Standard Products ACT Channel Analog Multiplexer Module Radiation Tolerant & ESD Protected

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Standard Products ACT8513 48-Channel Analog Multiplexer Module Radiation Tolerant & ESD Protected www.aeroflex.com/mux November 17, 2008 FEATURES 48 channels provided by three -channel multiplexers Radiation performance - Total dose: 150 krads(si), Dose rate = 50-300 rads(si)/s - SEU: Immune up to 90 Me-cm 2 /mg - SEL: Immune by process design Full military temperature range Low power consumption < 45mW One address bus (A0-3) and three enable lines afford flexible organization All channel inputs protected by ±20 nominal transorbs Fast access time < 500ns typical Break-Before-Make switching High analog input impedance (power on or off) Designed for aerospace and high reliability space applications Packaging Hermetic ceramic - 96 leads, 1.32"Sq x 0.20"Ht quad flat pack - Typical Weight 15 grams DSCC SMD 5962-09203 pending Note: does not currently have a DSCC certified Radiation Hardened Assurance Program. GENERAL DESCRIPTION Aeroflex s ACT8513 is a radiation tolerant, 48 channel multiplexer MCM (multi-chip module) with electrostatic discharge (ESD) protection on all channel inputs. The ACT8513 has been specifically designed to meet exposure to radiation environments. It is available in a 96 lead High Temperature Co-Fired Ceramic (HTCC) Quad Flatpack (CQFP). It is guaranteed operational from -55 C to +125 C. The ACT8513 is ideal for demanding military and space applications. ORGANIZATION AND APPLICATION The ACT8513 consists of three channel multiplexers arranged as shown in the Block Diagram. The Address Bus and three Enable lines provide for 48 channels addressable by bus A 0 ~A 3, in three channel blocks, each block enabled separately. Each block connects the addressed channel to one output. SCD8513 Rev D

CH 0 CH 15 R MUX 1 OUTPUT 0-15 CH CH 31 R MUX 2 OUTPUT -31 CH 32 CH 47 EN 0-15 EN -31 EN 32-47 A0 A1 A2 A3 +EE -EE REF GND ACT8513 48 CHANNEL ANALOG MUX BLOCK DIAGRAM R MUX 3 OUTPUT 32-47 2

ABSOLUTE MAXIMUM RATINGS 1/ Parameter Range Units Case Operating Temperature Range -55 to +125 C Storage Temperature Range -65 to +150 C Supply oltage +EE (Pin 44) -EE (Pin 46) REF (Pin 48) Digital Input Overvoltage EN (Pins 5, 91, 92), A (Pins 1, 3, 93, 95) Analog Input Over oltage S +20-20 +7.5 < REF +0.5 > GND -0.5 ±18 Notes: 1/ All measurements are made with respect to ground. NOTICE: Stresses above those listed under "Absolute Maximums Rating" may cause permanent damage to the device. These are stress rating only; functional operation beyond the "Operation Conditions" is not recommended and extended exposure beyond the "Operation Conditions" may affect device reliability. RECOMMENDED OPERATING CONDITIONS 1/ Symbol Parameter Typical Units +EE +15 Power Supply oltage +15.0 -EE -15 Power Supply oltage -15.0 REF Reference oltage +5.00 AL Logic Low Level +0.8 AH Logic High Level +4.0 Notes: 1/ Power Supply turn-on sequence shall be as follows: -EE, REF, followed by +EE. DC ELECTRICAL PERFORMANCE CHARACTERISTICS 1/ (Tc = -55 C to +125 C, -EE = -15, REF = +5.0, +EE = +15 -- Unless otherwise specified) Paramete r Symbol Conditions Min Max Units Supply Current +IEE EN(0-47) = A(0-3) = 0 0 1.5 ma -IEE -1.5 0 ma +ISBY EN(0-47) = 4, A(0-3) = 0 7/ 0 1.5 ma -ISBY -1.5 0 ma Address Input Current IAL(0-3) A = 0-3 3 μa IAH(0-3) A = 5-3 3 μa Enable Input Current IENL(0-15) EN(0-15) = 0-1 1 μa IENH(0-15) EN(0-15) = 5-1 1 μa IENL(-31) EN(-31) = 0-1 1 μa IENH(-31) EN(-31) = 5-1 1 μa IENL(32-47) EN(32-47) = 0-1 1 μa IENH(32-47) EN(32-47) = 5-1 1 μa 3

Positive Input Leakage Current CH0-CH47 Negative Input Leakage Current CH0-CH47 Output Leakage Current OUTPUTS (pins 25, 68 & 70) Output Leakage Current OUTPUTS (pins 25, 68 & 70) Input Clamped oltage CH0 - CH47 Input Clamped oltage CH0 - CH47 Switch ON Resistance OUTPUTS (pins 25, 26, 68 & 70) 6/ DC ELECTRICAL PERFORMANCE CHARACTERISTICS 1/ (continued) (Tc = -55 C to +125 C, -EE = -15, REF = +5.0, +EE = +15 -- Unless otherwise specified) Paramete Symbol Conditions Min Max Units +ISOFFOUTPUT IN = +10, EN = 4, output and all unused MUX -100 +1000 na inputs under test = +10 2/, 3/ +ISOFFCURRENT -100 +1000 na -ISOFFOUTPUT IN = -10, EN = 4, output and all unused MUX -100 +1000 na -ISOFFCURRENT inputs under test = -10 2/, 3/ -100 +1000 na +IDOFFOUTPUT OUT = +10, EN = 4, output and all unused MUX -100 +100 na +IDOFFCURRENT inputs under test = -10 3/, 4/ -100 +100 na -IDOFFOUTPUT -IDOFFCURRENT +CLMP -CLMP RDS(ON)(0-47) A RDS(ON)(0-47) B RDS(ON)(0-47) C OUT = -10, EN = 4, output and all unused MUX inputs under test = +10 3/, 4/ EN = 4, all unused MUX inputs under test are open. 3/ IN = +15, EN = 0.8, IOUT = -1mA 2/, 3/, 5/ IN = +5, EN = 0.8, IOUT = -1mA 2/, 3/, 5/ IN = -5, EN = 0.8, IOUT = +1mA 2/, 3/, 5/ +25 C +125 C -55 C +25 C +125 C -55 C -100 +100 na -100 +100 na 18.0 18.0 17.5-23.0-23.5-22.5 23.0 23.5 22.5-18.0-18.0-17.5 200 1000 Ω 200 1500 Ω 200 2500 Ω Notes: 1/ Measure inputs sequentially. Ground all unused inputs of the device under test. A is the applied input voltage to the address lines A(0-3). 2/ IN is the applied input voltage to the input channels CH0-CH47. 3/ EN is the applied input voltage to the enable lines En(0-15), En(-31) and En(32-47). 4/ OUT is the applied input voltage to the output lines OUTPUT(0-15), OUTPUT(-31) and OUTPUT(32-47). 5/ Negative current is the current flowing out of each of the MUX pins. Positive current is the current flowing into each MUX pin. 6/ The ACT8513 cannot be operated with analog inputs from -15 to -5 volts. 7/ Not tested, guaranteed to the specified limits. SWITCHING CHARACTERISTICS (Tc = -55 C to +125 C, -EE = -15, REF = +5.0, +EE = +15 -- Unless otherwise specified) Parameter Symbol Conditions Min Max Units Switching Test MUX t A HL RL = 10KΩ, CL = 50pF 10 1000 ns t A LH 10 1000 ns t ON EN RL = 1KΩ, CL = 50pF 10 1000 ns t OFF EN 10 1000 ns 4

TRUTH TABLE (CH0 CH15) A3 A2 A1 A0 EN(0-15) "ON" CHANNEL 1/ X X X X H NONE L L L L L CH0 L L L H L CH1 L L H L L CH2 L L H H L CH3 L H L L L CH4 L H L H L CH5 L H H L L CH6 L H H H L CH7 H L L L L CH8 H L L H L CH9 H L H L L CH10 H L H H L CH11 H H L L L CH12 H H L H L CH13 H H H L L CH14 H H H H L CH15 1/ Between CH0-15 and OUTPUT (0-15) TRUTH TABLE (CH CH31) A3 A2 A1 A0 EN(-31) "ON" CHANNEL 1/ X X X X H NONE L L L L L CH L L L H L CH17 L L H L L CH18 L L H H L CH19 L H L L L CH20 L H L H L CH21 L H H L L CH22 L H H H L CH23 H L L L L CH24 H L L H L CH25 H L H L L CH26 H L H H L CH27 H H L L L CH28 H H L H L CH29 H H H L L CH30 H H H H L CH31 1/ Between CH-31 and OUTPUT (-31) TRUTH TABLE (CH32 CH47) A3 A2 A1 A0 EN(32-47) "ON" CHANNEL 1/ X X X X H NONE L L L L L CH32 L L L H L CH33 L L H L L CH34 L L H H L CH35 L H L L L CH36 L H L H L CH37 L H H L L CH38 L H H H L CH39 H L L L L CH40 H L L H L CH41 H L H L L CH42 H L H H L CH43 H H L L L CH44 H H L H L CH45 H H H L L CH46 H H H H L CH47 1/ Between CH32-47 and OUTPUT (32-47) 5

Address Lines (A0 - A3) 4.0 0.8 11.6 MIN MUX Output t A HL 0 Definition of t A HL Address Lines (A0 - A3) 4.0 0.8 11.6 MIN MUX Output t A LH 0 Definition of t A LH EN Lines 4.0 0.8 ~3 to 12.5 MUX Output t ON EN Definition of t ON EN and t OFF EN t OFF EN 0 NOTE: f = 10KHz, Duty cycle =. ACT8512 SWITCHING DIAGRAMS 6

PIN NUMBERS & FUNCTIONS ACT8513 96 Leads Ceramic QUAD Flat Pack Pin # Function Pin # Function Pin # Function 1 A2 33 CH11 65 CH33 2 NC 34 GND 66 CH32 3 A3 35 CH12 67 NC 4 NC 36 GND 68 Output (32-47) 5 EN 0-15 37 CH13 69 NC 6 NC 38 GND 70 Output (-31) 7 CH0 39 CH14 71 GND 8 GND 40 GND 72 GND 9 CH1 41 CH15 73 CH31 10 GND 42 GND 74 CH30 11 CH2 43 NC 75 CH29 12 GND 44 +EE 76 CH28 13 CH3 45 NC 77 CH27 14 GND 46 -EE 78 CH26 15 CH4 47 NC 79 CH25 GND 48 REF 80 CH24 17 CH5 49 NC 81 CH23 18 GND 50 CASE GND 82 CH22 19 CH6 51 CH47 83 CH21 20 GND 52 CH46 84 CH20 21 CH7 53 CH45 85 CH19 22 GND 54 CH44 86 CH18 23 GND 55 CH43 87 CH17 24 GND 56 CH42 88 CH 25 Output (0-15) 57 CH41 89 GND 26 NC 58 CH40 90 GND 27 CH8 59 CH39 91 EN 32-47 28 GND 60 CH38 92 EN -31 29 CH9 61 CH37 93 A0 30 GND 62 CH36 94 NC 31 CH10 63 CH35 95 A1 32 GND 64 CH34 96 NC NOTE: It is recommended that all "NC or "no connect pin" be grounded. This eliminates or minimizes any ESD or static buildup. 7

ORDERING INFORMATION Model Number Screening DSCC SMD # Package ACT8513-S Military Temperature, -55 C to +125 C, Screened in accordance with MIL-PRF-38534, Class K NA QUAD Flat Pack ACT8513-7 Commercial Flow, +25 C testing only ACT8513-201-1S In accordance with DSCC SMD 5962-0920302KXC FLAT PACKAGE OUTLINE 1.150 ±.005 (23 Spaces at.050) Tol Non-Cum 4 Sides Pin 1.200 MAX Pin 13 Pin 12 Pin 85 Pin 84.05 ±.003 1.320 SQ MAX Pin 36 (.400) Pin 37 Pin 61 Pin 60.006 ±.001 EXPORT CONTROL: This product is controlled for export under the International Traffic in Arms Regulations (ITAR). A license from the U.S. Department of State is required prior to the export of this product from the United States. EXPORT WARNING: Note: Outside ceramic tie bars not shown for clarity. Contact factory for details. Aeroflex s military and space products are controlled for export under the International Traffic in Arms Regulations (ITAR) and may not be sold or proposed or offered for sale to certain countries. (See ITAR 126.1 for complete information.) PLAINIEW, NEW YORK Toll Free: 800-THE-1553 Fax: 5-694-6715 SE AND MID-ATLANTIC Tel: 321-951-44 Fax: 321-951-4254 INTERNATIONAL Tel: 805-778-9229 Fax: 805-778-1980 WEST COAST Tel: 949-362-2260 Fax: 949-362-2266 NORTHEAST Tel: 603-888-3975 Fax: 603-888-4585 CENTRAL Tel: 719-594-8017 Fax: 719-594-8468 www.aeroflex.com info-ams@aeroflex.com Aeroflex Microelectronic Solutions reserves the right to change at any time without notice the specifications, design, function, or form of its products described herein. All parameters must be validated for each customer's application by engineering. No liability is assumed as a result of use of this product. No patent licenses are implied. Our passion for performance is defined by three attributes represented by these three icons: solution-minded, performance-driven and customer-focused 8