Delta Electronics VFD-L Series 10.0 ~ 600 sec, ΔϴϤϗήϟ έΎϬχϹ ΔηΎη ϹϬΑΎθΘϟ ϞΧΪϟ ΪϬΟ Ϧϣ 0 ~ 10 V

Page 9

10.0

0.1 ~ 600 sec

( Tdec1) ϝϭϷ΍ ΆσΎΒΘϟ΍ Ϧϣί

1-10

 

10.0

0.1 ~ 600 sec

ϲϧΎΜϟ΍ ωέΎδΘϟ΍ Ϧϣί

1-11

 

10.0

0.1 ~ 600 sec

ϲϧΎΜϟ΍ ΆσΎΒΘϟ΍ Ϧϣί

1-12

 

10.0

0.1 ~ 600 sec

Jog ˰ϟ΍ ΩΩήΗ ωέΎδΗ Ϧϣί

1-13

 

10.0

0.0 ~ 600 sec

Jog ˰ϟ΍ ΩΩήΗ ΆσΎΒΗ Ϧϣί

1-14

 

6.0

1.0 ~ 400 Hz

Jog ˰ϟ΍ ΩΩήΗ

1-15

 

 

ϲτΨϟ΍ ΆσΎΒΘϟ΍ / ωέΎδΘϟ΍ : 0

 

 

 

 

ϲτΨϟ΍ ΆσΎΒΘϟ΍ˬ ϲ΋ΎϘϠΘϟ΍ ωέΎδΘϟ΍ :1

 

 

 

 

ϲ΋ΎϘϠΘϟ΍ ΆσΎΒΘϟ΍ˬ ϲτΨϟ΍ ωέΎδΘϟ΍ :2

 

 

 

0

ϲ΋ΎϘϠΘϟ΍ ΆσΎΒΘϟ΍/ ωέΎδΘϟ΍ :3

 

 

 

 

ϲ΋ΎϘϠΘϟ΍ ΆσΎΒΘϟ΍ . ϲτΨϟ΍ ωέΎδΘϟ΍ :4

ϲ΋ΎϘϠΘϟ΍ ΆσΎΒΘϟ΍ / ωέΎδΘϟ΍

1-16

 

 

ΆσΎΒΘϟ΍ ˯ΎϨΛ΃ ϒϗϮΘϟ΍ ϊϨϣ

 

 

 

 

 

 

ϲ΋ΎϘϠΘϟ΍ ΆσΎΒΘϟ΍.ϲ΋ΎϘϠΘϟ΍ ωέΎδΘϟ΍ :5

 

 

 

 

ΆσΎΒΘϟ΍ ˯ΎϨΛ΃ ϒϗϮΘϟ΍ ϊϨϣ

 

 

 

0

0 ~ 7

ωέΎδΘϟ΍ ϲϨΤϨϣ ϢϴόϨΗ ςΒο

1-17

 

0

0 ~ 7

ΆσΎΒΘϟ΍ ϲϨΤϨϣ ϢϴόϨΗ ςΒο

1-18

 

ϞϤόϟ΍ Ε΍ήΘϣ΍έΎΑ : ΔϴϧΎΜϟ΍ ΔϋϮϤΠϤϟ΍

ϊϨμϤϟ΍ ςΒο

Ε΍Ω΍ΪϋϹ΍

ϒ΋ΎχϮϟ΍

Ε΍ήΘϣ΍έΎΒϟ΍

 

ΔϴϤϗήϟ΍ έΎϬχϹ΍ ΔηΎη : 0

 

 

 

ϲϬΑΎθΘϟ΍ ϞΧΪϟ΍ ΪϬΟ Ϧϣ 0 ~ 10 V : 1

 

 

0

ϲϬΑΎθΘϟ΍ ϞΧΪϟ΍ έΎϴΗ Ϧϣ 4 ~ 20 mA : 2

ϞϤόϟ΍ ΩΩήΘΑ ϢϜΤΘϟ΍ έΪμϣ

2-00

 

ήΗήϔϧϻ΍ ϰϠϋ ΓήϴϐΘϣ ΔϣϭΎϘϣ ϡ΍ΪΨΘγΎΑ ϢϜΤΘϟ΍ : 3

 

 

RS – 485 ϝΎμΗϻ΍ άϔϨϣ : 4

 

 

 

ΔϴϤϗήϟ΍ έΎϬχϹ΍ ΔηΎη ϡ΍ΪΨΘγΎΑ : 0

 

 

 

ϑΎϘϳϹ΍ ϞϴόϔΗ ˬ ΔϴΟέΎΧ ϢϜΤΗ ϞΧ΍Ϊϣ ϡ΍ΪΨΘγΎΑ : 1

 

 

 

( ΢ϴΗΎϔϤϟ΍ ΔΣϮϟ ) έΎϬχϹ΍ ΔηΎη Ϧϣ

 

 

 

ϞϴόϔΗ ϡΪϋ ˬ ΔϴΟέΎΧ ϢϜΤΗ ϞΧ΍Ϊϣ ϡ΍ΪΨΘγΎΑ : 2

 

 

0

έΎϬχϹ΍ ΔηΎη Ϧϣ ϑΎϘϳϹ΍

ϞϤόϟ΍ ήϣ΍ϭ΃ έΪμϣ

2-01

 

ˬ RS - 485 ϝΎμΗϻ΍ άϔϨϣ ϡ΍ΪΨΘγΎΑ : 3

 

 

 

έΎϬχϹ΍ ΔηΎη Ϧϣ ϒϗϮΘϟ΍ ΔϴϧΎϜϣ·

 

 

 

ˬ RS - 485 ϝΎμΗϻ΍ άϔϨϣ ϡ΍ΪΨΘγΎΑ : 4

 

 

 

.έΎϬχϹ΍ ΔηΎη Ϧϣ ϒϗϮΘϟ΍ ΔϴϧΎϜϣ· ϡΪϋ

 

 

0

ϒϗϮΘϴϟ ΊσΎΒΘϳ : 0

ϑΎϘϳϹ΍ ΔϘϳήσ

2-02

 

 

( ΝήΨϟ΍ ΩΩήΘϟ ϲ΋ΎΠϓ ϑΎϘϳ· ) ϙήΤϤϠϟ ήΣ ϑΎϘϳ· : 1

 

 

 

 

 

 

 

10

3 ~ 10 KHz

ϞϣΎΤϟ΍ ΩΩήΘϟ΍

2-03

 

 

 

 

 

0

ϩΎΠΗϻ΍ βϜϋ ϦϴϜϤΗ : 0

 

 

 

ϒϠΨϠϟ ϥ΍έϭΪϟ΍ ϦϴϜϤΗ ϡΪϋ : 1

ϥ΍έϭΪϟ΍ βϜϋ ϊϨϣ

2-04

 

ϡΎϣϸϟ ϥ΍έϭΪϟ΍ ϦϴϜϤΗ ϡΪϋ : 2

 

 

 

ήϔμϟ΍ ϰϟ· ήΗήϔϧϻ΍ ΊσΎΒΘϳ : 0

ΓέΎη· ϝ΍ϭί ˯΍ήΟ·

 

0

EF έΎϬχ· ˬ ΓήηΎΒϣ ϒϗϮΘϟ΍ : 1

2-05

ACI ϞΧΪϤϟ΍ ϰϠϋ έΎϴΘϟ΍

 

. ( ϖΑΎδϟ΍ ΩΩήΘϟ΍ )ΔϴϠϤϋ ήΧ΁ ΩΩήΘΑ ϞϴϐθΘϟ΍ : 2

 

0

ϝΎόϓ : 0

Ϟλϭ ΪϨϋ ϲϟ΁ ϞϴϐθΗ

2-06

 

 

ϝΎόϓ ήϴϏ : 1

ΔϳάϐΘϟ΍

 

 

 

 

 

 

8

Image 9
Contents Page Ύϭθϓ ήΗήϔϧϻ ΐϴϛήΗ ΔϣΪϘϣΚΤϔϟϭ ϡϼΘγϻ ϝϭϷ Ϟμϔϟ 002 0.2 KW 004 0.4 KW 007 0.75 KW 015 1.5 KWϦΤθϟ ˯ΎϨΛ ϩέήπΗ ϡΪόϟ ήΗήϔϧϼϟ Ϧϴϣ΄Θϟ Ϛλ ϭ ΔϟΎϔϜϟ Ϧϣ Ϊϛ΄Η ΩΎόΑϷ ϹγΎγϷ ϞϴλϮΘϟ ςτΨϣ ϞϴλϮΘϟ ϲϧΎΜϟ ϞμϔϟϢϜΤΘϟ ΓέΩ ϞϴλϮΗ ΐϴϛήΘϟ ϞΒϗ ϲϠϳ Ύϣ Γ˯ήϗ ˯ΎΟήϟ ϞϴλϮΘϟ ΕΎψΣϼϣ ΐγΎϨϣϭ ϲϓΎϛ ϡΰόΑ ΓΩϭΪθϣ ϲϏήΒϟ ϊϴϤΟ ϥ Ϧϣ Ϊϛ΄Η ϪθβϩηϞϣΎΤϟ ΩΩήΘϟ ξϴϔΨΘΑ Ύπϳ˱ ϲδϴσΎϨϐϣϭήϬϜϟ ζϳϮθΘϟ κϘϨϳ ϥ ϦϜϤϳ ΕήΘϣέΎΒϟ κΨϠϣ ΚϟΎΜϟ Ϟμϔϟ ΔϴϤϗήϟ έΎϬχϹ ΔηΎη ϹϬΑΎθΘϟ ϞΧΪϟ ΪϬΟ Ϧϣ 0 ~ 10 V 10.0 ~ 600 secRS 485 ϝΎμΗϻ άϔϨϣ ΔϴϤϗήϟ έΎϬχϹ ΔηΎη ϡΪΨΘγΎΑ ΈΎϬχϹ ΔηΎη Ϧϣ ϑΎϘϳϹΘΪϬϟ ΩΩήΘϠϟ ϝϮλϮϟ PLC ΞϣΎϧήΑ ϞϴϐθΗ ϠΪΨΘδϣ ήϴϏ ΉΗήϔϧϻ ϞϤϋ ˯ΎϨΛ ϞϤόΗPLC ΞϣΎϧήΑ ϝΎϤΘϛ ~ 350 HzϹδϜϋ ΔϨϜϤϣ ήϴϏ PLC ˰ϟ ΔϴϠϤϋSec 65500 Sec350 ~ 410 170 ϜΎόϓ ήϴϏ 390 ϜΎόϓ ήϴϏ20 ~ 200 % ϜΎόϓ ήϴϏ Ϊΰϟ ϡΰόϟ ΔψΣϼϣ ΪόΑ~ 60.0 Sec ~ 30 %~ 400.0 Sec ~ 5.0 Sec19200 ϝΎγέϹ Δϋήγ 4800 ϝΎγέϹ Δϋήγ 9600 ϝΎγέϹ ΔϋήγϦϜϤϣ ήϴϏ ~ 20 Sec 1~20 Modbus ˰ϟϜΎτϋϷ ΕΎϣϮϠόϣϭ ϝΎτϋϷ ήμΣ ϊΑήϟ Ϟμϔϟ ΉΒϛ ΝήΧ ΔϋΎτΘγΎΑ ήΗήϔϧϻ ϝΪΒΘγ ΪΟ˱ ϝΎϋ ϡΰόϟ ϊϓέ ΩέΎδΘϟ Ϧϣί ΓΩΎϳΰΑ ϢϗΪΟ˱ ϘήΤϤϟ ϲϓ ϞϤΘΤϣ Ϟτϋ ΩϮΟϭ Ϧϣ ϖϘΤΗϹΛϼΛ 230 115 015 007 004 002180 -264 V 50/60Hz 50/60 Hz ± 5 %

VFD-L Series specifications

Delta Electronics has established itself as a leader in variable frequency drive (VFD) technology, with the introduction of the VFD-L Series serving as a testament to their commitment to innovation and performance. These drives are designed specifically for various applications in industries such as HVAC, pumps, fans, and conveyors, offering users enhanced control and energy efficiency.

One of the main features of the VFD-L Series is its compact design, which allows for easy installation even in space-constrained environments. The drives are built with a rugged casing that provides excellent protection in harsh operating conditions, making them ideal for industrial settings. With power ratings spanning from 0.4 kW to 37 kW, the VFD-L Series caters to a wide range of applications, ensuring that users can find the right solution to meet their needs.

Incorporating advanced control algorithms, the VFD-L Series enhances motor performance while maintaining energy efficiency. The drives utilize Vector Control technology, which provides precise speed and torque control for AC induction and permanent magnet motors. This capability allows for smooth acceleration and deceleration, minimizing mechanical stress on equipment and prolonging lifespan.

The VFD-L Series is equipped with a built-in programmable logic controller (PLC) functionality, enabling users to customize control sequences without the need for additional external devices. This feature simplifies system design and enhances operational flexibility. Additionally, the user-friendly interface allows for easy programming and monitoring, making it accessible for both novice and experienced users.

Another noteworthy characteristic is the incorporation of energy-saving features. The VFD-L Series includes sleep mode and automatic energy optimization functions that proactively adjust the motor’s power consumption based on the actual load requirements. This not only reduces operational costs but also contributes to environmental sustainability by lowering carbon emissions.

Furthermore, Delta Electronics has ensured that the VFD-L Series is compliant with international standards, providing users with confidence in their reliability and safety. With built-in protection features like overvoltage, undervoltage, overload, and short-circuit protection, these drives provide a secure operating environment for sensitive equipment.

In conclusion, Delta Electronics’ VFD-L Series combines advanced technology, robust features, and a compact design to deliver exceptional performance across various industrial applications. With a focus on energy efficiency and user-friendly accessibility, the VFD-L Series is a powerful solution for modern manufacturing and automation needs. Whether for HVAC systems or material handling, this series stands out as an innovative choice for businesses looking to enhance their operational efficiency.