HanŽ HC-Modular 350

Features

- Screw termination available for cable lug or rail
- Corrosion resistant
- Good EMC-features
- 6 different codings are possible
- Marking of the contacts with self-adhesive identification strips

 

Applications

- Plugable high current drives
- Electromagnetic brakes
- Potential compensating wires
- Battery charging

 

Technical Details

Specifications

DIN VDE 0110 table 4/table 2a for clearances and creepage-distances
DIN VDE 0627 Connectors and plug-and-socket devices
DIN EN 61984

 

Inserts

Number of contacts

1, 2, 3 oder 3 + PE

 

Electrical data
acc. to DIN EN 61 984

 

without adapter

350 A   2000 V   12 kV   3

 

Working current

350 A

 

Working voltage

2000 V

 

Rated impulse voltage

12 kV

 

Pollution degree

3

 

with adapter

350 A   4000 V   18 kV   3

 

 

 

 

Working current

350 A

 

Working voltage

4000 V

 

Rated impulse voltage

18 kV

 

Pollution degree

3

 

Insulation resistance

> 1010 Ω

Material

Polyamide

Limiting temperatures

- 40 °C / + 125 °C

Flammability
acc. to UL 94

 
V 0

Mechanical working life
- mating cycles

 
>
500

Contacts

Material

Copper alloy

Surface

Silver

Contact resistance

< 0,2 mΩ

Axial screw terminal

 

- wire gauge

35 - 70 mm˛ or

 

95 - 120 mm˛

- AWG

   1 -   00

 

000  0000-

- hexagonal wrench

SW 5

- tightning torque

mm˛

35

50

70

95

120

 

Nm

8

10

12

14

16

Screw terminal

 

- thread

M 10

- hexagonal wrench

Size 17

- tightning torque

14 Nm

Stripping length

19 +1 mm

Max. cable diameter

19,5 Nm

 

Frame

Tightening torque of the fixing screws

 
0,5 Nm

Tightening torque of the cross-tying screws on the frame for 4 poles

 

1,5 Nm

 

HPR Hoods and Housing

Material

Corrosion resistent
aluminium die cast

Surface

 

- priming

chromated

- top coat

Powder Paint
RAL 9005

Locking devices

V2A steel

Kind of locking HPR

Screw

Sealing

NBR

Temperature range

- 40 °C ... + 125 °C

Degree of protection
acc. to DIN 40 050
for coupled connector

 

IP 65

 

Current carrying capacity

The current carrying capacity is limited by maximum temperature of materials for insert and contacts including terminals. The current capacity-curve is valid for continuous, not interrupted current-loaded contacts of connectors when simultaneous power on all contacts is given, without exceeding the maximum temperature.
Control and test procedures according to DIN IEC 60512-5.

(1) = Wire gauge 50 mm˛
(2) = Wire gauge 70 mm˛
(3) = Wire gauge 95 mm˛
(4) = Wire gauge 120 mm˛

three contacts in HanŽ HPR 24 B housing

 

Assembly Details

  1. Strip cable to 19+1 mm

  2. Push conductors through the cable gland and the housing. Push the stripped end of the conductor into the connection entry of the module until the insulation touches the contact.

  3. To tighten the locking screw, a hexagonal wrench size 5 is needed. Insert the hexagonal wrench on the mating side of the contact. At the same time, push the conductor over the axial screw. The locking screw has to be tightened with the recommended tightning torque that is determined by the conductor's cross section (6-14 Nm).

  4. Once all modules are terminated, they are mounted into the housing by means of two metal frames. The modules have a hexagonal around it which mates with the metal frame. The heads of the fixing screws have to face the mating direction of the module. Due to the hexagonal slot, each module can be used in 6 different positions (turning every 60 degrees) to create a coding system. Therefore it is important that the corresponding modules are assembled in the correct position or mating is not possible.

  1. After the assembly of the modules in the housing, the tightning torque of the locking screw can be checked and corrected if necessary.

  2. After final assembly of the contacts, the user should ensure that the cable is adequately strain reliefed to protect the contact from radial stress.

  3. During the assembly of the frame for 4 poles the following tightening torques have to be taken into consideration

A = 0.5 Nm
B = 1.5 Nm
C = 0.25 Nm