Component Specifications#

Saw Filter#

EFR32ZG23

ZGM230S

Applicable

Applicable

Silicon Labs recommends using a SAW filter in Z-Wave 800 gateway designs also containing GSM or LTE transceivers operating in the sub-GHz band. A SAW filter attenuates unwanted radio emissions and improves the receiver blocking performance. Three regions are defined to cover the global Z-Wave frequency range. The SAW filter specifications described in the following tables are recommended for new designs. An overview of supported Z-Wave regions and frequencies can be found in [1].

Find a guideline on when to use a SAW filter in [13].

Region E

Frequency Range

Unit

Minimum

Typical

Maximum

Operating temperature

—

◦C

-30

—

+85

Insertion loss

865.0 to 870.1 MHz

dB

—

—

3.5

Amplitude ripple

865.0 to 870.1 MHz

dB

—

—

2.0

Relative attenuation

0.1 to 800.0 MHz

dB

40

—

—

805 to 830 MHz

dB

35

—

—

835 to 855 MHz

dB

—

—

—

860 to 862 MHz

dB

—

—

—

890 to 1000 MHz

dB

40

—

—

1005 to 2000 MHz

dB

30

—

—

2005 to 3000 MHz

dB

30

—

—

3005 to 4000 MHz

dB

30

—

—

4005 to 6000 MHz

dB

—

—

—

In / out impedance

—

—

50

—

Region U

Frequency Range

Unit

Minimum

Typical

Maximum

Operating temperature

—

◦C

-30

—

+85

Insertion loss

908.2 to 916.3 MHz

dB

—

—

2.5

Amplitude ripple

908.2 to 916.3 MHz

dB

—

—

1.5

Relative attenuation

720 to 800 MHz

dB

45

—

—

805 to 840 MHz

dB

—

—

—

845 to 870 MHz

dB

40

—

—

870 to 895 MHz

dB

—

—

—

940 to 1000 MHz

dB

9

—

—

1005 to 2000 MHz

dB

9

—

—

2005 to 3000 MHz

dB

17

—

—

3005 to 4000 MHz

dB

—

—

—

4005 to 6000 MHz

dB

—

—

—

In / out impedance

—

—

50

—

Region H

Frequency Range

Unit

Minimum

Typical

Maximum

Operating temperature

—

◦C

-30

—

+85

Insertion loss

919.5 to 926.5 MHz

dB

—

—

3.2

Amplitude ripple

919.5 to 926.5 MHz

dB

—

—

1.0

Relative attenuation

40 to 870 MHz

dB

40

—

—

875 to 885 MHz

dB

35

—

—

890 to 905 MHz

dB

20

—

—

945 to 955 MHz

dB

20

—

—

960 to 1000 MHz

dB

20

—

—

1005 to 1500 MHz

dB

40

—

—

1505 to 3000 MHz

dB

20

—

—

3005 to 4000 MHz

dB

—

—

—

4005 to 6000 MHz

dB

—

—

—

In / out impedance

—

—

50

—

Recommended Components for GSM/LTE Gateways#

SAW Filters

Region

Distributor

Component Number

Note

E

ACTE A/S, www.acte.dk, salessupport@acte.dk

SF4000-868-07-SX

Preferred

U

ACTE A/S, www.acte.dk, salessupport@acte.dk

SF4000-914-06-SX

Preferred

H

ACTE A/S, www.acte.dk, salessupport@acte.dk

SF1256-923-02

Preferred

Optional Components for GSM/LTE Gateways#

LTE Improved SAW Filters

Region

Distributor

Component Number

Note

E

ACTE A/S, www.acte.dk, salessupport@acte.dk

SF4000-869-14-SX

Improved LTE rejection

Crystal#

EFR32ZG23

ZGM230S

Applicable

N/A

The crystal is part of the oscillator that generates the reference frequency for the digital system clock and RF carrier. It is a critical component of a Z-Wave 800 device. Further, it is mandatory to calibrate the crystal for EFR32ZG23-based designs. Refer to section Calibration for more information.

The EFR32ZG23 has internal crystal capacitors and does not need any external circuitry apart from the crystal itself. The ZGM230S has an integrated crystal and is calibrated at the time of production.

For more information about the crystal oscillator, crystals, and the EFR32ZG23 device, refer to [7].

Crystal Specification for Z-Wave 800 Devices

Parameter

Symbol

Min

Typ

Max

Unit

Crystal frequency

fHFXO

—

39

—

MHz

Supported crystal equivalent series resistance (ESR)

ESRHFXO_39M

—

40

60

Ω

Supported range of crystal load capacitance

CHFXO_CL

—

10

—

pF

Combined tolerance for the crystal

FTtotalHFXO

-27

—

27

ppm/5yr

Recommended Components#

Refer to Mandatory Crystal Adjustment for EFR32ZG14/EFR32ZG23 Based Products User's Guide for the crystal recommendations and other important aspects of the crystal selection.