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MACOM MA4AGP907 product image
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MACOM MA4AGP907RoHS

Manufacturer
MPN
MA4AGP907
LCSC Part #
C4468043
Packaging
SMD
Customer #
Key Attributes
Standalone 1.45V@10mA 50V SMD RF Diodes RoHS
Datasheetpdf iconMACOM MA4AGP907
In-Stock: 100
100 In stock, ships now
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QtyUnit PriceTotal Amount
1+$ 10.5324$ 10.53
10+$ 9.0884$ 90.88
30+$ 8.207$ 246.21
100+$ 7.4688$ 746.88
Standard Packaging100/Full Tray
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Products Specifications

All
TypeDescription
CategoryDiscrete Semiconductors/Diodes/RF Diodes
ManufacturerMACOM
PackagingSMD
Diode ConfigurationStandalone
Operating Junction Temperature Range-55℃~+125℃
Reverse Leakage Current (Ir)10uA@50V
Voltage - Forward(Vf@If)1.45V@10mA
DC Reverse Voltage(Vr)50V

Introduction

AI Translation

MA4AGP907 and MA4AGFCP910 are aluminum gallium arsenide (AlGaAs) flip-chip PIN diodes. These devices are fabricated on OMCVD epitaxial wafers using a process designed to achieve high device uniformity and extremely low parasitics. These diodes feature an ultralow RC product (0.1ps) and 2 - 3ns switching characteristics. They are fully passivated with silicon nitride, with an additional polymer layer for scratch protection. This protective coating prevents damage to the junction and anode air bridges during handling and assembly.

Features

AI Translation
  • Low series resistance
  • Ultra-low capacitance
  • Millimeter-wave switching and cutoff frequency
  • 2 ns switching speed
  • Drivable by buffered TTL
  • Silicon nitride passivation
  • Polyimide scratch protection
  • RoHS compliant

Applications

AI Translation

The ultra-low capacitance characteristics of the MA4AGP907 and MA4AGFCP910 enable their use in RF switch and switched phase shifter applications at millimeter-wave frequencies. These diodes are designed for pulsed or continuous wave applications where single-digit nanosecond switching speeds are required. For surface-mount assemblies, the low capacitance of these switches makes them ideal for use in microwave multi-throw switch assemblies, where the series capacitance of each "off" port can adversely load the input and degrade VSWR.