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VSC7923KF 数据表(PDF) 4 Page - Vitesse Semiconductor Corporation

部件名 VSC7923KF
功能描述  SONET/SDH 2.5Gb/s Laser Diode Driver
PDF  14 Pages
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制造商  VITESSE [Vitesse Semiconductor Corporation]
网页  http://www.vitesse.com
标志 VITESSE - Vitesse Semiconductor Corporation

VSC7923KF 数据表(HTML) 4 Page - Vitesse Semiconductor Corporation

  VSC7923KF Datasheet HTML 1Page - Vitesse Semiconductor Corporation VSC7923KF Datasheet HTML 2Page - Vitesse Semiconductor Corporation VSC7923KF Datasheet HTML 3Page - Vitesse Semiconductor Corporation VSC7923KF Datasheet HTML 4Page - Vitesse Semiconductor Corporation VSC7923KF Datasheet HTML 5Page - Vitesse Semiconductor Corporation VSC7923KF Datasheet HTML 6Page - Vitesse Semiconductor Corporation VSC7923KF Datasheet HTML 7Page - Vitesse Semiconductor Corporation VSC7923KF Datasheet HTML 8Page - Vitesse Semiconductor Corporation VSC7923KF Datasheet HTML 9Page - Vitesse Semiconductor Corporation Next Button
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VITESSE
SEMICONDUCTOR CORPORATION
Preliminary Data Sheet
VSC7923
SONET/SDH 2.5Gb/s Laser Diode Driver
Page 4
G52203-0, Rev 3.0
05/11/01
© VITESSE SEMICONDUCTOR CORPORATION • 741 Calle Plano • Camarillo, CA 93012
Tel: (800) VITESSE • FAX: (805) 987-5896 • Email: prodinfo@vitesse.com
Internet: www.vitesse.com
Calculation of the Maximum Case Temperature
The VSC7923 is designed to operate with a maximum junction temperature of 125°C. The rise from the case to
junction is determined by the power dissipation of the device. The power dissipation is determined by the VSS
current plus the operating IMOD and IBIAS currents.
The power of the chip is determined by the following formula:
PD=(-VSS * ISS) + ((VIOUT – VSS) * IMOD) + ((VIBIAS – VSS) * IBIAS)
For example with:
VSS
= -5.2V
IMOD
= 40mA
IBIAS
= 20mA
VIBIAS
= -2.0V
VIOUT
= -2.0V
PD = 5.2 * 220mA) + ((5.2 - 2.0) * 40mA) + ((5.2-- 2.0) * 20mA)
PD = 1144mW + 128mW + 64mW = 1.336W
The thermal rise from junction to case is
θ
JC * PD. For the metal glass package, θJC = 32 °C/W. Thus the ther-
mal rise is:
32°C/W * 1.336W = 42.7°C
The maximum case temperature is:
125°C – 42.7°C = 82.3°C
The absolute maximum power dissipation of the device is at:
VSS
=-5.5V
IMOD
=60mA
IBIAS
=50mA
VIBIAS =0V
VIOUT
=0V
PD = (5.5 * 220mA) + (5.5 * 60mA) + (5.5mA * 50mA)
PD = 1.815W
This will net a maximum junction to case thermal rise of: 1.815W * 32°C/W = 58°C
This situation will allow maximum case temperature of: 125°C – 58°C = 67°C



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