AS1528-BTDT austriamicrosystems, AS1528-BTDT Datasheet - Page 12

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AS1528-BTDT

Manufacturer Part Number
AS1528-BTDT
Description
IC ADC 10BIT 1CH 150K 8-TDFN
Manufacturer
austriamicrosystems
Datasheet

Specifications of AS1528-BTDT

Number Of Bits
10
Sampling Rate (per Second)
150k
Data Interface
MICROWIRE™, QSPI™, Serial, SPI™
Number Of Converters
1
Voltage Supply Source
Single Supply
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
8-WDFN Exposed Pad
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
AS1528/AS1529
Datasheet - D e t a i l e d D e s c r i p t i o n
Input Bandwidth
The AS1528/AS1529 input tracking circuitry has a 20MHz small signal bandwidth, so it is possible to digitize high-
speed transient events and measure periodic signals with bandwidths exceeding the AS1528/AS1529 sampling rate
by using undersampling techniques.
Note: To avoid high-frequency signals being aliased into the frequency band of interest, anti-alias filtering is recom-
Analog Input Protection
Internal protection diodes that clamp the analog input to V
- 0.3V to V
more than 50mV for accurate conversions.
Note: If an off-channel analog input voltage exceeds the supply voltages, the input current should be limited to 2mA.
Internal Clock
The AS1528/AS1529 operate from an internal clock, which is accurate within 5% of the 4MHz clock rate. This results in
a worst-case conversion time of 3.7µs. The internal clock releases the system microprocessor from running the SAR
conversion clock and allows the conversion results to be read back at the processor’s convenience, at any clock rate
from 0 to 8MHz.
Output Data Format
Figure 18 on page 11
conversion result is output in MSB-first format. Data on DOUT transitions on the falling edge of SCLK. All 10 bits must
be clocked out before CNVST transitions again.
For the AS1528, data is straight binary for unipolar mode and two’s complement for bipolar mode. For the AS1529,
data is always straight binary.
Transfer Function
Figure 20 on page 12
bipolar transfer function for the AS1528. Code transitions occur halfway between successive-integer LSB values.
Figure 20. AS1528/AS1529 Unipolar Transfer Function
www.austriamicrosystems.com
mended.
DD
+ 0.3V without damage. Both inputs must not exceed V
and
shows the unipolar transfer function for the AS1528/AS1529.
Full Scale = V
Zero Scale = GND
1 LSB = V
Figure 19 on page 11
REF
/4096
REF
11....101
00...010
00...001
00...000
00...011
11...110
11...111
illustrate the conversion timing for the AS1528/AS1529. The 10-bit
Revision 1.02
0
1
DD
2
and GND allow the analog input pins to swing from GND
3
Input Voltage (LSB)
DD
Full-Scale
Transition
by more than 50mV or be lower than GND by
FS-3/2 LSB FS
Figure 21 on page 13
shows the
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