LMH6554LE NSC [National Semiconductor], LMH6554LE Datasheet - Page 4

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LMH6554LE

Manufacturer Part Number
LMH6554LE
Description
2.8 GHz Ultra Linear Fully Differential Amplifier
Manufacturer
NSC [National Semiconductor]
Datasheet
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is
intended to be functional, but specific performance is not guaranteed. For guaranteed specifications, see the Electrical Characteristics tables.
Note 2: Electrical Table values apply only for factory testing conditions at the temperature indicated. Factory testing conditions result in very limited self-heating
of the device such that T
= T
. No guarantee of parametric performance is indicated in the electrical tables under conditions of internal self-heating where
J
A
T
> T
. See Applications Section for information on temperature de-rating of this device." Min/Max ratings are based on product characterization and simulation.
J
A
Individual parameters are tested as noted.
, θ
Note 3: The maximum power dissipation is a function of T
. The maximum allowable power dissipation at any ambient temperature is
J(MAX)
JA
) / θ
P
= (T
– T
. All numbers apply for packages soldered directly onto a PC Board.
D
J(MAX)
A
JA
Note 4: The maximum output current (I
) is determined by device power dissipation limitations. See the Power Dissipation section of the Application Section
OUT
for more details.
Note 5: Human Body Model, applicable std. MIL-STD-883, Method 30157. Machine Model, applicable std. JESD22-A115-A (ESD MM std. of JEDEC). Field-
Induced Charge-Device Model, applicable std. JESD22-C101-C (ESD FICDM std. of JEDEC).
Note 6: Short circuit current should be limited in duration to no more than 10 seconds. See the Power Dissipation section of the Application Information for more
details.
Note 7: Typical values represent the most likely parametric norm as determined at the time of characterization. Actual typical values may vary over time and will
also depend on the application and configuration. The typical values are not tested and are not guaranteed on shipped production material.
Note 8: Limits are 100% production tested at 25°C. Limits over the operating temperature range are guaranteed through correlation using Statistical Quality
Control (SQC) methods.
Note 9: Negative input current implies current flowing out of the device.
Note 10: I
is referred to a differential output offset voltage by the following relationship: V
= I
*2R
BI
OD(OFFSET)
BI
F
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