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[Clean & Pack]Round Wire Coil Springs - O.D. Referenced Stainless Steel, UL/UTT (SHD-UL12-20)

[Clean & Pack]Round Wire Coil Springs - O.D. Referenced Stainless Steel, UL/UTT SHD-UL12-20

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  • Volume Discount

Three types of cleaning methods are available: degreasing, precision cleaning, and electrolytic polishing + precision cleaning. They can be ordered from one piece with the standard part number.
This eliminates the need for customer cleaning or outsourced cleaning, reducing the amount of time and effort required.
■Part Number for Clean & Pack Products
·Degreasing (Anti-rust single packing)     : Part Number SL-□□
·Precision cleaning (Degassing double packing)     : Part Number SH-□□
·Electrolytic polishing + precision cleaning (Degassing double packing) : Part Number SHD-□□
Product Part Number Cleaning Method Packaging Type Effects Compared to Uncleaned Product Environment (Standard) Process
SL-□□ Degreasing Anti-rust packing Oil removal General environment Regular assembly process
Post battery assembly process
SH-□□ Precision cleaning Degassing double packing Oil removal
Dust removal
Clean environment (Class 10 to 1,000) Battery assembly process
LCD-related post assembly process
In-vehicle camera assembly process
SHD-□□ Electrolytic polishing + precision cleaning Degassing double packing Oil removal
Dust removal
Outgas reduction
Vacuum environment
Clean environment (Class 10 to 1,000)
Pre-semiconductor process
Liquid crystal deposition process
Pre-OLED process
■Notes
Cleaning also removes rust prevention oil, which may make the product more susceptible to rusting than an uncleaned product.
Please be careful about the application location and storage environment.

The series is standardized to maintain the spring constant uniformly to the same diameter.
SL-UL / SH-UL/ SHD-UL / SL-UTT / SH-UTT / SHD-UTT Type···Allowable Max. Deflection 40%

(i)Caution

  • See here for related information such as technical information on cleaning effects and other cleaned product lineups.
  • Cleaning also removes rust prevention oil, which may make the product more susceptible to rusting than an uncleaned product.
    Please be careful about the application location and storage environment.

Part Number

Configured Part Number is shown.

SHD-UL12-20

[Clean & Pack]Round Wire Coil Springs - O.D. Referenced Stainless Steel, UL/UTT: Related Image

Closed Ends (Both Ends Not Ground*)

Closed Ends (Both Ends Ground)

O.D. Dø10 or Less

0

-0.5 mm
 Free Length L50 or Less ±1 mm
 ø12 or More

0

-0.8 mm
  60 or More ±2 mm
Type[M] MaterialCleaning Method
Cleaning MethodCleaning EnvironmentPackaging TypePacking Environment
SL-ULSL-UTTSUS304-WPB
Spring Constant ±10%
DegreasingGeneral environmentAnti-rust packingGeneral environment
SH-ULSH-UTTPrecision cleaningClass 1,000Degassing double packingClass 10
SHD-ULSHD-UTTElectrolytic polishing + precision cleaning
[ ! ] Products are packed by order quantity. Ex. If the order is for 20 pieces, they are packed in one package (incl. 20 pieces).
[ ! ] See the details of degreasing, precision cleaning, and electrolytic polishing shown at the bottom of the specification table.

Specification Table

Part Number
SL-UL16-80
SHD-UTT16-80
■SL-UL·SH-UL·SHD-UL: Fmax. (allowable deflection) = L × 40%
Part NumberdSolid LengthFN{kgf}
TypeD−L(Reference Value)max.max.
SL-UL2−5*0.21.6520.98{0.1}
SH-UL 10*0.265.0741.96{0.2}
SHD-UL 15*0.265.0762.94{0.3}
  20*0.39.983.92{0.4}
  25*0.3214.1104.9{0.5}
  30*0.3214.1125.88{0.6}
SL-UL3−5*0.3222{0.2}
SH-UL 10*0.353.743.9{0.4}
SHD-UL 15*0.46.665.9{0.6}
  20*0.46.687.8{0.8}
  25*0.4511.7109.8{1 }
  30*0.4511.71211.8{1.2}
  35*0.4511.71413.7{1.4}
  40*0.5201615.7{1.6}
SL-UL4−5*0.352.122{0.2}
SH-UL 10*0.455.343.9{0.4}
SHD-UL 15*0.455.365.9{0.6}
  20*0.5887.8{0.8}
  25*0.58109.8{1 }
  30*0.5512.71211.8{1.2}
  35*0.5512.71413.7{1.4}
  400.619.81615.7{1.6}
  450.619.81817.7{1.8}
  500.619.82019.6{2 }
  600.6529.92423.5{2.4}
SL-UL5−5*0.42.222{0.2}
SH-UL 10*0.54.7543.9{0.4}
SHD-UL 15*0.54.7565.9{0.6}
  20*0.556.8887.8{0.8}
  25*0.556.88109.8{1 }
  300.6514.951211.8{1.2}
  350.6514.951413.7{1.4}
  400.6514.951615.7{1.6}
  450.721.71817.7{1.8}
  500.721.72019.6{2 }
  600.7530.752423.5{2.4}
SL-UL6−5*0.452.322{0.2}
SH-UL 10*0.554.443.9{0.4}
SHD-UL 15*0.554.465.9{0.6}
  200.658.587.8{0.8}
  250.658.5109.8{1 }
  300.712.61211.8{1.2}
  350.712.61413.7{1.4}
  400.712.61615.7{1.6}
  450.7517.31817.7{1.8}
  500.7517.32019.6{2 }
  600.824.82423.5{2.4}
  700.824.82827.5{2.8}
SL-UL8−100.654.643.9{0.4}
SH-UL 150.758.365.9{0.6}
SHD-UL 200.758.387.8{0.8}
  250.758.3109.8{1 }
  300.810.41211.8{1.2}
  350.810.41413.7{1.4}
  400.810.41615.7{1.6}
  450.8514.51817.7{1.8}
  500.8514.52019.6{2 }
  600.9182423.5{2.4}
  701302827.5{2.8}
  801303231.4{3.2}
SL-UL10−100.754.743.9{0.4}
SH-UL 150.86.265.9{0.6}
SHD-UL 200.86.287.8{0.8}
  250.99.5109.8{1 }
  300.99.51211.8{1.2}
  350.99.51413.7{1.4}
  40115.51615.7{1.6}
  45115.51817.7{1.8}
  50115.52019.6{2 }
  601.123.72423.5{2.4}
  701.123.72827.5{2.8}
  801.123.73231.4{3.2}
SL-UL12−150.96.7565.9{0.6}
SH-UL 2011087.8{0.8}
SHD-UL 25110109.8{1.0}
  301.114.851211.8{1.2}
  351.114.851413.7{1.4}
  401.221.61615.7{1.6}
  451.221.61817.7{1.8}
  501.221.62019.6{2.0}
  601.332.52423.5{2.4}
  701.332.52827.5{2.8}
  801.446.23231.4{3.2}
SL-UL13−150.95.465.9{0.6}
SH-UL 2018.2587.8{0.8}
SHD-UL 2518.25109.8{1 }
  301.112.11211.8{1.2}
  351.112.11413.7{1.4}
  401.112.11615.7{1.6}
  451.216.81817.7{1.8}
  501.216.82019.6{2 }
  601.216.82423.5{2.4}
  701.4352827.5{2.8}
  801.4353231.4{3.2}
SL-UL16−151.17.765.9{0.6}
SH-UL 201.17.787.8{0.8}
SHD-UL 251.210.8109.8{1 }
  301.210.81211.8{1.2}
  351.314.31413.7{1.4}
  401.314.31615.7{1.6}
  451.419.61817.7{1.8}
  501.419.62019.6{2 }
  601.419.62423.5{2.4}
  701.5272827.5{2.8}
  801.5273231.4{3.2}
SL-UL20−201.610.4823.5{2.4}
SH-UL 251.610.41029.4{3 }
SHD-UL 301.712.81235.3{3.6}
  351.712.81441.2{4.2}
  401.815.31647.1{4.8}
  451.815.31853{5.4}
  502232058.8{6 }
  602232470.6{7.2}
  702.235.22882.4{8.4}
  802.235.23294.1{9.6}
kgf (load) = N⋅mm (spring constant) × 0.101972 × F (Deflection)
[kgf]=N × 0.101972
[ ! ] Both ends of * marked springs are not ground.
[!] Usage Count: 1 million times
● How to calculate the number of coils (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.
 

[!] The values of solid length are for reference only. There may be some variations depending on the lot. 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).

■SL-UTT·SH-UTT·SHD-UTT: Fmax. (allowable deflection) = L × Fa%
Part NumberdSolid LengthFN{kgf}Fa%
Type D−L(Reference Value)max.Max.
SL-UTT3−5*0.352.822.9{0.3}40
SH-UTT 10*0.44.845.9{0.6}
SHD-UTT 15*0.458.368.8{0.9}
  20*0.458.368.8{0.9}30
  25*0.514811.8{1.2}32
  30*0.514811.8{1.2}27
SL-UTT4−5*0.42.622.9{0.3}40
SH-UTT 10*0.453.945.9{0.6}
SHD-UTT 15*0.5668.8{0.9}
  20*0.559.4811.8{1.2}
  250.614.41014.7{1.5}
  300.614.41014.7{1.5}33
SL-UTT5−5*0.452.622.9{0.3}40
SH-UTT 10*0.53.645.9{0.6}
SHD-UTT 150.67.568.8{0.9}
  200.67.5811.8{1.2}
  250.6510.71014.7{1.5}
  300.715.41217.7{1.8}
  350.715.41420.6{2.1}
SL-UTT6−5*0.52.423.9{0.4}40
SH-UTT 100.64.247.8{0.8}
SHD-UTT 150.77.4611.8{1.2}
  200.77.4815.7{1.6}
  250.813.61019.6{2.0}
  300.813.61223.5{2.4}
  350.8517.51427.5{2.8}
  400.923.41631.4{3.2}
  450.923.41835.3{3.6}
  500.923.41835.3{3.6}36
  601411835.3{3.6}30
  701412447.1{4.8}34
SL-UTT8−100.755.347.8{0.8}40
SH-UTT 150.755.3611.8{1.2}
SHD-UTT 200.910.4815.7{1.6}
  250.910.41019.6{2.0}
  301171223.5{2.4}
  351171427.5{2.8}
  401171631.4{3.2}
  451.125.31835.3{3.6}
  501.125.32039.2{4.0}
  601.125.32447.1{4.8}
  701.239.62854.9{5.6}
SL-UTT10−100.855.147.8{0.8}40
SH-UTT 150.855.1611.8{1.2}
SHD-UTT 2019.5815.7{1.6}
  2519.51019.6{2.0}
  301.114.31223.5{2.4}
  351.114.31427.5{2.8}
  401.220.41631.4{3.2}
  451.220.41835.3{3.6}
  501.220.42039.2{4.0}
  601.329.92447.1{4.8}
  701.443.42447.1{4.8}34
SL-UTT13−1515.75611.8{1.2}40
SH-UTT 201.210.5815.7{1.6}
SHD-UTT 251.210.51019.6{2.0}
  301.3151223.5{2.4}
  351.3151427.5{2.8}
  401.420.31631.4{3.2}
  451.420.31835.3{3.6}
  501.527.82039.2{4.0}
  601.527.82447.1{4.8}
  701.638.42854.9{5.6}
  801.638.43262.8{6.4}
SL-UTT16−151.27.2611.8{1.2}40
SH-UTT 201.39.1815.7{1.6}
SHD-UTT 251.39.11019.6{2.0}
  301.412.31223.5{2.4}
  351.516.51427.5{2.8}
  401.621.61631.4{3.2}
  451.621.61835.3{3.6}
  501.7282039.2{4.0}
  601.7282447.1{4.8}
  701.8362854.9{5.6}
  801.8363262.8{6.4}
SL-UTT20−201.710.6831.4{3.2}40
SH-UTT 251.812.61039.2{4.0}
SHD-UTT 301.812.61247.1{4.8}
  352191454.9{5.6}
  402191662.8{6.4}
  452191870.6{7.2}
  502.227.52078.5{8.0}
  602.227.52494.1{9.6}
  702.334.528109.8{11.2}
  802.440.832125.5{12.8}
kgf (load) = N⋅mm (spring constant) × 0.101972 × F (Deflection)
[kgf]=N × 0.101972
● How to calculate the number of coils (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.
 

[!] The values of solid length are for reference only. There may be some variations depending on the lot. 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).


[ ! ] Both ends of * marked springs are not ground.
[!] Usage Count: 1 million times
■Spring Constant (N/mm) [kgf/mm]
D12 is applicable to UY, UR, UF, SL-UL and UBB Types only. D14 is applicable to UBB Type only.
 TypeUVUYURUFSL-UL
SH-UL
SHD-UL
SL-UTT
SH-UTT
SHD-UTT
UMUHUBB
D 
2    0.05 {0.005}  0.2 {0.02}  0.3 {0.03}  0.5 {0.05}             
3 0.05
{0.005}
  0.098
{0.01}
  0.29
{0.03}
  0.49
{0.05}
  0.98
{0.1}
  1.5
{0.15}
          
4             2.0 {0.2}  2.9 {0.3}  4.9 {0.5} 
5                  
6           2
{0.2}
  2.9
{0.3}
  5.9
{0.6}
  9.8
{1.0}
 
8                  
10    0.2
{0.02}
               
12                   
13                9.8
{1.0}
  19.6
{2.0}
 
14                   
16                   
20    0.3 {0.03}  0.5 {0.05}  0.98 {0.1}  2.9 {0.3}  3.9 {0.4}  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 × Fa%F = L × Fa%F = L × Fa%

Alterations

Part Number(LKC)
SL-UL6-20LKC
AlterationsCodeSpec.
LKCChanges length and spring constant tolerance. (Refer to the table below)
Part NumberLSpring Constant
Tolerance
TypeDSpecify in 5 mm IncrementsAlterationsTolerance
UL530 50LKC±0.5±5%
60±0.8
620±0.4
25 50±0.5
60·70±0.8
8
10
10 20±0.4
25 50±0.5
60·70±0.8
12
13
16
15 30±0.5
35 50±0.5
60·70·80±0.8
2020 30±0.5
35 50±0.5
60·70·80±0.8
[!] Both ends are ground.
[ ! ] Applicable to D5 or more.
Part Number(LKC)
SL-UTT6-35LKC
AlterationsCodeSpec.
LKCChanges length and spring constant tolerance. (Refer to the table below)
Part NumberLSpring Constant
Tolerance
TypeDSpecify in 5 mm IncrementsAlterationsTolerance
UTT515·20LKC±0.4±5%
25·30±0.5
6 8 1010 20±0.4
25 50±0.5
60·70±0.8
13 1615 30±0.5
35 50±0.5
60·70·80±0.8
2020 30±0.5
35 50±0.5
60·70·80±0.8
[!] Both ends are ground.
[ ! ] Applicable to D5 or more.
Cleaning Process
· Degreasing (Part Number: SL-□□)

Working Environment: General environment


Alkaline warm pure water
 
 




Ultrasonic pure water cleaning after cleaning with pure water
*3 times




Dry
 
 




Anti-rust single packing
 
 
· Precision cleaning (Part Number: SH-□□)
 

Working Environment: Class 1,000

 

Working Environment: Class 10


Hydrocarbon cleaningRo water cleaning




Wash with pure water (10 MΩ·cm) after high-pressure water jet cleaning (Ro water)




Use pure water (13 MΩ·cm)




Use nitrogen blow




Conducted on a clean benchin a Class 10 clean environment
· Electrolytic polishing + precision cleaning (Part Number: SHD-□□)
 

Working Environment: Class 1,000

 

Working Environment: Class 10


Hydrocarbon cleaning
Ro water cleaning




Electrolytic polishing with an electrolytic polishing layer according to the material




Wash with pure water (10 MΩ·cm) after high-pressure water jet cleaning (Ro water)




Use warm pure water (13 MΩ·cm)




Use nitrogen blow




Conducted on a clean benchin a Class 10 clean environment
Packaging Example
For degreasing:
(Part Number: SL-□□)
For precision cleaning or electrolytic polishing + precision cleaning:
(Part Number: SH-□□/SHD-□□)

[ ! ] Both the first and second layer packaging are degassed.
Cleaning Effectiveness / Recommended Environment for Use

Cleaning Method

Product Part Number

Packaging Type

Effects Compared to Uncleaned Product

Environment (Standard)

Use Case and Process

DegreasingSL-□□Anti-rust packingOil removalGeneral environmentRegular assembly process
Post battery assembly process
Precision cleaningSH-□□Degassing double packingOil removal
Dust removal
Clean environment (Class 10 to 1,000)Battery assembly process
LCD-related post assembly process
In-vehicle camera assembly process
Electrolytic polishing + precision cleaningSHD-□□Degassing double packingOil removal
Dust removal
Outgas reduction
Vacuum environment
Clean environment (Class 10 to 1,000)
Pre-semiconductor process
Liquid crystal deposition process
Pre-OLED process

Part Number 

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Part Number
SHD-UL12-20
Part NumberMinimum order quantityVolume DiscountDays to ShipFree Length L
(mm)
Outer Dia. D (or D1)
(Ø)
Spring Constant
(N/mm)
Allowable Load (Configurable Range)
(N)
Max. Load
(N)
Wire Dia.
(Ø)
Solid Length
(mm)
Cleaning Method Allowable Displacement
(mm)
1 Piece(s)Available Quote 20120.984.51~8.507.819Electrolytic Polishing + Precision Cleaning8

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  1. 1

Basic Information

Type Round Wire Characteristics/Applications RoHS Compliant (10 Substances) Environmentally friendly RoHS Compliant (10 Substances)

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