SMC1309 SOLIDSTATE | Alldatasheet
Document overview
- Manufacturer or author: Provided By alldatasheet.com(free datasheet download site)
- PDF pages: 7
Technical content
Features
Low On Resistance (500m TYP) Low Output Capacitan ce (18pF TYP @ 25V) Low Output Leakage (1nA MAX @ 80V) 750mA Maximum Cont inuous Load Current 2A Pulsed Current (100mS Period @ 10% DC) Isolation Voltage (500V RMS) 1 Form C with Break Before Make Switching Long Life / High Reliability RoHS / Pb-Free / REACH Compliant NOTE: Suffixes listed above are not included in marking on device for part number identification SMC1309
© 2021 Solid State Optronics • San José, CA SMC1309 /TR Rev 01 (25-FEB-2021) 009091 SMC1309
1 Form C
100V / 500mΩ MOSFET Output Solid State Relay Parameter Symbol Min. Typ. Max. Units Test Conditions Input Specifications Recommended Control Voltage V CC 5 - 15 V - Control Current1 I SET - 3 - m A - Output Specifications (Same for both NO and NC poles) Blocking Voltage V B 100 - - V - Continuous Load Current I O - - 750 mA - Maximum Pulsed Current I O(Pulse) 2 A Period = 100mS @ 10% Duty Cycle On Resistance R ON - 500 750 mΩ IO=750mA Leakage Current IOleak - - 100 nA VO=100V - - 1 V O=80V Output Capacitance COUT - 75 - pF VO=0, f=1MHz - 18 - V O=25, f=1MHz - 12 - V O=60, f=1MHz Coupled Specifications Turn-On Time T ON - 1 3 m S - Turn-Off Time T OFF - 0.05 - mS - Input to Output Capacitance C S - 0.6 - pF V=0, f=1MHz Contact Transient Ratio - 2,000 7,000 0 V/S dV = 50V Isolation Specifications Isolation Voltage V ISO 1500 - - V RMS RH ≤ 50%, t=1min Input-Output Resistance R I-O - 1 0 12 - VI-O = 500VDC NOTES: 1. Control Current is referred to as “I SET” in the connection diagram found on page 4. Reference Note 4 found there for more details Electrical Characteristics, TA = 25°C (unless otherwise specified)
© 2021 Solid State Optronics • San José, CA SMC1309 /TR Rev 01 (25-FEB-2021) 009091 SMC1309 100V / 500mΩ MOSFET Output Solid State Relay SMC1309 Performance & Characteristics Plots, TA = 25°C (unless otherwise specified) 480 490 500 510 520 530 540 550 560 Device Count On- Resistance (mΩ) Figure 1: Typical On-Resistance Distribution (N = 100, Ta = 25ºC) 108 109 110 111 112 113 114 115 Device Count Blocking Voltage (VB) Figure 2: Typical Blocking Voltage Distribution (N = 100, Ta = 25ºC) Device Count Leakage Current (nA) Figure 3: Typical Output Leakage Current Distribution (N = 100, Ta = 25ºC) 100 200 300 400 500 600 700 800 900 1000 - 4 0 - 2 00 2 04 06 08 0 1 0 0 Load Current (mA) Temperature (ºC) Figure 4: Maximum Load Current vs. Temperature
© 2021 Solid State Optronics • San José, CA SMC1309 /TR Rev 01 (25-FEB-2021) 009091 SMC1309 100V / 500mΩ MOSFET Output Solid State Relay SMC1309 Recommended Output Connections and Components Notes 1) SSO recommends a Pull Up Resistor (Rp) value of 10kΩ or less 2) NO (Normally Open) contacts bet ween pins 5 & 6 are defined as OPEN when the Open Collector is open and pin 4 is pulled up with the Pull Up Resistor (Rp). These contacts will CLOSE when the Open Collector driver pulls pin 4 to ground (below 0.5V). The NC (Normally Closed) contacts between pins 7 & 8 operate in an inverse manner 3) The Open Collector Transitio n Time should be less than 5S for proper performance 4) I SET (Control Current as found in Parameters on Page 2) is used to set the internal photo drive current. SSO recommends an Iset value of 3mA for optimal device performance. Rset can be calculated for Vcc of either 5V or 12V. Assume a voltage drop of 2.2V for the Optical Control Circuit and Rset values for a 3mA Iset become: Rset (@5Vcc) = (Vcc-Vopticalci rcuit) / (target Iset) Rset (@ 12Vcc) = (Vcc-Vopticalcircuit) / (target Iset) = 2.8 / 0.003 (933 ohms) = 9.8 / 0.003 (3266 ohms) Rset (@5Vcc) = 910 Ohm (5%) Rset (@12Vcc) = 3300 ohms (5%) 5) Pins 6 & 7 can be connected externally forming a common point, in effect the common point of the Form C relay Iset Do Not Use Ground Input (Vin) NO NC NC NO Open Collector / Open Drain Driver VCC = 5V or 12V RP (Pull Up Resistor) RSET
© 2021 Solid State Optronics • San José, CA SMC1309 /TR Rev 01 (25-FEB-2021) 009091 SMC1309 100V / 500mΩ 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 (1) Infrared Reflow: Refer to the following figure as an example of an optimal tempe rature profile for single occurrence infrared reflow. Soldering process should not exceed temperature or time limits expressed herein. Surface 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 SMC1309 Solder Reflow Temperature Profile Recommendations
© 2021 Solid State Optronics • San José, CA SMC1309 /TR Rev 01 (25-FEB-2021) 009091 SMC1309 100V / 500mΩ MOSFET Output Solid State Relay All dimensions in inches with millimeters [mm] in parenthesis ()
© 2021 Solid State Optronics • San José, CA SMC1309 /TR Rev 01 (25-FEB-2021) 009091 SMC1309 100V / 500mΩ MOSFET Output Solid State Relay SMC1309 YYWW