Timing belt pulleys / P5M / flanged pulley selectable / configurable / aluminium, steel (Part Numbers - CAD Download)

Timing belt pulleys / P5M / flanged pulley selectable / configurable / aluminium, steel
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  • Please note that the swaged flange options, NFC, RFC, and LFC, are not reflected in the CAD data.

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Back to the Category Toothed Pulleys/Timing Pulleys/Idler Pulleys

Technical Drawing - Toothed Pulleys/Timing Pulleys/Idler Pulleys

High Torque Timing Pulleys P5M Type:Related Image
Open the technical drawing in the new window
 

Available dimensions and tolerances can be found under the tab More Information.
 

Basic Properties (e.g., material, hardness, coating, tolerance) - Toothed Pulleys/Timing Pulleys/Idler Pulleys

 
TypeBelt WidthMaterial *1Surface TreatmentAccessory *1
Set Screws
10mm15mmPulleyFlange
P5M100P5M150
PTPA2000 Series Aluminum AlloyAluminum AlloyClear AnodizeEN 1.4301 Equiv.
PTPBBlack Anodize
PTPKHard Clear Anodize *2
PTPNElectroless Nickel Plating
PTPMEN 1.1191 Equiv.EN 1.0330 Equiv.Black OxideEN 1.7220 Equiv.
(Black Oxide)
PTPPElectroless Nickel Plating
Flange is installed, and set screws are included with Shaft Bores P, N and C.
*1. The above material and accessory might be changed to the ones equivalent to the originals.
*2. Hard Clear Anodize: Film Hardness 300HV ~

Further specifications can be found under the tab More Information.
 

Composition of a Product Code - Toothed Pulleys/Timing Pulleys/Idler Pulleys

 Part Number-Pulley Shape-Shaft Bore Specs., I.D.-Z-J-Q-R-S-T
(Shaft Bore Specs.: H, P, N, C)PTPA20P5M150-A-NK10 Z29 J22        
(Shaft Bore Specs.: V, F)PTPA60P5M100-B-V20--        
(Shaft Bore Specs: Y)PTPA36P5M150-A-Y17  -Q30-R30-S7-T7

Alterations - Toothed Pulleys/Timing Pulleys/Idler Pulleys

High Torque Timing Pulleys P5M Type:Related Image

Here to the Overview of Options as PDF.

General Information - Toothed Pulleys/Timing Pulleys/Idler Pulleys

Toothed pulley - synchronous pulley - belt pulley - product assortment

 

Selection details of toothed pulleys/timing pulleys/idler pulleys

- Material: aluminum, steel, stainless steel (stainless steel), plastic

- Coatings: uncoated, burnished, anodized, nickel-plated

- Profile form: 1.5GT, 2GT, 3GT, 5GT, P2M, P3M, P5M, P8M, S2M, S3M, S5M, S8M, S14M, T2.5, T5, T10, AT5, AT10, 5M, 8M, 14M, 8YU, H, L, MXL, XL, PowerGrip GT3: MR2, MR3, MR5

- ISO tolerances: H7

- Belt width (mm): 4, 4.8, 6, 6.4, 7, 7.9, 9, 9.5, 10, 12, 12.7, 15, 18, 19.1, 20, 25, 25.4, 26, 28, 30, 31, 38,1, 40, 50, 50.8, 53, 60, 74, 76.2, 100

- Belt width (inches): 0.19, 0.25, 0.31, 0.37, 0.5, 0.75, 1, 1.5, 2

- Number of teeth: 10 to 72

 

Description/Basics

The toothed pulley for mechanical engineering is intended for the transmission of force and torque. Timing pulleys enable a gear ratio of speeds through belt pulleys of different sizes. Timing pulleys are more efficient, durable and significantly more maintenance-friendly compared to chain transmissions.

How much torque and load a timing pulley can transmit depends on the width of the belt. The width of the belt must be calculated. It is recommended to ensure the belt is correctly tensioned. MISUMI already offers the suitable idler pulley and return rollers with integrated ball bearings. For design and design help follow this link.

Different profile shapes of the toothed belts and belt pulleys are responsible for the transmission of power. Depending on the positioning accuracy, the applied torque and the conveying weight, MISUMI offers the fitting pulley. Toothed belt drives are generally used in the industry in three areas:
Positioning: Timing pulleys is often used in 3D printers. A toothed pulley with a semi-circular profile (e.g., GT) is often used for the required position accuracy of a 3D printers. The round shape offers the benefit of little play when the direction changes.
Drive: toothed pulleys are also used for high torque. In most cases, a timing pulley with a rounded trapezoidal profile (e.g., S8M) is used. These are particularly well suited for the transmission of high forces, which occur in drives of various applications in order to drive mechanical components.
Conveying: toothed pulleys can also be used for transporting loads. A straight trapezoidal profile is often used for this purpose (e.g., AT). This toothed pulley shape offers a large surface for loading and transmitting of loads.

Which toothed pulley or timing pulley is the right one for your application depends on the respective task of the toothed belt drive. Different toothed disc profiles have proven themselves for each type of application.

Various bore hole shapes and fastening variants are available for shaft mounting. These allow fastening via set screws, keyways and by means of Mecha locks. Fastening via a clamping sleeve has the further advantage that it allows adjusting the alignment continuously. The MISUMI product assortment has these ready-to-install.

Application Examples - Toothed Pulleys/Timing Pulleys/Idler Pulleys

Application example: idler pulley - idler pully toothed with chain tensioner - toothed pulley with chain tensioner

Application example: idler pulley
(1) Idler pulleys, (2) chain tensioner

Application example: return roller - return roller with cantilever pin - synchronous pulley with on-board disc - toothed pulley with on-board disc

Application example: deflection roller
S (1) Toothed pulleys with crimp disc, (2) nut, (3) washer, (4) cantilever shaft, (5) retaining ring

Application example: synchronous pulleys - toothed pulleys with toothed belts - toothed pulley with screw-on clamp

Application example: timing pulleys
(1) Flat head screw, (2) Timing pulley, (3) Timing belt, (4) Screw-on terminal

Application example: toothed belt drives - toothed pulleys with crimp disc - idler pulley with crimp disc - tensioning of the toothed belt

Application example: of toothed belt drives
(1) Toothed belt, (2) driven toothed pulley with crimp disc, (3) idler pulley with crimp disc, (4) driving toothed pulley with crimp disc

 

Industrial Applications

3D printer industry
Automotive industry
Pharmaceutical industry
Packaging industry

Part Number:  

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Part Number
PTPN18P5M150-A-P[6-13/1]
PTPN18P5M150-A-V[6-15/1]
PTPN18P5M150-A-WB[6-15/1]
PTPN18P5M150-A-Y[6-15/1]
PTPN18P5M150-B-C10
PTPN18P5M150-B-F6.35
PTPN18P5M150-B-F[6-13/1]
PTPN18P5M150-B-H6.35
PTPN18P5M150-B-H[6-15/1]
PTPN18P5M150-B-N[8,​10]
PTPN18P5M150-B-NK10
PTPN18P5M150-B-P6.35
PTPN18P5M150-B-P[6-11/1]
PTPN18P5M150-B-V[6-13/1]
PTPN20P5M100-A-C10
PTPN20P5M100-A-H6.35
PTPN20P5M100-A-H[6-17/1]
PTPN20P5M100-A-N[8,​10,​11]
PTPN20P5M100-A-NK10
PTPN20P5M100-A-P6.35
PTPN20P5M100-A-P[6-15/1]
PTPN20P5M100-A-V[6-15/1]
PTPN20P5M100-A-WB[6-15/1]
PTPN20P5M100-A-Y[6-15/1]
PTPN20P5M100-B-C10
PTPN20P5M100-B-F6.35
PTPN20P5M100-B-F[6-13/1]
PTPN20P5M100-B-H6.35
PTPN20P5M100-B-H[6-15/1]
PTPN20P5M100-B-N[8,​10]
PTPN20P5M100-B-NK10
PTPN20P5M100-B-P6.35
PTPN20P5M100-B-P[6-11/1]
PTPN20P5M100-B-V[6-13/1]
PTPN20P5M150-A-C10
PTPN20P5M150-A-H6.35
PTPN20P5M150-A-H[6-17/1]
PTPN20P5M150-A-N[8,​10,​11]
PTPN20P5M150-A-NK10
PTPN20P5M150-A-P6.35
PTPN20P5M150-A-P[6-15/1]
PTPN20P5M150-A-V[6-15/1]
PTPN20P5M150-A-WB[6-15/1]
PTPN20P5M150-A-Y[6-15/1]
PTPN20P5M150-B-C10
PTPN20P5M150-B-F6.35
PTPN20P5M150-B-F[6-13/1]
PTPN20P5M150-B-H6.35
PTPN20P5M150-B-H[6-15/1]
PTPN20P5M150-B-N[8,​10]
PTPN20P5M150-B-NK10
PTPN20P5M150-B-P6.35
PTPN20P5M150-B-P[6-11/1]
PTPN20P5M150-B-V[6-13/1]
PTPN22P5M100-A-C[10,​12,​15]
PTPN22P5M100-A-H[8-22/1]
PTPN22P5M100-A-N8
PTPN22P5M100-A-N[10-15/1]
PTPN22P5M100-A-NK10
PTPN22P5M100-A-P[8-17/1]
Part Number
Standard Unit Price
Minimum order quantityVolume Discount
Standard
Shipping Days
?
RoHSBelt Width
(mm)
[T] Number of Teeth Pulley Shape Material Surface Treatment Shaft Bore Specifications (Both Ends Stepped Hole) [Y]
(mm)
Shaft Bore Specifications (New JIS Keyway Hole + Tap) [N]
(mm)
Shaft Bore Specifications (Old JIS Keyway Hole + Tap) [C]
(mm)
Shaft Bore Specifications (Round Hole + Tap) [P]
(mm)
Shaft Bore Specifications (Round Hole) [H]
(mm)
Shaft Bore Specifications (Shaft Bore Dia. 10 Keyway Width 4mm Height 1.8mm) [NK] Shaft Bore Specifications (Stepped Hole) [V]
(mm)
Shaft Bore Specifications (Stepped Hole: Counterbored Holes on the Hub Side) [F]
(mm)
WB

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1 9 Days 101518Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating---6 ~ 13-----

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1 9 Days 101518Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating------6 ~ 15--

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1 9 Days 101518Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating--------6 ~ 15

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1 9 Days 101518Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating6 ~ 15--------

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1 9 Days 101518Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating--10------

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1 9 Days 101518Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-------6.35-

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1 9 Days 101518Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-------6 ~ 13-

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1 9 Days 101518Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating----6.35----

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1 9 Days 101518Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating----6 ~ 15----

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1 9 Days 101518Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-8 ~ 10-------

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1 9 Days 101518Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-----10---

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1 9 Days 101518Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating---6.35-----

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1 9 Days 101518Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating---6 ~ 11-----

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1 9 Days 101518Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating------6 ~ 13--

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1 9 Days 101020Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating--10------

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1 9 Days 101020Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating----6.35----

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1 9 Days 101020Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating----6 ~ 17----

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1 9 Days 101020Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-8 ~ 11-------

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1 9 Days 101020Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-----10---

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1 9 Days 101020Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating---6.35-----

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1 9 Days 101020Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating---6 ~ 15-----

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1 9 Days 101020Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating------6 ~ 15--

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1 9 Days 101020Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating--------6 ~ 15

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1 9 Days 101020Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating6 ~ 15--------

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1 9 Days 101020Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating--10------

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1 9 Days 101020Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-------6.35-

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1 9 Days 101020Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-------6 ~ 13-

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1 9 Days 101020Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating----6.35----

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1 9 Days 101020Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating----6 ~ 15----

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1 9 Days 101020Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-8 ~ 10-------

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1 9 Days 101020Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-----10---

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1 9 Days 101020Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating---6.35-----

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1 9 Days 101020Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating------6 ~ 13--

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1 9 Days 101520Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating--10------

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1 9 Days 101520Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating----6.35----

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1 9 Days 101520Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating----6 ~ 17----

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1 9 Days 101520Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-8 ~ 11-------

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1 9 Days 101520Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-----10---

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1 9 Days 101520Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating---6.35-----

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1 9 Days 101520Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating---6 ~ 15-----

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1 9 Days 101520Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating------6 ~ 15--

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1 9 Days 101520Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating--------6 ~ 15

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1 9 Days 101520Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating6 ~ 15--------

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1 9 Days 101520Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating--10------

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1 9 Days 101520Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-------6.35-

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1 9 Days 101520Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-------6 ~ 13-

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1 9 Days 101520Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating----6.35----

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1 9 Days 101520Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating----6 ~ 15----

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1 9 Days 101520Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-8 ~ 10-------

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1 9 Days 101520Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-----10---

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1 9 Days 101520Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating---6.35-----

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1 9 Days 101520Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating---6 ~ 11-----

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1 9 Days 101520Shape B[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating------6 ~ 13--

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1 9 Days 101022Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating--10 ~ 15------

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1 9 Days 101022Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating----8 ~ 22----

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1 9 Days 101022Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-8-------

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1 9 Days 101022Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-10 ~ 15-------

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1 9 Days 101022Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating-----10---

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1 9 Days 101022Shape A[Aluminum] EN AW-2017 Equiv. (Duralumin)Electroless Nickel Plating---8 ~ 17-----

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Back to the Category Toothed Pulleys/Timing Pulleys/Idler Pulleys

Technical Drawing - Toothed Pulleys/Timing Pulleys/Idler Pulleys

High Torque Timing Pulleys P5M Type:Related Image
Open the technical drawing in the new window

Specification Tables - Toothed Pulleys/Timing Pulleys/Idler Pulleys

Part NumberPulley
Shape
Shaft Bore Specifications (~): Specify in 1mm Increment, (, ): Select the former or latter
TypeNumber of TeethType
Nominal Width
H
Round Hole
P
Round Hole + Tap
N
Keyway + Tap
C
Old JIS Keyway + Tap
V, F
Stepped Hole
Y
Both Ends Stepped (Shape A only)
V, FZ
Z-d≥2
J
(0.1mm Increment)
YQ, R
Q(R)-d≥2
S, T
Aluminum
PTPA
PTPB
PTPK
PTPN


Steel
PTPM
PTPP
12P5M100

P5M150
A

B
5, 65, 6--------
145, 65, 6
155, 6, 6.35, 7~105, 6, 6.35, 7, 88
165, 6, 6.35, 7~105, 6, 6.35, 7~108
186, 6.35, 7~126, 6.35, 7~128, 10, NK10, 11106~79, 10(for Shape A)
3≤J≤W-3

(for Shape B)
3≤J≤L-3
7~1012, 133~14
S+T≤W-3
206, 6.35, 7~126, 6.35, 7~128, 10, NK10, 11106~79, 107~1212~15
228~178~178, 10, NK10, 11~1510, 12, 158, 9, 1011~147~1412~18
248~178~178, 10, NK10, 11~1510, 12, 158, 9, 1011~147~1612~20
2510~2010~2010, NK10, 11~1810, 12, 15, 16, 18, 1910~1313~167~1612~20
2610~2010~2010, NK10, 11~1810, 12, 15, 16, 18, 1910~1313~168~2012~25
2810~2210~2210, NK10, 11~2010, 12, 15, 16, 18~2010~1413~188~2012~25
3012~2412~2412~2212, 15, 16, 18~2012~1615~2010~2015~25
3212~2612~2612~2512, 15, 16, 18~2012~1715~2110~2415~29
3412~3012~3012~2512, 15, 16, 18~2012~2015~2510~2815~32
3612~3012~3012~3012, 15, 16, 18~2012~2015~2510~2815~32
4012~3212~3212~3212, 15, 16, 18~2012~2215~2610~3015~35
4415~3815~3815~3815, 16, 18~2015~2819~3212~3019~45
4815~3815~3815~3815, 16, 18~2015~2819~3212~3019~46
5015~4215~4015~4015, 16, 18~2015~3019~3512~3519~50
6015~5215~4015~4015, 16, 18~2015~3019~4312~3819~60
7215~8015~6515~5015, 16, 18~2015~8019~8612~7519~92

Alterations - Toothed Pulleys/Timing Pulleys/Idler Pulleys


High Torque Timing Pulleys P5M Type:Related Image

Here to the Option Overview PDF

Basic information

Type Timing Pulleys Belt Type P5M Timing Pulleys/Idlers Pulleys

Frequently Asked Questions (FAQ)

Question:

Do you have any belt pulleys without a hole?

Answer:

The MISUMI toothed pulleys always have a pilot bore. It is expanded depending on your configuration. It provides the advantage that the belt pulleys are already provided with a suitable shaft bore ready for installation. Therefore, it does not require time-consuming post-processing.

Question:

Do you have timing pulleys made of aluminum?

Answer:

The MISUMI online shop also offers timing pulleys or toothed pulleys in aluminum. Furthermore, we are also offering belt pulleys in steel and stainless steel. The return rollers and idler pulleys for the timing belts are also available in plastic.

Question:

Is a transmission with toothed belt pulleys possible?

Answer:

With toothed pulleys, a gear ratio is possible in a drive. The gear ratio is established based on the number of teeth on the belt pulleys. It should be ensured that the minimum number of teeth of the timing pulley disc is not undercut.

Question:

Which type of the toothed belt pulley can be clamped during assembly?

Answer:

There are a number of ways to install timing pulleys on a shaft. For applications that are not exposed to high torque, such as conveyors, it can be sufficient to fasten a timing pulley using clamping threaded pins. For this purpose, the shaft should have a flat surface.
For higher loads, a toothed pulley with a keyway can also be used.
A further variant is the fastening of a timing pulley via a conical chip sleeve. Depending on the type of Mecha lock, the timing pulley requires lateral internal threads, which can be added through additional options in the MISUMI online shop.
A timing pulley with a bore hole can also be combined with a Mech lock. MISUMI is offering this combination as a set.

Question:

Where do you position the tension roller?

Answer:

If an idler pulley should be utilised, it should be positioned on the sag side. This means that the idler pulley is attached to the side not subjected to pull.
Ideally, a toothed idler pulley is mounted on the inside of the toothed belt. The tensioning roller should always be larger than the smallest toothed idler pulley of the belt drive system.
If an idler pulley must tension the toothed belt from the outside, then a non-toothed (flat) idler pulley should be used. Cantilever pins, which MISUMI offers in various geometric versions, are suitable for fastening.

Question:

Which parallel key can be used for the toothed pulleys?

Answer:

The parallel key size is based on the shaft diameter. In this case, it is recommended using the MISUMI parallel keys, as they fit better when MISUMI toothed pulleys are used. See Overview available as PDF for keyway tolerances.

Question:

Is a timing pulley with a round profile better?

Answer:

Timing pulleys and round-profile timing belts are not recommended for every application. For example, the round profile shape is well suited for applications that require high positioning accuracy. Therefore, they are often used in 3D printers and scanners. Compared to other profile shapes, the round profile shape has a higher wear resistance. Another advantage of the round profile shape is the minimized play in the return (reverse play).

Question:

Which belt pulley is suitable for Gates toothed belts?

Answer:

The GT and EV timing pulleys are suitable for Gates’ toothed belts. However, these require you put attention to the slope (distance of the teeth) of the toothed belt. It must be checked whether these correspond to the selected toothed pulley.

Question:

Are the curtain discs necessary for the toothed pulleys?

Answer:

It is recommended using the smaller belt pulleys particularly with curb disc. The curb disk ensures that the toothed belt does not migrate down from the toothed belt pulley. Even with the smallest misalignment of a pulley, there may be a risk that the toothed belt will move and jump during operation.

Question:

How is the gearing of the toothed pulleys manufactured?

Answer:

The gear teeth of the MISUMI toothed belt pulley are mainly pushed. This ensures high manufacturing accuracy. As a result, the teeth fit precisely into the toothed belt profile of the timing belts and ensure optimal power and torque transmission.

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