ammp-6650 Avago Technologies, ammp-6650 Datasheet

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ammp-6650

Manufacturer Part Number
ammp-6650
Description
Dc ? 30 Ghz Variable Attenuator
Manufacturer
Avago Technologies
Datasheet

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Part Number
Manufacturer
Quantity
Price
Part Number:
ammp-6650-BLKG
Manufacturer:
AVAGO/安华高
Quantity:
20 000
Part Number:
ammp-6650-TR1G
Manufacturer:
AVAGO/安华高
Quantity:
20 000
RFin
­ A MMP-6650
DC – 30 GHz Variable Attenuator
Data Sheet
Description
The AMMP-6650 is a voltage controlled variable attenua-
tor in a surface mount package, designed to operate from
DC to 30 GHz. It is fabricated using Avago Technologies
enhancement mode pHEMT MMIC process and requires
only positive voltage control. The distributed topology
of the AMMP-6650 facilitates broadband operation by
absorbing parasitic effects of its series and shunt FETs.
An on-chip DC reference circuit may be used to maintain
optimum VSWR for any attenuation setting or to provide
more linear attenuation versus voltage response.
AMMP-6650­Pin­Connections­(Top­View)
Note : Package base : GND
8
DCin
V1
1
7
reference circuit
attenuator
Top View
variable
NC
NC
DC
2
6
DCout
V2
5
3
4
RFout
Pin
Pin
1
1
2
2
3
3
4
4
5
5
6
6
7
7
8
8
Function
Function
DC out
DC out
RF out
RF out
DC in
DC in
RF in
RF in
V2
V2
V1
V1
Features
• 5 x 5 mm Surface Mount Package
• Wide Frequency Range DC - 30 GHz
• Attenuation Range 20dB
• Single Positive Bias Supply
• Unconditionally Stable
Applications
• Microwave Radio Systems
• Satellite VSAT, DBS Up / Down Link
• LMDS & Pt – Pt mmW Long Haul
• Broadband Wireless Access (including 802.16 and 802.20
• WLL and MMDS loops
WiMax)
Attention:­Observe­precautions­for­
handling­electrostatic­sensitive­devices.
ESD Machine Model = 80 V
ESD Human Body Model = 400 V
Refer to Avago Application Note A004R:
Electrostatic Discharge, Damage and Control.

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ammp-6650 Summary of contents

Page 1

... A MMP-6650 DC – 30 GHz Variable Attenuator Data Sheet Description The AMMP-6650 is a voltage controlled variable attenua- tor in a surface mount package, designed to operate from GHz fabricated using Avago Technologies enhancement mode pHEMT MMIC process and requires only positive voltage control. The distributed topology of the AMMP-6650 facilitates broadband operation by absorbing parasitic effects of its series and shunt FETs ...

Page 2

Table­1.­Absolute­Maximum­Ratings Symbol Parameters­and­Test­Conditions V Voltage to Control VSWR 1 V Voltage to Control Attenuation Input Power in T Operating Channel Temperature ch T Storage Temperature stg T Maximum Assembly Temperature max Notes: Operation in excess of any ...

Page 3

Typical­Distribution­Charts Figure­1d.­Min­Attenuation­@­2GHz,­nominal=-0.9,­LSL=-1.5 Figure­3d.­Min­Attenuation­@­20GHz,­nominal=-0.9,­LSL=-2.5 Figure­5d.­Max­Attenuation­@­2GHz,­nominal=-26.6,­USL=-23 Figure­7d.­Max­Attenuation­@­33GHz,­Nominal=-32.7,­USL=-23.0 Notes: 1. Distribution data based on 5000 part sample from two wafer lots tested during initial characterization. Future wafers may have nominal values anywhere between upper and lower limit. 3 Figure­2d.­Min­Attenuation­@­10GHz,­nominal=-2.0,­LSL=-2.5 Figure­4d.­Min­Attenuation­@­30GHz,­nominal=-2.1,­LSL=-3.0 Figure­6d.­Max­Attenuation­@­10GHz,­nominal=-28,­USL=-23 Figure­8d.­Max­Attenuation­@­40GHz,­Nominal=-35.7,­USL=-23.0 ...

Page 4

Typical­Performance­(T ­=­25°C,­­ Frequency (GHz) Figure­1.­Attenuation­vs­Frequency 0 -10 -20 -30 -40 - Frequency (GHz) Figure­3.­Output­Return­Loss­vs­Frequency Attenuation ...

Page 5

... Figure­11.­Attenuation­vs­Frequency­(Min­Attenuation) Notes: 1. All tests done on an AMMP-6650 mounted on a PCB equipped with RF connectors and an op-amp driver shown in Figure 14. 2. IIP3 measured with two input signals with frequency difference of 10 MHz, each input signal at -10 dBm 3 ...

Page 6

... Notes: AMMP-6650 mounted on a PCB equipped with RF connectors and an op-amp driver shown in Figure 14 0V) 2 S21­ dB Mag Phase dB -1.13 0.88 -5.8 -1.15 -1.1 0.88 -10.3 -1.18 -1.13 0.88 -19.2 -1.23 -1.24 0.87 -28.1 -1.34 -1.31 0.86 -36.9 -1.43 -1.36 0.86 -45.5 -1.47 -1.42 0.85 -54.2 -1.55 -1.46 0.85 -62.7 -1.6 -1.52 0.84 -71.3 -1.65 -1.55 0.84 -79.8 -1.7 -1.62 0.83 -88.4 -1.74 -1.64 0.83 -96.8 -1.79 -1.68 0.82 -105.4 -1.82 -1.7 0.82 -114.1 -1.84 -1.73 0.82 -122.8 -1.85 -1.76 0.82 -131.5 -1 ...

Page 7

... Notes: AMMP-6650 mounted on a PCB equipped with RF connectors and an op-amp driver shown in Figure 14 0V 1.25V S21­ dB Mag Phase dB -24.44 0.06 -3.8 -24.58 -24.44 0.06 -6.7 -24.58 -24.58 0.06 -12.6 -24.58 -24.44 0.06 -18.5 -24.44 -24.44 0.06 -24.6 -24.44 -24.29 0.06 -30.8 -24.29 -24.15 0.06 -37.1 -24.15 -24.01 0.06 -44 -24.01 -23.88 0.06 -51.1 -23.88 -23.74 0.07 -58.5 -23.61 -23.48 0.07 -66.2 -23.48 -23.35 0.07 -74.1 -23.35 -23.22 0.07 -82.4 -23.22 -23.1 0.07 -91 -23.1 -23.1 0.07 -100 -22.97 -22.97 0.07 -109.5 -22.97 -22.85 0.07 -119.4 -22.85 -22.97 0.07 -130.1 -22 ...

Page 8

... Figure­14.­AMMP-6650­and­the­op-amp­driver­circuit If optimum VSWR is all that is required, OP­AMP­2 may be eliminated however, R DCout pad of the AMMP-6650 and the control voltage can be applied directly to V2. CAUTION: Low voltage op-amps must be used so as not to exceed the maximum limit of V1 and V2 control voltages. ...

Page 9

... R L REF have been found REF Recommended­SMT­Attachment The AMMP Packaged Devices are compatible with high volume surface mount PCB assembly processes amount equal The PCB material and mounting pattern, as defined in Figure 19, optimizes RF performance and is strongly and recommended ...

Page 10

... Packages have been qualified to withstand a peak tem- perature of 260°C for 20 seconds. Verify that the profile will not expose device beyond this limit. Package­Outline­Drawing AMMP .200 [5.08] 8 XXXX 043101 .200 [5.08] Top View ...

Page 11

Stencil­Design­Guidelines A properly designed solder screen or stencil is required to ensure optimum amount of solder paste is deposited onto the PCB pads. The recommended stencil layout is shown in Fig 17. The stencil has a solder paste deposi- tion ...

Page 12

... Container AMMP-6650-BLKG 10 AMMP-6650-TR1G 100 AMMP-6650-TR2G 500 Carrier­Tape­and­Pocket­Dimensions For product information and a complete list of distributors, please go to our web site: Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and other countries. Data subject to change. Copyright © 2005-2008 Avago Technologies. All rights reserved. ...

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