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CDK1306CSO28 Datasheet(PDF) 9 Page - Cadeka Microcircuits LLC.

No. de pieza CDK1306CSO28
Descripción Electrónicos  10-bit, 40 MSPS 160mW A/D Converter
PDF  11 Pages
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Fabricante Electrónico  CADEKA [Cadeka Microcircuits LLC.]
Página de inicio  http://www.cadeka.com
Logo CADEKA - Cadeka Microcircuits LLC.

CDK1306CSO28 Datasheet(HTML) 9 Page - Cadeka Microcircuits LLC.

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©2008 CADEKA Microcircuits LLC
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9
Data Sheet
Figure 4. Ladder Force/Sense Circuit
Figure 5. Reference Ladder Circuit
Typically, the top side voltage drop for VRHF to VRHS will
equal:
VRHF – VRHS = 2.25 % of (VRHF – VRLF) (typical)
and the bottom side voltage drop for VRLS to VRLF will
equal:
VRLS – VRLF = 1.9 % of (VRHF – VRLF) (typical)
Figure 5 shows an example of expected voltage drops for
a specific case. VREF of 4.0V is applied to VRHF, and VRLF
is tied to AGND. A 90mV drop is seen at VRHS (= 3.91V),
and a 75mV increase is seen at VRLS (= 0.075V).
Analog Input
VIN is the analog input. The input voltage range is from
VRLS to VRHS (typically 4.0V) and will scale proportionally
with respect to the voltage reference. (See Voltage Refer-
ence section.)
The drive requirements for the analog inputs are very
minimal when compared to most other converters due to
the CDK1306 extremely low input capacitance of only 5pF
and very high input resistance of 50kΩ.
The analog input should be protected through a series
resistor and diode clamping circuit as shown in Figure 6.
Figure 6. Recommended Input Protection Circuit
Calibration
The CDK1306 uses an auto-calibration scheme to ensure
10-bit accuracy over time and temperature. Gain and
offset errors are continually adjusted to 10-bit accuracy
during device operation. This process is completely trans-
parent to the user.
Upon powerup, the CDK1306 begins its calibration
algorithm. In order to achieve the calibration accuracy
required, the offset and gain adjustment step size is a
fraction of a 10-bit LSB. Since the calibration algorithm
is an oversampling process, a minimum of 10,000 clock
cycles are required. This results in a minimum calibration
time upon powerup of 250μs (for a 40MHz clock). Once
calibrated, the CDK1306 remains calibrated over time and
temperature.
Since the calibration cycles are initiated on the rising edge
of the clock, the clock must be continuously applied for
the CDK1306 to remain in calibration.



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