Hitachi SJ700B C149, C151, C150, C154, C152, C153, C155, C156, C157, C158, C159, C160, C161, C162

Page 19

Code

 

Function Name

 

Monitored data or setting

function

 

C149

 

Logical output signal 3 selection 2

 

Same as the settings of C021 to C026 (except those of LOG1 to LOG6)

 

 

 

 

C151

 

Logical output signal 4 selection 1

 

Same as the settings of C021 to C026 (except those of LOG1 to LOG6)

operation

 

C150

 

Logical output signal 3 operator selection

 

00 (AND), 01 (OR), 02 (XOR)

 

C154

 

Logical output signal 5 selection 1

 

Same as the settings of C021 to C026 (except those of LOG1 to LOG6)

 

 

C152

 

Logical output signal 4 selection 2

 

Same as the settings of C021 to C026 (except those of LOG1 to LOG6)

 

 

C153

 

Logical output signal 4 operator selection

 

00 (AND), 01 (OR), 02 (XOR)

terminal

 

C155

 

Logical output signal 5 selection 2

 

Same as the settings of C021 to C026 (except those of LOG1 to LOG6)

 

C156

 

Logical output signal 5 operator selection

 

00 (AND), 01 (OR), 02 (XOR)

 

 

 

 

Output

 

C157

 

Logical output signal 6 selection 1

 

Same as the settings of C021 to C026 (except those of LOG1 to LOG6)

 

C158

 

Logical output signal 6 selection 2

 

Same as the settings of C021 to C026 (except those of LOG1 to LOG6)

 

 

 

 

response

 

C159

 

Logical output signal 6 operator selection

 

00 (AND), 01 (OR), 02 (XOR)

 

C160

 

Input terminal response time setting 1

 

0. to 200. (×2ms)

 

C161

 

Input terminal response time setting 2

 

0. to 200. (×2ms)

 

 

 

 

 

 

C162

 

Input terminal response time setting 3

 

0. to 200. (×2ms)

terminal

 

C163

 

Input terminal response time setting 4

 

0. to 200. (×2ms)

 

C164

 

Input terminal response time setting 5

 

0. to 200. (×2ms)

 

 

 

 

 

 

C165

 

Input terminal response time setting 6

 

0. to 200. (×2ms)

Input

 

C166

 

Input terminal response time setting 7

 

0. to 200. (×2ms)

 

C167

 

Input terminal response time setting 8

 

0. to 200. (×2ms)

 

 

 

 

other

 

C168

 

Input terminal response time setting FW

 

0. to 200. (×2ms)

 

C169

 

Multistage speed/position determination time

 

0. to 200. (×10ms)

H GROUP: MOTOR CONSTANTS FUNCTIONS

Code

 

Function Name

 

Monitored data or setting

 

H001

 

Auto-tuning Setting

 

00 (disabling auto-tuning), 01 (auto-tuning without rotation),

 

 

 

 

 

 

 

 

02 (auto-tuning with rotation)

 

 

 

 

 

 

 

 

H002

 

Motor data selection, 1st motor

 

00 (Hitachi standard data), 01 (auto-tuned data),

 

 

 

 

02 (auto-tuned data [with online auto-tuning function])

 

 

 

 

 

 

 

 

H202

 

Motor data selection, 2nd motor

 

00 (Hitachi standard data), 01 (auto-tuned data),

 

 

 

 

02 (auto-tuned data [with online auto-tuning function])

 

 

H003

 

Motor capacity, 1st motor

 

SJ700:0.20 to 400.0 (kW)/SJ700B:0.20 to 160(kW)

 

 

H203

 

Motor capacity, 2nd motor

 

SJ700:0.20 to 400.0 (kW)/SJ700B:0.20 to 160(kW)

 

 

H004

 

Motor poles setting, 1st motor

 

2, 4, 6, 8, 10 (poles)

 

 

H204

 

Motor poles setting, 2nd motor

 

2, 4, 6, 8, 10 (poles)

 

 

H005

 

Motor speed constant, 1st motor

 

0.001 to 9.999, 10.00 to 80.00 (10.000 to 80.000)

 

 

H205

 

Motor speed constant, 2nd motor

 

0.001 to 9.999, 10.00 to 80.00 (10.000 to 80.000)

 

 

H006

 

Motor stabilization constant, 1st motor

 

0. to 255.

 

 

H206

 

Motor stabilization constant, 2nd motor

 

0. to 255.

 

constants

H306

 

Motor stabilization constant, 3rd motor

 

0. to 255.

 

H021

 

Motor constant R2, 1st motor

 

0.001 to 9.999, 10.00 to 65.53 (Ω) (*1)

 

 

H020

 

Motor constant R1, 1st motor

 

0.001 to 9.999, 10.00 to 65.53 (Ω) (*1)

 

 

H220

 

Motor constant R1, 2nd motor

 

0.001 to 9.999, 10.00 to 65.53 (Ω) (*1)

 

Control

 

 

 

 

 

 

H221

 

Motor constant R2, 2nd motor

 

0.001 to 9.999, 10.00 to 65.53 (Ω) (*1)

 

 

H022

 

Motor constant L, 1st motor

 

0.01 to 99.99, 100.0 to 655.3 (mH) (*2)

 

 

H222

 

Motor constant L, 2nd motor

 

0.01 to 99.99, 100.0 to 655.3 (mH) (*2)

 

 

H023

 

Motor constant Io

 

0.01 to 99.99, 100.0 to 655.3 (A) (*3)

 

 

H223

 

Motor constant Io, 2nd motor

 

0.01 to 99.99, 100.0 to 655.3 (A) (*3)

 

 

H024

 

Motor constant J

 

0.001 to 9.999, 10.00 to 99.99, 100.0 to 999.9, 1000. to 9999.

 

 

H224

 

Motor constant J, 2nd motor

 

0.001 to 9.999, 10.00 to 99.99, 100.0 to 999.9, 1000. to 9999.

 

 

H030

 

Auto constant R1, 1st motor

 

0.001 to 9.999, 10.00 to 65.53 (Ω) (*1)

 

 

H230

 

Auto constant R1, 2nd motor

 

0.001 to 9.999, 10.00 to 65.53 (Ω) (*1)

 

 

H031

 

Auto constant R2, 1st motor

 

0.001 to 9.999, 10.00 to 65.53 (Ω) (*1)

 

 

H231

 

Auto constant R2, 2nd motor

 

0.001 to 9.999, 10.00 to 65.53 (Ω) (*1)

 

 

H032

 

Auto constant L, 1st motor

 

0.01 to 99.99, 100.0 to 655.3 (mH) (*2)

 

 

H232

 

Auto constant L, 2nd motor

 

0.01 to 99.99, 100.0 to 655.3 (mH) (*2)

 

 

H033

 

Auto constant Io, 1st motor

 

0.01 to 99.99, 100.0 to 655.3 (A) (*3)

 

 

H233

 

Auto constant Io, 2nd motor

 

0.01 to 99.99, 100.0 to 655.3 (A) (*3)

 

 

H034

 

Auto constant J, 1st motor

 

0.001 to 9.999, 10.00 to 99.99, 100.0 to 999.9, 1000. to 9999.

 

 

H234

 

Auto constant J, 2nd motor

 

0.001 to 9.999, 10.00 to 99.99, 100.0 to 999.9, 1000. to 9999.

 

 

H050

 

PI proportional gain for 1st motor

 

0.0 to 999.9, 1000.

 

 

H250

 

PI proportional gain for 2nd motor

 

0.0 to 999.9, 1000.

 

 

H051

 

PI integral gain for 1st motor

 

0.0 to 999.9, 1000.

 

constants

H251

 

PI integral gain for 2nd motor

 

0.0 to 999.9, 1000.

 

H052

 

P proportional gain setting for 1st motor

 

0.01 to 10.00

 

 

H252

 

P proportional gain setting for 2nd motor

 

0.01 to 10.00

 

 

H060

 

Zero LV lmit for 1st motor

 

0.0 to 100.0

 

Control

H260

 

Zero LV lmit for 2nd motor

 

0.0 to 100.0

 

H261

 

Zero LV starting boost current for 2nd motor

 

0. to 50. (%)

 

 

H061

 

Zero LV starting boost current for 1st motor

 

0. to 50. (%)

 

 

H070

 

Terminal selection PI proportional gain setting

 

0.0 to 999.9, 1000.

 

 

H071

 

Terminal selection PI integral gain setting

 

0.0 to 999.9, 1000.

 

 

H072

 

Terminal selection P proportional gain setting

 

0.00 to 10.00

 

 

H073

 

Gain switching time

 

0. to 9999. (ms)

 

(*1) 1850HF,2200HF,3150HF and 4000HF:0.1 to 999.9,1000. to 6553.(mΩ).

(*2) 1850HF,2200HF,3150HF and 4000HF:0.001 to 9.999,10.00. to 65.53(mH).

(*3) 1850HF,2200HF,3150HF and 4000HF:0.01 to 0.35 “ rated current ”(A).

 

 

 

 

 

[◯= Allowed×= Not permitted

 

 

 

 

 

 

 

 

Default Setting

 

 

 

 

Setting

 

Change

 

 

 

SJ700

 

 

 

 

 

 

 

during operation during operation

-FE(CE) -FU(UL) -F(JP) SJ700B

 

 

(allowed or not) (allowed or not)

00

 

 

00

 

00

 

00

 

 

×

 

 

 

 

 

 

00

 

 

00

 

00

 

00

 

 

×

 

00

 

 

00

 

00

 

00

 

 

×

 

00

 

 

00

 

00

 

00

 

 

×

 

00

 

 

00

 

00

 

00

 

 

×

 

00

 

 

00

 

00

 

00

 

 

×

 

00

 

 

00

 

00

 

00

 

 

×

 

00

 

 

00

 

00

 

00

 

 

×

 

00

 

 

00

 

00

 

00

 

 

×

 

00

 

 

00

 

00

 

00

 

 

×

 

00

 

 

00

 

00

 

00

 

 

×

 

1

 

 

1

 

1

 

1

 

 

 

×

 

1

 

 

1

 

1

 

1

 

 

 

×

 

1

 

 

1

 

1

 

1

 

 

 

×

 

1

 

 

1

 

1

 

1

 

 

 

×

 

1

 

 

1

 

1

 

1

 

 

 

×

 

1

 

 

1

 

1

 

1

 

 

 

×

 

1

 

 

1

 

1

 

1

 

 

 

×

 

1

 

 

1

 

1

 

1

 

 

 

×

 

1

 

 

1

 

1

 

1

 

 

 

×

 

0

 

 

0

 

0

 

0

 

 

 

×

 

 

 

 

 

 

[◯= Allowed×= Not permitted

 

 

 

 

 

 

 

 

Default Setting

 

 

 

 

Setting

 

Change

 

 

 

SJ700

 

 

 

 

 

 

 

during operation during operation

-FE(CE) -FU(UL) -F(JP) SJ700B

 

 

(allowed or not) (allowed or not)

00

 

00

00

 

00

×

×

 

 

 

00

 

00

00

 

00

×

×

 

 

 

00

 

00

00

 

00

×

×

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

Factory set

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

4

 

4

4

 

4

 

×

×

 

 

 

4

 

4

4

 

4

 

×

×

 

 

 

1,590

 

1,590

1,590

 

1,590

 

 

 

1,590

 

1,590

1,590

 

1,590

 

 

 

100.

 

100.

100.

 

100.

 

 

 

100.

 

100.

100.

 

100.

 

 

 

100.

 

100.

100.

 

100.

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

Depending on

 

 

×

×

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

motor capacity

 

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

 

 

 

 

 

 

 

 

 

×

×

 

 

 

100.0

100.0

100.0

 

100.0

 

 

 

100.0

100.0

100.0

 

100.0

 

 

 

100.0

100.0

100.0

 

100.0

 

 

 

100.0

100.0

100.0

 

100.0

 

 

 

1.00

1.00

1.00

 

1.00

 

 

 

1.00

1.00

1.00

 

1.00

 

 

 

100.

100.

100.

 

70.

*)

 

 

 

100.

100.

100.

 

70.

*)

 

 

 

50.

50.

50.

 

50.

*)

 

 

 

50.

50.

50.

 

50.

*)

 

 

 

100.0

100.0

100.0

 

100.0

 

 

 

100.0

100.0

100.0

 

100.0

 

 

 

1.00

1.00

1.00

 

1.00

 

 

 

100.

100.

100.

 

100.

 

 

 

*) Not available

18

Image 19
Contents For More Precise Control Frequency When inverter is one frame size larger than motorTorque Speed minFrequency Hz Meets EN61800-3 2nd-EnvironmentControl circuit terminals comparison table Basic mode Indication only Basic Parameter Chose BasicParameter Read write=650V, cable=100m EU RoHS compliant except solder in power modulePhase 200V class Standard SpecificationsPhase 400V class Rated capacity 400V Weight lbs900HFF IP00General Specifications SpecificationsInput terminals Unit mminch DimensionsInches for reference only ・SJ700-750, 900HFEF2, HFUF2, HFF2 ・SJ700B-900, 1100HFF Model DCL-H-185-H-R 305 DCL-H-220-H-R 395 315 SJ700-1850,2200HFE2Contents of a basic mode display.default Setting the output frequencyFunction List 50.0 10015.00 A296 A094A294 A095B031 B028B029 B030B134 OthersB132 B133C032 C030C031 C033C154 C149C151 C15025.0 100 Output268435455 Not available for SJ700B 1024 135.0Operator, Cable OperatorOperator Main Circuit Terminals TerminalsContact Terminal Symbol Specifications 11A Contacting Maximum RateAnalog Digital DigitalAnalog RunProtective Functions 〈How to access the details about the present fault〉〈Status Display〉 Source type logic Connecting DiagramOperatingTo Sink type logicConnection with Input Terminals Connecting to PLC75mm2 Wire75mm2 200V ShieldedOutput frequency Hz Torque CharactoristicSJ700 Series / Maximum Torque with Short Time Rating SJ700B Series / Maximum Torque with Short Time RatingRating% Derating DataSJ700/SJ700B Series / Torque Under Continous Operation Therating%You can mount the SJ300 series into the SJ700 series Those with compatibilityOption boards Basic display mode/Data comparison function additionExternal frequency filter time const OI-L input start frequency enableThose with compatibility Option boards D007Scaled output frequency monitoringMemo Mechanism Characteristic of the motorTemperature increase Application to MotorsLifetime of Primary Parts Main power supplyPrecaution for Correct Usage High-frequency Noise and Leakage Current
Related manuals
Manual 8 pages 42.41 Kb

SJ700B, SJ700 specifications

The Hitachi SJ700 and SJ700B series are renowned variable frequency drives (VFDs) that represent a significant advancement in motor control technology. Designed for industrial applications, these drives offer a versatile solution for managing motor speed, torque, and efficiency in a variety of settings.

One of the main features of the SJ700 and SJ700B series is their compact design. This allows for easy installation and integration into existing systems, which is crucial for minimizing downtime during upgrades or replacements. The drives support multiple mounting orientations, facilitating applications with space constraints.

Another standout characteristic is their advanced control algorithms. The SJ700 series uses vector control technology, which optimizes the performance of both AC and induction motors. This ensures high precision in speed and torque control, making it suitable for processes that require fine adjustments. The drives also feature automatic tuning capabilities, which allow for quick commissioning while minimizing the need for extensive parameter adjustments.

The SJ700 and SJ700B series are designed with energy efficiency in mind. They utilize advanced regenerative braking technology that recovers energy, reducing power consumption and improving overall system efficiency. Furthermore, these drives incorporate energy-saving features that optimize motor operation based on load requirements, contributing to a lower carbon footprint.

These drives come equipped with robust communication capabilities. They support various communication protocols such as Modbus, Profibus, and EtherCAT, making them easily integrable with modern automation systems. This flexibility allows for real-time monitoring and control, enhancing operational visibility and efficiency.

Reliability is another hallmark of the SJ700 series. Built with high-quality components, these drives exhibit excellent thermal management and protection against overvoltage, overload, and short circuits. The SJ700B variant boasts additional features such as enhanced fault diagnostics and improved environmental protection, making it suitable for more demanding applications.

In conclusion, the Hitachi SJ700 and SJ700B series variable frequency drives stand out in terms of compact design, advanced control technologies, energy efficiency, versatile communication options, and robust reliability. These features make them an ideal choice for a wide range of industrial applications, from manufacturing automation to HVAC systems, ensuring optimal performance and cost savings for users.