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  sip series reed relays description sil4 dss4 mvs4 mss4 ratings (@ 25? c) applications features agency approvals src devices offers a large selection of molded sip relays to meet customer applications. the dss4 was developed several years ago and continues to be the relay of choice for hook switch applications in modems and general purpose applications. the sil4 is the first of a series of new molded products ideally suited for use in high reliability requirements. its design centers on a new patent pending process aimed at protecting the hermetically sealed reed switch. when properly protected, the reed switch outperforms most other electromechanical switching devices for operating life (at low signal levels), isolation, low resistance and low operating power. the high performance mvs4 and mss4 models provide bounce free operation and offer a more durable contact when switching capacitive or inductive loads. both are capable of switching loads up to 50 watts. patent pending process (sil4) high reliability switching 3v operate option available quality defect levels <50 ppm (sil4) long operating life at low levels ( >1 billion operations) capable of switching up to 1000v high isolation between input and output (2500v) optional internal diode & n.c. option high density board mounting automatic insertion design state-of-the-art capsule designs epoxy molded single-in-line package fcc68 compatible on mss4 model ul recognized dss4 model at e - functional board testers - integrated circuit testers - bare board testers telecom matrix requirements instrumentation data acquisition parameter min typ max unit switching voltage sil4/dss4 200 volts mss4 500 volts mvs4 1000 volts switching current sil4/dss4 0.5 amps mvs4/mss4 2 amps carry current sil4 1.5 amps dss4 2 amps mss4/ mvs4 3 amps switching frequency sil4/dss4 500 hz mvs4/mss4 200 hz contact resistance sil4 120 m ? mvs4/mss4 100 m ? (see detailed specifications for more information.) src devices src devices 1 www.srcdevices.com
sip series reed relays specifications sil4 dss4 mvs4 mss4 dry reed relay specifications all parameters at 25 c unless otherwise stated. operate voltage, release voltage, and coil resistance will vary by approximately 0.4%/ c as ambient temperature varies. dss4 general purpose sil4 instrument-grade parameter conditions symbol min typ max min typ max units contact ratings switching voltage max dc/peakac resistive v l - - 200 - - 200 volts switching current max dc/peakac resistive i l - - 0.5 - - 0.5 amps carry current max dc/peakac resistive i c - - 2 - - 2 amps contact rating max dc/peakac resistive - - - 10 - - 10 watts life expectancy signal level 1.0v 10ma - - 1000 - - 500 - x10 6 ops rated loads (1) x10 6 ops static contact resistance 50mv, 10ma cr - 95 120 - - 150 m ? dynamic contact resistance 0.5v, 50ma at 100hz, dcr - - 150 - n/a n/a m ? 1.5 msec contact material - - ru - - ru - - relay specifications insulation resistance between all isolated pins ir 10 12 10 13 -10 10 10 12 - ? at 100v, 25 c, 40% rh capacitance across open contacts - - - 0.8 - - 1 pf open contact to coil - - 1.2 - - - 2 pf dielectric strength between contacts i/o 250 - - 250 - - vdc/peak ac contacts to coil i/o 2500 - - 1500 - - vdc/peak ac operate time, at nominal coil voltage t op - 0.2 0.5 - 0.25 0.5 ms including bounce 10hz square wave release time zener-diode suppression t rel - 0.1 0.5 - 0.15 0.5 - environmental ratings storage temperature t a -55 - +125 -40 - +105 c operating temperature t o -40 - +85 -40 - +85 c soldering temperature applied to pins,10 sec. max. - - - +260 (2) - - +260 c vibration resistance (3) 5hz - 2000hz g - - 20 - - 20 gs (survival) shock resistance 11 1ms, 1 / 2 sine wave s - - 100 - - - - (survival) weight - - 1.8 - - 1.6 - grams (1) refer to life graphs (2) capable of surviving infrared solder-reflow process (3) use caution not to exceed vibration resistance limits while ultrasonically cleaning relays with dyad switches. contact remtech engineering for more details/ recommendations src devices 2 usa 1-866-src-8668 europe 32-89-328850 far east 886-2-2698-8422 www. sr c de vi ce s .com
sip series reed relays specifications sil4 dss4 mvs4 mss4 mercury-wetted reed relays all parameters at 25 c unless otherwise stated. mvs4 high power/reliability position-sensitive (3) hg-wetted mss4 non-position-sensitive hg-wetted parameter conditions symbol min typ max min typ max units contact ratings switching voltage max dc/peakac resistive v l - - 1000 (1) - - 500 volts switching current max dc/peakac resistive i l - - 2 - - 2 amps carry current max dc/peakac resistive i c - - 3 - - 3 amps contact rating max dc/peakac resistive - - - 50 (4) - - 50 watts life expectancy signal level 1.0v 10ma - - 1000 - - 200 - x10 6 ops 50v, 1a - - 2 - - - - x10 6 ops 500v, 100ma - - 50 - - - - x10 6 ops rated loads (2) - - 7 - - 7 - x10 6 ops static contact resistance 50mv, 10ma cr - - 100 - - 100 m ? contact material - - hg - - hg - hg content - - 40 - - 16 - mgram relay specifications insulation resistance between all isolated pins ir 10 10 10 12 -10 8 10 10 - ? at 100v, 25 c, 40% rh capacitance across open contacts - - 0.8 - - - 2 pf upper contact to coil - - 2.2 - - - 4 pf closed contact to coil - - 3.3 - - - - pf dielectric strength between contacts i/o 2000 - - 2000 - - vdc/peak ac contacts to coil i/o 2500 - - 1400 - - vdc/peak ac operate time, at nominal coil voltage t op - - 2.5 - - 1.75 ms no bounce 10hz square wave release time zener-diode suppression t rel - - 2.5 - - 1.5 ms environmental ratings storage temperature t a -40 - +105 -40 - +105 c operating temperature t o -38 - +85 -38 - +75 c soldering temperature applied to pins,10 sec. max. - - +260 - - +260 c vibration resistance 10hz - 500hz g - - 10 - - 10 gs (survival) shock resistance 11 1ms, 1 / 2 sine wave s - - 30 - - 30 gs (survival) weight - - 2.2 - - 2.4 - grams (1) current limited up to 5ma, typical 20 million operations; for further life information, consult factory. (2) refer to mh4 (mvs4) & myad (mss4) life graphs. (3) vertical mounting required. pin #1 is up. (4) derate to 5 watts when switching voltages >500v. src devices src devices 3 www. sr c de vi ce s .com usa 1- 8 66 - sr c - 8 668 europe 32 - 89 - 32 8 85 0 far east 8 8 6 - 2- 2 6 98 - 8 42 2
sip series reed rela ys dss4 mvs4 mss4 coil specifications mechanical dimensions contact form coil voltage coil resistance operate voltage release voltage nominal input power units volts ? volts volts mw conditions +/- 10% (25 c) must operate by (25 c) must release by (25 c) part # min typ max min typ max min typ max min typ max min typ max sil41a03(b) 1-form-a 3 6 135 150 165 2.25 0.3 60 sil41a05(b) 1-form-a 5 10 450 500 550 3.75 0.4 50 sil41a12(b) 1-form-a 12 16 900 1000 1100 8.6 1.5 144 sil41a24(b) 1-form-a 24 30 1800 2000 2200 17.5 2.5 288 sil41b05(b) 1-form-b 5 6 450 500 550 3.75 0.8 50 sil41b12(b) 1-form-b 12 14 900 1000 1100 9 1.5 144 sil41b24(b) 1-form-b 24 29 1800 2000 2200 18 2.5 288 dss41a05 1-form-a 5 10 450 500 550 3.75 0.8 50 DSS41A12 1-form-a 12 16 900 1000 1100 8.6 1.5 144 dss41a24 1-form-a 24 30 1800 2000 2200 17.5 2.5 288 dss41b05 1-form-b 5 10 450 500 550 3.75 0.8 50 dss41b12 1-form-b 12 16 900 1000 1100 9 1 144 dss41b24 1-form-b 24 30 1935 2150 2365 18 2 268 mvs41a05(b) 1-form-a 5 7 94.5 105 116 3.75 0.5 238 mvs41a12(b) 1-form-a 12 15 450 500 550 9 1 288 mvs41a24(b) 1-form-a 24 30 1935 2150 2365 18 2.0 268 mss41a05 1-form-a 5 10 126 140 154 3.75 0.5 179 mss41a12 1-form-a 12 16 450 500 550 9 1 288 mss41a24 1-form-a 24 30 1935 2150 2365 18 2 268 19.05 max. (0.750) sil4/dss4 5.08 max. (0.200) 7 5 3 1 7.62 max. (0.300) mold mark denotes pin 1 side of relay 15.24 (0.600) 5.08 (0.200) 0.49 (0.019) 2.54 ref. (0.100) 3.18 (0.125) 0.33 (0.013) 2.00 ref. (0.080) 0.41 ref. (0.016) top view 19.05 max. (0.750) mvs4/mss4 6.70 max. (0.264) 1 3 5 7 8.20 max. (0.323) 15.24 (0.600) 5.08 (0.200) 0.49 (0.019) 3.20 0.25 (0.125 0.010) 0.33 (0.013) top view sil4/dss4 pinout 7 5 3 1 top view form a form b for form b or diode options, coil polarity (pin #3 positive) must be observed. 7 5 3 1 top view dimensions mm (inches) mvs4/mss4 pinout 1 3 5 7 top view * mvs4 only must be mounted vertically with pin #1 up. up * src devices 4 www. sr c de vi ce s .com usa 1- 8 66 - sr c - 8 668 europe 32 - 89 - 32 8 85 0 far east 8 8 6 - 2- 2 6 98 - 8 42 2 sil4
sip series reed relays performance graphs coil input power (mw) delta t ( 50 40 30 20 10 0 025 75 50 200 100 125 150 175 sil4/dss4 relay temperature rise vs. coil power (5v) mvs4 relay temperature rise vs. coil power (1-form-a 5v) coil input power (mw) delta t ( c) of relay 100 80 60 40 20 0 0 75 150 225 300 375 450 525 600 675 750 relay internal temperature rise vs. power sil4/dss4 rated load: 5va number of operations (x10 6 ) % cumm. fail 0.1 99.9 1.0 0.1 0.2 0.3 0.5 10.0 2.0 3.0 5.0 20.0 30.0 50.0 2 1 0 -1 -2 -3 -4 -5 -6 -7 1.0 10.0 100.0 48v-100ma load 0.935 x 10 6 ops 90% survival 2.576 x 10 6 ops mtbf 10v-500ma load 4.064 x 10 6 ops 90% survival 12.838 x 10 6 ops mtbf sil4/dss4 rated load: 10va number of operations (x10 6 ) % cumm. fail 0.1 99.9 1.0 0.1 0.2 0.3 0.5 10.0 2.0 3.0 5.0 20.0 30.0 50.0 2 1 0 -1 -2 -3 -4 -5 -6 -7 1.0 10.0 100.0 20v-500ma load 1.290 x 10 6 ops 90% survival 5.978 x 10 6 ops mtbf 50v-200ma load 0.317 x 10 6 ops 90% survival 0.671 x 10 6 ops mtbf 100v-100ma load 0.763 x 10 6 ops 90% survival 3.919 x 10 6 ops mtbf mvs series rated load: 50va-20hz number of operations (x10 6 ) % cumm. failures 0.1 99.9 1.0 0.1 0.2 0.3 0.5 10.0 2.0 3.0 5.0 20.0 30.0 50.0 2 1 0 -1 -2 -3 -4 -5 -6 -7 1.0 10.0 100.0 50v-1a load 3.897 x 10 6 ops 90% survival 15.520 x 10 6 ops mtbf src devices src 5 www. sr c de vi ce s .com usa 1- 8 66 - sr c - 8 668 europe 32 - 89 - 32 8 85 0 far east 8 8 6 - 2- 2 6 98 - 8 42 2 dss4 mvs4 mss4 sil4
sip series reed rela ys dss4 mvs4 mss4 performance graphs pull in/drop out vs. temperature sil4/dss4 timing vs. frequency frequency (hz) operate timing release timing timing ( s) 250 200 150 100 50 0 0 50 100 150 200 250 300 sil4/dss4 operate/release time vs. overdrive (diode & zener suppression) times nominal coil drive operate timing release timing max min max min operate timing ( s) 2000 1500 1000 500 0 release timing ( s) 200 150 100 50 0 0.7 0.8 1.0 0.9 1.5 1.1 1.2 1.3 1.4 sil4/dss4 operate/release time vs overdrive (diode suppression) times nominal coil drive operate timing release timing max min max min operate timing ( s) 2000 1500 1000 500 0 release timing ( s) 200 150 100 50 0 0.7 0.8 1.00.9 1.51.1 1.2 1.3 1.4 sil4/dss4 operate/release time vs. overdrive (no diode suppression) times nominal coil drive operate timing release timing max min operate timing ( s) 2000 1500 1000 500 0 release timing ( s) 200 150 100 50 0 0.7 0.8 1.0 0.9 1.5 1.1 1.2 1.3 1.4 operate/release time characteristics mvs4/mss4 pull in/drop out vs. temperature ambient temperature (?c) % change 30 20 10 0 -10 -20 -30 -40 -20 0 204060 80 100 src devices 6 www. sr c de vi ce s .com usa 1- 8 66 - sr c - 8 668 europe 32 - 89 - 32 8 85 0 far east 8 8 6 - 2- 2 6 98 - 8 42 2 sil4
sip series reed relays ordering information sil4 dss4 mvs4 mss4 if relays are inserted in close proximity, the pickup and dropout voltages will be affected by the magnetic flux produced when the coils are energized. in general, worst-case magnetic interaction conditions for pull-in voltage in a matrix exist when all relay fields have the same polarity and all of the fields are from adjacent relays (see figure). the direction of the parameter shift is determined by whether the stray flux aids or bucks the flux produced by the coil of the relay under consideration. to calculate the change in pull-in voltage and dropout voltage, multiply the percent change shown by the relays nominal voltage. for example, if the percent change in pull-in voltage is 14% for a 5v nominal relay, the pull-in voltage will increase by 0.7 volts. xxxx xx xx x a complete part number is represented by the digits below. series sil4 dss4 contact form 1a = 1-form-a (normally open) 1b = 1-form-b (normally closed) blank = no diode b = diode option (sil4 & dss4) coil voltage 03 = 3v (sil4) 05 = 5v 12 = 12v 24 = 24v sil4/dss4 magnetic interference xx distance between centers of adjacent relays (x, in inches) adjacent relays relay under test 1. nominal voltage is applied to the adjacent relays. 2. the % increase of pull-in and drop out of the relay under test is measured and compared with the values without any magnetic influence of adjacent relays. % increase of p.i. and d.o. 20.0% 15.0% 10.0% 5.0% 0.0% 0.1 0.7 0.2 0.3 0.4 0.5 0.6 mvs4/mss4 magnetic interference distance between centers of adjacent relays (in inches) % p.i. and d.o. increase 10.0% 7.5% 5.0% 2.5% 0.0% 0.2 0.25 0.3 0.35 0.4 0.45 0.5 0.55 0.6 0.65 0.7 xx adjacent relays relay under test 1. nominal voltage is applied to the adjacent relays. 2. the % increase of pull-in and drop out of the relay under test is measured and compared with the values without any magnetic influence of adjacent relays. magnetic interference src devices src devices 7 www. sr c de vi ce s .com usa 1- 8 66 - sr c - 8 668 europe 32 - 89 - 32 8 85 0 far east 8 8 6 - 2- 2 6 98 - 8 42 2


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