hpmx-2006 ETC-unknow, hpmx-2006 Datasheet - Page 6

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hpmx-2006

Manufacturer Part Number
hpmx-2006
Description
Upconverter/amplifier
Manufacturer
ETC-unknow
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HPMX-2006
Manufacturer:
HP
Quantity:
20 000
1000 pF
HPMX-2006 Test Circuit
Figure 11. Test Board Configuration.
HPMX-2006 Circuit Use
Figure 12. Schematic Diagram of Typical IC Use.
Table 2 lists values for compo-
nents that change depending on
Table 2. Values for Variable Components (see next page for details).
Notes:
1. Noise Optimum at R1, R2 = 150
2. Optional
(Rs = Rterm)
Component
1000 pF
mixer LO input
50
IF source
mixer LO input
standby input
amp RF input
off board Cbl (>100 pF)
standby input
L3, C14
C1, R3
C8, L2
R1,R2
C15
IF source
C6
Rterm
off board Cbl (>100 pF)
off board Cbl (>100 pF)
10 pF
10 pF
50
mixer output match
Cbl (>100 pF)
amp input match
off board Cbl
(>100 pF)
LO AC coupling
biases IF bases
IF AC coupling
amp out match
12 pF
C6
C6
C1 R3
Function
C1 R3
C15
12
50
R2
50
R1
LO in
LO in
Ref
IF in
IF in
Amp1 Ve1
Amp RF in
enable
LO in
LO in
Ref
IF in
IF in
Amp1 Ve1
Amp RF in
enable
12 pF + 12
100 pF typ
not used
not used
50
Value
Sideband
see Table 3 for values vs. frequency
Filter
typ
frequency of operation and AC or
DC coupling of the IF input. For
Mixer RF out
Amp RF out
Mixer RF out
Amp RF out
Amp1 Ve2
Amp1 Ve2
1900 MHz operation
1900 MHz operation
Amp Ve2
Mixer Vc
Amp Ve2
Amp Vc
Mixer Vc
Amp Vc
F LO < 1.75 GHz
Condition
AC coupled
AC coupled
gnd
gnd
gnd
gnd
7-71
0.01 F
22 pF
0.01 F
22 pF
C14
L3
2.2 pF
100 pF
printed
C12(100 pF)
C8
L2
Mixer RF output
(at DC ground)
2.7 pF + 0
short ckt
open ckt
1.3 pF
3.3 pF
Value
3V
27 nH
Vcc
3V
Amp RF output
Vcc
Amp RF output
[2]
[2]
900 MHz operation 900 MHz operation only
900 MHz operation 900 MHz operation only
F LO > 1.75 GHz
Condition
DC coupled
DC coupled
2.5 GHz operation, a pre-amplifier
may be inserted between the
Mixer output and the Amp RF in.
de-Q with R = 12
broadband operation
< 1.75 GHz
see also R1,R2
also sets load for
optimum IF
L2 set by position of C12
Notes
[1]
for

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