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ISL54214IRUZ-T Datasheet(PDF) 7 Page - Intersil Corporation |
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ISL54214IRUZ-T Datasheet(HTML) 7 Page - Intersil Corporation |
7 / 22 page ISL54214 7 FN6816.3 June 28, 2010 1D+/1D- OFF Capacitance, C1D+OFF, C1D-OFF f = 1MHz, VDD = 3.0V, C0 = VDD, C1 = VDD, VD- or VD+ =VCOMx = 0V, (see Figure 5) 25 - 3 - pF L/R OFF Capacitance, CLOFF, CROFF f = 1MHz, VDD = 3.0V, C0 = 0V, C1 = VDD, L or R = COMx = 0V, (see Figure 5) 25 - 5 - pF 2D+/2D- OFF Capacitance, C2D+OFF, C2D-OFF f = 1MHz, VDD = 3.3V, C0 = VDD, C1 = VDD, Tx or Rx = COMx = 0V, (See Figure 5) 25 - 3 - pF COM ON Capacitance, CCOM- (ON), CCOM+(ON) f = 1MHz, VDD = 3.0V, USB Mode (C0 = 0V, C1 = VDD), D- or D+ = COMx = 0V, (see Figure 5) 25 - 8 - pF POWER SUPPLY CHARACTERISTICS Power Supply Range, VDD Full 2.7 4.6 V Positive Supply Current, IDD (ALL OFF Mode) VDD = 3.6V, C1 = GND, C0 = GND 25 - 6.2 8 µA Full - - 15 µA Positive Supply Current, IDD (USB1 Mode) VDD = 3.6V, C1 = GND, C0 = VDD 25 - 6.5 8 µA Full - - 15 µA Positive Supply Current, IDD (USB2 Mode) VDD = 3.6V, C1 = VDD, C0 = GND 25 - 6.2 8 µA Full - - 15 µA Positive Supply Current, IDD (Audio Mode) VDD = 3.6V, Audio Mode (C0 = C1 = VDD)25 - 9 14 µA Full - - 20 µA Positive Supply Current, IDD (MUTE Mode) VDD = 3.6V, C1 = VDD, C0 = GND 25 - 6.6 8 µA Full - - 15 µA Power OFF COMx Current, ICOMx VDD = 0V, C0 = C1 = Float, COMx = 5.25V 25 - - 4 µA Power OFF Logic Current, IC0, IC1 VDD = 0V, C0 = C1 = 5.25V 25 - 11 - µA Power OFF D+/D- Current, IXD+, IXD- VDD = 0V, C0 = C1 = Float, XD- = XD+ = 5.25V 25 - 5 - µA DIGITAL INPUT CHARACTERISTICS C0, C1 Voltage Low, VC0L, VC1L VDD = 2.7V to 3.6V Full - - 0.5 V C0, C1 Voltage High, VC0H, VC1H VDD = 2.7V to 3.6V Full 1.4 - 5.25 V C0, C1 Input Current, IC0L, IC1L VDD = 3.6V, C0 = C1 = 0V or Float Full -50 6.2 50 nA C0, C1 Input Current, IC0H, IC1H VDD = 3.6V, C0 = C1 = 3.6V Full -2 1.6 2 µA C0, C1 Pull-Down Resistor, RCx VDD = 3.6V, C0 = C1 = 3.6V, Measure current into C0 or C1 pin and calculate resistance value. Full - 4 - MΩ NOTES: 11. Vlogic = Input voltage to perform proper function. 12. The algebraic convention, whereby the most negative value is a minimum and the most positive a maximum, is used in this data sheet. 13. Parameters with MIN and/or MAX limits are 100% tested at +25°C, unless otherwise specified. Temperature limits established by characterization and are not production tested. 14. Flatness is defined as the difference between maximum and minimum value of on-resistance over the specified analog signal range. 15. Limits established by characterization and are not production tested. 16. rON matching between channels is calculated by subtracting the channel with the highest max rON value from the channel with lowest max rON value, between L and R or between 1D+ and 1D- or between 2D+ and 2D-. Electrical Specifications - 2.7V to 3.6V Supply Test Conditions: VDD = +3.0V, GND = 0V, VC0H, VC1H = 1.4V, VC0L, VC1L = 0.5V, (Note 11), Unless Otherwise Specified. (Continued) PARAMETER TEST CONDITIONS TEMP (°C) MIN (Notes 12, 13) TYP MAX (Notes 12, 13) UNITS ISL54214 |
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