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 370 z 1090

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Poznámky redaktora
(Detection current: 10mA.) Conditions Conditions for operation, transport and storage”2 Ambient temperature: -550C +650C 670F +1490F Humidity: 85% R.7mA 720Q 720Q 200mW 200mW Approx.) Temperature rise (at 200C 68°F) Max.7mA 33. 980 m/s2(Half-wave pulse sine wave: ms.) Between contact sets 1,000 Vrms for 1min. . switching capacity (Reference value)”1 100pA 100 DC Electrical characteristics Insulation resistance (Initial) Min.4mA 8. 3pV Rating Nominal switching capacity (resistive load) 250 AC, DC Max.0V DC 24V 8. (Detection current: 10mA. 10mH Approx. operating speed times/min.5mA 130Q 130Q 192mW 192mW Approx. 40mH 11. switching voltage 250 AC, (30 less than 0.7mA 66. *2 Refer “6. for maximum load, cps for low-level load DC) Unit weight Approx. 2x105(3 DC) (at times/min.5 A) Max.) Release time [Reset time] (at 200C 680F) Max. 350C (By resistive method, nominal voltage applied the coil; contact carrying current: 4A.7mA 45Q 45Q 200mW 200mW Approx.0V DC 6V 33.5mA 38.) Between contact and coil 1,500 Vrms for 1min.) Destructive Min. Breakdown voltage (Initial) Between open contacts 750 Vrms for 1min. 680mH 44. 490 m/s2(Half-wave pulse sine wave: ms; detection time: 10ps. 31mH Approx. 10mH 5.0V DC 48V 7. Max.) Operate time [Set time] (at 200C 680F) Max.7mA 180Q 180Q 200mW 200mW Approx. 170mH 22. 108(at cps) Electrical Min.) Vibration resistance Functional double amplitude (Detection time: 10ps. 40mH Approx.) (without diode) Mechanical characteristics Shock resistance Functional Min.5V DC 5V 38. 680mH Approx. allowable voltage (at 40°C 104°F) Set coil Reset coil Set coil Reset coil Set coil Reset coil Set coil Reset coil Standard 3V DC 70%V less of nominal voltage (Initial) 70%V less of nominal voltage (Initial) 66. 1,250mH Approx. 10,000MQ (at 500V DC) Measurement same location “Initial breakdown voltage” section. 168 61A07 270513D .4mA 2,850Q 2,850Q 202mW 202mW Approx.0V DC 2.4mA 7. 31mH 9. (Detection current: 10mA. (By voltage drop 1A) Electrostatic capacitance (initial) Approx. 170mH Approx. Specifications Characteristics Item Specifications Contact Arrangement Form Form Form Form Form A Initial contact resistance, max.7mA 16.H.4mA 6,500Q 6,500Q 355mW 355mW Approx. 105(4 250 AC), Min. 3pF Contact material clad alloy (Cd free) Thermal electromotive force (at nominal coil voltage) (initial) Approx. switching power (resistive load) 1,000 VA, W Max. [15 ms] (Nominal voltage applied the coil, excluding contact bounce time.) Destructive double amplitude mm Expected life Mechanical Min.0V DC 12V 16. switching current (AC), (DC) Minimum operating power 100 (Single side stable, latching) Nominal operating power 200 (Single side stable, latching) Min. [15 ms] (Nominal voltage applied the coil, excluding contact bounce time. 1,250mH 65.28 oz *1 This value can change due the switching frequency, environmental conditions, and desired reliability level, therefore recommended check this with the actual load.S 3 g Type Nominal coil voltage Set voltage (at 20oC 68°F) Reset voltage (at 20oC 68oF) Nominal operating current [±10%] (at 20oC 68°F) Coil resistance [±10%] (at 20°C 68°F) Nominal operating power (at 20°C 68°F) Coil inductance Max. (Not freezing and condensing low temperature) Max. Usage, Storage and Transport Conditions” AMBIENT ENVIRONMENT (page 626)