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Compression Spring - O.D. Referenced Stainless Steel, Extra Light Load [RoHS Compliant] (E-GUR3-10)

EG TENSION SPRINGS

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  • Compression Spring - O.D. Referenced Stainless Steel, Extra Light Load [RoHS Compliant]
  • Compression Spring - O.D. Referenced Stainless Steel, Extra Light Load [RoHS Compliant]
  • Compression Spring - O.D. Referenced Stainless Steel, Extra Light Load [RoHS Compliant]
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(i)Caution

  • This product can be purchased in quantities of 10pcs. Please enter your order quantity in multiples of 10. * Minimum order quantity (10 pcs. or more)
  • Since it is an O.D. referenced type spring, it is manufactured with priority given to O.D. tolerances. Please be careful.
  • Stainless Steel Spring is magnetic.

Product Description

・ Spring type: Compression Spring, Extra Light Load
・ O.D. Referenced Type is outer diameter prioritized, and the I.D. is a reference value.
・ Spring material: Made of stainless steel SUS304-WPB
・ Model type: E-GUF, E-GUR, E-GUV, E-GUY
・ Outer diameter D (Ø) [mm]: 3, 4, 5, 6, 8
・ Free length range [mm]: 5, 10, 15, 20, 25, 30, 35, 40
・ End face type: No grinding, With grinding
・ RoHS compliant certified

Product Overview

[Product Comparison Information]
♢Economy series compression springs are manufactured overseas, resulting in significant cost reductions.
♢ Since it is an O.D. referenced type spring, it is manufactured with priority given to O.D. tolerances. Please be careful.
♢ Stainless Steel Spring is magnetic. Please be careful.
ItemMISUMI's Similar ProductsEconomy Series
Service Life1 million times700,000 Times
ManufacturedIn JapanOutside of Japan
Dimensional Drawing
Dimensional Drawing 0 -0.5 mm 0 -0.8 mm
O.D. Dø10 or Less  Free Length L±1.5 mm
 ø12 or More  Spring Constant±10%
[M]Material SUS304-WPB
Specification Table
Ordering Example Part Number
E-GUR3-15
■E-GUV: Fmax. (allowable deflection) = L × 70%
Part NumberdSolid Length
(Reference Value)
F
max.
N (kgf)
max.
Fa%
TypeD-L
E-GUV3-5*0.151.13.50.18{0.018}70
10*0.182.57.00.35{0.036}
15*10.50.53{0.054}
20*0.203.314.00.7{0.071}
4-5*0.181.23.50.18{0.018}
10*0.201.77.00.35{0.036}
15*0.233.010.50.53{0.054}
20*14.00.7{0.071}
5-5*0.201.23.50.18{0.018}
10*0.231.87.00.35{0.036}
15*0.262.910.50.53{0.054}
20*0.294.514.00.7{0.071}
6-10*0.262.07.00.35{0.036}
15*0.303.310.50.53{0.054}
20*14.00.7{0.071}
8-10*0.301.97.00.35{0.036}
15*0.353.210.50.53{0.054}
20*14.00.7{0.071}
25*0.405.617.50.88{0.089}
30*21.01.05{0.107}
40*0.459.328.01.4{0.143}
50*35.01.75{0.179}
[ ! ] Both ends of * marked springs are not ground.
[ ! ] Using it compressed to the solid length may cause deformation or break after a few uses.
Be sure to use the springs within the range of the allowable deflection F max.(mm).
[ ! ] O.D. Referenced Type is outer diameter prioritized.
·How to Determine the Number of Winding (Reference Value): Total coils = solid length / wire diameter (d) - 1
Number of active coils = total coils - 2
* The values of the number of coils are for reference only. There may be some variations depending on the lot.
■E-GUY: Fmax. (allowable deflection) = L × Fa%
Part NumberdSolid Length
(Reference Value)
F
max.
N (kgf)
max.
Fa%
TypeD-L
E-GUY2-5*0.131.503.000.15{0.0150}60
10*6.000.29{0.0300}
15*0.152.709.000.44{0.0450}
20*12.000.59{0.0600}
3-5*0.160.923.750.37{0.0378}75
10*0.202.007.500.74{0.0750}
15*0.233.4511.251.1{0.1125}
20*15.001.47{0.1500}
4-5*0.201.053.750.37{0.0375}
10*0.231.847.500.74{0.0750}
15*0.262.8611.251.1{0.1125}
20*0.294.6415.001.47{0.1500}
25*0.305.4018.751.84{0.1875}
30*22.502.26{0.2300}
5-5*0.231.153.750.37{0.0378}
10*0.261.827.500.74{0.0750}
15*0.303.1511.251.1{0.1125}
20*15.001.47{0.1500}
25*0.324.1618.751.84{0.1875}
6-5*0.261.243.500.34{0.0350}70
10*0.302.107.500.74{0.0750}75
15*0.322.6411.251.1{0.1125}
20*0.353.8515.001.47{0.1500}
25*0.385.3218.751.84{0.1875}
30*0.406.8022.502.21{0.2250}
8-10*0.352.197.500.74{0.0750}
15*0.403.4011.251.1{0.1125}
20*15.001.47{0.1500}
25*0.455.4018.751.84{0.1875}
30*22.502.21{0.2250}
10-10*0.503.256.001.18{0.1204}60
15*11.252.21{0.2250}75
20*0.554.4015.002.94{0.3000}
25*18.753.68{0.3750}
30*0.606.1522.504.41{0.4500}
35*6.3026.255.1{0.5200}
12-15*0.553.3011.252.206{0.2250}
[ ! ] Both ends of * marked springs are not ground.
[ ! ] Using it compressed to the solid length may cause deformation or break after a few uses.
Be sure to use the springs within the range of the allowable deflection F max.(mm).
[ ! ] O.D. Referenced Type is outer diameter prioritized.
·How to Determine the Number of Winding (Reference Value): Total coils = solid length / wire diameter (d) - 1
Number of active coils = total coils - 2
* The values of the number of coils are for reference only. There may be some variations depending on the lot.
■E-GUR: Fmax. (allowable deflection) = L × Fa%
Part NumberdSolid Length
(Reference Value)
F
max.
N (kgf)
max.
Fa%
TypeD-L
E-GUR2-5*0.182.002.50.49{0.05}50
10*5.00.98{0.10}
15*0.236.007.51.5{0.15}
3-5*0.231.603.00.9{0.09}60
10*0.252.106.01.8{0.18}
15*0.304.509.02.6{0.27}
20*12.03.5{0.36}
25*0.326.4015.04.4{0.45}
4-5*0.261.403.00.9{0.09}
10*0.292.006.01.8{0.18}
15*0.323.009.02.6{0.27}
20*0.386.1012.03.5{0.36}
25*15.04.4{0.45}
30*0.408.0018.05.3{0.54}
5-10*0.352.716.01.8{0.18}
15*0.383.619.02.6{0.27}
20*12.03.5{0.36}
25*0.457.4315.04.4{0.45}
30*18.05.3{0.54}
35*0.5012.2521.06.2{0.63}
6-5*0.321.503.00.9{0.09}
10*0.403.006.01.8{0.18}
15*9.02.6{0.27}
20*0.507.0012.03.5{0.36}
25*15.04.4{0.45}
30*18.05.3{0.54}
8-10*0.452.606.01.8{0.18}
15*0.503.609.02.6{0.27}
20*12.03.5{0.36}
25*0.555.9015.04.4{0.45}
30*0.6510.4018.05.3{0.54}
35*21.06.2{0.63}
40*0.7015.4024.07.1{0.72}
10-10*0.553.306.01.8{0.18}
15*0.604.209.02.6{0.27}
20*0.656.2012.03.5{0.36}
25*15.04.4{0.45}
30*0.708.4018.05.3{0.54}
[ ! ] Both ends of * marked springs are not ground.
[ ! ] Using it compressed to the solid length may cause deformation or break after a few uses.
Be sure to use the springs within the range of the allowable deflection F max.(mm).
[ ! ] O.D. Referenced Type is outer diameter prioritized.
·How to Determine the Number of Winding (Reference Value): Total coils = solid length / wire diameter (d) - 1
Number of active coils = total coils - 2
* The values of the number of coils are for reference only. There may be some variations depending on the lot.
■E-GUF: Fmax. (allowable deflection) = L × 45%
Part NumberdSolid Length
(Reference Value)
F
max.
N (kgf)
max.
Fa%
TypeD-L
E-GUF2-5*0.202.352.250.66{0.068}45
10*4.501.3{0.140}
3-5*0.261.802.251.1{0.110}
10*0.324.504.502.2{0.220}
15*6.703.2{0.330}
20*0.356.309.004.4{0.450}
25*11.205.5{0.560}
4-5*0.322.002.251.1{0.110}
10*0.353.004.502.2{0.220}
15*0.405.206.703.2{0.330}
20*9.004.4{0.450}
25*0.459.5011.205.5{0.560}
30*13.506.6{0.670}
5-10*0.403.204.502.2{0.230}
15*6.753.3{0.340}
20*0.454.959.004.4{0.450}
25*11.255.5{0.560}
30*0.507.7513.506.7{0.680}
35*15.757.7{0.790}
6-10*0.505.004.502.2{0.220}
15*0.557.706.703.2{0.330}
20*9.004.4{0.450}
25 0.6010.8011.205.5{0.560}
30 0.6515.6013.506.6{0.670}
8-10 0.605.404.502.2{0.220}
15 0.657.206.703.2{0.330}
20 0.7010.509.004.4{0.450}
25 11.205.5{0.560}
30 0.7513.5013.506.6{0.670}
35 15.707.6{0.780}
40 0.8018.4018.008.8{0.890}
10-15 0.654.606.703.2{0.330}
20 0.809.609.004.4{0.450}
25 11.205.5{0.560}
30 0.8512.8013.506.6{0.670}
12-15 0.806.806.703.2{0.330}
20 9.004.4{0.450}
25 11.205.5{0.560}
16-35 1.1012.1015.707.6{0.780}
20-20 1.207.209.008.8{0.890}
25 1.309.1011.3011.1{1.130}
kgf (load) = N⋅mm (spring constant) × 0.101972 × F (Deflection)
[kgf] = N × 0.101972
[ ! ] Both ends of * marked springs are not ground.
[ ! ] Using it compressed to the solid length may cause deformation or break after a few uses.
Be sure to use the springs within the range of the allowable deflection F max.(mm).
[ ! ] O.D. Referenced Type is outer diameter prioritized.
·How to Determine the Number of Winding (Reference Value): Total coils = solid length / wire diameter (d) - 1
Number of active coils = total coils - 2
* The values of the number of coils are for reference only. There may be some variations depending on the lot.
■Spring Constant (N/mm) [kgf/mm]
O.D.
D
O.D. Referenced
E-GUVE-GUYE-GURE-GUFE-GULE-GUTTE-GUME-GUHE-GUBB
2 0.05
{0.005}
0.20
{0.02}
0.30
{0.03}
0.50
{0.05}
    
30.05
{0.005}
0.098
{0.010}
0.29
{0.03}
0.49
{0.05}
0.98
{0.1}
1.5
{0.15}
   
42.0
{0.2}
2.9
{0.3}
4.9
{0.5}
52.0
{0.2}
62.9
{0.3}
5.9
{0.6}
9.8
{1.0}
8
10 0.200
{0.020}
12     
13    2.0
{0.2}
2.9
{0.3}
9.8
{1.0}
19.6
{2.0}
16   0.49
{0.05}
 
20   0.98
{0.10}
2.90
{0.3}
 4.9
{0.5}
14.7
{1.5}
29.4
{3.0}
Fmax.F =
L × 70%
F =
L × Fa%
F =
L × Fa%
F =
L × 45%
F =
L × 40%
F =
L × Fa%
F =
L × 35%
F =
L × 30%
F =
L × 25%
I.D.
D
I.D. Referenced
E-GVURE-GVUFE-GVULE-GVUM
50.29
{0.03}
0.49
{0.05}
0.98
{0.10}
2.94
{0.30}
6
8
10
12 
16  
Fmax.F=
L × 60%
F=
L × 45%
F=
L × 40%
F=
L × 35%
Related Products

Part Number 

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Part Number
E-GUR3-10
Part NumberPriceNameMinimum Order Qty.Volume DiscountDays to ShipRoHSFree Length L
(mm)
Inner Dia. D-2d (or D)
(Ø)
Outer Dia. D (or D1)
(Ø)
Height with the max. load applied ([Free Length] – [Allowable Deflection])
(mm)
Spring Constant
(N/mm)
Allowable Load (Configurable Range)
(N)
Max. Load
(N)
Wire Dia.
(Ø)
Solid Length
(mm)
Allowable Displacement
(mm)
End Face State Maximum Height when Loaded (Free Length, Allowable Deflection)
(mm)
I.D. D (⌀)
(φ)
Total Coils Nt *Reference Value Material Certificate: Materials

฿ 7.24

EG TENSION SPRINGS 10 Piece(s) Available 3 Day(s) 10102.5340.291.51~4.501.80.252.16Without Grinding42.57-

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  1. 1

Note

Cautions on Use
Operating Temperature
Stainless Steel:: -10 to 100°C
* Load value attenuates when tension springs are used in temperature higher than above, although it depends on other conditions.
Stainless Steel Spring is magnetic.

Basic Information

Material SUS304-WPB Cleaning Method No Cleaning Type Round Wire
Environmentally friendly RoHS Compliant (10 Substances)

Please check the type/dimensions/specifications of the part E-GUR3-10 in the Compression Spring - O.D. Referenced Stainless Steel, Extra Light Load [RoHS Compliant] series.

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Wire Dia.
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