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ADC10DL065 Datasheet(PDF) 6 Page - Texas Instruments

Part # ADC10DL065
Description  Dual 10-Bit, 65 MSPS, 3.3V, 370mW A/D Converter
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

ADC10DL065 Datasheet(HTML) 6 Page - Texas Instruments

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ADC10DL065
SNAS314B – JUNE 2006 – REVISED APRIL 2013
www.ti.com
These devices have limited built-in ESD protection. The leads should be shorted together or the device placed in conductive foam
during storage or handling to prevent electrostatic damage to the MOS gates.
Absolute Maximum Ratings
(1) (2)
VA, VD, VDR
4.2V
|VA–VD|
≤ 100 mV
Voltage on Any Input or Output Pin
−0.3V to (VA or VD +0.3V)
Input Current at Any Pin(3)
±25 mA
Package Input Current(3)
±50 mA
Package Dissipation at TA = 25°C
See (4)
ESD Susceptibility
Human Body Model(5)
2500V
Machine Model(5)
250V
Soldering Temperature, Infrared, 10 sec.(6)
235°C
Storage Temperature
−65°C to +150°C
Soldering process must comply with TI's Reflow Temperature Profile specifications. Refer to www.ti.com/packaging.(6)
(1)
All voltages are measured with respect to GND = AGND = DGND = 0V, unless otherwise specified.
(2)
Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for
which the device is specified to be functional, but do not ensure specific performance limits. For ensured specifications and test
conditions, see the Electrical Characteristics. The ensured specifications apply only for the test conditions listed. Some performance
characteristics may degrade when the device is not operated under the listed test conditions. Operation of the device beyond the
maximum Operating Range is not recommended.
(3)
When the input voltage at any pin exceeds the power supplies (that is, VIN < AGND, or VIN > VA), the current at that pin should be
limited to 25 mA. The 50 mA maximum package input current rating limits the number of pins that can safely exceed the power supplies
with an input current of 25 mA to two.
(4)
The absolute maximum junction temperature (TJmax) for this device is 150°C. The maximum allowable power dissipation is dictated by
TJmax, the junction-to-ambient thermal resistance (θJA), and the ambient temperature, (TA), and can be calculated using the formula
PDMAX = (TJmax - TA )/θJA. In the 64-pin TQFP, θJA is 50°C/W, so PDMAX = 2 Watts at 25°C and 800 mW at the maximum operating
ambient temperature of 85°C. Note that the power consumption of this device under normal operation will typically be about 400 mW
(360 typical power consumption + 30 mW TTL output loading). The values for maximum power dissipation listed above will be reached
only when the device is operated in a severe fault condition (e.g. when input or output pins are driven beyond the power supply
voltages, or the power supply polarity is reversed). Obviously, such conditions should always be avoided.
(5)
Human body model is 100 pF capacitor discharged through a 1.5 k
Ω resistor. Machine model is 220 pF discharged through 0Ω.
(6)
Reflow Reflow temperature profiles are different for lead-free and non-lead-free packages.
Operating Ratings
(1) (2)
Operating Temperature
−40°C ≤ TA ≤ +85°C
Supply Voltage (VA, VD)
+3.0V to +3.6V
Output Driver Supply (VDR)
+2.4V to VD
CLK, PD, OEA, OEB
−0.05V to (VD + 0.05V)
Analog Input Pins
0V to 2.6V
VCM
0.5V to 2.0V
|AGND–DGND|
≤100mV
Clock Duty Cycle (DCS On)
20% to 80%
Clock Duty Cycle (DCS Off)
40% to 60%
(1)
Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for
which the device is specified to be functional, but do not ensure specific performance limits. For ensured specifications and test
conditions, see the Electrical Characteristics. The ensured specifications apply only for the test conditions listed. Some performance
characteristics may degrade when the device is not operated under the listed test conditions. Operation of the device beyond the
maximum Operating Range is not recommended.
(2)
All voltages are measured with respect to GND = AGND = DGND = 0V, unless otherwise specified.
6
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