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MCP48CMB02 Datasheet(PDF) 99 Page - Microchip Technology |
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MCP48CMB02 Datasheet(HTML) 99 Page - Microchip Technology |
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99 / 106 page ![]() 2019 Microchip Technology Inc. DS20006160A-page 99 MCP48CXBXX FIGURE B-3: GAIN ERROR AND FULL- SCALE ERROR EXAMPLE. EQUATION B-5: GAIN ERROR EXAMPLE B.10 Gain Error Drift (EGD) The Gain Error Drift is the variation in Gain Error due to a change in ambient temperature. The Gain Error Drift is typically expressed in ppm/°C (of FSR). B.11 Integral Nonlinearity (INL) The Integral Nonlinearity (INL) Error is the maximum deviation of an actual transfer function from an ideal transfer function (straight line) passing through the defined end-points of the DAC transfer function (after Offset and Gain Errors have been removed). For the MCP48CXBXX, INL is calculated using the defined end-points, DAC code 64 and code 4032. INL can be expressed as a percentage of FSR or in LSb. INL is also called relative accuracy. Equation B-6 shows how to calculate the INL error in LSb and Figure B-4 shows an example of INL accuracy. Positive INL means a VOUT voltage higher than the ideal one. Negative INL means a VOUT voltage lower than the ideal one. EQUATION B-6: INL ERROR FIGURE B-4: INL ACCURACY. Ideal Transfer Actual DAC Input Code 0 Full-Scale Error (EFS) Gain Error (EG) Function 64 4032 4095 VREF Transfer Function (@ code = 4032) Ideal Transfer Function shifted by Offset Error (crosses at start of defined linear range) Where: EG is expressed in % of Full-Scale Range (FSR). VOUT(@4032) = The measured DAC output voltage at the specified code. VOUT_Ideal(@4032) = The calculated DAC output voltage at the specified code. (4032 * VLSb(Ideal)) VOS = Measured offset voltage. VFull-Scale Range = Expected Full-Scale output value (such as the VREF voltage). EG VOUT(@4032) VOS – VOUT_Ideal(@4032) – VFull-Scale Range ---------------------------------------------------------------------------------------------------- * 100 = Where: INL is expressed in LSb. VCalc_Ideal = Code * VLSb(Measured) + VOS VOUT(Code = n) = The measured DAC output voltage with a given DAC register code VLSb(Measured) = For Measured: (VOUT(4032) - VOUT(64))/3968 VOS = Measured offset voltage EINL VOUT VCalc_Ideal – VLSb Measured -------------------------------------------------- = 010 001 000 Analog Output (LSb) DAC Input Code 011 111 100 101 1 2 3 4 5 6 0 7 110 Ideal Transfer Function Actual Transfer Function INL = < -1 LSb INL = 0.5 LSb INL = - 1 LSb |
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