MV53164, MV54164, MV57164 Yellow, High Efficiency Green, High Efficiency Red Bargraph Displays
January 2005
MV53164, MV54164, MV57164
Yellow, High Efficiency Green, High Efficiency Red
Bargraph Displays
Features
■
Large segment, closely spaced
■
End-stackable
■
Fast switching—excellent for multiplexing
■
Low power consumption
■
Directly compatible with IC’s
■
Wide viewing angle
■
Standard .3-inch DIP lead spacing
■
Categorized for Luminous Intensity (See Note 1)
Description
The MV5X164 series is a 10 segment bargraph display with
separate anodes and cathodes for each light segment. The
pagckages are end-stackable.
Package Dimensions
.070"
(1.78mm)
±.002"
.100"
(2.54mm)
±.010"
.200"
(5.08mm)
±.003"
.400" MAX
(10.16mm)
.011"
(0.28mm)
±.003"
CHAM TO
INDICATE
PIN #1
1.005" MAX
(25.527mm)
PART NO.
DATE CODE
LIGHT INTENSITY
CATEGORY
MV5X164
XYY
Z
.315"
(8.00mm)
±.005"
.010"
(0.25mm)
±.002"
.160"
(4.06mm)
±.015"
.050"
(1.27mm)
.020" TYP
(0.51mm)
.100"
(2.54mm)
±.010"
.300"
(7.62mm)
±.010"
NOTE: Tolerances
±0.10"
unless otherwise specified.
©2005 Fairchild Semiconductor Corporation
1
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MV53164, MV54164, MV57164 Rev. 1.0.0
MV53164, MV54164, MV57164 Yellow, High Efficiency Green, High Efficiency Red Bargraph Displays
Absolute Maximum Ratings
Parameter
Power dissipation at 25°C ambient
Derate linearly from 50°C
Storage and operating temperature
Continuous forward current
Total
Per segment
Reverse voltage
Per segment
Soldering time at 260°C (See Notes 3 and 5)
MV53164
750 mW
–14.3 mW/°C
–40°C to +85°C
200 mA
25 mA
6.0 V
5 sec.
MV54164
750 mW
–14.3 mW/°C
–40°C to +85°C
300 mA
30 mA
6.0 V
5 sec.
MV57164
750 mW
–14.3 mW/°C
–40°C to +85°C
300 mA
30 mA
6.0 V
5 sec.
Typical Thermal Characteristics
Parameter
Thermal resistance junction to free air
Φ
JA
Wavelength temperature coefficient (case temp.)
Forward voltage temperature coefficient
MV53164
160°C/W
1.0 A/°C
–1.5 mV/°C
MV54164
160°C/W
1.0 A/°C
–1.4 mV/°C
MV57164
160°C/W
1.0 A/°C
–2.0 mV/°C
Electro-Optical Characteristics
(25°C Free Air Temperature Unless Otherwise Specified)
Parameter
Forward voltage MV53164, MV57164/MV54164
Luminous Intensity (unit average) (See Note 1)
Pulsed Luminous Intensity (MV54164)
Peak emission wavelength
MV53164
MV54164
MV57164
Spectral line half width
MV53164, MV57164/MV54164
Dynamic resistance Segment
MV53164, MV57154/MV54164
Capacitance MV53164, MV57164/MV54164
Switching time
Reverse voltage
I
F
= 20 mA
V = 0, f = 1 MHz
I
F
= 10 mA
I
R
= 100 µA
6.0
Test Conditions
I
F
= 10 mA
I
F
= 10 mA
I
F
= 60 mA, peak; 1:6 DF
Min.
510
710
Typ.
2.0/2.2
1800
2500
585
562
630
40/30
26/12
35/40
500
Max.
2.5/3.0
Units
V
µcd
µcd
nm
nm
nm
nm
Ω
pF
ns
2
MV53164, MV54164, MV57164 Rev. 1.0.0
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MV53164, MV54164, MV57164 Yellow, High Efficiency Green, High Efficiency Red Bargraph Displays
Typical Drive Circuit
TYPICAL DRIVE CIRCUIT
V+
R
HI
10
11
REF
OUT 7
R
B
REF
ADJ 8
12
RVS
1.2V
13
14
15
BAR OR
9
SINGLE
LED
CONTROL
+
V
CC
3
5
–
+
6
11
12
13
14
15
16
17
18
19
20
I
LED
10
9
8
7
6
5
4
3
2
1
16
MSA
17
18
1
–
+ B
SIGNAL
IN
R
LO
4
2
v
LM3914
RVS:
MSA:
B:
R
B
:
REFERENCE VOLTAGE SOURCE
MODE SELECT AMPLIFIER
BUFFER
LED BRIGHTNESS CONTROL
MV54164
Pin Connections
Pin
No.
1
2
3
4
5
Electrical
Connections
Bar 1 Anode
Bar 2 Anode
Bar 3 Anode
Bar 4 Anode
Bar 5 Anode
Pin
No.
6
7
8
9
10
Electrical
Connections
Bar 6 Anode
Bar 7 Anode
Bar 8 Anode
Bar 9 Anode
Bar 10 Anode
Pin
No.
11
12
13
14
15
Electrical
Connections
Bar 10 Cathode
Bar 9 Cathode
Bar 8 Cathode
Bar 7 Cathode
Bar 6 Cathode
Pin
No.
16
17
18
19
20
Electrical
Connections
Bar 5 Cathode
Bar 4 Cathode
Bar 3 Cathode
Bar 2 Cathode
Bar 1 Cathode
3
MV53164, MV54164, MV57164 Rev. 1.0.0
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MV53164, MV54164, MV57164 Yellow, High Efficiency Green, High Efficiency Red Bargraph Displays
Typical Curves
MV53164, MV54164, MV57164 (Per Segment) (25°C Free Air Temperature)
100
RELATIVE LUMINOUS INTENSITY
90
FORWARD CURRENT (I
F
) – mA
80
70
60
50
MV54164
40
30
20
10
0
.4
.8 1.2 1.6 2.0 2.4 2.8 3.2 3.6 4.0
0
5
10
15
20
25
30
MV57164
MV53164
NORMALIZED AT IF = 10 mA
3.0
GREEN
2.0
YELLOW
&
HER
4.0
1.0
FORWARD VOLTAGE (V
F
) – VOLTS
DC FORWARD CURRENT — I
F
(mA)
Fig. 1. Forward Current vs.
Forward Voltage
Fig. 2. Relative Luminous Intensity vs.
DC Forward Current
(Both LED Chips ON)
1000
800
500
RELATIVE INTENSITY
FREQUENCY = 200 pps
MV5X164 SERIES
PEAK I
F
= mA
200
100
80
50
2
MV57164
FREQ = 200 pps
40
DC
10
20
50
DC
1.5
MV53164
20
1
10
10
1
3
5
10
20
50
100
DUTY CYCLE = %
20
PERCENT DUTY – %
DUTY CYCLE – %
I
F
per seg. 10 mA AVERAGE
Fig. 3. Max Peak Current vs.
Duty Cycle
1000
800
600
MAXIMUM PEAK CURRENT (mA)
400
MV54164
200
100
80
60
40
20
10
3.
0
1.
0
30
10
Fig. 4. Luminous Intensity vs.
Duty Cycle
4.0
I
F (AVG)
= 20 mA
10 mA
5 mA
2.5 mA
RELATIVE EFFICIENCY
I
L
at drive/I
L
at 10 mA DC
3.0
KH
z
KH
z
KH
z
0
Hz
0
2.0
Hz
1.0
MV54164
10
10
0.0
100
1000
10,000
2.0
5.0
% DUTY CYCLE
PULSE DURATION |µS|
Fig. 5. Maximum Peak Current vs.
Pulse Duration
Fig. 6. Relative Efficiency vs.
Duty Cycle
4
MV53164, MV54164, MV57164 Rev. 1.0.0
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MV53164, MV54164, MV57164 Yellow, High Efficiency Green, High Efficiency Red Bargraph Displays
Filter Recommendations
For optimum ON and OFF contrast, one of the following filters or equivalents may be used over the lamp:
MV53164
Panelgraphic Yellow 25 or Amber 23
Homalite 190—1720 or 100—1726
MV54164
Panelgraphic Green 48
Homalite 100—1440 Green
MV57164
Panelgraphic Red 60
Homalite 100—1605
In situations of high ambient light, a neutral density filter can be used to achieve greater contrast:
Panelgraphic Grey 10
Panelgraphic Grey 10
Homalite 100—1266 Grey
Notes
1. The average Luminous Intensity is obtained by summing the Luminous Intensity of each segment and dividing by
the total number of segments. The standard of measurement is the Photo Research Corp. “Spectra” Microcandela
Meter (Model IV-D) corrected for wavelength. Intensity will not vary more than ±33.3% between all segments within
a unit.
2. Leads immersed to 1/16 inch (1.6 mm) from the body of the device. Maximum unit surface temperature is 140°C.
3. All units are categorized for Luminous Intensity. The Intensity category is marked on each part as a suffix letter to
the part number.
4. For flux removal, Freon TF, Freon TE, isoproponal or water may be used to their boiling points.
5
MV53164, MV54164, MV57164 Rev. 1.0.0
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