ZX80-DR230 MINI | Alldatasheet

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Technical content

The ZX80-DR230+ is a 50Ω high isolation SPDT RF switch designed for wireless applications, covering a broad frequency range from DC up to 3GHz with low insertion loss. The ZX80-DR230+ operates on a single supply voltage from +2.7V to +5V. This unit includes an internal CMOS control driver with two-pins con - trol. The ZX80-DR230+ is produced using a unique case package for ruggedness and operation in tough environments. SPDT RF SWITCH Absorptive RF Switch with internal driver. Single Supply Voltage 50Ω DC-3000 MHz Functional Diagram 50Ω 50Ω SW3SW2 SW4SW1 50Ω RF COMMON RF1 RF2 Control 1 Control 2 CONTROL DRIVER 50Ω 50Ω 50Ω CONTROL 1 CONTROL 2 Internal Control Driver RF COMMON RF1 RF2 ZX80-DR230+

  • Low Insertion loss over entire frequency range
  • Super High Isolation over entire frequency range
  • High Input IP3, +55 dBm typ.
  • Single positive supply voltage, +2.7V to +5V
  • Unique design-simultaneous switch off of RF1&RF2
  • Rigid unibody case
  • Lab
  • Instrumentation
  • Test equipment CASE STYLE: HL1162 Connectors Order P/N SMA ZX80-DR230-S+ +RoHS Compliant The +Suffix identifies RoHS Compliance. See our web site for RoHS Compliance methodologies and qualifications Rev. B M152326 EDR-7744 ZX80-DR230+ 161213 Page 1 of 7

A. Performance and quality attributes and conditions not expressly stated in this specification document are intended to be excluded and do not form a part of this specification document. B. Electrical specifications and performance data contained in this specification document are based on Mini-Circuit’s applicable established test performance criteria and measurement instructions. C. The parts covered by this specification document are subject to Mini-Circuits standard limited warranty and terms and conditions (collectively, “Standard Terms”); Purchasers of this part are entitled to the rights and benefits contained therein. For a full statement of the Standard Terms and the exclusive rights and remedies thereunder, please visit Mini-Circuits’ website at www.minicircuits.com/MCLStore/terms.jsp Mini-Circuits Parameter Condition Min. Typ. Max. Units Operating Frequency DC(note 3) 3000 MHz Insertion Loss

1 GHz

2 GHz

3 GHz

0.7 0.9 1.2 1.3 1.6 1.8 dB Isolation between Common port and RF1/RF2 ports Isolation between RF1 and RF2 ports Return Loss @ Common port Return Loss @ RF1/RF2 ports Input IP2 (note 1) 5 MHz - 1000 MHz +80 dBm Input IP3 (note 1) 10 MHz - 3000MHz +55 dBm Input 1dB Compression (note 1,2) 1000 MHz +28 +31 dBm Notes: 1. Device linearity degrades below 1 MHz. 2. Note absolute maximum ratings for input power. 3. Lowest Freq. determined by value of coupling capacitors at RF ports. Note 5: See Truth Table on page 3. Parameter Ratings Operating Temperature -40°C to 85°C Storage Temperature -55°C to 100°C Vdd, Supply Voltage -0.3V Min. 6V Max. Control Voltage -0.3V Min. 6V Max. ESD, HBM 1000V RF input power: (note 5) When the common port is connected to the RF port (RF1 or RF2) When the RF port (RF1 or RF2) is not connected to the common port When the common port is not connected to either RF1 or RF2 +33dBm +24dBm +24dBm Absolute Maximum Ratings Parameter Min. Typ. Max. Units Vdd, Supply Voltage 2.7 - 5.0 V Supply Current (Vdd = 5V) — 0.5 1.0 mA Control Voltage Low 0 — 0.4 V Control Voltage High 2.4 — Vdd V Control Current (per pin) — 0.5 1.0 mA Parameter Min. Typ. Max. Units Switching Time, 50% CTRL to 90/10% RF — 2.0 — µSec Video Feedthrough, 5 MHz - 1000 MHz (note 4) — — 15 mVp-p Switching Specifications Note 4: Measured with a 1 nSec risetime,0/3V pulse and 500 MHz bandwidth.

A. Performance and quality attributes and conditions not expressly stated in this specification document are intended to be excluded and do not form a part of this specification document. B. Electrical specifications and performance data contained in this specification document are based on Mini-Circuit’s applicable established test performance criteria and measurement instructions. C. The parts covered by this specification document are subject to Mini-Circuits standard limited warranty and terms and conditions (collectively, “Standard Terms”); Purchasers of this part are entitled to the rights and benefits contained therein. For a full statement of the Standard Terms and the exclusive rights and remedies thereunder, please visit Mini-Circuits’ website at www.minicircuits.com/MCLStore/terms.jsp Mini-Circuits The RF switch control bits select the desired switch-state, as shown in Table 1: Truth Table. STATE Control Input RF Input / Output Control 1 Control 2 RF1 to RF COMMON RF2 to RF COMMON

1 Low Low OFF OFF

2 Low High OFF ON

3 High Low ON OFF

4 High High N/A N/A

50Ω 50Ω SW3SW2 SW4SW1 50Ω RF COMMON RF1 RF2 Control 1 Control 2 CONTROL DRIVER 50Ω 50Ω 50Ω CONTROL 1 CONTROL 2 Internal Control Driver RF COMMON RF1 RF2 Table 1: Truth Table. General notes: 1. When either of the RF1 or RF2 ports is closed (ON state), the closed port is connected to the RF Common port. 2. When either of the RF1 or RF2 ports is open (OFF state), the open port is connected to an internal 50Ω termination. 3. When both RF1 and RF2 ports are open (OFF state), the all three RF ports are connected to an internal 50Ω termination. Function Connection Number Description RF2 J1 RF I/O (note 1) RF COM J2 RF Common (note 1) RF1 J3 RF I/O (note 1) Control 1 P1 Control 1 GND P2 Ground Control 2 P3 Control 2 GND P4 Ground VDD P5 Supply voltage Note 1: RF ports J1, J2 and J3 must be at 0 VDC. The RF ports do not require DC blocking capacitors for proper operation if the 0 VDC requirement is met. Pin Description Pin Configuration http://www.minicircuits.com/app/AN40-010.pdf http://www.minicircuits.com/app/AN40-010.pdf http://www.minicircuits.com/app/AN40-010.pdf NOTE: When soldering the DC connections, caution must be used to avoid overheating the DC terminals. See Application Note AN-40-10 .!

A. Performance and quality attributes and conditions not expressly stated in this specification document are intended to be excluded and do not form a part of this specification document. B. Electrical specifications and performance data contained in this specification document are based on Mini-Circuit’s applicable established test performance criteria and measurement instructions. C. The parts covered by this specification document are subject to Mini-Circuits standard limited warranty and terms and conditions (collectively, “Standard Terms”); Purchasers of this part are entitled to the rights and benefits contained therein. For a full statement of the Standard Terms and the exclusive rights and remedies thereunder, please visit Mini-Circuits’ website at www.minicircuits.com/MCLStore/terms.jsp Mini-Circuits Typical Performance Curves over various states. For switch state see Truth Table 1 on page 3. INSERTION LOSS Vs. FREQUENCY @ +25°C 0.0 0.5 1.0 1.5 2.0 2.5 0 500 1000 1500 2000 2500 3000 3500 4000 FREQUENCY (MHz) INSERTION LOSS (dB) STATE 3 STATE 2 ISOLATION BETWEEN RF1 TO RF2 Vs. FREQUENCY 100 120 140 0 500 1000 1500 2000 2500 3000 3500 4000 FREQUENCY (MHz) ISOLATION (dB) + 85ºC + 25ºC - 40ºC STATE 3 ISOLATION BETWEEN RF1 TO RF2 Vs. FREQUENCY 100 120 140 0 500 1000 1500 2000 2500 3000 3500 4000 FREQUENCY (MHz) ISOLATION (dB) + 85ºC + 25ºC - 40ºC STATE 2 ISOLATION BETWEEN RF2 TO RF COM Vs. FREQUENCY 100 120 140 0 500 1000 1500 2000 2500 3000 3500 4000 FREQUENCY (MHz) ISOLATION (dB) + 85ºC + 25ºC - 40ºC STATE 3 ISOLATION BETWEEN RF1 TO RF COM Vs. FREQUENCY 100 120 140 0 500 1000 1500 2000 2500 3000 3500 4000 FREQUENCY (MHz) ISOLATION (dB) + 85ºC + 25ºC - 40ºC STATE 2 INSERTION LOSS Vs. FREQUENCY 0.0 0.5 1.0 1.5 2.0 2.5 0 500 1000 1500 2000 2500 3000 3500 4000 FREQUENCY (MHz) INSERTION LOSS (dB) + 85ºC + 25ºC - 40ºC STATE 3

A. Performance and quality attributes and conditions not expressly stated in this specification document are intended to be excluded and do not form a part of this specification document. B. Electrical specifications and performance data contained in this specification document are based on Mini-Circuit’s applicable established test performance criteria and measurement instructions. C. The parts covered by this specification document are subject to Mini-Circuits standard limited warranty and terms and conditions (collectively, “Standard Terms”); Purchasers of this part are entitled to the rights and benefits contained therein. For a full statement of the Standard Terms and the exclusive rights and remedies thereunder, please visit Mini-Circuits’ website at www.minicircuits.com/MCLStore/terms.jsp Mini-Circuits ISOLATION BETWEEN RF1/RF2 TO RF COM Vs. FREQUENCY 100 120 140 0 500 1000 1500 2000 2500 3000 3500 4000 FREQUENCY (MHz) ISOLATION (dB) + 85ºC + 25ºC - 40ºC STATE 1 RF COM RETURN LOSS Vs. FREQUENCY 0 500 1000 1500 2000 2500 3000 3500 4000 FREQUENCY (MHz) RETURN LOSS (dB) + 85ºC + 25ºC - 40ºC STATE 2 & 3 RF COM RETURN LOSS Vs. FREQUENCY @ +25°C 0 500 1000 1500 2000 2500 3000 3500 4000 FREQUENCY (MHz) RETURN LOSS (dB) STATE 3 STATE 2 RF RETURN LOSS Vs. FREQUENCY @ +25°C 0 500 1000 1500 2000 2500 3000 3500 4000 FREQUENCY (MHz) RETURN LOSS (dB) RF1 RF COM. RF2 STATE 1 RF1 RETURN LOSS Vs. FREQUENCY 0 500 1000 1500 2000 2500 3000 3500 4000 FREQUENCY (MHz) RETURN LOSS (dB) + 85ºC + 25ºC - 40ºC STATE 3 ISOLATION BETWEEN RF1 TO RF2 Vs. FREQUENCY 100 120 140 0 500 1000 1500 2000 2500 3000 3500 4000 FREQUENCY (MHz) ISOLATION (dB) + 85ºC + 25ºC - 40ºC STATE 1 Typical Performance Curves over various states. For switch state see Truth Table 1 on page 3.

A. Performance and quality attributes and conditions not expressly stated in this specification document are intended to be excluded and do not form a part of this specification document. B. Electrical specifications and performance data contained in this specification document are based on Mini-Circuit’s applicable established test performance criteria and measurement instructions. C. The parts covered by this specification document are subject to Mini-Circuits standard limited warranty and terms and conditions (collectively, “Standard Terms”); Purchasers of this part are entitled to the rights and benefits contained therein. For a full statement of the Standard Terms and the exclusive rights and remedies thereunder, please visit Mini-Circuits’ website at www.minicircuits.com/MCLStore/terms.jsp Mini-Circuits RF1 RETURN LOSS Vs. FREQUENCY 0 500 1000 1500 2000 2500 3000 3500 4000 FREQUENCY (MHz) RETURN LOSS (dB) + 85ºC + 25ºC - 40ºC STATE 1 RF COM RETURN LOSS Vs. FREQUENCY 0 500 1000 1500 2000 2500 3000 3500 4000 FREQUENCY (MHz) RETURN LOSS (dB) + 85ºC + 25ºC - 40ºC STATE 1 RF2 RETURN LOSS Vs. FREQUENCY 0 500 1000 1500 2000 2500 3000 3500 4000 FREQUENCY (MHz) RETURN LOSS (dB) + 85ºC + 25ºC - 40ºC STATE 2 POWER IN @ 1dB COMPRESSION Vs. FREQUENCY 0 200 400 600 800 1000 FREQUENCY (MHz) P.IN @ 1dB COMP. (dBm) + 85ºC + 25ºC - 40ºC STATE 2 & 3 INPUT IP3 Vs. FREQUENCY 0 500 1000 1500 2000 2500 3000 FREQUENCY (MHz) IP3 @ INPUT (dBm) + 85ºC + 25ºC - 40ºC STATE 2 & 3 RF2 RETURN LOSS Vs. FREQUENCY 0 500 1000 1500 2000 2500 3000 3500 4000 FREQUENCY (MHz) RETURN LOSS (dB) + 85ºC + 25ºC - 40ºC STATE 1 Typical Performance Curves over various states. For switch state see Truth Table 1 on page 3.

A. Performance and quality attributes and conditions not expressly stated in this specification document are intended to be excluded and do not form a part of this specification document. B. Electrical specifications and performance data contained in this specification document are based on Mini-Circuit’s applicable established test performance criteria and measurement instructions. C. The parts covered by this specification document are subject to Mini-Circuits standard limited warranty and terms and conditions (collectively, “Standard Terms”); Purchasers of this part are entitled to the rights and benefits contained therein. For a full statement of the Standard Terms and the exclusive rights and remedies thereunder, please visit Mini-Circuits’ website at www.minicircuits.com/MCLStore/terms.jsp Mini-Circuits Outline Drawing (HL1162) Outline Dimensions ( )inchmm A B C D E F G H J K L M N P Q R S WT. GRAMS Q G S K H RN P TYP x 2 3X SMA FEMALE CONN. M L J K H F E TYP x 2 B TYP x 2 C TYP x 2 A D J3J2J1 P2 P4