4 mm height! 2 A high capacity 1 Form C type ultra thin, super miniature relay

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1 4 mm height! A high capacity Form C type ultra thin, super miniature relay TK RELAYS TK FEATURES. Compact and flat type.6(l) 9.(W) 4.(H).47(L).4(W).7(H). High contact capacity: A. Outstanding surge resistance Surge breakdown between contact and coil:, V μsec. (Telcordia) Surge breakdown between open contacts:, V 6 μsec. (FCC part 68) ORDERING INFORMATI 4. Initial breakdown :, Vrms for min. (Between contact and coil). : High sensitivity of 4mW (Single side stable type) By using the highly efficient polar magnetic circuit seesaw balance mechanism, a nominal operating of 4 mw (minimum operating of 79 mw) has been achieved. 6. Outstanding vibration and shock resistance Functional shock resistance: 7 m/s Destructive shock resistance:, m/s Functional vibration resistance: to Hz (at double amplitude of. mm. inch) Destructive vibration resistance: to Hz (at double amplitude of mm.97 inch) 7. The use of gold-clad twin crossbar contacts ensures high contact reliability. *We also offer a range of products with AgPd contacts suitable for use in low level load analog circuits ( V DC ma). *SX relays designed for low level loads are also available. 8. Self-clinching terminal also available 9. Pre-soldering terminal. Sealed construction allows automatic washing. TYPICAL APPLICATIS. Computer peripherals. Telephone devices and telecommunications equipment. Crime and disaster prevention equipment 4. Machine tools Contact arrangement : Form C Operating function Nil: Single side stable L: coil latching L: coil latching Terminal shape Nil: Standard PC board terminal H: Self-clinching terminal (DC).,, 4.,, 6, 9,, 4V TK Note: In case of V drive circuit, it is recommended to use 4. V type relay. ds_68 en_tk: 9J

2 TK TYPES ) Standard PC board terminal Contact arrangement Form C Standard packing: Tube: pcs.; Case:, pcs. Single side stable coil latching coil latching Part No. Part No. Part No..V DC TK-.V TK-L-.V TK-L-.V V DC TK-V TK-L-V TK-L-V 4.V DC TK-4.V TK-L-4.V TK-L-4.V V DC TK-V TK-L-V TK-L-V 6V DC TK-6V TK-L-6V TK-L-6V 9V DC TK-9V TK-L-9V TK-L-9V V DC TK-V TK-L-V TK-L-V 4V DC TK-4V TK-L-4V TK-L-4V ) Self-clinching terminal Contact arrangement Form C Standard packing: Tube: pcs.; Case:, pcs. Single side stable coil latching coil latching Part No. Part No. Part No..V DC TK-H-.V TK-L-H-.V TK-L-H-.V V DC TK-H-V TK-L-H-V TK-L-H-V 4.V DC TK-H-4.V TK-L-H-4.V TK-L-H-4.V V DC TK-H-V TK-L-H-V TK-L-H-V 6V DC TK-H-6V TK-L-H-6V TK-L-H-6V 9V DC TK-H-9V TK-L-H-9V TK-L-H-9V V DC TK-H-V TK-L-H-V TK-L-H-V 4V DC TK-H-4V TK-L-H-4V TK-L-H-4V RATING. Coil data ) Single side stable.v DC ) coil latching Pick-up (at C 68 F) *Pulse drive (JIS C ) Drop-out (at C 68 F) current [±%] (at C 68 F) 9.8mA Coil resistance [±%] (at C 68 F) V DC 46.7mA 64.Ω 4.V DC ma 4Ω V DC 6V DC 9V DC 7%V or less of nominal * %V or more of nominal * 8.mA.mA.mA 78Ω 7Ω 79Ω V DC.7mA,8Ω 6Ω 4mW 4V DC.mA,Ω 7mW.V DC Set (at C 68 F) Reset (at C 68 F) current [±%] (at C 68 F) Coil resistance [±%] (at C 68 F) 66.7mA.Ω V DC.mA 9Ω 4.V DC.mA.Ω V DC 6V DC 9V DC 7%V or less of nominal * 7%V or less of nominal * ma 6.7mA.mA Ω 6Ω 8Ω V DC 8.mA,44Ω mw 4V DC 6.mA,84Ω mw applied (at C 68 F) %V of nominal %V of nominal applied (at C 68 F) %V of nominal %V of nominal ds_68 en_tk: 9J

3 ) coil latching.v DC Set (at C 68 F) *Pulse drive (JIS C ) Reset (at C 68 F) current [±%] (at C 68 F) Coil resistance [±%] (at C 68 F) Set coil Reset coil Set coil Reset coil Set coil Reset coil.9ma.9ma.ω.ω V DC 66.7mA 66.7mA 4Ω 4Ω 4.V DC 44.mA 44.mA.Ω.Ω mw mw V DC 4mA 4mA Ω Ω 7%V or less of 7%V or less of 6V DC nominal * nominal *.ma.ma 8Ω 8Ω 9V DC.mA.mA 4Ω 4Ω V DC.8mA.8mA 76Ω 76Ω mw mw 4V DC 6.7mA 6.7mA,44Ω,44Ω 4mW 4mW TK applied (at C 68 F) %V of nominal %V of nominal %V of nominal. Specifications Characteristics Item Specifications Contact Rating Electrical characteristics Mechanical characteristics Expected life Conditions Unit weight Arrangement Form C Initial contact resistance, max. mω (By drop 6 V DC A) Contact material Ag+Au clad Nominal switching capacity switching switching switching current switching capacity (Reference value)* Insulation resistance Breakdown Surge breakdown Temperature rise (at C 68 F) A V DC (resistive load) 6 W (DC) (resistive load) V DC A μa mv DC Single side stable 4 mw (. to V DC), 7 mw (4 V DC) coil latching mw (. to V DC), mw (4 V DC) coil latching mw (. to 9 V DC), mw ( V DC), 4 mw (4 V DC) Between open contacts Between contact and coil Operate time [Set time] (at C 68 F) Release time [Reset time] (at C 68 F) Shock resistance Vibration resistance Mechanical Electrical,MΩ (at V DC) Measurement at same location as Initial breakdown section. 7 Vrms for min. (Detection current: ma), Vrms for min. (Detection current: ma) Between open contacts, V ( 6μs) (FCC Part 68) Between contacts and coil, V ( μs) (Telcordia) Functional Destructive C (By resistive method, nominal coil applied to the coil; contact carrying current: A.) ms [ ms] ( applied to the coil, excluding contact bounce time.) ms [ ms] ( applied to the coil, excluding contact bounce time.) (without diode) 7 m/s (Half-wave pulse of sine wave: 6 ms; detection time: μs.), m/s (Half-wave pulse of sine wave: 6 ms.) Functional to Hz at double amplitude of. mm (Detection time: μs.) Destructive to Hz at double amplitude of mm 8 (Single side stable), 7 ( or coil latching) (at 8 cpm) ( A V DC resistive) (at cpm) Ambient temperature: 4 C to 8 C 4 F to 8 F* Conditions for operation, transport and storage* ; Humidity: to 8% R.H. (Not freezing and condensing at low temperature) operating speed (at rated load) cpm Approx. g. oz. 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. (SX relays are available for low level load switching [V DC, ma max. level]) * Refer to 6. Conditions for operation, transport and storage mentioned in AMBIENT ENVIRMENT (p. 9, Relay Technical Information). * The maximum ambient temperature allows for coil temperature rise at maximum allowable coil. As for the applicable range of continuous carrying current against temperature, please refer to Maximum value of continuous carrying current chart. (Page 4) ds_68 en_tk: 9J

4 TK REFERENCE DATA. Maximum value of continuous carrying current Test conditions: Coil applied : % of rated Continuous carrying current:, hours. Maximum switching capacity. Life curve Continuous carrying current, A Switching current, A DC load No. of operations, 4 V DC resistive Ambient temperature, C Switching, V Switching current, A 4. Mechanical life Tested sample: TK-V, 8 pcs. Switching frequency: Hz. Electrical life (DC load) Tested sample: TK-V, pcs. Condition: A V DC resistive load, cpm Change of pick-up and drop-out Change of contact resistance Ratio against the rated, %V Pick-up Drop-out Ratio against the rated, %V Pick-up Drop-out Contact resistance, mω ,, No. of operations, 4 No. of operations, 4 No. of operations, 4 6.-() Coil temperature rise Tested sample: TK-V, 6 pcs. Measured portion: Inside the coil Ambient temperature: C 77 F 6.-() Coil temperature rise Tested sample: TK-V, 6 pcs. Measured portion: Inside the coil Ambient temperature: 7 C 8 F Temperature rise, C 6 4 Room temperature A A A Temperature rise, C C A A A Coil applied, %V Coil applied, %V 7.-() Operate/release time characteristics Tested sample: TK- V, pcs. <Without diode> Operate/release time, ms 4 Operate time Release time 8 9 Coil applied, %V 7.-() Operate/release time characteristics Tested sample: TK- V, pcs. <With diode> Operate/release time, ms 4 Release time Operate time 8 9 Coil applied, %V 8. Ambient temperature characteristics Tested sample: TK-V, pcs. Variation ratio, % 4 Drop-out x x Pick-up Ambient temperature, C 4 4 ds_68 en_tk: 9J

5 9.-() High-frequency characteristics (Isolation) 9.-() High-frequency characteristics (Insertion loss) TK. Malfunctional shock Tested sample: TK-V, 6 pcs. (single side stable); TK-L-V, 6 pcs. (latching) Isolation, db Frequency, MHz N.O. N.C., Insertion loss, db N.O. N.C., Frequency, MHz Y Y Z, Z X X, 98m/s Y, X 98m/s Z, 98m/s Y, 98m/s Deenergized condition (Reset state) Energized condition (Set state) Z 98m/s 98m/s X,.-() Influence of adjacent mounting.-() Influence of adjacent mounting Rate of change, % Rate of change, % Pick-up Drop-out.97 Inter-relay distance, mm inch Rate of change, % Rate of change, % Pick-up Drop-out.97 Inter-relay distance, mm inch. Actual load test ( ma 48 V DC wire spring relay load) Change of pick-up and drop-out Change of contact resistance Circuit 48 Ω +.8 μf.8 μf 48 V DC 4 48 Ω Wire spring relay Ratio against the rated, %V Pick-up Drop-out Contact resistance, mω N.C. N.O. 4 No. of operations, 4 4 No. of operations, 4 ds_68 en_tk: 9J

6 TK DIMENSIS (mm inch) External dimensions Standard PC board terminal PC board pattern (Bottom view) dia. holes 6-.9 dia. holes Tolerance: ±. ±.4 NOTES. Packing style The relay is packed in a tube with the relay orientation mark on the left side, as shown in the figure below. Orientation (indicates PIN No.) stripe Self-clinching terminal General tolerance: ±. ±. Schematic (Bottom view) Single side stable -coil latching Direction indication (Deenergized condition) Direction indication (Reset condition) -coil latching Direction indication (Reset condition) Stopper (green). Automatic insertion To maintain the internal function of the relay, the chucking pressure should not exceed the values below. Chucking pressure in the direction A: 9.8 N { kgf} or less Chucking pressure in the direction B: 9.4 N { kgf} or less Chucking pressure in the direction C: 9.8 N { kgf} or less mm inch A C (4) B Direction A Direction B Direction C () 6 4 (6) Please chuck the portion. Avoid chucking the center of the relay. In addition, excessive chucking pressure to the pinpoint of the relay should be avoided. For Cautions for Use, see Relay Technical Information. 6 ds_68 en_tk: 9J

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