MSQC4411C - uri=media.digikey

22.07.2002 - (2) Luminous intensity (µcd) = average light output per segment. (3) B = breakdown. ABSOLUTE MAXIMUM RATINGS. (1). (TA = 25°C, unless ...
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0.4 inch (10.2mm) 4 Digit CLOCK STICK DISPLAY Bright Red MSQC4111C High Efficiency MSQC4911C Green MSQC4411C Features

PACKAGE DIMENSIONS

• Bright bold segments 1.582 (40.18)

• Common Anode/Cathode • Low Power Consumption 0.276 (7.0)

0.236 (6.0) 10°

• Low Current Capability • Neutral Segments

0.393 (10.0)

0.400 (10.16)

0.508 (12.90)

• Grey Face • Epoxy Encapsulated PCB • High Performance

0.035 (0.9)

0.120 (3.0)

• High Reliability

1.200 10.16X3=30.5

Applications • Appliances • Automotive

NOTES:

MAN4X11C YWW LL HH

• Instrumentation • Process control

0.700 (2.54X7=17.8)

Notes: • Dimensions are in mm (inches) • Tolerances are ±0.25mm (0.010") unless otherwise stated.

MODELS AVAILABLE Part Number

Color

Description

MSQC4111C

Bright Red

Four Digit, 12/24 hour Clock Display, CA

MSQC4411C

Green

Four Digit, 12/24 hour Clock Display, CA

MSQC4911C

High Efficiency Red

Four Digit, 12/24 hour Clock Display, CA

© 2002 Fairchild Semiconductor Corporation

Page 1 of 7

7/22/02

0.4 inch (10.2mm) 4 Digit CLOCK STICK DISPLAY Bright Red MSQC4111C High Efficiency MSQC4911C Green MSQC4411C ABSOLUTE MAXIMUM RATINGS(1) (TA = 25°C, unless otherwise specified) Part Number Parameter

MSQC411C

MSQC4411C

MSQC4910C

Units

Continuous Forward Current (each segment)

15

25

25

mA

Peak Forward Current (F = 10KHz, D/F = 1/10)

60

100

90

mA

Power Dissipation (PD)

40

75

70

mW

0.17

0.33

0.33

mW

*Derate Linearly from 25°C Reverse Voltage per Die

5 Volts

Operating and Storage Temperature Range

-40°C to +85°C

Lead soldering time (1/16 inch from standoffs)

5 seconds @ 230°C

ELECTRO-OPTICAL CHARACTERISTICS(1) (TA = 25°C, unless otherwise specified) Part Number Parameter

MSQC4111C

MSQC4411C

MSQC4911C

Units

Test Condition

Minimum (Standard Current)

300

800

800

µcd

IF = 20mA

Typical (Standard Current)

700

2000

2000

µcd

IF = 20mA

Luminous intensity(2) (IV)

Minimum (Low Current)

Not Available

Typical (Low Current)

Not Available

Forward Voltage (VF) Typical (Standard Current)

2.10

2.10

2.00

V

IF = 20mA

Maximum (Standard Current)

2.80

2.80

2.80

V

IF = 20mA

nm

IF = 20mA

Typical (Low Current)

Not Available

Maximum (Low Current)

Not Available

Peak Wavelength

695

570

Dominant Wavelength

635 Not Available

Spectral Line 1/2 Width

90

30

45

nm

IF = 10mA

Reverse B(3). Voltage (VR)

5

5

5

V

IR = 100µA

NOTES: (1) Data per individual LED element (2) Luminous intensity (µcd) = average light output per segment (3) B = breakdown

© 2002 Fairchild Semiconductor Corporation

Page 2 of 7

7/22/02

0.4 inch (10.2mm) 4 Digit CLOCK STICK DISPLAY Bright Red MSQC4111C High Efficiency MSQC4911C Green MSQC4411C PIN ORIENTATION, SEGMENT IDENTIFICATION, AND PRODUCT MARKING Pin #9 Digit 1 A F

Digit 3

Digit 4 L3

L1

B

G

E

Digit 2

L2 C

D

DP Part Number Date Code Light Category

MAN4X11C YWW LL HH

Data code

Hue (wavelength) Green only Pin # 8

Pin #1

SCHEMATICS Pin #16 A F E D C

Pin #9 Digit 2 L2

L3 Digit 4

L1 Digit 3

Pin #1

1 Digit 1

A B C D E F G Dp 14 16 13 3 5 11 15 7

© 2002 Fairchild Semiconductor Corporation

2

Pin #8

4

Digit 2

6

10

Digit 3

L1 L2 12

Page 3 of 7

8 Digit 4

L3 9

7/22/02

0.4 inch (10.2mm) 4 Digit CLOCK STICK DISPLAY Bright Red MSQC4111C High Efficiency MSQC4911C Green MSQC4411C GRAPHICAL DATA Bright Red (TA = 25°C, unless otherwise specified) 120 RELATIVE OUTPUT - %

FORWARD CURRENT IF = mA

50 40 30 20 10 0 1.2

2.0

1.6

2.4

100 80 60 40 20 0 600

2.8

640

680

720

760

FORWARD VOLTAGE (VF) - VOLTS

WAVELENGTH (λ) - nm

Fig. 1 FORWARD CURRENT VS. FORWARD VOLTAGE

Fig. 2 SPECTRAL RESPONSE

LUMINOUS INTENSITY RELATIVE TO VALUE AT = 20 mA

LUMINOUS INTENSITY RELATIVE TO VALUE AT = 20 mA

2.5 2.25 2.0 1.5 1.25 1.0 0.5 0.25 0 0

10

20

30

40

50

2

1.5

1 10

IF - FORWARD CURRENT - mA

20

40

DC

DUTY CYCLE % PER SEGMENT (AVERAGE IF = 10mA)

Fig. 3 RELATIVE LUMINOUS INTENSITY VS. FORWARD CURRENT

Fig. 5 LUMINOUS INTENSITY VS. DUTY CYCLE

35

1000

30 500 25 PEAK IP-MA

IDCMAX-MAXIMUM DC CURRENT-mA

800

20 15 10 5

200 100 75 50 25 10

0 -40

-20

0

20

30

60

1

80 100

3 5

10

20 50

100

TA - AMBIENT TEMPERATURE °C

DUTY CYCLE %

Fig. 4 MAXIMUM ALLOWABLE DC CURRENT PER SEGMENT VS. A FUNCTION OF AMBIENT TEMPERATURE

Fig. 6 MAX PEAK CURRENT VS. DUTY CYCLE % (REFRESH RATE f = 1 KHz)

© 2002 Fairchild Semiconductor Corporation

Page 4 of 7

7/22/02

0.4 inch (10.2mm) 4 Digit CLOCK STICK DISPLAY Bright Red MSQC4111C High Efficiency MSQC4911C Green MSQC4411C GRAPHICAL DATA Green (TA = 25°C, unless otherwise specified) 120

40

RELATIVE OUTPUT - %

FORWARD CURRENT IF = mA

50

30 20 10

100 80 60 40 20

0 1.2

2.0

1.6

2.4

0 520

2.8

560

FORWARD VOLTAGE (VF) - VOLTS

LUMINOUS INTENSITY RELATIVE TO VALUE AT = 20 mA

LUMINOUS INTENSITY RELATIVE TO VALUE AT = 20 mA

2.5

2.0 1.5 1.25 1.0 0.5 0.25 0 20

30

40

680

720

Fig. 2 SPECTRAL RESPONSE

2.25

10

640

WAVELENGTH (λ) - nm

Fig. 1 FORWARD CURRENT VS. FORWARD VOLTAGE

0

600

50

2

1.5

1 10

IF - FORWARD CURRENT - mA

20

40

DC

DUTY CYCLE % PER SEGMENT (AVERAGE IF = 10mA)

Fig. 3 RELATIVE LUMINOUS INTENSITY VS. FORWARD CURRENT

35

1000

30 500 25 20

PEAK IP-MA

IDCMAX-MAXIMUM DC CURRENT-mA

Fig. 5 LUMINOUS INTENSITY VS. DUTY CYCLE

15 10 5

200 100 75 50 25

0

10 -40 -20

0

20

40

60

1 3 5

80 100

10

20 50

100

TA - AMBIENT TEMPERATURE °C

DUTY CYCLE %

Fig. 4 MAXIMUM ALLOWABLE DC CURRENT PER SEGMENT VS. A FUNCTION OF AMBIENT TEMPERATURE

Fig. 6 MAX PEAK CURRENT VS. DUTY CYCLE % (REFRESH RATE f = 1 KHz)

© 2002 Fairchild Semiconductor Corporation

Page 5 of 7

7/22/02

0.4 inch (10.2mm) 4 Digit CLOCK STICK DISPLAY Bright Red MSQC4111C High Efficiency MSQC4911C Green MSQC4411C

50

120

40

RELATIVE OUTPUT - %

FORWARD CURRENT IF = mA

GRAPHICAL DATA High Efficiency Red (TA = 25°C, unless otherwise specified)

30 20 10 0 1.2

1.6

2.0

2.4

100 80 60 40 20 0 520

2.8

560

600

640

680

720

FORWARD VOLTAGE (VF) - VOLTS WAVELENGTH (λ) - nm

Fig. 1 FORWARD CURRENT VS. FORWARD VOLTAGE

Fig. 2 SPECTRAL RESPONSE

LUMINOUS INTENSITY RELATIVE TO VALUE AT = 20 mA

LUMINOUS INTENSITY RELATIVE TO VALUE AT = 20 mA

2.5 2.25 2.0 1.5 1.25 1.0 0.5 0.25 0 0

20

10

30

40

50

2

1.5

1 10

IF - FORWARD CURRENT - mA

20

40

DC

DUTY CYCLE % PER SEGMENT (AVERAGE IF = 10mA)

Fig. 3 RELATIVE LUMINOUS INTENSITY VS. FORWARD CURRENT

1000

35 30

500 25 PEAK IP-MA

IDCMAX-MAXIMUM DC CURRENT-mA

Fig. 5 LUMINOUS INTENSITY VS. DUTY CYCLE

20 15 10

200 100 75 50

5

25 10

0 -40

-20

0

20

40

60

1

80 100

3

5

10

20 50

100

TA - AMBIENT TEMPERATURE °C

DUTY CYCLE %

Fig. 4 MAXIMUM ALLOWABLE DC CURRENT PER SEGMENT VS. A FUNCTION OF AMBIENT TEMPERATURE

Fig. 6 MAX PEAK CURRENT VS. DUTY CYCLE % (REFRESH RATE f = 1 KHz)

© 2002 Fairchild Semiconductor Corporation

Page 6 of 7

7/22/02

0.4 inch (10.2mm) 4 Digit CLOCK STICK DISPLAY Bright Red MSQC4111C High Efficiency MSQC4911C Green MSQC4411C DISCLAIMER FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY, FUNCTION OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS. LIFE SUPPORT POLICY FAIRCHILD’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF FAIRCHILD SEMICONDUCTOR CORPORATION. As used herein: 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, and (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in a significant injury of the user.

© 2002 Fairchild Semiconductor Corporation

2. A critical component in any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness.

Page 7 of 7

7/22/02