Datenblatt-Suchmaschine für elektronische Bauteile |
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TC244A Datenblatt(PDF) 11 Page - Texas Instruments |
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TC244A Datenblatt(HTML) 11 Page - Texas Instruments |
11 / 19 page TC244A 786- × 488-PIXEL CCD IMAGE SENSOR SOCS056 – JUNE 1996 11 POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 electrical characteristics over recommended operating ranges of supply voltage and operating free-air temperature (unless otherwise noted) PARAMETER MIN TYP† MAX UNIT Dynamic range (see Note 2) Antiblooming disabled (see Note 3) 60 70 dB Charge-conversion factor 3.8 4 4.2 µV/e Charge-transfer efficiency (see Note 4) 0.99990 0.99995 1 Signal-response delay time, τ (see Note 5 and Figure 13) 18 20 22 ns Gamma (see Note 6) 0.97 0.98 0.99 Output resistance 700 800 Ω Noise voltage 1/f noise (5 kHz) 0.1 µV/√Hz Noise voltage Random noise (f = 100 kHz) 0.08 µV/√Hz Noise-equivalent signal 30 electrons ADB (see Note 7) 20 Rejection ratio at 4.77 MHz SRG1, SRG2, SRG3 (see Note 8) 40 dB ABG (see Note 9) 20 Supply current 5 mA IAG 6500 SRG1, SRG2, SRG3 68 Input capacitance, Ci ABG 2400 pF TRG 180 SAG 6800 † All typical values are at TA = 25 °C NOTES: 2. Dynamic range is – 20 times the logarithm of the mean-noise signal divided by the saturation-output signal. 3. For this test, the antiblooming gate must be biased at the intermediate level. 4. Charge-transfer efficiency is one minus the charge loss per transfer in the output register. The test is performed in the dark using an electrical-input signal. 5. Signal-response delay time is the time between the falling edge of the SRG clock pulse and the output-signal valid state. 6. Gamma ( γ) is the value of the exponent in the equation below for two points on the linear portion of the transfer-function curve (this value represents points near saturation): Exposure (2) Exposure (1) g + Output signal (2) Output signal (1) 7. ADB rejection ratio is – 20 times the logarithm of the ac amplitude at the output divided by the ac amplitude at ADB. 8. SRGn rejection ratio is – 20 times the logarithm of the ac amplitude at the output divided by the ac amplitude at SRGn. 9. ABG rejection ratio is – 20 times the logarithm of the ac amplitude at the output divided by the ac amplitude at ABG. |
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