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TL1593CNS Scheda tecnica(PDF) 11 Page - Texas Instruments

Il numero della parte TL1593CNS
Spiegazioni elettronici  786-488-pixel ccd image sensor
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TC245
786-
× 488-PIXEL CCD IMAGE SENSOR
SOCS019A – DECEMBER 1991
2-11
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
electrical characteristics over recommended operating range of supply voltage, TA = –10°C to 45°C
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
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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