XE8801AMI027LF Semtech, XE8801AMI027LF Datasheet - Page 100

IC DAS 16BIT FLASH 8K MTP 44LQFP

XE8801AMI027LF

Manufacturer Part Number
XE8801AMI027LF
Description
IC DAS 16BIT FLASH 8K MTP 44LQFP
Manufacturer
Semtech
Datasheet

Specifications of XE8801AMI027LF

Applications
Sensing Machine
Core Processor
RISC
Program Memory Type
FLASH (22 kB)
Controller Series
XE8000
Ram Size
512 x 8
Interface
UART, USRT
Number Of I /o
24
Voltage - Supply
2.4 V ~ 5.5 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
44-LQFP
For Use With
XE8000MP - PROG BOARD AND PROSTART2 CARD
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
XE8801AMI027LF
Manufacturer:
Semtech
Quantity:
10 000
Using look-up Table 16-22 or the graph plotted in Figure 16-6, resolution can be set between 6 and 16 bits. Notice
that, because of 16-bit register use for the ADC output, practical resolution is limited to 16 bits, i.e. n ≤ 16. Even if
the resolution is truncated to 16 bit by the output register size, it may make sense to set OSR and N
values in order to reduce the influence of the thermal noise in the PGA (see section 16.8.4).
16.7.6
As explained using Figure 16-5, conversion time is given by:
and throughput is then simply 1/T
conversions, and a sampling frequency of 500kHz (SET_OSR = "101", SET_NELC = "01", f
"00"). In this case, using Table 16-23, the conversion time is 515 sampling periods, or 1.03ms. This corresponds to a
throughput of 971Hz in continuous-time mode. The plot of Figure 16-7 illustrates the classic trade-off between
resolution and conversion time.
16.7.7
The ADC output code is a 16-bit word in two's complement format (see Table 16-24). For input voltages outside the
range, the output code is saturated to the closest full-scale value (i.e. 0x7FFF or 0x8000). For resolutions smaller
than 16 bits, the non-significant bits are forced to the values shown in Table 16-25. The output code, expressed in
LSBs, corresponds to:
© Semtech 2005
Table 16-23 Normalized conversion time (T
T
CONV
Conversion Time & Throughput
Output Code Format
=
(
N
Figure 16-7 Resolution vs. normalized conversion time for different SET_NELC[1:0]
ELCONV
(
OSR
SET_OSR
+
[2:0]
000
001
010
011
100
101
110
111
) 1
+
1
/ )
CONV
f
S
16.0
14.0
12.0
10.0
(s)
8.0
6.0
4.0
1026
130
258
514
. For example, consider an over-sampling ratio of 256, 2 elementary
00
10
18
34
66
10.0
00
Normalized Conversion Time - T
01
to sampling period 1/f
SET_NELC[1:0]
1027
2051
131
259
515
10
01
19
35
67
CONV
100.0
11
16-15
SET_NELC
f
S
1029
2053
4101
) vs. SET_OSR[2:0] and SET_NELC[1:0](normalized
133
261
517
10
37
69
1000.0
1033
2057
4105
8201
137
265
521
11
73
CONV
(Eq. 16)
S
*f
)
S
[-]
10000.0
XE8801A – SX8801R
RC
= 2MHz, and FIN =
www.semtech.com
ELCONV
to higher

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