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1 GT3 GT3 Key features: 4 selectable operation modes on each model External start, reset, and gate inputs Panel mount or socket mount Large variety of timing functions and output status indicating LEs UL, c-ul Listed File No. E55996 GT3 Series nalog Specifications GT3-1 GT3-2 GT3-3 GT3-4,-5,-6 Operation Multi-mode Multi-mode with inputs (11 pins) Time Range 0.1s to 180 hours 100 to 240V, 50/60Hz Rated Voltage 12V 24V, 50/60Hz / 24V Ratings Minimum pplicable Load Voltage Tolerance Error Setting Error Time Insulation Resistance ielectric Strength onsumption (approximate) SPT 10.8V (200V, 60Hz) 125V /250V, 3; 30V, 1 (resistive load) 5V, 10m (reference value) F20 (100V ): 85 to 264V 24: 20.4 to 26.4V /21.6 to 26.4V 12: 10.8 to 13.2V ±0.2%, ±10 msec (repeat, voltage, temperature) ±10% maximum 60msec maximum 100MW minimum etween power and output terminals: 2,000V, 1 minute etween contacts of different poles: 2,000V, 1 minute etween contacts of the same pole: 750V, 1 minute SPT + PT instantaneous SPT 13.5V (200V, 60Hz) 12V/1W 24V/0.7W 24V/1.2V 14.4V (200V, 60Hz) 12V/1.1W 24V/0.6W 24V/1.3V 125V /250V, 5; 30V, 5 (resistive load) PT 4.7V (100V, 60Hz), 14.4V (200V, 60Hz) 12V/0.8W 24V/0.6W 24V/1.3V Mechanical Life 10,000,000 operations minimum 5,000,000 operations minimum Electrical LIfe 50,000 operations minimum (rated load) 100,000 operations minimum (rated load) Weight (approximate) 63g 73g 79g 80g Vibration Resistance 100m/sec 2 (approximate 10G) Shock Resistance Operating extremes: 100m/sec 2 (approximate 10G) amage limits: 500m/sec 2 (approximate 50G) Operating Temperature 10 to +50 Operating Humidity 45 to 85% RH Storage Temperature 30 to +80 Housing olor Gray Switches & Pilot Lights Signaling Lights Relays & Sockets ors Terminal locks ircu For more information, please visit or call toll free at

2 GT3 Switches & Pilot Lights Signaling Lights GT3-1, -2, -3 : ON-delay 1 : Interval 1 : ycle 1 : ycle 3 Mode Of Operation Part Numbers omplete Part No. Rated Voltage ode Time Range Output 8-Pin 11-Pin F20: 100 to 240V (50/60Hz) SPT GT3-1F20 GT3-1EF20 250V, 3, GT3-2F20 GT3-2EF20 30V, 1 SPT + (resistive load) GT3-212 GT3-2E12 Instantaneous SPT F20: 100 to 240V (50/60Hz) 0.1 seconds GT3-224 GT3-2E24 12: 12V to 180 hours 24: 24V (50/60Hz)/24V GT3-3F20 GT3-3EF20 240V, 5, 24V, 5 PT GT3-312 GT3-3E12 (resistive load) GT3-324 GT3-3E24 1. For wiring schematics and timing diagrams for GT3-1, -2, -3, see pages page 845 and page 846 respectively. 2. For more details about time ranges, see instructions on page page For socket and accessory part numbers, see page 860. GT3-4, -5, -6 Relays & Sockets Mode of Operation : ON-elay 2 : ycle 2 : Signal ON/OFF-elay 1 : Signal OFF-elay 1 Rated Voltage ode Time Range Output F20: 100 to 240V (50/60Hz) 12: 12V 24: 24V (50/60Hz)/24V omplete Part No. (11-pin) (11-pin) GT3-4F20 GT3-4EF20 GT3-412 GT3-4E12 GT3-424 GT3-4E24 : Interval 2 : One-Shot ycle : Signal ON/OFF-elay 2 : Signal OFF-elay 2 : One-Shot : One-Shot ON-elay : One-Shot 2 : Signal ON/OFF-elay 3 F20: 100 to 240V (50/60Hz) 24: 24V (50/60Hz)/24V 0.1 seconds to 180 hours 250V, 5, 24V, 5 (resistive load) PT Gate GT3-5F20 GT3-524 GT3-6F20 GT3-624 GT3-5EF20 GT3-5E24 GT3-6EF20 GT3-6E24

3 GT3 Timing iagrams/schematics Swit GT3-1 Timing iagrams SPT Operation Mode Selection ON-elay 1 T 5-8 (8p) (11p) 6-8 (8p) (11p) Interval 1 T 5-8 (8p) (11p) 6-8 (8p) (11p) ycle 1 (OFF first) T T 5-8 (8p) (11p) 6-8 (8p) (11p) ycle 3 (ON first) T T 5-8 (8p) (11p) 6-8 (8p) (11p)

4 GT3 Switches & Pilot Lights GT3-2 Timing iagrams SPT + Instantaneous SPT Operation Mode Selection GT3-3 Timing iagrams PT Operation Mode Selection Signaling Lights ON-elay 1 T 5-8 (8p) (11p) 6-8 (8p) (11p) Instantaneous ON-elay 1 T 1-4, 5-8 (8p) 1-4, (11p) 1-3, 6-8 (8p) 1-3, (11p) ors Relays & Sockets Interval 1 ycle 1 (OFF first) T 5-8 (8p) (11p) 6-8 (8p) (11p) Instantaneous T T 5-8 (8p) (11p) 6-8 (8p) (11p) Instantaneous Interval 1 ycle 1 (OFF first) ycle 3 (ON first) T 1-4, 5-8 (8p) 1-4, (11p) 1-3, 6-8 (8p) 1-3, (11p) T T 1-4, 5-8 (8p) 1-4, (11p) 1-3, 6-8 (8p) 1-3, (11p) T T 1-4, 5-8 (8p) 1-4, (11p) 1-3, 6-8 (8p) 1-3, (11p) Terminal locks ycle 3 (ON first) T T 5-8 (8p) (11p) 6-8 (8p) (11p) Instantaneous ircuit reakers Note: Pins 1, 3, and 4 are the instantaneous contacts.

5 GT3 GT3-4 Timing iagrams PT Operation Mode Selection ON-elay 2 ycle 2 Signal ON/OFF-elay 1 Signal OFF-elay Gate 2-5 () T Ta T' T" 2-10 Gate 2-5 () T T T T T T T Ta T T T T" T" T T T T T 2-10 Gate 2-5 () T T Ta T Ta T T T T" Ta 2-10 Gate 2-5 () T = Set time Ta = Shorter than set time T = T' + T" T Ta Ta T T T Switches & Pilot Lights Signaling Lights Relays & Sockets ors Terminal locks ircuit reakers

6 GT3 Switches & Pilot Lights GT3-5 Timing iagrams PT Operation Mode Selection Signaling Lights Relays & Sockets Interval Gate 2-5 () T Ta T' T" 2-10 One-Shot ycle Gate 2-5 () T T T Ta T' T" T ors Terminal locks ircuit reakers Signal ON/OFF-elay 2 Signal OFF-elay Gate 2-5 () T T Ta T Ta Ta T T' T" Ta 2-10 Gate 2-5 () T = Set time Ta = Shorter than set time T = T' + T" T Ta Ta T T' T"

7 GT3 GT3-6 Timing iagrams PT Operation Mode Selection One-Shot 1 One-Shot ON-elay One-Shot 2 Signal ON/OFF-elay Gate 2-5 () Ta Ta T Ta T' T" 2-10 Gate 2-5 () T T Ta T T T' T" 2-10 Gate 2-5 () T Ta T T' T" 2-10 Gate 2-5 () T = Set time Ta = Shorter than set time T = T' + T" T T Ta T' T" Ta Ta T Switches & Pilot Lights Signaling Lights Relays & Sockets ors Terminal locks ircuit reakers

8 GT3 Switches & Pilot Lights Timed Instructions: Setting GT3 Series (flashes during time-delay period) m Setting Knob Signaling Lights j Operator Mode Selector,,, l Time Range Selector 1S, 10S, 10M, 10H k ial Selector 0-1, 0-3, 0-6, 0-18 ircuit reakers Terminal locks ors Relays & Sockets Step 1. esired Mode of Operation Selection Remarks For Mode of Operation j Operation Mode Selector ON-delay 1 GT3-1 Interval 1 GT3-2 GT3-3 ycle 1 ycle 3 ON-delay 2 GT3-4 ycle 2 Signal ON/OFF-delay 1 Signal OFF-delay 1 Interval 2 GT3-5 One-shot cycle Signal ON/OFF-delay 2 Signal OFF-delay 2 One-shot 1 GT3-6 One-shot ON-delay One-shot 2 Signal ON/OFF-delay 3 Step 2. esired Time Range Selection Remarks Time Ranges k ial Selector l Time Range Selector 0.1 seconds to 1 second 0-1 Select the desired mode of operation. Select the time range that contains the desired time period. 0.1 seconds to 3 seconds seconds to 6 seconds seconds to 18 seconds seconds to 10 seconds seconds to 30 seconds seconds to 60 seconds seconds to 180 seconds seconds to 10 minutes seconds to 30 minutes seconds to 60 minutes seconds to 180 minutes minutes to 10 hours minutes to 30 hours minutes to 60 hours minutes to 180 hours 0-18 Step 3. Set the precise period of time desired by using the m Setting Knob. 1S 10S 10M 10H Selection The desired operation mode can be selected from the,,, and modes using the Operation Mode Selector. hange the operation mode from to,, and in turn by turning the operation mode selector clockwise using a flat screwdriver which is a maximum of (4mm) wide. The selected mode is displayed in the window. The desired time range is selected by setting both k ial Selector and l Time Range Selector.

9 GT3 Series ccessories Switches & Pilot Lights GT3 Series ccessories IN Rail Mounting ccessories IN Rail/Surface Mount Sockets and Hold-own Springs IN Rail Mount Socket pplicable Hold-own Springs Style ppearance Use with Part No. ppearance Part No. Signaling Lights 8-Pin Screw Terminal (dual tier) GT3-1, 2, 3 (8-pin) GT3F-1, 2 (8-pin) GT3W (8-pin) SR2P-05 Relays & Sockets 11-Pin Screw Terminal (dual tier) 8-Pin Fingersafe Socket GT3-1, 2, 3 (11-pin) GT3-4, 5, 6 GT3F-1, 2 (11-pin) GT3W (11-pin) GT3-1, 2, 3 (8-pin) GT3F-1, 2 (8-pin) GT3W (8-pin) SR3P-05 SR2P-05 SF Pin Fingersafe Socket GT3-1, 2, 3 (11-pin) GT3-4, 5, 6 GT3F-1, 2 (11-pin) GT3W (11-pin) SR3P-05 8-Pin Screw Terminal GT3-1, 2, 3 (8-pin) GT3F-1, 2 (8-pin) GT3W (8-pin) SR2P-06 SF-202 ors 11-Pin Screw Terminal GT3-1, 2, 3 (11-pin) GT3-4, 5, 6 GT3F-1, 2 (11-pin) GT3W (11-pin) SR3P-06 IN Mounting Rail Length 1000mm NN1000 Terminal locks Installation of Hold-own Springs IN Rail Mount Socket Insert the springs into the outer slots with the projections facing inside. Insert the springs into the slots. Panel Mount Socket Hold-down Spring SF-402 Insert ircuit reakers Socket SR2P-06 Hold-down Spring (sold separately) SF-202 (use two springs) Socket SR2P-05 Hold-down Spring (sold separately) SF-203 (use two springs) 8-pin Socket SR2P-51

10 GT3 Series ccessories Panel Mount Sockets and Hold-own Springs Panel Mount Socket Panel Mounting ccessories pplicable H Springs Style ppearance Use with Part No. ppearance Part No. 8-Pin Solder Terminal 11-Pin Solder Terminal For information on installing the hold-down springs, see page 860. GT3- (8-pin) GT3W- (8-pin) GT3F- (8-pin) GT3- (11-pin) GT3W- (11-pin) GT3F- (11-pin) Flush Panel Mount dapter and Sockets that use an dapter ccessory escription ppearance Use with Part No. Panel Mount dapter daptor for flush panel mounting GT3 timers ll GT3 timers RT-G01 Sockets for use with Panel Mount dapter 8-pin screw terminal SR2P-51 SR3P-51 ll 8-pin timers 11-pin screw terminal (Shown: SR6P-M08G for Wiring Socket dapter) ll 11-pin timers SR6P-M11G SF-402 SR6P-M08G 8-pin solder terminal ll 8-pin timers SR6P-S08 11-pin solder terminal ll 11-pin timers SR6P-S11 No hold down springs are available for flush panel mounting. Switches & Pilot Lights Signaling Lights Relays & Sockets ors Terminal locks ircuit reakers

11 GT3 Series Instructions Switches & Pilot Lights Signaling Lights s Instructions: Wiring s for GT3 Series To avoid electric shock, do not touch the input signal terminal during power voltage application. When connecting the input signal terminals of two or more GT3 timers to the same contact or transistor, the input terminals of the same number should be connected. (onnect Terminals No.2 in common.) [Incorrect] or Transistor 2 2 GT3 Series Timer Terminal Terminal [correct] 2 2 Terminal Terminal In a transistor circuit for controlling input signals, with its primary and secondary power circuits isolated, do not ground the secondary circuit. GT3 Series Timer Terminal Relays & Sockets ircuit Rectifier ircuit Insulating Transformer onnect the input signal terminals of the GT3 timers to Terminal No.2 only. Never apply voltage to other terminals; otherwise, the internal circuit may be damaged. 5, 6, and 7 Terminal 2 10 R Y signal lines must be made as short as possible and installed away from power cables and power lines. Use shielded wires or a separate conduit for input wiring.

12 GT3 Series Instructions s Instructions, continued For contact input, use gold-plated contacts to make sure that the residual voltage is less than 1V when the contacts are closed. Gate For transistor input, use transistors with the following specifications; VE = 40V, VES = 1V or less, I = 50 m or more, and IO = 50µ or less. The resistance should be less than 1kΩ when the transistor is on. When the output transistor switches on, a signal is input to the timer. Gate s: GT3-1, -2, -3 Transistor output equipment such as proximity switches and photoelectric switches can input signals if they are voltage/current output type, with power voltage ranges from 18 to 30V and have1v. When the signal voltage switches from H to L, a signal is input to the timer Gate s: GT3-4, -5, -6 The start input initiates a time-delay operation and controls output status. When the reset input is activated, the time is reset, and contacts return to original state. Gate The time-delay operation is suspended while the gate input is on (pause). No-voltage contact inputs and NPN open collector transistor inputs are applicable. 24V, 1m maximum response time: 50msec maximum Switches & Pilot Lights Signaling Lights Relays & Sockets o

13 GT3 Series imensions Switches & Pilot Lights 36.0 imensions N40.0 Signaling Lights NOTE: GT3W series are UL Listed when used in combination with following IE s sockets: GT3W-11, 33: SR2P-06* pin type socket. GT3W-11E: SR3P-05* pin type socket. (*-May be followed by,, or U) The socket to be used with these timers are rated: -onductor Temperature Rating 60º min. -Use 14WG max.(2mm 2 max.) opper conductors only -Terminal Torque 1.0 to 1.3 N-m Unit: mm nalog GT3 Timer, 8-Pin with SR2P-06 nalog GT3 Timer, 11-Pin with SR3P-06 Relays & Sockets nalog Setting Type (When using IN Rail) When using /P: 99 maximum 95 maximum nalog Setting Type (When using IN Rail) When using /P: 99 maximum 95 maximum Holddown spring (SF-202) IN Rail Holddown spring (SF-202) IN Rail 1 nalog GT3 Timer, 11-Pin with SR3P-05 nalog Setting Type (When using IN Rail) or P: maximum maximum IN Rail (/P/) ors ø Hold-down Spring (SF-203) Panel Mount dapter nalog GT3 Timer, 8-Pin and 11-Pin with SR6P-S08 or SR6P-S11 Terminal locks maximum Panel Thickness 0.8 to 5mm ack Wiring Socket

14 GT3 Series imensions 45 Single Mounting GT3 Timer, 8-Pin with SR6P-M08G Panel Thickness 0.8 to 5mm Horizontal lose Mounting 48N M3.5 Terminal Screw Mounting Hole Layout Tolerance: +0.5 to 0 N: No. of timers mounted 3.5 max. 5.6 min. ø3.6 min. 6.9 max. GT3 Timer, 11-Pin with SR6P-M11G M3.5 Teminal Screws max. 5.8 min. ø3.6 min. 6.9 max. Switches & Pilot Lights Signaling Lights

15 General Instructions Switches & Pilot Lights Load urrent With inductive, capacitive, and incandescent lamp loads, inrush current more than 10 times the rated current may cause welded contacts and other undesired effects. The inrush current and steady-state current must be taken into consideration when specifying a timer. General Instructions for ll Timer Series Vibration and Shock Excessive vibration or shocks can cause the output contacts to bounce, the timer should be used only within the operating extremes for vibration and shock resistance. In applications with significant vibration or shock, use of hold down springs or clips is recommended to secure a timer to its socket. Protection Time Setting Signaling Lights Switching an inductive load generates a counter-electromotive force (back EMF) in the coil. The back EMF will cause arcing, which may shorten the contact life and cause imperfect contact. pplication of a protection circuit is recommended to safeguard the contacts. The time range is calibrated at its maximum time scale; so it is desirable to use the timer at a setting as close to its maximum time scale as possible. For a more accurate time delay, adjust the control knob by measuring the operating time with a watch before application. Temperature and Humidity s Relays & Sockets Use the timer within the operating temperature and operating humidity ranges and prevent freezing or condensation. fter the timer has been stored below its operating temperature, leave the timer at room temperature for a sufficient period of time to allow it to return to operating temperatures before use. Environment void contact between the timer and sulfurous or ammonia gases, organic solvents (alcohol, benzine, thinner, etc.), strong alkaline substances, or strong acids. o not use the timer in an environment where such substances are prevalent. o not allow water to run or splash on the timer. Use mechanical contact switch or relay to supply power to the timer. When driving the timer with a solid-state output device (such as a two-wire proximity switch, photoelectric switch, or solid-state relay), malfunction may be caused by leakage current from the solid-state device. Since types comprise a capacitive load, the SSR dielectric strength should be two or more times the power voltage when switching the timer power using an SSR. Generally, it is desirable to use mechanical contacts whenever possible to apply power to a timer or its signal inputs. When using solid state devices, be cautious of inrushes and back-emf that may exceed the ratings on such devices. Some timers are specially designed so that signal inputs switch at a lower voltage than is used to power the timer (models designated as type). Timing ccuracy Formulas Timing accuracies are calculated from the following formulas: ors locks = ± 1 x Maximum Measured Value Minimum Measured Value x 100% Repeat Error 2 Maximum Scale Value = ± Tv - Tr x 100% Voltage Error Tr Tv: verage of measured values at voltage V Tr: verage of measured values at the rated voltage = ± Tt - T20 x 100% Temperature Error T20 Tt: verage of measured values at T20: verage of measured values at 20 = ± verage of Measured Values - Set Value x 100% Setting Error Maximum Scale Value

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