參數(shù)資料
型號: MCZ33970EG
廠商: 飛思卡爾半導體(中國)有限公司
英文描述: Dual Gauge Driver Integrated Circuit with Improved Damping Algorithms
中文描述: 雙計驅動集成電路與改進的阻尼算法
文件頁數(shù): 31/36頁
文件大?。?/td> 430K
代理商: MCZ33970EG
Analog Integrated Circuit Device Data
Freescale Semiconductor
31
33970
TYPICAL APPLICATIONS
INTRODUCTION
TYPICAL APPLICATIONS
INTRODUCTION
The 33970 is an extremely versatile device used in a
variety of applications.
Table 22
provides a step-by-step
example of configuring and using many of the features
designed into the IC.
This example is intended to give a generic overview how
the device could be used. Further, it is intended to familiarize
users with some of its capabilities.
Table 22. 33970 Setup, Configuration, and Usage Example
Step
Command
Description
Reference Table
and or Figure
1
PECCR
(a) Enable Gauges
-
Bit PE0: Gauge 0
-
Bit PE1: Gauge 1
Table 7
(page
14
),
Figure 10
(page
27
)
(b) Clock Calibration
-
Bit PE3: Enables Calibration Procedure
-
Bit PE4: Set clock f = 1.0 MHz maximum or nominal
(c) Send 8.0
μ
s pulse on CS to calibrate 1.0 MHz clock
2
RTZCR
(a) Set RTZ Full Step Time
-
Bits RC3:RC0
Table 12
(page
17
),
Table 13
(page
18
)
(b) Set RTZ Blanking Time
-
Bit RC4
(c) Preload RTZ Accumulator
-
Bits RC12:RC11 and RC10:RC5
Table 14
(page
18
)
(d) Check SO for an Out-of-Range Clock Calibration
-
Is bit CAL logic [1] If so, then repeat Steps 1 and 2
Table 7
(page
14
),
Table 15
(page
19
)
3
POS0R
(a) Move pointer to position 12 prior to RTZ
Table 9
(page
16
)
4
POS1R
(a) Move pointer to position 12 prior to RTZ
Table 10
(page
16
)
(b) Check SO to see if Gauge 0 has moved
-
Is bit MOV0 (OD4) logic [1] If so then the Gauge 0 has moved to the first microstep
Table 7
(page
14
),
Table 15
(page
19
)
5
PECCR
(a) Send null command to see if gauges have moved
-
Bit PE12
Table 7
(page
14
)
(b) Check SO to see if Gauge 0 (Gauge 1) has moved
-
Is bit MOV0 (OD4) (MOV1 (OD5)) logic [1] If so, then Gauge 0 (Gauge 1) moved
another microstep. Keep track of movement and if 12 steps are finished and both gauges
are at a static position, then RTZ. Otherwise, repeat steps (a) and (b)
-
Bit CMD0 (OD10) (CMD1 (OD11)) could also be monitored to determine that the
pointer is static
Table 7
(page
14
),
Table 15
(page
19
)
6
RTZ
(a) Return one gauge at a time to the zero stop using RTZ command
-
Bit RZ0 selects the gauge
-
Bit RZ1 is used to enable or disable an RTZ
-
Bits RZ2 is used to select the direction (along with PE7)
Table 11
(page
16
)
(b) Select the RTZ accumulator bits to clock out on the SO bits using bits PE11:PE10. These
will be used if characterizing the RTZ.
Table 7
(page
14
),
Table 16
(page
20
)
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