A product Line of Diodes Incorporated. Description

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1 product Line of PI53157 OTiny TM Low Voltage Dual PDT nalog witch 2:1 Mux/DeMux Bus witch Features CMO Technology for Bus and nalog pplications Low On-Resistance: 8Ω at 3.0V Wide Range: 1.65V to 5.5V Rail-to-Rail ignal Range Control Input Overvoltage Tolerance: 5.5V min. Fast Transition peed: 5.2ns max. at 5V High Off Isolation: 57dB at 10MHz 54dB (10MHz) Crosstalk Rejection Reduces ignal Distortion Break-Before-Make witching High Bandwidth: 250 MHz Extended Industrial Temperature Range: 40 C to 85 C Improved Direct Replacement for NC7B3157 Packaging (Pb-free & Green available): - 6-pin C70 (C) Description The PI53157 is a high-bandwidth, fast single-pole double-throw (PDT) CMO switch. It can be used as an analog switch or as a low-delay bus switch. pecified over a wide operating power supply voltage range, 1.65V to 5.5V, the PI53157 has a maximum ON resistance of 12-ohms at 1.65V, 9-ohms at 2.3V & 6-ohms at 4.5V. Break-before-make switching prevents both switches being enabled simultaneously. This eliminates signal disruption during switching. The control input,, tolerates input drive signals up to 5.5V, independent of supply voltage. PI53157 is an improved direct replacement for the NC7B3157. pplications Cell Phones PDs Portable Instrumentation Battery Powered Communications Computer Peripherals Pin Description Pin Number Name Description 1 B1 Data port 2 Ground 3 B 0 Data port (Normally Closed) 4 Common Output/Data port 5 V CC Positive Power upple 6 Logic Controll Connection Diagram B Logic Function Table Logic Input(s) Function B B 0 Connection to 1 B 0 Connected to 1 ll trademarks are property of their respective owners.

2 product Line of PI53157 bsolute Maximum Ratings (1) upply Voltage V to +7V DC witch Voltage (V ) (2) V to +0.5V DC Input Voltage (V IN ) (2) V to +7.0V DC Output Current (V OUT ) m DC or Ground Current (I CC /I )... ±100m torage Temperature Range (T TG ) C to +150 C Junction Temperature under Bias (T J ) C Junction Lead Temperature (T L ) (oldering, 10 seconds) C Power Dissipation (P D +85 C mW Recommended Operating Conditions (3) upply Voltage Operating ( ) V to 5.5V Control Input Voltage (V IN )....0V to witch Input Voltage (V IN )...0V to Output Voltage (V OUT )...0V to Operating Temperature (T ) C to +85 C Input Rise and Fall Time (t r,t f ) Control Input = 2.3V - 3.6V... 0ns/V to 10ns/V Control Input = 4.5V - 5.5V... 0ns/V to 5ns/V Thermal Resistance (θ J ) C/W 1..bsolute Maximum Ratings may cause permanent damage to the device. This is a stress only rating and operation of the device at these or any other conditions beyond those indicated in the operational sections of this specification is not implied. 2..The input and output negative voltage ratings may be exceeded if the inut and output diode current ratings are observed. 3. Control input must be held HIGH or LOW; it must not float. DC Electrical Characteristics (Over the Operating temperature range, T = 40 C to 85 C) Parameters Description Test Conditions upply Voltage Temp Min. Typ. Max. Units V IR nalog Input ignal Range On-Resistance (4) T = 25ºC & -40ºC to 85ºC 0 V I O = 30m, V IN = 0V 4 6 I O = -30m, V IN = 2.4V 4.5V T = 25ºC 5 8 I O = -30m, V IN = 4.5V 8 13 I O = 30m, V IN = 0V 6 I O = -30m, V IN = 2.4V 4.5V T = -40ºC to 85ºC 8 I O = -30m, V IN = 4.5V 13 I O = 24m, V IN = 0V V T = 25ºC I O = -24m, V IN = 3.0V I O = 24m, V IN = 0V T 3.0V = -40ºC to 8 I O = -24m, V IN = 3.0V 85ºC 19 Ω I O = 24m, V IN = 0V V T = 25ºC I O = -24m, V IN = 2.3V I O = 24m, V IN = 0V T 2.3V = -40ºC to 9 I O = -24m, V IN = 2.4V 85ºC 24 I O = 24m, V IN = 0V V T = 25ºC I O = -24m, V IN = 1.65V I O = 24m, V IN = 0V T 1.65V = -40ºC to 12 I O = -24m, V IN = 1.65V 85ºC 39 ll trademarks are property of their respective owners. 2

3 product Line of PI53157 DC Electrical Characteristics (Over the Operating temperature range, T = 40 C to 85 C) (continued) Parameters Description Test Conditions upply Voltage Temp Min. Typ. Max. Units F V IH V IL I OFF I CC On-Resistance Match Between Channels (4, 5, 6) On-Resistance Flatness (4, 5, 7) Input High Voltage Input Low Voltage Input Leakage Curent OFF tate Leakage Current Quiescent upply Current I = -30m, V BN = 3.15V 4.5V 0.15 I = -24m, V BN = 2.1V 3.0V 0.2 T = 25ºC I = -8m, V BN = 1.6V 2.3V 0.3 I = -4m, V BN = 1.15V 1.65V 0.3 I = -30m, 0 V BN 5.0V I = -24m, 0 V BN 3.3V 12 T = 25ºC I = -8m, 0 V BN 2.5V 22 I = -4m, 0 V BN 1.8V 90 Logic High Level Logic LowLevel V CC = 1.65V to 1.95V T = 25 C & 40 C V CC = 2.3V to 5.5V to 85 C V CC = 1.65V to 1.95V V CC = 2.3V to 5.5V 0 V IN 5.5V V CC 0V 5.5V 0 V IN 5.5V ll Channels ON or OFF, V IN = or, I OUT = 0 V CC 1.65V 5.5V V CC = 5.5V 0.75 V CC 0.7 V CC V CC 0.25 V CC T = 25ºC ±0.1 T = -40ºC to 85ºC ±1.0 T = 25ºC ±0.1 T = -40ºC to 85ºC ±10 T = 25ºC 1 T = -40ºC to 85ºC 4. Measured by voltage drop between and B pins at the indicated current through the device. On-Resistance is determined by the lower of the voltages on two ports ( or B). 5. Parameter is characterized but not tested in production. 6. Δ = max min. measured at identical, temperature and voltage levels. 7. Flatness is defined as difference between maximum and minimum value of On-Resistance over the specified range of conditions. 8. Guaranteed by design. Capacitance (12) Parameters Description Test Conditions upply Voltage Temp Min. Typ. Max. Units C IN Controll Input 2.3 C IO-B For B Port, witch OFF V CC = 5.0V T = 25ºC f = 1 MHz (12) 6.5 C IO-ON For Port, witch ON Ω V µ pf ll trademarks are property of their respective owners. 3

4 product Line of witch and C Characteristics PI53157 Parameters Description Test Conditions upply Voltage Temp Min. Typ. Max. Units t PLH t PHL t PZL t PZH t PZL t PZH t PLZ t PHZ t PLZ t PHZ t BM Q O IRR X TLK Propagation Delay: to Bn Output Enable Turn ON Time: to Bn Output Enable Turn ON Time: to Bn Output Disable- Turn OFF Time: to Bn Output Disable- Turn OFF Time: to Bn Break Before Make Time Charge Injection Off Isolation Crosstalk Isolation ee test circut diagram 1 and 2 V I Open (10) V CC = 2.3V to 2.7V 1.2 V CC = 3.0V to 3.6V T = 25ºC & -40ºC to 85ºC 0.8 V CC = 4.5V to 5.5V 0.3 V CC = 1.65V to 1.95V ee test circut diagram 1 and 2 V I = 2 V CC for t PZL, V I = 0V for t PZH V CC = 2.5V ee test circut diagram 1 and 2 V I = 2 V CC for t PZL, V I = 0V for t PZH 7 23 V CC = 2.3V to 2.7V T = 25ºC V CC = 3.0V to 3.6V V CC = 4.5V to 5.5V V CC = 3.3V T = 25ºC & 14 V CC = 3.0V to 3.6V -40ºC to 85ºC 7.6 V CC = 4.5V to 5.5V 5.7 V CC = 1.65V to 1.95V ee test circut diagram 1 and 2 V I = 2 V CC = 2.3V to 2.7V 2 7 T V CC for t PZL, V I = = 25ºC V CC = 3.0V to 3.6V V for t PZH V CC = 4.5V to 5.5V V CC = 2.5V 13 ee test circut diagram 1 and 2 V I = 2 V CC = 3.3V T = 25ºC & 7.5 V CC for t PZL, V I = V CC = 3.0V to 3.6V -40ºC to 85ºC 5.3 0V for t PZH V CC = 4.5V to 5.5V 3.8 ee Test Circut diagram 9. (9) V CC = 2.5V 0.5 V CC = 3.3V T = 25ºC & 0.5 V CC = 3.0V to 3.6V -40ºC to 85ºC 0.5 V CC = 4.5V to 5.5V 0.5 C L = 0.1nF, V GEN = V CC = 5.0V 7 0V, R GEN = 0Ω, ee test circut 4 V CC = 3.3V T = 25ºC 3 R L = 50Ω, V GEN = 0V, R GEN = 0Ω, ee test circut V CC = 1.65V to 5.5V T = 25ºC (11) ee test circut 6 V CC = 1.65V to 5.5V T = 25ºC -54 f 3dB -3dB Bandwidth ee test circut 9 V CC = 1.65V to 5.5V T = 25ºC 250 MHz 9. Guaranteed by design. 10. Guaranteed by design but not production tested. The device contributes no other propagation delay other than the RC delay of the switch On-Resistance and the 50pF load capacitance, whne driven by an ideal voltage source with zero output impedance. 11. Off Isolation = 20 Log 10 [ V / V Bn ] and is measured in db. 12. T = 25 C, f = 1MHz. Capacitance is characterized but not tested in production. 24 ns pc db ll trademarks are property of their respective owners. 4

5 product Line of PI53157 Test Circuits and Timing Diagrams From Output Under Test CL 10pF Figure 1. C Test Circuit tr = 2.5ns WITCH INPUT OUTPUT tr = 2.5ns 90% 90% CONTROL 90% 90% INPUT 50% 50% 10% 10% 50% 50% 10% 10% t W t PLH t PHL 50% 50% V OH V OL tr = 2.5ns OUTPUT OUTPUT t PZL t PZH 50% 50% tr = 2.5ns t PLZ V OL +0.3V V OL t PHZ V OH V TRI V OH 0.3V V TRI Figure 2. C Waveforms V IN B 0 B 1 V OUT Logic Input RL C L V OUT 0.9 x V OUT Logic Input t D Figure 3. Break Before Make Interval Timing ll trademarks are property of their respective owners. 5

6 product Line of PI53157 V GE R GEN B N R L 1MW Logic V OUT Input OFF ON OFF C L 100pF DV OUT Logic Input Q = (DV OUT)(CL) Figure 4. Charge Injection Test Logic Input 0V or B IH ignal Generator 0dBm B 0 B 1 nalyzer B N nalyzer Figure 5. Off Isolation Figure 6. Crosstalk VDD Capacitance Meter Logic Input 0V or B IH Capacitance Meter f = 1 MHz VDD Logic Input 0V or BIH f = 1 MHz B N BN Figure 7. Channel Off Capacitance Figure 8. Channel On Capacitance ll trademarks are property of their respective owners. 6

7 product Line of PI53157 ignal Generator 0dBm B N 0 Logic Input 0V or Figure 9. Bandwidth ll trademarks are property of their respective owners. 7

8 product Line of PI53157 Packaging Mechanical: 6-Pin C70 D θ E1 E PKG. DIMENION(MM) L YMBOL Min Max PIN1 e c b c D E E e 0.65 BC 2 L θ b DTE: 03/29/16 1. Comply with MO-203C/B,except b Max,D Min and D Max. 2.PCKGE OUTLINE DIMENION DO NOT INCLUDE MOLD FLH ND METL BURR DECRIPTION: 6-Pin, OT363 (C70) PCKGE CODE: C (C6) DOCUMENT CONTROL#: PD-1902 REVIION:B For latest package info. please check: Ordering Information Ordering Code Packaging Code Package Description Top Mark PI53157CEX C 6-pin, OT363 (C70), Tape & Reel ZM Thermal characteristics can be found on the company web site at E = Pb-free and Green dding an X suffix = Tape/Reel ll trademarks are property of their respective owners. 8

9 product Line of PI53157 IMPORTNT NOTICE DIODE INCORPORTED MKE NO WRRNTY OF NY KIND, EXPRE OR IMPLIED, WITH REGRD TO THI DOCUMENT, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WRRNTIE OF MERCHNTBILITY ND FITNE FOR PRTICULR PURPOE (ND THEIR EQUIVLENT UNDER THE LW OF NY JURIDICTION). and its subsidiaries reserve the right to make modifications, enhancements, improvements, corrections or other changes without further notice to this document and any product described herein. does not assume any liability arising out of the application or use of this document or any product described herein; neither does convey any license under its patent or trademark rights, nor the rights of others. ny Customer or user of this document or products described herein in such applications shall assume all risks of such use and will agree to hold and all the companies whose products are represented on website, harmless against all damages. does not warrant or accept any liability whatsoever in respect of any products purchased through unauthorized sales channel. hould Customers purchase or use products for any unintended or unauthorized application, Customers shall indemnify and hold and its representatives harmless against all claims, damages, expenses, and attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized application. Products described herein may be covered by one or more United tates, international or foreign patents pending. Product names and markings noted herein may also be covered by one or more United tates, international or foreign trademarks. This document is written in English but may be translated into multiple languages for reference. Only the English version of this document is the final and determinative format released by. LIFE UPPORT products are specifically not authorized for use as critical components in life support devices or systems without the express written approval of the Chief Executive Officer of. s used herein:. Life support devices or systems are devices or systems which: 1. are intended to implant into the body, or 2. support or sustain life and whose failure to perform when properly used in accordance with instructions for use provided in the labeling can be reasonably expected to result in significant injury to the user. B. critical component is any component in a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or to affect its safety or effectiveness. Customers represent that they have all necessary expertise in the safety and regulatory ramifications of their life support devices or systems, and acknowledge and agree that they are solely responsible for all legal, regulatory and safety-related requirements concerning their products and any use of products in such safety-critical, life support devices or systems, notwithstanding any devices- or systems-related information or support that may be provided by. Further, Customers must fully indemnify and its representatives against any damages arising out of the use of products in such safety-critical, life support devices or systems. Copyright 2016, ll trademarks are property of their respective owners. 9

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