CS5524-ASZ Cirrus Logic Inc, CS5524-ASZ Datasheet - Page 33

IC ADC 24BIT 4CH 20SSOP

CS5524-ASZ

Manufacturer Part Number
CS5524-ASZ
Description
IC ADC 24BIT 4CH 20SSOP
Manufacturer
Cirrus Logic Inc
Datasheets

Specifications of CS5524-ASZ

Number Of Converters
1
Package / Case
24-SSOP
Number Of Bits
24
Data Interface
Serial
Power Dissipation (max)
14.8mW
Voltage Supply Source
Analog and Digital
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Number Of Adc Inputs
4
Architecture
Delta-Sigma
Conversion Rate
617 SPs
Resolution
24 bit
Input Type
Voltage
Interface Type
Serial (3-Wire)
Voltage Reference
2.5 V
Supply Voltage (max)
5 V
Supply Voltage (min)
25 mV
Maximum Power Dissipation
500 mW
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Input Voltage
25 mV to 5 V
Minimum Operating Temperature
- 40 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
598-1012 - EVAL BOARD FOR CS5524 ADC
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
598-1106-5

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
CS5524-ASZ
Manufacturer:
CIRRUS
Quantity:
20 000
perform a system gain calibration. In either case,
the calibration signals must be within the specified
calibration limits for each specific calibration step
(refer to the ‘System Calibration Specifications’ in
ANALOG CHARACTERISTICS). If a system gain
calibration is performed the following conditions
must be met:
1) Full-scale input must not saturate the 20X in-
DS317F4
Full Scale + -
Full Scale + -
Figure 15. System Calibration of Offset (High Ranges)
Figure 17. System Calibration of Gain (High Ranges)
Figure 16. System Calibration of Gain (Low Ranges)
CM + -
0V
strumentation amplifier, if the calibration is on
an input range where the instrumentation am-
plifier is involved.
CM + -
CM + -
External
Connections
+
-
External
Connections
External
Connections
AIN-
AIN+
AIN+
AIN-
AIN+
AIN-
+
-
+
-
+
-
X20
X20
X20
+
-
+
-
+
-
2) The 1’s density of the modulator must not be
3) The input must not be so small, relative to the
The converter’s input ranges were chosen to guar-
antee gain calibration accuracy to 1 LSB
LSB
This is useful when a user wants to manually scale
the full-scale range of the converter and maintain
accuracy. For example, if a gain calibration is per-
formed with a 2.5 V full-scale voltage and a 1.25 V
input range is desired, the user can read the con-
tents of the gain register, shift the register contents
left by 1 bit, and then write the result back to the
gain register. This multiples the gain by 2.
Assuming a system can provide two known voltag-
es, the following equations allow the user to manu-
ally compute the calibration register’s values based
on two uncalibrated conversions (see note). The
offset and gain calibration registers are used to ad-
just a typical conversion as follows:
Calibration can be performed using the following
equations:
Note: Uncalibrated conversions imply that the gain and off-
greater than 80 percent (the input to the ∆Σ
modulator must not exceed the maximum input
which Table 1 specifies).
range chosen, that the resulting gain register’s
content,
3.9999998 (see the discussion of operating lim-
its on input span under the Analog Input and
Limitations in Calibration Range sections).
This requires the full-scale input voltage to the
modulator to be at least 25 percent of the nom-
inal value.
24
set registers are at default {gain register = 0x400000
(Hex) and offset register = 0x000000 (Hex)}.
when system gain calibration is performed.
where G = (Rc1 - Rc0)/(Ru1-Ru0).
Rc = (Ru + Co) * Cg / 2
decoded
Co = (Rc0/G - Ru0)
Cg = 2
CS5521/22/23/24/28
22
in
* G
decimal,
22
.
16
exceeds
or 16
33

Related parts for CS5524-ASZ