PI5A3167C Low Voltage SPST 0.8Ω Analog Switch
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- Duane Bryant
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1 Features Description CMO Technology for us and nalog pplications Low On-Resistance: 0.8Ω at 3.0V Wide Range: 1.65V to 5.5V Rail-to-Rail ignal Range Control Input Overvoltage Tolerance: 5.5V Fast Transition peed: 2ns at 5.0V High andwidth: 200 MHz I/O pins Have Power-off Protection Functions Extended Industrial Temperature Range: -40 C to 85 C Packaging (Pb-free & Green): -5-pin OT23-5-pin C70 The PI53167C is a high-bandwidth, fast single-pole single-throw (PT) CMO 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 PI53167C 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. The control input,, is independent of supply voltage. pplications Cell Phones PDs Portable Instrumentation attery powered Communications Computer Peripherals Pin ssignment OT23 and C70 Package (Top View) Pin Description Pin No Pin Name Description 1 Data Port (normally connect) 2 Common Output/Data Port 3 Ground 4 Logic Control 5 VCC Positive Power upply Logic Function Table () Function( to ) 0 ON 1 OFF 1
2 Maximum Ratings torage Temperature to +150 mbient Temperature with Power pplied to +85 upply Voltage..-0.5V to +7.0V DC witch Voltage V V to +7.0V DC Input Voltage V IN..-0.5V to +7.0V DC Output Current V OUT.128m DC or Ground Current I CC /I ±100m Junction Temperature under ias (TJ) C Junction Lead Temperature (TL) (oldering, 10 seconds) C ED(HM)...4KV Power Dissipation +85 C...OT23 250mW C70 200mW Note: tresses greater than those listed under MXIMUM RTING 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. Recommended Operating Conditions ymbol Parameter Conditions Min. Typ. Max. Unit Operating Voltage V V IN DC Input Voltage V V witch Input Voltage V V OUT Output Voltage V T Operating Temperature C Control Input VCC = 2.7V to 3.6V 0-10 ns/v t r, t f Input Rise and Fall Time 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. 2
3 DC Electrical Characteristics (T = 40 C to 85 C, unless otherwise noted.) Parameter Description Test Conditions upply Voltage Min Typ Max Units R ONF ON Resistance Flatness (2) V IR nalog Input ignal Range VCC V I = 100m, V = 0V I = 100m, V = 2.4V 4.5V I = 100m, V = 4.5V R ON ON Resistance (1) I = 100m, V = 0V V I = 100m, V = 3.0V I = 100m, V = 0V V I = 100m, V = 2.3V I = 100m, V = 0V V I = 100m, V = 1.65V I = 100m, V = 0V,1.5V,3.3V 3.3V I = 100m, V = 0V,1.1V,2.5V 2.5V I = 100m, V = 0V,2.4V,4.5V 4.5V I = 100m, V = 0V, 0.7V, 1.8V 1.8V = 1.65V = 2.3V V IH Input High Voltage Logic High Level = 3V V = 4.2V = 5.5V V IL Input Low Voltage Logic Low Level I OFF () I NC(, ), I PWROFF I CC ource Off Leakage Current Channel On Leakage Current Input Leakage Current for Power off Quiescent upply Current =5.5V, V =1V, 4.5V V =1V, 4.5V - = 1.65 to 5.5V = 1.65V = 2.3V = 3V = 4.2V = 5.5V = 3V V 5.5V, 0 V 5.5V =0V -5-5 u ll channels ON or OFF, V = or, I OUT =0 = 3.6V = 5.5V Notes: 1. Measured by voltage drop between and pins at the indicated current through the device. ON resistance is determined by the lower of the voltages on two ports ( or ). 2. Flatness is defined as difference between maximum and minimum value of ON resistance over the specified range of conditions. Guaranteed by design. Capacitance (1) ymbol Parameter Test Conditions Min. Typ. Max. Units C IN Control Input C IO- For Port, witch OFF = 5.0V, f =1 MHz, T =25 C pf C IO-ON For Port, witch ON Notes: 1. Capacitance is characterized but not tested in production V n µ 3
4 witch and C Characteristics (1) Parameter Description Test Conditions upply Voltage Min Typ Max Units t ON Turn on Time ee Figure 1 t OFF Turn off Time ee Figure 1 = 2.7V to 3.6V = 4.5V to 5.5V = 2.7V to 3.6V = 4.5V to 5.5V ns Q Charge Injection C L = 1nF, V GEN = 0V, R GEN =0. ee Figure 2 = 5.0V = 3.3V pc O IRR Off Isolation R L =50, V GEN =0V, R GEN =0, f =1MHz. =1.65V to 5.5V d ee Figure 3 (2) f3d 3d andwidth ee Figure 6 =1.65V to 5.5V MHz T HD Total Harmonic Distortion Notes: 1. Guaranteed by design. 2. Off Isolation = 20 Log 10 [V/V] and is measured in d. R L =600Ω, V IN =0.5Vpp, f=20hz to 20kHz ee Figure 7 =2.7V to 4.2V % 4
5 Test Circuits and Timing Diagrams V IN V OUT V IH Logic Input 50% On Off V IL V OUT t OFF tr<2.5ns tf<2.5ns R L 50Ω C L 35pF witch Output 0V 90% 90% Logic Input t ON C L Include Fixture and tray Capacitance Waveforms inverted for witches that have opposite logic Figure 1. Turn ON/OFF Timing R GEN V OUT Logic Input OFF ON OFF V OUT V GEN Logic Input C L 1nF Q=( V OUT )(C L ) Figure 2. Charge Injection Test 5
6 ignal Generator 50Ω 0V or V IH nalyzer R L 50Ω Figure 3. Off Isolation Capacitance Meter 0V or V IH f=1mhz Figure 4. Channel Off Capacitance Capacitance Meter f=1mhz 0V or V IH Figure 5. Channel On Capacitance 6
7 ignal Generator 50Ω nalyzer 0Vor V IH Figure 6. andwidth ignal Generator 600Ω nalyzer 0Vor V IH Figure 7. Harmonic Distortion 7
8 Mechanical Information T (OT23-5) Note: 1) Controlling dimensions in millimeters. 2) Ref: JEDEC MO-178C/ PKG. DIMENION(MM) YMOL MIN MX b c D E E e 0.95C e L θ 0 8 8
9 C (C70-5) Note: 1) Controlling dimensions in millimeters. 2) Ref: JEDEC MO-203/ PKG. DIMENION(MM) YMOL MIN MX b c D E E e 0.65TYP e L θ 0 8 Ordering Information Notes: Part Number Package Code Package Top Marking PI53167CCEX PI53167CTEX E = Pb-free and Green dding X uffix= Tape/Reel C T Lead Free and Green C70-5 (C) Tape & reel Lead Free and Green OT23-5 (T) Tape & reel re re Pericom emiconductor Corporation Pericom reserves the right to make changes to its products or specifications at any time, without notice, in order to improve design or performance and to supply the best possible product. Pericom does not assume any responsibility for use of any circuitry described other than the circuitry embodied in Pericom product. The company makes no representations that circuitry described herein is free from patent infringement or other rights, of Pericom. 9
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