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AD9000SD Arkusz danych(PDF) 3 Page - Analog Devices

Numer części AD9000SD
Szczegółowy opis  High Speed 6-Bit A/D Converter
Download  8 Pages
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Producent  AD [Analog Devices]
Strona internetowa  http://www.analog.com
Logo AD - Analog Devices

AD9000SD Arkusz danych(HTML) 3 Page - Analog Devices

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ELECTRICAL CHARACTERISTICS
Commercial
Military
0 C to +70 C
–55 C to +125 C
AD9000JD
AD9000SD/SE
Parameter
Temp
Min
Typ
Max
Min
Typ
Max
Units
AC LINEARITY
11
Dynamic Linearity
12
+25
°C
0.5
0.5
LSB
In-Band Harmonics
(DC to l MHz)
+25
°C
44
44
dBc
(l MHz to 5 MHz)
+25
°C
42
42
dBc
(5 MHz to 8 MHz)
+25
°C
38
38
dBc
Signal-to-Noise Ratio
13
+25
°C
3133
3133
dB
Signal-to-Noise Ratio
14
+25
°C
4042
4042
dB
Two Tone Intermodulation Rejection
15
+25
°C
46
46
dBc
Noise Power Ratio (NPR)
16
+25
°C
30
30
dBc
DIGITAL OUTPUTS
5
Logic “l” Voltage
Full
–1.1
–1.1
V
Logic “0” Voltage
Full
–1 .5
–1.5
V
POWER SUPPLY17
Positive Supply Current (+5.0 V)
+25
°C60
70
60
70
mA
Full
75
75
mA
Negative Supply Current (–5.2 V)
+25
°C68
80
68
80
mA
Full
85
85
mA
Nominal Power Dissipation
+25
°C
675
675
mW
Reference Ladder Dissipation
+25
°C20
20
mW
AD9000
–3–
REV. A
(Continued)
NOTES
1 A
IN = +VREF.
2 Determined by 3 dB reduction in reconstructed output at 75 MSPS.
3 Under normal operating conditions, the analog input voltages should not
exceed nominal
±2 V operating range, nor the supply voltages (+V
S and –VS),
whichever is smaller.
4 Under normal operating conditions the differential reference voltage may
range from
±0.5 V to ±2 V; +V
REF ≥ –VREF.
5 Output terminated with 100
Ω resistors to –2.0 V.
6 Measured from the leading edge of ENCODE to data out on Bit 1 (MSB).
7 Measured from the trailing edge of ENCODE to data out on Bit 1 (MSB).
8 For full-scale step input, 6-bit accuracy is attained in specified time.
9 Recovers to 6-bit accuracy in specified time, after 150% full-scale input
overvoltage.
10 Measured on Bit 1 (MSB) only.
11 Measured at 50 MSPS encode rate.
12 Analog input frequency = 15 MHz.
13 RMS signal to RMS noise, with 540 kHz analog input signal.
14 Peak-to-peak signal to rms noise, with 540 kHz analog input signal.
15 f
1 = 9.3 MHz, f2 = 7.6 MHz; Encode = 42 MHz.
16 DC to 8.2 MHz noise bandwidth with 3.886 MHz slot.
17 Supply voltage should remain stable within
± 5% for normal operation.
Specifications subject to change without notice.
ABSOLUTE MAXIMUM RATINGS
1
Positive Supply Voltage . . . . . . . . . . . . . . . . . . . 0.3 V to +6 V
Negative Supply Voltage . . . . . . . . . . . . . . . . . 6.0 V to +0.3 V
Analog-to-Digital Ground Voltage Differential . . . . . . . . . 0.5
Analog Input Voltages (AIN, +VREF, –VREF)
2
. . . . . . . . . . +3 V
Differential Reference Voltage (+VREF to –VREF)
3
. . . . . . . 6 V
ENCODE Input Voltage . . . . . . . . . . . . . . . . . . . . – VS to 0 V
HYSTERESIS Control Voltage . . . . . . . . . . . . 0 V to + 3.0 V
Digital Output Current . . . . . . . . . . . . . . . . . . . . . . . . 20 mA
Power Dissipation (+25
°C Free Air)4 . . . . . . . . . . . . 745 mW
Operating Temperature Range
AD9000JD . . . . . . . . . . . . . . . . . . . . . . . . . . . . 0
°C to +70°C
AD9000SD/SE . . . . . . . . . . . . . . . . . . . . . . –55
°C to +125°C
Storage Temperature Range . . . . . . . . . . . . –65
°C to +150°C
Junction Temperature . . . . . . . . . . . . . . . . . . . . . . . . +175
°C
Lead Soldering Temperature (10 sec) . . . . . . . . . . . . +300
°C
NOTES
1Absolute maximum ratings are limiting values, to be applied individually, and
beyond which serviceability of the circuit may be impaired. Functional oper-
ability under any of these conditions is not necessarily implied. Exposure to
absolute maximum rating conditions for extended periods may affect device
reliability.
2Under normal operating conditions, the analog input voltages should not
exceed nominal +2 V operating range, nor the supply voltages (+VS and –VS),
whichever is smaller.
3Under normal operating conditions the differential reference voltage may range
from
± 0.5 V to ±2 V; +V
REF
≥ –V
REF.
4Typical thermal impedances . . .
16-Pin Ceramic
θ
JA = 67
°C/W; θ
JC = 7
°C/W
28-Pin LCC
θ
JA = 62
°C/W; θ
JC = 14
°C/W


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