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ICS85322AM 参数 Datasheet PDF下载

ICS85322AM图片预览
型号: ICS85322AM
PDF下载: 下载PDF文件 查看货源
内容描述: 双LVCMOS / LVTTL到差分2.5V / 3.3V LVPECL译者 [DUAL LVCMOS/LVTTL-TO-DIFFERENTIAL 2.5V/3.3V LVPECL TRANSLATOR]
分类和应用: 锁存器接口集成电路光电二极管
文件页数/大小: 13 页 / 127 K
品牌: ICS [ INTEGRATED CIRCUIT SYSTEMS ]
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Integrated
Circuit
Systems, Inc.
D
UAL
LVCMOS / LVTTL-
TO
-D
IFFERENTIAL
2.5V / 3.3V LVPECL T
RANSLATOR
P
OWER
C
ONSIDERATIONS
ICS85322
This section provides information on power dissipation and junction temperature for the ICS85322.
Equations and example calculations are also provided.
1. Power Dissipation.
The total power dissipation for the ICS85322 is the sum of the core power plus the power dissipated in the load(s).
The following is the power dissipation for V
CC
= 3.3V + 5% = 3.465V, which gives worst case results.
NOTE:
Please refer to Section 3 for details on calculating power dissipated in the load.
Power (core)
MAX
= V
CC_MAX
* I
EE_MAX
= 3.465V * 25mA =
86.6mW
Power (outputs)
MAX
=
30.2mW/Loaded Output pair
If all outputs are loaded, the total power is 2 * 30.2mW =
60.4mW
Total Power
_MAX
(3.465V, with all outputs switching) = 86.6mW + 60.4mW =
147mW
2. Junction Temperature.
Junction temperature, Tj, is the temperature at the junction of the bond wire and bond pad and directly affects the reliability of the
device. The maximum recommended junction temperature for HiPerClockS
TM
devices is 125°C.
The equation for Tj is as follows: Tj =
θ
JA
* Pd_total + T
A
Tj = Junction Temperature
θ
JA
= junction-to-ambient thermal resistance
Pd_total = Total device power dissipation (example calculation is in section 1 above)
T
A
= Ambient Temperature
In order to calculate junction temperature, the appropriate junction-to-ambient thermal resistance
θ
JA
must be used . Assuming a
moderate air flow of 200 linear feet per minute and a multi-layer board, the appropriate value is 103.3°C/W per Table 5 below.
Therefore, Tj for an ambient temperature of 70°C with all outputs switching is:
70°C + 0.147W * 103.3°C/W = 85.2°C. This is well below the limit of 125°C
This calculation is only an example. Tj will obviously vary depending on the number of loaded outputs, supply voltage, air flow,
and the type of board (single layer or multi-layer).
Table 5. Thermal Resistance
q
JA
for 8-pin SOIC, Forced Convection
q
JA
by Velocity (Linear Feet per Minute)
0
Single-Layer PCB, JEDEC Standard Test Boards 153.3°C/W
Multi-Layer PCB, JEDEC Standard Test Boards
112.7°C/W
200
128.5°C/W
103.3°C/W
500
115.5°C/W
97.1°C/W
NOTE:
Most modern PCB designs use multi-layered boards. The data in the second row pertains to most designs.
85322AM
www.icst.com/products/hiperclocks.html
9
REV. A JULY 31, 2001