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PDF HPMX-5001-TY1 Data sheet ( Hoja de datos )

Número de pieza HPMX-5001-TY1
Descripción 1.5-2.5 GHz Upconverter/ Downconverter
Fabricantes Agilent(Hewlett-Packard) 
Logotipo Agilent(Hewlett-Packard) Logotipo



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1.5 – 2.5 GHz Upconverter/
Downconverter
Technical Data
HPMX-5001
Features
• 2.7 V Single Supply Voltage
• Low Power Consumption
(60␣ mA in Transmit Mode,
39 mA in Receive Mode
Typical)
• 2 dBm Typical Transmit
Power at 1900 MHz
• Half-Frequency VCO with
Frequency Doubler
• 32/33 Dual-Modulus
Prescaler
• Flexible Chip Biasing,
Including Standby Mode
• TQFP-32 Surface Mount
Package
• Operation to 2.5 GHz
• Use with Companion
HPMX-5002 IF chip
Applications
• DECT, UPCS and ISM Band
Handsets and Basestations
Plastic TQFP-32 Package
H
HPMX-5001
YYWW
XXXX ZZZ
Pin Configuration
32
1
25
24
H
HPMX-5001
YYWW
XXXX ZZZ
8 17
9 16
Functional Block Diagram
RX IF OUT
POWER DOWN
CONTROL
RX RF IN
TX RF OUT
X2
32/33
EXT.
VCO
TANK
RATIO
SELECT
General Description
The HPMX-5001 Upconverter/
Downconverter provides RF
system designers with all of the
necessary features to perform an
RF-to-IF downconversion for a
receive path, as well as an IF-to-
RF upconversion for transmit
mode.
Designed to meet the unique
needs of portable applications,
the HPMX-5001 combines the
qualities of flexible chip biasing,
low power consumption, and true
2.7 V minimum supply voltage
operation to provide superior
performance and battery life. By
incorporating the active elements
of the VCO on-chip, as well as a
32/33 dual-modulus prescaler,
overall system component count
and costs are decreased. The
32-TQFP package insures that
this high level of integration
occupies a small amount of
printed circuit board space.
The HPMX-5001 can be used in
either dual-conversion systems
(with the HPMX-5002 IF
Demodulator/Modulator) or
single-conversion systems. The
HPMX-5001 is manufactured
using Hewlett-Packard’s HP-25
Silicon Bipolar Process with
25␣ GHz f T and 30 GHz fMax.
5965-9105E
TX IF IN
PRESCALER
OUT
7-90

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HPMX-5001-TY1 pdf
31 32 1 2 16 17 18 19 32 33 1
VCO
DIV
DIVMC
DIVIDE BY 33 (DIVMC = 0)
31 33 1 2 16 17 18 19 32 1 2
VCO
DIV tpd
DIVMC
ts th
DIVIDE BY 32 (DIVMC = 1)
Figure 2. HPMX-5001 Prescaler Timing Diagram.
2
3
TX PA
CERAMIC
TX
FILTER
TX IF INPUT
FRONT-END
RF FILTER
T/R
RX LNA
CERAMIC
IMAGE
FILTER
HPMX-5001
X2
32/33
RX IF FILTER
RX IF OUTPUT
Figure 3. HPMX-5001 Block Diagram/Typical Application.
LO1
TANK
REFERENCE
OSCILLATOR
˜ 30 MHz
SYNTHESIZER
7-94

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HPMX-5001-TY1 arduino
TX o/p STAGE
VCC
3.3 nH
12
TXRFB
14
300
TXRF
50
3.3 nH
50 o/p
22 pF
EXAMPLE o/p NETWORK FOR
1.88–1.90 GHz.
OTHER SYMMETRIC NETWORKS
WILL ENABLE OPERATION
UP TO 2.50 GHz.
11/15
TXRX GND
Figure 27. Equivalent Circuit for TXRF Output and Matching Network for
DECT Phone Operation.
P9 P8
R8 R7
P7
R5
R9
P10
C11
C12
32
R10
P1
C13
1
C1
C2
RXIF
TXIF
T1
L1
C3
C4 R1
C10
C9
25
+ 32/33
24
X2
R4
R6
C8
VCOTNKS
RXRF
C6
C5
8
VCC
Ground
9
17
16
X3 TXRF
C7
R2 L2
L3
Figure 28. Test Board Schematic Diagram. All I/O Labels Correspond to Those on the Test board. See Table 3 for
Component Values.
7-100

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