AT-31033 Agilent(Hewlett-Packard), AT-31033 Datasheet - Page 2

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AT-31033

Manufacturer Part Number
AT-31033
Description
Low Current/ High Performance NPN Silicon Bipolar Transistor
Manufacturer
Agilent(Hewlett-Packard)
Datasheet

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AT-31011, AT-31033 Absolute Maximum Ratings
Notes:
1. Operation of this device above any one of these parameters may cause permanent damage.
2. T
3. Derate at 1.82 mW/ C for T
Electrical Specifications, T
Notes:
1. Test circuit B, Figure 1. Numbers reflect device performance de-embedded from circuit losses.
2. Test circuit A, Figure 1. Numbers reflect device performance de-embedded from circuit losses.
Figure 1. Test Circuit for Noise Figure and Associated Gain. This Circuit is a
Compromise Match Between Best Noise Figure, Best Gain, Stability, a Practical,
Synthesizable Match, and a Circuit Capable of Matching Both the AT-305 and AT-310
Geometries.
W = 10 L = 1000
TEST CIRCUIT
BOARD MATL = 0.062" FR-4 ( = 4.8)
DIMENSIONS IN MILS
Symbol
Symbol
Input loss = 0.4 dB; output loss = 0.4 dB.
Input loss = 0.4 dB; output loss = 0.4 dB.
1000 pF
Mounting Surface
V
V
V
T
I
I
h
NF
G
CBO
EBO
P
EBO
CBO
CEO
I
T
STG
FE
C
T
A
j
V
BB
Emitter-Base Voltage
Collector-Base Voltage
Collector-Emitter Voltage
Collector Current
Power Dissipation
Junction Temperature
Storage Temperature
Noise Figure
V
Associated Gain
V
Forward Current
Transfer Ratio
Collector Cutoff Current
Emitter Cutoff Current
CE
= 25 C.
CE
W = 10 L = 1860
= 2.7 V, I
= 2.7 V, I
Parameters and Test Conditions
Parameter
W = 30 L = 100
C
C
> 67.5 C.
C
= 1 mA
= 1 mA
[2,3]
A
= 25 C
TEST CIRCUIT A: W = 20 L = 100
TEST CIRCUIT B: W = 20 L = 200 x 2
W = 30 L = 100
Units Absolute Maximum
mW
mA
V
V
V
C
C
NOT TO SCALE
f = 0.9 GHz
f = 0.9 GHz
V
W = 10 L = 1860
CE
I
V
V
C
CB
EB
= 1 mA
= 2.7 V
= 3 V
= 1 V
4-34
-65 to 150
150
150
1.5
5.5
V
11
16
CC
Units
dB
dB
-
A
A
W = 10 L = 1025
25
1000 pF
Min
11
70
[1]
[1]
AT-31011
0.9
Typ
13
0.05
0.1
[1]
[1]
Thermal Resistance
Max
1.2
300
0.2
1.5
[1]
jc
= 550 C/W
Min
9
70
[2]
AT-31033
Typ
0.9
11
0.05
0.1
[2]
[2]
[2]
:
Max
1.2
300
1.5
0.2
[2]

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