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TS5A3159-Q1 bảng dữ liệu(PDF) 10 Page - Texas Instruments |
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TS5A3159-Q1 bảng dữ liệu(HTML) 10 Page - Texas Instruments |
10 / 26 page TS5A3159-Q1 SCDS336A – NOVEMBER 2012 – REVISED DECEMBER 2012 www.ti.com PIN DESCRIPTION PIN DESCRIPTION NO. NAME 1 NO Normally-open terminal 2 GND Digital ground 3 NC Normally-closed terminal 4 COM Common terminal 5 V+ Power supply Digital control pin to connect COM terminal to NO or 6 IN NC terminals PARAMETER DESCRIPTION SYMBOL DESCRIPTION VCOM Voltage at COM VNC Voltage at NC VNO Voltage at NO ron Resistance between COM and NC or COM and NO ports, when the channel is ON rpeak Peak ON-state resistance over a specified voltage range ∆ron Difference of ron between channels ron(flat) Difference between the maximum and minimum value of ron in a channel over the specified range of conditions Leakage current measured at the NC port, with the corresponding channel (NC to COM) in the OFF state under worst-case INC(OFF) input and output conditions Leakage current measured at the NO port, with the corresponding channel (NO to COM) in the OFF state under worst-case INO(OFF) input and output conditions Leakage current measured at the NC port, with the corresponding channel (NC to COM) in the ON state and the output INC(ON) (COM) being open Leakage current measured at the NO port, with the corresponding channel (NO to COM) in the ON state and the output INO(ON) (COM) being open Leakage current measured at the COM port, with the corresponding channel (COM to NO or COM to NC) in the ON state ICOM(ON) and the output (NC or NO) being open VIH Minimum input voltage for logic high for the control input (IN) VIL Minimum input voltage for logic low for the control input (IN) VIN Voltage at IN IIH, IIL Leakage current measured at IN Turn-on time for the switch. This parameter is measured under the specified range of conditions and by the propagation tON delay between the digital control (IN) signal and analog outputs (COM, NC, or NO) signal, when the switch is turning ON. Turn-off time for the switch. This parameter is measured under the specified range of conditions and by the propagation tOFF delay between the digital control (IN) signal and analog outputs (COM, NC, or NO) signal, when the switch is turning OFF. Break-before-make time. This parameter is measured under the specified range of conditions and by the propagation delay tBBM between the output of two adjacent analog channels (NC and NO), when the control signal changes state. Charge injection is a measurement of unwanted signal coupling from the control (IN) input to the analog (NC, NO, or COM) QC output. This is measured in coulomb (C) and measured by the total charge induced due to switching of the control input. Charge injection, QC = CL × ∆VO, CL is the load capacitance, and ∆VO is the change in analog output voltage. CNC(OFF) Capacitance at the NC port when the corresponding channel (NC to COM) is OFF CNO(OFF) Capacitance at the NO port when the corresponding channel (NO to COM) is OFF CNC(ON) Capacitance at the NC port when the corresponding channel (NC to COM) is ON CNO(ON) Capacitance at the NO port when the corresponding channel (NO to COM) is ON CCOM(ON) Capacitance at the COM port when the corresponding channel (COM to NC or COM to NO) is ON CIN Capacitance of IN OFF isolation of the switch is a measurement OFF-state switch impedance. This is measured in dB in a specific frequency, OISO with the corresponding channel (NC to COM or NO to COM) in the OFF state. Crosstalk is a measurement of unwanted signal coupling from an ON channel to an OFF channel (NC to NO or NO to NC). XTALK This is measured in a specific frequency and in dB. BW Bandwidth of the switch. This is the frequency in which the gain of an ON channel is −3 dB below the DC gain. 10 Submit Documentation Feedback Copyright © 2012, Texas Instruments Incorporated Product Folder Links: TS5A3159-Q1 |
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