PI5A4158 PERICOM | Alldatasheet
Document overview
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Technical content
Features
CMOS Technology for Bus and Analog
Applications
Low On-Resistance: 0.8Ω at 3.0V Wide VCC Range: 1.65V to 5.5V Rail-to-Rail Signal Range Control Input Overvoltage Tolerance: 5.5V(Min) Fast Transition Speed: 12ns at 5.0V High Bandwidth: 150 MHz Extended Industrial Temperature Range: -40° C to 85° C Packaging (Pb-free & Green): -12-Pin TDFN 1mm×3mm Cell Phones PDAs Portable Instrumentation Battery powered Communications Computer Peripherals Pin Description Pin No Name Description 8, 11 1Bx Data Port (Normally open) 3, 6 GND Ground 2, 5 0Bx Data Port (Normally closed) 1, 4 AX Common Output / Data Port 9, 12 VCC Positive Power Supply 7, 10 SX Logic Control Logic Function Table Logic Input (SX) Function 0 0Bx Connected to AX 1 1Bx Connected to AX Note: X= 0 or 1
Description
The PI5A4158 is a dual high-bandwidth, fast single-pole double-throw (SPDT) CMOS switch . It can be used as an analog switch or as a low-delay bus switch. The device features ultra low RON of 0.8Ω typical at 3.0V VCC and will operate over the wide VCC range of 1.65V to 5.5V. The PI5A4158 features very low quiescent current even when the control voltage is lower than the VCC supply. This feature services the mobile handset applications very well by allowing direct interface with baseband processor general purpose I/Os. Break-before-make switching prevents both switches being enabled simultaneously. This eliminates signal disruption during switching. The control input, S, is independent of supply voltage. Pin Assignment 0B0 GND 0B1 GND S1 1B1 VCC 1B0 VCC
2015-09-0006 PT0389-2 09/23/15 PI5A4158 Low Voltage SPDT 0.8Ω Analog Switch Maximum Ratings DC Input Voltage VIN Junction Lead Temperature (TL) Recommended Operating Conditions Symbol Parameter Conditions Min. Typ. Max. Unit VCC Operating Voltage - 1.65 - 5.5 V VIN Control Input Voltage - 0 - VCC V VS Switch Input Voltage - 0 - VCC V VOUT Output Voltage - 0 - VCC V TA Operating Temperature - -40 25 85 °C tr, tf Input Rise and Fall Time Control Input VCC = 2.7V to 3.6V 0 - 10 ns/V Control Input VCC = 4.5V to 5.5V 0 - 5 ns/V Note: Control input must be held HIGH or LOW; it must not float. Note: Stresses greater than those listed under MAXIMUM RATINGS may cause permanent damage to the device. This is a stress rating only and functional operation of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect reliability.
2015-09-0006 PT0389-2 09/23/15 PI5A4158 Low Voltage SPDT 0.8Ω Analog Switch (TA = –40° C to 85° C, Typical values are at 3V and +25° C, unless otherwise noted.) Symbol Parameter Test Conditions Supply Voltage Min. Typ. Max. Units VIAR Analog Input Signal Range - VCC 0 - VCC V RON ON Resistance (1) IAx=100mA, VnBx =0V VCC=4.5V - 0.7 1.1 Ω IAx=100mA, VnBx =2.4V - 0.6 1.0 IAx=100mA, VnBx =4.5V - 0.8 1.2 ∆RON ON Resistance Match Between Channels (1,2,3) IAx=100mA, VnBx =3.15V VCC=4.5V - 0.01 0.03 Ω IAx=100mA, VnBx =2.1V VCC=3.0V - 0.02 0.04 IAx=100mA, VnBx =1.6V VCC=2.3V - 0.03 0.06 IAx=100mA, VnBx =1.15V VCC=1.65V - 0.03 0.06 RONF ON Resistance Flatness (1,2,4) VIH Input High Voltage Logic High Level VCC=1.65V - 0.9 - V VCC=2.3V - 1.0 - VCC=3.0V - 1.1 - VCC=4.2V - 1.2 - VCC=5.5V - 1.3 - VIL Input Low Voltage Logic Low Level VCC=1.65V - - 0.6 V VCC=2.3V - - 0.6 VCC=3.0V - - 0.6 VCC=4.2V - - 0.8 VCC=5.5V - - 0.8 IOFF(Bn) Source Off Leakage Current VAx=1V/4.5V, VnBx=1V/4.5V VCC=3.0V -20 - +20 nA ION(A, Bn) Channel On Leakage Current - VCC=1.65V to 5.5V -40 - +40 nA ICC Quiescent Supply Current All Channels ON or OFF, VnBx=VCC and GND, IOUT=0A ICCT Increase in ICC per Input Channel Input at 2.7V VCC=4.3V - 0.2 10.0 µA Notes: 1. Measured by voltage drop between A and B pins at the indicated current through the device. ON resistance is determined by the lower of the voltages on two ports (Ax or nBx) x= 0 or 1, n= 0 or 1. 2. Parameter is characterized but not tested in production. 3. ∆RON = RON max – RON min. measured at identical VCC, temperature and voltage levels. 4. Flatness is defined as difference between maximum and minimum value of ON resistance over the specified range of conditions. Capacitance(1) Symbol Parameter Test Conditions Supply Voltage Temp (ºC) Min. Typ. Max. Units CIN Control Input f = 1 MHz VCC = 5.0V TA = 25°C - 3.5 - pF CIO-B For Bn Port, Switch OFF - 15.0 - CIOA-ON For An Port, Switch ON - 34.0 - Notes: 1. Capacitance is characterized but not tested in production
2015-09-0006 PT0389-2 09/23/15 PI5A4158 Low Voltage SPDT 0.8Ω Analog Switch Switch and AC Characteristics (1) Parameter Description Test Conditions Supply Voltage Min Typ Max Units tBBM Break Before Make Time See Figure 2 VCC = 2.7V to 3.6V - 10 20 ns VCC = 4.5V to 5.5V - 6 12 tON Turn on Time See Figure 1 VCC = 2.7V to 3.6V - 12 25 VCC = 4.5V to 5.5V - 9 18 tOFF Turn off Time See Figure 1 VCC = 2.7V to 3.6V - 17 35 VCC = 4.5V to 5.5V - 10 20 Q Charge Injection CL = 1nF, VGEN = 0V, RGEN=0. See Figure 3 VCC = 5.0V - 35 - pC VCC = 3.3V - 25 - OIRR Off Isolation RL=50, VGEN=0V, RGEN =0, f =1MHz. See Figure 4 (2) VCC =1.65V to 5.5V - -70 - dB XTALK Crosstalk Isolation f=1MHz, See Figure 5 VCC =1.65V to 5.5V - -70 - f3dB –3dB Bandwidth See Figure 8 VCC =1.65V to 5.5V - 150 - MHz THD Total Harmonic Distortion RL=600Ω, VIN=0.5Vpp, f=20Hz to 20kHz See Figure 9 VCC =2.7V to 4.2V - 0.015 - % Notes: 1. Guaranteed by design. 2. Off Isolation = 20 Log10 [VnBx /VAx ] and is measured in dB.
2015-09-0006 PT0389-2 09/23/15 PI5A4158 Low Voltage SPDT 0.8Ω Analog Switch Mechanical Information ZA (12-pin TDFN 1×3)
Ordering Information
Part Number Package Code Package Top Marking PI5A4158ZAEX ZA Lead Free and Green TDFN-12 1×3 (ZA) Tape & reel nP Notes: E = Pb-free and Green Adding X Suffix= Tape/Reel Pericom Semiconductor Corporation 1-800-435-2336 www.pericom.com PKG. DIMENSIONS(MM) SYMBOL MIN NOM MAX A 0.70 0.75 0.80 A1 0.00 - 0.05 A3 0.20REF D 2.95 3.00 3.05 E 0.95 1.00 1.05 b 0.18 0.25 0.30 L 0.30 0.40 0.50 e 0.50BSC Note: 1) Controlling dimensions in millimeters. 2) Ref: JEDEC MO-229C