VMMK-2303-BLKG Avago Technologies US Inc., VMMK-2303-BLKG Datasheet

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VMMK-2303-BLKG

Manufacturer Part Number
VMMK-2303-BLKG
Description
GaAsCap Amplifier
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of VMMK-2303-BLKG

Current - Supply
21mA
Frequency
500MHz ~ 6GHz
Gain
14dB
Noise Figure
2dB
P1db
9dBm
Package / Case
0402 (1005 Metric) - 1.00mm L x 0.50mm W x 0.25mm H
Rf Type
Cellular, W-CDMA, PCS
Test Frequency
3GHz
Voltage - Supply
1.8V
Manufacturer's Type
MMIC Amplifier
Number Of Channels
1
Supply Current
28@1.8VmA
Frequency (max)
6GHz
Operating Supply Voltage (max)
5V
Package Type
WLP
Mounting
Surface Mount
Noise Figure (typ)
2@3000MHzdB
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
516-2291
VMMK-2303-BLKG

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
VMMK-2303-BLKG
Manufacturer:
AVAGO/安华高
Quantity:
20 000
Description
Avago’s VMMK-2303 is an easy-to-use GaAs MMIC amplifier
that offers excellent noise figure and flat gain from 0.5
to 6 GHz in a miniaturized wafer level package (WLP). It
operates from 1.8V CMOS supply or 3.3V battery supply.
The bias circuit has incorporated a power down feature
which is accessed from the input port.
The input and output are matched to 50 : (better than 2:1
SWR) across the entire bandwidth; no external matching
is needed. This amplifier is fabricated with enhancement
E-pHEMT technology and industry leading revolutionary
wafer level package. The wafer level package is small and
ultra thin yet can be handled and placed with standard
0402 pick and place assembly.
WLP 0402, 1mm x 0.5mm x 0.25 mm
Pin Connections (Top View)
Note:
“E” = Device Code
“Y” = Month Code
VMMK-2303
0.5 to 6 GHz 1.8 V E-pHEMT Shutdown LNA in Wafer Level Package
Data Sheet
Input
/ Vc
Input / Vc
EY
Amp
Output / Vdd
Output
/ Vdd
Features
x 1 x 0.5 mm Surface Mount Package
x Ultrathin (0.25mm)
x Power down function
x 1.8V Supply
x 50Ohm Input and Output Match
x RoHs6 + Halogen Free
Specifications (3GHz, 1.8V, 21mA Typ.)
x Noise Figure: 2.0dB typical
x Associated Gain: 14dB
x Output IP3: +22dBm
x Output P1dB: +9dBm
Applications
x Low Noise and Driver for Cellular/PCS and WCDMA
x 2.4 GHz, 3.5GHz, 5-6GHz WLAN and WiMax notebook
x 802.16 & 802.20 BWA systems
x WLL and MMDS Transceivers
x Radar, radio and ECM systems
Base Stations
computer,
applications
access
Attention: Observe precautions for
handling electrostatic sensitive devices.
ESD Machine Model (Class A)
ESD Human Body Model (Class 1A)
Refer to Avago Application Note A004R:
Electrostatic Discharge, Damage and Control.
point
and
mobile
wireless

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VMMK-2303-BLKG Summary of contents

Page 1

... GHz 1.8 V E-pHEMT Shutdown LNA in Wafer Level Package Data Sheet Description Avago’s VMMK-2303 is an easy-to-use GaAs MMIC amplifier that offers excellent noise figure and flat gain from 0 GHz in a miniaturized wafer level package (WLP). It operates from 1.8V CMOS supply or 3.3V battery supply. ...

Page 2

Table 1. Absolute Maximum Ratings Sym Parameters/Condition Vd Supply Voltage (RF Output) Vc Power Down Control Voltage Id Device Current Input Power (RF Input) in, max P Total Power Dissipation diss Tch Max channel temperature T Storage ...

Page 3

Product Consistency Distribution Charts at 3.0 GHz 1 1.8V LSL .015 .017 .019 .021 .023 Id at Vd=Vc=1.8V, LSL=15mA, Mean=21mA, USL=28mA LSL 12 12.5 13 13.5 14 14.5 Gain at 3GHz, LSL=12 dB, Mean=14 dB, ...

Page 4

... VMMK-2303 Typical Performance (T = 25°C, Vdd = 1.8V 1.8V, Idd = 21mA Frequency (GHz) [1] Figure 1. Small-signal Gain 0 -5 -10 -15 - Frequency (GHz) [1] Figure 3. Input Return Loss Frequency (GHz) [1] Figure 5. Output P-1dB Notes: 1. Data taken on a G-S-G probe substrate fully de-embedded to the reference plane of the package 2 ...

Page 5

... VMMK-2303 Typical Performance (continue 25°C, Vdd = 1.8V 1.8V, Idd = 21mA (V) [1] Figure 7. Total Current over Vdd Vd=1.8V, Vc=1.8V Vd=3.3V, Vc=1. Frequency (GHz) [1] Figure 9. Gain over Vdd 0 Vd=1.8V, Vc=1.8V Vd=3.3V, Vc=1.8V -5 -10 -15 - Frequency (GHz) [1] Figure 11. Input Return Loss Over Vdd Notes: 1. Data taken on a G-S-G probe substrate fully de-embedded to the reference plane of the package ...

Page 6

... VMMK-2303 Typical Performance (continue 25°C, Vdd = 1.8V 1.8V, Idd = 21mA Vd=1.8V, Vc=1.8V 2 Vd=3.3V, Vc=1. Frequency (GHz) [1] Figure 13. Output P-1dB over Vdd 25C 5 85C -40C Frequency (GHz) [3] Figure 15. Gain over Temp 25C 3 85C -40C Frequency (GHz) [3] Figure 17. P1dB Over Temp Notes: 1. Data taken on a G-S-G probe substrate fully de-embedded to the reference plane of the package 2 ...

Page 7

... VMMK-2303 Typical S-parameters (Data obtained using 300um G-S-G PCB substrate, losses calibrated out to the package reference plane 25°C, Vdd = 1.8V 1.8V, Idd = 21mA S11 Freq GHz dB Mag Phase 0.1 -1.189 0.872 -25.218 0.2 -3.285 0.685 -40.252 0.3 -5.171 0.551 -48.030 0.4 -6 ...

Page 8

... VMMK-2303 Application and Usage Biasing and Operation The VMMK-2303 can be used as a low noise amplifier driver amplifier. The nominal bias condition for the VMMK-2303 is Vd=Vc=1.8V. At this bias condition the VMMK-2303 provides an optimal compromise between power consumption, noise figure, gain, power output and OIP3 ...

Page 9

... Notes: 1. 0.010” Rogers RO4350 9 Recommended SMT Attachment The VMMK Packaged Devices are compatible with high volume surface mount PCB assembly processes. Manual Assembly for Prototypes 1. Follow ESD precautions while handling packages. 2. Handling should be along the edges with tweezers or from topside if using a vacuum collet ...

Page 10

... Ordering Information Devices Per Part Number Container VMMK-2303-BLKG 100 VMMK-2303-TR1G 5000 Package Dimension Outline Note: All dimensions are in mm Reel Orientation USER FEED DIRECTION CARRIER TAPE 10 Container Antistatic Bag 7” Reel Symbol Min (mm) Max (mm) E 0.500 0.566 D 1.004 1.066 A 0.235 0.265 ...

Page 11

Tape Dimensions Note R0.1 5° (Max) Scale 5:1 AA SECTION Unit: mm Symbol Spec. K1 – Po 4.0±0.10 P1 4.0±0.10 P2 2.0±0.05 Do 1.55±0.05 D1 0.5±0.05 E 1.75±0.10 F 3.50±0.05 10Po 40.0±0.10 W ...

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