Generator management system 369-HI-R-M-F-E-H-E

*12-48V DC power input, typical operating voltage 12V/24V/48V, using 3-core 7.62mm spacing standard industrial terminals

*No load power: 2.16W 24VDC

*Full load power: 2.88W 24VDC

*Built in overcurrent protection

Model: 369-HI-R-M-0-E-0-E

Category: SKU: GE 369-HI-R-M-0-E-0-E-1 Tag:
Whatsapp:+86 13313705507
WeChat:+86 13313705507
E-mail:geabbdcs@gmail.com
Contacts:KEN HE

Description

Generator management system 369-HI-R-M-F-E-H-E

Generator management system 369-HI-R-M-F-E-H-E

The 369 has a built-in switchmode supply. It can operate with either AC or DC voltage applied to it. The relay reboot time of the 369 is 2 seconds after the control power is applied. For applications where the control power for the 369 is available from the same AC source as that of the motor, it is recommended an uninterrupted power supply be used to power up the relay or, alternatively, use a separate DC source to power up.
Extensive filtering and transient protection has been incorporated into the 369 to ensure reliable operation in harsh industrial environments. Transient energy is removed from the relay and conducted to ground via the ground terminal. This terminal must be connected to the cubicle ground bus using a 10 AWG wire or a ground braid. Do not daisy-chain grounds with other relays or devices. Each should have its own connection to the ground bus.
The internal supply is protected via a 3.15 A slo-blo fuse that is accessible for replacement.If it must be replaced ensure that it is replaced with a fuse of equal size .
The phase CTs should be chosen such that the FLA of the motor being protected is no lessthan 50% of the rated CT primary. Ideally, to ensure maximum accuracy and resolution,the CTs should be chosen such that the FLA is 100% of CT primary or slightly less. Themaximum CT primary is 5000 A.
The 369 will measure 0.05 to 20 × CT primary rated current. The CTs chosen must becapable of driving the 369 burden (see specifications) during normal and fault conditionsto ensure correct operation. See Section 7.4: CT Specification and Selection on page –230 for information on calculating total burden and CT rating.
For the correct operation of many protective elements, the phase sequence and CT polarity is critical. Ensure that the convention illustrated in FIGURE 3–4: Typical Wiring for Motor Forward/Reversing Application on page 3–37 is followed.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

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