Number of poles 1-pole 2-pole Minimum Enclosure Contact G2R-1A-E G2R-1-E

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The Best Seller eneral purpose power elays of single-pole0 A and double-pole A. Safety-oriented design with dielectric strength of,000 V between coil and contacts, and surge resistance of 0,000 V. and DC types are both available for operational coils. ohs Compliant Model Number Legend -@-@@@@-@@ 6 7. elay Function None: Single-side stable K : Double-winding latching. Number of poles : -pole : -pole. Contact Form None: A :. Contact Type None: Single Z : Bifurcated contact. Enclosure rating None: Flux protection (T-type is an enclosed relay) : Fully sealed 6. Terminal Shape None: PCB terminals T : Quick-connect (upper bracket mounting #87) 7. Classification None: Standard E : High-capacity H : High-sensitivity U : For ultrasonically cleanable Z : Full-wave rectifier Model Configuration Terminal Shape PCB terminals Classification Standard Bifurcated contact Number of poles -pole -pole Minimum Enclosure Contact packing SPST- (a) SPDT (c) DPST- (a) DPDT (c) rating form unit Flux protection Fully sealed Note. Full-wave rectifier and supersonic cleaner compatible models are also available. efer to page..sockets for PCB terminal models are not provided. Use the plug-in terminal elay instead of socket if necessary. DC DC -A - -A - -A - -A - Flux protection -AZ -Z DC Fully sealed -AZ -Z High-capacity Flux protection DC -A-E --E High-sensitivity Flux protection DC -A-H --H -A-H --H Double-winding latching Flux protection DC K-A K- K-A K- Quick-connect Standard Unsealed DC -A-T --T 0 pcs/tray 00 pcs/tray

Ordering Information PCB Terminal Models Number of poles -pole -pole Classification Enclosure rating Contact form Model ated coil voltage Model ated coil voltage eneral-purpose High-sensitivity Double-winding latching Bifurcated contact High-capacity Flux protection Fully sealed Flux protection Flux protection Fully sealed Flux protection Note: When ordering, add the rated coil voltage to the model number. Example: -A V ated coil voltage -A - -A -,, 00/(0) V,, 00/(0) V 00/(0) V 00/(0) V -A, 6,,, 8, 6,,, 8 00 00,, 00/(0) V,, 00/(0) V 00/(0) V 00/(0) V -, 6,,, 8, 6,,, 8 00 00,, 00/(0) V,, 00/(0) V 00/(0) V 00/(0) V -A, 6,,, 8, 6,,, 8 00 00,, 00/(0) V,, 00/(0) V 00/(0) V 00/(0) V -, 6,,, 8, 6,,, 8 00 00 -A-H, 6,,, 8 -A-H, 6,,, 8 --H, 6,,, 8 --H, 6,,, 8 K-A, 6,, K-A,, K-, 6,, K-, 6,, -AZ -Z -AZ -Z -A-E --E,, 8 00, 6,,, 8 00,,, 8 00,,, 8 00,, 00/(0) V 00/(0) V, 6,,, 8 00,, 00/(0) V 00/(0) V, 6,,, 8 00

Quick-connect Terminal (#87) Number of poles -pole Classification Enclosure rating Contact form Model ated coil voltage,, 00/(0) V 00/(0) V -A-T, 6,,, 8 00 eneral-purpose Unsealed,, 00/(0) V 00/(0) V --T, 6,,, 8 00 Full-wave ectifier Number of poles -pole -pole Classification Enclosure rating Contact form Model ated coil voltage Model ated coil voltage -A-Z Flux protection --Z eneral-purpose -A-Z Fully sealed --Z -A-EZ High-capacity Flux protection --EZ,,, 6,,, 8 -A-Z 00 00,,, 8,, 8 --Z 00 00,, 8, 8 -A-Z 00 00,,, 8,, --Z 00 00,, 00,, 8 00 For Ultrasonically Cleanable Number of poles -pole -pole Classification Enclosure rating Contact form Model ated coil voltage Model ated coil voltage eneral-purpose Fully sealed Note: When ordering, add the rated coil voltage to the model number. Example: -A-T V ated coil voltage -A-U --U,, 00/(0) V 00/(0) V 00/(0) V -A-U, 6,,, 8,,, 00/(0) V 00/(0) V,, 00/(0) V 00/(0) V,,, 8 --U,,, 8 00 00

atings Coil Classification eneral-purpose Quick-connect Fully sealed High-capacity eneral-purpose High-capacity Bifurcated contact Quick-connect Fully sealed High-sensitivity Note. The rated current and coil resistance are measured at a coil temperature of C with a tolerance of+%/-0% ( rated current) or ±0% (DC coil resistance).. coil resistances shown above are only reference values..the operating characteristics are measured at a coil temperature of C..The Max. voltage is the maximum voltage that can be applied to the relay coil. Coil: Double-winding Latching elays Must operate Must release Item ated current (ma) Coil resistance voltage (V) voltage (V) (Ω) ated voltage 0 Hz 60 Hz % of rated voltage V 9 7 6 V 6. 7. 60 80% max. 0% min. 00/(0) V 9/(0.6),600 00/(0) V../(.) 0,00 06 7 6 88. 68.6 7.8,00 8.,70 00. 8,860 7. 70 6 60 00 0 00,600 8 7. 6,00 Item Set Coil eset coil ated voltage ated current (ma) Coil resistance (Ω) ated current (ma) Coil resistance (Ω) 67 0 9 6 8. 00 60 70.6 70 0 0.6 69 960 70% max. % min. 70% max. % min. Must set voltage (V) Note. The rated current and coil resistance are measured at a coil temperature of C with a tolerance of ±0%..The operating characteristics are measured at a coil temperature of C..The Max. voltage is the maximum voltage that can be applied to the relay coil. Must reset voltage (V) % of rated voltage 70% max. 70% max. Max. voltage (V) 0% (at C) Max. voltage (V) 0% (at C) 70% (at C) 70% (at C) Power consumption (VA, W) Approx. 0.9 (60 Hz) Approx. Approx. 6 Power consumption Set Coil (mw) Approx. 80 eset coil (mw) Approx. 600

Contacts Classification eneral-purpose High-capacity Bifurcated contact High-sensitivity Quick-connect Terminal (single-pole type) Number of poles -pole -pole -pole -pole -pole -pole Load esistive esistive esistive esistive esistive Item Contact type Single Single Bifurcated Single Contact material Ag-alloy (Cd free) ated 0 A at 0 V 0 A at 0 * This value was measured at a switching frequency of 0 operations/min. Contacts: Fully Sealed Models Inductive (cosφ = 0.; L/ = 7 ms) 7. A at 0 V A at 0 A at 0 V A at 0 Inductive (cosφ = 0.; L/ = 7 ms) A at 0 V A at 0 6 A at 0 V 6 A at 0 Inductive (cosφ = 0.; L/ = 7 ms) 8 A at 0 V 8 A at 0 A at 0 V A at 0 Inductive (cosφ = 0.; L/ = 7 ms) A at 0 V A at 0 A at 0 V A at 0 Inductive (cosφ = 0.; L/ = 7 ms) A at 0 V A at 0 esistive A at 0 V A at 0 Inductive (cosφ = 0.; L/ = 7 ms) ated carry current 0 A A 6 A A A A Max. switching voltage 80 V, 80 V, 80 V, Max. switching current 0 A A 6 A A A A Failure rate (P level) (reference value) * 00 ma at 0 ma at 00 ma at ma at 00 ma at 0 ma at A at 0 V. A at 0 Classification eneral-purpose (Single contact) Bifurcated contact Number of poles -pole -pole -pole esistive Inductive esistive Inductive esistive Inductive Load Item (cosφ = ) (cosφ = 0.; L/ = 7 ms) (cosφ = ) (cosφ = 0.; L/ = 7 ms) (cosφ = ) (cosφ = 0.; L/ = 7 ms) Contact type Single Single Bifurcated Contact material Ag-alloy (Cd free) ated 8 A at 0 V 8 A at 0 6 A at 0 V A at 0 * This value was measured at a switching frequency of 0 operations/min. A at 0 V A at 0. A at 0 V. A at 0 A at 0 V A at 0 ated carry current 8 A A A Max. switching voltage 80 V, 80 V, 80 V, Max. switching current 8 A A A Failure rate (P level) (reference value) * 00 ma at 0 ma at ma at A at 0 V A at 0 Contacts: Latching Models Number of poles -pole -pole esistive Inductive esistive Inductive Load Item (cosφ = ) (cosφ = 0.; L/ = 7 ms) (cosφ = ) (cosφ = 0.; L/ = 7 ms) Contact type Single Single Contact material Ag-alloy (Cd free) ated A at 0 V A at 0. A at 0 V. A at 0 * This value was measured at a switching frequency of 0 operations/min. A at 0 V A at 0 ated carry current A A Max. switching voltage 80 V, 80 V, Max. switching current A A Failure rate (P level) (reference value) * 00 ma at 0 ma at. A at 0 V A at 0

Characteristics Standard elays Item Number of poles -pole -pole Contact resistance * 0 mω max. * 0 mω max. Operate time * ms max. elease time * : 0 ms max.; DC: ms max. Max. Mechanical 8,000 operations/hr operating frequency Electrical,800 operations/hr Insulation resistance *,000 MΩ min. Between coil and contacts,000 V, 0/60 Hz for min Between contacts,000 V, 0/60 Hz Dielectric - of different polarity for min strength Between contacts of the same,000 V, 0/60 Hz for min polarity 0 to to 0 Hz, 0.7 mm single Destruction Vibration amplitude (. mm double amplitude) resistance 0 to to 0 Hz, 0.7 mm single Malfunction amplitude (. mm double amplitude) Destruction,000 m/s Shock resistance 00 m/s Malfunction when energized; 00m/s when no energized coil: 0,000,000 operations min.; Mechanical DC coil: 0,000,000 operations min. Durability (at 8,000 operations/hr) Electrical 00,000 operations min. (at,800 operations/hr under rated ) Ambient operating temperature -0 C to 70 C (with no icing) Ambient operating humidity % to 8% Weight Approx. 7 g (Approx. 0 g *) Note: The values here are initial values. *. Measurement conditions:, A, voltage-drop method. *. High-capacity type: 00 mω max. *. Measurement conditions: ated operating voltage applied, not including contact bounce. *. Measurement conditions: The insulation resistance was measured with a 00 megohmmeter at the same locations as the dielectric strength was measured. *. Value for quick-connect terminals. Engineering Data Double-winding Latching elays Item Number of poles -pole -pole Contact resistance * 0 mω max. 0 mω max. Set Time * 0 ms max. Min. set pulse width 0 ms Time * 0 ms max. eset Min. reset pulse width 0 ms Max. operating Mechanical 8,000 operations/hr frequency Electrical,800 operations/hr Insulation resistance *,000 MΩ min. (at 00 ) Between coil and contacts,000 V, 0/60 Hz for min Between contacts,000 V, of different polarity 0/60 Hz for min Dielectric Between contacts strength of the same,000 V, 0/60 Hz for min polarity Between set and reset coils,000 V, 0/60 Hz for min 0 to to 0 Hz, 0.7 mm single Destruction Vibration amplitude (. mm double amplitude) resistance 0 to to 0 Hz, 0.7 mm single Malfunction amplitude (. mm double amplitude) Shock resistance Destruction,000 m/s Malfunction Set: 00m/s Armature OFF eset: 00m/s Contact OFF Durability Mechanical 0,000,000 operations min (at 8,000 operations/hr) Electrical 00,000 operations min. (at,800 operations/hr under rated ) Ambient operating temperature -0 C to 70 C (with no icing or condensation) Ambient operating humidity % to 8% Weight Approx. 7 g Note: The values here are initial values. *. Measurement conditions:, A, voltage-drop method. *. Measurement conditions: ated operating voltage applied, not including contact bounce. *. Measurement conditions: The insulation resistance was measured with a 00 megohmmeter at the same locations as the dielectric strength was measured. Maximum Switching Capacity Flux Protection/Plug-in elays -, -A, --T, -A-T --E, -A-E -Z, -AZ 0 0 0. DC resistive DC inductive (L/ = 7 ms) resistive inductive (cosφ = 0.) 0 6 0 0. DC resistive DC inductive (L/ = 7 ms) resistive inductive (cosφ = 0.) 0 0 0. DC resistive DC inductive (L/ = 7 ms) resistive inductive (cosφ = 0.) 0. 0 0 0 0 0 00 00 0. 0 0 0 0 0 00 00 0. 0 0 0 0 0 00 00 --H, -A-H, -, -A --H, -A-H 0 0 resistive 0 0 resistive 0. DC resistive DC inductive (L/ = 7 ms) inductive (cosφ = 0.) 0. DC resistive inductive (cosφ = 0.) DC inductive (L/ = 7 ms) 0. 0 0 0 0 0 00 00 0. 0 0 0 0 0 00 00 6

K-A, K- K-A, K- 0 0 resistive 0 0 resistive 0. DC resistive DC inductive (L/ = 7 ms) inductive (cosφ = 0.) 0. DC resistive DC inductive (L/ = 7 ms) inductive (cosφ = 0.) 0. 0 0 0 0 0 00 00 0. 0 0 0 0 0 00 00 Fully Sealed elays -, -A -, -A -Z, -AZ 0 0 0. DC resistive DC inductive (L/ = 7 ms) resistive inductive (cosφ = 0.) 0 0 0. DC resistive DC inductive (L/ = 7 ms) resistive inductive (cosφ = 0.) 0 0 0. DC resistive DC inductive (L/ = 7 ms) resistive inductive (cosφ = 0.) 0. 0 0 0 0 0 00 00 00 0. 0 0 0 0 0 00 00 00 0. 0 0 0 0 0 00 00 00 Durability Flux Protection/Plug-in elays -, -A, --T, -A-T --E, -A-E -Z, -AZ Durability (x0 operations),000 00 00 00 0 0 0 V/0 resistive 0 V inductive (cosφ = 0.) Durability (x0 operations),000 00 00 00 0 0 0 V/0 resistive Durability (x0 operations),000 00 00 00 0 0 0 inductive (L/ = 7ms) 0 V/0 resistive 0 0 0 0 inductive (L/ = 7ms) 0 V inductive (cosφ = 0.) 0 inductive (L/ = 7ms) 0 V inductive (cosφ = 0.) 0 6 7. 8 0 --H, -A-H, -, -A Durability (x0 operations),000 00 00 00 0 0 0 inductive (L/ = 7ms) 0 V/0 resistive 0 6 8 0 6 8 --H, -A-H Durability (x0 operations),000 00 00 00 0 0 0 V/0 resistive 0 inductive (L/ = 7ms) 0 6 0 0 0 V inductive (cosφ = 0.) 0 V inductive (cosφ = 0.) 0 6 0. 7

K-A, K- Durability (x0 operations),000 00 00 00 0 0 0 V/0 resistive 0 V inductive (cosφ = 0.) K-A, K- Durability (x0 operations),000 00 00 00 0 0 0 V/0 resistive 0 inductive (L/ = 7ms) 0 V inductive (cosφ = 0.) 0 0 0 inductive (L/ = 7ms) 0.. 6 0.. Fully Sealed elays -, -A -, -A -Z, -AZ Durability (x0 operations),000 00 00 00 0 0 0 0 V/0 resistive 0 V inductive (cosφ = 0.) 0 inductive (L/ = 7ms) Durability (x0 operations),000 00 00 00 0 0 0 0 inductive (L/ = 7ms) 0 V inductive (cosφ = 0.) 0 V/0 resistive Durability (x0 operations),000 00 00 00 0 0 0 0 inductive (L/ = 7ms) 0 V inductive (cosφ = 0.) 0 V/0 resistive 0 6 8 0 Ambient Temperature vs. Maximum Coil Voltage Maximum coil voltage (%) 0 00 70 0 0 0 00 0 coil DC coil 0 0 0 0 0 60 70 80 90 00 0.. 6 Ambient Temperature vs. Must Operate and Must elease Voltage - Ambient temperature ( C) Ambient temperature ( C) Note: The maximum coil voltage refers to the maximum value in a varying range of operating power voltage, not a continuous voltage. Shock Malfunction - Number of elays: pcs - Number of elays: pcs Y SPST- (a),000 SPST-NC (c) 800 600 X 00 00 Z 00 00 600 800,000 Y' Unit: m/s Test Conditions: Shock is applied in ±X, ±Y, and ±Z directions three times each with and without Z' energizing the elays to check the number of contact malfunctions. equirement: 00 m/s when energized; 00m/s when de-energized X' Shock direction X X' Y Y' Z Z' Z Must-operate/must-release voltage (On the basis of rated voltage) (%) 00 80 60 0 0 Sample: - Number of elays: pcs Must operate voltage Must release voltage max. min. 0 60 0 0 0 0 0 60 80 SPST- (a) Y,000 SPST-NC (c) 800 600 X 00 00 70 00 00 600 800,000 Y' Unit: m/s X max. X min. Test Conditions: Shock is applied in ±X, ±Y, and ±Z directions three times each with and without Z' energizing the elays to check the number of contact malfunctions. equirement: 00 m/s when energized; 00m/s when de-energized X' Shock direction X X' Y Y' Z Z' - Must-operate/must-release voltage (On the basis of rated voltage) (%) 00 80 60 0 0 0 6 Sample: - Number of elays: pcs Must operate voltage Must release voltage 0 60 0 0 0 0 0 60 80 Ambient temperature ( C) Keep-power decrement with time K- Decrement of keep-power (%) max. X min. max. X min. 60 Number of elays: 0 pcs Measurement: after the relay kept static by 0 applying a rated voltage, leave the relay at room temperature of 0 C to 0 C, and high temperature of 80 C ± C respectively, to measure how the 0 keep-power varies with time. MAX oom MIN ) temperature 00 80 60 0 0 0 MAX High MIN ) temperature 0 00 00,000,000 0,000 Elapsed time (H) 8

Dimensions elays with PCB Terminals (SPDT (c) elays) -(-Z) -Z --H 9 max. (8.8)* max. (.7)* Tolerance: ±0. mm... max. (.)* () 7. (.7) Five,.-dia. holes This illustration is the - model. 0. 0.6 0.** * ** (-H Type) (.) 0 elays with PCB Terminals (SPST- (a) elays) -A(-Z) -AZ -A-H 9 max. (8.8)* max. (.7)* Tolerance: ±0. mm.. max. (.)* () 0.** 7. (.) 0 (.7) Four,.-dia. holes This illustration is the -A model. 0.6 * ** (-H Type) elays with PCB Terminals (SPDT (c) /High-capacity elays) --E(Z) 9 max. (8.6)* max. (.6)*. Tolerance: ±0. mm. Eight,.-dia. holes. max. (.9)* () (.7) 7. 8 7 6 0. 0.6 (.) 0 (.) elays with PCB Terminals (SPST- (a)/high-capacity elays) -A-E(Z) 9 max. (8.6)* max. (.6)*. Tolerance: ±0. mm. Six,.-dia. holes. max. (.9)* () (.7) 7. 8 6 0.6 (.) 0 (.) Note: Orientation marks are indicated as follows: 9

elays with PCB Terminals (SPDT (c) elays) -(-Z)(-U) -Z 9 max. (8.6)*. max. (.9)* Tolerance: ±0. mm... max. (.8)* (.7) 7. Five,.-dia. holes 0. 0.6 0. (.) 0 elays with PCB Terminals (SPST- (a) elays) -A(-Z)(-U) -AZ. max. (.8)* 9 max. (8.6)*. max. (.9)* Tolerance: ±0. mm. (.7) 7. Four,.-dia. holes 0.6 0. (.) 0 Double-winding Latching elays with PCB Terminals (SPDT (c) elays) K-. max. (.)* () 9 max. (8.8)* 0. max. (.8)* 7. (.) Tolerance: ±0. mm.. 0 (.7) Seven,.-dia. holes S + + 7 6 (After confirming coil polarity, wire correctly.) Double-winding Latching elays with PCB Terminals (SPST- (a) elays) K-A. max. (.)* () 9 max. (8.8)* 0. 0.6 max. (.8)* 7. (.) Tolerance: ±0. mm. 0 (.7) Six,.-dia. holes S + + 7 6 (After confirming coil polarity, wire correctly.) Double-winding Latching elays with PCB Terminals (DPDT (c) elays) K-. max. (.)* () 9 max. (8.8)* max. (.8)* 0.8 0.8 0.. (.) Tolerance: ±0. mm. 0 Ten,.-dia. holes (.) (.7) 7. (.7) S + + 0 9 8 7 (After confirming coil polarity, wire correctly.) 6 Double-winding Latching elays with PCB Terminals (DPST- (a) elays) K-A. max. (.)* () 9 max. (8.8)* max. (.8)* 0.8 0.. (.) Tolerance: ±0. mm. 0 Eight,.-dia. holes (.) (.7) 7. (.7) S + + 0 9 (After confirming coil polarity, wire correctly.) 7 6 Note: Orientation marks are indicated as follows: 0

elays with PCB Terminals (DPDT (c) elays) -(-Z) --H 9 max. (8.8)* max. (.7)*. Tolerance: ±0. mm. Eight,.-dia. holes. max. (.)* () (.7) 7. 8 7 6 0. 0. 0. (.) 0 (.) elays with PCB Terminals (DPST- (a) elays) -A -A-H -A-Z 9 max. (8.8)* max. (.7)*. Tolerance: ±0. mm. Six,.-dia. holes. max. (.)* () (.7) 7. 8 6 elays with PCB Terminals (DPDT (c) elays) -(-Z)(-U) 0. 9 max. (8.6)* 0.. max. (.8)*. (.) 0 (.) Tolerance: ±0. mm. Eight,.-dia. holes. max. (.7)* (.7) 7. 8 7 6 0. 0. 0. (.) 0 (.) elays with PCB Terminals (DPST- (a) elays) -A(-Z)(-U) 9 max. (8.6)*. max. (.8)*. Tolerance: ±0. mm. Six,.-dia. holes. max. (.7) 7. 8 6 0. 0. (.) 0 (.) Note: Orientation marks are indicated as follows:

elays with Quick-connect Terminals (SPDT (c) elays) 7. --T 0. max. (9.7)*.. 7. Mounting Holes Tolerance: ±0. mm Five,.-dia. holes.7 0. 8. 8 Two M or two. dia. 9. max. Note: Model number of quick-connect terminal is 87.. max. (.9)* max. (.)* elays with Quick-connect Terminals (SPST- (a) elays) 7. -A-T 0. max. (9.7)* 7. Four,.-dia. holes.7. 0. Mounting Holes Tolerance: ±0. mm 8 Two M or two. dia. 8. 9. max. Note: Model number of quick-connect terminal is 87.. max. (.9)* max. (.)* Note: Orientation marks are indicated as follows:

Approved Standards The approval rating values for overseas standards are different from the performance values determined individually. Confirm the values before use. UL ecognized: File No. E6 CSA Certified: File No. L98 -pole -pole Model -A -A -A-H -A-T - - --H --T -AZ -AZ -Z -Z -A-E --E -pole Model -A -A -A-H - - --H Contact form SPST- (a) SPDT (c) SPST- (a) SPDT (c) SPST- (a) SPDT (c) Contact form DPST- (a) DPDT (c) Coil ratings to 0 6 to 0 V to 0 6 to 0 V to 0 6 to 0 V Coil ratings to 0 6 to 0 V Contact ratings 0 A, 0 V (eneral Use) at 0 C A, 77 V (eneral Use) at 0 C A, 0 (esistive) at 0 C TV- (N. O. only) at 0 C 0 A, 0 V (eneral Use) at 0 C A, 0 (esistive) at 0 C 6 A, 0 V (eneral Use) at 0 C 6 A, 0 (esistive) at 0 C TV- (N. O. only) at 0 C Contact ratings A, 0 V (eneral Use) at 0 C A, 0 (esistive) at 0 C TV- (N. O. only) at 0 C Note: Consult separately for UL/CSA contact standard ratings. Number of test operations 00,000 6,000 00,000,000 6,000 0,000 6,000,000 Number of test operations 6,000 00,000,000 Model -A -A -A-H -A-T - - --H --T -AZ -AZ -Z -Z -A-E --E -pole Model -A -A -A-H - - --H Contact form SPST- (a) SPDT (c) SPST- (a) SPDT (c) SPST- (a) SPDT (c) Coil ratings to 0 to 0 V to 0 to 0 V to 0 to 0 V Contact ratings 0 A, 0 V (eneral Use) at 0 C 0 A, 0 (esistive) at 0 C TV- (N. O. only) at 0 C A, 0 V (eneral Use) at 0 C A, 0 (esistive) at 0 C 6 A, 0 V (eneral Use) at 0 C 6 A, 0 (esistive) at 0 C TV- (N. O. only) at 0 C EN/IEC, VDE Certified: egistration No. 000 Model Contact form DPST- (a) DPDT (c) Contact form -(A)-E -( ) Coil ratings to 0 to 0 V Coil ratings to 0 to 0 V to 0 to 0 V to 0 to 0 V Contact ratings A, 0 V (eneral Use) at 0 C A, 0 (esistive) at 0 C TV- (N. O. only) at 0 C Contact ratings 6 A, 0 V (cosφ =.0) at 70 C 0 A, 0 V (cosφ =.0) at 0 C 0 A, 0 (0 ms) at 0 C A, 0 V (cosφ =.0) at 0 C A, 0 (0 ms) at 0 C Number of test operations 00,000 00,000,000 6,000 6,000,000 Number of test operations 6,000 00,000,000 Number of test operations 00,000 EN, TÜV Certified: egistration No. 0007 Model Contact form -(A)-E -( ) Coil ratings to 0 6 to 0 V to 0 6 to 0 V to 0 6 to 0 V Contact ratings 6 A, 0 V (cosφ =.0) at 70 C 0 A, 0 V (cosφ =.0) at 70 C 0 A, 0 (0 ms) at 70 C A, 0 V (cosφ =.0) at 0 C A, 0 (0 ms) at 0 C Number of test operations 00,000

Precautions Please refer to PCB elays Common Precautions for correct use. Correct Use Mounting efer to the following table for Therefore, do not use the elay in a When mounting a number of relays on examples of positive-lock connectors strong magnetic field environment. a PCB, be sure to provide a minimum mounting space of mm between the two juxtaposed relays as shown below. mm min. mm min. Handling The terminals are compatible with Faston receptacle #87 and are suitable for positive-lock mounting. Use only Faston terminals with the specified numbers. Select leads for connecting Faston receptacles with wire diameters that are within the allowable range for the current. Do not apply excessive force to the terminals when mounting or dismounting the Faston receptacle. Also, do not insert terminals at an angle, or insert/remove multiple terminals at the same time. Be sure to insert and remove terminals carefully one at a time. made by AMP. Contact the manufacturer directly for details on connectors including availability. Type #87 (Width.7) eceptacle terminals AMP700- (70-) AMP70- (70-) AMP70- (706-) Positive housing AMP707- (natural color) AMP707- (yellow) AMP707- (green) AMP707-6 (blue) Note: The numbers shown in parentheses are for air-feeding. Minimum Pulse Width of Doublewinding Latching elays The minimum pulse width shown in the table of characteristics are values measured under conditions of ambient temperature at C with rated operating voltage imposed on coil. The elay may not provide a satisfactory performance as its holding ability decreases depending on the operating circuit conditions and ambient temperature, or decreases due to degradation over time. In actual operation, impose to the coil a rated operating voltage with a pulse width that is suitable to the actual, and reset the setting at least once a Degradation over Time of Doublewinding Latching elays Holding Ability If a double-winding latching elay is used left set for an extended period, changes over time will degrade the magnetic force, and the reduction in holding ability may cause the set status to be released. This is also because of the properties of semihard magnetic material, and the rate of degradation over time depends on the ambient environment (e.g., temperature, humidity, vibration, and presence or absence of external magnetic fields).perform maintenance at least once a year by resetting, applying the rated voltage again, and then setting. Wiring High Capacity (-E) Models High-capacity models (-E) have a structure that connects two terminals from one contact. When designing the circuit, use both terminals. If you use only one terminal, the relay may be unable to satisfy specified performance. year, to correspond to the degradation over time. When using the elay in a strong magnetic field environment, the magnetic body may be demagnetized due to the influence of environment, causing the elay to malfunction. Application examples provided in this document are for reference only. In actual applications, confirm equipment functions and safety before using the product. Consult your OMON representative before using the product under conditions which are not described in the manual or applying the product to nuclear control systems, railroad systems, aviation systems, vehicles, combustion systems, medical equipment, amusement machines, safety equipment, and other systems or equipment that may have a serious influence on lives and property if used improperly. Make sure that the ratings and performance characteristics of the product provide a margin of safety for the system or equipment, and be sure to provide the system or equipment with double safety mechanisms. Note: Do not use this document to operate the Unit. OMON Corporation Electronic and Mechanical Components Company Contact: www.omron.com/ecb Cat. No. K0-E- 08(007)(O)