RELAYS Panasonic

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Panasonic is part of a large worldwide groupselling relays and associated switching products under different brand names in different territories.The conditions of use in some territories may differ from those customary in Europe. In particular there are often major differences in regard to national and international specifications, such as UL, CSA, VDE, SEV, EVE, SEMKO, etc. Thus, when considering contact loads as stated in this catalogue (e.g. 10 A, 30 VDC for the SP relay) its hould be understood that these values are not necessarily an absolute maximum but tested ratings. Mostly the stated value has been tested for a certain life expectancy as stated by the manufacturer or the respective test house. Thus, under different conditions, the stated “maximum” may, in practice, be safely exceeded.

Vydal: Panasonic Electric Works Czech s.r.o. Autor: Panasonic

Strana 58 z 1090

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Max. 10ms (at 20°C 68°F, excluding contact bounce time) (Initial) Mechanical characteristics Shock resistance Functional Min.5G} (Detection time: 10|as) Destructive 10 500 Hz, Min. .: Typ 10mQ (By voltage drop 1A) Contact material alloy (Cadmium free) Rating Nominal switching capacity (resistive load) N.5G}, Time vibration for each direction; direction: hours, direction: hours Expected life Mechanical Min.C. 100 (at 500V DC, Measurement same location “Breakdown voltage” section. Contact carrying current: 0A, 10A, 20A Ambient temperature: 85°C 185°F 2. *2.: for hour, for minutes 20°C 68°F 20 for hour, for minutes 85°C 185°F Nominal operating power 800 mW Min. 105(at Inrush 25A, Steady DC), Min.O. Depends connection conditions.5s OFF) Conditions Conditions for operation, transport and storage*2 Ambient temperature: -40°C +85°C -40°F +185°F, Humidity: R. This value can change due the switching frequency, environmental conditions, and desired reliability level, therefore recommended check this with the actual load.H. The upper operation ambient temperature limit the maximum temperature that can satisfy the coil temperature rise value. recommend that you confirm operation under actual conditions. 107(at 120 cpm) Electrical <Resistive load> Min. (Detection current: 10mA) Between contacts and coil 500 Vrms for min. side: Min.: 14V DC Max. carrying current (14V DC)*3 N. side: Min. Therefore, please inquire when using with circuit that causes energized condition both sides simultaneously.28 oz, Form type: approx.14 oz Notes: *1. 100 m/s2{10G} (Half-wave pulse sine wave: 11ms; detection time: 10|as) Destructive Min. 85% R. Also, this does not guarantee repeated switching. 105 (at nominal switching capacity, operating frequency: ON, OFF) <Motor load> N. 105(at 25A motor lock condition) N. Please inquire you will using the relay high temperature atmosphere (110°C 230°F).1 m/s2{4. itching capability (Resistive load, initial) ds 61205 ct: 010113J 57 Automotive . 10ms (at 20°C 68°F, excluding contact bounce time) (Initial) Release time (at nominal voltage) Max. 1,000 m/s2{100G} (Half-wave pulse sine wave: 6ms) Vibration resistance Functional 100 Hz, Min. Contact carrying current: 0A, 10A, 20A Ambient temperature: Room temperature 1-(2).(ACT) 2. (Not freezing and condensing low temperature) Max. Coil tem perature rise (at room tem perature) Sample: ACT212, 3pcs.C. (Detection current: 10mA) Operate time (at nominal voltage) Max. switching capacity (resistive load)*1 14V DC Electrical characteristics Insulation resistance (Initial) Min.: Typ 7mQ, N. Coil tem perature rise (at 85°C 185°F) Sample: ACT212, 3pcs.) Breakdown voltage (Initial) Between open contacts 500 Vrms for min.C.H.: 14V DC, N.O. .1 m/s2{4. 105 (at brake current 20A DC) (operating frequency: 0. operating speed cpm (at nominal switching capacity) Mass Twin type: approx. Specifications Characteristics Item Specifications Contact Arrangement Form Form C Contact resistance (Initial) N. *3.O. * the relay used continuously for long periods time with coils both sides energized condition, breakdown might occur due abnormal heating depending on the carrying condition. 44.5s ON, 9. Refer “Usage ambient condition“ on page 178.O. REFERENCE DATA 1-(1). 44