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FTF3020-C/TG Datasheet(PDF) 8 Page - NXP Semiconductors |
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FTF3020-C/TG Datasheet(HTML) 8 Page - NXP Semiconductors |
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8 / 16 page ![]() 1999 November 8 Philips Semiconductors Product specification Full Frame CCD Image Sensor FTF3020-C 0 2,000 4,000 6,000 8,000 10,000 12,000 14,000 0 5 10 15 20 25 30 35 40 Performance The test conditions for the performance characteristics are as follows: • All values are measured using typical operating conditions. • VNS is adjusted as low as possible while maintaining proper Vertical Anti-Blooming. • Sensor temperature = 60°C (333K). • Horizontal transport frequency = 18MHz. • Vertical transport frequency = 50kHz (unless specified otherwise). 1 Linear dynamic range is defined as the ratio of Q lin to read-out noise (the latter reduced by Correlated Double Sampling). 2 Charge Transfer Efficiency values are tested by evaluation and expressed as the value per gate transfer. 3 Low Pass Shading is defined as the ratio of the one- σ value of an 8x8 pixels blurred image (low-pass) to the mean signal value. 4 RNU is defined as the ratio of the one- σ value of the highpass image to the mean signal value at nominal light. • Integration time = 10ms (unless specified otherwise). • The light source is a lamp of 3200K in conjunction with neutral density filters and a 1.7mm thick BG40 infrared cut-off filter. For Linear Operation measurements, a temperature conversion filter (Melles Griot type no. 03FCG261, -120 mired, thickness: 2.5mm) is applied. Figure 6 - Typical Linear dynamic range vs. horizontal read-out frequency and sensor temperature Hor. Frequency (MHz) Linear Dynamic Range 35°C 45°C 55°C LINEAR OPERATION MIN. TYPICAL MAX. UNIT Linear dynamic range 1 Charge Transfer Efficiency 2 vertical Charge Transfer Efficiency 2 horizontal Image lag Resolution (MTF) @ 42 lp/mm Responsivity Quantum efficiency @ 530 nm Low Pass Shading 3 Random Non-Uniformity (RNU) 4 VNS required for good Vertical Anti-Blooming (VAB) Power dissipation at 2.5 frames/s 4200:1(12bit) 65 60 20 18 0.999995 0.999999 70 26 2.0 0.3 24 610 0 5 5 28 % % kel/lux·s % % % V mW |
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