| 전자부품 데이터시트 검색엔진 |
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L6713ATR 데이터시트(PDF) 55 Page - STMicroelectronics |
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L6713ATR 데이터시트(HTML) 55 Page - STMicroelectronics |
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55 / 64 page ![]() L6713A Tolerance band (TOB) definition 55/64 23 Tolerance band (TOB) definition Output voltage load-line varies considering component process variation, system temperature extremes, and age degradation limits. Moreover, individual tolerance of the components also varies among designs: it is then possible to define a manufacturing tolerance band (TOBManuf) that defines the possible output voltage spread across the nominal load line characteristic. TOBManuf can be sliced into different three main categories: Controller tolerance, external current sense circuit tolerance and time constant matching error tolerance. All these parameters can be composed thanks to the RSS analysis so that the manufacturing variation on TOB results to be: Output voltage ripple (VP=VPP/2) and temperature measurement error (VTC) must be added to the manufacturing TOB in order to get the system tolerance band as follow: All the component spreads and variations are usually considered at 3 σ. Here follows an explanation on how to calculate these parameters for a reference L6713A application. 23.1 Controller tolerance (TOBController) It can be further sliced as follow: ● Reference tolerance. L6713A is trimmed during the production stage to ensure the output voltage to be within kVID = ± 0.5 % (± 0.6 % for AMD DAC) over temperature and line variations. In addition, the device automatically adds a -19 mV offset (Only for Intel mode) avoiding the use of any external component. This offset is already included during the trimming process in order to avoid the use of any external circuit to generate this offsets and, moreover, avoiding the introduction of any further error to be considered in the TOB calculation. ● Current reading circuit. The device reads the current flowing across the inductor DCR by using its dedicated differential inputs. The current sourced by the VRD is then reproduced and sourced from the DROOP pin scaled down by a proper designed gain as follow: This current multiplied by the RFB resistor connected from FB pin vs. the load allows programming the droop function according to the selected DCR/Rg gain and RFB resistor. Deviations in the current sourced due to errors in the current reading, impacts on the output voltage depending on the size of RFB resistor. The device is trimmed during the production stage in order to guarantee a maximum deviation of kIFB = ± 1 μA from the nominal value. Controller tolerance results then to be: TOB Manuf TOB Controller 2 TOB CurrSense 2 TOB TCMatching 2 ++ = TOB TOB Manuf V P V TC ++ = I DROOP DCR Rg ------------- I OUT ⋅ = TOB Controller VID 19mV – () k VID ⋅ [] 2 k IDROOP R FB ⋅ () 2 + = |
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