UNISONIC TECHNOLOGIES CO., LTD
M54123L
EARTH LEAKAGE CURRENT
DETECTOR
SOP-8
DESCRIPTION
LINEAR INTEGRATED CIRCUIT
The UTC
M54123L
is a semiconductor integrated circuit with
amplifier for a high-speed earth leakage circuit breaker.
For the amplifying parts of earth leakage circuit breaker, the
UTC
M54123L
consists of differential amplifier, latch circuit and
voltage regulator.
In normal operating, the UTC
M54123L
should be connected to
the secondary side of the ZCT (zero current transformers). Here
the ZCT detects leakage current different amplifiers’ both input.
Then the signals which have been amplified are integrated by
an external capacitor. The integrated signal connects to the input
terminal of latch circuit whose output is suitable for the
characteristics of high- speed earth leakage circuit breaker.
Until the input voltage reaches the fixed level, latch circuit
doesn’t become high. Then drives a thyristor which is connected to
latch circuit’s output terminal. Once the trigger latch circuit, only the
power on again to reset.
DIP-8
SIP-8
FEATURES
* With good input sensitivity current temperature characteristics
* High input sensitivity :V
T
=6.1mV (Typ.)
* Only need low external component count
* High noise and surge-proof
* Low power dissipation :P
D
=5mW (Typ.)
* May be used both as 100V and 200V.
* Wide temperature range : from -20 °C to +80°C
ORDERING INFORMATION
Order Number
Lead Free
M54123LK-D08-T
M54123LK-G08-T
-
Halogen Free
M54123LG-D08-T
M54123LG-G08-T
M54123LG-S08-R
Package
DIP-8
SIP-8
SOP-8
Packing
Tube
Tube
Tape Reel
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QW-R122-001.F
M54123L
MARKING
DIP-8
SIP-8
LINEAR INTEGRATED CIRCUIT
SOP-8
PIN CONFIGURATIONS
V
R
IN
GND
1
2
3
4
5
6
7
8
O
D
4
5
S
C
1
2
3
8
7
6
V
S
O
S
N
R
SIP-8
DIP-8 / SOP-8
PIN DESCRIPTION
PIN NO.
1
2
3
4
5
6
7
8
PIN NAME
V
R
IN
GND
O
D
S
C
N
R
O
S
V
S
DESCRIPTION
Reference voltage terminal
Input terminal
Ground
Differential amplifier output terminal
Latch input terminal
Terminal for noise absorption
Output terminal
Supply voltage terminal
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QW-R122-001.F
M54123L
BLOCK DIAGRAM
VR
Reference Voltage
1
Vs
8
Reference Voltage Generator
LINEAR INTEGRATED CIRCUIT
Latch Circuit
7
Os Output
+
AMP
-
6
N
R
Terminal for
Noise Absorption
GND
3
2
IN
Input
4
O
D
Differential
Amplifier Output
5
Sc
Latch
Input
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QW-R122-001.F
M54123L
PARAMETER
SYMBOL
I
S
LINEAR INTEGRATED CIRCUIT
ABSOLUTE MAXIMUM RATING
(unless otherwise specified)
RATINGS
UNIT
Supply Current
8
mA
Between V
R
-IN (Note 2)
250
mA
V
R
Pin Current
I
VR
Between V
R
-GND
30
mA
Between IN-V
R
(Note 2)
-250
mA
Between IN-V
R
(Note 2)
250
mA
IN Terminal Current
I
IN
Between IN-GND
30
mA
Between V
R
-IN (Note 2)
-250
mA
S
C
Terminal Current
I
SC
5
mA
Power Dissipation
P
D
200
mW
Operating Temperature
T
OPR
-20~ +80
°C
Storage Temperature
T
STG
-55~ +125
°C
Notes: 1. Absolute maximum ratings are those values beyond which the device could be permanently damaged.
Absolute maximum ratings are stress ratings only and functional device operation is not implied.
2. Current value between V
R
and IN, and between IN and V
R
is less than 1ms in the pulse width, and duty
cycle is less than 12%, In applying AC current continuously, it is 100 mA in the off-state.
RECOMMENDED OPERATING CONDITIONS
(unless otherwise specified)
SYMBOL
V
S
C
VS
C
OS
MIN
12
1
TYP
MAX
UNIT
V
μF
μF
PARAMETER
Supply Voltage When Latch Circuit Is Off-State
External Capacitor Between Vs and GND
External Capacitor Between Os and GND
1
ELECTRICAL CHARACTERISTICS
(T
A
=-20~+80°C, unless otherwise specified)
PARAMETER
SYMBOL
I
S1
V
T
I
TD1
I
TD2
I
O
V
SC(ON)
I
SC(ON)
I
OSL
V
IC
V
IDC
V
SM
I
S2
V
S(OFF)
T
ON
TEST CONDITIONS
T
A
=-20°C
V
S
=12V,V
R
-V
I
=30mV
T
A
=25°C
(See Test Circuit 1)
T
A
=80°C
V
S
=16V, V
R
-V
I
, T
A
=-20~+80°C
(Note2) (See Test Circuit 2)
V
S
=16V, V
R
-V
I
=30mV, V
OD
=1.2V, T
A
=25°C
(See Test Circuit 3)
V
S
=16V, short circuit between V
R
and V
I
,
V
OD
=0.8V, T
A
=25°C (See Test Circuit 4)
I
S1
=580μA,T
A
=-20°C
V
SC
=1.4V,V
OS
=0.8V
I
S1
=530μA,T
A
=25°C
(See Test Circuit 5)
I
S1
=480μA,T
A
=80°C
V
S
=16V, T
A
=25°C (See Test Circuit 6)
V
S
=12V, T
A
=25°C (See Test Circuit 7)
V
S
=12V,V
OSL
=0.2V, T
A
=-20~+80°C
(See Test Circuit 8)
V
S
=12V, I
IC
=20mA, T
A
=-20~+80°C
(See Test Circuit 9)
I
IDC
=100mA, T
A
=-20~+80°C
(See Test Circuit 10)
I
SM
=7mA, T
A
=25°C (See Test Circuit 11)
V
R
-V
I
, V
OS
=0.6V, T
A
=-20~+80°C
(Note 5) (See Test Circuit 12)
T
A
=25°C (See Test Circuit 13)
V
S
=16V,V
R
-V
I
=0.3V, T
A
=25°C
(See Test Circuit 14)
MIN
TYP
400
4
-12
17
-200
-100
-75
0.7
200
4.3
0.4
20
6.7
2
28
1100
0.5
2
4
6.1
MAX
580
530
480
9
-30
37
UNIT
μA
μA
μA
mVrms
μA
μA
μA
μA
μA
V
μA
μA
V
V
V
μA
V
ms
Supply Current
Trip Voltage
Timed Current1
Timed Current2
Output Current
S
C
“ON” Voltage (Note3)
S
C
Input Current
Output Low-Level Current
Input Clamp Voltage
Differential Input Clamp
Voltage
Maximum Current Voltage
Supply Current 2(Note 4)
Latch Circuit is Off-State
Supply Voltage (Note6)
Operating Time (Note 7)
1.4
5
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M54123L
ELECTRICAL CHARACTERISTICS (Cont.)
LINEAR INTEGRATED CIRCUIT
Notes: 1. Typical values are at T
A
=25°C
2. When standard value of voltage (60Hz) between V
R
and V
I
is minimum, and output O
S
is low-level, or
when standard value of voltage (60Hz) between V
R
and V
I
is maximum, and output O
S
is high-level, it is
considered as a good one.
3. When standard value of voltage V
SC(ON)
is minimum, and output O
S
is low-level, or when standard value of
voltage V
SC(ON)
is maximum, and output O
S
is high-level, it is considered as a good one.
4. Supply current 2 is necessary to keep high in output O
S
.
5. After applying 30mV between V
R
and V
I
and shorting between them, it is considered as a good one if
standard value of IGT flows out of output O
S.
6. After supply voltage applies 12V and output O
S
is high-level, it is considered as a good one in the
standard value of supply voltage and in the low-level of output O
S
.
7. Operating time is a time from applying fixed input till operating latch circuit in 0.047μF between O
D
and
GND.
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