H = Standard (450mW) Coil,H = Standard (450mW) Coil, 10A Contacts
10A Contacts
nt: 6. Contact Arrangement:
6. Contact Arrangement: 6. Contact Arrangement:
NO M = 1 Form A, SPST-NO
M = 1 Form A, SPST-NO M = 1 Form A, SPST-NO
act Rating Option forContact Rating Option for Sensitive Coil:
7. High Capacity Contact Rating Option forContact Rating Option for Sensitive Coil:
Coil:
7. High Capacity Sensitive Coil:
7. High Capacity Sensitive
F0277-C
F0277-C
y available 8A Contacts (Only available with Coil Input/Contact Rating code "L"). H = 8A Contacts (Only available 8A Contacts (Only available with Coil Input/Contact Rating code "L
H = with Coil Input/Contact Rating code "L").
H = with Coil Input/Contact Rating code "L").
Typical applications
al applications
8. Insulation System:
Appliances, HVAC,
8. Insulation System:
rol
8. Insulation System:
industrial control.
ances, HVAC, industrial control
A (105°C)
F= Class A (105°C)
= Class F (155°C)
Leave Blank = Class A (105°C)
F = Class F (155°C)
Leave Blank
F = Class F (155°C)
Leave Blank = Class A (105°C)
F = Class F (155°C)
9. Suffix:
9. Suffix:
9. Suffix:
elOther SuffixStandard model for = Standard model for ,095 = Standard model for enclosure code "SH" for model= Standard= Custom model
Other code model for = Standard model for ,095 = Standard mo
1. Basic Series:
oil andOJ = 4kV dielectric, coil and contacts.
contacts.
coil and contacts. dielectric, coil and contacts.
OJE = 3kV
VZt
V
VZt
Zt
VDE 40007630, TUV
Coil
to 48VDC
3 to 48VDC
6, UL E82292, CQC03001007764E82292, CQC03001007764
Coil voltage range
40007630, TUV R 50139166, UL
R 50139166, UL E82292, CQC03001007764
voltage range 3
voltage range
Coil
3 to 48VDC
Technical
likely
approved types on
following items for the
61810Operative range,
Operative range, IEC 61810
likely
2
stock the following items for the follow
data of
to stock the
request.
quest
2
butors
of approved types on request
Our authorized
61810
Our are more
to
Operative range,
immediate delivery.
2
cal
Our are more
data
immediate delivery.
very. authorized distributors are more likely to stock
IEC
following items for
IEC
distributorsauthorized distributors are more likely to stock immediat
Coil insulation system according
Class E,
Coil insulation system according insulation systemClass
OJE-SH-105DM,095
Class
OJE-SH-105DM,095
UL
F
OJE-SH-124LMH,095
Coil
OJE-SH-124LMH,095
E,
OJ-SH-105HM,095
UL
OJE-SH-112HM,095
F
OJE-SH-124LMH,095
according UL
E, F
OJE-SH-105DM,095
OJE-SH-112HM,095
OJ-SH-105HM,095
OJ-SH-105HM,095
OJE-SH-105DM,095
OJE-SH-112HM,095
OJE-SH-112HM,095
OJE-SH-112DM,095
Data
OJE-SH-112DM,095
tact Data
Contact
OJE-SH-105LMH,095
OJE-SH-112DM,095
OJE-SH-105LMH,095 OJ-SH-112LMH,095
OJE-SH-112DM,095
OJE-SH-105LMH,095
OJ-SH-112LMH,095
OJ-SH-112LMH,095 OJE-SH-105LMH,095
Contact
Coil versions, DC coil, OJ/OJE-L sensitive type
1
OJE-SH-124DM,095
arrangement
act
OJ-SH-124LMH,095
1 NO
arrangementform A,
OJE-SH-112LMH,095
Coil versions, DC coil, OJ/OJE-L sensitive type OJ/OJE-L sensitive type
OJE-SH-112LMH,095
1 form
OJE-SH-124DM,095
A, 1 NO
1 form A, 1 NO
Coil versions, DC coil,
OJE-SH-124DM,095
OJE-SH-112LMH,095 OJ-SH-124LMH,095
OJE-SH-124DM,095
OJE-SH-112LMH,095
OJ-SH-124LMH,095
Coil
Rated
Rated coil
Operate
Release
Rated coil
Coil
Rated coil
Rated
Operate
Release
Coil
30VDC, 250VAC
Rated
Operate
Release
Coil
d voltage
Rated voltage
30VDC,Coil
250VAC
30VDC, 250VAC
Coil
Max. switching voltage
30VDC, 277VAC
(Bottom
voltage
code
resistance
voltage
power
voltage
resistance
resistance
power
code
Wiring Diagram
code
Wiring Diagram (Bottom Dimensions
voltage
power
voltage
voltage
voltage
30VDC, 277VAC
voltage
switching voltage
30VDC, 277VAC
View)
Wiring Diagram
som View) Dimensions
Outline Dimensions Outline
voltage
View)
Outline
Rated current
3 to 10A
VDC
VDC
VDC
Ω±10%
mW
VDC
VDC
VDC
Ω±10%
mW
3 to 10A
VDC
VDC
VDC
Ω±10%
mW
d current
3 to 10A
Contact material
200
003
AgNi,
3
2.25
0.15
003
45
3
200
2.25
003
3
2.25
0.15
45
0.15
200
45
act material Ag, AgSnO, AgCdO
Ag, AgSnO, AgCdO
AgSnO, AgCdO
Min. recommended
200
005
5
0.25
005
125
5
200
3.75
005
5
3.75
0.25
125
0.25
200
125
recommended100mA, 5VDC
contact load
contact load
100mA, 5VDC
100mA, 5VDC
3.75
Initial
.58
ops./h
200
006
100mohms at 1A, 5VDC
6
4.5
0.3
006
180
6
200
.58
±
.02
180
0.3
360
±
.02
006
6
4.5
0.3
4.5
200
180
±
.02
uency of operation
contact resistance
360 ops./h
.58
±
.02
.58
(14.7
±
.5)
Frequency of operation
360 ops./h
6.75
405
±
.5)
200
009
9
6.75
0.45
009
405
9
200
(14.7
±
.5)
405
0.45
OJ/OJE-L: 15ms
(14.7
±
.5)
009
9
6.75
0.45
200
(14.7
ate time max.
OJ/OJE-L: 15ms
Operate time
10ms
OJ/OJE-L: 15ms
9
200
012
0.6
012
720
12
200
9
OJ/OJE-D/H:
max.
012
12
9
0.6
720
0.6
200
720
OJ/OJE-D/H: 10ms 12
OJ/OJE-D/H: 10ms
024
1.2
2880
200
024
24
18
1.2
024
2880
24
200
18
4ms
24
18
1.2
2880
200
ase time max.
4ms
Release time max.
4ms
048
48
36
2.4
11520
200
048
48
36
2.4
11520
200
048
48
36
2.4
11520
200
rical endurance
3
ops.
figures are
pre-energization,
3
ops.
All figures are given for coil without pre-energization, at
All
coil without
given for
+23°C at ambient temperature
ambient temperature +23°C.
ambient temperature
coil without pre-energization, at
+23°C
Electrical
±
endurance
°C 3A, 250VAC, res., -30°C to +95°C
100x10
All figures are given for
M to +95°C
100x10
.157 .012
.157
±
.012
.157
±
.012
.157
±
.012
3
(4.00
(4.00
±
.3)
100x10
3
ops.
°C
(4.00
±
.3)
M to +85°C
LM
res,
.3)
250VAC, res., -30°C to +95°C
60x10
3
ops.
5A, 250VAC,
±
3A,
-30°C 60x10 ops.
(4.00
±
.3)
to +85°C
.012
.012
DC coil,
.018
and
.012
.012
.018
5A, 250VAC,
3
ops.
Coil
OJ/OJE-D and
OJ/OJE-D and -H type
°C to
.018 x
250VAC, res., -30°C to +70°C
-30°C to +85°C
100x10
3
ops.
OJ/OJE-D
x .018
-H type
versions,
.018 x .018
-H type
+70°C
DM
100x10
res,
Coil versions, DC coil,
60x10
3
ops.
MH(2) 8A,
.012
Coil versions, DC coil,
(.3)
(.3) (.45 .45)
.039
(.45 x .45)
View)
.039
.012
(.3) .039
(.3) .039
.45)
.039
.039
.012
Coil
PC Board Layout
View)
-30°C
Coil
PC Board Layout (Bottom
Rated
Coil
Operate
Release
Rated
.039
coil
°C to
(.45 x
250VAC,res.,
8A, 250VAC,
3
ops.
(1.0)
to +70°C
30x10
3
ops.
.039
50x10
3
ops.
Release
Layout
Rated
x
Rated coil
Rated
Operate
PC Board
Coil
(Bottom
(.3)
tom View)
LMH(2)
-30°C 30x10
res.,
.012
(1.0)
MH2 +85°C
(.3)
8A,
to +85°C
(.3)
Operate
Release
Coil
(1.0)
Rated
(1.0)
(1.0)
Coil
(1.0)
(1.0)
(1.0)
(.3)
coil
3
ops.
voltage
3
ops.
30x10
code
resistance
voltage
power
voltage
resistance
voltage
power
resistance
power
code
voltage
voltage
0°C 10A, 250VAC,
8A, 250VAC,res., -30°C to +85°C
100x10
3
ops.
100x10
code
voltage
voltage
voltage
M to +70°C
LMH2
res., -30°C to +70°C
4 – .05 DIA
4 .05
4 – .05
10x10
3
ops.
VDC
DIA
Ω±10%
VDC
VDC
Ω±10%
mW
– (1.3)DIA
mW
VDC
0°C 10A, 250VAC,
10A, 250VAC, res.,
10x10
3
ops.
VDC
.067
VDC
VDC
Ω±10%
mW
M2 to +85°C
HM
res., -30°C to +85°C
-30°C to +70°C
VDCops.
10x10
3
(1.3) .067
VDC
.067
(1.3)
.401
±
.02
.401
±
.02
.401
±
450
.02
(1.71)
10x10
3
ops.
0.15
(1.71)
20
3
(1.71)
HM2
10A, 250VAC, res., -30°C
003
+85°C
to
.401
±
.02
3
2.1
450
2.1
(10.2
±
.5)
003
3
003
2.1
0.15
20
0.15
450
20
act ratings
(10.2
±
.5)
(10.2
±
.5)
(10.2
±
.5)
.300
±
250VAC
250VAC, res., -30°C
005
.300
3.5
HM6
.008
10A,
to
50x10
3
ops.
0.25
005
55.6
450
5
3.5
55.6
5
450
±
.008
3A,
.300
±
250VAC
.300
005
5
3.5
0.25
±
.2)
55.6
0.25
450
±
.008
M
3A,
.008
+85°C
(7.62
±
(7.62
(7.62
±
.2)
(7.62
±
Contact
.2)
ratings
450
006
6
4.2
80
6
450
4.2
5A 250VAC
006
±
.004
0.3
006
6
4.2
0.3
80
0.3
450
80
.2)
M
5A 250VAC
.300
.004
LM
250VAC
3A, 250VAC
9
0.45
180
450
009
9
6.3
(7.6
±
.1)
0.45
009
180
.300
±
.004
450
6.3
8A
009
9
6.3
(7.6
±
.1)
0.45
180
450
MH(2)
8A 250VAC
±
.1)
DM
250VAC
5A 250VAC
450
12
8.4
0.6
012
320
12
450
8.4
10A
.067
.067
012
12
8.4
0.6
320
0.6
450
320
M(2)
10A 250VAC
.067
012
.067
(1.71)
(1.71)
6
024
(1.71)
operations
8A 250VAC
16.8
(1.71)
LMH(2)
coil
1280
450
24
1.2
024
1280
24
450
16.8
.500
±
1280
1.2
10x10
6
operations
24
16.8
1.2
450
024
hanical endurance, DC
10x10
008
.500
±
.008
.500
±
.008
.008
±
.2)
(12.70
5120
48
±
.004
450
33.6
(12.70
5120
2.4
±
.2)
.100
HM(2),
(12.70
±
.2)
HM6
10A 250VAC
33.6
±
.004
2.4
048
5120
450
.500
±
.004
048
48
±
.004
.100
±
.2)
048
48
33.6
2.4
±
.008
450
±
.500
.004
.1
±
.008
.1
.500
±
.004
.1
±
.1
(2.54 .1)
(2.54 .1)
All figures are given
6
for coil without pre-energization,
(12.7
coil without
given for
±
coil without
ambient temperature
ambient temperature +23°C.
ambient
are
pre-energization, at
pre-energization,
(12.7
±
.1)
(12.7
±
.1)
Mechanical
.716
±
.02
endurance, DC coil
(2.54.008
10x10 operations
All figures
±
are givenat
All figures
temperature +23°C
(2.54
±
.2) .716
±
.02
at
+23°C
(2.54.008
±
.1)
(2.54
±
.2)
for
±
.1)
.716
±
.02
±
.02
±
.2)
±
.2)
±
.5)
(18.2
±
.5)
(18.2
±
.5)
(18.2
±
.5)
cleaning processes. for immersion cleaning processes.
* Not suitable for immersion cleaning processes. for immersion cleaning processes.
* Not suitable
* Not suitable
ith sensitve higher contact rating withend of the part number as indicated in of the part number Information. in step 7 of rating with sensitve higher contact rating withend of the part number as indicated in of the part number
coil, add suffix "H" to the sensitve coil, add suffix "H" to the end step 7 of Ordering as indicated
** For higher contact Ordering Information. add suffix "H" to the sensitve coil, add suffix "H" to the end step 7 of Ordering
TE Connectivity and TE connectivity (logo) are trademarks.
Other products, logos and company namesmentioned herein may be trademarks of their respective owners.
The information given herein, including drawings, illustrations and schematics which are intended for illustration purposes only, is believed to be
reliable. However, TE Connectivity makes no warranties as to its accuracy or completeness and disclaims any liability in connection with its use. TE
Connectivity’s obligations shall only be as set forth in TE Connectivity’s Standard Terms and Conditions of Sale for this product and in no case will TE
Connectivity be liable for any incidental, indirect or consequential damages arising out of the sale, resale, use or misuse of the product. Users of TE
Connectivity products should make their own evaluation to determine the suitability of each such product for the specific application.
I often hear that current microcontrollers integrate multiple ADC cores. By configuring the trigger time of different ADCs, alternate sampling of multiple ADCs can be achieved to increase the sampling...
Machine vision is widely used in many fields such as automatic quality inspection, process control, parameter measurement and automatic assembly. In these systems, the camera is a key component that d...
I saw someone use this in keil, which is to assign a value to a register with an absolute address, but I don't understand how to interpret the two pointers in front. Can an expert help me explain it? ...
[i=s] 本帖最后由 dontium 于 2015-1-23 13:40 编辑 [/i]IntroductionThe 80 PLUS? and Climate Savers Computing? initiativeshave set a very aggressive efficiency standard forputer power supplies. The “Platinum” le...
At present, the development of wireless power supply technology for electric vehicles (EVs) is becoming more and more active. In 2012, Volvo of Sweden established Volvo Technology Japan in Tokyo as...[Details]
Microchip's PIC18F46J50 is a low-power, high-performance 8-bit USB microcontroller (MCU) using nanoWatt XLP technology. The current in deep sleep mode can be as low as 13nA, the operating voltage i...[Details]
Automotive applications are particularly sensitive to EMI events, which are unavoidable in a noisy electrical environment consisting of a central battery, bundled wiring harnesses, various inductiv...[Details]
In order to highlight the concept of "energy saving and environmental protection" of intelligent buildings, solar street lights are designed for intelligent communities. The inclination and capacit...[Details]
In recent years, lighting has become an important area that countries around the world are targeting to promote energy conservation and environmental protection. According to statistics, about 20% ...[Details]
Two simple circuits are implemented to drive two LEDs from a battery powered microprocessor.
This design is based on a circuit that uses three resistors and a microprocessor I/O pin as an input h...[Details]
The data collector of the automatic weather station is generally designed based on a single-chip microcomputer or a PC/104 bus controller. It has the characteristics of good compatibility with PC, low...[Details]
Although it is relatively easy to check the stability of a simple amplifier at lower frequencies, it may be much more difficult to evaluate the stability of a more complex circuit. This artic...[Details]
Editor's note: In order to help technicians or engineers who have knowledge of PIC microcontroller assembly language quickly master the method of using C language to program PIC microcontrollers, t...[Details]
Instrument stepper motor
The stepper motor is an open-loop control element that converts electrical pulse signals into angular displacement or linear displacement. In the case of non...[Details]
Microcalorimetry
is used to determine energy relationships. Microcalorimetry techniques are often required when performing calorimetric experiments with small sample sizes or slow heating rat...[Details]
I. Introduction
Since RS232 has a short communication distance (only 15 meters according to EAT/TAI-232 standard), and can only perform point-to-point communication, it cannot directly f...[Details]
Digital array radar (DAR) uses digital beam forming (DBF) in both receiving and transmitting modes to achieve flexible distribution and reception of RF signal power in the airspace, obtain excellent t...[Details]
12v Lead Acid batteries used in trucks, cars, RVs and uninterruptible power supplies are usually rated at 12V. This circuit monitors the battery, the charge and discharge curves, gives the cu...[Details]
TC9012F is a universal CMOS large-scale integrated circuit for infrared remote control signal transmission, suitable for remote control of TV, VTR, laser player and other equipment. In the market, ...[Details]