HPMX-5001-STR Agilent(Hewlett-Packard), HPMX-5001-STR Datasheet

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HPMX-5001-STR

Manufacturer Part Number
HPMX-5001-STR
Description
1.5-2.5 GHz Upconverter/ Downconverter
Manufacturer
Agilent(Hewlett-Packard)
Datasheet
1.5 – 2.5 GHz Upconverter/
Downconverter
Technical Data
Features
• 2.7 V Single Supply Voltage
• Low Power Consumption
• 2 dBm Typical Transmit
• Half-Frequency VCO with
• 32/33 Dual-Modulus
• Flexible Chip Biasing,
• TQFP-32 Surface Mount
• Operation to 2.5 GHz
• Use with Companion
Applications
• DECT, UPCS and ISM Band
Functional Block Diagram
5965-9105E
(60 mA in Transmit Mode,
39 mA in Receive Mode
Typical)
Power at 1900 MHz
Frequency Doubler
Prescaler
Including Standby Mode
Package
HPMX-5002 IF chip
Handsets and Basestations
TX RF OUT
RX RF IN
RX IF OUT
TX IF IN
X2
PRESCALER
Plastic TQFP-32 Package
Pin Configuration
32/33
OUT
POWER DOWN
1
8
CONTROL
32
9
7-90
EXT.
VCO
TANK
RATIO
SELECT
25
16
24
17
HPMX-5001
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 f
Max
.

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HPMX-5001-STR Summary of contents

Page 1

... 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 ...

Page 2

... Power Dissipation RF Input Power Junction Temperature Storage Temperature HPMX-5001 Guaranteed Electrical Specifications Unless otherwise noted, all parameters are guaranteed under the following conditions: V results are based upon use of networks shown in test board schematic diagram (see Figure 28). Typical values are for ...

Page 3

... HPMX-5001 Summary Characterization Information Typical values measured on test board shown in Figure TXRF = 1.89 GHz, unless otherwise noted. Symbol Parameters and Test Conditions V CMOS Input High Voltage (Can Be Pulled High CMOS Input Low Voltage IL I CMOS Input High Current IH I CMOS Input Low Current ...

Page 4

... DIVMC CMOS I/P 31 LOCTRL CMOS I/P 32 RXCTRL CMOS I 13, VSUB Ground 18, 19, 24, 25, 29 Table 2 - HPMX-5001 Mode Control (CMOS Logic Levels - all pins internally pulled up to high level) Mode TXCTRL Transmit 0 Receive 1 Synth 1 Standby 1 Description Controls biasing of transmit mixer, amplifiers, and doubler Inverted single-ended downconverted receiver output, ...

Page 5

... VCO DIV DIVMC VCO tpd DIV DIVMC ts th Figure 2. HPMX-5001 Prescaler Timing Diagram. CERAMIC TX FILTER TX PA T/R FRONT-END RF FILTER RX LNA CERAMIC HPMX-5001 IMAGE FILTER Figure 3. HPMX-5001 Block Diagram/Typical Application DIVIDE BY 33 (DIVMC = DIVIDE BY 32 (DIVMC = 1) ...

Page 6

... CERAMIC TX. FILTER TX PA T/R FRONT-END RF FILTER RX LNA CERAMIC IMAGE FILTER IF1 = 110.592 MHz SAW CHANNEL FILTER Figure 4. Typical HPMX-5001 Application with HPMX-5002 IF Chip. All Other Connections Go to Burst Mode Controller, Power Source, or Ground -55 -35 ...

Page 7

-55 -35 - TEMPERATURE (°C) Figure Transmit Mode vs. CC Temperature and V ...

Page 8

... Figure 17. Carrier to Noise Ratio at Transmit Upconverter Output vs. Temperature and DIVV CC PIN 26 RECOMMENDED OUTPUT CIRCUIT C = 2.2 nF PIN 28 DIV o/p C PIN 27 DIVGND Figure 20. Equivalent Circuit and Recommended Output and Load Circuits for the HPMX-5001 Prescaler Output 2.0 P OUT 1.0 0 P1dB -1.0 -2.0 -3.0 ...

Page 9

DIVV CC PIN 26 PIN 30 DIVMC i/p LOW = 1/33 OPEN 1/32 CC PIN 27 DIVGND Figure 21. Equivalent Circuit for the Divider Modulus Control. TO USE WITH INJECTED LO SIGNAL, DRIVE PIN 20 (VCOTNKS) WITH ...

Page 10

TXRX BIAS 2.7 pF RXRF 50 i/p 8 LNAREF 7 11 3.3 pF LNA STAGE PCB GND 15 TXRX GND Figure 24. Equivalent Circuit for RXRF Input. TXRX RECOMMENDED DRIVE LEVEL IS 300 mV ...

Page 11

TXRFB 300 14 TXRF EXAMPLE o/p NETWORK FOR OTHER SYMMETRIC NETWORKS WILL ENABLE OPERATION 11/15 TXRX GND TX o/p STAGE Figure 27. Equivalent Circuit for TXRF Output and Matching Network for DECT Phone Operation. R9 P10 C12 ...

Page 12

... Functional Description A typical DECT application of the HPMX-5001 in a dual-conversion superheterodyne radio trans- ceiver is shown in Figure 3. The HPMX-5001 is designed to provide four different modes of operation: • Transmit, where the VCO, doubler, upconverting mixer, associated buffers, and prescaler are enabled • Receive, where the VCO, ...

Page 13

... Gilbert cell configuration. The production version of the HPMX-5001 will have two equivalent open collector outputs. The HPMX-5001 can operate at IF frequencies up to 300 MHz (see Figure 28 for recommended matching network). Synthesizer Mode The on-chip 32/33 dual-modulus ...

Page 14

... Part Number Ordering Information Part Number No. of Devices HPMX-5001-STR HPMX-5001-TR1 HPMX-5001-TY1 Package Dimensions 32 Pin Thin Quad Flat Package All dimensions shown in mm. 9.0 ± 0.25 7.0 ± 0.1 HPMX-5001 YYWW 7.0 ± 0.1 XXXX ZZZ 0.35 0.8 TYP. 1.4 ± 0.05 + 0.15 0.05 MIN., 0.1 MAX. 0.6 - 0.10 Container 10 Strip 1000 Tape and Reel 250 Tray 9.0 ± ...

Page 15

Tape Dimensions and Product Orientation for Outline TQFP-32 REEL CARRIER TAPE USER FEED DIRECTION COVER TAPE 2.0 (See Note 7) 0.30 0.05 R 0.5 (2) 1.6 ( 6.4 ( 1.5 Min. ...

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