cxm3582ur Sony Electronics, cxm3582ur Datasheet

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cxm3582ur

Manufacturer Part Number
cxm3582ur
Description
Sp10t Antenna Switch Module 6trx/2tx/2rx
Manufacturer
Sony Electronics
Datasheet

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SP10T Antenna Switch Module 6TRx/2Tx/2Rx
Description
The CXM3582UR is a SP10T antenna switch module for GSM/UMTS/CDMA/LTE multi-mode handset.
The CXM3582UR has a built-in dual low pass filter and a +1.8 V CMOS compatible decoder.
The Sony GaAs junction gate pHEMT (JPHEMT) MMIC process is used for low insertion loss and high linearity.
The device has low BOM with no DC blocking capacitor.
(Applications: GSM/UMTS/CDMA/LTE multi-mode handsets)
Features
◆ Low insertion loss: 0.45 dB (Typ.) TRx (Cellular band)
◆ High linearity: IIP3 = 68 dBm
◆ Battery direct operation: V
◆ No DC blocking capacitors except sourcing DC bias
◆ Small package size: 26-pin UQFN (2.6 mm x 3.4 mm x 0.6 mm Max.)
◆ Lead-free and RoHS compliant
Structure
GaAs junction gate pHEMT (JPHEMT) MMIC switch, CMOS decoder
Absolute Maximum Ratings
◆ Bias voltage
◆ Control voltage
◆ Input power max. [Tx1]
◆ Input power max. [Tx2]
◆ Input power max. [TRx]
◆ Input power max. [Rx]
◆ Operating temperature
◆ Storage temperature
GaAs MMIC’s are ESD sensitive devices. Special handling precautions are required.
V
V
DD
CTL
0.60 dB (Typ.) TRx (IMT Tx band)
DD
6 V (Ta = 25 °C)
4 V (Ta = 25 °C)
36 dBm (Duty cycle = 12.5 % to 50 %) (Ta = 25 °C)
34 dBm (Duty cycle = 12.5 % to 50 %) (Ta = 25 °C)
–35 to +90 °C
= 2.5 V to 5.0 V
32 dBm (Ta = 25 °C)
13 dBm (Ta = 25 °C)
–65 to +150 °C
1
CXM3582UR
E11907A1X

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cxm3582ur Summary of contents

Page 1

... The CXM3582UR is a SP10T antenna switch module for GSM/UMTS/CDMA/LTE multi-mode handset. The CXM3582UR has a built-in dual low pass filter and a +1.8 V CMOS compatible decoder. The Sony GaAs junction gate pHEMT (JPHEMT) MMIC process is used for low insertion loss and high linearity. ...

Page 2

Block Diagram of SP10T Antenna Switch Module 2 ...

Page 3

Block Diagram of SP10T 6TRx/2Tx/2Rx Truth Table State Active CTL state path CTLA CTLB CTLC CTLD F10 F11 F12 F13 F14 F15 F16 F17 F18 F19 F20 1 TRx1 L L ...

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Pin Configuration of SP10T GND Rx2 GND Rx1 TRx1 TRx2 TRx3 GND DC Bias Condition ( °C) Parameter Min. Typ. Max. V +2.5 +2.8 +5 (H) +1.35 +1.8 +3.1 CTL V (L) 0 — +0.45 CTL ...

Page 5

Target Specification ( °C) DD Item Symbol Ant - TRx1 Ant - TRx2 Ant - TRx3 Ant - TRx4 Insertion loss IL Ant - TRx5 Ant - TRx6 Ant - Tx1 Ant - Tx2 ...

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Item Symbol Tx1 - TRx1 Rx1, 2 Tx2 - TRx1 Tx2 - Rx1, 2 TRx1 TRx4 TRx1 TRx4 TRx5 - ...

Page 7

IMD Condition fRx Band on TRx +20 dBm on TRx Band I 2140 MHz Band II 1960 MHz Band V 880 MHz IIP3 Condition f1 Band +27 dBm on TRx +27 dBm on TRx Band I 1950 MHz Band V ...

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Target Specification of Triple Beat Ratio (V = 2.5V °C) DD Item Symbol Path Triple beat Ant - TRx1, TBR ratio Electrical Characteristics are measured with all RF ports terminated in 50 ...

Page 9

Recommended Circuit 1 Operation frequency range: 0.7-2.7 GHz GND Rx2 GND Rx1 TRx1 TRx2 TRx3 GND * blocking capacitors are required on all RF ports. (Except sourcing DC bias) *2: DC levels of all RF ports are GND. ...

Page 10

Recommended Circuit 2 Operation frequency range: 0.45-2.7 GHz GND Rx2 GND Rx1 TRx1 TRx2 TRx3 GND * blocking capacitors are required on all RF ports. (Except sourcing DC bias) *2: DC levels of all RF ports are GND. ...

Page 11

Recommended Circuit 3 2nd Harmonics Improvement at LTE (Band13) GND Rx2 GND Rx1 TRx1 TRx2 TRx3 GND * blocking capacitors are required on all RF ports. (Except sourcing DC bias) *2: DC levels of all RF ports are ...

Page 12

Recommended Land Pattern UQFN-26P-01 Macro drawing (Reference) PKG: 3 2.6 mm Pin pitch: 0.4 mm 3.6 3.4 (PKG Line) 2.5 (*) 0.8 0.6 PCB Design for UQFN-26P Metal mask thickness: ...

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Package Outline (Unit: mm) 13 ...

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Marking 14 ...

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Note Sony reserves the right to change products and specifications without prior notice. This information does not convey any license by any implication or otherwise under any patents or other right. Application circuits shown, if any, are typical examples illustrating ...

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