2.1 Ω On Resistance, ±15 V/+12 V/±5 V, ADG1419. Data Sheet FEATURES FUNCTIONAL BLOCK DIAGRAMS APPLICATIONS GENERAL DESCRIPTION PRODUCT HIGHLIGHTS

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1 ata Sheet 2. Ω On Resistance, ±5 V/+2 V/±5 V, icmos SPT Switch AG49 FEATURES 2. Ω on resistance.5 Ω maximum on-resistance flatness at 25 C Up to 39 ma continuous current Fully specified at +2 V, ±5 V, ±5 V No VL supply required 3 V logic-compatible inputs Rail-to-rail operation 8-lead MSOP and 8-lead, 3 mm 2 mm LFCSP APPLICATIONS Automatic test equipment ata acquisition systems Battery-powered systems Relay replacements Sample-and-hold systems Audio signal routing Video signal routing Communication systems GENERAL ESCRIPTION The AG49 is a monolithic icmos device containing a single-pole/double-throw (SPT) switch. An EN input on the LFCSP is used to enable or disable the device. When disabled, all channels are switched off. The industrial CMOS (icmos) modular manufacturing process combines high voltage, complementary metal-oxide semiconductor (CMOS) and bipolar technologies. It enables the development of a wide range of high performance analog ICs capable of 33 V operation in a footprint that no other generation of high voltage parts has achieved. Unlike analog ICs using conventional CMOS processes, icmos components can tolerate high supply voltages while providing increased performance, dramatically lower power consumption, and reduced package size. The on-resistance profile is very flat over the full analog input range, ensuring excellent linearity and low distortion when switching audio signals. The icmos construction ensures ultralow power dissipation, making the part ideally suited for portable and battery-powered instruments. FUNCTIONAL BLOCK IAGRAMS AG49 LFCSP ECOER IN EN SWITCHES SHOWN FOR A LOGIC INPUT. Figure. 8-Lead LFCSP (CP-8-4) IN AG49 MSOP SWITCHES SHOWN FOR A LOGIC INPUT. Figure 2. 8-Lead MSOP (RM-8) Each switch conducts equally well in both directions when on and has an input signal range that extends to the supplies. In the off condition, signal levels up to the supplies are blocked. The AG49 exhibits break-before-make switching action for use in multiplexer applications. PROUCT HIGHLIGHTS. 2.4 Ω maximum on resistance at 25 C. 2. Minimum distortion V logic-compatible digital inputs: VINH = 2. V, VINL =.8 V. 4. No VL logic power supply required lead MSOP and 8-lead, 3 mm 2 mm LFCSP Rev. A ocument Feedback Information furnished by Analog evices is believed to be accurate and reliable. However, no responsibility is assumed by Analog evices for its use, nor for any infringements of patents or other rights of third parties that may result from its use. Specifications subject to change without notice. No license is granted by implication or otherwise under any patent or patent rights of Analog evices. Trademarks and registered trademarks are the property of their respective owners. One Technology Way, P.O. Box 96, Norwood, MA , U.S.A. Tel: Analog evices, Inc. All rights reserved. Technical Support

2 AG49* PROUCT PAGE QUICK LINKS Last Content Update: 2/23/27 COMPARABLE PARTS View a parametric search of comparable parts. EVALUATION KITS Evaluation Board for 8 lead MSOP evices in the Switch/ Mux Portfolio OCUMENTATION ata Sheet AG49: 2. Ω On Resistance, ±5 V/+2 V/±5 V icmos SPT Switch ata Sheet User Guides UG-893: Evaluating the 8-Lead MSOP evices in the Switch/Mux Portfolio TOOLS AN SIMULATIONS AG49 IBIS Model REFERENCE ESIGNS CN359 REFERENCE MATERIALS Informational icmos Technology Enabling the +/-V World Product Selection Guide Switches and Multiplexers Product Selection Guide ESIGN RESOURCES AG49 Material eclaration PCN-PN Information Quality And Reliability Symbols and Footprints ISCUSSIONS View all AG49 EngineerZone iscussions. MPLE AN BUY Visit the product page to see pricing options. TECHNICAL SUPPORT Submit a technical question or find your regional support number. OCUMENT FEEBACK Submit feedback for this data sheet. This page is dynamically generated by Analog evices, Inc., and inserted into this data sheet. A dynamic change to the content on this page will not trigger a change to either the revision number or the content of the product data sheet. This dynamic page may be frequently modified.

3 AG49 TABLE OF CONTENTS Features... Applications... Functional Block iagrams... General escription... Product Highlights... Revision History... 2 Specifications... 3 ±5 V ual Supply ingle Supply... 4 ±5 V ual Supply... 5 Continuous Current Per Channel, S or... 6 ata Sheet Absolute Maximum Ratings...7 Thermal Resistance...7 ES Caution...7 Pin Configurations and Function escriptions...8 Typical Performance Characteristics...9 Test Circuits... 2 Terminology... 4 Outline imensions... 5 Ordering Guide... 5 REVISION HISTORY 6/26 Rev. to Rev. A Changes to Table eleted Table 9; Renumbered Sequentially... 8 Change to Figure /29 Revision : Initial Version Rev. A Page 2 of 6

4 ata Sheet AG49 SPECIFICATIONS ±5 V UAL SUPPLY V = +5 V ± %, VSS = 5 V ± %, GN = V, unless otherwise noted. Table. Parameter 25 C 4 C to +85 C 4 C to +25 C Unit Test Conditions/Comments ANALOG SWITCH Analog Signal Range V to VSS V On Resistance, RON 2. Ω typ VS = ± V, IS = ma; see Figure Ω max V = +3.5 V, VSS = 3.5 V On-Resistance Match Between.5 Ω typ VS = ± V, IS = ma Channels, RON Ω max On-Resistance Flatness, RFLAT (ON).4 Ω typ VS = ± V, IS = ma Ω max LEAKAGE CURRENTS V = +6.5 V, VSS = 6.5 V Source Off Leakage, IS (Off) ±. na typ VS = ± V, VS = ± V; see Figure 23 ±.5 ±2 ±75 na max rain Off Leakage, I (Off) ±.2 na typ VS = ± V, VS = ± V; see Figure 23 ±.6 ±3 ± na max Channel On Leakage, I, IS (On) ±.2 na typ VS = V = ± V; see Figure 24 ± ±3 ± na max IGITAL INPUTS Input High Voltage, VINH 2. V min Input Low Voltage, VINL.8 V max Input Current, IINL or IINH.5 μa typ VIN = VGN or V ±. μa max igital Input Capacitance, CIN 4 pf typ YNAMIC CHARACTERISTICS Transition Time, ttransition 3 ns typ RL = 3 Ω, CL = 35 pf ns max VS = + V; see Figure 25 ton (EN) 85 ns typ RL = 3 Ω, CL = 35 pf 25 4 ns max VS = V; see Figure 27 toff (EN) 5 ns typ RL = 3 Ω, CL = 35 pf ns max VS = V; see Figure 27 Break-Before-Make Time elay, t 5 ns typ RL = 3 Ω, CL = 35 pf 8 ns min VS = VS2 = V; see Figure 26 Charge Injection 6 pc typ VS = V, RS = Ω, CL = nf; see Figure 28 Off Isolation 64 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 29 Channel-to-Channel Crosstalk 64 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 3 Total Harmonic istortion Plus Noise (TH + N).6 % typ RL = kω, 5 V rms, f = 2 Hz to 2 khz; see Figure 32 3 db Bandwidth 35 MHz typ RL = 5 Ω, CL = 5 pf; see Figure 3 Insertion Loss.6 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 3 CS (Off) 9 pf typ f = MHz; VS = V C (Off) 44 pf typ f = MHz; VS = V C, CS (On) 4 pf typ f = MHz; VS = V Rev. A Page 3 of 6

5 AG49 ata Sheet Parameter 25 C 4 C to +85 C 4 C to +25 C Unit Test Conditions/Comments POWER REQUIREMENTS V = +6.5 V, VSS = 6.5 V I.2 μa typ igital inputs = V or V. μa max I, 8-Lead MSOP 58 μa typ igital inputs = 5 V 95 μa max I, 8-Lead LFCSP 2 μa typ igital inputs = 5 V 9 μa max ISS.2 μa typ igital inputs = V, 5 V, or V. μa max V/VSS ±4.5/±6.5 V min/max Ground = V Guaranteed by design, not subject to production test. +2 INGLE SUPPLY V = 2 V ± %, VSS = V, GN = V, unless otherwise noted. Table 2. Parameter 25 C 4 C to +85 C 4 C to +25 C Unit Test Conditions/Comments ANALOG SWITCH Analog Signal Range V to V V On Resistance, RON 4 Ω typ VS = V to V, IS = ma; see Figure Ω max V = +.8 V, VSS = V On-Resistance Match Between.8 Ω typ VS = V to V, IS = ma Channels, RON Ω max On-Resistance Flatness, RFLAT (ON).2 Ω typ VS = V to V, IS = ma Ω max LEAKAGE CURRENTS V = +3.2 V, VSS = V Source Off Leakage, IS (Off) ±. na typ VS = V/ V, V = V/ V; see Figure 23 ±.5 ±2 ±75 na max rain Off Leakage, I (Off) ±.2 na typ VS = V/ V, V = V/ V; see Figure 23 ±.6 ±3 ± na max Channel On Leakage, I, IS (On) ±.2 na typ VS = V = V or V; see Figure 24 ± ±3 ± na max IGITAL INPUTS Input High Voltage, VINH 2. V min Input Low Voltage, VINL.8 V max Input Current, IINL or IINH.5 μa typ VIN = VGN or V ±. μa max igital Input Capacitance, CIN 4 pf typ YNAMIC CHARACTERISTICS Transition Time, ttransition 2 ns typ RL = 3 Ω, CL = 35 pf ns max VS = 8 V; see Figure 25 ton (EN) 45 ns typ RL = 3 Ω, CL = 35 pf ns max VS = 8 V; see Figure 27 toff (EN) 3 ns typ RL = 3 Ω, CL = 35 pf ns max VS = 8 V; see Figure 27 Break-Before-Make Time elay, t 55 ns typ RL = 3 Ω, CL = 35 pf 33 ns min VS = VS2 = 8 V; see Figure 26 Charge Injection 3 pc typ VS = 6 V, RS = Ω, CL = nf; see Figure 28 Off Isolation 6 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 29 Rev. A Page 4 of 6

6 ata Sheet AG49 Parameter 25 C 4 C to +85 C 4 C to +25 C Unit Test Conditions/Comments Channel-to-Channel Crosstalk 6 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 3 3 db Bandwidth 95 MHz typ RL = 5 Ω, CL = 5 pf; see Figure 3 Insertion Loss.3 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 3 CS (Off) 32 pf typ f = MHz; VS = 6 V C (Off) 72 pf typ f = MHz; VS = 6 V C, CS (On) 23 pf typ f = MHz; VS = 6 V POWER REQUIREMENTS V = 3.2 V I. μa typ igital inputs = V or V. μa max I, 8-Lead MSOP 58 μa typ igital inputs = 5 V 95 μa max I, 8-Lead LFCSP 2 μa typ igital inputs = 5 V 9 μa max V 5/6.5 V min/max Ground = V, VSS = V Guaranteed by design, not subject to production test. ±5 V UAL SUPPLY V = +5 V ± %, VSS = 5 V ± %, GN = V, unless otherwise noted. Table 3. Parameter 25 C 4 C to +85 C 4 C to +25 C Unit Test Conditions/Comments ANALOG SWITCH Analog Signal Range V to VSS V On Resistance, RON 4.5 Ω typ VS = ±4.5V, IS = ma; see Figure Ω max V = +4.5 V, VSS = 4.5 V On-Resistance Match Between. Ω typ VS = ±4.5V, IS = ma Channels, RON Ω max On-Resistance Flatness, RFLAT (ON).3 Ω typ VS = ±4.5 V, IS = ma Ω max LEAKAGE CURRENTS V = +5.5 V, VSS = 5.5 V Source Off Leakage, IS (Off) ±. na typ VS = ±4.5 V, V = 4.5 V; see Figure 23 ±.5 ±2 ±75 na max rain Off Leakage, I (Off) ±. na typ VS = ±4.5 V, V = 4.5 V; see Figure 23 ±.6 ±3 ± na max Channel On Leakage, I, IS (On) ±. na typ VS = V = ±4.5 V; see Figure 24 ± ±3 ± na max IGITAL INPUTS Input High Voltage, VINH 2. V min Input Low Voltage, VINL.8 V max Input Current, IINL or IINH. μa typ VIN = VGN or V ±. μa max igital Input Capacitance, CIN 4 pf typ Rev. A Page 5 of 6

7 AG49 ata Sheet Parameter 25 C 4 C to +85 C 4 C to +25 C Unit Test Conditions/Comments YNAMIC CHARACTERISTICS Transition Time, ttransition 3 ns typ RL = 3 Ω, CL = 35 pf ns max VS = 3 V; see Figure 25 ton (EN) 23 ns typ RL = 3 Ω, CL = 35 pf ns max VS = 3 V; see Figure 27 toff (EN) 22 ns typ RL = 3 Ω, CL = 35 pf ns max VS = 3 V; see Figure 27 Break-Before-Make Time elay, t 65 ns typ RL = 3 Ω, CL = 35 pf 3 ns min VS = VS2 = 3 V; see Figure 26 Charge Injection 59 pc typ VS = V, RS = Ω, CL = nf; see Figure 28 Off Isolation 6 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 29 Channel-to-Channel Crosstalk 6 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 3 Total Harmonic istortion Plus Noise.4 % typ RL = kω, 5 V p-p, f = 2 Hz to 2 khz; see Figure 32 3 db Bandwidth 5 MHz typ RL = 5 Ω, CL = 5 pf; see Figure 3 Insertion Loss.28 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 3 CS (Off) 26 pf typ VS = V, f = MHz C (Off) 62 pf typ VS = V, f = MHz C, CS (On) 28 pf typ VS = V, f = MHz POWER REQUIREMENTS V = +5.5 V, VSS = 5.5 V I. μa typ igital inputs = V or V. μa max ISS. μa typ igital inputs = V or V. μa max V/VSS ±4.5/±6.5 V min/max Ground = V Guaranteed by design, not subject to production test. CONTINUOUS CURRENT PER CHANNEL, S OR Table 4. Parameter 25 C 85 C 25 C Unit Test Conditions/Comments CONTINUOUS CURRENT PER CHANNEL ±5 V ual Supply V = +3.5 V, VSS = 3.5 V 8-Lead MSOP (θja = 26 C/W) ma maximum 8-Lead LFCSP (θja = 5.8 C/W) ma maximum +2 ingle Supply V =.8 V, VSS = V 8-Lead MSOP (θja = 26 C/W) ma maximum 8-Lead LFCSP (θja = 5.8 C/W) ma maximum ±5 V ual Supply V = +4.5 V, VSS = 4.5 V 8-Lead MSOP (θja = 26 C/W) 65 7 ma maximum 8-Lead LFCSP (θja = 5.8 C/W) ma maximum Guaranteed by design, not subject to production test. Rev. A Page 6 of 6

8 ata Sheet ABSOLUTE MAXIMUM RATINGS TA = 25 C, unless otherwise noted. Table 5. Parameter V to VSS V to GN VSS to GN Analog Inputs igital Inputs Rating 35 V.3 V to +25 V +.3 V to 25 V VSS.3 V to V +.3 V or 3 ma, whichever occurs first GN.3 V to V +.3 V or 3 ma, whichever occurs first Peak Current, S or (Pulsed at ms, % uty-cycle Maximum) 8-Lead MSOP (4-Layer Board) 4 ma 8-Lead LFCSP 6 ma Continuous Current per ata in Table 4 + 5% ma Channel, S or Operating Temperature Range Industrial 4 C to +25 C Storage Temperature Range 65 C to +5 C Junction Temperature 5 C Reflow Soldering Peak 26 C Temperature, Pb Free AG49 Stresses at or above those listed under Absolute Maximum Ratings may cause permanent damage to the product. This is a stress rating only; functional operation of the product at these or any other conditions above those indicated in the operational section of this specification is not implied. Operation beyond the maximum operating conditions for extended periods may affect product reliability. THERMAL RESISTANCE Table 6. Thermal Resistance Package Type θja θjc Unit 8-Lead MSOP (4-Layer Board) C/W 8-Lead LFCSP 5.8 C/W ES CAUTION Over voltages at IN, S, or are clamped by internal diodes. Current should be limited to the maximum ratings given. Rev. A Page 7 of 6

9 AG49 ata Sheet PIN CONFIGURATIONS AN FUNCTION ESCRIPTIONS 8 2 GN V 3 4 AG49 TOP VIEW (Not to Scale) 7 S 6 IN 5 EN NOTES. EXPOSE PA TIE TO SUBSTRATE, S. Figure 3. 8-Lead LFCSP Pin Configuration GN 3 V 4 AG49 TOP VIEW (Not to Scale) 8 7 S 6 IN 5 NC NC = NO CONNECT Figure 4. 8-Lead MSOP Pin Configuration Table 7. Pin Function escriptions Pin No. LFCSP MSOP Mnemonic escription rain Terminal. This pin can be an input or output. 2 2 Source Terminal. This pin can be an input or output. 3 3 GN Ground ( V) Reference. 4 4 V Most Positive Power Supply Potential. 5 Not applicable EN Active High igital Input. When this pin is low, the device is disabled and all switches are turned off. When this pin is high, the IN logic input determines which switch is turned on. Not applicable 5 NC No Connect. 6 6 IN Logic Control Input. 7 7 VSS Most Negative Power Supply Potential. 8 8 Source Terminal. This pin can be an input or output. Not applicable EPA Exposed Pad. Exposed pad tied to substrate, VSS. Table 8. 8-Lead LFCSP Truth Table EN IN Switch A Switch B X Off Off On Off Off On Table 9. 8-Lead MSOP Truth Table IN Switch A Switch B On Off Off On Rev. A Page 8 of 6

10 ata Sheet TYPICAL PERFORMANCE CHARACTERISTICS ON RESISTANCE (Ω) V = +5V S = 5V V = +V S = V V = +2V S = 2V V = +3.5V S = 3.5V V = +6.5V S = 6.5V , V (V) Figure 5. On Resistance as a Function of V (VS) for ual Supply ON RESISTANCE (Ω) V = +5V S = 5V T A = +25 C T A = +85 C T A = +25 C T A = 4 C AG , V (V) Figure 8. On Resistance as a Function of V (VS) for ifferent Temperatures, ±5 V ual Supply V = 5V S = V 6 5 ON RESISTANCE (Ω) V =.8V S = V V = 8V S = V V = 2V S = V V = 3.2V S = V V = 5V S = V ON RESISTANCE (Ω) T A = +25 C T A = +85 C T A = +25 C T A = 4 C 3 2, V (V) Figure 6. On Resistance as a Function of V (VS) for Single Supply V = 2V S = V , V (V) Figure 9. On Resistance as a Function of V (VS) for ifferent Temperatures, +2 ingle Supply V = +4.5V S = 4.5V 7 6 V = +5V S = 5V ON RESISTANCE (Ω) V = +5V S = 5V V = +5.5V S = 5.5V V = +7V S = 7V ON RESISTANCE (Ω) T A = +25 C T A = +85 C T A = +25 C T A = 4 C , V (V) Figure 7. On Resistance as a Function of V (VS) for ual Supply , V (V) Figure. On Resistance as a Function of V (VS) for ifferent Temperatures, ±5 V ual Supply Rev. A Page 9 of 6

11 AG49 ata Sheet 7 6 V = +5V S = 5V V BIAS = ±V 9 8 I PER CHANNEL LEAKAGE CURRENT (na) I (OFF) + I (OFF) + I, I S (ON) + + I S (OFF) + I S (OFF) + I, I S (ON) I (µa) V = +2V S =V V =+5V S = 5V V = +5V S = 5V TEMPERATURE ( C) LOGIC LEVEL, IN (V) Figure. Leakage Currents as a Function of Temperature, ±5 V ual Supply Figure 4. I vs. Logic Level LEAKAGE CURRENT (na) V = 2V S = V V BIAS = V/V I (OFF) + I (OFF) + I, I S (ON) + + I, I S (ON) I S (OFF) + I S (OFF) + CHARGE INJECTION (pc) V = +5V S = 5V V = +5V S = 5V V = +2V S = V TEMPERATURE ( C) Figure 2. Leakage Currents as a Function of Temperature, +2 ingle Supply (V) Figure 5. Charge Injection vs. Source Voltage V = +5V S = 5V V BIAS = ±4.5V LEAKAGE CURRENT (na) I (OFF) + I (OFF) + I S (OFF) + I S (OFF) + I,I S (ON) + + I,I S (ON) TIME (ns) V = +5V S = 5V V = +2V S = V 5 V = +5V S = 5V TEMPERATURE ( C) Figure 3. Leakage Currents as a Function of Temperature, ±5 V ual Supply TEMPERATURE ( C) Figure 6. ttransition Times vs. Temperature Rev. A Page of 6

12 ata Sheet AG49 OFF ISOLATION (db) V = +5V S = 5V TH + N (%) R L = Ω V = +5V S = 5V = 5V p-p V = +5V S = 5V = V p-p 2 k k k M M M G FREQUENCY (Hz) Figure 7. Off Isolation vs. Frequency k k 5k 2k FREQUENCY (Hz) Figure 2. TH + N vs. Frequency CROSSTALK (db) V = +5V S = 5V k k M M M G FREQUENCY (Hz) Figure 8. Crosstalk vs. Frequency ACPSRR (db) V = +5V S = 5V FREQUENCY (Hz) NO ECOUPLING CAPACITORS ECOUPLING CAPACITORS k k k M M Figure 2. ACPSRR vs. Frequency V = +5V S = 5V INSERTION LOSS (db) k k M M M G FREQUENCY (Hz) Figure 9. On Response vs. Frequency Rev. A Page of 6

13 AG49 ata Sheet TEST CIRCUITS V S NC S I (ON) A I S Figure 22. On Resistance NC = NO CONNECT V Figure 24. On Leakage I S (OFF) A S I (OFF) A Figure 23. Off Leakage V V.µF S.µF 5% 5% V S 5% 5% IN R L 3Ω C L 35pF 9% 9% GN t ON t OFF Figure 25. Switching Times, ton and toff V.µF S.µF V S IN R L 3Ω C L 35pF 8% GN t BBM t BBM Figure 26. Break-Before-Make Time elay V S 3V V S ENABLE RIVE ( ) 5% 5% INx V AG49 OUTPUT t ON (EN).9V O.9V O t OFF (EN) 5Ω EN GN OUTPUT 3Ω 35pF Figure 27. Enable elay, ton (EN), toff (EN) Rev. A Page 2 of 6

14 ata Sheet AG49 V.µF S.µF V S IN GN C L nf NC (NORMALLY CLOSE SWITCH) (NORMALLY OPEN SWITCH) Figure 28. Charge Injection ON Q INJ = C L OFF S.µFV.µF S.µFV.µF V S NC NETWORK ANALYZER 5 V S NC NETWORK ANALYZER IN 5Ω IN GN R L 5Ω GN OFF ISOLATION = 2 log Figure 29. Off Isolation WITH SWITCH INSERTION LOSS = 2 log WITHOUT SWITCH Figure 3. Bandwidth S.µFV.µF NETWORK ANALYZER R L 5Ω IN V GN S R 5Ω IN S.µFV.µF V S S AUIO PRECISION R S V p-p CHANNEL-TO-CHANNEL CROSSTALK = 2 log Figure 3. Channel-to-Channel Crosstalk GN R L kω Figure 32. TH + N Rev. A Page 3 of 6

15 AG49 TERMINOLOGY I The positive supply current. ISS The negative supply current. V (VS) The analog voltage on Terminal and Terminal S. RON The ohmic resistance between Terminal and Terminal S. RFLAT (ON) Flatness is defined as the difference between the maximum and minimum value of on resistance as measured over the specified analog signal range. IS (Off) The source leakage current with the switch off. I (Off) The drain leakage current with the switch off. I, IS (On) The channel leakage current with the switch on. VINL The maximum input voltage for Logic. VINH The minimum input voltage for Logic. IINL (IINH) The input current of the digital input. CS (Off) The off switch source capacitance, measured with reference to ground. C (Off) The off switch drain capacitance, measured with reference to ground. C, CS (On) The on switch capacitance, measured with reference to ground. CIN The digital input capacitance. ata Sheet ton (EN) elay time between the 5% and 9% points of the digital input and switch on condition. See Figure 27. toff (EN) elay time between the 5% and 9% points of the digital input and switch off condition. See Figure 27. ttransition elay time between the 5% and 9% points of the digital inputs and the switch on condition when switching from one address state to another. TBBM Off time measured between the 8% point of both switches when switching from one address state to another. See Figure 26. Charge Injection A measure of the glitch impulse transferred from the digital input to the analog output during switching. See Figure 28. Off Isolation A measure of unwanted signal coupling through an off switch. See Figure 29. Crosstalk A measure of unwanted signal that is coupled through from one channel to another as a result of parasitic capacitance. See Figure 3. Bandwidth The frequency at which the output is attenuated by 3 db. See Figure 3. On Response The frequency response of the on switch. Insertion Loss The loss due to the on resistance of the switch. See Figure 3. TH + N The ratio of the harmonic amplitude plus noise of the signal to the fundamental. See Figure 32. AC Power Supply Rejection Ratio (ACPSRR) ACPSRR measures the ability of a part to avoid coupling noise and spurious signals that appear on the supply voltage pin to the output of the switch. The dc voltage on the device is modulated by a sine wave of.62 V p-p. The ratio of the amplitude of signal on the output to the amplitude of the modulation is the ACPSRR. See Figure 2. Rev. A Page 4 of 6

16 ata Sheet AG49 OUTLINE IMENSIONS PIN IENTIFIER.65 BSC COPLANARITY MAX 6 5 MAX.23.9 COMPLIANT TO JEEC STANARS MO-87-AA Figure Lead Mini Small Outline Package [MSOP] (RM-8) imensions shown in millimeters B 2. BSC BSC.2 MIN EXPOSE PA SEATING PLANE INEX AREA.5 TOP VIEW SIE VIEW REF COPLANARITY.8.5 MAX.2 NOM 4 BOTTOM VIEW PIN INICATOR FOR PROPER CONNECTION OF THE EXPOSE PA, REFER TO THE PIN CONFIGURATION AN FUNCTION ESCRIPTIONS SECTION OF THIS ATA SHEET. 886-A Figure Lead Lead Frame Chip Scale Package [LFCSP_W] 3 mm 2 mm Body, Very Very Thin, ual Lead (CP-8-4) imensions shown in millimeters ORERING GUIE Model Temperature Range Package escription Package Option Branding AG49BRMZ 4 C to +25 C 8-Lead Mini Small Outline Package [MSOP] RM-8 SL AG49BRMZ-REEL7 4 C to +25 C 8-Lead Mini Small Outline Package [MSOP] RM-8 SL AG49BCPZ-REEL7 4 C to +25 C 8-Lead Lead Frame Chip Scale Package [LFCSP_W] CP-8-4 C Z = RoHS Compliant Part. Rev. A Page 5 of 6

17 AG49 ata Sheet NOTES Analog evices, Inc. All rights reserved. Trademarks and registered trademarks are the property of their respective owners /6(A) Rev. A Page 6 of 6

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