Omron Retroreflective Photoelectric Sensor, Block Sensor, 500 mm Detection Range

Nº de Estoque RS: 458-569Marca: OmronPart Number: E3ZMB86
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Documentos Técnicos

Especificações

Brand

Omron

Sensor Style

Block

Detection Type

Retroreflective

Detection Range

500 mm

Output Type

PNP

Switching Mode

Light / Dark switching

Electrical Connection

M8 4 Pin Connector

Maximum dc Voltage

30V

Light Source

Red LED

IP Rating

IP67/IP69K

Maximum Current

100 mA

Response Time

1 ms

Housing Material

Stainless Steel

Maximum Operating Temperature

+60°C

Series

E3ZM

Minimum Operating Temperature

-40°C

País de Origem

China

Detalhes do produto

E3ZM-B Retro-Reflective Sensor

The new-generation E3ZM-B sensors provide dependable and stable detection of PET (polypolyethylene terephthalate) bottles which are becoming more transparent and are formed in increasingly diverse shapes.

Informações de estoque temporariamente indisponíveis.

R$ 4.303,55

R$ 4.303,55 Each (Sem VAT)

Omron Retroreflective Photoelectric Sensor, Block Sensor, 500 mm Detection Range

R$ 4.303,55

R$ 4.303,55 Each (Sem VAT)

Omron Retroreflective Photoelectric Sensor, Block Sensor, 500 mm Detection Range
Informações de estoque temporariamente indisponíveis.

Informações de estoque temporariamente indisponíveis.

Verifique novamente mais tarde.

Documentos Técnicos

Especificações

Brand

Omron

Sensor Style

Block

Detection Type

Retroreflective

Detection Range

500 mm

Output Type

PNP

Switching Mode

Light / Dark switching

Electrical Connection

M8 4 Pin Connector

Maximum dc Voltage

30V

Light Source

Red LED

IP Rating

IP67/IP69K

Maximum Current

100 mA

Response Time

1 ms

Housing Material

Stainless Steel

Maximum Operating Temperature

+60°C

Series

E3ZM

Minimum Operating Temperature

-40°C

País de Origem

China

Detalhes do produto

E3ZM-B Retro-Reflective Sensor

The new-generation E3ZM-B sensors provide dependable and stable detection of PET (polypolyethylene terephthalate) bottles which are becoming more transparent and are formed in increasingly diverse shapes.