Silicon Laboratories SI4734/35-B20 Pin Descriptions Si4734/35-GM, Pin Numbers Name Description

Page 30

Si4734/35-B20

6. Pin Descriptions: Si4734/35-GM

 

NC

1

 

FMI

 

 

 

 

2

RFGND

 

 

 

 

3

 

AMI

 

 

 

 

4

 

 

 

 

 

 

 

RST

 

5

 

 

 

 

 

 

 

 

 

 

6

 

 

 

 

 

SEN

 

 

 

 

 

 

 

 

 

 

NC

GPO1

 

GPO2/INT

 

 

 

 

 

 

 

20

 

19

 

18

 

 

 

 

 

 

GND

PAD

7

 

8

 

9

 

 

 

 

 

SCLK

 

SDIO

 

RCLK

GPO3/DCLK

DFS

 

17

16

 

 

15

DOUT

 

14

LOUT

 

13

ROUT

 

12

GND

10

11

VDD

VIO

 

 

Pin Number(s)

Name

Description

 

 

 

 

 

1, 20

 

 

NC

No connect. Leave floating.

 

 

 

 

 

2

 

 

FMI

FM RF inputs.

 

 

 

3

RFGND

RF ground. Connect to ground plane on PCB.

 

 

 

 

 

4

 

 

AMI

AM/SW/LW RF input.

 

 

 

 

 

 

 

 

 

5

 

 

 

 

 

 

 

Device reset (active low) input.

RST

 

 

 

 

 

 

 

6

 

 

 

 

 

 

 

Serial enable input (active low).

 

SEN

 

 

 

7

SCLK

Serial clock input.

 

 

 

8

SDIO

Serial data input/output.

 

 

 

9

RCLK

External reference oscillator input.

 

 

 

 

 

10

 

 

VIO

I/O supply voltage.

11

 

 

VDD

Supply voltage. May be connected directly to battery.

12, GND PAD

GND

Ground. Connect to ground plane on PCB.

 

 

 

13

ROUT

Right audio line output in analog output mode.

 

 

 

14

LOUT

Left audio line output in analog output mode.

 

 

 

15

DOUT

Digital output data in digital output mode.

 

 

 

 

 

16

 

 

DFS

Digital frame synchronization input in digital output mode.

 

 

 

17

GPO3/DCLK

General purpose output, crystal oscillator, or digital bit synchronous clock input

 

 

 

 

 

 

 

 

in digital output mode.

 

 

 

 

18

 

 

 

 

 

 

 

General purpose output or interrupt pin.

GPO2/INT

 

 

 

19

GPO1

General purpose output.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

30

Rev. 1.0

Image 30
Contents Applications FeaturesFunctional Block Diagram DescriptionSi4734/35-B20 Table of Contents Parameter Symbol Value Unit Electrical SpecificationsParameter Symbol Test Condition Min Typ Max Unit Recommended Operating ConditionsAM/SW/LW Mode DC CharacteristicsParameter Symbol Test Condition Min Typ Max Unit FM Mode Supplies and InterfaceParameter Symbol Min Typ Max Unit RSTGPO1, GPO2/INT Wire Control Interface Characteristics1,2,3 StartSclk Sdio SEN SclkSPI Control Interface Write Timing Parameters Dclk DFS Dout FM Receiver Characteristics1,2 RDS Bler 5%Fmdeemphasis = Si4734/35-B20 KHz Long Wave LW 153 279 Refclkprescale RefclkCrystal Oscillator Typical Application Schematic Si4734/35-GMBill of Materials Components Value/Description SupplierOptional Components 5.5 Functional DescriptionOverview 3.6VAM Receiver Operating ModesFM Receiver SW ReceiverDigital Audio Interface Si4735 Only Audio Data FormatsAudio Sample Rates I2S Digital Audio Format Soft Mute Stereo Audio Processing De-emphasisStereo DAC RDS/RBDS Processor Si4735 OnlySeek TuningBus Mode Select on Rising Edge Reference ClockSPI Control Interface Mode Programming with Commands Firmware UpgradesReset, Power Up, and Power Down GPO OutputsCmd Commands and PropertiesSi473x Command Summary DescriptionProp Name Description Default Si473x Property SummaryAmdeemphasis RdsconfigRxvolume AmchannelfilterPin Descriptions Si4734/35-GM Pin Numbers Name DescriptionQFN Ordering GuidePart Number Description Package Operating RDS/RBDSPackage Markings Top Marks Si4734/35 Top MarkTop Mark Explanation Symbol Millimeters Min Nom Max Package Outline Si4734/35 QFNPCB Land Pattern Si4734/35 QFN PCB Land PatternPCB Land Pattern Dimensions Symbol Millimeters Min MaxBSC Additional Reference Resources Document Change List Revision 0.4 to RevisionContact Information

SI4734/35-B20 specifications

Silicon Laboratories SI4734/35-B20 is an advanced, highly integrated broadcast radio receiver designed for various consumer applications. Hailed for its compactness and versatility, the SI4734/35-B20 offers extensive features that enable radio reception across multiple frequency bands, including AM, FM, and shortwave. It caters to the needs of manufacturers looking to incorporate reliable radio capabilities into their devices, ensuring quality sound and performance without the cumbersome designs typically associated with traditional radio receivers.

At the heart of the SI4734/35-B20 are performance-optimized technologies. One standout feature is the device's ability to support digital and analog processing simultaneously, utilizing Silicon Labs’ proprietary digital signal processing (DSP) technology. This architecture not only enhances signal clarity but also helps in mitigating noise, enabling users to experience a superior audio quality across varied environments.

Another notable characteristic of the SI4734/35-B20 is its low power consumption, making it ideal for battery-operated devices. The receiver employs sophisticated power management techniques that allow it to operate efficiently, prolonging battery life while maintaining optimal performance. In this context, the “sleep” mode and fast wake-up times contribute to significant energy savings, affirming its suitability for portable applications.

The SI4734/35-B20 is designed with a robust set of features for ease of integration into various systems. The device supports multiple programmable interfaces, including I2C, providing flexibility in communication with microcontrollers and facilitating straightforward integration into existing designs. Because of its programmable architecture, developers can customize the receiver’s capabilities according to the specific needs of their applications.

Additional features include automatic frequency control (AFC) for stability in tuning, allowing seamless transitions while listening to programs. The built-in AGC (automatic gain control) optimizes the receiver's sensitivity to ensure clear reception even in weak signal conditions.

The SI4734/35-B20 also possesses a wide frequency range, accommodating both standard and niche applications. Its compact form factor and surface-mount technology (SMT) footprint further enhance its appeal to developers seeking to maximize board space in their designs.

In conclusion, the Silicon Laboratories SI4734/35-B20 is a significant advancement in radio receiver technology, combining advanced DSP, low power consumption, and ease of integration. These attributes make it a preferred choice for engineers and manufacturers looking to deliver high-quality audio experiences across a range of consumer electronics, from radios to multifunctional smart devices.