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PDF VMMK-2503 Data sheet ( Hoja de datos )

Número de pieza VMMK-2503
Descripción 1 to 12 GHz GaAs Wideband Amplifier
Fabricantes AVAGO 
Logotipo AVAGO Logotipo



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VMMK-2503
1 to 12 GHz GaAs Wideband Amplifier in Wafer Level Package
Data Sheet
Description
Avago’s VMMK-2503 is an easy-to-use broadband, high
linearity amplifier in a miniaturized wafer level package
(WLP). The wide band and unconditionally stable perfor-
mance makes this amplifier suitable as a gain block or a
transmitter driver in many applications from 1–12GHz. A 5V,
65mA power supply is required for optimal performance.
This amplifier is fabricated with enhancement E-pHEMT
technology and industry leading wafer level package. The
GaAsCap wafer level package is small and ultra thin yet
can be handled and placed with standard 0402 pick and
place assembly. This product is easy to use since it requires
only positive DC voltages for bias and no matching coef-
ficients are required for impedance matching to 50 :
systems.
WLP 0402, 1mm x 0.5mm x 0.25 mm
GY
Pin Connections (Top View)
Features
x 1 x 0.5 mm Surface Mount Package
x Ultrathin (0.25mm)
x Unconditionally Stable
x Ultrawide Bandwidth
x Gain Block or Driver Amplifier
x RoHS6 + Halogen Free
Typical Performance (Vdd = 5.0V, Idd = 65mA)
x Output IP3: 27dBm
x Small-Signal Gain: 13.5dB
x Noise Figure: 3.4dB
Applications
x 2.4 GHz, 3.5GHz, 5-6GHz WLAN and WiMax notebook
computer, access point and mobile wireless
applications
x 802.16 & 802.20 BWA systems
x Radar, radio and ECM systems
x UWB
Input GY
Output / Vdd
Input
Amp
Output
/ Vdd
Attention: Observe precautions for
handling electrostatic sensitive devices.
ESD Machine Model (Class A)
ESD Human Body Model (Class 1B)
Refer to Avago Application Note A004R:
Electrostatic Discharge, Damage and Control.
Note:
“G” = Device Code
“Y” = Month Code

1 page




VMMK-2503 pdf
VMMK-2503 Typical Performance (continue)
(TA = 25°C, Vdd = 5V, Idd = 65mA, Zin = Zout = 50 : unless noted)
20 70
60
15 50
40
10
30
5 5V
4.5V
4V
0
13
5 7 9 11 13
Frequency (GHz)
20
10
0
1
2
Figure 7. Gain over Vdd [1]
Figure 8. Total Current [1]
3
Vdd (V)
4
5
0 4.5
4
-10
3.5
-20
5V
4.5V
4V
-30
1 3 5 7 9 11 13
Frequency (GHz)
3
5V
2.5 4.5V
4V
2
1 3 5 7 9 11 13
Frequency (GHz)
Figure 9. Input Return Loss over Vdd [1]
Figure 10. Noise Figure over Vdd [1]
0 25
5V 4V
4.5V 4.5V
4V 20
5V
-10
15
-20
10
-30
1 3 5 7 9 11 13
Frequency (GHz)
5
1 3 5 7 9 11 13
Frequency (GHz)
Figure 11. Output Return Loss Over Vdd [1]
Figure 12. Output P1dB Over Vdd [1]
Note:
1. Data taken on a G-S-G probe substrate fully de-embedded to the reference plane of the package
5

5 Page





VMMK-2503 arduino
Tape Dimensions
Note: 2
P2
Do
Note: 1
Po
B
T
5° (Max)
A
R0.1
A
Ao
P1
5° (Max)
Scale 5:1
AA SECTION
Unit: mm
Symbol
K1
Po
P1
P2
Do
D1
E
F
10Po
W
T
Spec.
4.0±0.10
4.0±0.10
2.0±0.05
1.55±0.05
0.5±0.05
1.75±0.10
3.50±0.05
40.0±0.10
8.0±0.20
0.20±0.02
B
D1
Ko
Ao = 0.73±0.05 mm
Bo = 1.26±0.05 mm
Ko
=
0.35
+0.05
+0
mm
Notice:
1. 10 Sprocket hole pitch cumulative tolerance is ±0.1mm.
2. Pocket position relative to sprocket hole measured as true position
of pocket not pocket hole.
3. Ao & Bo measured on a place 0.3mm above the bottom of the
pocket to top surface of the carrier.
4. Ko measured from a plane on the inside bottom of the pocket to
the top surface of the carrier.
5. Carrier camber shall be not than 1m per 100mm through a length
of 250mm.
For product information and a complete list of distributors, please go to our web site: www.avagotech.com
Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and other countries.
Data subject to change. Copyright © 2005-2010 Avago Technologies. All rights reserved.
AV02-2004EN - July 7, 2010

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