DPDT CMOS Analog Switch

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1 DPDT CMOS nalog Switch HI-5046/883 This CMOS analog switch offers low-resistance switching performance for analog voltages up to the supply rails and for signal currents up to 70m. ON resistance is low and stays reasonably constant over the full range of operating signal voltage and current. R ON remains exceptionally constant for input voltages between +5V and -5V and currents up to 50m. Switch impedance also changes very little over temperature, particularly between 0 C and +75 C. R ON is nominally 25Ω for the HI-5046/883. This device provides break-before-make switching and is TTL and CMOS compatible for maximum application versatility. Performance is further enhanced by Dielectric Isolation processing which insures latch-free operation with very low input and output leakage currents (0.8n at +25 C). The HI-5046/883 also features very low power operation (1.5mW at +25 C). The HI-5046/883 is available in a 16 Ld CerDIP package and is specified over the temperature range of -55 C to +125 C. Features This Circuit is Processed in ccordance to MIL-STD-883 and is Fully Conformant Under the Provisions of Paragraph Wide nalog Signal Range ±15V Low On Resistance Ω (Typ), 50Ω (Max) High Current Capability m (Max) Break-Before-Make Switching - Turn-On Time ns (Typ), 800ns (Max) - Turn-Off Time ns (Typ), 400ns (Max) No Latch Up Input MOS Gates are Protected from Electrostatic Discharge DTL, TTL, CMOS, PMOS Compatible pplications High Frequency nalog Sample and Hold Digital Filters Operational mplifier Gain Switching Pin Configuration D D 1 3 S 1 4 HI1-5046/883 (16 LD CERDIP) TOP VIEW LOGIC 0 PUT S 2 V R Functional Diagram S 1 S 2 S 3 S 4 LOGIC 1 PUT V L V D 1 D 2 D 3 D 4 S 4 D V L V V R D S 3 TYPICL SWITCH NOTE: Unused pins may be internally connected. Ground all unused pins. S Ordering Information N P PRT NUMBER PRT MRKG TEMP. RNGE ( C) PCKGE PKG. DWG. # D HI1-5046/883 HI1-5046/ to Ld CerDIP F16.3 NOTE: Source and Drain are arbitrarily depicted as nalog Input and Output, respectively. They may be interchanged without affecting performance. FN CUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures TERSIL or Copyright Intersil mericas Inc. 1989, ll Rights Reserved Intersil (and design) is a trademark owned by Intersil Corporation or one of its subsidiaries. ll other trademarks mentioned are the property of their respective owners.

2 bsolute Maximum Ratings Voltage Between V+ and Terminals V ±V SUPPLY to Ground (V+, ) ±18V V R to Ground V SUPPLY V L to Ground V SUPPLY Digital and nalog Input Voltage (V, V S, V D ) V SUPPLY +4V -V SUPPLY -4V Peak Current (Source to Drain) (Pulse at 1ms, 10% Duty Cycle Max) m Continuous Current ny Pin m ESD Rating <2000V Thermal Information Thermal Resistance θ J ( C/W) θ JC ( C/W) CerDIP Package Package Power Dissipation at +75 C CerDIP Package W Package Power Dissipation Derating Factor above +75 C CerDIP Package mW/ C Junction Temperature C Storage Temperature Range C to +150 C Lead Temperature (Soldering 10s) C Recommended Operating Conditions Operating Temperature Range C to +125 C Operating Supply Voltage Range ±15V Logic Supply Voltage (V L ) V Logic Reference Voltage (V R ) V nalog Input Voltage (V S ) ±V SUPPLY ddress Low Level (V L ) V to 0.8V ddress High Level (V H ) V to +5.0V CUTION: Do not operate at or near the maximum ratings listed for extended periods of time. Exposure to such conditions may adversely impact product reliability and result in failures not covered by warranty. TBLE 1. D.C. ELECTRICL PERFORMNCE SPECIFICTIONS Device Tested at: Supply Voltage = ±15V, V L = +5.0V, V R = 0.0V, V H = 2.4V, V L = +0.8V, unused pins are grounded, unless otherwise specified. D.C. PRMETERS SYMBOL CONDITIONS Switch ON Resistance R DS2 V D = -10V, I S = 10m Source OFF Leakage Current Drain OFF Leakage Current Channel ON Leakage Current I S(OFF) I D(OFF) I D(ON) V D = 10V, I S = -10m V S = -10V, V D = 10V V S = 10V, V D = -10V V D = -10V, V S = 10V V D = 10V, V S = -10V V D = V S = 10V GROUP SUBGROUPS TEMPERTURE ( C) M MX UNITS Ω 2, 3-55 to Ω Ω 2, 3-55 to Ω n 2, 3-55 to n n 2, 3-55 to n n 2, 3-55 to n n 2, 3-55 to n n 2, 3-55 to n V D = V S = -10V n 2, 3-55 to n Low Level ddress Current I L V = 0V µ 2, 3-55 to µ High Level ddress Current I H V = 2.4V, 5V µ 2, 3-55 to µ Positive Supply Current +I CC V = 0V, 5V µ 2, 3-55 to µ Negative Supply Current -I CC V = 0V, 5V µ 2, 3-55 to µ 2 FN8274.0

3 TBLE 1. D.C. ELECTRICL PERFORMNCE SPECIFICTIONS (Continued) Device Tested at: Supply Voltage = ±15V, V L = +5.0V, V R = 0.0V, V H = 2.4V, V L = +0.8V, unused pins are grounded, unless otherwise specified. D.C. PRMETERS SYMBOL CONDITIONS GROUP SUBGROUPS TEMPERTURE ( C) M MX UNITS Logic Supply Current +I L V = 0V, 5V µ 2, 3-55 to µ Reference Supply Current +I R V = 0V, 5V µ 2, 3-55 to µ TBLE 2..C. ELECTRICL PERFORMNCE SPECIFICTIONS Device Tested at: Supply Voltage = ±15V, V L = +5.0V, V R = 0.0V, V H = +5.0V, V L = +0.0V, unused pins are grounded, unless otherwise specified. PRMETERS SYMBOL CONDITIONS Turn ON Time t (ON) V S = 10V, -10V C L = 10pF R L = 1kΩ Turn OFF Time t (OFF) V S = 10V, -10V C L = 10pF R L = 1kΩ GROUP SUBGROUPS TEMPERTURE ( C) M MX UNITS ns ns ns ns ns ns TBLE 3. ELECTRICL PERFORMNCE SPECIFICTIONS (NOTE 1) Device Characterized at: +V SUPPLY = +15V, V SUPPLY = 15V, GND = 0V PRMETERS SYMBOL CONDITIONS NOTE ON Resistance Match (Channel to Channel) r ON2 Match V D = ±10V I D = 10m TEMPERTURE ( C) M MX UNITS Ω ddress Capacitance C V = 0V, 5V pf Switch Input Capacitance C S (OFF) Switch Off: V = 0V pf Switch Output Capacitance C D (OFF) Switch Off: V = 0V pf C D (ON) Switch On: V = 5V pf Drain to Source Capacitance C DS (OFF) Switch Off: V = 0V pf Off Isolation V ISO V S = 2V f = 100kHz, R L =100Ω db Crosstalk V CT V S = 2V f = 100kHz, R L =100Ω Charge Transfer Error V CTE V S = GND, C L = 0.01µF V = 0V to f = 200kHz db mv NOTE: 1. Parameters listed in Table 3 are controlled via design or process parameters and are not directly tested at final production. These parameters are lab characterized upon initial design release, or upon design changes. These parameters are guaranteed by characterization based upon data from multiple production runs which reflect lot to lot and within lot variation. TBLE 4. ELECTRICL TEST REQUIREMENTS MIL-STD-883 TEST REQUIREMENTS SUBGROUPS (Tables 1 and 2) Interim Electrical Parameters (Pre Burn-in) 1 Final Electrical Test Parameters 1 (Note 2), 2, 3, 9, 10, 11 Group Test Requirements 1, 2, 3, 9, 10, 11 Groups C & D Endpoints 1 NOTE: 2. PD applies to Subgroup 1 only. 3 FN8274.0

4 Test Circuits 10m V 2 R ON = 10m V 2 I S(OFF) I D(OFF) ±10V ±10V ±10V FIGURE 1. R DS FIGURE 2. I S(OFF) I S(OFF) I D(OFF) I D(ON) ±10V ±10V ±10V FIGURE 3. I D(OFF) FIGURE 4. I D(ON) +V CC +I CC +V CC V GND -I CC V I -V CC GND -V CC FIGURE 5. DDRESS CURRENTS FIGURE 6. SUPPLY CURRENTS 4 FN8274.0

5 Test Circuits (Continued) V 2V P-P 50Ω R L V V 2V P-P SWITCHED CHNNEL 50Ω V R L OFF ISOLTION 20 Log V = V FIGURE 7. OFF ISOLTION R L CROSSTLK 20 Log V = V NOTE: pplies only to dual or double throw switches. FIGURE 8. CROSSTLK S D 0.01MF TO MESUREMENT CIRCUITRY WITH PUT RESISTNCE OF 1MΩ OR GRETER DRIVER f = 200kHz SQURE WVE t R 20ns IF PULSE TEST IS USED: t R, t F 20ns V (DRIVER) V CTE NOTE: V CTE may be a positive or negative value. SWITCHG TRNSIENT DROOP CUSED BY DEVICE LEKGE ND MESUREMENT CIRCUITRY FIGURE 9. CHRGE TRNSFER Test Characteristics V H V 90% 90% +10V 1 2 t ON t OFF 90% 90% 1 2 1k 1k V t OFF t ON FIGURE 10. ON/OFF SWITCH TIME (t ON, t OFF ) 5 FN8274.0

6 Test Characteristics (Continued) t ON 300 t OFF DIGITL HIGH (V H ) FIGURE 11. SWITCHG TIMES FOR DIGITL TRNSITION t ON t OFF DIGITL LOW (V L ) FIGURE 12. SWITCHG TIMES FOR NEGTIVE DIGITL TRNSITION Test Waveforms 5V 5V PUT PUT PUT PUT 5V 100ns 5V 100ns Vertical Scale: Input = 5V/Div, (TTL; V H = 5V, V L = 0V) Output = 5V/Div Horizontal Scale: 100ns/Div FIGURE 13. Vertical Scale: Input = 5V/Div, (CMOS; V H = 10V, V L = 0V) Output = 5V/Div Horizontal Scale: 100ns/Div FIGURE FN8274.0

7 Burn-In Circuit HI-5046/883 CERMIC DIP R 1 1 D 1 S 1 16 R 2 R 3 R D 3 4 S 3 5 S 4 6 D D V R 13 V L 12 V S 2 9 C 1 C 2 C 3 D 1 D 2 D 3 V V L V+ NOTES: R 1 thru R 4 = 10kΩ, ±5%, 1/4W (Min) C 1, C 2, C 3 = 0.01µF/Socket (Min) or 0.1µF/Row, (Min) D 1, D 2, D 3 = 1N4002 or Equivalent/Board V L = 5.5V ±0.5V 2 = 2 = 5.5V ±0.5V (V+) - () = 30V 7 FN8274.0

8 Schematic Diagrams V+ V+ R3 VR 1 ( 2 ) TO (V R ) V+ N1 P2 N3 N2 P1 NOTE: Connect V+ to V L for minimizing power consumption when driving from CMOS circuits. FIGURE 15. TTL/CMOS REFERENCE CIRCUIT 1 ( 2 ) FIGURE 16. SWITCH CELL V+ P3 R4 200Ω V+ D1 D2 P1 N1 V R ' V L ' P4 P5 P6 P7 P8 P9 P10 P11 P P2 N2 N4 N5 N6 N7 N8 N9 N10 N11 N12 N3 ll N-Channel bodies to, all P-Channel bodies to V+, except as shown. DIGITL PUT BUFFER ND LEVEL SHIFTER 8 FN8274.0

9 Die Characteristics DIE DIMENSIONS: 96mils x 81mils x 19mils (2430µm x 2050µm x 480µm METLLIZTION: Type: luminum Thickness: 16kÅ ±2kÅ GLSSIVTION: Type: Nitride over Silox Silox Thickness: 12kÅ ±2kÅ Nitride Thickness: 3.5kÅ ±1kÅ SUBSTRTE POTENTIL (Powered-up): DEVICE COUNT: 82 WORST CSE CURRENT DENSITY: 1.0 x 10 5 /cm 2 at 20m Metallization Mask Layout HI-5046/883 D 2 S 2 D 1 S 1 V R V L S 4 D 4 V+ D 3 S 3 NOTE: Unused pins may be connected. Ground all unused pins. 9 FN8274.0

10 Design Information The information contained in this section has been developed through characterization and is for use as application and design information only. No guarantee is implied. Typical Performance Curves T = +25 C, V SUPPLY = ±15V 80 ON RESISTNCE (Ω) V+ = +10V = -10V V+ = +12V = -12V V+ = +15V = -15V NORMLIZED ON RESISTNCE (REFERRED TO +25 C) V = 0V NLOG SIGNL LEVEL (V) FIGURE 17. ON RESISTNCE vs NLOG SIGNL LEVEL ND POWER SUPPLY VOLTGE TEMPERTURE ( C) FIGURE 18. NORMLIZED ON RESISTNCE vs TEMPERTURE n NORMLIZED ON RESISTNCE (REFERRED TO 1m) LEKGE CURRENT 10n 1n 100p I S(OFF) = I D(OFF) I D(ON) NLOG CURRENT (m) FIGURE 19. NORMLIZED ON RESISTNCE vs NLOG CURRENT 10p TEMPERTURE ( C) FIGURE 20. ON/OFF LEKGE CURRENTS vs TEMPERTURE OFF ISOLTION (db) R L = 100Ω R L = 10kΩ CROSSTLK (db) R L = 10kΩ R L = 1kΩ R L = 100Ω k 10k 100k 1M FREQUENCY (Hz) FIGURE 21. OFF ISOLTION vs FREQUENCY k 10k 100k 1M FREQUENCY (Hz) FIGURE 22. CROSSTLK vs FREQUENCY 10 FN8274.0

11 Design Information The information contained in this section has been developed through characterization and is for use as application and design information only. No guarantee is implied. Typical Performance Curves T = +25 C, V SUPPLY = ±15V (Continued) 200 POWER CONSUMPTION (mw) k 10k 100k 1M TOGGLE FREQUENCY (50% DUTY CYCLE) (Hz) FIGURE 23. POWER CONSUMPTION vs FREQUENCY 11 FN8274.0

12 Ceramic Dual-In-Line Frit Seal Packages (CERDIP) BSE PLNE SETG PLNE S1 b2 ccc M bbb b S C - B C - B S D e D S NOTES: 1. Index area: notch or a pin one identification mark shall be located adjacent to pin one and shall be located within the shaded area shown. The manufacturer s identification shall not be used as a pin one identification mark. 2. The maximum limits of lead dimensions b and c or M shall be measured at the centroid of the finished lead surfaces, when solder dip or tin plate lead finish is applied. 3. Dimensions b1 and c1 apply to lead base metal only. Dimension M applies to lead plating and finish thickness. 4. Corner leads (1, N, N/2, and N/2+1) may be configured with a partial lead paddle. For this configuration dimension b3 replaces dimension b2. 5. This dimension allows for off-center lid, meniscus, and glass overrun. 6. Dimension Q shall be measured from the seating plane to the base plane. 7. Measure dimension S1 at all four corners. 8. N is the maximum number of terminal positions. 9. Dimensioning and tolerancing per NSI Y14.5M Controlling dimension: CH. E L M c1 e/2 S D S aaa M C - B LED FISH BSE METL b1 M (b) SECTION - -D- -- Q -C- -Bα S e c D S (c) F16.3 MIL-STD-1835 GDIP1-T16 (D-2, CONFIGURTION ) 16 LED CERMIC DUL--LE FRIT SEL PCKGE CHES MILLIMETERS SYMBOL M MX M MX NOTES b b b b c c D E e BSC 2.54 BSC - e BSC 7.62 BSC - e/ BSC 3.81 BSC - L Q S α 90 o 105 o 90 o 105 o - aaa bbb ccc M , 3 N Rev. 0 4/94 For additional products, see Intersil products are manufactured, assembled and tested utilizing ISO9000 quality systems as noted in the quality certifications found at Intersil products are sold by description only. Intersil Corporation reserves the right to make changes in circuit design, software and/or specifications at any time without notice. ccordingly, the reader is cautioned to verify that data sheets are current before placing orders. Information furnished by Intersil is believed to be accurate and reliable. However, no responsibility is assumed by Intersil or its subsidiaries for its use; nor for any infringements of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of Intersil or its subsidiaries. For information regarding Intersil Corporation and its products, see 12 FN8274.0

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