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TC285SPD-B0 数据表(PDF) 10 Page - Texas Instruments

部件名 TC285SPD-B0
功能描述  Very Low Noise, Very High Sensitivity, Electronically Variable Charge Domain Gain
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制造商  TI1 [Texas Instruments]
网页  http://www.ti.com
标志 TI1 - Texas Instruments

TC285SPD-B0 数据表(HTML) 10 Page - Texas Instruments

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TC285SPD-B0
1004 x 1002 PIXEL IMPACTRONTM CCD IMAGE SENSOR
SOCS093 – JANUARY 2006
TEXAS
INSTRUMENTS
POST OFFICE BOX 655303 * DALLAS TEXAS 75265
10
Electrical characteristics over recommended operating ranges of supply
voltage at operating free-air temperature (unless otherwise noted)
PARAMETER
MIN TYP MAX
UNIT
Charge multiplication gain**
1
200
2000**
-
Excess noise factor for typical CCM gain (Note 3)
1
1.4
-
Dynamic range without CCM gain
66
dB
Dynamic range with typical CCM gain (Note 4)
72
dB
Charge conversion gain without CCM gain (Note 5)
14
uV/e
τ
Signal-response delay time (Note6)
16
ns
Output resistance(Note 7)
320
Amp. Noise-equivalent signal without CCM gain *
20
e
Amp. Noise-equivalent signal with typ. CCM gain *
1.0
e
Response linearity with no CCM gain
1
-
Response linearity with typ. CCM gain
1
-
Parallel transfer
0.99994
1.0
Charge-transfer efficiency
(Note 8)
Serial transfer
0.99994
1.0
-
Supply current without output bipolar transistor current
2.7
4
mA
IAG1
12.8
IAG2
13.5
IAG1-IAG2
6.8
SAG1
13.9
SAG2
14.5
SAG1-SAG2
7.78
nF
SRG1
86.0
SRG2
69.0
CMG
24.0
ODB
3,000
RST
10
FP
127
Ci
Input capacitance
VREFG
10
pF
All typical values are at Ta = 25 °C unless otherwise noted.
** Maximum CCM gain is not guaranteed.
*
The values in the table are quoted using CDS = Correlated Double Sampling. CDS is a signal
processing technique that improves performance by minimizing undesirable effects of reset noise.
Notes: 3. Excess Noise Factor “F” is defined as the ratio of noise sigma after multiplication divided by M
times the noise sigma before multiplication where M is the charge multiplication gain.
4. Dynamic Range is –20 times the logarithm of the noise sigma divided by the saturation–output
signal amplitude.
5. Charge conversion factor is defined as the ratio of output signal to input number of electrons.
6. Signal-response delay time is the time between the falling edge of the SRG1 pulse and the
output-signal valid state.
7. Since the output bipolar transistor is carried out to the package, output resistance cannot be
measured.


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