AOZ Ω Low-Voltage Dual-SPDT Analog Switch. General Description. Features. Applications

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1 OZ Ω Low-Voltage Dual-PDT nalog witch General Description The OZ6233 is a 0.35Ω low-voltage Dual ingle Pole Double Throw (PDT) analog switch. The OZ6233 operates from a single 1.65V to 3.6V supply. It features an ultra-low On Resistance of 0.35Ω at a 2.7V supply and 25 C. The OZ6233 is designed for break-beforemake operation. Features Typical 0.35Ω On Resistance (R ON ) for 2.7V supply 0.15Ω maximum R ON flatness for 2.7V supply 1.6mm x 2.1mm QFN package Broad V CC operating range Low THD (0.02% typical for 32Ω load) High current handling capability (350m continuous current under 3.3V supply) pplications Cell phone PD Portable media player Typical pplication Pin Configuration OZ6233 Earpiece 1B0 Integrated Base Band Processor 1 2 1B1 2B0 2B Internal peaker Rev. 2.1 February Page 1 of 11

2 OZ6233 Ordering Information Part Number mbient Temperature Range Package Environmental OZ6233QI -40 C to 85 C QFN-10 RoH Compliant Green Product O Green Products use reduced levels of Halogens, and are also RoH compliant. Please visit for additional information. Pin Configuration VCC 1B B B B QFN-10 (Top Thru View) Pin Description Pin Name Function 1, 2, 1B0, 1B1, 2B0, 2B1 Data Ports 1, 2 Control Input Truth Table Logic Input Function 0 B0 Connected to 1 B1 Connected to Rev. 2.1 February Page 2 of 11

3 OZ6233 bsolute Maximum Ratings Exceeding the bsolute Maximum ratings may damage the device. ymbol Parameter Rating V CC upply Voltage -0.5V to 5.5V V witch Voltage (1) -0.5 to V CC 0.5V V IN Input Voltage (1) -0.5 to V CC I IK Minimum Input Diode Current (2) -50m I W witch Current 350m I WPEK Peak witch Current (Pulsed at 1ms duration, <10% Duty Cycle) 500m T TG torage Temperature Range -65 C to 150 C T J Maximum Junction Temperature 150 C T L Lead Temperature (oldering, 10 seconds) 260 C ED Human Body Model 8000V Charged Device Model 1000V Recommend Operating Ratings The device is not guaranteed to operate beyond the Maximum Operating Ratings. ymbol Parameter Rating V CC upply Voltage 1.65V to 3.6V V IN Control Input Voltage (3) 0V to V CC V W witch Input Voltage 0V to V CC T Operating Temperature -40 C to 85 C Notes: 1. The input and output negative voltage ratings may be exceeded if the input and output diode current ratings are observed. 2. Negative current should not exceed minimum negative value. 3. Unused inputs must be held HIGH or LOW. They may not float. Rev. 2.1 February Page 3 of 11

4 OZ6233 DC Electrical Characteristics ll typical values are at 25 C unless otherwise specified. ymbol Parameter Conditions V CC (V) Min. Typ. Max. Units V IH Input Voltage HIGH 2.7 to V 2.3 to to x V CC V IL Input Voltage LOW 2.7 to V 2.3 to to x V CC I IN Control Input Leakage V IN = 0V to V CC 1.65 to µ I NO(), I NC() I (ON) Off-Leakage Current of Port nb 0 and nb 1 On Leakage Current of Port 1 and 2 R ON witch On Resistance (4) ee Figure 1 R ON On Resistance Matching Between Channels (5) n = 0.3V, 3.3V, nb0 or nb1 = 0.3V, 3.3V or floating n = 0.3V, 2.4V, nb0 or nb1 = 0.3V, 2.4V or floating n = 0.3V, 1.65V, nb0 or nb1 = 0.3V, 1.65V or floating n = 0.3V, 3.3V, nb0 or nb1 = 0.3V, 3.3V or floating n = 0.3V, 2.4V, nb0 or nb1 = 0.3V, 2.4V or floating n = 0.3V, 1.65V, nb0 or nb1 = 0.3V, 1.65V or floating I OUT = 100m, nb0 or nb 1 = 0V, 0.7V, 2.0V, 2.7V I OUT = 100m, nb0 or nb1 = 0V, 0.7V, 1.6V, 2.3V I OUT = 100m, nb0 or nb1 = 0.8V I OUT = 100m, nb0 or nb1 = 0.7V n n Ω Ω R FLT(ON) On Resistance Flatness (6) I OUT = 100m, nb0 or Ω nb1 = 0V to V CC I CC Quiescent upply Current V IN = 0V or V CC, I OUT = n I CCT Increase in I CC per Input V IN = 1.8V µ V IN = 2.6V 5 Notes: 4. On resistance is determined by the voltage drop between and B pins at the indicated current through the switch. 5. R ON = R ONmax R ONmin measured at identical V CC, temperature, and voltage. 6. Flatness is defined as the difference between the maximum and minimum value of R ON over the specified range of conditions. Rev. 2.1 February Page 4 of 11

5 OZ6233 C Electrical Characteristics ll typical values are at 25 C unless otherwise specified. ymbol Parameter Conditions V CC (V) Min. Typ. Max. Units t ON Turn-On Time nb0 or nb1 = 1.5V, R L =, = 35pF t Turn-Off Time nb0 or nb1 = 1.5V, R L =, = 35pF t BBM Break-Before-Make Time nb0 or nb1 = 1.5V, R L =, = 35pF Q Charge Injection = 100pF, V GEN = 0V, R GEN = 0Ω OIRR Off Isolation f = 100kHz, R L =, = 5pF (tray) Xtalk Crosstalk f = 100kHz, R L =, = 5pF (tray) 2.7 to ns 2.3 to to to ns 2.3 to to to ns 2.3 to to to pc 1.65 to db 1.65 to db BW -3dB Bandwidth R L = 1.65 to MHz THD Total Harmonic R L = 32Ω, V IN = 2V pk-pk, 2.7 to % Distortion f = 20Hz to 20kHz R L = 32Ω, V IN = 1.5V pk-pk, 2.3 to f = 20Hz to 20kHz R L = 32Ω, V IN = 1.2V pk-pk, f = 20Hz to 20kHz 1.65 to Capacitance ymbol Parameter Conditions V CC (V) Min. Typ. Max. Units C IN Control Pin Input Capacitance f = 1MHz pf C B Port Off Capacitance f = 1MHz pf C ON Port On Capacitance f = 1MHz pf Rev. 2.1 February Page 5 of 11

6 OZ6233 Typical Performance Characteristics 500 R DON at Hot (85 C) Room (25 C) R DON (mω) 250 Cold (-40 C) Vb (V) Figure 1. witch On Resistance Rev. 2.1 February Page 6 of 11

7 OZ6233 oading and Waveforms V B Control Input 0V 50% t R = t = 2.5n F R L 35pF witch Output 0 t ON t 0.9 x 0.9 x Includes Fixture and tray Capacitance Logic input waveform are inverted for switches with opposite logic sense Figure 1. Turn-On/Turn-Off Timing V B B0 B 1 Control Input 0V 50% t R = t = 2.5n F R L 35pF 0.9 x V OUT Includes Fixture and tray Capacitance t D Figure 2. Break-Before-Make Timing` B0 V IN Network nalyzer ource ignal B0 B 1 V IN Network nalyzer ource ignal or 0V or 0V Figure 3. Off Isolation Figure 4. Crosstalk Rev. 2.1 February Page 7 of 11

8 OZ6233 oading and Waveforms (continued) V GEN R GEN V B 0 or B 1 R GEN GEN Input Control B 0 orb 1 Input Control Δ IN ON IN ON ON IN Q = (Δ )( ) Δ Figure 5. Charge Injection IN ON Q = (Δ )( ) 10nFigure 5. Charge Injection Network nalyzer Capacitance Meter f = 1MHz Capacitance Meter f = 1MHz B 0 or B1 10nF 0V or 0V or Figure 6. ON/Off Capacitance Measurement B 0 or B1 ource Network nalyzer ignal ource ignal BN Figure 7. Bandwidth BN Figure 6. ON/Off Capacitance Measurement udio nalyzer 600Ω ource ignal udio nalyzer 600Ω 600Ω BN ource ignal Includes Fixture and tray Capacitance 600Figure Ω 8. Harmonic Distortion BN Figure 7. Bandwidth Includes Fixture and tray Capacitance Figure 8. Harmonic Distortion Rev. 2.1 February Page 8 of 11

9 OZ6233 Package Dimensions, QFN-10 E b e D L b1 D/2 Pin #1 ID Dot TOP BOTTOM VIEW Pin #1 ID L1 Dimensions in millimeters Dimensions in inches 1 IDE VIEW (2x) (2x) 0.25 ymbols 1 2 b b1 D E e L L1 Min. Nom. Max. ymbols REF REF BC REF. b b1 D E e L L1 Min. Nom. Max REF REF BC REF Pin # (2x) Unit: mm Note: 1. Controlling dimension is millimeter. Converted inch dimensions are not necessarily exact. Rev. 2.1 February Page 9 of 11

10 OZ6233 Tape and Reel Dimensions, QFN-10 Carrier Tape T D1 P2 P1 E1 B0 E2 E K0 0 D0 P0 Feeding Direction UNIT: mm Package QFN 2.1 x 1.6 (8mm) B K D D1 1.5 ±0.10 E /-0.10 E ±0.10 E P ±0.10 P ±0.10 P T ±0.02 Reel W1 G V M N K R H UNIT: mm W Tape ize 8mm Reel ize ø178 M ø178 ±0.5 N ø55 ±1 W /0 W Max. H ø13.0 ±0.5 K 10.1 Max. 2.0 ±0.5 G N/ R N/ V N/ Leader/Trailer and Orientation Trailer Tape 300mm min. or 75 empty sockets Components Tape Orientation in Pocket Leader Tape 500mm min. or 125 empty sockets Rev. 2.1 February Page 10 of 11

11 OZ6233 Part Marking OZ6233QI (QFN-10) Product Number Code R19 ssembly Lot Code Week and Year Code This datasheet contains preliminary data; supplementary data may be published at a later date. lpha & Omega emiconductor reserves the right to make changes at any time without notice. LIFE UPPORT POLICY LPH & OMEG EMICONDUCTOR PRODUCT RE NOT UTHORIZED FOR UE CRITICL COMPONENT IN LIFE UPPORT DEVICE OR YTEM. s used herein: 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body or (b) support or sustain life, and (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in a significant injury of the user. 2. critical component in any component of a life support, device, or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness. Rev. 2.1 February Page 11 of 11

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