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L9305 Datasheet(PDF) 20 Page - STMicroelectronics

Part # L9305
Description  Automotive 4-channel valve driver
PDF  107 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

L9305 Datasheet(HTML) 20 Page - STMicroelectronics

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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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