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LM20136MH/NOPB датащи(PDF) 21 Page - Texas Instruments |
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LM20136MH/NOPB датащи(HTML) 21 Page - Texas Instruments |
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21 / 32 page ![]() SS/TRK VOUT1 R1 R2 EN LM20136 External Power Supply VOUT2 RA = - 1 VTO VIH_EN x RB EN VOUT1 RA RB LM20136 External Power Supply VOUT2 LM20136 www.ti.com SNVS564B – JANUARY 2009 – REVISED APRIL 2013 Using Precision Enable and Power Good The precision enable(EN) and power good(PGOOD) pins of the LM20136 can be used to address many sequencing requirements. The turn-on of the LM20136 can be controlled with the precision enable pin by using two external resistors as shown in Figure 34 Figure 34. Sequencing LM20136 with Precision Enable The value for resistor RB can be selected by the user to control the current through the divider. Typically this resistor will be selected to be between 10 k Ω and 1 MΩ. Once the value for RB is chosen the resistor RA can be solved using the equation below to set the desired turn-on voltage. (12) When designing for a specific turn-on threshold (VTO) the tolerance on the input supply, enable threshold (VIH_EN), and external resistors needs to be considered to insure proper turn-on of the device. The LM20136 features an open drain power good (PGOOD) pin to sequence external supplies or loads and to provide fault detection. This pin requires an external resistor (RPG) to pull PGOOD high while when the output is within the PGOOD tolerance window. Typical values for this resistor range from 10 k Ω to 100 kΩ. Tracking an External Supply By using a properly chosen resistor divider network connected to the SS/TRK pin, as shown in Figure 35, the output of the LM20136 can be configured to track an external voltage source to obtain a simultaneous or ratiometric start up. Figure 35. Tracking an External Supply Since the Soft-Start charging current ISS is always present on the SS/TRK pin, the size of R2 should be less than 10 k Ω to minimize the errors in the tracking output. Once a value for R2 is selected the value for R1 can be calculated using appropriate equation in Figure 36, to give the desired start up. Figure 36 shows two common start up sequences; the top waveform shows a simultaneous start up while the waveform at the bottom illustrates a ratiometric start up. Copyright © 2009–2013, Texas Instruments Incorporated Submit Documentation Feedback 21 Product Folder Links: LM20136 |
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