SMC Corporation of America
Elite Part Number Search
Search Results "SGC221A-16N15Y-5V-B2"

1993: *2) , 1. 2. 3. 1. 2. 3. 4. 4/11 FGX-OM-L007-C / 1 1.5 () 5/11 FGX-OM-L007-C FGD Series FGD , 0.5MPa 4080 oC 40 oC IN/OUT 0.1MPa , U IN/OUT 6/11 FGX-OM-L007-C 1. 1-1. 1 2 (1) 3 (2) 4 (3) (4) 5 (5) 6 (6) 7 (7) 8 (8) 9 (9) (10) (2 FGD*B ) 10 (11) (12) 18 (13) (14) 11 (15) (16) (17) 12 (18) 13 14 15 1-2. 16 17 FGD-KT001 FGDC 1 FGD-KT002 FGDE (1)(2)(3)(4) (FGD*B2

CR ,, (EE ) 2ROM E 2ROM (100 ,E ), 2ROM E (3) : # : ASCII ,, 30H ) # 0 0 V R 23H 30H 30H 56H 52H 23H+30H+30H+56H+52H=12BH 2B ,30H 32H 3BH : # 0 0 V R 2 ; [CR] 23H 30H 30H 56H 52H 32H 3BH 0DH )ASCII ASCII 09 A B C D E F ASCII 30H39H 41H 42H 43H 44H 45H 46H 30H39H 3AH 3BH 3CH 3DH 3EH 3FH 27 - (4) 1bit () bit (ON 1) b7 b6 b5 b4 b3 b2 b1 1 0 () ON () (5) VR # 0 0 V R [CR] No. #

Grease application (Seal band part) Motor option Nil With Nil Without option B With lock N Without (Roller specification) Driver type Cable type Size Compatible Power supply Nil Without cable drivers voltage [V] 25 32 40 S Standard cable Nil Without driver R Robotic cable A1 LECSA1-S 100 to 120 (Flexible cable) A2 LECSA2-S 200 to 230 Cable length[m] B2 LECSB2-T 200 to 240 Nil Without cable

Select cable type and len gth surely. e xamp le S2S2Standard c able 2m+ d river LEC SS2 S2 Standard c able2m Nil Witho ut cab le and driver 100 to 120 LECSB1S B1 200 to 230 LECSB2S B2 100 to 120 LECSC1-S C1 *5 Mo tor cable and enc o der cable are included as a ccessories.

150 (10)I/O cable length * (9)Driver type * [m] (8)Cable length * [m] Power supply Without cable Nil Nil Without cable Compatible driver voltage(V) Without cable (Connector only) H 2 2 Nil Without driver 1 1.5 5 5 100 to 120 200 to 230 200 to 240 200 to 230 200 to 240 200 to 240 200 to 240 200 to 240 200 to 240 A1 LECSA1-S A 10 A2 LECSA2-S * The length of the encoder, motor and lock B2

A part z1 m1 = 20 x 3 x 4 x 2.7 x 10-6 = 6.48 x 10-4 (kg) Weight calculation m1 = a x b x c x Relative density IZ1 Inertial moment around Z1 axis IZ1 = {m1 (a2 + b2) / 12} x 10-6 = {6.48 x 10-4 x (202 + 32)/12} x 10-6 = 2.21 x 10-8 (kg.m2) = 2.21 x 10-8 + 6.48 x 10-4 x 16.42 x 10-6 = 0.20 x 10-6 (kg.m2) IA Inertial moment around Z axis IA =IZ1 + m1r12 x 10-6 z f2 z2 B part r2 = 23.5(mm)

Calculate the moment of inertia of attachment. z r1 Material of attachment: Aluminum alloy (Specific gravity = 2.7) A part z1 r1 = 37 (mm) Calculation of weight m1 = a x b x c x Specific gravity m1 = 40 x 7 x 8 x 2.7 x 10-6 = 0.006 (kg) Moment of inertia around Z1 axis IZ1 = {m1(a2 + b2)/12} x 10-6 Iz1 = {0.006 x (402 + 72)/12} x 10-6 = 0.8 x 10-6 (kgm2) IA = 0.8 x 10-6 + 0.006 x 372 x 10

Calculate the moment of inertia of attachment. z r1 Material of attachment: Aluminum alloy (Specific gravity = 37 (mm) r2 = 2.7) A part z1 m1 = 40 x 7 x 8 x 2.7 x 10-6 = 0.006 (kg) Calculation of weight m1 = a x b x c x Specific gravity Moment of inertia around Z1 axis IZ1 = {m1(a2 + b2)/12} X 10-6 Iz1 = {0.006 x (402 + 72)/12} x 10-6 = 0.8 x 10-6 (kgm2) IA = 0.8 x 10-6 + 0.006 x 372 x 10

CRJU1 0 Angle is adjustable: 5 at each rotation end Variations Series Rotation angle Auto switch Port location 90 100 190 180 CRJB05 CRJB 1 CRJU05 CRJU 1 Basic type D-F8 Front port D-F9 Side port With external stopper Features 2 Series CRJ Model Selection Procedure Calculation Example Operating conditions 1 List all possible operating conditions according to the mounting position. b1 H b2

A part z1 m1 = 20 x 3 x 4 x 2.7 x 10-6 = 6.48 x 10-4 (kg) Weight calculation m1 = a x b x c x Relative density IZ1 Inertial moment around Z1 axis IZ1 = {m1 (a2 + b2) / 12} x 10-6 = {6.48 x 10-4 x (202 + 32)/12} x 10-6 = 2.21 x 10-8 (kg.m2) = 2.21 x 10-8 + 6.48 x 10-4 x 16.42 x 10-6 = 0.20 x 10-6 (kg.m2) IA Inertial moment around Z axis IA =IZ1 + m1r12 x 10-6 z f2 z2 B part r2 = 23.5(mm)

Calculate the moment of inertia of attachment. z r1 Material of attachment: Aluminum alloy (Specific gravity = 37 (mm) r2 = 2.7) A part z1 m1 = 40 x 7 x 8 x 2.7 x 10-6 = 0.006 (kg) Calculation of weight m1 = a x b x c x Specific gravity Moment of inertia around Z1 axis IZ1 = {m1(a2 + b2)/12} X 10-6 Iz1 = {0.006 x (402 + 72)/12} x 10-6 = 0.8 x 10-6 (kgm2) IA = 0.8 x 10-6 + 0.006 x 372 x 10

When the VF3000 is installed on subplate or base mounted manifold (B1, B2) in the same position with V3000, air flow will be reversed. Follow either of these installation procedures. A. Install the VF3000 on the sub-plate or manifold base in the opposite direction. B. Install the VF3000 in the same position as the V3000 but reverse the piping of the CYL port.