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TS68302MA16 データシート(PDF) 8 Page - ATMEL Corporation

部品番号 TS68302MA16
部品情報  Integrated Multiprotocol Processor IMP
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メーカー  ATMEL [ATMEL Corporation]
ホームページ  http://www.atmel.com
Logo ATMEL - ATMEL Corporation

TS68302MA16 データシート(HTML) 8 Page - ATMEL Corporation

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8
TS68302
2117A–HIREL–11/02
This device contains protective circuitry to protect the inputs against damage due to high
static voltages or electrical fields; however, it is advised that normal precautions be
taken to avoid application of any voltages higher than maximum-rated voltages to this
high-impedance circuit. Reliability of operation is enhanced if unused inputs are tied to
an appropriate logic voltage level (e.g., either GND or V
DD).
Figure 5. Clock Input Timing Diagram
Note:
Timing measurements are referenced to and from a low voltage of 0.8V and a voltage of 2.0V, unless otherwise noted. The volt-
age swing through this range should start outside, and pass through, the range such that the rise or fall will be linear between
0.8V and 2.0V.
Power Considerations
The average chip-junction temperature, TJ, in °C can be obtained from:
TJ = TA + (PD ⋅ θJA)
(1)
TA = Ambient Temperature, °C
θ
JA = Package Thermal Resistance, Junction-to-Ambient, °C/W
PD = PINT + PI/O
PINT = ICC ⋅ VCC, Watts - Chip Internal Power
PI/O = Power Dissipation on Input and Output pins - user determined
Note:
For T
A = 70°C and PD = 0.5 W at 12.5 MHz Tj = 88°C.
For most applications P
I/O < 0,30 PINT and can be neglected.
An approximate relationship between P
D and TJ (if PI/O is neglected) is:
P
D = K ÷ (TJ + 273)
(2)
Solving equations (1) and (2) for K gives:
K = P
D ⋅ (TA + 273) + θJA ⋅ PD2
(3)
where K is a constant pertaining to the particular part. K can be determined from equa-
tion (3) by measuring P
D (at equilibrium) for a known TA. Using this value of K, the
values of P
D and TJ can be obtained by solving equations (1) and (2) iteratively for any
value of T
A.
2.0V
0.8V
tr (C)
tf (C)
tcyc
Table 4. Thermal Characteristics at 25°C
Package
Symbol
Parameter
Value
Unit
PGA 132
θ
JA
θ
JC
Thermal Resistance - Ceramic Junction To Ambient
Thermal Resistance - Ceramic Junction To Case
33
5
°C/W
°C/W
CERQUAD 132
θ
JA
θ
JC
Thermal Resistance - Ceramic Junction To Ambient
Thermal Resistance - Ceramic Junction To Case
46
2
°C/W
°C/W


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