57.8.6 AFE Channel Input Impedance

Figure 57-15. Input Channel Model

where:

  • ZIN is input impedance in Single-ended or Differential mode
  • CIN = 2 to 8 pF ±20% depending on the gain value and mode (SE or DIFF); temperature dependency is negligible
  • RON is typical 2 kΩ and 8 kΩ max (worst case process and high temperature)

The following formula is used to calculate input impedance:

ZIN=1fS×CIN

where:

  • fS is the sampling frequency of the AFE channel
  • Typ values are used to compute AFE input impedance ZIN
    Table 57-36. Input Capacitance (CIN) Values
    Gain SelectionSingle-endedDifferentialUnit
    122pF
    244
    488
    Table 57-37. ZIN Input Impedance
    fS (MHz)10.50.250.1250.06250.031250.0156250.007813
    CIN = 2 pF
    ZIN (MΩ)0.51248163264
    CIN = 4 pF
    ZIN (MΩ)0.250.512481632
    CIN = 8 pF
    ZIN (MΩ)0.1250.250.5124816