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LM5035ASQ/NOPB データシート(PDF) 24 Page - Texas Instruments

部品番号 LM5035ASQ/NOPB
部品情報  PWM Controller with Integrated Half-Bridge and SyncFET Drivers
PDF  40 Pages
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メーカー  TI [Texas Instruments]
ホームページ  http://www.ti.com
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LM5035ASQ/NOPB データシート(HTML) 24 Page - Texas Instruments

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1.25V x (R1 + RCOMBINED)
OVPoff
R3 =
RCOMBINED =
1.25V x R1
UVLOoff ± 1.25V
R1 =
UVLOon - UVLOoff
23 PA
UVLO
LM5035A
VPWR
STANDBY
OFF
OFF
STANDBY
1.25V
0.4V
23 PA
R2
R1
OVPoff = 1.25V x
R1 + R2 + R3
R3
¨
¨
©
§
UVLOoff = 1.25V x
R1 + R2 + R3
R2 + R3
¨
¨
©
§
LM5035A
SNVS537F – JANUARY 2008 – REVISED APRIL 2013
www.ti.com
Table 1. UVO/OVP Divider Formulas
Outputs disabled due to VIN falling below UVLO threshold
(11)
Outputs enabled due to VIN rising above UVLO threshold
UVLOon = UVLOoff + (23 µA x R1)
Outputs disabled due to VIN rising above OVP threshold
(12)
Outputs enabled due to VIN falling below OVP threshold
OVPon = OVPoff - [23 µA x (R1 + R2)]
The typical operating ranges of undervoltage and overvoltage thresholds are calculated from the above
equations. For example, for resistor values R1 = 86.6k
Ω, R2 = 2.10kΩ and R3 = 1.40kΩ the computed
thresholds are:
UVLO turn-off = 32.2V
UVLO turn-on = 34.2V
OVP turn-on = 78.4V
OVP turn-off = 80.5V
Figure 25. Remote Standby and Disable Control
To maintain the threshold’s accuracy, a resistor tolerance of 1% or better is recommended.
The design process starts with the choice of the voltage difference between the UVLO enabling and disabling
thresholds. This will also approximately set the difference between OVP enabling and disabling regulation:
(13)
Next, the combined resistance of R2 and R3 is calculated by choosing the threshold for the UVLO disabling
threshold:
(14)
Then R3 is determined by selecting the OVP disabling threshold:
(15)
Finally, R3 is subtracted from RCOMBINED to give R2:
R2 = RCOMBINED - R3
(16)
24
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Copyright © 2008–2013, Texas Instruments Incorporated
Product Folder Links: LM5035A



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