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MCP4662T Datasheet(PDF) 9 Page - Microchip Technology |
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MCP4662T Datasheet(HTML) 9 Page - Microchip Technology |
9 / 92 page © 2008 Microchip Technology Inc. DS22107A-page 9 MCP454X/456X/464X/466X Rheostat Integral Non-linearity MCP45X1 (Note 4, Note 8) MCP4XX2 devices only (Note 4) R-INL -1.5 ±0.5 +1.5 LSb 5 k Ω 8-bit 5.5V, IW = 900 µA -8.25 +4.5 +8.25 LSb 3.0V, IW = 480 µA (Note 7) -1.125 ±0.5 +1.125 LSb 7-bit 5.5V, IW = 900 µA -6.0 +4.5 +6.0 LSb 3.0V, IW = 480 µA (Note 7) -1.5 ±0.5 +1.5 LSb 10 k Ω 8-bit 5.5V, IW = 450 µA -5.5 +2.5 +5.5 LSb 3.0V, IW = 240 µA (Note 7) -1.125 ±0.5 +1.125 LSb 7-bit 5.5V, IW = 450 µA -4.0 +2.5 +4.0 LSb 3.0V, IW = 240 µA (Note 7) -1.5 ±0.5 +1.5 LSb 50 k Ω 8-bit 5.5V, IW = 90 µA -2.0 +1 +2.0 LSb 3.0V, IW = 48 µA (Note 7) -1.125 ±0.5 +1.125 LSb 7-bit 5.5V, IW = 90 µA -1.5 +1 +1.5 LSb 3.0V, IW = 48 µA (Note 7) -1.0 ±0.5 +1.0 LSb 100 k Ω 8-bit 5.5V, IW = 45 µA -1.5 +0.25 +1.5 LSb 3.0V, IW = 24 µA (Note 7) -0.8 ±0.5 +0.8 LSb 7-bit 5.5V, IW = 45 µA -1.125 +0.25 +1.125 LSb 3.0V, IW = 24 µA (Note 7) AC/DC CHARACTERISTICS (CONTINUED) DC Characteristics Standard Operating Conditions (unless otherwise specified) Operating Temperature –40°C ≤ T A ≤ +125°C (extended) All parameters apply across the specified operating ranges unless noted. VDD = +2.7V to 5.5V, 5 kΩ, 10 kΩ, 50 kΩ, 100 kΩ devices. Typical specifications represent values for VDD = 5.5V, TA = +25°C. Parameters Sym Min Typ Max Units Conditions Note 1: Resistance is defined as the resistance between terminal A to terminal B. 2: INL and DNL are measured at VW with VA = VDD and VB = VSS. 3: MCP4XX1 only. 4: MCP4XX2 only, includes VWZSE and VWFSE. 5: Resistor terminals A, W and B’s polarity with respect to each other is not restricted. 6: This specification by design. 7: Non-linearity is affected by wiper resistance (RW), which changes significantly overvoltage and temperature. 8: The MCP4XX1 is externally connected to match the configurations of the MCP45X2 and MCP46X2, and then tested. 9: POR/BOR is not rate dependent. 10: Supply current is independent of current through the resistor network 11: When HVC/A0 = VIHH, the IDD current is less due to current into the HVC/A0 pin. See IPU specification |
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