Compact size 2 Form A and 2 Form A 1 Form B 35A power relays for energy management and industrial equipment. Conditions. Mirror contact mechanisms
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- Jeffrey Robinson
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1 Compact size and 3A power relays for energy management and industrial equipment HE-S RELAYS New TYPICAL APPLICATIONS Photovoltaic power generation systems (Solar inverter) Uninterruptible Power Supplies (UPS) Inverter Office air conditioner Industrial equipment RoHS compliant Protective construction: Flux-resistant type FEATURES. High-capacity and long life 3A 277V AC 0 (long life type) 2. Electrical life (resistive load) 3A 277V AC 30A 220V AC 20A 277V AC Compact size and low operating power W: 30 L: 36 H: 0 mm W:.8 L:.7 H:.7 inch Operating power:,880 mw (holding power: 70 mw). Reduced coil holding voltage contributes to saving energy of equipment The coil holding voltage can be reduced up to 30%V of the nominal coil voltage. This equals to operating power of approximately 70 mw, which contributes equipment energy savings. * Coil holding voltage is the coil voltage after 00 ms from the applied nominal coil voltage.. Contact gap: 3.2 mm.26 inch (VDE026 compliant) Compliant with European photovoltaic standard VDE026 Compliant with EN kv surge breakdown voltage (between s) 6. Insulation distance (initial) Between and coil: Min..0 mm.33 inch (Clearance/Creepage) Between and coil: Min. 3.2 mm.26 inch (Clearance/Creepage) Between sets: Min. 8.2 mm.323 inch (Clearance/Creepage) Between and : Min. 2.8 mm.0 inch (Clearance/Creepage) 7. Contact gap (initial) : Min. 3.2 mm.26 inch/each : Min. 0.7 mm.028 inch Min. 0. mm.020 inch (When welded) 8. Mirror mechanisms (Compliant with EN mirror ) Detection of main welding makes it possible to construct a safety circuit. Designed so that and will not close at the same time. When welded, gap of at least 0. mm.020 inch is maintained. *, when used to monitor the condition of, can be used exclusively as an auxiliary. Conditions Mirror mechanisms When Normal operation welded Non-excitation Excitation Non-excitation Welding Min. 0. mm Min..020 inch ASCTB360E 2060-T
2 ORDERING INFORMATION Contact arrangement / Operating function 3: Single side stable type : Single side stable type Contact specifications : 2: Terminals form 9: PC board terminal type Nominal coil voltage (DC) Part No. Nominal coil voltage (V) Note: Certified by UL/C-UL and VDE AHES 9 9 TYPES Contact arrangement Nominal coil voltage Part No. 6V DC AHES390 AHES3290 9V DC AHES39 AHES329 2V DC AHES39 AHES329 2V DC AHES392 AHES3292 8V DC AHES393 AHES3293 6V DC AHES90 AHES290 9V DC AHES9 AHES29 2V DC AHES9 AHES29 2V DC AHES92 AHES292 8V DC AHES93 AHES293 Standard packing: Carton: 2 pcs.; Case: 00 pcs. RATING. Coil data Nominal coil voltage Pick-up voltage (at 20 C 68 F) (Initial) Drop-out voltage (at 20 C 68 F) (Initial) Nominal operating current [±0%] (at 20 C 68 F) Notes: *. With 30%V coil holding voltage *2. With no more than 2 hours per time with non-consecutive voltage application time. Coil resistance [±0%] (at 20 C 68 F) 6V DC 33mA 9.Ω 9V DC 209mA 3.Ω 2V DC 7%V or less of %V or more of nominal voltage nominal voltage 7mA 76.6Ω 2V DC 78mA 306.Ω 8V DC 39mA,22.Ω Nominal operating power (at 20 C 68 F) ON:,880mW Holding: 70mW* Max. applied voltage (at C 3 F) 0%V of nominal coil voltage 0%V of nominal coil voltage* 2 2 ASCTB360E 2060-T
3 2. Specifications Characteristics Item Specifications Arrangement,, Contact Rating Electrical characteristics Mechanical characteristics Expected life Contact resistance (Initial) Max. 00mΩ (By voltage drop 6V DC A), Max. 3mΩ (By voltage drop 6V DC 20A, Reference value) Contact material AgSnO2 type Contact resistance (Initial) Max. 00mΩ (By voltage drop 6V DC A) * 6 Contact material Au flashed AgNi type * 6 Nominal operating power Nominal switching capacity Max. switching voltage Contact carring power Max. switching current Min. switching capacity (Reference value)* Nominal switching capacity Max. switching voltage Contact carring power Max. switching current Min. switching capacity (Reference value)* Insulation resistance (Initial) Short current (A, Initial) Between open s Between and coil Breakdown Between sets voltage Between open s (Initial) Between and coil Between and Surge breakdown voltage* 2 (Between and coil) Coil holding voltage* 3 Operate time (at 20 C 68 F) (Initial) Release time (at 20 C 68 F)* (Initial) Shock Functional resistance Destructive Vibration Functional resistance Destructive Mechanical Electrical ( ) Electrical ( )* 6 Resistive load Inductive load Resistive load 3A 277V AC 80V AC, 0V DC Notes: *. This value can change due to the switching frequency, environmental conditions, and desired reliability level, therefore it is recommended to check this with the actual load. *2. Wave is standard shock voltage of ±.2 0μs according to JEC *3. Coil holding voltage is the coil voltage after 00 ms from the applied nominal coil voltage. *. Release time will lengthen if a diode, etc., is connected in parallel to the coil. Be sure to verify operation under actual conditions. *. The upper operation ambient temperature limit is the maximum temperature that can satisfy the coil temperature rise value. Refer to Usage, transport and storage conditions in NOTES. *6. Regarding, only the type applies. 9,69VA 3A 00mA V DC A 277V AC, A 30V DC 277V AC, 30V DC 277VA A 0mA V DC,880mW (after applying min.00ms coil nominal voltage) 70mW (30%V of coil holding voltage) Min.,000MΩ (at 00 V DC) Measurement at same location as Breakdown voltage section. Max.,000A ms, 3 times (Reference value) 2,000 Vrms for min. (Detection current: 0mA),000 Vrms for min. (Detection current: 0mA),000 Vrms for min. (Detection current: 0mA),000 Vrms for min. (Detection current: 0mA) 2,000 Vrms for min. (Detection current: 0mA),000 Vrms for min. (Detection current: 0mA) 0,000V (Between and coil) (Initial) 2,00V (Between and coil) (Initial) 30 to 0%V ( carrying current: 3A, at 0 to + C 0 to +3 F) 30 to 60%V ( carrying current: 3A, at 0 to +8 C 0 to +8 F) Max. 30 ms (at nominal coil voltage, excluding bounce time) Max. 0 ms (at nominal coil voltage, excluding bounce time, without diode) 98 m/s 2 (Half-wave pulse of sine wave: ms; detection time: 0 μs) 980 m/s 2 (Half-wave pulse of sine wave: 6 ms) 0 to Hz at double amplitude of.0 mm.039 inch (Detection time: 0 μs) 0 to Hz at double amplitude of. mm.09 inch Min. 0 6 (at 80 times/min.) Min. 3 0 (3A 277V AC) (ON : OFF = s : 9s) Min. 0 (3A 277V AC) (ON : OFF = s : 9s) Min. (30A 220V AC) (ON : OFF = s : 9s) Min. (20A 277V AC) (ON : OFF = s : 9s) Min. 2 (20A 277V AC) (ON : OFF = s : 9s) Min. 3 0 (3A 20V AC) (cosφ = 0.8) (ON : OFF = 0.s : 0s) Min. (A 277V AC) (ON : OFF = s : 9s) Min. (A 30V DC) (ON : OFF = s : 9s) Min. 0 (3A 20V AC) (cosφ = 0.8) (ON : OFF = 0.s : 0s) Conditions Conditions for operation, transport and storage* Temperature: 0 to +8 C 0 to +8 F (Coil holding voltage 30 to 60%V or storage) Humidity: to 8% R.H. (Not freezing and condensing at low temperature) Temperature: 0 to + C 0 to +3 F (Coil holding voltage 30 to 0%V) Air pressure: 86 to 06 kpa Unit weight Approx. 6 g 2.26 oz 3 ASCTB360E 2060-T
4 REFERENCE DATA. Maximum switching power 2. Life curve 3. Coil temperature rise Measured portion: Inside the coil Ambient temperature: 2 C 77 F, Contact current: 3 A/0 A Contact current, A DC resistive load AC resistive load ,000 Contact voltage, V No. of operations, 0, C 77 F 3A V AC resistive 0 0 3A C 77 F 0A 0 0A Contact current, A Coil applied voltage, %V Temperature rise, C F. Ambient temperature characteristics Tested sample: AHES39, 6 pcs. 30 Rate of change, % Pick-up voltage Drop-out voltage -30 Ambient temperature, C F DIMENSIONS (mm inch). type CAD Data The CAD data of the products with a CAD Data mark can be downloaded from: Schematic (Bottom view) 0.0 (38.0).7 (.96) dia dia Recommended PC board pattern (Bottom view) dia dia R0.8 R General tolerance: ±0.3 ± Tolerance: ±0. ±.00 ASCTB360E 2060-T
5 2. type CAD Data Schematic (Bottom view) (38.0).7 (.96) Recommended PC board pattern (Bottom view) dia dia dia dia dia dia General tolerance: ±0.3 ±.02 R0.8 R Tolerance: ±0. ±.00 SAFETY STANDARDS (AHES 9 ) Item Certification File No. UL/C-UL (Recognized) E39 N.O. ( ) N.C. ( ) Contact rating Temp. Cycles Contact rating Temp. Cycles 3A, 277VAC, Resistive 20A, 277VAC, Resistive A, 80VAC, Resistive TV-8 0 C 0 F A, 30VDC, Resistive A, 277VAC, Resistive AC-7a: 3A, 20VAC, cosφ = VDE 0022 AC-3: 2A, 230VAC, cosφ = (Certified) AC-3: 8A, 80VAC, cosφ = DC-3: A, 2VDC, L/R = 8ms 8 0 (AHES 29 ) Item Certification File No. UL/C-UL (Recognized) E39 N.O. ( ) N.C. ( ) Contact rating Temp. Cycles Contact rating Temp. Cycles 3A, 277VAC, Resistive 20A, 277VAC, Resistive A, 80VAC, Resistive TV-0 0 C 0 F A, 30VDC, Resistive A, 277VAC, Resistive AC-7a: 3A, 20VAC, cosφ = VDE 0022 AC-3: 2A, 230VAC, cosφ = (Certified) AC-3: 8A, 80VAC, cosφ = DC-3: A, 2VDC, L/R = 8ms 8 0 EN/IEC VDE Certified INSULATION CHARACTERISTIC (IEC680-) Item Clearance/Creepage distance (IEC680-) Category of protection (IEC680-) Characteristic ( ) Min..mm.27inch/8.0mm.3inch Tracking resistance (IEC602) PTI 7 Insulation material group Over voltage category Rated voltage Pollution degree 3 Type of insulation (Between and coil) Type of insulation (Between open s) RT II III a III 20V Reinforced insulation Full disconnection ASCTB360E 2060-T
6 NOTES. For cautions for use, please refer to our web site. ( 2. When coil holding voltage controlled by PWM, check coil holding voltage and operation of relay under the actual condition. 3. Usage, transport and storage conditions ) Temperature: 0 to + C 0 to +3 F (When applied coil holding voltage is 30% to 0%V of nominal coil voltage) 0 to +8 C 0 to +8 F (When applied coil holding voltage is 30% to 60%V of nominal coil voltage or storage) 2) Humidity: to 8% RH (Not freezing and condensing at low temperature) In addition the humidity range depends on temperature. The allowable ranges are as follows; 3) Air pressure: 86 to 06 kpa Allowable range of temperature and humidity for operation, transport and storage. [Coil holding voltage: 30% to 0%V] [Coil holding voltage: 30% to 60%V] Humidity, %RH Humidity, %RH 8 Tolerance range (Avoid freezing (Avoid when used at condensation temperatures when used at lower than temperatures 0 C 32 F) higher than 0 C 32 F) Temperature, C F 8 (Avoid freezing when used at temperatures lower than 0 C 32 F) Tolerance range (Avoid condensation when used at temperatures higher than 0 C 32 F) Temperature, C F. Solder and cleaning conditions ) Please obey the following conditions when soldering automatically. () Pre-heating: within 20 C 28 F (solder surface terminal portion) and within 20 seconds (2) Soldering iron: 260 C± C 00 F± F (solder temperature) and within 0 seconds (soldering time) 2) In case of manual soldering, following conditions should be observed. Max. 270 C 8 F (solder temperature) within 0 seconds (soldering time) Max. 30 C 662 F (solder temperature) within seconds (soldering time) * Effects of soldering heat on the relays vary depending on the PC board. So please confirm actual soldering condition with the PC board used for assembling. 3) Do not clean this relay by immersion, since the relay is not sealed. Also, be careful not to allow flux to overflow above the PC board or enter the inside of the relay. 6 ASCTB360E 2060-T
7
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