参数资料
型号: CS42L55-CNZR
厂商: Cirrus Logic Inc
文件页数: 17/68页
文件大小: 0K
描述: IC CODEC STER H-HDPN AMP 36-QFN
标准包装: 6,000
类型: 立体声音频
数据接口: 串行
分辨率(位): 24 b
ADC / DAC 数量: 1 / 1
三角积分调变:
动态范围,标准 ADC / DAC (db): 95 / 99
电压 - 电源,模拟: 1.65 V ~ 2.71 V
电压 - 电源,数字: 1.65 V ~ 2.71 V
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 36-QFN
供应商设备封装: 36-QFN-EP(5x5)
包装: 带卷 (TR)
配用: 598-1506-ND - BOARD EVAL FOR CS42L55 CODEC
MIC3000
Micrel
M9999-101204
24
October 2004
The LUTOFF register determines the range of measured
temperatures that are actually spanned by the tables. The
temperature span of the tables versus the value of LUTOFF
is given in Table 16.
Temperature Span
LUTOFF
tCOMP(min) – tCOMP(max)
00h
0°C to +127°C
01h
–2°C to +125°C
02h
–4°C to +123°C
0Fh
–30°C to +97°C
Table 16. Range of Temperature Compensation
Tables vs. LUTOFF
The internal state machine calculates a new table index each
time a new average temperature value becomes available.
This table index is derived from the average temperature
value and LUTOFF. The table index is then converted into a
table address for each of the four look-up tables. These
operations can be expressed as:
INDEX
T
2
LUTOFF
AVG n
=+
()
(7)
where TAVG(n) is the current average temperature; and
TABLE ADDRESS INDEX BASE ADDRESS
__
=+
where BASE_ADDRESS is the physical base address of
each table, i.e., 00h, 40h, 80h, or C0h (all tables reside in the
I2CADR+4 page of memory).
At any given time, the current table index can be read in the
LUTINDX register.
Figures 11 and 12 illustrate the operation of the temperature
compensation tables.
Figure 11 is a graphical illustration of the use of the LUTOFF
register to control the temperature range spanned by the
temperature compensation tables. Note that, if the LUTINDX
becomes greater than 63 or less than zero, the maximum or
minimum table value is used, respectively. The tables do not
“roll over.”
+127
–128
063
LUT(LUTINDX)
(a)
+127
–128
0
+127°C
+113°C
–30°C
LUT(t), LUTOFF=07h
(c)
+127
–128
0
+127°C
–30°C
LUT(t), LUTOFF=0
(b)
+127
–128
0
+127°C
+98°C
–30°C
LUT(t), LUTOFF=0Fh
(d)
Figure 11. Examples of LUTOFF Operation
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