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  description the trustability ? high accuracy silicon ceramic (hsc) series is a piezoresistive silicon pressure sensor offering a digital output for reading pressure over the specified full scale pressure span and temperature range. the hsc series is fully calibrated and temperature compensated for sensor offset, sensitivity, temperature effects, and non - linearity using an on - board application specific integrated circuit (asic). calibrated output values for pressure are updated at approximately 2 khz. the h sc series is calibrated over the temperature range of 0 c to 50 c [32 f to 122 f]. the sensor is characterized for operation from a single power supply of either 3.3 vdc or 5.0 vdc. these sensors measure absolute, differential, and gage pressures. the absolute versions have an internal vacuum reference and an output value proportional to absolute pressure. differential versions allow application of pressure to either side of the sensing diaphragm. gage versions are referenced to atmospheric pressure and provide an output proportional to pressure variations from atmosphere. the trustability ? pressure sensors are intended for use with non - corrosive, non - ionic gases, such as air and other dry gases. an available option extend s the performance of thes e sensors to n on - corrosive, non - ionic liquids. all products are designed and manufactured according to iso 9001 standards. features industry - leading long - term stability extremely tight accuracy of 0.25% fss bfsl ( full scale span best fit straight lin e ) total error band of 1% full scale span maximum modular and flexible design offer s customers a variety of package styles and options, all with the same industry - leading performance specifications miniature 10 mm x 10 mm [0.39 in x 0.39 in] package low o perating voltage extremely low power consumption i 2 c - or spi - compatible 14 - bit digital output (min. 12 - bit sensor resolution) precision asic conditioning and temperature compensated over 0 c to 50 c [32 f to 122 f] temperature range rohs compliant virt ually insensitive to mounting orientation internal diagnostic functions increase system reliability also available with analog output absolute, differential and gage types pressure ranges from 1 psi to 150 psi (60 mbar to 10 bar) custom calibration availab le various pressure port options liquid media option
2 www.honeywell.com/sensing potential applicatio ns medical: - airflow monitors - anesthesia machines - blood analysis machines - gas chromatography - gas flow instrumentation - kidney dialysis machines - oxygen concentrators - pneumatic cont rols - respiratory machines - sleep apnea equipment - ventilators industrial: - barometry - flow calibrators - gas chromatography - gas flow instrumentation - hvac - life sciences - pneumatic controls table 1. absolute maximum ratings 1 parameter min. max. unit supply vo ltage (v supply ) - 0.3 6.0 v dc voltage on any pin - 0.3 v supply + 0.3 v digital interface clock frequency : i 2 c spi 100 50 400 800 khz esd susceptibility (human body model) 3 kv storage temperature - 40 [ - 40] 85 [185] c [ f] soldering time and tempera ture: lead solder temperature (sip, dip) peak reflow temperature ( smt ) 4 s max. at 250 c [482 f ] 1 5 s max. at 250 c [482 f ] table 2. operating specifications parameter min. typ. max. unit supply voltage (v supply ) 2 : 3.3 v dc 5.0 v dc sensors are either 3.3 vdc or 5.0 v dc based on listing selected . 3.0 4.75 3.3 3 5.0 3 3. 6 5.25 vdc supply current : 3.3 v dc supply 5.0 v dc supply - 1.6 2 2.1 3 ma compensated temperature range 4 0 [32] 50 [122] c [ f] operating temperature range 5 - 20 [ - 4] 85 [185] c [ f] startup time (power up to data ready) 2.8 7.3 ms response time 0.46 ms i 2 c voltage level low - - 0.2 v supply i 2 c voltage level high 0.8 - - v supply pull up on sda and scl 1 - - kohm accuracy 6 0.25 %fss bfsl total e rror band 7 1 %fss 8 output resolution 1 2 bits
honeywell sensing and control 3 table 3. environmental specifications parameter characteristic humidity : d ry gases only ( s ee options n and d in figure 1.) l iquid media ( s ee options t and v in figure 1.) 0% to 95% rh, non - co ndensing 100% condensing or direct liquid media on p ort 1 vibration mil - std - 202f, curve ak (20.7 g random) shock mil - std - 202f, method 213b, condition f life 9 1 million cycles minimum solder reflow j - std - 020 - c table 4. wetted materials 10 parameter po rt 1 (pressure port) port 2 (reference port) covers high temperature polyamide high temperature polyamide substrate alumina ceramic alumina ceramic adhesives epoxy, silicone epoxy, silicone electronic components ceramic, glass, solder, silicon silicon, glass, gold, solder not es : 1. absolute maximum ratings are the extreme limits the device will withstand without damage. 2. ratiometric ity of the sensor ( the ability of the digital device to maintain performance parameters independent of supply voltage ) is achi eved within the specified oper ating voltage for each option. 3. the sensor is n ot reverse polarity protected. incorrect application of supply voltage or ground to the wrong pin may cause electrical failure. 4. the compensated temperature range is the temperature range over which the sensor will produce an output proportional to pressure within the specified performance limits. 5. the operating temperature range is the temperature range over which the sensor will produce an output proportional to pressur e but may not remain within the specified performance limits. 6. accuracy: the maximum deviation in output from a best fit straight line (bfsl) fitted to the output measured over the pressure range at 25 c [77 f] . includes all errors due to pressure non - linearity, press ure hysteresis, and non - repeatability. 7. total error band: the m aximum deviation from the ideal transfer function over the entire compensated temperature an d pressure range. includes all errors due to offset, full scale span, pressure non - linearity, pressure hysteresis, repeatability, thermal effect on offset, thermal effect on span , and thermal hysteresis. 8. full scale span (fss) is the algebraic difference between the output signal measured at the maximum (pmax . ) and minimum (p min . ) limits of the pressure ran ge. (see f igure 1 for ranges . ) 9. life may vary depending on specific application in which sensor is utilized. 10. contact honeywell customer service for detailed material information. caution product damage ensure liquid media is applied to port 1 only; port 2 is not compatible with liquids. ensure liquid media contains no particulates. all trustability ? sensors are dead - ended devices. particulates can accumulate inside the sensor, causing damage or affecting sensor output. recommend that the sensor be positione d with port 1 facing downwards; any particulates in the system are less likely to enter and settle within the pressure sensor if it is in this position. ensure liquid media does not create a residue when dried; build - up inside the sensor may affect sensor output. rinsing of a dead - ended sensor is difficult and has limited effectiveness for removing residue. ensure liquid media are compatible with wetted materials. non - compatible liquid media will degrade sensor performance and may lead to sensor failure. fa ilure to comply with these instructions may result in product damage.
4 www.honeywell.com/sensing figure 1 . nomenclature and order guide notes: 11. the transfer function limits define the output of the sensor at a given pressure input. by specifying pmi n. and pmax., the output at pmin. and pmax., the complete transfer function of the sensor is defined. see figure 2 for a graphical representation of the transfer f unction. other transfer functions are available. contact honeywell customer service for more information. 12. analog output is also available. contact honeywell customer service for more information. 13. custom pressure ranges are available. contact honeywell customer service for more information. 14. see table 5 for an explanation of sensor pressure types. 15. see caution on previous page. a a = d u a l a x i a l b a r b e d p o r t s , o p p o s i t e s i d e s d i p s e r i e s p a c k a g e d = d i p ( d u a l i n l i n e p i n ) m = s m t ( s u r f a c e m o u n t t e c h n o l o g y ) s = s i p ( s i n g l e i n l i n e p i n ) o p t i o n s 1 5 n = d r y g a s e s o n l y , n o s p e c i a l o p t i o n s d = d r y g a s e s o n l y , d i a g n o s t i c s o n t = l i q u i d m e d i a o n p o r t 1 , n o d i a g n o s t i c s v = l i q u i d m e d i a o n p o r t 1 , d i a g n o s t i c s o n t r a n s f e r f u n c t i o n 1 1 a = 1 0 % t o 9 0 % o f v s u p p l y o u t p u t t y p e 1 2 s = s p i ( n o t a v a i l a b l e i n s i p p a c k a g e ) 2 = i 2 c , a d d r e s s 0 x 2 8 3 = i 2 c , a d d r e s s 0 x 3 8 4 = i 2 c , a d d r e s s 0 x 4 8 5 = i 2 c , a d d r e s s 0 x 5 8 6 = i 2 c , a d d r e s s 0 x 6 8 7 = i 2 c , a d d r e s s 0 x 7 8 a n = s i n g l e a x i a l b a r b e d p o r t d r = d u a l r a d i a l b a r b e d p o r t s , o p p o s i t e s i d e s f f = f a s t e n e r m o u n t , d u a l a x i a l b a r b e d p o r t s , o p p o s i t e s i d e s f n = f a s t e n e r m o u n t , s i n g l e a x i a l b a r b e d p o r t h h = f a s t e n e r m o u n t , d u a l r a d i a l b a r b e d p o r t s , s a m e s i d e h n = f a s t e n e r m o u n t , s i n g l e r a d i a l b a r b e d p o r t m n = m a n i f o l d m o u n t , o u t e r d i a m e t e r s e a l l n = s i n g l e a x i a l b a r b l e s s p o r t n b = f a s t e n e r m o u n t , d u a l a x i a l p o r t s , s a m e s i d e n n = n o p o r t s r n = s i n g l e r a d i a l b a r b e d p o r t r r = d u a l r a d i a l b a r b e d p o r t s , s a m e s i d e s n = m a n i f o l d m o u n t , i n n e r d i a m e t e r s e a l p r e s s u r e p o r t ( * i n d i c a t e s n o t a v a i l a b l e ) s m t s i p a n = s i n g l e a x i a l b a r b e d p o r t a n = s i n g l e a x i a l b a r b e d p o r t d r = d u a l r a d i a l b a r b e d p o r t s , o p p o s i t e s i d e s d r = d u a l r a d i a l b a r b e d p o r t s , o p p o s i t e s i d e s l n = s i n g l e a x i a l b a r b l e s s p o r t r n = s i n g l e r a d i a l b a r b e d p o r t r n = s i n g l e r a d i a l b a r b e d p o r t r r = d u a l r a d i a l b a r b e d p o r t s , s a m e s i d e r r = d u a l r a d i a l b a r b e d p o r t s , s a m e s i d e n n = n o p o r t s n n = n o p o r t s h s c _ _ _ _ _ _ _ _ _ _ a l n = s i n g l e a x i a l b a r b l e s s p o r t * * * * * * * * * * * * * * * * * * _ s u p p l y v o l t a g e 3 = 3 . 3 v d c 5 = 5 . 0 v d c g n = r i b b e d f a s t e n e r m o u n t , s i n g l e a x i a l b a r b e d p o r t p r e s s u r e r a n g e 1 3 , 1 4 1 p s i t o 1 5 0 p s i a b s o l u t e 0 1 5 p a = 0 p s i t o 1 5 p s i 0 3 0 p a = 0 p s i t o 3 0 p s i 0 6 0 p a = 0 p s i t o 6 0 p s i 1 0 0 p a = 0 p s i t o 1 0 0 p s i 1 5 0 p a = 0 p s i t o 1 5 0 p s i d i f f e r e n t i a l 0 0 1 p d = 1 p s i 0 0 5 p d = 5 p s i 0 1 5 p d = 1 5 p s i 0 3 0 p d = 3 0 p s i 0 6 0 p d = 6 0 p s i g a g e 0 0 1 p g = 0 p s i t o 1 p s i 0 0 5 p g = 0 p s i t o 5 p s i 0 1 5 p g = 0 p s i t o 1 5 p s i 0 3 0 p g = 0 p s i t o 3 0 p s i 0 6 0 p g = 0 p s i t o 6 0 p s i 1 0 0 p g = 0 p s i t o 1 0 0 p s i 1 5 0 p g = 0 p s i t o 1 5 0 p s i 6 0 m b a r t o 1 0 b a r a b s o l u t e 0 0 1 b a = 0 b a r t o 1 b a r 1 . 6 b a = 0 b a r t o 1 . 6 b a r 2 . 5 b a = 0 b a r t o 2 . 5 b a r 0 0 4 b a = 0 b a r t o 4 b a r 0 0 6 b a = 0 b a r t o 6 b a r 0 1 0 b a = 0 b a r t o 1 0 b a r d i f f e r e n t i a l 0 6 0 m d = 6 0 m b a r 1 0 0 m d = 1 0 0 m b a r 1 6 0 m d = 1 6 0 m b a r 2 5 0 m d = 2 5 0 m b a r 4 0 0 m d = 4 0 0 m b a r 6 0 0 m d = 6 0 0 m b a r 0 0 1 b d = 1 b a r 1 . 6 b d = 1 . 6 b a r 2 . 5 b d = 2 . 5 b a r 0 0 4 b d = 4 b a r g a g e 0 6 0 m g = 0 m b a r t o 6 0 m b a r 1 0 0 m g = 0 m b a r t o 1 0 0 m b a r 1 6 0 m g = 0 m b a r t o 1 6 0 m b a r 2 5 0 m g = 0 m b a r t o 2 5 0 m b a r 4 0 0 m g = 0 b a r t o 4 0 0 m b a r 6 0 0 m g = 0 b a r t o 6 0 0 m b a r 0 0 1 b g = 0 b a r t o 1 b a r 1 . 6 b g = 0 b a r t o 1 . 6 b a r 2 . 5 b g = 0 b a r t o 2 . 5 b a r 0 0 4 b g = 0 b a r t o 4 b a r 0 0 6 b g = 0 b a r t o 6 b a r 0 1 0 b g = 0 b a r t o 1 0 b a r
honeywell sensing and control 5 figure 2. transfer function limits figure 3. completed catalog listing example hscsann100pgsa3 sip package, an pressure port, no diagnostics, 100 psi gage, spi output, 10% to 90% calibration at 3.3 vdc. table 5. p ressure types pressure type description absolute output is proportional to the difference between applied pressure and a built - in reference to vacuum . p min . is set at absolute zero pressure (full vacuum). differential output is proportional to the differ ence between the pressures applied to eac h port. (port 1 port 2) 50% point of transfer function set at port 1 = port 2. ga ge output is proportional to the difference between applied pressure and atmospheric (ambient) pressure. p min . is set at atmospheri c pressure. table 6. sensor output at significant percentages % output digital counts (decimal) digital counts (hex) 0 0 0x0000 10 1638 0x0666 50 8192 0x2000 90 14746 0x399a 100 16383 0x3fff table 7 . pressure range specifications for 1 psi to 150 psi order code pressure range over - pressure 1 6 burst pressure 1 7 common mode pressure 1 8 long - term stability (1000 hr, 25 c [77 f]) p min . p max . absolute 015 pa 0 ps i 15 psi 30 psi 60 psi na 0.25% fss 030 pa 0 psi 30 psi 60 psi 120 psi na 0.25% fss 060 pa 0 psi 60 psi 120 psi 240 psi na 0.25% fss 100 pa 0 psi 100 psi 250 psi 250 psi na 0.25% fss 150 pa 0 psi 150 psi 250 psi 250 psi na 0.25% fss differential 001pd - 1 psi 1 psi 10 psi 10 psi 150 psi 0.35% fss 005pd - 5 psi 5 psi 30 psi 40 psi 15 0 psi 0.35% fss 015pd - 15 psi 15 psi 30 psi 60 psi 150 psi 0.25% fss 030pd - 30 psi 30 psi 60 psi 120 psi 150 psi 0.25% fss 060pd - 60 psi 60 psi 120 psi 240 psi 250 psi 0.25% fss gage 001pg 0 psi 1 psi 10 psi 10 psi 150 psi 0.35% fss 005pg 0 psi 5 psi 30 psi 40 psi 150 psi 0.35% fss 015pg 0 psi 15 psi 30 psi 60 psi 150 psi 0.25% fss 030pg 0 psi 30 psi 60 psi 120 psi 150 psi 0.25% fss 060pg 0 psi 60 psi 120 psi 240 psi 2 50 psi 0.25% fss 100pg 0 psi 100 psi 250 psi 250 psi 250 psi 0.25% fss 150pg 0 psi 150 psi 250 psi 250 psi 250 psi 0.25% fss
6 www.honeywell.com/sensing table 8 . pressure range specifications for 60 mbar to 10 bar order code pressure range over - pressure 1 6 burst pressure 1 7 common mode pressure 1 8 long - term stability (1000 hr, 25 c [77 f]) p min p max absolute 001 ba 0 bar 1 bar 2 ba r 4 bar na 0.25% fss 1.6 ba 0 bar 1.6 bar 4 bar 8 bar na 0.25% fss 2.5 ba 0 bar 2.5 bar 6 bar 8 bar na 0.25% fss 004 ba 0 bar 4 bar 8 bar 16 bar na 0.25% fss 006 ba 0 bar 6 bar 17 bar 17 bar na 0.25% fss 01 0 ba 0 bar 10 bar 17 bar 17 bar na 0.25% fss differential 060md - 60 mbar 60 mbar 500 mbar 700 mbar 10 bar 0.35% fss 100md - 100 mbar 100 mbar 500 mbar 700 mbar 10 bar 0.35% fss 160md - 160 mbar 160 mbar 500 m bar 700 mbar 10 bar 0.35% fss 250md - 250 m bar 250 mbar 1.4 bar 2.5 bar 10 bar 0.35% fss 400md - 400 mbar 400 mbar 1.4 bar 2.5 bar 10 bar 0.35% fss 600md - 600 mbar 600 mbar 2 bar 4 bar 10 bar 0.25% fss 001bd - 1 bar 1 bar 2 bar 4 bar 10 bar 0.25% fss 1. 6 bd - 1. 6 bar 1. 6 bar 4 bar 8 bar 10 bar 0.25% fss 2.5bd - 2.5 bar 2.5 bar 6 bar 8 bar 10 bar 0.25% fss 004bd - 4 bar 4 bar 8 bar 16 bar 10 bar 0.25% fss gage 060mg 0 mbar 60 mbar 500 mbar 700 m bar 3.5 bar 0.35% fss 100mg 0 mbar 100 mbar 500 mbar 700 mbar 10 bar 0.35% fss 160mg 0 mbar 16 0 mbar 500 mbar 700 mbar 10 bar 0.35% fss 250mg 0 mbar 250 mbar 1.4 bar 2.5 bar 10 bar 0.35% fss 400mg 0 mbar 400 mbar 1.4 bar 2.5 bar 10 bar 0.35% fss 600mg 0 mbar 600 mbar 2 ba r 4 bar 10 bar 0.35% fss 001bg 0 bar 1 bar 2 ba r 4 bar 10 bar 0.25% f ss 1.6bg 0 bar 1.6 bar 4 bar 8 bar 10 bar 0.25% fss 2.5bg 0 bar 2.5 bar 6 bar 8 bar 10 bar 0.25% fss 004bg 0 bar 4 bar 8 bar 16 bar 16 bar 0.25% fss 006bg 0 bar 6 bar 17 bar 17 bar 17 bar 0.25% fss 010bg 0 bar 10 bar 17 bar 17 bar 17 bar 0.25% fs s n otes: 16. overpressure: the maximum pressure which may safely be applied to the product for it to remain in specification once pressure is returned t o the operating pressure range. exposure to higher pressures may cause pe rmanent damage to the product. unl ess otherwise specified this applies to all available pressure ports at any temperature with the operating temperature range. 17. burst pressure: the maximum pressure that may be applied to any port of the product without cau sing escape of pressure media. prod uct should not be expected to function after exposure to any pressure beyond the burst pressure. 18. common mode pressure: the maximum pressure that can be applied simultaneously to both ports of a differential pressure sensor without causing changes in specif ied performance. table 9 . pinout for smt and dip packages output type pin 1 pin 2 pin 3 pin 4 pin 5 pin 6 pin 7 pin 8 i 2 c gnd v supply sda scl nc nc nc nc spi gnd v supply miso sclk ss nc nc nc t able 10 . pinout for sip package output type pin 1 pin 2 pi n 3 pin 4 i 2 c gnd v supply sda sc l
honeywell sensing and control 7 fi gure 4 . dip pressure port dimensional drawings ( for reference only: mm [in] ) dip nn: no ports dip an: single axial barbed port dip ln: single axial barbles s port dip rn: single radial barbed port dip rr: dual radial barbed ports, same side dip dr: dual radial barbed ports, opposite sides 1 3 , 3 5 [ 0 . 5 2 5 ] 1 0 , 0 [ 0 . 3 9 ] 6 , 9 9 [ 0 . 2 7 5 ] 1 2 3 4 8 7 6 5 1 0 , 8 5 [ 0 . 4 2 7 ] 9 , 2 4 [ 0 . 3 6 4 ] 5 , 4 4 [ 0 . 2 1 4 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] 8 x 0 , 4 6 [ 0 . 0 1 8 ] 0 , 2 5 [ 0 . 0 1 0 ] p o r t 1 p o r t 2 1 2 3 4 1 0 , 0 [ 0 . 3 9 ] 1 3 , 3 5 [ 0 . 5 2 5 ] p o r t 1 8 7 6 5 6 , 2 [ 0 . 2 4 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] 9 , 2 4 [ 0 . 3 6 4 ] 1 1 , 2 1 [ 0 . 4 4 1 ] 7 , 9 5 [ 0 . 3 1 3 ] 1 3 , 7 5 [ 0 . 5 4 1 ] 4 , 9 3 d i a . [ 0 . 1 9 4 ] p o r t 2 6 , 9 9 [ 0 . 2 7 5 ] 8 x 0 , 4 6 [ 0 . 0 1 8 ] 0 , 2 5 [ 0 . 0 1 0 ] p o r t 1 p o r t 2 1 0 , 0 [ 0 . 3 9 ] 1 3 , 3 5 [ 0 . 5 2 5 ] 6 , 9 9 [ 0 . 2 7 5 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] 6 , 9 5 [ 0 . 2 7 4 ] 1 , 0 0 [ 0 . 0 3 9 ] 9 , 2 4 [ 0 . 3 6 4 ] 1 1 , 2 1 [ 0 . 4 4 1 ] 1 3 , 7 5 [ 0 . 5 4 1 ] 5 , 8 0 [ 0 . 2 2 8 ] 1 2 3 4 8 7 6 5 8 x 0 , 4 6 [ 0 . 0 1 8 ] 0 , 2 5 [ 0 . 0 1 0 ] 2 , 4 7 d i a . [ 0 . 0 9 7 ] p o r t 1 1 3 , 3 5 [ 0 . 5 2 5 ] 1 0 , 0 [ 0 . 3 9 ] 6 , 9 9 [ 0 . 2 7 5 ] 1 2 3 4 8 7 6 5 1 1 , 2 1 [ 0 . 4 4 1 ] 9 , 2 4 [ 0 . 3 6 4 ] 5 , 8 0 [ 0 . 2 2 8 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] 8 x 0 , 4 6 [ 0 . 0 1 8 ] 0 , 2 5 [ 0 . 0 1 0 ] 1 , 9 3 d i a . [ 0 . 0 7 6 ] 4 , 2 [ 0 . 1 7 ] p o r t 2 8 x 0 , 4 6 [ 0 . 0 1 8 ] 1 3 , 3 5 [ 0 . 5 2 5 ] 1 0 , 0 [ 0 . 3 9 ] 6 , 9 9 [ 0 . 2 7 5 ] 1 2 3 4 8 7 6 5 6 , 1 6 [ 0 . 2 4 2 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] 1 1 , 2 1 [ 0 . 4 4 1 ] 9 , 2 4 [ 0 . 3 6 4 ] 2 x 1 , 9 3 d i a . [ 0 . 0 7 6 ] 4 , 6 5 [ 0 . 1 8 3 ] , 2 5 [ 0 . 0 1 0 ] p o r t 1 p o r t 2 p o r t 1 p o r t 2 4 , 0 [ 0 . 1 6 ] 3 , 7 8 [ 0 . 1 4 9 ] 1 0 , 0 [ 0 . 3 9 ] 1 3 , 3 5 [ 0 . 5 2 5 ] p o r t 1 p o r t 2 1 2 3 4 8 7 6 5 6 , 1 6 [ 0 . 2 4 2 ] 9 , 2 4 [ 0 . 3 6 4 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] 1 5 , 7 6 [ 0 . 6 2 0 ] 1 1 , 2 1 [ 0 . 4 4 1 ] 2 x 1 , 9 3 d i a . [ 0 . 0 7 6 ] 6 , 9 9 [ 0 . 2 7 5 ] 8 x 0 , 4 6 [ 0 . 0 1 8 ] 0 , 2 5 [ 0 . 0 1 0 ] p o r t 1 p o r t 2 3 , 7 8 [ 0 . 1 4 9 ]
8 www.honeywell.com/sensing figure 5 . smt pressure port dimensional drawings (for reference only: mm [in]) smt nn: no ports smt an : single axial barbed port smt ln: single axial barbless port smt rn: single radial barbed port smt rr : dual radial barbed ports, same side smt dr: dual radial barbed ports, opposite sides 1 3 , 4 [ 0 . 5 3 ] 1 0 , 0 [ 0 . 3 9 ] 6 , 9 9 [ 0 . 2 7 5 ] 1 2 3 4 8 7 6 5 5 , 4 4 [ 0 . 2 1 4 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] 6 , 4 1 [ 0 . 2 5 2 ] 4 , 8 0 [ 0 . 1 8 9 ] 8 x 0 , 4 6 [ 0 . 0 1 8 ] p o r t 1 p o r t 2 1 2 3 4 8 7 6 5 1 0 , 0 [ 0 . 3 9 ] 1 3 , 4 [ 0 . 5 3 ] 7 , 9 5 [ 0 . 3 1 3 ] 1 3 , 7 5 [ 0 . 5 4 1 ] 4 , 9 3 d i a . [ 0 . 1 9 4 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] p o r t 1 p o r t 2 6 , 7 7 [ 0 . 2 6 6 ] 4 , 8 0 [ 0 . 1 8 9 ] 8 x 0 , 4 6 [ 0 . 0 1 8 ] 6 , 9 9 [ 0 . 2 7 5 ] 1 0 , 0 [ 0 . 3 9 4 ] 1 3 , 3 5 [ 0 . 5 2 5 ] 6 , 9 9 [ 0 . 2 7 5 ] 1 2 3 4 8 7 6 5 2 , 5 4 t y p . [ 0 . 1 0 0 ] 6 , 7 7 [ 0 . 2 6 6 ] 4 , 8 0 [ 0 . 1 8 9 ] 5 , 8 0 [ 0 . 2 2 8 ] 1 3 , 7 5 [ 0 . 5 4 1 ] 8 x 0 , 4 6 [ 0 . 0 1 8 ] p o r t 1 p o r t 2 2 , 4 7 d i a . [ 0 . 0 9 7 ] 1 3 , 3 [ 0 . 5 3 ] 1 0 , 0 [ 0 . 3 9 ] 6 , 9 9 [ 0 . 2 7 5 ] 1 2 3 4 8 7 6 5 5 , 8 0 [ 0 . 2 2 8 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] 6 , 7 7 [ 0 . 2 6 6 ] 4 , 8 0 [ 0 . 1 8 9 ] 8 x 0 , 4 6 [ 0 . 0 1 8 ] p o r t 1 1 , 9 3 d i a . [ 0 . 0 7 6 ] 4 , 2 [ 0 . 1 7 ] p o r t 1 p o r t 2 1 0 , 0 [ 0 . 3 9 ] 6 , 9 9 [ 0 . 2 7 5 ] 1 2 3 4 8 7 6 5 6 , 1 6 [ 0 . 2 4 2 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] 6 , 7 7 [ 0 . 2 6 6 ] 4 , 8 0 [ 0 . 1 8 9 ] 8 x 0 , 4 6 [ 0 . 0 1 8 ] 1 3 , 3 5 [ 0 . 5 2 5 ] 4 , 6 [ 0 . 1 8 ] p o r t 1 p o r t 2 2 x 1 , 9 3 d i a . [ 0 . 0 7 6 ] p o r t 1 p o r t 2 4 , 0 [ 0 . 1 6 ] 3 , 7 8 [ 0 . 1 4 9 ] 1 2 3 4 8 7 6 5 1 3 , 4 [ 0 . 5 3 ] p o r t 2 p o r t 1 1 0 , 0 [ 0 . 3 9 ] 6 , 9 9 [ 0 . 2 7 5 ] 2 x 2 , 9 3 [ 0 . 1 1 5 ] 1 5 , 8 [ 0 . 6 2 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] 2 x 1 , 9 3 d i a . [ 0 . 0 7 6 ] 6 , 7 7 [ 0 . 2 6 6 ] 4 , 8 0 [ 0 . 1 8 9 ] 6 , 1 6 [ 0 . 2 4 2 ] 3 , 7 8 [ 0 . 1 4 9 ] 8 x 0 , 4 6 [ 0 . 0 1 8 ]
honeywell sensing and control 9 figure 6 . sip package dime nsional drawings (for reference only: mm [in] ) sip nn : no ports sip a a : dual axial barbed ports, opposite sides sip an : single axial barbed port sip ln : single barbl ess port sip ff: fastener mount, dual axial barbed ports, opposite sides sip fn: fastener mount, single axial barbed port 2 , 5 4 t y p . [ 0 . 1 0 0 ] 1 0 , 0 [ 0 . 3 9 ] 1 5 , 2 [ 0 . 6 0 ] 1 0 , 0 [ 0 . 3 9 ] 1 2 3 4 4 x 0 , 5 1 [ 0 . 0 2 0 ] 4 , 8 7 [ 0 . 1 9 2 ] p o r t 1 p o r t 2 0 , 2 5 [ 0 . 0 1 0 ] p o r t 1 p o r t 2 0 , 2 5 [ 0 . 0 1 0 ] 1 2 3 4 1 0 , 0 [ 0 . 3 9 ] 1 0 , 0 [ 0 . 3 9 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] 1 5 , 2 [ 0 . 6 0 ] 2 2 , 0 6 [ 0 . 8 6 9 ] 2 x 4 . 9 3 d i a . [ 0 . 1 9 4 ] 4 x 0 , 5 1 [ 0 . 0 2 0 ] 0 , 2 5 [ 0 . 0 1 0 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] p o r t 1 1 2 3 4 1 0 , 0 [ 0 . 3 9 ] 4 . 9 3 d i a . [ 0 . 1 9 4 ] 1 0 , 0 [ 0 . 3 9 ] 1 3 , 7 5 [ 0 . 5 4 1 ] 1 5 , 2 [ 0 . 6 0 ] p o r t 2 4 x 0 , 5 1 [ 0 . 0 2 0 ] 1 0 , 0 [ 0 . 3 9 ] 1 5 , 2 [ 0 . 6 0 ] 1 0 , 0 [ 0 . 3 9 ] 1 2 3 4 2 , 5 4 t y p . [ 0 . 1 0 0 ] p o r t 1 p o r t 2 0 , 2 5 [ 0 . 0 1 0 ] 1 3 , 7 5 [ 0 . 5 4 1 ] 4 x 0 , 5 1 [ 0 . 0 2 0 ] 2 , 4 7 d i a . [ 0 . 0 9 7 ] 0 , 2 5 [ 0 . 0 1 0 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] 2 9 , 4 8 [ 1 . 1 6 1 ] 1 2 3 4 2 7 , 2 0 [ 1 . 0 7 1 ] 2 3 , 1 2 [ . 9 1 0 ] 1 0 , 4 4 [ 0 . 4 1 1 ] p o r t 1 p o r t 2 1 7 , 7 8 [ 0 . 7 0 0 ] 2 0 , 1 6 [ 0 . 7 9 4 ] 2 x 4 , 7 8 d i a . [ 0 . 1 8 8 ] 2 x 3 . 9 4 d i a . [ 0 . 1 5 5 ] 4 x , 5 1 [ . 0 2 0 ] 1 2 3 4 1 7 , 7 8 [ 0 . 7 0 0 ] 2 0 , 1 6 [ 0 . 7 9 4 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] 0 , 2 5 [ 0 . 0 1 0 ] 2 9 , 4 8 [ 1 . 1 6 1 ] 2 3 , 1 2 [ . 9 1 0 ] p o r t 1 p o r t 2 1 6 , 3 8 [ 0 . 6 4 5 ] 2 x 3 . 9 4 d i a . [ 0 . 1 5 5 ] 4 . 7 8 d i a . [ 0 . 1 8 8 ] 4 x 0 , 5 1 [ 0 . 0 2 0 ]
10 www.honeywell.com/sensing figure 6 . sip package dimensional dr awings ( c ontinued ) sip gn : ribbed fastener mount, single axial barbed port sip nb : fastener mount, dual axial ports, same side sip rn : single radial barbed port si p rr: dual radial barbed ports, same side 2 , 5 4 t y p . [ 0 . 1 0 0 ] 2 1 , 6 0 [ 0 . 8 5 0 ] p o r t 1 p o r t 2 1 2 3 4 4 . 7 8 d i a . [ 0 . 1 8 8 ] 0 , 2 5 [ 0 . 0 1 0 ] 2 x 3 , 9 4 d i a . [ 0 . 1 5 5 ] 2 7 , 9 6 [ 1 . 1 0 1 ] 1 6 , 5 1 [ 0 . 6 5 0 ] 1 9 , 0 6 [ 0 . 7 5 0 ] 1 0 , 6 3 [ 0 . 4 1 8 ] 4 x 0 , 5 1 [ 0 . 0 2 0 ] 0 , 2 5 [ 0 . 0 1 0 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] 2 2 , 8 7 [ 0 . 9 0 0 ] 1 3 [ 0 . 5 2 ] 2 x 3 . 5 0 d i a . [ 0 . 1 3 8 ] 2 1 , 6 0 [ 0 . 8 5 0 ] 2 7 , 3 1 [ 1 . 0 7 5 ] 2 5 , 3 [ 0 . 9 9 6 ] p o r t 1 p o r t 2 4 3 2 1 4 x 0 , 5 1 [ 0 . 0 2 0 ] 2 x 4 , 8 0 d i a . [ 0 . 1 8 9 ] 0 , 2 5 [ 0 . 0 1 0 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] p o r t 1 p o r t 2 1 0 , 0 [ 0 . 3 9 ] 1 5 , 2 [ 0 . 6 0 ] 1 0 , 0 [ 0 . 3 9 ] 1 2 3 4 5 , 8 0 [ 0 . 2 2 8 ] 1 , 9 2 d i a . [ 0 . 0 7 6 ] 4 x 0 , 5 1 [ 0 . 0 2 0 ] 0 , 2 5 [ 0 . 0 1 0 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] p o r t 1 p o r t 2 1 2 3 4 1 0 , 0 [ 0 . 3 9 ] 1 5 , 2 [ 0 . 6 0 ] 1 0 , 0 [ 0 . 3 9 ] 2 x 1 , 9 2 d i a . [ 0 . 0 7 6 ] 6 , 1 6 [ 0 . 2 4 3 ] 4 x 0 , 5 1 [ 0 . 0 2 0 ]
honeywell sensing and control 11 figure 6 . sip package dimensional drawings ( continued ) sip dr : dual radial barbed ports, opposite side sip hh: fastener mount, dual radial barbed por ts, same side sip hn : fastener mount, single radial barbed port sip mn : manifold mount, outer diameter seal sip sn : manifold mount, inner diameter seal 0 , 2 5 [ 0 . 0 1 0 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] p o r t 1 p o r t 2 1 2 3 4 1 0 , 0 [ 0 . 3 9 ] 1 0 , 0 [ 0 . 3 9 ] 1 5 , 2 [ 0 . 6 0 ] 6 , 1 6 [ 0 . 2 4 3 ] 2 x 4 . 9 3 d i a . [ 0 . 1 9 4 ] 1 5 , 8 [ 0 . 6 2 ] 4 x 0 , 5 1 [ 0 . 0 2 0 ] 0 , 2 5 [ 0 . 0 1 0 ] 1 2 3 4 2 8 , 9 6 [ 1 . 1 4 0 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] p o r t 1 p o r t 2 2 9 , 6 2 [ 1 . 1 6 6 ] 2 3 , 1 2 [ 0 . 9 1 0 ] 1 1 , 2 7 [ 0 . 4 4 4 ] 6 , 6 4 [ 0 . 2 6 1 ] 1 0 , 5 8 [ 0 . 4 1 6 ] 4 x 0 , 5 1 [ 0 . 0 2 0 ] p o r t 1 p o r t 2 2 8 , 9 6 [ 1 . 1 4 0 ] 1 1 , 2 7 [ 0 . 4 4 4 ] 2 3 , 1 2 [ 0 . 9 1 0 ] 0 , 2 5 [ 0 . 0 1 0 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] 1 2 3 4 2 x 3 , 9 4 d i a . [ 0 . 1 5 5 ] 7 , 9 7 [ 0 . 3 1 4 ] 4 , 7 8 d i a . [ 0 . 1 8 8 ] 4 x 0 , 5 1 [ 0 . 0 2 0 ] p o r t 1 p o r t 2 2 , 5 4 t y p . [ 0 . 1 0 0 ] 0 , 2 5 [ 0 . 0 1 0 ] 1 2 3 4 p o r t 1 p o r t 2 1 5 , 2 4 d i a . [ 0 . 6 0 0 ] 1 2 , 5 [ 0 . 4 9 ] 5 , 3 6 [ 0 . 2 1 1 ] 4 x 0 , 5 1 [ 0 . 0 2 0 ] 2 , 5 4 t y p . [ 0 . 1 0 0 ] 1 2 3 4 1 3 , 1 1 [ 0 . 5 1 6 ] 1 2 , 5 7 [ 0 . 4 9 5 ] 1 5 , 6 [ 0 . 6 1 ] 5 , 1 [ 0 . 2 0 ] 4 x 0 , 5 1 [ 0 . 0 2 0 ] p o r t 1 p o r t 2
sensing and control honeywell 1985 douglas drive north golden valle y, mn 55422 www.honeywell.com 008214 - 2 - en i l50 glo printed in usa march 2011 ? 2011 honeywell international inc . warning personal injury do not use these products as safety or emergency stop devices or in any other application where failure of the product could result in personal injury. failure to comply with these instructions c ould result in death or serious injury. warranty/remedy honeywell warrants goods of its manufacture as being free of defective materials and faulty workmanship. honeywell s standard product warranty applies unless agreed to otherwise by honeywell in writ ing; please refer to your order acknowledgement or consult your local sales office for specific warranty details. if warranted goods are returned to honeywell during the period of coverage, honeywell will repair or replace, at its option, without charge th ose items it finds defective. the foregoing is buyer s sole remedy and is in lieu of all other warranties, expressed or implied, including those of merchantability and fitness for a particular purpose. in no event shall honeywell be liable for consequentia l, special, or indirect damages. while we provide application assistance personally, through our literature and the honeywell web site, it is up to the customer to determine the suitability of the product in the application. specifications may change wit hout notice. the information we supply is believed to be accurate and reliable as of this printing. however, we assume no responsibility for its use. warning misuse of documentat ion the information presented in this product shee t is for reference only. d o not use this document as a product installation guide. complete installation, operation, and maintenance information is provided in the instructions supplied with each product. failure to comply with these instructions could res ult in death or serious injury. sales and service honeywell serves its customers through a worldwide network of sales offices, representatives and distributors. for application assistance, current specifications, pricing or name of the nearest authorized distributor, contact your local sales office or: e - mail : info.sc@honeywell.com internet: www.honeywell.com/sensing phone and fax: asia pacific +65 6355 - 2828 ; +65 6445 - 3033 fax europe +44 (0) 1698 481 481 ; +44 (0) 1698 481676 fax latin america +1 - 305 - 8 05 - 8188 ; +1 - 305 - 883 - 8257 fax usa/canada +1 - 800 - 537 - 6945 ; + 1 - 815 - 235 - 6847 +1 - 815 - 235 - 6545 fax


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