HMMC-1015 Avago Technologies US Inc., HMMC-1015 Datasheet

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HMMC-1015

Manufacturer Part Number
HMMC-1015
Description
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HMMC-1015

Operating Temperature (max)
125C
Mounting
Surface Mount
Lead Free Status / Rohs Status
Compliant
HMMC-1015
DC–50 GHz Variable Attenuator
Data Sheet
Description
The HMMC-1015 is a monolithic, voltage variable,
GaAs IC attenuator that operates from DC to 50 GHz.
The distributed topology of the HMMC-1015 minimizes
the parasitic effects of its series and shunt FETs,
allowing the HMMC-1015 to exhibit a wide dynamic
range across its full bandwidth. An on-chip DC refer-
ence circuit may be used to maintain optimum VSWR
for any attenuation setting or to improve the attenua-
tion versus voltage linearity of the attenuator circuit.
Chip Size:
Chip Size Tolerance:
Chip Thickness:
Absolute Maximum Ratings
Symbol
V
V
V
V
P
T
T
T
T
Note:
1. Operation in excess of any one of these conditions may result in damage to this device.
mina
maxa
stg
max
DC-RF
1
2
DC
IN
Parameters/Conditions
DC Voltage to RF Ports
V
V
DC In/DC Out
RF Input Power
Min. Ambient Operating Temp.
Max. Ambient Operating Temp.
Storage Temperature
Max. Assembly Temp. (for 60 sec. max.)
1
2
Control Voltage
Control Voltage
1470 x 610 µm (57.9 x 24.0 mils)
±10 µm (±0.4 mils)
127 ± 15 µm (5.0 ± 0.6 mils)
[1]
Units
V
V
V
V
dBm
°C
°C
°C
°C
Min.
-0.6
-10.5
-10.5
-0.6
-55
-65
Features
• Specified Frequency Range: DC–26.5 GHz
• P
• Return Loss: 10 dB
• Minimum Attenuation: 2.0 dB
• Maximum Attenuation: 30.0 dB
in
(-1dB): 27 dBm @ 500 MHz
Max.
+1.6
+0.5
+0.5
+1.0
17
+125
+165
+300

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HMMC-1015 Summary of contents

Page 1

... GaAs IC attenuator that operates from GHz. The distributed topology of the HMMC-1015 minimizes the parasitic effects of its series and shunt FETs, allowing the HMMC-1015 to exhibit a wide dynamic range across its full bandwidth. An on-chip DC refer- ence circuit may be used to maintain optimum VSWR for any attenuation setting or to improve the attenua- tion versus voltage linearity of the attenuator circuit. 1470 x 610 µ ...

Page 2

... HMMC-1015 DC Specifications/Physical Properties, T Symbol Parameters and Test Conditions I V Control Current -10V Control Current -10V Pinch-Off Voltage P [1] Electrical Specifications , T = 25° Parameters and Test Conditions Minimum Attenuation - Input/Output Return Loss @ Min. Attenuation Setting - Maximum Attenuation - Minumum Attenuation -1dB Input/Output Return Loss @ Max. Attenuation Setting, ...

Page 3

... Application The HMMC-1015 is designed to be used as a gain control block in an ALC assembly. Because of its wide dynamic range and return loss performance, the HMMC-1015 may also be used as a broadband pulse modulator or single-pole single-throw, non-reflective switch. Operation The attenuation value of the HMMC-1002 is adjusted ...

Page 4

... All dimensions in microns and shown to center of bond pad and V bonding pads are microns out input and output bonding pads are microns. 4. Chip thickness: 127 ± 15 µm. Figure 2. HMMC-1015 Bonding Pad Locations TC721R 4 Wire Bonds using 0.7 mil dia. Gold Bond Wire (length NOT important Figure 3. HMMC-1015 Assembly Diagram. 4 ...

Page 5

... 500Ω V REF (-0 -1.0 V) 500Ω B (350Ω – 500Ω) Figure 4. Attenuator Driver. HMMC-1015 Typical Performance FREQUENCY (GHz) [1] Figure 5. Attenuation vs. Frequency. Note: 1. Data obtained from on-wafer measurements Op. Amp – REF Figure 6. Output Return Loss vs. Frequency. = 25°C. chuck To DC OUT R L (400Ω – 500Ω) ...

Page 6

... HMMC-1015 Typical Temperature Performance All Attenuation Settings were done at 1 GHz FREQUENCY (GHz) Figure 7. Attenuation vs. Temperature @ [1] Minimum Attenuation. Note: 1. Data taken with the device mounted in connectorized package. This data sheet contains a variety of typical and guaranteed performance data. The information supplied should not be interpreted as a complete list of circuit specifications. In this data sheet the term typical refers to the 50th percentile performance. For additional information contact your local Avago Technologies’ ...

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