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Technical content

Features

 Quad Pole Switching / Small 16 SOIC Package  Fast Turn On Speed (<50 S TYP)  Ultra Low Leakage Current (<10nA TYP)  40mA Maximum Continuous Load Current  High Isolation Voltage (2.5kV RMS)  Long Life / High Reliability  RoHS / Pb-Free / REACH Compliant NOTE: Suffixes listed above are not included in marking on device for part number identification 3 14 16(+) Input (Pole 1) (-) Input (Pole 1) (+/-) Load (Pole 1) 4 13 7 10 8 9 (-/+) Load (Pole 1) (+) Input (Pole 2) (-) Input (Pole 2) (+/-) Load (Pole 2) (-/+) Load (Pole 2) (+) Input (Pole 3) (-) Input (Pole 3) (+/-) Load (Pole 3) (-/+) Load (Pole 3) (+) Input (Pole 4) (-) Input (Pole 4) (+/-) Load (Pole 4) (-/+) Load (Pole 4) SMQ4110

© 2013 Solid State Optronics • San José, CA Page 2 of 8 SMQ4110 /TR Rev 2.00 (11/25/2013) 001754 SMQ4110 Quad 1 Form A 250V / 300Ω MOSFET Output Solid State Relay Parameter Symbol Min. Typ. Max. Units Test Conditions Input Specifications LED Forward Voltage V F - 1.2 1.5 V I F = 10mA LED Reverse Voltage BV R 5 - - V I R = 10μA Turn-On Current (LED Trigger) I F - 2.5 5 mA I O = 40mA Turn-Off Current I FOFF - 0.5 - mA I O = 40mA Terminal Capacitance C t - 30 - pF V=0, f=1MHz Output Specifications Blocking Voltage V B 250 - - V IF=0mA, IO=1A Continuous Load Current I O - - 40 mA I F=5mA On Resistance R ON - 225 300 Ω IF=5mA, IO=40mA Leakage Current I Oleak - 10 100 nA V O=250V Output Capacitance C OUT - 1.5 - pF I F=0mA, f=1.0MHz Offset Voltage V OFFSET - - 0.2 mV I F=5mA Coupled Specifications Turn-On Time T ON - 50 500 S IF=5mA, IO=40mA Turn-Off Time T OFF - 150 500 S IF=0mA, IO=40mA Input to Output Capacitance C S - 3 - pF V=0, f=1MHz Contact Transient Ratio - 2,000 7,000 0 V/S dV = 50V Isolation Specifications Isolation Voltage V ISO 2500 - - V RMS RH ≤ 50%, t=1min Input-Output Resistance R I-O - 10 -  RH ≤ 50%, VI-O = 500VDC Electrical Characteristics, TA = 25°C (unless otherwise specified)

© 2013 Solid State Optronics • San José, CA Page 3 of 8 SMQ4110 /TR Rev 2.00 (11/25/2013) 001754 SMQ4110 Quad 1 Form A 250V / 300Ω MOSFET Output Solid State Relay SMQ4110 Performance & Characteristics Plots, TA = 25°C (unless otherwise specified)

© 2013 Solid State Optronics • San José, CA Page 4 of 8 SMQ4110 /TR Rev 2.00 (11/25/2013) 001754 SMQ4110 Quad 1 Form A 250V / 300Ω MOSFET Output Solid State Relay Process Step Description Parameter A Preheat Start Temperature (ºC) 150ºC B Preheat Finish Temperature (ºC) 180ºC C Preheat Time (s) 90 - 120s D Melting Temperature (ºC) 230ºC E Time above Melting Temperature (s) 30s F Peak Temperature, at Terminal (ºC) 260ºC G Dwell Time at Peak Temperature (s) 10s H Cool-down (ºC/s) <6ºC/s SMQ4110 Solder Reflow Temperature Profile Recommendations (1) Infrared Reflow: Refer to the following figure as an example of an optimal temperature profile for single occurrence infrared reflow. Soldering process should not exceed temperature or time limits expressed herein. Su rface temperature of device package should not exceed 250ºC: A B C D F E G H (2) Wave Solder: (3) Hand Solder: Maximum Temperature: 260ºC (at terminal) Maximum Time: 10s Pre-heating: 100 - 150ºC (30 - 90s) Single Occurrence Maximum Temperature: 350ºC (at tip of soldering iron) Maximum Time: 3s Single Occurrence

© 2013 Solid State Optronics • San José, CA Page 5 of 8 SMQ4110 /TR Rev 2.00 (11/25/2013) 001754 SMQ4110 Quad 1 Form A 250V / 300Ω MOSFET Output Solid State Relay All dimensions in inches [“] with millimeters in parenthesis (mm)

© 2013 Solid State Optronics • San José, CA Page 6 of 8 SMQ4110 /TR Rev 2.00 (11/25/2013) 001754 SMQ4110 Quad 1 Form A 250V / 300Ω MOSFET Output Solid State Relay

16 PIN SOIC Footprint Note: All dimensions in inches [“] with millimeters in parenthesis (mm)

© 2013 Solid State Optronics • San José, CA Page 7 of 8 SMQ4110 /TR Rev 2.00 (11/25/2013) 001754 SMQ4110 Quad 1 Form A 250V / 300Ω MOSFET Output Solid State Relay

© 2013 Solid State Optronics • San José, CA Page 8 of 8 SMQ4110 /TR Rev 2.00 (11/25/2013) 001754 SMQ4110 Quad 1 Form A 250V / 300Ω MOSFET Output Solid State Relay Solid State Optronics (SSO) makes no warranties or representations with regards to the completeness and accuracy of this document. SSO reserves the right to make changes to product description, specifications at any time without further notices. SSO shall not assume any liability arising out of the application or use of any product or circuit described herein. Neither circuit patent licenses nor indemnity are expressed or implied. Except as specified in SSO’s Standard Terms & Conditions, SSO disclaims liability for consequential or other damage, and we make no other warranty, expressed or implied, including merchantability and fitness for particular use. DISCLAIMER SSO does not authorize use of its devices in life support applications wherein failure or malfunction of a device may lead to personal injury or death. Users of SSO devices in life support applications assume all risks of such use and agree to indemnify SSO against any and all damages resulting from such use. Life support devices are defined as 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 used properly in accordance with instructions for use can be reasonably expected to result in significant injury to the user, or (d) a critical component of a life support device or system whose failure can be reasonably expected to cause failure of the life support device or system, or to affect its safety or effectiveness. LIFE SUPPORT POLICY