22N78-311P.1001 Portescap Danaher Motion US LLC, 22N78-311P.1001 Datasheet

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22N78-311P.1001

Manufacturer Part Number
22N78-311P.1001
Description
MOTOR BRUSH 22MM 12VDC
Manufacturer
Portescap Danaher Motion US LLC
Series
22N78, Athlonixr
Type
Brushed DCr
Datasheet

Specifications of 22N78-311P.1001

Voltage - Rated
12VDC
Rpm
7300 RPM
Features
-
Shaft Diameter
0.059" (1.50mm)
Shaft Rotational Direction
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
403-1044
BRUSH DC motoRS
Your miniature motion challenges are unique and your
ideas for meeting those challenges are equally unique.
From medical to aerospace or security and access,
Portescap’s brush DC motion solutions are moving
life forward worldwide in critical applications. The
following Brush DC section features our high efficiency
and high power density with low inertia coreless brush
DC motor technology.
Brush DC 8mm
Brush DC 16mm
Why a Brush DC motor
Brush DC Spotlight on Innovation
Brush DC Motor Basics
Brush DC Working Principles
How to select your
Brush DC motor
Brush DC Specifications
Where to apply Brush DC motors
Brush DC motors at Work
Motor Coil Cross Section
Brush DC 35mm
59
52
55
58
57
60
50
51

Related parts for 22N78-311P.1001

22N78-311P.1001 Summary of contents

Page 1

BRUSH DC motoRS Brush DC 8mm Your miniature motion challenges are unique and your ideas for meeting those challenges are equally unique. From medical to aerospace or security and access, Portescap’s brush DC motion solutions are moving life forward worldwide ...

Page 2

Why a Brush DC motor Select Either Sleeve or Ball Bearings optional Gearboxes and magnetic or optical Encoders Are Easily Added Innovation & Performance Portescap’s brush DC coreless motors incorporate salient features like low moment of inertia, no cogging, low ...

Page 3

SPOTLIGHT ON INNOVATION Innovation is a passion at Portescap. It defines your success, and defines our future. We help you get the right products to market faster, through rapid prototyping and collaborative engineering. With experienced R&D and application engineering teams ...

Page 4

Brush DC motor Basics Construction of Portescap motors with iron less rotor DC motors All DC motors, including the ironless rotor motors, are composed of three principle sub assemblies: 1. Stator 2. Brush Holder Endcap 3. Rotor Self Supporting High ...

Page 5

B — A method which avoids these coil heads uses an armature wire that is covered with an outer layer of plastic for adhesion, and is wound on a mobile lozenge-shaped support. Later, the support is removed, and a flat ...

Page 6

Features of Ironless Rotor DC motors The rotor of a conventional iron core DC motor is made of copper wire which is wound around the poles of its iron core. Designing the rotor in this manner has the following results: ...

Page 7

Brush DC Working Principles The electromechanical properties of motors with ironless rotors can be described by means of the following equations: 1. The power supply voltage U is equal to 0 the sum of the voltage drop produced by the ...

Page 8

Brush DC Working Principles through the effect of the rotor current, particularly in the event of slow or repeated starting. The torque M produced by the d starting-current I is obtained as follows ...

Page 9

How to select your Coreless motor PRODUCT RANGE CHART FRAME SIZE mNm (Oz-in) Max Continuous Torque Motor Regulation R/K 10 /Nms 2 3 Rotor Inertia Kgm 10 2 mNm (Oz-in) Max Continuous Torque Motor Regulation R/K 10 /Nms 2 3 ...

Page 10

Explanation of Specifications MOTOR PART NUMBER MEASURING VOLTAGE V NO LOAD SPEED rpm STALL TORQUE mNm (oz-in) AVERAGE NO LOAD CURRENT mA TYPICAL STARTING VOLTAGE V MAx RECOMMENDED VALUES MAX CONT CURRENT A MAX CONT TORQUE mNm (oz-in ...

Page 11

Applications mEDICAL • Powered surgical instruments • Dental hand tools Benefits: Reduced footprint analyzers with high efficiency & precision sample positioning SECURItY & ACCESS • Security cameras • Locks Benefits: Low Noise & Vibration, High Power & Superior ...

Page 12

Brush DC motors at Work mEDICAL ANALYZERS Portescap solves multiple application needs in analyzers, from sample draw on assays to rapid scanning and detection of molecular mechanisms in liquids and gases, with its coreless brush dc motors. For high throughput ...

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Miniature Motors Notes 61 ...

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Precious Metal Commutation System - 5 Segments dimensions in mm mass: 3.8 g Winding Type Measured Values Measuring voltage V rpm No-load speed Stall torque mNm (oz-in) Average No-load current mA Typical starting voltage V Max. Recommended Values A Max. ...

Page 15

Watt 0 4,5 -0,1 0,5 1,55 dimensions in mm mass: 4.5 g Winding Type Measured Values Measuring voltage No-load speed Stall torque Average No-load current Typical starting voltage Max. Recommended Values Max. continuous current Max. continuous torque Max. angular ...

Page 16

Precious Metal Commutation System - 9 Segments dimensions in mm mass Winding Type Measured Values Measuring voltage V No-load speed rpm Stall torque mNm (oz.in) Average No-load current mA Typical starting voltage V Max. Recomended Values Max. ...

Page 17

Watt dimensions in mm mass Winding Type Measured Values Measuring voltage No-load speed Stall torque Average No-load current Typical starting voltage Max. Recommended Values Max. continuous current Max. continuous torque Max. angular acceleration Intrinsic Parameters Back-EMF constant ...

Page 18

Precious Metal Commutation System - 5 Segments 10 M 1,6 x1,4 max. 3,7 2 dimensions in mm 16C18 mass Winding Type Measured Values Measuring voltage V No-load speed rpm mNm (oz-in) Stall torque Average No-load current mA V ...

Page 19

Watt Max screw torque 40mNm Max traction 230N 10 M 1,6 x 2,5 max. dimensions in mm mass Winding Type Measured Values Measuring voltage V No-load speed rpm mNm (oz-in) Stall torque Average No-load current mA V Typical starting voltage Max. Recommended Values ...

Page 20

Precious Metal Commutation System - 9 Segments Max screw torque 40mNm Max traction 230N 10 M 1,6 x 2,5 max. dimensions in mm mass Winding Type Measured Values Measuring voltage V No-load speed rpm mNm (oz-in) Stall torque Average No-load current mA V ...

Page 21

Watt Max screw torque 40 mNm Max traction 230 1,6 x2,8 max. ° dimensions in mm mass Winding Type Measured Values Measuring voltage V No-load speed rpm mNm (oz-in) Stall torque Average No-load current mA V Typical starting voltage Max. Recommended Values ...

Page 22

Precious Metal Commutation System - 9 Segments Max traction force: 130 N Max screw torque: 50 mNm dimensions in mm mass Winding Type Measured Values Measuring voltage V No-load speed rpm Stall torque mNm Average No-load current mA Typical starting voltage V Max. Recomended ...

Page 23

Watt 10 M 1,6 x 1,5 max. dimensions in mm mass Winding Type Measured Values Measuring voltage No-load speed Stall torque Average No-load current Typical starting voltage Max. Recommended Values Max. continuous current Max. continuous torque Max. ...

Page 24

Precious Metal Commutation System - 9 Segments 10 M 1,6 x 1,5 max. dimensions in mm mass Winding Type Measured Values Measuring voltage V No-load speed rpm mNm (oz-in) Stall torque Average No-load current mA V Typical starting ...

Page 25

Watt Ø max. 2 dimensions in mm mass Winding Type Measured Values V Measuring voltage No-load speed rpm mNm (oz-in) Stall torque Average No-load current mA Typical starting voltage V Max. Recommended Values Max. continuous ...

Page 26

Precious Metal Commutation System - 9 Segments dimensions in mm mass Winding Type Measured Values V Measuring voltage No-load speed rpm mNm (oz-in) Stall torque Average No-load current mA Typical starting voltage V Max. Recommended Values Max. continuous ...

Page 27

Watt Max screw torque 130 mNm Max traction 300N ÷ max. 1 5,5 32 dimensions in mm 22N28 mass Winding Type Measured Values V Measuring voltage No-load speed rpm mNm (oz-in) Stall torque Average No-load current mA 1) ...

Page 28

Precious Metal Commutation System - 9 Segments Max screw torque 130 mNm Max traction 300N dimensions in mm 22V28 mass Winding Type Measured Values Measuring voltage V No-load speed rpm Stall torque mNm (oz-in) mA Average No-load current 1) Typical starting voltage V 1) ...

Page 29

... Radial play: ≤ 30 μm 1009 1006 Shaft runout: ≤10 μm • Max. side load at 5mm from 1009 1006 mounting face – sleeve bearings 3 N – ball bearings 6 N • Motor fitted with sleeve bearings (ball bearings optional) Miniature Motors thloni 22N78/98 22N98 1005 311P 216E 215E 208E 7300 8200 9100 6400 48 ...

Page 30

Precious Metal Commutation System - 9 Segments 17 M x2,2 2 dimensions in mm mass Winding Type Measured Values Measuring voltage V rpm No-load speed Stall torque mNm (oz-in) Average No-load current mA Typical starting voltage V Max. ...

Page 31

Watt dimensions in mm mass Winding Type Measured Values Measuring voltage No-load speed Stall torque Average No-load current Typical starting voltage Max. Recommended Values Max. continuous current Max. continuous torque Max. angular acceleration Intrinsic Parameters Back-EMF constant ...

Page 32

Precious Metal Commutation System - 9 Segments ÷ 2,3max. 2 2,7 1,8 1,5 3,2 48,8 dimensions in mm 23V58 mass: 100 g Winding Type Measured Values Measuring voltage V rpm No-load speed Stall torque ...

Page 33

Watt 23GST .1 ÷ 2,2 max dimensions in mm 23GST2R82 mass Winding Type Measured Values Measuring voltage No-load speed Stall torque Average No-load current Typical starting voltage Max. Recommended Values ...

Page 34

Precious Metal Commutation System - 9 Segments dimensions in mm mass: 184 g Winding Type Measured Values Measuring voltage V rpm No-load speed Stall torque mNm (oz-in) Average No-load current mA Typical starting voltage V Max. Recommended Values A Max. ...

Page 35

Watt ÷ 2,7 max. 2 5,5 0,7 dimensions in mm 25GST2R82 mass: 111 g Winding Type Measured Values V Measuring voltage No-load speed rpm Stall torque mNm (oz-in) Average No-load current mA 1) Typical starting voltage V 1) ...

Page 36

Graphite/Copper Communication System - 9 Segments ÷ 3,3 max. 3 0,7 3 5,5 53,45 dimensions in mm 25GT2R82 mass: 145 g Winding Type Measured Values Measuring voltage V No-load speed rpm mNm (oz-in) Stall torque Average No-load current Typical ...

Page 37

Watt ÷ 2,3 max. 2 1,8 2,7 1,5 3,2 43,3 12,5 dimensions in mm 26N58 mass: 114 g Winding Type Measured Values V Measuring voltage No-load speed rpm mNm (oz-in) Stall torque Average No-load current mA Typical ...

Page 38

Precious Metal Commutation System - 9 Segments ÷ 3,6 max 43,5 dimensions in mm mass: 125 g Winding Type Measured Values Measuring voltage V rpm No-load speed Stall torque mNm (oz-in) Average No-load current ...

Page 39

Watt ° dimensions in mm 28LT12 mass: 135 g Winding Type Measured Values Measuring voltage No-load speed Stall torque Average No-load current Typical starting voltage Max. Recommended Values Max. continuous current Max. continuous torque Max. angular acceleration Intrinsic Parameters ...

Page 40

Precious Metal Commutation System - 13 Segments ° dimensions in mm mass: 190 g Winding Type Measured Values Measuring voltage V No-load speed rpm mNm (oz-in) Stall torque Average No-load current mA V Typical starting voltage Max. Recommended Values Max. ...

Page 41

Watt ° dimensions in mm 28DT12 mass: 200 g Winding Type Measured Values Measuring voltage No-load speed Stall torque Average No-load current Typical starting voltage Max. Recommended Values Max. continuous current Max. continuous torque Max. angular acceleration Intrinsic Parameters ...

Page 42

Precious Metal Commutation System - 9 Segments dimensions in mm 28HL mass: 125 g Winding Type Measured Values Measuring voltage V rpm No-load speed Stall torque mNm (oz-in) Average No-load current mA Typical starting voltage V Max. Recommended Values A ...

Page 43

Watt dimensions in mm mass: 310 g Winding Type Measured Values Measuring voltage No-load speed Stall torque Average No-load current Typical starting voltage Max. Recommended Values Max. continuous current Max. continuous torque Max. angular acceleration Intrinsic Parameters Back-EMF constant ...

Page 44

Graphite/Copper Commutation System - 13 Segments scale: 3:4 dimensions in mm 35NT2R32 mass: 310 g Winding Type Measured Values V Measuring voltage No-load speed rpm Stall torque mNm (oz-in) Average No-load current mA Typical starting voltage V Max. Recommended Values Max. continuous current A Max. ...

Page 45

Watt scale: 3:4 dimensions in mm mass: 310 g Winding Type Measured Values Measuring voltage No-load speed Stall torque Average No-load current Typical starting voltage Max. Recommended Values Max. continuous current Max. continuous torque Max. angular acceleration Intrinsic Parameters ...

Page 46

Graphite/Copper Commutation System - 13 Segments scale: 3:4 dimensions in mm mass: 415 g Winding Type Measured Values V Measuring voltage No-load speed rpm Stall torque mNm (oz-in) Average No-load current mA Typical starting voltage V Max. Recommended Values Max. continuous current A Max. continuous ...

Page 47

Watt scale: 3:4 dimensions in mm mass: 360g Winding Type Measured Values Measuring voltage V No-load speed rpm Stall torque mNm Average No-load current mA Typical starting voltage V Max. Recomended Values Max. continuous current A Max. continuous torque ...

Page 48

Notes 96 www.portescap.com ...

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