Spatial Uniformity
Source: Tom's Guide US | Keywords: the, spring, 2006, lcd, collection
- 1. 19" LCDs: The Spring Collection
- 2. Design
- 3. Spatial Uniformity
- 4. Overshoot
- 5. BenQ FP91V
- 6. BenQ FP91V: Ho-Hum
- 7. Spatial Uniformity
- 8. Overshoot
- 9. Hyundai Q90U
- 10. Hyundai Q90U's Pitfalls
- 11. Spatial Uniformity
- 12. Overshoot
- 13. NEC 1980Fxi
- 14. NEC 1980Fxi: Real Class
- 15. Spatial Uniformity
- 16. Overshoot
- 17. NEC 90GX2
- 18. The NEC 90GX2' Taste Filters
- 19. Spatial Uniformity
- 20. Overshoot
- 21. Samsung 960BF
- 22. Samsung 960BF: Hand-Crafting
- 23. Spatial Uniformity
- 24. Overshoot
- 25. Samsung 970P
- 26. One Word About The Samsung 970P: Remarkable
- 27. Spatial Uniformity
- 28. Overshoot
- 29. Sony MFM-HT95
- 30. Sony MFM-HT95: Slightly Cold Colors
- 31. Spatial Uniformity
- 32. Overshoot
- 33. ViewSonic VX922
- 34. ViewSonic VX922: Respectable Colors
- 35. Spatial Uniformity
- 36. Overshoot
- 37. ViewSonic VP930
- 38. ViewSonic VP930: Color Fidelity, As Promised
- 39. Spatial Uniformity
- 40. Overshoot
- 41. Xerox Xa7-192i
- 42. Xerox Xa7-192i: A Static Monitor
- 43. Spatial Uniformity
- 44. Overshoot
- 45. Conclusion
7. Spatial Uniformity

You can see two light leaks in the corners. They were also visible when screening movies.
Despite the disappearance of the filter, the static qualities of the FP91V weren't any better.
BenQ FP91V: No Better, No Worse
You can't fool the sensor. Our test shows the FP91V is not really any better than the FP01V+ despite a claimed gain in latency of 2 ms. The panel is made by AU Optronics - an AU190 ACAL V5.

What you can see most of all is that the monitor lacks precision, which explains the latency peak in the neighborhood of code 150 on this graph. When the transition was of moderate amplitude (black -> gray), it took at least two frames to achieve the desired level.
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