SMC Corporation of America
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Search Results "ARJ310F-N01G-07-1S"

Vibration resistance 490 m/s2 in X, Y, Z directions 3 times each Impact resistance Noise resistance 1000 Vp-p, Pulse width 1s, Rise time 1ns Weight Note 3) 660 g Port size (Rc, NPT, G) 1/2, 3/4 3/8, 1/2 3/8 Note 1) The system accuracy when combined with PF2W2/3. Note 2) Output system can be selected during initial setting. Note 3) Without lead wire.

SealKir 25, 30, 35, 40. 45, 50, 75, 100 25 30,35,4A, 45,50.75, tOD 25, 30, 35.40, 45, 50, 75, 100 .Ho{ to make interrediaie slroke rtrmediale stroke berwen 50-l0o (5s,60,65 ...) are obtained throlgh the use ol spaceB (5. 10, 1s,20mm) (Example) CDQBPSo-55 oMr S[4C would install a 20mrn width spacer in rire cDQ2Bp 50 750M. ll lool brackel is required, order 2 pcs/cylindef.

3flrin c8-se of (6so)sr=13.6ks 1s) a=1366=6.6 catculation formuta tor cr (o<1) 3ff9i,3?

range Operating: 0 to 50C, Stored: 25 to 85C in stock (no freeze nor condensation) Environmental resistance Voltage resistance 1000VAC for 1 min between external terminals and case Insulation resistance 50M or more (500VDC) between external terminals and case Vibration resistance 4.9m/s2 Impact resistance 490m/s2 to X,Y,Z directions 3 times for each Noise resistance 1000Vp-p, Pulse width: 1s

RXn9 RXn9 Warning (WNG) RXnA (WNG) turns ON when a warning occurs.When no warning has occurred, RXnA (WNG) turns OFF within about 1s after power-on. RXnA RXnA Battery warning (BWNG) RXnB (BWNG) turns ON when Open battery cable warning (A92) or Battery warning (A9F) occurs. When no battery warning has occurred, RXnB (BWNG) turns OFF within about 1s after power-on.

RXn9 RXn9 Warning (WNG) RXnA (WNG) turns ON when a warning occurs.When no warning has occurred, RXnA (WNG) turns OFF within about 1s after power-on. RXnA RXnA Battery warning (BWNG) RXnB (BWNG) turns ON when Open battery cable warning (A92) or Battery warning (A9F) occurs. When no battery warning has occurred, RXnB (BWNG) turns OFF within about 1s after power-on.

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; animation: fadeEffect 1s; background: #e8e9e7; } @-webkit-keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } @keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } Efficient electronic pressure control for closed volumes Eliminate costly outgassing through continuous bleed valves.

; animation: fadeEffect 1s; background: #e8e9e7; } @-webkit-keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } @keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } Efficient electronic pressure control for closed volumes Eliminate costly outgassing through continuous bleed valves.

; animation: fadeEffect 1s; background: #e8e9e7; } @-webkit-keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } @keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } Efficient electronic pressure control for closed volumes Eliminate costly outgassing through continuous bleed valves.

; animation: fadeEffect 1s; background: #e8e9e7; } @-webkit-keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } @keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } Efficient electronic pressure control for closed volumes Eliminate costly outgassing through continuous bleed valves.

; animation: fadeEffect 1s; background: #e8e9e7; } @-webkit-keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } @keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } Efficient electronic pressure control for closed volumes Eliminate costly outgassing through continuous bleed valves.

; animation: fadeEffect 1s; background: #e8e9e7; } @-webkit-keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } @keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } Efficient electronic pressure control for closed volumes Eliminate costly outgassing through continuous bleed valves.

; animation: fadeEffect 1s; background: #e8e9e7; } @-webkit-keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } @keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } Efficient electronic pressure control for closed volumes Eliminate costly outgassing through continuous bleed valves.

; animation: fadeEffect 1s; background: #e8e9e7; } @-webkit-keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } @keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } Efficient electronic pressure control for closed volumes Eliminate costly outgassing through continuous bleed valves.

; animation: fadeEffect 1s; background: #e8e9e7; } @-webkit-keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } @keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } Efficient electronic pressure control for closed volumes Eliminate costly outgassing through continuous bleed valves.

; animation: fadeEffect 1s; background: #e8e9e7; } @-webkit-keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } @keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } Efficient electronic pressure control for closed volumes Eliminate costly outgassing through continuous bleed valves.

; animation: fadeEffect 1s; background: #e8e9e7; } @-webkit-keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } @keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } Efficient electronic pressure control for closed volumes Eliminate costly outgassing through continuous bleed valves.

; animation: fadeEffect 1s; background: #e8e9e7; } @-webkit-keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } @keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } Efficient electronic pressure control for closed volumes Eliminate costly outgassing through continuous bleed valves.

; animation: fadeEffect 1s; background: #e8e9e7; } @-webkit-keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } @keyframes fadeEffect { from {opacity: 0;} to {opacity: 1;} } Efficient electronic pressure control for closed volumes Eliminate costly outgassing through continuous bleed valves.