 1996
Nicolaas Lambert; Edwin A. Montie; T. S. Baller; G.G.P. van Gorkom; P.H.F. Trompenaars; S.T. de Zwart
Abstract In a Zeus display hopping electrons are transported through channels with extraction holes. If a sufficient transport field is applied, the electrons hop low and leakage through the holes is negligible. The electrons can be extracted from the channel by applying a positive voltage pulse to an extraction electrode. With sufficient pulse amplitude the extraction efficiency is 100 %, independent of small variations in material properties, which enables the creation of uniform images. Experiments on a model transport channel confirm the mechanisms behind transport and extraction.
Philips Journal of Research | 1996
Nicolaas Lambert; T. S. Baller; G.G.P. van Gorkom; Edwin A. Montie; P.H.F. Trompenaars; S.T. de Zwart
Abstract Although in a Zeus display a straightforward matrix addressing system can be constructed from just vertical electron-transport channels and horizontal row extraction electrodes, there are many unique advantages in adding extra selection plates. These are, e.g. cost reduction by a trade-off between electronics complexity and panel complexity, enhancement of internal contrast and, by choosing wider channels, reduction of transport voltage and improvement of triode performance. Several implications for the system design are discussed. Some subtle effects in the physics of selection switches are explained together with design rules for the selection plate geometry that avoid the associated image artefacts.
Philips Journal of Research | 1996
Edwin A. Montie; Edward Cosman; Nicolaas Lambert; P.H.F. Trompenaars
Abstract Power considerations lead to the choice of wire cathodes for the supply of current to the channels in a Zeus display panel. Each channel has its own triode, modulated by a separate G1 grid. Cathodes and other electrodes are in common use. The design of the triode is guided by the need for low modulation voltages, somewhat at the cost of mechanical tolerances and emission stability. The result is an integrated triode section that can supply 200 μA per triode, which is sufficient for a 40″ display, at 15 V modulation voltage. A dynamic control system ensures emission uniformity over all channels.
Archive | 1999
Warner ten Kate; Edwin A. Montie; Astrid M. F. Dobbelaar
Archive | 1999
Edwin A. Montie; Kate Warner R. T. Ten; Frank Uittenbogaard
international vacuum electron sources conference | 1997
G.G.P. van Gorkom; T. S. Baller; P.A. Dessens; Nicolaas Lambert; Henricus Jozef Ligthart; Edwin A. Montie; G.E. Thomas; P.H.F. Trompenaars; S.T. de Zwart
Archive | 1995
Edwin A. Montie; Alfred Ketting; Ronald van der Wilk
Archive | 2004
Ozcan Mesut; Edwin A. Montie; Peter Hidding; Antonius Ludovicus Johannes Cornelis Heijnen