K106 KG | Alldatasheet
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Technical content
K106_EN Rev 1.0 1 K106 SUBMINIATURE INTERMEDIATE POWER RELAY
- High switching capacity
- High Inrush current capability - 500A *
- Passed TV-8 certification
- 4kV dielectric strength between coil and contacts
- Outline dimensions: (29.0 x 12.7 x 15.7)mm
- RoHS compliant materials and process Contact Data Characteristics Contact form 1A, 1B, 1C Insulation resistance 1,000MΩ (at 500 Vdc) Contact resistance † 20mΩ (at 1A / 24Vdc) Dielectric strength: Contact material AgSnO2 or W+AgSnO2 Coil to contact 4kVac for 1 min. Contact rating See endnote ‡ Across open contacts 1kVac for 1min. Max. switching voltage 277Vac Creepage distance 8 mm Max. switching current 20A Ambient temperature -40°C to +85°C Max. switching power 4,000VA Ambient humidity 5% - 85% RH Set time ≤ 10 ms Vibration 1.5 mm (DA) 10 Hz to 55 Hz Reset time ≤ 10 ms Shock resistance: Electrical endurance See endnote ‡ Functional § 98 m/s2 Mechanical endurance 1,000,000 cycles Destructive 980 m/s2 Coil termination PCB Unit weight ±13g * Contact material: W+AgSnO2: 500A for 2ms; AgSnO2: 320A for 2ms † Typical value for Initial Contact Resistance: Using a sample quantity of at least 20 units, take the average value from 5 continuous measurements from each sample ‡ 1A, 1B: 16A / 250Vac; 100,000 cycles (Resistive, at 85°C; Duty Cycle: 1s on, 9s off) 1A, 1B: 20A / 250Vac; 20,000 cycles (Resistive, at 70°C; Duty Cycle: 1s on, 9s off) 1A, 1B: 1.5HP / 250Vac; 6,000 cycles (Motor, at 40°C; Duty Cycle: 0.5s on, 0.5s off) 1A, 1B: 8A / 220Vac, CosØ = 0.4; 100,000 cycles, (Inductive, at 85°C; Duty Cycle: 1s on, 9s off) 1C: 16A / 250Vac; 50,000 cycles (Resistive, at 85°C; Duty Cycle: 1s on, 9s off) § Unit may change state but is still functional
K106_EN Rev 1.0 2 Coil Resistance (Ω±10%) at 23°C Nominal Coil Voltage Min Set/Reset Voltage Single Coil (Latching) Dual Coil (Latching) 3Vdc 2.4Vdc 22.5Ω 2 x 15Ω 5Vdc 4.0Vdc 62.5Ω 2 x 42Ω 6Vdc 4.8Vdc 90Ω 2 x 60Ω 9Vdc 7.2Vdc 202.5Ω 2 x 135Ω 12Vdc 9.6Vdc 360Ω 2 x 240Ω 24Vdc 19.2Vdc 1440Ω 2 x 886Ω
Ordering Information
Relay Series: Version: 1: 5mm pin spacing 2: 3.5mm pin spacing 3: 2.5 mm pin spacing Coil Type: S: Single Coil D: Dual Coil Coil Voltage : 3, 5, 6, 9, 12, 24Vdc Polarity: P: Positive N: Negative Contact Form: 1A: Form 1A – Normally open (NO) 1B: Form 1B – Normally closed (NC) 1C: Form 1C – Normally open (NO) & Normally closed (NC) Contact Material: T: AgSnO2 D: W + AgSnO2 †† Construction: Y: Sealed IP67 D: Flux proofed Coil voltage should be indicated in three-digit format (6Vdc = 006) †† Only available for K106 1-X X X-1A X-X as per UL Certification Coil Data Single Coil (Latching) Dual Coil (Latching) Coil Consumption 400mW 600mW Pulse Duration 50ms 50ms
K106_EN Rev 1.0 3 Dimensional Drawings (Unit: mm) K106 - 1 VERSION K106 - 2 VERSION
K106_EN Rev 1.0 4 K106 - 3 VERSION Pin Layout & Numbering (Bottom view) Single Coil 1 Form A/B Single Coil 1 Form C Dual Coil 1 Form A/B Dual Coil 1 Form C
K106_EN Rev 1.0 5 Wiring Diagrams Single coil latching – Positive Polarity
1 Form A/B
1 Form C
Single coil latching – Negative Polarity Dual coil latching – Positive Polarity Dual coil latching – Negative Polarity
K106_EN Rev 1.0 6 Disclaimer: This datasheet is for reference only. All specifications are subject to change without prior notice. KG Technologies, Inc. cannot predict every possible application for our relays. While we do our best to make our relays as versatile as possible, we highly recommend contacting our engineering team if you have any questions. KG Technologies, Inc. is not responsible for malfunctioning relays when operated outside the specified parameters given in this datasheet. Application Notes 1. It is possible that during transit or final assembly the relay could change state. Therefore, it is recommended that all relays be set to the desired state via a power supply. 2. In order to maintain an “Open” or “Closed” state of the relay, the coil voltage should reach the rated voltage. The pulse width should be 50ms minimum to ensure a proper change of state. DO NOT energize both T1 and T 2 at the same time on a Dual Coil or energize the coil for longer than 1 minute (damage to the coil could occur). 3. Applying excessive heat to the relay terminals (soldering or welding) can cause damage to the internal structure of the relay and should be avoided. 4. Moving or bending the terminals can cause damage to the internal structure of the relay and should be avoided. 5. For definitions of terms used in this data sheet, see glossary at https://kgtechnologies.net/