AOZ6115 High Performance, Low R ON, SPST Analog Switch
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1 OZ6115 High Performance, Low R ON, PT nalog witch General Description The OZ6115 is a high performance single-pole single-throw (PT), low power, TTL-compatible bus switch. The OZ6115 can handle analog and digital signals. ignals with voltages up to V CC (1.65V to 5.5V) can be transmitted in either direction. When the elect pin is HIGH, is connected to the output pin. The path that is open will have a high-impedance state with respect to the output. Features OT-23 5-Lead Package 1.65V to 5.5V V CC operation Low C ON : 18pF pplications udio and Video ignal Routing attery Operated Equipment Communications Circuit Relay Replacement Power Routing Typical pplication OZ6115 IC + Power upply Rev. 1.8 October Page 1 of 9
2 OZ6115 Ordering Information Part Number mbient Temperature Range Package Environmental OZ6115CI -40 C to +85 C OT-23 5-Lead RoH Compliant Green Product O Green Products use reduced levels of Halogens, and are also RoH compliant. Please visit for additional information. Pin Configuration Truth Table 1 5 V CC Logic Input Function 0 No Connection 2 1 Connected to 3 4 OT23-5L (Top View) Rev. 1.8 October Page 2 of 9
3 OZ6115 bsolute Maximum Ratings Exceeding the bsolute Maximum ratings may damage the device. ymbol Parameter Rating V CC upply Voltage -0.5V to + 6V V witch Voltage (1) -0.5V to V CC + 0.5V V IN Input Voltage (1) -0.5V to V CC I IK Minimum Input Diode Current -50m I W witch Current 130m I WPEK Peak witch Current (Pulsed at 1ms, <10% Duty Cycle) 260m T TG torage Temperature Range -65 C to 150 C P D OT23-5 Power Dissipation at 85 C (2) 180mW ED Human ody Model (JED22-114E) 8000V Notes: 1. ignals on, or or exceeding V+ will be clamped by internal diodes. Limit forward diode current to maximum current ratings. 2. ll leads welded or soldered to PC oard. Rev. 1.8 October Page 3 of 9
4 OZ6115 Electrical Characteristics (Continued) Unless otherwise indicated, specifications indicate a temperature range of -40 C to +85 C ymbol Parameter Test Conditions Min. Typ. (1) Max. Units DC CHRCTERITIC V IH Input Voltage High V CC = 2.7V to 3.6V 1.5 V V CC = 4.5V to 5.5V 2.0 V IL Input Voltage Low V CC = 2.7V to 3.6V 0.6 V V CC = 4.5V to 5.5V 0.8 R ON On Resistance V CC = 2.7V, I OUT = 100m, = 1.5V Ω V CC = 4.5V, I OUT = 100m, = 3.5V R FLT On Resistance Flatness V CC = 4.5V, I OUT = 100m, = 0V, 1V, 2V 0.8 Ω I IN Input Leakage Current V IN = 0V or V CC µ I (off) Off tage witch Leakage V CC = 5.5V, = 1V, 4.5V, = 4.5V, 1V n I (on) On tate witch Leakage V CC = 5.5V, = 1V, 4.5V, = floating n POWER UPPLY V CC Power upply Range V I CCQ Quiescent upply Current V CC = 5.5V, V IN = 0V or V CC, I OUT = 0V µ I CCT Increase in I CC per Input V CC = 3.6V, V IN = 2.0V µ V CC = 5.5V, V IN = 2.4V C CHRCTERITIC t ON Turn-On Time = 1.5V, R L =, V CC = 2.7V to 3.6V ns C L = 35pF V CC = 4.5V to 5.5V t OFF Turn-Off Time = 1.5V, R L =, V CC = 2.7V to 3.6V ns C L = 35pF V CC = 4.5V to 5.5V Q Charge Injection C L = 1.0nF, V GE = 0V, V CC = 2.7V to 3.6V 1 pc R GEN = 0Ω V CC = 4.5V to 5.5V 2 NLOG WITCH CHRCTERITIC OIRR Off Isolation R L =, f = 1MHz -70 d W -3d andwidth R L = 300 MHz THD Total Harmonic Distortion V CC = 5V, R L = 600Ω, C L = 50pF, f = 20Hz to 20kHz % CPCITNCE C IN Control Pin Capacitance V CC = 0V, f = 1MHz 2 pf C OFF Port Off Capacitance V CC = 4.5V, f = 1MHz 7.5 pf C ON Port Capacitance When witch Enable V CC = 4.5V, f = 1MHz 18 pf Note: 1. Typical values: Rev. 1.8 October Page 4 of 9
5 OZ6115 C Loading and Waveforms R L C L 35pF Control Input witch Input 0V 0 50% t ON t R = t = 2.5n F t OFF 0.9 x 0.9 x CL Includes Fixture and tray Capacitance Logic input waveform are inverted for switches with opposite logic sense Figure 1. Turn-On/Turn-Off Timing V GEN R GEN Input Control C L IN OFF ON Δ OFF IN OFF ON Q = (Δ )(C L ) OFF Figure 2. Charge Injection nalyzer nalyzer 10nF 10nF Logic Input 0V or Logic Input 0V or Figure 3. andwidth Figure 4. Harmonic Distortion Rev. 1.8 October Page 5 of 9
6 OZ6115 C Loading and Waveforms (Continued) Network nalyzer V IN ource ignal or 0V + Figure 5. Off Isolation 10nF Capacitance Meter f = 1MHz 0V or Figure 6. ON/Off Capacitance Measurement Rev. 1.8 October Page 6 of 9
7 OZ6115 Package Dimensions, OT23-5L 5 D e1 Gauge Plane C eating Plane L L2 E E1 1 θ e b 2 aaa 1 RECOMMENDED LND PTTERN UNIT: mm Dimensions in millimeters ymbols Min b 0.35 C 0.10 D 2.80 E 2.60 E e e1 L 0.30 L2 aaa θ 0 Nom. Max C 1.90 C C Dimensions in inches ymbols 1 2 b C D E E1 e e1 L L2 aaa θ Min Nom C C C Max Notes: 1. Package body sizes exclude mold flash and gate burrs. Mold flash at the non-lead sides should be less than 5 mils. 2. Dimension "L" is measured in gauge plane. 3. Tolerance ±0.10mm (4 mil) unless otherwise specified 4. Refer to JEDEC MO-193C. 5. Controlling dimension is millimeter, converted inch dimensions are not necessarily exact. Rev. 1.8 October Page 7 of 9
8 OZ6115 Tape and Reel Dimensions, OT23-5L Tape P2 P1 D0 D1 K0 0 E2 E1 E T P0 0 UNIT: mm Package OT-23 5 & 6L LP 0 0 K0 D0 D1 E E1 E2 P0 P1 P2 T ±0.10 ± ± ± /-0.00 ± ± ± ±0.10 Feeding Direction 4.00 ± ± ±0.03 Reel W1 R M N K J H UNIT: mm Tape ize Reel ize M N W1 H K R J 8mm ø177.8 ø177.8 Max Min / / Min 10.1 Min ±0.1 Leader/Trailer and Orientation Trailer Tape 300mm min. Components Tape Orientation in Pocket Leader Tape 500mm min. Rev. 1.8 October Page 8 of 9
9 OZ6115 Part Marking OZ6115CI R2D 11 ssembly Lot Code Part Number Code Week & Year Code ssembly Location 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. 1.8 October Page 9 of 9
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