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L9305 датащи(PDF) 20 Page - STMicroelectronics

номер детали L9305
подробное описание детали  Automotive 4-channel valve driver
PDF  107 Pages
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производитель  STMICROELECTRONICS [STMicroelectronics]
домашняя страница  http://www.st.com
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6.1.1
Current set point programming
The targeted average current set point is independently programmable for each channel through the dedicated
SPI register (Channel_x.Current_Set_Point) and it is 13-bit wide. The current resolution is programmable in two
resolution steps through the HILOAD bit (D[8] in Channel_x.Configuration1) which will also set the maximum
regulated current. Below is a brief summary for using HILOAD to select current range and resolution.
HILOAD = 0 → Normal current mode - Single bit resolution = 0.25 [mA] - Max Avg. Current 1.5 [A].
TargetAverageCurrent=Setpoint12:0*0.25mA
HILOAD = 1 → High current mode - Single bit resolution = 0.33 [mA] - Max Avg. Current 2.0 [A].
TargetAverageCurrent=Setpoint12:0*0.33mA
The maximum guaranteed ripple current for the device’s specified accuracy is 0.5 [A] peak to peak for HILOAD=0
and 0.66 [A] peak to peak for HILOAD=1, so that the max load current for correct current control is
1500 mA + 250 mA = 1750 mA for HILOAD = 0
2000 mA + 330 mA = 2330 mA for HILOAD = 1
If the channel is enabled and programmed with 0x0000h current set point, the power output is forced with duty
cycle 0 (recirculation path fully on) and the current measurement is disabled; set point codes higher than 0x1770h
are reserved for calibration and offset compensation purposes: in case such codes are selected, the accuracy is
not guaranteed.
When CHx.SETPOINT=0000 and channel x is controlled Hardware mode (CONFIGURATION1.D[2]=0), then
current measurement is disabled and AVGCUR always returns all ‘0’, even if channel x is driven full-on.
6.1.2
PWM switching period programming
The PWM switching period is programmable as shown in the next table, through the dedicated 11-bit field in the
SPI register Channel_x.Control Configuration (CTRLCFG):
Table 11. PWM period and Frequency Programming
PWM code [10:0]
Period [µs]
Frequency
[Hz]
Status
hex
dec
0x000
0
50
20000
Short period/High frequency range
PWM Period = 50 µs + PWM Code D[10:0] * 5 µs
0x001
1
55
18180
0x009
9
95
10520
0x00A
10
100
10000
PWM Period = PWM Code D[10:0] * 10 µs
Normal Period/Frequency range.
0x00B
11
110
9090
0x681
1665
16650
60.06
0x682
1666
16660
60.02
0x683
1667
16670
60.02
Values clamped to maximum period of 16.67 ms
16670
60.02
0x7FF
2047
16670
60.02
6.1.3
Current control loop configuration
Hardware current control feedback Frequency Mode is user programmable for either variable or fixed frequency
operation through register Channelx_CTRLCFG, bit D[11].
In fixed frequency current control configuration, the programmed PWM period is exactly the actuated period. The
control algorithm and a Proportional-Integral (PI) processing circuit with ramp-compare control the duty cycle.
In variable frequency current control configuration, the programmed PWM period is the target set point for the
inner frequency control loop. The control algorithm and a zero crossing integrator control both PWM period and
duty cycle. The actual PWM period may differ from the target PWM period, especially during transients.
L9305
Current control drivers
DS12774 - Rev 10
page 20/107



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