SCM030200

S/CON/SCM030200/E/18/12/14
Page 1/5 GB
MOSFET BASED
DC SOLID STATE RELAY
SCM030200
 Latest MOSFET technology generation.
 Ultra low on-state resistance.
 New innovative isolated driver ensuring fast power transistor turn on
and off therefore low power transient.
 Ultra low output leakage current
 Low control current consumption
 Triggered control input to avoid linear control risks
Load voltage range
Load current range
Depends on protection
clamping voltage
(with heatsink)
Fig. 1
0 to 30A
4.5-32VDC
Control voltage range
 Low conducted and radiated disturbances
Max. output peak
voltage
Nom. load current
with heatsink
Control input
voltage range
In & case / Out
Insulation
Connections
4.5-32VDC
4kV
M3 round tabs
M5 round tabs
HIGH SIDE WIRING DIAGRAM
(Load connected to “-“)
200VDC
30ADC
Dimensions
(WxHxD)
Weight
44.5 x 58.2 x 27
100g
(mm)
LOW SIDE WIRING DIAGRAM
(Load connected to “+”)
Fig. 2
(*)See
Instruction
sheet for
selective the
right
protective
components
(*)See Instruction
sheet for selective
the right
protective
components
(Red paths as
short as possible)
Fig. 3
Proud to serve you
Data given at Tambient=40°C and subject to modification without previous notice
(Red paths as
short as
possible)
INTERNAL DIAGRAM
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CONTROL INPUT CHARACTERISTICS
INPUT CIRCUIT
CHARACTERISTIC
LABEL
VALUE
INFO.
Control voltage range
Uc
4.5 – 32VDC
Current consumption
Ic
25 – 42mADC for control voltage range
Typical turn on voltage
Ucontyp
4.3V
Min. releasing voltage
Ucoffmin
1VDC
Typical releasing voltage
Ucofftyp
3.5V
Max. input voltage
Ucmax
32VDC
Max. reverse voltage
-Ucmax
32VDC
Max. reverse leakage current
-Icmax
100µA
Re
Current limitation
Input impedance
See fig. 5
See fig. 5
POWER OUTPUT CHARACTERISTICS
CHARACTERISTIC
LABEL
VALUE
Mains voltage range
Ue
Depends on protection clamping voltage
Non-repetitive peak voltage
Utp
200V
Overvoltage protection
D1
Not integrated
A voltage clamping mean must be connected across the
terminals 1 & 2 (see fig 1 & 2)
Reverse voltage (internal diode)
-Ut
1,5V
Max. repetitive avalanche current
Iep
18A
Max. single pulse avalanche energy
Eep
315mJ
@Ut=50V
@Ie=Iep
Max. repetitive pulse avalanche
energy
Eep
20mJ
@Ie=30A
POWER CIRCUIT
Maximum nominal currents
INFO.
See Instruction
sheet for selective
the right
protective
components
@Ie=-30A
@Uc=0
Pulse width
limited by Tj
max
Resistive
Motor
30A
Please consult us
Ie
See fig. 7 for
limits
Values with
heatsink
Non-repetitive peak overload
current
Iepeak
Min. load current
Iemin
0mA
Ielk
100µADC
@Utp @Tjmax
Max. on-state resistance
RDSon
164m
@Iemax @Tjmax
Typ. output capacitance
Cout
3nF (Ut=1V 1MHz)
Uc=0
Max. leakage current
120A @Ut=7VDC during 1ms
See fig. 8
Junction/case thermal resistance
per power element
Rthjc
0.75K/W
Total = 1
power
element
Built-in heatsink thermal
resistance vertically mounted
Rthra
8K/W
@Tra=60°C
Heatsink thermal time constant
Tthra
10min
@Tra=60°C
Control inputs/power outputs
insulation voltage
Uimp
4kV
Inputs/case insulation voltage
Uimp
4kV
Outputs/case insulation voltage
Uimp
4kV
Rio
1G
Isolation resistance
Isolation capacitance
Maximum junction temperature
Storage ambient temperature
Operating ambient temperature
Max. case temperature
Cio
<8pF
Tjmax
175°C
Tstg
-40->+100°C
Tamb
-40->+90°C
Tc
100°C
See fig. 7
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TIME CHARACTERISTICS
TIME CHARACT.
Fig. 4
TIME DIAGRAMS
CHARACTERISTIC
LABEL
VALUE
INFO.
Turn on time
ton
10µs (1.2µs typical)
Turn on delay
tdon
600µs (500µs typical)
Turn off time
toff
10µs (1µs typical)
Turn off delay
tdoff
100µs (60µs typical)
F(on-off)
700Hz
Max. On-Off frequency
MISC.
CONNECTIONS
GENERAL INFORMATION
Connections
Power
Control
Philips™ NR2
Philips™ NR1
1.8 N.m
0.8 N.m
Insulated crimp terminals (round
tabs, eyelet type)
M5
M3
Display
Green LED
(indicates relay has switched ON)
Housing
UL94V0
Screwdriver advised
Min and max tightening torque
Mounting
2 screws (M4x12mm)
Noise level
No audible noise
Weight
See mounting
sheet
100g
GENERAL
STANDARDS
Standards
Protection level
IP00
Protection against direct touch
None
CE marking
Yes
UL, cULUS
Yes
E.M.C.
IMMUNITY
TYPE OF TEST
E.M.C.
EMISSION
IEC60947-1
STANDARD
LEVEL
E.S.D. (Electrostatic discharges)
EN61000-4-2
Pending
Radiated electromagnetic fields
EN61000-4-3
Pending
Fast transients bursts
EN61000-4-4
4kV coupling by clamp on the input side (power side to be tested)
No effect
Electric chocks
EN61000-4-5
1kV direct coupling on control side (pending on power side)
No effect
Voltage drop
EN61000-4-11
-
Radiated and conducted
disturbances
NFEN55011
Pending
EFFECT
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CHARACTERISTIC CURVES
Fig. 5
INPUT CHARACTERISTIC
Fig. 6
Ic (mADC)
45
ON RESISTANCE VS TEMPERATURE
RDSon
250
(mOhms)
40
200
35
30
@25°C
150
25
20
100
15
10
50
5
0
0
0
2
4
6
8
-50
10 12 14 16 18 20 22 24 26 28 30 32
0
50
Fig. 7
100
150
Junction temperature (°C)
Uc (VDC)
POWER DISSIPATED AND LOAD CURRENT LIMIT VS TEMPERATURE
Permanent current
Ie (ARMS)
Power dissipated
(W)
Please refere to the installation notice for
precautions about mounting the device on a heatsink.
35
201
1.3K/W
1.2K/W
1.1K/W
0.9K/W
0.75K/W
0.55K/W
0.3K/W
0.2K/W
0.1K/W
30
148
25
103
20
65.6
15
36.9
10
16.4
5
4.1
8K/W
4K/W
2.4K/W
2.2K/W
2.1K/W
1.95K/W
1.5K/W
0
0
0
10
20
30
40
50
60
70
80
90
100
110
Ambient temperature (°C)
8K/W = No Heatsink 4K/W = No reference 2.4K/W = WF152100
2.2K/W = WF262100
2.2K/W = WF151200
2.1K/W = WF210000
1.95K/W = WF191100
1.5K/W = WF141100
1.3K/W = WF129100
1.2K/W = WF121000
1.1K/W = WF131100
0.9K/W = WF092000
0.9K/W = WF115100
0.7K/W = WF070000
0.55K/W = WF050000
0.3K/W = WF031100
Fig. 8
CURRENT OVERLOAD CHARACTERISTIC
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DIMENSIONS AND ACCESSORIES
Fig. 9
DIMENSIONS
28
22.8±0,5
28
Ø4.7
M5
2-
4-
3+
47.6
1+
25.8
25.4
5.1
7.5
43.2
58.2
19.6
44.5
M3
TOLERANCES: ± 0.3
Fig.
10
ACCESSORIES
PROTECTIVE COVER 1K470000
®
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5 Rue Ampère B.P. 30004
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E-Mail : [email protected]
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