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L6712AD датащи(PDF) 14 Page - STMicroelectronics |
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L6712AD датащи(HTML) 14 Page - STMicroelectronics |
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14 / 27 page ![]() L6712A L6712 14/27 centage with respect to the load value, it can be simply considered that, for example, to have on OCP threshold of 200%, this will correspond to IINFOx = 35 µA (IFB = 70µA). The full load current will then corre- spond to IINFOx = 17.5 µA (IFB = 35µA). Once the UVP threshold has been intercepted, the device resets with all power mosfets turned OFF. An- other soft start is then performed allowing the device to recover from OCP once the over load cause has been removed. Crossing the UVP threshold causes the device to reset: all mosfets are turned off and a new soft start is then implemented allowing the device to recover if the over load cause has been removed. ■ L6712A - Fixed Maximum Duty Cycle Limitation The maximum duty cycle is fixed and constant with the delivered current. The device works in constant current operation once the OCP threshold has overcome. Refer to the above Constant Current section in which only the different value in the maximum duty has to be considered as follow: All the above reported relationships about the deliverable current once in quasi-constant current and con- stant current are still valid in this case. REMOTE SENSE AMPLIFIER Remote Sense Amplifier is integrated in order to recover from losses across PCB traces and wiring in high current DC/DC converter remote sense of the regulated voltage is required to maintain precision in the regulation. The integrated amplifier is a low-offset error amplifier; external resistors are needed as shown in figure 7 to implement a differential remote sense amplifier. Figure 7. Remote Sense Amplifier Connections Equal resistors give to the resulting amplifier a unity gain: the programmed reference will be regulated across the remote load. To regulate output voltages different from the available references, the Remote Amplifier gain can be ad- justed simply changing the value of the external resistors as follow (see Figure 7): to regulate a voltage double of the reference, the above reported gain must be equal to ½. Modifying the Remote Amplifier Gain (in particular with values higher than 1) allows also to regulate volt- ages lower than the programmed reference. Since this Amplifier is connected as a differential amplifier, when calculating the offset introduced I p eak I OCPx V IN Vout min – L -------------------------------------- Ton MAX I OCPx V IN Vout MIN – L --------------------------------------- 0.85 T ⋅⋅ + = ⋅ + = Reference IDROOP REMOTE AMPLIFIER ERROR AMPLIFIER DROOP FB COMP VSEN FBG FBR Remote Ground Remote VOUT RF CF RFB R2 R2 R1 R1 Reference IDROOP REMOTE AMPLIFIER ERROR AMPLIFIER DROOP FB COMP VSEN FBG FBR VOUT RF CF RFB RB used RB Not Used RA_Gain V VSEN Remote_V OUT Remote_GND – ---------------------------------------------------------------------------------------- = R2 R1 -------- = |
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