search_button
Search
Print Page  Register Login
You are Here: Linear Actuator Products > Stepper Motor Linear Actuators > Linear Actuators - Canstack > 26000 Linear Actuator Thursday, September 02, 2010
Newsletter Signup
Submit
Latest News

CHARACTERISTICS TECHNICAL DIAGRAMS PERFORMANCE CURVES 3D MODEL

26000 SERIES - 26mm (1") LINEAR ACTUATOR

An industry standard...high versatility, robust performance.

Other basic styles available...
High Resolution Series
Long-Stroke Metric Series
Teflon® leadscrew
High Temperature Option

Standard motors are Class B rated for maximum temperature of 130°C.

Part Number Selection Guide

 

Captive Non-Captive External
» Technical Drawing
Download 2D/3D Model
» Technical Drawing
Download 2D/3D Model

SALIENT CHARACTERISTICS - 26000 SERIES

Part Number Captive 2644X-V 2654X-V 2646X-V 2656X-V
Non-Captive 2634X-V 2684X-V 2636X-V 2686X-V
External E2644(X)-V E2654(X)-V E2646(X)-V E2656(X)-V
Wiring Bipolar Unipolar**
Step Angle 7.5° 15° 7.5° 15°
Operating Voltage 5 VDC 12 VDC 5VDC 12 VDC 5 VDC 12 VDC 5 VDC 12 VDC
Current / Phase 340 mA 140 mA 340 mA 140 mA 340 mA 140 mA 340 mA 140 mA
Resistance / Phase 14.7 84 14.7 84 14.7 84 14.7 84
Inductance / Phase 8.5 mH 55 mH 6.7 mH 44 mH 4.3 mH 24 mH 3.4 mH 19 mH
Power Consumption 3.4 W
Rotor Inertia 1.2 gcm2
Temperature rise 135° F (75°C) Rise
Weight 1.15 oz. ( 35 g)
Insulation resistance 20 M


*Special drive considerations may be necessary when leaving shaft fully extended or fully retracted.
**Unipolar drive gives approximately 30% less thrust than bipolar drive.

 

LINEAR TRAVEL STEP - SERIES 26000
 
Step Angle Inches/Step mm/Step Order Code ID
7.5° 0.0005 0.013 3
7.5° 0.001 0.0254 1
7.5° 0.002 0.051 2
15° 0.001 0.0254 1
15° 0.002 0.051 2
15° 0.004 0.102 4
 
DIMENSIONAL DRAWING - SERIES 26000

Captive Shaft

DIMENSIONAL DRAWING - SERIES 26000

Non-Captive

DIMENSIONAL DRAWING - SERIES 26000

External

PERFORMANCE CURVES - SERIES 26000 - THRUST vs. FULL STEP/SECOND

 

BIPOLAR L/R DRIVE 100% DUTY CYCLE

 

BIPOLAR L/R DRIVE 25% DUTY CYCLE

25% Duty cycle is obtained by a special winding or by running a standard motor at double the rated voltage

NOTE: Ramping can increase the performance of a motor either by increasing the top speed or getting a heavier load accelerated up to speed faster. Also, deceleration can be used to stop the motor without overshoot.

 

PERFORMANCE CURVES - SERIES 26000 - THRUST vs. FULL STEP/SECOND

 

BIPOLAR CHOPPER DRIVE 100% DUTY CYCLE

BIPOLAR CHOPPER DRIVE 25% DUTY CYCLE

25% Duty cycle is obtained by a special winding or by running a standard motor at double the rated voltage.

NOTE: All chopper drive curves were created with a 5 Volt motor and a 40 Volt power supply.

Ramping can increase the performance of a motor either by increasing the top speed or getting a heavier load accelerated up to speed faster. Also, deceleration can be used to stop the motor without overshoot.