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QS4A101Q Datasheet(PDF) 3 Page - Integrated Device Technology |
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QS4A101Q Datasheet(HTML) 3 Page - Integrated Device Technology |
3 / 7 page 3 IDTQS4A101 HIGH-PERFORMANCECMOSANALOGFOUR-CHANNELSPSTSWITCH INDUSTRIALTEMPERATURERANGE DC ELECTRICAL CHARACTERISTICS OVER OPERATING RANGE Following Conditions Apply Unless Otherwise Specified: Industrial: TA = –40°C to +85°C, VCC = 5V ± 5% Symbol Parameter Test Conditions Min. Typ.(1) Max. Unit Analog Switch VIN Analog Signal Range(2) -0.5 1 Vcc - 1 V rDS(ON) Drain-source ON resistance(2,3) Vcc = Min., VIN = 0V , ION = 30mA — 5 7 Ω Vcc = Min., VIN = 2.4V , ION = 15mA — 13 17 IC(OFF) Channel Off Leakage Current A = Vcc or 0V, B = 0V or Vcc, E = Vcc — 1 — nA IC(ON) Channel On Leakage Current A = B = 0V — 1 — nA (each channel is turned on sequentially) Digital Control VIH Input HIGH Voltage Guaranteed Logic HIGH for Control Pins 2 — — V VIL Input LOW Voltage Guaranteed Logic LOW for Control Pins — — 0.8 V Dynamic Characteristics tON(E) Enable Turn-On Time RL = 1K Ω, CL = 100pF 0.5 — 6.5 ns E to A, B (See Switching Time) tOFF(E) Enable Turn-Off Time RL = 1K Ω, CL = 100pF 0.5 — 6 ns E to A, B (See Switching Time) tPD Group Delay(2,4a) RL = 1K Ω, CL = 100pF — — 250 ps f3dB -3dB Bandwidth VIN = 0 to 1V, 1Vp-p, RL = 75 Ω — 1.4 — GHz Off-isolation VIN = 0 to 1V, 1Vp-p, RL = 75 Ω, f = 5.5MHz — -80 — dB XTALK Crosstalk VIN = 0 to 1V, 1Vp-p, RL = 75 Ω, f = 30MHz — -75 — dB C(OFF) Switch Off Capacitance E = Vcc, VIN = VOUT = 0V — 5 — pF C(ON) Switch On Capacitance E = 0V, VIN = VOUT = 0V — 10 — pF QCI Charge Injection — 1.5 — pC NOTES: 1. Typical values are at VCC = 5.0V, TA = 25°C. 2. Max value is guaranteed but not production tested. 3. Measured by voltage drop between A and C pins at indicated current through the switch ON resistance is determined by the lower of the voltages on the two (A, B) pins. 4. The bus switch contributes no group delay other than the RC delay of the ON resistance of the switch and load capacitance. Group delay of the bus switch, when used in a system, is determined by the driving circuit on the driving side of the switch and its interaction with the load on the driven side. |
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