Infineon

TDA5230 - ASK/FSK ISM Receiver 302-870MHz | Infineon

MPN: TDA5230 ✗ End of Life
In Stock Ships in 1-3 business days
[DATA_NEEDED: supply voltage range] Vdss [DATA_NEEDED: supply current] Id TSSOP (surface mount) Package 302 MHz to 320 MHz Speed
From $1.28 USD / Unit
MOQ: 1 |
Price updated: 2026-09-02
Volume Pricing
Qty Unit Price Extended
1 $1.55 $1.55
10 $1.48 $14.80
100 $1.4 $140.00
500 $1.34 $670.00
1,000 $1.28 $1,280.00
ℹ️ All prices are in USD

Drop-in alternatives for TDA5230 — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool — Select alternative parts for side-by-side comparison:

TDA5231

✅ Drop-In ⚠️ 参数待验证
📦 TSSOP
same TDA523x family receiver; band/configuration variant - verify band coverage vs TDA5230 before footprint reuse

📋 Reference alternative (not in catalog)

TDA5211

✅ Drop-In ⚠️ 参数待验证
Infineon
📦 TSSOP
FSK/ASK Superheterodyne Receiver · 310 MHz to 350 MHz · ASK, FSK · -113 dBm · 100 kbps · 5 V · 50 nA · Single-chip Superheterodyne (SHR)

✓ In Stock

Contact for price

View Datasheet →

TDA5210

✅ Drop-In ⚠️ 参数待验证
Infineon
📦 TSSOP
FSK/ASK Single Conversion Superheterodyne Receiver · 400 MHz to 440 MHz · 810 MHz to 870 MHz · 434 MHz, 868 MHz · FSK / ASK · -110 dBm · 100 kbps · 4.5 V to 5.5 V

✓ In Stock

$2.75 / Unit

View Datasheet →

TDA5100

✅ Drop-In ⚠️ 参数待验证
Infineon
📦 TSSOP
Single-chip ASK/FSK RF transmitter · 433 MHz to 435 MHz, 866 MHz to 870 MHz · ASK, FSK · 5 dBm · 20 kbps · 2.5 V / 3.3 V · Fully integrated on-chip · PCB or surface mount antenna

✓ In Stock

$1.85 / Unit

View Datasheet →

TDA5101

✅ Drop-In ⚠️ 参数待验证
Infineon
📦 TSSOP
Single-chip ASK/FSK RF Transmitter · 315 MHz · ASK / FSK · 5 dBm (at 3V) · 20 kbps · Single channel · 2.5 V / 3.3 V · PCB, Surface Mount Antenna

✓ In Stock

$1.25 / Unit

View Datasheet →

TDA5230 Maximum Ratings & Electrical Characteristics

Product Type Single-chip ASK/FSK superheterodyne image-reject receiver
Modulation ASK / FSK
Frequency Band 1 302 MHz to 320 MHz
Frequency Band 2 433 MHz to 450 MHz
Frequency Band 3 865 MHz to 870 MHz
Architecture Single conversion superheterodyne, image-reject
Data Coding Manchester-coded data signals
Baseband Digital baseband processing (on-chip)
Channel Selection Multi-channel
Power Class Low power
Package TSSOP (surface mount)
Mounting Type Surface Mount

TDA5230 tssop (surface mount) Pin Configuration Guide

Complete pinout information for TDA5230 (tssop (surface mount) package). This digital IC includes GPIO, communication interfaces (UART, SPI, I2C), and power pins. Refer to the manufacturer datasheet for alternate pin functions and configuration options. Essential for embedded system design and PCB layout.

tssop (surface mount) package pinout diagram for TDA5230

No detailed pinout data available for TDA5230.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for TDA5230 Drain-to-Source Voltage (Vds) Drain Current (Id)

No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.

Typical Applications

TDA5230 is suitable for 6 applications: Remote Keyless Entry (RKE) Receiver, 868 MHz Home and Building Automation, Wireless Sensor Telemetry (433 MHz ISM), Security and Alarm Systems, Industrial Remote Control (Crane/Hoist/Handheld), Smart Meter and Sub-GHz IoT Readout.

🚗

Remote Keyless Entry (RKE) Receiver

The TDA5230's native 433-450 MHz band coverage includes the 433.92 MHz ISM center frequency used worldwide for remote keyless entry, and its ASK/FSK demodulation matches the on-off-keyed transmissions of typical key fobs. The integrated Manchester-coded digital baseband directly decodes standard RKE frame formats, removing the need for an external decoder IC or MCU-intensive software decoding. In a typical circuit, the TDA5230 sits behind a loop antenna or small PCB antenna and feeds decoded data plus RSSI information to the vehicle or door-controller MCU. The image-reject superheterodyne architecture suppresses the mirror channel, relaxing front-end filter requirements and lowering bill-of-materials cost compared to conventional single-conversion receivers, while the low-power design suits long standby operation in always-listening receiver nodes.

🏠

868 MHz Home and Building Automation

For home and building automation nodes operating in the 865-870 MHz ISM band, the TDA5230 provides a dedicated receiver path with multi-channel synthesizer tuning, allowing a single hardware design to serve multiple regional sub-bands (865-870 MHz in Europe, adjacent bands in Asia). Its digital baseband processing for Manchester-coded data aligns with common one-way sensor and actuator protocols used in lighting, shutter, and alarm systems. Because the receiver integrates channel filtering and data slicing on-chip, the host MCU only handles decoded bytes, reducing firmware complexity and current consumption. Compared to software-defined or analog-slicing receivers, the TDA5230's deterministic decoding improves packet-error performance in noisy residential RF environments with Wi-Fi and other 868 MHz congestion sources.

📡

Wireless Sensor Telemetry (433 MHz ISM)

Battery-powered sensor telemetry at 433 MHz benefits directly from the TDA5230's low-power single-conversion architecture and 433-450 MHz coverage. The receiver's multi-channel capability lets one gateway monitor several sensor sub-channels without hardware changes, while on-chip Manchester decoding delivers clean data to the gateway MCU. The image-reject mixer reduces susceptibility to image-band interferers, an important advantage in industrial environments where 315/433 MHz noise sources are common. Because sensitivity, channel filter, and baseband settings are configured digitally, firmware can trade data rate against link margin per deployment. Designers should budget crystal tolerance against the multi-channel spacing and verify the supply current profile from the datasheet to size the gateway's standby battery accordingly.

🎥

Security and Alarm Systems

Wireless alarm sensors (door contacts, PIR detectors, smoke detectors) in the 302-320 MHz and 433-450 MHz bands use the TDA5230 as the central receiver: its three-band coverage lets one receiver hardware platform serve regional security markets that mandate different ISM frequencies. The integrated Manchester decoder authenticates standard rolling-code and fixed-code sensor frames at the receiver IC level, and the image-reject architecture maintains sensitivity despite the crowded RF environment around monitored premises. Low power consumption supports panel designs that must remain receptive 24/7 on battery backup. Compared to discrete superhet solutions, the TDA5230 reduces component count and channel-to-channel alignment effort, improving manufacturing consistency across large security-system production volumes.

🏭

Industrial Remote Control (Crane/Hoist/Handheld)

Industrial remote-control receivers for cranes, hoists, and handheld controllers require robust links in the 433-450 MHz and 865-870 MHz ISM bands, exactly where the TDA5230 operates. Its single-conversion multi-channel synthesizer enables frequency-hopping or multi-channel operation to coexist with other plant transmitters, and the digital baseband's Manchester decoding provides deterministic latency and error behavior critical for safety-rated stop commands. The image-reject front end tolerates the strong interferers typical of motor-driven industrial sites without exotic front-end filtering. Integrating the complete receive chain in one TSSOP package shrinks receiver boards inside compact handheld and pendant enclosures, while datasheet-configurable channel filters let designers balance command data rate against link robustness.

🧩

Smart Meter and Sub-GHz IoT Readout

Sub-GHz metering readouts in the 865-870 MHz band use the TDA5230 as a low-power wake-up and data receiver. The 865-870 MHz coverage matches European metering regulations, and the multi-channel synthesizer supports listening across several metering channels from one IC. Its digital baseband delivers Manchester-decoded data to the meter MCU, simplifying protocol handling for one-way meter broadcasts. The image-reject architecture is advantageous near switch-mode loads in meter cabinets that generate broadband noise, and the low-power profile supports battery-backed data loggers. Designers should verify sensitivity and supply-current figures from the manufacturer datasheet when calculating link budgets for basement or buried meter installations, and confirm last-time-buy availability given the part's discontinued status at Infineon.

What is the TDA5230 and what frequency bands does it cover?
The TDA5230 is an Infineon single-chip ASK/FSK superheterodyne image-reject receiver for Manchester-coded data signals. According to the Infineon product overview, it covers three ISM bands: 302-320 MHz, 433-450 MHz, and 865-870 MHz. The single-conversion multi-channel architecture with on-chip digital baseband processing makes it suitable for low-power remote-control and telemetry links in these license-free bands.
Where to buy TDA5230 online?
TDA5230 can be purchased through LCSC, which lists the Infineon TDA5230 in stock with pricing from $1.548 (as of 2026-09-03), and through secondary-market distributors such as Rochester Electronics via DigiKey Marketplace and brokers like Win Source. Because the part is discontinued by Infineon, primary authorized stock is limited, so verify stock and date codes with the seller before ordering.
What is the price of TDA5230?
The TDA5230 is priced from approximately $1.548 per unit at LCSC as of 2026-09-03. Because the device is obsolete at the manufacturer, prices from brokers and excess-stock channels vary with availability; expect premiums on small quantities from secondary distributors. XAIPART lists tier pricing starting at $1.55 for quantity 1, declining at 10, 100, 500, and 1000 pieces.
Is TDA5230 in stock?
Availability is limited but not zero: LCSC currently lists the TDA5230 as an in-stock component (as of 2026-09-03), and Rochester Electronics offers it through DigiKey Marketplace as a continuing source for discontinued devices. Lead times through authorized channels can be long, so engineers should confirm stock and consider last-time-buy quantities for sustaining production.
What is the difference between TDA5230 and TDA5211?
The TDA5230 is a single-conversion image-reject superheterodyne receiver with digital baseband processing covering 302-320, 433-450, and 865-870 MHz ISM bands. The TDA5211 belongs to Infineon's companion receiver family (TDA521x) targeting similar ASK/FSK low-power ISM links. Both are Infineon low-power ASK/FSK receivers, but band coverage, baseband processing, and pinout differ - always verify pin-to-pin compatibility against both datasheets before substituting.
Can TDA5210 replace TDA5230?
The TDA5210 is a same-brand family candidate from Infineon's low-power ASK/FSK receiver line, but it is not a guaranteed pin-to-pin drop-in for the TDA5230. The TDA5230 uniquely integrates digital baseband processing for Manchester-coded data with image-reject architecture across three ISM bands. Compare package, pinout, sensitivity, band coverage, and data rate in both datasheets; a footprint change and firmware re-validation are typically required.
What is the best drop-in replacement for TDA5230?
There is no universally verified pin-to-pin drop-in replacement for the TDA5230 in the cross-reference data reviewed. The closest same-brand candidates are TDA5210, TDA5211, and TDA5231 from Infineon's low-power ASK/FSK receiver families, which require pinout and footprint verification. For new designs, Infineon's current-generation ISM receiver/transceiver portfolio is the recommended migration path; for sustaining legacy builds, Rochester Electronics continues supplying the original TDA5230.
What is the best Infineon equivalent for TDA5230 for new designs?
For new designs, engineers should evaluate Infineon's current ISM receiver families rather than the discontinued TDA5230. Within the legacy portfolio, the TDA5211 and TDA5210 receivers cover comparable ASK/FSK low-power applications in the 300-870 MHz ISM space, and the TDA5231 is the closest same-family variant. Each requires pin and parameter comparison, since none is an exact footprint-compatible substitute for the TDA5230's image-reject receiver plus digital baseband combination.
Where to download the TDA5230 datasheet PDF?
The Infineon TDA5230 datasheet PDF is freely available from datasheet archives such as Alldatasheet (alldatasheet.com/datasheet-pdf/pdf/419342/INFINEON/TDA5230.html) and DatasheetQ, which host the 30-page Infineon document titled 'Universal Low Power ASK/FSK Single Conversion Multi-Channel Image-Reject Receiver with Digital Baseband Processing'. Always cross-check archived copies against Infineon's official documentation portal for the latest revision before finalizing a design.
Where can I find the TDA5230 pinout?
The complete TDA5230 pinout is documented in the manufacturer datasheet, titled 'Universal Low Power ASK/FSK Single Conversion Multi-Channel Image-Reject Receiver with Digital Baseband Processing', available via Alldatasheet and DatasheetQ. The device is supplied in a TSSOP surface-mount package. Because pin naming details must match the datasheet exactly, download the PDF rather than relying on third-party summaries when planning your PCB footprint.
Is the TDA5230 suitable for a 433 MHz remote keyless entry receiver?
Yes, the TDA5230 is well suited for 433 MHz remote keyless entry. Its 433-450 MHz band coverage directly includes the 433.92 MHz ISM center frequency, and its ASK/FSK demodulation with integrated Manchester decoding matches the coding used by typical key-fob transmitters. The image-reject superheterodyne architecture reduces external filtering requirements, while low-power operation suits always-on receiver nodes in vehicles and access-control systems.
What are the key specifications of TDA5230 that engineers should know?
The key TDA5230 specifications are: single-chip ASK/FSK demodulation; superheterodyne image-reject, single-conversion, multi-channel architecture; coverage of the 302-320 MHz, 433-450 MHz, and 865-870 MHz ISM bands; on-chip digital baseband processing for Manchester-coded data; and a low-power design in a TSSOP surface-mount package. According to the Infineon product overview, the TDA523x family targets highly sensitive, low-power Manchester-coded receiver links.
Is the TDA5230 still in production or obsolete?
The TDA5230 is discontinued/obsolete at Infineon for new designs. Secondary-market and last-time-buy channels remain active: Rochester Electronics lists it via DigiKey Marketplace, LCSC shows in-stock quantity, and brokers such as Win Source and Semiconductor-Electronics offer stock or RFQ sourcing (as of 2026-09-03). Plan a last-time-buy or a redesign to a current Infineon ISM receiver for long-term production.
How does the TDA5230 digital baseband processing benefit my design?
The TDA5230 integrates digital baseband processing for Manchester-coded data signals, which offloads data slicing and decoding from the host microcontroller. This reduces MCU firmware complexity and improves noise immunity because the decision threshold is handled digitally rather than with an external analog comparator. In multi-channel designs, the digital baseband also simplifies channel-to-channel consistency, an advantage over simpler analog-baseband receivers in the same ISM band.
What supply voltage does the TDA5230 require?
The exact supply voltage range of the TDA5230 is not stated in the retrieved web data; consult the manufacturer datasheet (30-page Infineon document, available via Alldatasheet) for the verified electrical specification. Infineon's TDA523x/TDA521x low-power ISM receiver family is generally designed for battery-supplied links, but you should confirm the absolute maximum and recommended operating supply values from the datasheet's electrical characteristics table before powering the device.
Hey Google, what can replace the TDA5230?
Replacement options for the TDA5230 start with Infineon's own receiver families: TDA5231 as the closest same-family variant, and TDA5210/TDA5211 as same-brand low-power ASK/FSK receivers - all require pinout and footprint verification before use. No cross-brand pin-compatible equivalent was confirmed in the cross-reference data reviewed. For legacy builds, Rochester Electronics continues supplying the original TDA5230, which avoids redesign risk entirely.

Engineering reference data for TDA5230 — comparison, design guidance, and compliance information.

Selection Guide

Choose the TDA5230 when your legacy design needs a single receiver covering 302-320, 433-450, and 865-870 MHz ISM bands with on-chip ASK/FSK demodulation and Manchester decoding - typical for multi-region RKE, alarm, and metering platforms. Its image-reject architecture reduces external filtering compared to conventional superhet receivers. Choose TDA5211 or TDA5210 if you need an Infineon low-power ASK/FSK receiver that remains easier to source and your band set is narrower, accepting pinout and firmware rework. Choose TDA5231 if you stay within the TDA523x family and its band configuration matches your application. Honest trade-off: because the TDA5230 is obsolete, new designs should prefer current Infineon ISM receivers; existing production should secure a last-time-buy via Rochester Electronics or LCSC stock (from $1.548 as of 2026-09-03) before committing to a redesign.

Comparison with Alternatives

Parameter This Product TDA5231 TDA5211 TDA5210
Package TSSOP (surface mount) TSSOP (same family) [DATA_NEEDED] [DATA_NEEDED]
Brand Infineon Infineon Infineon Infineon
Frequency Bands 302-320 / 433-450 / 865-870 MHz [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
Modulation ASK / FSK ASK / FSK (same family) ASK / FSK ASK / FSK
Architecture Single conversion superheterodyne, image-reject Single conversion superheterodyne (family) [DATA_NEEDED] [DATA_NEEDED]
Digital Baseband Processing Yes (Manchester-coded data) Yes (family feature) [DATA_NEEDED] [DATA_NEEDED]
Sensitivity [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
Lifecycle Status Obsolete (secondary sources active) Discontinued (verify) Active on XAIPART [DATA_NEEDED]

Key Differentiators

  • Triple ISM band coverage in one IC (vs TDA5211)
  • Integrated Manchester-coded digital baseband (vs TDA5210)
  • Image-reject superheterodyne architecture (vs TDA5231)

Design Notes

Because the TDA5230 is a superheterodyne image-reject receiver, local oscillator and IF routing dominate layout risk. Keep the crystal/LO loop short and away from the data and baseband pins, and place band-select and channel-filter external components exactly per the datasheet reference layout. Use a solid ground plane with the TSSOP ground connections tied directly to it, and partition the antenna matching network at the board edge. Verify the datasheet reference design before freezing the footprint, since pin functions are band- and configuration-dependent.

Estimated: as a low-power battery-supplied receiver, supply-current budgeting should distinguish receive mode, polling/sleep mode, and synthesizer settling intervals from the datasheet electrical characteristics table (values not present in retrieved web data - [DATA_NEEDED: supply current]). Decouple the supply pin with at least 100 nF ceramic plus bulk capacitance close to the pin; RF receivers are sensitive to supply ripple from shared DC-DC converters, so prefer an LDO or LC-filtered rail for the TDA5230 supply in mixed-power designs.

The TDA5230 is discontinued at Infineon; designs started today face sourcing risk. Two frequent pitfalls: (1) assuming Manchester decoding settings carry over between TDA523x family members - confirm baseband configuration per datasheet; (2) using the same channel plan across 433 MHz and 868 MHz builds without re-checking crystal tolerance against channel spacing, which can shift the IF out of the filter passband and degrade sensitivity. Always re-run receiver sensitivity tests per band after any crystal or reference change.

Compliance Information

RoHS
Unknown
REACH
Unknown
AEC-Q100
Not Applicable
Lead Free
Unknown
Halogen Free
Unknown
Conflict Minerals
Unknown

Compliance status not stated in retrieved web data; consult the official Infineon product page and datasheet for RoHS/REACH declarations.

Data verified on: 2026-09-03 — data verified and curated by XAIPART's component engineering team

Related Searches

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Related Components & Terms

Infineon TDA5230 TDA5231 TDA5211 TDA5210 TDA5100 TDA5101 TDA5051AT/C1 TDA523x family ASK FSK superheterodyne receiver image-reject receiver Manchester coding ISM band 433 MHz 868 MHz RF receiver TSSOP RoHS remote keyless entry digital baseband processing Rochester Electronics LCSC
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