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AD9048TE Arkusz danych(PDF) 3 Page - Analog Devices

Numer części AD9048TE
Szczegółowy opis  Monolithic 8-Bit Video A/D Converter
Download  8 Pages
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Producent  AD [Analog Devices]
Strona internetowa  http://www.analog.com
Logo AD - Analog Devices

AD9048TE Arkusz danych(HTML) 3 Page - Analog Devices

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Test
AD9048JJ/JQ
AD9048KJ/KQ
AD9048SE/SQ
AD9048TE/TQ
Parameter (Conditions)
Temp
Level
Min
Typ
Max
Min
Typ Max
Min
Typ Max
Min Typ Max
Units
AC LINEARITY
In-Band Harmonics
dc to 2.438 MHz15
+25
°C
I
47
50
49
55
47
50
49
55
dBc
dc to 9.35 MHz16
+25
°C
V
48
48
48
48
dBc
Signal-to-Noise Ratio (SNR)15
1.248 MHz Input Frequency17
+25
°C
I
43.5
44
45
46
43.5
44
45
46
dB
2.438 MHz Input Frequency17
+25
°C
I
43
44
44
46
43
44
44
46
dB
1.248 MHz Input Frequency18
+25
°C
I
52.5
53
54
55
52.5
53
54
55
dB
2.438 MHz Input Frequency18
+25
°C
I
52
53
53
55
52
53
53
55
dB
Signal-to-Noise Ratio (SNR)16
1.248 MHz Input Frequency17
+25
°C
I
43.5
44
45
46
43.5
44
45
46
dB
9.35 MHz Input Frequency17
+25
°C
V
40.5
40.5
40.5
40.5
dB
Noise Power Ratio (NPR)19
+25
°C
IV
36.5
39
36.5
39
36.5
39
36.5 39
dB
Differential Phase 20
+25
°C
IV
1
1
1
1
Degree
Differential Gain 20
+25
°CIV
2
2
2
2
%
DIGITAL OUTPUTS
Logic “1” Voltage
Full
VI
2.4
2.4
2.4
2.4
V
Logic “0” Voltage
Full
VI
0.5
0.5
0.5
0.5
V
Short Circuit Current5
Full
VI
30
30
30
30
mA
POWER SUPPLY
Positive Supply Current
+25
°C
I
34
56
34
56
34
56
34
56
mA
Full
VI
58
58
58
58
mA
Negative Supply Current
+25
°C
I
90
110
90
110
90
110
90
110
mA
Full
VI
120
120
120
120
mA
Nominal Power Dissipation
+25
°C
V
550
550
550
550
mW
Reference Ladder Dissipation
+25
°C
V
45
45
45
45
mW
NOTES
1Maximum ratings are limiting values to be applied individually, and beyond which
the serviceability of the device may be impaired. Functional operation under any of
these conditions is not necessarily implied. Exposure to absolute maximum rating
conditions for extended periods of time may affect device reliability.
2Applied voltage must be current-limited to specified range.
3Forcing voltage must be limited to specified range.
4Current is specified as negative when flowing into the device.
5Output High; one pin to ground; one second duration.
6Typical thermal impedances (no air flow) are as follows:
Ceramic DIP:
θ
JA = 49°C/W; θJC = 15°C/W LCC: θJA = 69°C/W; θJC = 21°C/W
JLCC:
θ
JA = 59°C/W; θJC = 19°C/W
To calculate junction temperature (TJ), use power dissipation (PD) and thermal
impedance: TJ = PD (θJA) + TAMBIENT = PD (θJC) = + TCASE.
7Measured with V
IN = 0 V and CONVERT low (sampling mode).
8Determined by beat frequency testing for no missing codes.
9V
RT ≥ VRB under all circumstances.
10Outputs terminated with 40 pF and eight 10
Ω pull-up resistors.
11Interval from 50% point of leading edge CONVERT pulse to change in output
data.
12For full-scale step input, 8-bit accuracy attained in specified time.
13Recovers to 8-bit accuracy in specified time after –3 V input overvoltage.
14Output time skew includes high-to-low and low-to-high transitions as well as
bit-to-bit time skew differences.
15Measured at 20 MHz encode rate with analog input 1 dB below full scale.
16Measured at 35 MHz encode rate with analog input 1 dB below full scale.
17RMS signal to rms noise.
18Peak signal to rms noise.
19DC to 8 MHz noise bandwidth with 1.248 MHz slot; four sigma loading;
20 MHz encode.
20Clock frequency = 4
× NTSC = 14.32 MHz. Measured with 40-IRE
modulated ramp.
Specifications subject to change without notice.
EXPLANATION OF TEST LEVELS
Test Level V
– Parameter is a typical value only.
Test Level VI – All devices are 100% production tested at
+25
°C. 100% production tested at tempera-
ture extremes for military temperature de-
vices; sample tested at temperature extremes
for commercial/industrial devices.
Test Level I
– 100% production tested.
Test Level II
– 100% production tested at +25
°C and
sample tested at specific temperatures.
Test Level III – Sample tested only.
Test Level IV – Parameter is guaranteed by design and
characterization testing.
AD9048
–3–
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