MAX1267ACEG+T Maxim Integrated, MAX1267ACEG+T Datasheet - Page 15

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MAX1267ACEG+T

Manufacturer Part Number
MAX1267ACEG+T
Description
Analog to Digital Converters - ADC 12-Bit 2Ch 265ksps 3.6V Precision ADC
Manufacturer
Maxim Integrated
Datasheet

Specifications of MAX1267ACEG+T

Rohs
yes
Number Of Channels
2/1
Architecture
SAR
Conversion Rate
265 KSPs
Resolution
12 bit
Input Type
Single-Ended/Pseudo-Differential
Snr
70 dB
Interface Type
Parallel
Operating Supply Voltage
2.7 V to 3.6 V
Maximum Operating Temperature
+ 70 C
Package / Case
QSOP-24
Maximum Power Dissipation
762 mW
Minimum Operating Temperature
0 C
Number Of Converters
1
Voltage Reference
2.5 V
Table 5. Full Scale and Zero Scale for Unipolar and Bipolar Operation
Figure 8. Unipolar Transfer Function
Shutdown mode turns off all chip functions that draw qui-
escent current, reducing the typical supply current to
2µA immediately after the current conversion is complet-
ed. A rising edge on WR causes the MAX1265/MAX1267
to exit shutdown mode and return to normal operation.
To achieve full 12-bit accuracy with a 4.7µF reference
bypass capacitor, 50µs is required after power-up.
Waiting 50µs in standby mode, instead of in full-power
mode, can reduce power consumption by a factor of 3 or
more. When using an external reference, only 50µs is
required after power-up. Enter standby mode by per-
forming a dummy conversion with the control byte speci-
fying standby mode.
Note: Bypass capacitors larger than 4.7µF between
REF and GND result in longer power-up delays.
111 . . . 111
111 . . . 110
100 . . . 010
100 . . . 001
100 . . . 000
011 . . . 111
011 . . . 110
000 . . . 000
011 . . . 101
000 . . . 001
OUTPUT CODE
(COM)
Zero scale
Full scale
0
1 LSB =
FS = REF + COM
ZS = COM
with +2.5V Reference and Parallel Interface
1
2
4096
REF
______________________________________________________________________________________
UNIPOLAR MODE
265ksps, +3V, 6-/2-Channel, 12-Bit ADCs
INPUT VOLTAGE (LSB)
2048
FULL-SCALE
TRANSITION
V
Shutdown Mode
REF
COM
FS - 3/2 LSB
+ COM
FS
Table 5 shows the full-scale voltage ranges for unipolar
and bipolar modes. Figure 8 depicts the nominal unipo-
lar input/output (I/O) transfer function, and Figure 9
shows the bipolar I/O transfer function. Code transitions
occur halfway between successive-integer LSB values.
Output coding is binary, with 1 LSB = (V
When running at the maximum clock frequency of
4.8MHz, the specified throughput of 265ksps is achieved
by completing a conversion every 18 clock cycles: 1
write cycle, 3 acquisition cycles, 13 conversion cycles,
and 1 read cycle. This assumes that the results of the
last conversion are read before the next control byte is
written. It is possible to achieve higher throughputs, up
to 300ksps, by first writing a control byte to begin the
Figure 9. Bipolar Transfer Function
*COM
011 . . . 111
011 . . . 110
000 . . . 010
000 . . . 001
000 . . . 000
111 . . . 111
111 . . . 110
111 . . . 101
100 . . . 001
100 . . . 000
Negative full scale
Positive full scale
OUTPUT CODE
V
Zero scale
REF
/ 2
1 LSB =
- FS
FS =
ZS = COM
-FS =
REF
-REF
2
4096
REF
2
BIPOLAR MODE
+ COM
+ COM
Maximum Sampling Rate/
INPUT VOLTAGE (LSB)
COM*
Achieving 300ksps
Transfer Function
-V
V
REF
REF
COM
/2 + COM
/2 + COM
REF
+FS - 1 LSB
/ 4096).
15

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