All Modules and Options Specifications
Upper holder List
Special Application Holder
Component | Part Number |
Upper Drive with integrated torque sensor . Lower Rotary Drive can be used too instead (contact us for that configuration) | SPN04004-2-2500-20 |
Quad force sensor (several range available).Standard 10’000 N | SPN0203T-10000-50 |
Floating Stage choices | |
Room temp stage - Standard | SPN04009-02 |
Heating stage | SPN05005-150 |
Refrigerated heating and cooling | SPN05005-C70 |
TCT Upper Sample Holder | SPN12003-1 |
TCT sample 1 7 mm OD, 5-6 mm ID | SPN1302-1 |
TCT sample 2 8 mm OD, 5-6 mm ID | SPN1302-2 |
TCT sample 3 9 mm OD, 5-6 mm ID | SPN1302-3 |
TCT Upper Sample Holder AM000532 | SPN12003-2 |
TCT samples 4 – 25.6 mm OD, 20 mm ID, H 15mm | |
Optiona | |
Liquid container 50ml | SPN12003-3 |
Liquid container 250ml | SPN12003-4 |
Lower sample holder – application specific | SPN12003-5-X |
Component | Part Number |
Universal Ball (up to 9.5 mm) and Pin Holder (up to 8 mm) Used with many test modules and chambers up to 500 ℃ . Can hold several ball sizes using additional collets or holders | SPN030024 |
Ball Holder 12.7 mm | SPN030028 |
Ball Holder for Balls dia. 1.6 mm | SPN030026 |
Ball Holder for Balls dia. 4 mm | SPN030029 |
Ball Holder for Balls dia. 6 - 6.35 mm | SPN030027 |
Block Holder Self levelling Typically used with block on ring drive | SPN030036 |
Cylinder Holder 6 mm diameter Self levelling holder | SPN030040 |
Tribo-corrosion Ball holder 6mm | SPN030052 |
Holder For High Temperature 1000 ℃ Chamber (6 mm or 9.5 mm) Can be used with rotary and reciprocating drives. | SPN030060 |
Cutting Tool Holder Choice depends on insert selection Diamond Insert Diamond shape inserts , shank diameter 0.75 inch | SPN030125 |
Cutting Tool Kit For Block On Ring Drive To be used with block on ring drive. Includes triangle insert cutting tool holder, chip container, 304 SST steel sample shaft and an insert | |
Upper Piston Ring Liner Holder Various diameter holders available. Contact us for more sizes. 2 mm thick Piston Ring coupon cut from 2 mm, Diameter 83.5mm ring | SPN030184 |
Self Leveling Holder Disk Application dependent configurations 6.35 mm (0.25 inch) shaft with a gimble. Accommodates sample or sample holder, which has 3 tap holes #6-32. | SPN030044 |
Bearing Test For Axial Load To use with block on ring drive. | SPN030120 |
Tip holder for 2.5mm diameter tips Used for indentation and scratch test | SPN030280 |
BOR Sample Specification
TIMKEN Roller Specification
Parameter | Value (Imperial) | Value (Metric) |
Specifications | ㅤ | ㅤ |
Series | A4000 | — |
Cup Part Number | A4138 | — |
Design Units | Imperial | — |
Dimensions | ㅤ | ㅤ |
D - Cup Outer Diameter | 1.3775 in | 34.989 mm |
C - Cup Width | 0.3437 in | 8.730 mm |
Abutment and Fillet Dimensions | ㅤ | ㅤ |
r - Cup Backface "To Clear" Radius¹ | 0.050 in | 1.27 mm |
Da - Cup Frontface Backing Diameter | 1.28 in | 32.51 mm |
Db - Cup Backface Backing Diameter | 1.14 in | 28.96 mm |
Factors | ㅤ | ㅤ |
e - ISO Factor² | 0.45 | — |
Y - ISO Factor³ | 1.32 | — |
Cg - Geometry Factor⁴ | 0.0355 | — |
FAG Bearing Wheels Specification
Property | Specification | Notes / Source |
Bearing type | Deep groove ball bearing | Standard single-row radial bearing |
Model designation | 6206-C3 | “C3” = greater internal clearance |
Bore (inner Ø) | 30 mm | — |
Outer Ø | 62 mm | — |
Width | 16 mm | — |
Dynamic load rating (Cᵣ) | ≈ 20,700 N | abf.store |
Static load rating (C₀ᵣ) | ≈ 11,300 N | abf.store |
Limiting speed (open) | ≈ 16,200 rpm | abf.store |
Reference speed | ≈ 12,000 rpm | abf.store |
Internal clearance | C3 = greater than normal | For high-speed or thermal expansion conditions |
Seal type | Open (no suffix) | 2Z = metal shields / 2RS = rubber seals if specified |
Design generation | Generation C | Lower friction, improved noise & vibration |
Contact angle | 0° (radial contact) | Typical for deep groove type |
Temperature range | −30 °C to +120 °C (typical) | Depends on grease/lubrication |
Material | Through-hardened chromium steel | FAG standard |
Manufacturer | Schaeffler / FAG (Germany) | — |
All Drive Specifications
All Belt-Driven
SPN | Motor/Driver | Description | Specifications |
SPN04002-1-1200 | Motor #1 | Low Torque Rotary Drive - Motor #1 | Max Speed 12,000 rpm; Max Torque 2.3 Nm 2.25 Nm @500 rpm, 2.1 Nm @ 3000 rpm, 1.8 Nm @ 6000 rpm, 1.2 Nm @ 12000 rpm |
SPN04002-1-800 | Motor #1 | Low Torque Rotary Drive - Motor #1 | Max Speed 8,000 rpm; Max Torque 3.4Nm 3.4 Nm @500 rpm, 2.9 Nm @ 3000 rpm, 1.85 Nm @ 8000 rpm |
SPN04002-1-500 | Motor #1 | Low Torque Rotary Drive - Motor #1 | Max Speed 5,000 rpm; Max Torque 5.5 Nm 5.3 Nm @500 rpm, 4.1 Nm @ 3000 rpm, 3 Nm @ 5000 rpm |
SPN04002-1-300 | Motor #1 | Low Torque Rotary Drive - Motor #1 | Max Speed 3,000 rpm; Max Torque 9.2 Nm 8.6 Nm @500 rpm, 7.3 Nm @ 1500 rpm, 4.9 Nm @ 3000 rpm |
SPN04010 | Motor #1 | Standard Rotary Drive Motor #1 | Max Speed 5,000 rpm; Max Torque 5.6 Nm 5.3 Nm @500 rpm, 4.1 Nm @ 3000 rpm, 3 Nm @ 5000 rpm |
SPN04002-2-8000 | Motor #2 | High Torque Rotary Drive-Motor #2 (30%+ higher torque than Motor #1) | Max Speed 8,000 rpm; Max Torque 4.2 Nm 4.1 Nm @500 rpm, 3.8 Nm @ 3000 rpm, 2.9 Nm @ 8000 rpm |
SPN04002-2-5000 | Motor #2 | High Torque Rotary Drive-Motor #2 (30%+ higher torque than Motor #1) | Max Speed 5,000 rpm; Max Torque 6.8 Nm 6.6 Nm @500 rpm, 5.6 Nm @ 3000 rpm, 4.6 Nm @ 5000 rpm |
SPN04002-2-3000 | Motor #2 | High Torque Rotary Drive-Motor #2 (30%+ higher torque than Motor #1) | Speed 0.1 to 3,000 rpm; Max Torque:10 Nm 10Nm @500rpm, 9.2Nm @1500rpm, 7.4Nm @3000rpm |
SPN04018 | Motor #2 | Rotary Drive High Torque-Motor #2 (~30% Higher Torque than motor #1) | Contact Us for More Ranges on Speed and Torque |
SPN04002-3-7500 | Motor #3 | High Torque Rotary Drive-Motor #3 (30%+ higher torque than Motor #2) | Max Speed 7500 rpm; Max Torque 5.6 Nm 5.6 Nm @500 rpm, 5.1 Nm @ 3000 rpm, 3.9 Nm @ 7500 rpm |
SPN04002-3-6000 | Motor #3 | High Torque Rotary Drive-Motor #3 (30%+ higher torque than Motor #2) | Max Speed 6000 rpm; Max Torque 7.1 Nm 6.9 Nm @500 rpm, 6.2 Nm @ 3000 rpm, 4.9 Nm @ 6000 rpm |
SPN04002-3-3000 | Motor #3 | High Torque Rotary Drive-Motor #3 (30%+ higher torque than Motor #2) | Max Speed 3000 rpm; Max Torque 14.2 Nm 13.6 Nm @500 rpm, 12.4 Nm @ 1500 rpm, 9.7 Nm @ 3000 rpm |
SPN04002-3-1900 | Motor #3 | High Torque Rotary Drive-Motor #3 (30%+ higher torque than Motor #2) | Max Speed 1900 rpm; Max Torque 22.7 Nm 21.3 Nm @500 rpm, 19.8 Nm @ 1000 rpm, 15.5 Nm @ 1900 rpm |
SPN04026 | Motor #3 | Rotary Drive High Torque-Motor #3 (~70% Higher Torque than Motor #1) | Needed for few applications requiring very high torque. Contact Us for More Ranges |
SPN04002-4-100 | Motor #4 | Ultra-Low Speed Rotary Drive - Harmonic Reducer (Precise control on rotation angle, 5 times higher torque than motor #1) | Speed 0.001 to 100 rpm; Max Torque 50 Nm, angular resolution 0.0072 deg. |
SPN04002-4-50 | Motor #4 | Ultra-Low Speed Rotary Drive - Harmonic Reducer (Precise control on rotation angle, 5 times higher torque than motor #1) | Speed 0.001 to 50 rpm; Max Torque 50 Nm, angular resolution 0.0036 deg. |
SPN04034 | Motor #4 | Rotary Drive Ultra-Low Speed Harmonic Actuator | Precise control on rotation angle. Speed 0.001 to 100 rpm, Max Torque 50 Nm, angular resolution 0.0072 degree |
SPN04002-5-5000 | Motor #5 | Ultra-High Torque Rotary Drives (Require 3-phase 480V or 380V AC Power, 5 times higher torque than motor #1). Additional high power controller needed. Not all temperature chambers fit. Please contact for compatibility | Speed 0.1 to 5,000 rpm; Max Torque 30 Nm |
SPN04002-5-3000 | Motor #5 | Ultra-High Torque Rotary Drives (Require 3-phase 480V or 380V AC Power, 5 times higher torque than motor #1). Additional high power controller needed. Not all temperature chambers fit. Please contact for compatibility | Speed 0.1 to 3,000 rpm; Max Torque 50 Nm |
SPN04010-15 | Motor #1 Driver #B | Electric Drive Rotary Drive | max 3000 rpm, @220V, T max 9.5 Nm |
SPN04010-14 | Motor #1 Driver #B | Electric Drive Rotary Drive | max 5000 rpm, @220V, Tmax 5.6 Nm |
SPN04010-18 | Motor #1 Driver #B | Electric Drive Rotary Drive | max 8000 rpm, @220V, Tmax 3.5 Nm |
SPN04330-474 | Motor #1 Driver #B | Electric Drive Rotary Drive | max 3000 rpm, @220V, T max 9.5 Nm |
SPN04330-475 | Motor #1 Driver #B | Electric Drive Rotary Drive | max 5000 rpm, @220V, Tmax 5.6 Nm |
SPN04330-476 | Motor #1 Driver #B | Electric Drive Rotary Drive | max 8000 rpm, @220V, Tmax 3.5 Nm |
SPN04018-21 | Motor #2 Driver #B | Rotary Drive | max 3000 rpm, @220V, T max 10.5 Nm |
SPN04018-20 | Motor #2 Driver #B | Rotary Drive | max 5000 rpm, @220V, T max 6.9 Nm |
SPN04026-93 | Motor #3 Driver #B | Rotary Drive | max 1500 rpm, @220V, T max 22.7 Nm |
SPN04026-92 | Motor #3 Driver #B | Rotary Drive | max 3000 rpm, @220V, T max 11.5 Nm |
SPN04292-487 | Motor #2 Driver #C | Rotary Drive | max 4800 rpm, @380V / 4800 RPM @ 480V, T max 10.8 Nm |
SPN04292-488 | Motor #2 Driver #C | Rotary Drive | max 7500 rpm, @380V / 7500 RPM @ 480V, T max 6.9 Nm |
SPN04291-485 | Motor #3 Driver #C | Rotary Drive | max 2500 rpm, @380V / 3000 RPM @480V, T max 22.7 Nm |
SPN04291-486 | Motor #3 Driver #C | Rotary Drive | max 5000 rpm, @380V / 6000 RPM @480V, T max 11.5 Nm |
AM000030-01 | Motor #4 Driver #D | Rotary Drive Ultra-High Torque (Up To 50 Nm, 3 Phase 480V Requirement) | 4300 rpm, SPN04290-24 |
AM000030-02 | Motor #4 Driver #D | Rotary Drive Ultra-High Torque (Up To 50 Nm, 3 Phase 480V Requirement) | 3000 rpm, SPN04290-25 |
Technical Rotary Drive Specifications
Direct Rotary Drive (Fast-Exchange)
SPN | Description | Specifications |
SPN04322 | Standard Rotary Drive Motor #E | 0.1 to 6,000 rpm; >5.1 Nm @ 100 rpm, 4.5 Nm @ 500 rpm; 3.7 Nm @ 3000 rpm; 2.9 Nm @ 5000 rpm; 2.5 Nm @ 6000 rpm. |
All Belt-Driven
SPN | Motor/Driver | Description | Specifications |
SPN04002-1-1200 | Motor #1 | Low Torque Rotary Drive - Motor #1 | Max Speed 12,000 rpm; Max Torque 2.3 Nm 2.25 Nm @500 rpm, 2.1 Nm @ 3000 rpm, 1.8 Nm @ 6000 rpm, 1.2 Nm @ 12000 rpm |
SPN04002-1-800 | Motor #1 | Low Torque Rotary Drive - Motor #1 | Max Speed 8,000 rpm; Max Torque 3.4Nm 3.4 Nm @500 rpm, 2.9 Nm @ 3000 rpm, 1.85 Nm @ 8000 rpm |
SPN04002-1-500 | Motor #1 | Low Torque Rotary Drive - Motor #1 | Max Speed 5,000 rpm; Max Torque 5.5 Nm 5.3 Nm @500 rpm, 4.1 Nm @ 3000 rpm, 3 Nm @ 5000 rpm |
SPN04002-1-300 | Motor #1 | Low Torque Rotary Drive - Motor #1 | Max Speed 3,000 rpm; Max Torque 9.2 Nm 8.6 Nm @500 rpm, 7.3 Nm @ 1500 rpm, 4.9 Nm @ 3000 rpm |
SPN04010 | Motor #1 | Standard Rotary Drive Motor #1 | Max Speed 5,000 rpm; Max Torque 5.6 Nm 5.3 Nm @500 rpm, 4.1 Nm @ 3000 rpm, 3 Nm @ 5000 rpm |
SPN04002-2-8000 | Motor #2 | High Torque Rotary Drive-Motor #2 (30%+ higher torque than Motor #1) | Max Speed 8,000 rpm; Max Torque 4.2 Nm 4.1 Nm @500 rpm, 3.8 Nm @ 3000 rpm, 2.9 Nm @ 8000 rpm |
SPN04002-2-5000 | Motor #2 | High Torque Rotary Drive-Motor #2 (30%+ higher torque than Motor #1) | Max Speed 5,000 rpm; Max Torque 6.8 Nm 6.6 Nm @500 rpm, 5.6 Nm @ 3000 rpm, 4.6 Nm @ 5000 rpm |
SPN04002-2-3000 | Motor #2 | High Torque Rotary Drive-Motor #2 (30%+ higher torque than Motor #1) | Speed 0.1 to 3,000 rpm; Max Torque:10 Nm 10Nm @500rpm, 9.2Nm @1500rpm, 7.4Nm @3000rpm |
SPN04018 | Motor #2 | Rotary Drive High Torque-Motor #2 (~30% Higher Torque than motor #1) | Contact Us for More Ranges on Speed and Torque |
SPN04002-3-7500 | Motor #3 | High Torque Rotary Drive-Motor #3 (30%+ higher torque than Motor #2) | Max Speed 7500 rpm; Max Torque 5.6 Nm 5.6 Nm @500 rpm, 5.1 Nm @ 3000 rpm, 3.9 Nm @ 7500 rpm |
SPN04002-3-6000 | Motor #3 | High Torque Rotary Drive-Motor #3 (30%+ higher torque than Motor #2) | Max Speed 6000 rpm; Max Torque 7.1 Nm 6.9 Nm @500 rpm, 6.2 Nm @ 3000 rpm, 4.9 Nm @ 6000 rpm |
SPN04002-3-3000 | Motor #3 | High Torque Rotary Drive-Motor #3 (30%+ higher torque than Motor #2) | Max Speed 3000 rpm; Max Torque 14.2 Nm 13.6 Nm @500 rpm, 12.4 Nm @ 1500 rpm, 9.7 Nm @ 3000 rpm |
SPN04002-3-1900 | Motor #3 | High Torque Rotary Drive-Motor #3 (30%+ higher torque than Motor #2) | Max Speed 1900 rpm; Max Torque 22.7 Nm 21.3 Nm @500 rpm, 19.8 Nm @ 1000 rpm, 15.5 Nm @ 1900 rpm |
SPN04026 | Motor #3 | Rotary Drive High Torque-Motor #3 (~70% Higher Torque than Motor #1) | Needed for few applications requiring very high torque. Contact Us for More Ranges |
SPN04002-4-100 | Motor #4 | Ultra-Low Speed Rotary Drive - Harmonic Reducer (Precise control on rotation angle, 5 times higher torque than motor #1) | Speed 0.001 to 100 rpm; Max Torque 50 Nm, angular resolution 0.0072 deg. |
SPN04002-4-50 | Motor #4 | Ultra-Low Speed Rotary Drive - Harmonic Reducer (Precise control on rotation angle, 5 times higher torque than motor #1) | Speed 0.001 to 50 rpm; Max Torque 50 Nm, angular resolution 0.0036 deg. |
SPN04034 | Motor #4 | Rotary Drive Ultra-Low Speed Harmonic Actuator | Precise control on rotation angle. Speed 0.001 to 100 rpm, Max Torque 50 Nm, angular resolution 0.0072 degree |
SPN04002-5-5000 | Motor #5 | Ultra-High Torque Rotary Drives (Require 3-phase 480V or 380V AC Power, 5 times higher torque than motor #1). Additional high power controller needed. Not all temperature chambers fit. Please contact for compatibility | Speed 0.1 to 5,000 rpm; Max Torque 30 Nm |
SPN04002-5-3000 | Motor #5 | Ultra-High Torque Rotary Drives (Require 3-phase 480V or 380V AC Power, 5 times higher torque than motor #1). Additional high power controller needed. Not all temperature chambers fit. Please contact for compatibility | Speed 0.1 to 3,000 rpm; Max Torque 50 Nm |
SPN04010-15 | Motor #1 Driver #B | Electric Drive Rotary Drive | max 3000 rpm, @220V, T max 9.5 Nm |
SPN04010-14 | Motor #1 Driver #B | Electric Drive Rotary Drive | max 5000 rpm, @220V, Tmax 5.6 Nm |
SPN04010-18 | Motor #1 Driver #B | Electric Drive Rotary Drive | max 8000 rpm, @220V, Tmax 3.5 Nm |
SPN04330-474 | Motor #1 Driver #B | Electric Drive Rotary Drive | max 3000 rpm, @220V, T max 9.5 Nm |
SPN04330-475 | Motor #1 Driver #B | Electric Drive Rotary Drive | max 5000 rpm, @220V, Tmax 5.6 Nm |
SPN04330-476 | Motor #1 Driver #B | Electric Drive Rotary Drive | max 8000 rpm, @220V, Tmax 3.5 Nm |
SPN04018-21 | Motor #2 Driver #B | Rotary Drive | max 3000 rpm, @220V, T max 10.5 Nm |
SPN04018-20 | Motor #2 Driver #B | Rotary Drive | max 5000 rpm, @220V, T max 6.9 Nm |
SPN04026-93 | Motor #3 Driver #B | Rotary Drive | max 1500 rpm, @220V, T max 22.7 Nm |
SPN04026-92 | Motor #3 Driver #B | Rotary Drive | max 3000 rpm, @220V, T max 11.5 Nm |
SPN04292-487 | Motor #2 Driver #C | Rotary Drive | max 4800 rpm, @380V / 4800 RPM @ 480V, T max 10.8 Nm |
SPN04292-488 | Motor #2 Driver #C | Rotary Drive | max 7500 rpm, @380V / 7500 RPM @ 480V, T max 6.9 Nm |
SPN04291-485 | Motor #3 Driver #C | Rotary Drive | max 2500 rpm, @380V / 3000 RPM @480V, T max 22.7 Nm |
SPN04291-486 | Motor #3 Driver #C | Rotary Drive | max 5000 rpm, @380V / 6000 RPM @480V, T max 11.5 Nm |
AM000030-01 | Motor #4 Driver #D | Rotary Drive Ultra-High Torque (Up To 50 Nm, 3 Phase 480V Requirement) | 4300 rpm, SPN04290-24 |
AM000030-02 | Motor #4 Driver #D | Rotary Drive Ultra-High Torque (Up To 50 Nm, 3 Phase 480V Requirement) | 3000 rpm, SPN04290-25 |
More Torque and Speed Characteristics
MOTOR #1 at 220v With Drive mod. AKD-01206
Motor#1 | ㅤ | SPN04010-15 SPN04330-474 | SPN04010-15 SPN04330-474 | SPN04010-14, SPN04330-475 | SPN04010-14, SPN04330-475 | SPN04010-18, SPN04330-476 | SPN04010-18, SPN04330-476 |
1 | ㅤ | 2 | (48:24) | 1.2 | (36:30) | 0.75 | (30:40) |
Speed, rpm | Torque, Nm | Speed, rpm | Torque, Nm | Speed, rpm | Torque, Nm | Speed, rpm | Torque, Nm |
100 | 5.10 | 0 | 9.46 | 0 | 5.68 | 0 | 3.55 |
200 | 4.67 | 100 | 9.34 | 167 | 5.60 | 267 | 3.50 |
500 | 4.58 | 250 | 9.16 | 417 | 5.50 | 667 | 3.44 |
1000 | 4.42 | 500 | 8.84 | 833 | 5.30 | 1333 | 3.32 |
1200 | 4.36 | 600 | 8.72 | 1000 | 5.23 | 1600 | 3.27 |
1500 | 4.27 | 750 | 8.54 | 1250 | 5.12 | 2000 | 3.20 |
2000 | 4.11 | 1000 | 8.22 | 1667 | 4.93 | 2667 | 3.08 |
2500 | 3.93 | 1250 | 7.86 | 2083 | 4.72 | 3333 | 2.95 |
3000 | 3.75 | 1500 | 7.5 | 2500 | 4.50 | 4000 | 2.81 |
3500 | 3.57 | 1750 | 7.14 | 2917 | 4.28 | 4667 | 2.68 |
3800 | 3.46 | 1900 | 6.92 | 3167 | 4.15 | 5067 | 2.60 |
4000 | 3.38 | 2000 | 6.76 | 3333 | 4.06 | 5333 | 2.54 |
4500 | 3.17 | 2250 | 6.34 | 3750 | 3.80 | 6000 | 2.38 |
5000 | 2.95 | 2500 | 5.9 | 4167 | 3.54 | 6667 | 2.21 |
5500 | 2.74 | 2750 | 5.48 | 4583 | 3.29 | 7333 | 2.06 |
6000 | 2.53 | 3000 | 5.06 | 5000 | 3.04 | 8000 | 1.90 |
MOTOR #2 @ 220v Drive #B
Motor#2 | Motor#2 | SPN04018-21 | SPN04018-21 | SPN04018-20 | SPN04018-20 |
ㅤ | ㅤ | 1.25 | (45:36) | 0.8 | (36:45) |
Speed, rpm | Torque, Nm | Speed, rpm | Torque, Nm | Speed, rpm | Torque, Nm |
0 | 8.67 | 0 | 10.84 | 0 | 6.94 |
200 | 8.56 | 160 | 10.70 | 250 | 6.85 |
500 | 8.39 | 400 | 10.49 | 625 | 6.71 |
1000 | 8.11 | 800 | 10.14 | 1250 | 6.49 |
1200 | 8 | 960 | 10.00 | 1500 | 6.40 |
1500 | 7.83 | 1200 | 9.79 | 1875 | 6.26 |
2000 | 7.56 | 1600 | 9.45 | 2500 | 6.05 |
2500 | 7.2 | 2000 | 9.00 | 3125 | 5.76 |
3000 | 6.85 | 2400 | 8.56 | 3750 | 5.48 |
3500 | 6.37 | 2800 | 7.96 | 4375 | 5.10 |
3800 | 6.08 | 3040 | 7.60 | 4750 | 4.86 |
4000 | 5.89 | 3200 | 7.36 | 5000 | 4.71 |
MOTOR #3 @220v Drive #B
Single Motor | Single Motor | SPN04026-93 | SPN04026-93 | SPN04026-92 | SPN04026-92 |
ㅤ | ㅤ | 2 | (48:24) | 1 | (45:45) |
Speed, rpm | Torque, Nm | Speed, rpm | Torque, Nm | Speed, rpm | Torque, Nm |
0 | 11.6 | 0 | 23.20 | 0 | 11.6 |
200 | 11.43 | 100 | 22.86 | 200 | 11.43 |
500 | 11.23 | 250 | 22.46 | 500 | 11.23 |
1000 | 10.89 | 500 | 21.78 | 1000 | 10.89 |
1200 | 10.75 | 600 | 21.50 | 1200 | 10.75 |
1500 | 10.55 | 750 | 21.10 | 1500 | 10.55 |
2000 | 10.08 | 1000 | 20.16 | 2000 | 10.08 |
2500 | 9.59 | 1250 | 19.18 | 2500 | 9.59 |
3000 | 8.9 | 1500 | 17.80 | 3000 | 8.9 |
MOTOR #4 @480V 3 Phase Motor Drive #D
at 3-ph. 480V - With Drive mod. AKD-02407
Motor #4 (AKM2G-74Q) - standard motor high-power rotary drive, brake tester, twin-roller tester, 3-roller tester.
Motor #4 (AKM2G-74Q) - standard motor high-power rotary drive, brake tester, twin-roller tester, 3-roller tester.
Motor #4 | Motor #4 | SPN04290-24 (Brake tester) | SPN04290-24 (Brake tester) | SPN04290-25 (Brake tester) | SPN04290-25 (Brake tester) |
ㅤ | ㅤ | 0.625 | (35:56) | 0.875 | (35:40) |
Speed, rpm | Torque, Nm | Speed, rpm | Torque, Nm | Speed, rpm | Torque, Nm |
0 | 59.59 | 0 | 37.24 | 0 | 52.14 |
100 | 59.59 | 160 | 37.24 | 114 | 52.14 |
200 | 59.59 | 320 | 37.24 | 229 | 52.14 |
500 | 59.57 | 800 | 37.23 | 571 | 52.12 |
750 | 59.55 | 1200 | 37.22 | 857 | 52.11 |
1000 | 59.54 | 1600 | 37.21 | 1143 | 52.10 |
1200 | 59 | 1920 | 36.88 | 1371 | 51.63 |
1250 | 58.45 | 2000 | 36.53 | 1429 | 51.14 |
1400 | 56.6 | 2240 | 35.38 | 1600 | 49.53 |
1500 | 55.35 | 2400 | 34.59 | 1714 | 48.43 |
1750 | 52.3 | 2800 | 32.69 | 2000 | 45.76 |
2000 | 49.3 | 3200 | 30.81 | 2286 | 43.14 |
2250 | 46.3 | 3600 | 28.94 | 2571 | 40.51 |
2500 | 43.1 | 4000 | 26.94 | 2857 | 37.71 |
2700 | 40.7 | 4320 | 25.44 | 3086 | 35.61 |
Technical BOR Drive Specification
Speed and Torque: Belt Drive Motor #2 @ 220v With Driver #B
Single Motor #2 | Single Motor #2 | SPN04043-402 SPN04042-26 | SPN04043-402 SPN04042-26 | SPN04042-27 SPN04043-468 | SPN04042-27 SPN04043-468 |
1.25 | (45:36) | 0.667 | (30:45) | ||
Speed, rpm | Torque, Nm | Speed, rpm | Torque, Nm | Speed, rpm | Torque, Nm |
0 | 8.67 | 0 | 10.84 | 0 | 5.78 |
200 | 8.56 | 160 | 10.70 | 300 | 5.71 |
500 | 8.39 | 400 | 10.49 | 750 | 5.59 |
1000 | 8.11 | 800 | 10.14 | 1500 | 5.41 |
1200 | 8 | 960 | 10.00 | 1800 | 5.33 |
1500 | 7.83 | 1200 | 9.79 | 2250 | 5.22 |
2000 | 7.56 | 1600 | 9.45 | 3000 | 5.04 |
2500 | 7.2 | 2000 | 9.00 | 3750 | 4.80 |
3000 | 6.85 | 2400 | 8.56 | 4500 | 4.57 |
3500 | 6.37 | 2800 | 7.96 | 5250 | 4.25 |
3800 | 6.08 | 3040 | 7.60 | 5700 | 4.05 |
4000 | 5.89 | 3200 | 7.36 | 6000 | 3.93 |
SPN | Motor/Driver | Description | Specifications |
SPN04042-27 | Motor #2 Driver #B | Standard BOR Drive Motor #2 | Speed max 3000 rpm @ 220V; Max Torque 10.5 Nm |
SPN04042-26 | Motor #2 Driver #B | Standard BOR Drive Motor #2 | Speed max 5000 rpm @ 220V; Max Torque 6.9 Nm |
SPN04043-468 | Motor #2 Driver #B | BOR Drive Motor #2 With Inline Torque Sensor | Speed max 3000 rpm @ 220V; Max Torque 10.5 Nm |
SPN04043-402 | Motor #2 Driver #B | BOR Drive Motor #2 With Inline Torque Sensor | Speed max 5000 rpm @ 220V; Max Torque 6.9 Nm |
SPN04003-5-1 | High Power Motor | Ultra-High Torque BOR Drive. Requires 3-phase 480V or 380V AC. Additional high power controller needed. Not all chambers fit. Please contact for compatibility. | Speed 0.1 to 5,000 rpm; Max Torque 30 Nm |
SPN04003-5-2 | High Power Motor | Ultra-High Torque BOR Drive. Requires 3-phase 480V or 380V AC. Additional high power controller needed. Not all chambers fit. Please contact for compatibility. | Speed 0.1 to 3,000 rpm; Max Torque 50 Nm |
Standard: Cleaning, Parameters, Steps
Summary: Cleaning Procedure Before Test{{if vcoil}}
- Clean ball and disk with toluene.
- Rinse with acetone.
- Dry with filtered compressed air or N₂ 5.0 (0.2 µm filter).
- Inspect at 50× – no spot > 5 µm.
- Store in PTFE box, N₂ atmosphere, use within 4 h.
Summary: Cleaning Procedure Before Test {{if 4ball}}
- Immerse container components and balls in Stoddard solvent, swirl or ultrasonically clean for 5 minutes.
- Transfer to fresh Stoddard solvent, swirl or ultrasonically clean for 1 minute.
- Rinse in n-heptane, swirl or ultrasonically clean 1–2 minutes.
- Air-dry 10 minutes in fume hood or warm air stream.
- Assemble immediately into the test cup using clean tweezers.
Standard Complete Cleaning Procedure {{if vcoil}}
"Before each test clean the ball and the disk with toluene, rinse with acetone, dry with filtered compressed air or high-purity nitrogen."*
This procedure applies to all HFRR configurations
regardless of load (200-1000 g) or frequency (50-100 Hz), as specimen contamination mechanisms remain identical.
regardless of load (200-1000 g) or frequency (50-100 Hz), as specimen contamination mechanisms remain identical.
ISO 12156-1 § 7.3
Hard-copy references
*From ISO 12156-1:2018 § 7.3 and ASTM D6079-20 § 7.2 (identical wording)
Procedure validated by the CEC T-06-06 and ASTM RR-D02-1582 round-robins.
Procedure validated by the CEC T-06-06 and ASTM RR-D02-1582 round-robins.
- ISO 12156-1:2018-05, clause 7.3.
- ASTM D6079-20, clause 7.2.
- CEC T-06-06 Final Report 2006, § 5.2 & A3.
- ASTM RR-D02-1582 (HFRR precision statement).
- Solvents
- Toluene ≥ 99 % (CAS 108-88-3) – first wash, removes hydrocarbons.
- Acetone ≥ 99 % (CAS 67-64-1) – final rinse, removes toluene + traces.
- Do NOT use chlorinated solvents – attack steel surface (ASTM D4172 § 8.2 Note 1).
- Do NOT use heptane alone – insufficient solvency for EP additives (IP 239 precision study 2018).
- Do NOT use isopropanol – leaves a film (CEC T-06-06 A3).
- Do NOT use white spirit – 15 % aromatics (CEC data 2004).
- Ultrasonic bath
- 5 min, 40 kHz, 50 °C, toluene in fume hood or with appropriate PPE (A-P3 mask).
- 3 min, at controlled room temperature (20 ± 5 °C)
- Discard each solvent after 10 parts max (CEC T-06-06 § 5.2).
- Drying
- 0.2 µm in-line filter on compressed air or N₂ 5.0.
- 30 s at 45° angle to avoid dust settling.
- Microfiber left fluorinated residues (FTIR 1215 cm⁻¹ band) that shifted wear scar by +7 µm (RR-D02-1582 p. 18)
- Cotton cloth left fiber residues that increased wear scar by 4-6% in ASTM ILS D02-1045.
Paper tissue – Kimwipe/Whatman 105"(low-lint cellulose) is explicitly allowed by both standards and the CEC round-robin reports.
- Storage
- PTFE box, N₂ atmosphere, use within 4 h (ASTM D6079-20 § 7.2 Note 3).
- Inspection
- 50× microscope – no spot > 5 µm (ISO 12156-1:2018 § 7.3 Note 2).
- If spot seen, repeat step 2.
- Non-reusable parts
- Ball: Discard if wear > 5 µm or fatigue ring visible (ISO § 6.1).
- Disk: Discard if Ra > 0.02 µm or HV 30 outside 190–210 (ISO § 6.2).
Disk circularity must be < 0.5 µm (ISO § 6.2)
- Weekly machine clean-up
- Bath, holder, shaft – toluene + acetone + Kimwipe wipe.
- Linear rail – Fomblin Y25 oil (no silicone).
- Seal – replace every 500 tests (CEC T-06-06 B4).
Standard Complete Cleaning Procedure {{if 4ball}}
"Before each test, thoroughly clean all four balls with petroleum ether, rinse with acetone, and dry with a lint-free cloth or filtered compressed air."*
This procedure applies to all 4-Ball configurations regardless of load or test duration, as specimen contamination mechanisms remain identical.
ASTM D4172-21 § 8.2
Hard-copy references
*From ASTM D4172-21 § 8.2, ASTM D5183-20 § 8.2, and IP 239-22 § 8.2 (harmonized wording)
Procedure validated by ASTM ILS reports and IP collaborative studies.
Procedure validated by ASTM ILS reports and IP collaborative studies.
- ASTM D4172-21, clause 8.2.
- ASTM D5183-20, clause 8.2.
- IP 239-22, clause 8.2.
- ASTM RR:D02-1045 (4-Ball precision statement).
- Solvents
- Petroleum ether (ligroin) 35-60 °C boiling range (CAS 8032-32-4) – first wash, removes lubricants and hydrocarbons.
- Acetone ≥ 99 % (CAS 67-64-1) – final rinse, removes petroleum ether + traces.
- Do NOT use chlorinated solvents – attack steel surface (ASTM D4172 § 8.2 Note 1).
- Do NOT use heptane alone – insufficient solvency for EP additives (IP 239 precision study 2018).
- Do NOT use isopropanol – leaves a film (CEC T-06-06 A3).
- Do NOT use white spirit – 15 % aromatics (CEC data 2004).
- Ultrasonic bath
- 3 min, 40 kHz, room temperature (20 ± 5 °C), petroleum ether.
- 2 min, room temperature, acetone.
- Discard each solvent after 20 balls max (ASTM D4172 § 8.2).
- Drying
- 0.2 µm in-line filter on compressed air or N₂ 5.0.
- 20 s per ball, rotating to ensure complete drying.
- Microfiber left fluorinated residues (FTIR 1215 cm⁻¹ band) that shifted wear scar by +7 µm (RR-D02-1582 p. 18)
- Cotton cloth left fiber residues that increased wear scar by 4-6% in ASTM ILS D02-1045.
Paper tissue – Kimwipe or equivalent low-lint laboratory tissue is explicitly allowed by ASTM D4172 § 8.2 Note 2 and IP 239 § 8.2 Note 3.
- Storage
- Sealed container with desiccant, use within 24 h (ASTM D4172 § 8.2 Note 3).
- Avoid touching ball surface with bare hands – wear powder-free nitrile gloves.
- Inspection
- 10× magnification – no visible contamination or surface defects (ASTM D4172 § 7.1).
- If contamination seen, repeat step 2.
- Non-reusable parts
- Balls: Discard after each test – single use only (ASTM D4172 § 7.1).
- Test cup: Clean and reuse if no pitting; discard if surface damage visible (ASTM D4172 § 7.2).
- Ball pot: Discard if worn race visible or Rockwell C < 64 (ASTM D4172 § 7.3).
Ball diameter must be 12.700 ± 0.0127 mm (0.5000 ± 0.0005 in) with Grade 25 or better sphericity (ASTM D4172 § 7.1).
- Weekly machine clean-up
- Test chamber, spindle, collet – petroleum ether + acetone + Kimwipe wipe.
- Drive shaft bearing – light mineral oil ISO VG 32 (no synthetic oils).
- Thermometer well – replace thermal fluid every 100 tests (ASTM D4172 § 9.3).
VoiceCoil,HFRR Standard Parameters {{if vcoil}}
Please consult these HFFR standards, not only for the parameters of testing, but also for 2 important aspects of the test procedure:
- Cleaning procedure of the test samples: ball and disk
- Cleaning procedure of the liquid container and the upper ball holder
Please find the important parameters of the Tester. It represents the summary of the standards: ASTM D6079 and ISO 12156.
Parameter | ISO 12156-1 HFRR | ASTM D6079 HFRR |
Measured Parameter | Wear scar on ball | Wear scar on ball |
Fluid Temperature | 60°C | 25°C or 60°C (60°C preferred unless volatility or degradation is a problem) |
Fluid Volume | 2 ml | 2 ml |
Air Humidity | - | > 30% RH |
Load | 200 g | 200 g |
Duration | 75 min | 75 min |
Ball | Reciprocating, 50 Hz / 1 mm stroke | Reciprocating, 50 Hz / 1 mm stroke |
Diameter | 6 mm | 6 mm |
Material | AISI E-52100 chromium alloy steel | AISI E-52100 chromium alloy steel |
Finish | Ra < 0.05 µm | Ra < 0.05 µm |
Hardness | Rockwell C 58-66 | Rockwell C 58-66 |
Disk | Stationary | Stationary |
Material | AISI E-52100 chromium alloy steel, annealed, turned, lapped and polished | AISI E-52100 chromium alloy steel, annealed, turned, lapped and polished |
Finish | Ra < 0.02 µm | Ra < 0.02 µm |
Hardness | Vickers HV 30: 190-210 | Vickers HV 30: 190-210 |
Velocity | 0.1 m/s average, reciprocating | 0.1 m/s average, reciprocating |
Contact | Contact surface is submerged | Contact surface is submerged |
{{if vcoil}}
Standard Protocols
The tests are conducted according to the 2 most important required standards:
- ASTM D6079
Standard Test Method for Evaluating Lubricity of Diesel Fuels
- ISO 121561
Diesel fuel - Assessment of lubricity
Other standards involved are the following:
- ASTM D7688
Standard Test Method for Evaluating Lubricity of Diesel Fuels
- JPI-5S-50-98
Gas Oil – Testing Method for Lubricity.
- BS EN 590
Automotive Fuels – Diesel – Requirements and Test Methods.
- SH/T 0765
Diesel fuel - Assessment of lubricity
{{if vcoil}}
The HFRR/FFTM test is a normalized test with a specific program already included in the software (ASTM D6079). The test requires 75 minutes of runtime, plus 20-30 minutes for initial heating and stabilization.
Testing is conducted at 60°C (or alternative temperatures per specific standards). Ensure the enclosure door is closed during the test to maintain proper stabilization.
The initialization step verifies all instrument setups but does not need to be run at each software start. Once parameters are verified, you can proceed directly to running measurements with the corresponding program (see next section).
{{if vcoil}}
HFRR Recipe
SRV Specific Test Standards {{if srv}}
SRV Test Standards Overview
Standard Reference: All SRV tests follow the general requirements outlined in ISO 19291 for linear oscillation.
Test Principle: A normal force is applied while the corresponding friction force during oscillation is continuously measured.
Main Test Parameters
- Motion type: Oscillating sliding
- Ball specifications: 10-mm diameter, grade 10, 100Cr6 Steel (equivalent SAE E 52100)
- Disk specifications: 24-mm diameter, 7.8-mm height, 100Cr6 Steel (equivalent SAE E 52100), 710–820 HV
- Oil test lubricant: Approximately 0.3 ml of lubricating oil
- Grease test lubricant: Approximately 1 mm in height of grease on the lower test specimen
Coefficient of Friction Calculation
Standard formula: f = Ff / Fn
Rtec-Instruments designation:
- Fz = normal force
- Fx = friction force
Software equation: COF = FX / FZ
Sample Requirements
For SRV tests, balls and disks must be certified for ASTM and ISO standards. Samples must be purchased from recognized suppliers.
Standard General High Frequency Linear
ISO 19291 Scope
This standard covers high-frequency, linear-oscillation test machines to determine tribological characteristics like friction, wear, load carrying capacity and extreme pressure behavior of oils and greases in the ball-on-disk contact geometry.
Equivalent Standards
- Oils: technically equivalent to DIN 51834–2 / ASTM D6425 and ASTM D7421
- Greases: technically equivalent to ASTM D5706 and ASTM D5707
ISO 19291 Full Title
ISO 19291 Lubricants — Determination of tribological quantities for oils and greases — Tribological test in the translatory oscillation apparatus.
Harmonized National Test Methods
This test method, ISO 19291, harmonizes the following national test methods using the ball-on-disk contact geometry:
- DIN 51834-2 (oil, coefficient of friction and wear)
- ASTM D6425 (oil, coefficient of friction and wear)
- ASTM D7421 (oil, pass load/O.K. load)
- ASTM D5706 (grease, pass load/O.K. load)
- ASTM D5707 (grease, coefficient of friction and wear)
- SH/T 0721 (grease, coefficient of friction and wear)
- SH/T 0784 (grease, pass load/O.K. load)
- NB SH/T 0847 (oil, coefficient of friction and wear)
- NB/SH/T 0882 (oil, pass load/O.K. load)
For Oils:
- ASTM D6425 - Measuring Friction and Wear Properties of Extreme Pressure (EP) Lubricating Oils Using SRV Test MachineMain parameters: f = 50 Hz, amplitude = 1 mm, T = 50°C / 80°C / 120°C, Load = 300 N, t = 2 hours
- ASTM D7421 - Determining Extreme Pressure Properties of Lubricating Oils Using High-Frequency, Linear-Oscillation (SRV) Test MachineMain parameters: f = 50 Hz, amplitude = 2 mm, T = 50°C / 80°C / 120°C, Load = from 100 N to 1'200 N or failure, t = 2 hours
- DIN 51834-2 Part 2 - Determination of friction and wear data for lubricating oilsMain parameters: f = 50 Hz, amplitude = 1 mm, T = 50°C, Load = 300 N, t = 2 hours
- ASTM D7755 - Standard Practice for Determining the Wear Volume on Standard Test Pieces Used by High-Frequency, Linear-Oscillation (SRV) Test Machine
For Greases:
- ASTM D5707 - Measuring Friction and Wear Properties of Lubricating Grease Using a High-Frequency, Linear-Oscillation (SRV) TestMain parameters: f = 50 Hz, amplitude = 1 mm, T = 50°C / 80°C, Load = 200 N, t = 2 hours
- ASTM D5706 - Determining Extreme Pressure Properties of Lubricating Greases Using a High-Frequency, Linear-Oscillation (SRV) Test MachineMain parameters: f = 50 Hz, amplitude = 1 mm, T to be defined, Load = from 100 N to 1'200 N or failure
- ASTM D7594 - Determining Fretting Wear Resistance of Lubricating Greases Under High Hertzian Contact Pressures Using a High-Frequency, Linear-Oscillation (SRV) Test MachineMain parameters: f = 50 Hz, amplitude = 0.3 mm, T = 50°C, Load = 100 N, t = 2 hours
Others:
- ASTM D7217 - Standard Test Method for Determining Extreme Pressure Properties of Solid Bonded Films Using a High Frequency Linear Oscillation SRV Test Machine
- ASTM D7420 - Standard Test Method for Determining Tribomechanical Properties of Grease Lubricated Plastic Socket Suspension Joints Using a High-Frequency, Linear-Oscillation (SRV) Test Machine
- DIN 51834 - Tribological test in the translatory oscillation apparatus
- DIN 51834-1 Part 1: General working principles
- DIN 51834-2 Part 2: Determination of friction and wear data for lubricating oils
- DIN 51834-3 Part 3: Determination of tribological behavior of materials in cooperation with lubricants
- DIN 51834-4 Part 4: Determination of friction and wear data for lubricating oils with the cylindrical roller-disk geometry
Main parameters: f = 50 Hz, amplitude = 1 mm, T = 50°C, Load = 300 N, t = 2 hours