Repeat Cycle
On
Off
On
Off
Input
Voltage
Adj. "Off" Delay
Adj. "On" Delay
On
Off
Adj. "On" Delay
Adj. "Off" Delay
Load
"On" Time
First
Load
"Off" Time
First
76
.88
1.25
Rt
5 4
2.00 SQ.
L
C
C
L
321
(3667-8)
.25 X .032 MALE FAST-ON
TERMINALS (7 PL.)
.170
DIA.
LOAD
INPUT
VOLTAGE
Rt
Off Time
On Time
Polarity Shown is
for DC Models
Q6F Series
TIME DELAY RELAYS
1-29
FEATURES
100% functionally tested
●
Solid state digital timing
●
Time delays to 10 hours standard
●
20:1 maximum to minimum timing ratio
●
Low cost
●
Compact size
●
●
Superior transient protection
●
Flame-retardant and solvent-resistant
polyester thermoplastic housing
●
Operating Logic: Upon application of input
voltage, the OFF delay is initiated. At the
end of the OFF preset time, the load is acti
vated and the ON delay starts. At the end of
the ON preset time, the load is deactivated
and a new cycle begins. The ON and OFF
cycles will continue to alternate until input
voltage is removed.
This timer is available with ON time
occurring first logic.
Note: 1) Remote potentiometer leads should be shielded when
running close to other wires; 2) The minimum time setting on
external resistor-adjustable time delay relays is obtained by short
ing together the external resistor terminals of the relay; 3) The
maximum time setting within tolerance limits is obtained by using
a 1 megohm resistor; 4) Timing values between the minimum
and maximum limits are linear with resistance within 10%; 5)
Recommend 1/4 W minimum resistor be used.
File #E65038
LOGIC FUNCTION DIAGRAM
SPECIFICATIONS
TIME DELAY
Adjustment: External resistor, factory fixed on
special order (min. order requirement)
Range: 50 ms to 10 hours in 9 ranges
-
Repeatability: ±.5% +8 ms max. (.25% typical) at
constant temperature
Accuracy:
Maximum time ±2% at Rt = 1 megohm
Minimum time +0%, -30% at Rt = 0 ohm
INPUT
Operating Voltage: 120, 240 VAC; 12 VDC; 24
VAC/DC ±10%; (DC models have reverse polarity
protection. Unfiltered input voltage to them must
be full-wave rectified)
-
Frequency: 50/60 Hz
MECHANICAL
Termination: .25” x .032” male fast-on terminals
Mounting: Surface mount with one #8 screw
PROTECTION
Transient Voltage: Metal oxide varistor
see rating below
Dielectric Breakdown: 3000 VAC,
RMS, terminals to mounting
Insulation Resistance: 100 megohms
min. between terminals and case
ENVIRONMENTAL
Storage Temperature: -40°C to 85°C
Operating Temperature: -40°C to 65°C
Humidity: 95% relative
OUTPUT
Type: Solid state, normally open
Rating: 1 A steady state
ORDERING INFORMATION
OFF TIME FIRST LOGIC
ON TIME FIRST LOGIC
Trigger time (start switch closure)
Reset time 500 ms 500 ms 500 ms 500 ms
Min. load 5 mA 5 mA 2 mA 2 mA
Max. leakage current 100 uA 100 uA 100 uA 100 uA
Voltage drop at 1 A 2.1 V max. 3.2 V max. 3.3 V max. 3.3 V max.
Power consumption 2.6 W max. 3.7 VA max. 4.3 VA max. 5.8 VA max.
Peak 1 cycle surge 4 A 4 A 20 A 20 A
Protection rev. voltage 8.8j. MOV 30j. MOV 30j. MOV
Optional Potentiometer: Part Number ASY-0001M-450
Consult factory for any special requirements not listed in catalog (minimum order requirement may apply).
AMETEK National Controls Corp. • 1725 Western Drive • West Chicago, Illinois 60185 • Tel: 800-323-2593 • 630-231-5900 • FAX: 630-231-1377 • www.nationalcontrols.com
TIME RANGE 12 VAC/DC +10% 24 VAC/DC +10% 120 VAC +10% 240 VAC +10%
.05 to 1 sec.
.25 to 5 sec.
.5 to 10 sec.
3 to 60 sec.
15 to 300 sec.
30 to 600 sec.
180 to 3600 sec.
.25 to 5 hrs.
.5 to 10 hrs.
3 to 60 sec. Q6F-00060-336 — Q6F-00060-331 —
30 to 600 sec.
Q6F-00001-326 Q6F-00001-327 Q6F-00001-321 Q6F-00001-325
Q6F-00005-326 Q6F-00005-327 Q6F-00005-321 Q6F-00005-325
Q6F-00010-326 Q6F-00010-327 Q6F-00010-321 Q6F-00010-325
Q6F-00060-326 Q6F-00060-327 Q6F-00060-321 Q6F-00060-325
— Q6F-00300-327 Q6F-00300-321 Q6F-00300-325
Q6F-00600-326 — Q6F-00600-321 Q6F-00600-325
— — Q6F-03600-321 —
Q6F-18000-326 — — Q6F-18000-325
— — — Q6F-36000-325
— — Q6F-00600-331 —
500 ms 500 ms 500 ms 500 ms
Life: 100,000,000 operations
External Resistance/Time Delay Relationship
1 megohm external resistance is required to obtain
the maximum time for all ranges. To determine the
actual resistance needed to obtain the required time
delay, use the following formula:
Trequired - Tminimum
Rt=
Tmaximum - Tminimum
Note: Due to component tolerances, the actual time
obtained will normally be within 5% of desired time.
x 1,000,000 ohms