Infineon

TDA5210 - FSK/ASK Superhet Receiver 868MHz | Infineon

MPN: TDA5210 ✓ Active
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4.5 V to 5.5 V Vdss PG-TSSOP-28 Package 400 MHz to 440 MHz Speed
From $2.75 USD / Unit
MOQ: 1 |
Price updated: 2026-09-02
Volume Pricing
Qty Unit Price Extended
1 $4.2 $4.20
10 $3.85 $38.50
100 $3.4 $340.00
500 $3.05 $1,525.00
1,000 $2.75 $2,750.00
ℹ️ All prices are in USD

Drop-in alternatives for TDA5210 — 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:

TDA5200

✅ Drop-In
Infineon
📦 PG-TSSOP-28
ASK Single Conversion RF Receiver · 868-870 MHz · 433-435 MHz · ASK (Amplitude Shift Keying) · Single Conversion · 5 V · Very low power consumption · High (few external components required)

✓ In Stock

$3.98 / Unit

View Datasheet →

TDA5211

✅ Drop-In ⚠️ 参数待验证
Infineon
📦 PG-TSSOP-28
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 →

TDA5230

✅ Drop-In ⚠️ 参数待验证
Infineon
📦 PG-TSSOP-28
Single-chip ASK/FSK superheterodyne image-reject receiver · ASK / FSK · 302 MHz to 320 MHz · 433 MHz to 450 MHz · 865 MHz to 870 MHz · Single conversion superheterodyne, image-reject · Manchester-coded data signals · Digital baseband processing (on-chip)

✓ In Stock

$1.28 / Unit

View Datasheet →

TDA5201

✅ Drop-In ⚠️ 参数待验证
Infineon
📦 PG-TSSOP-28
Single-chip ASK single conversion receiver · ASK · 315 MHz to 345 MHz (310 MHz to 350 MHz band) · -113 dBm · PG-TSSOP-28 · Surface Mount (PCB) · Very low power consumption · High level of integration, few external components

✓ In Stock

$2.4 / Unit

View Datasheet →

TDA5210 Maximum Ratings & Electrical Characteristics

Product Type FSK/ASK Single Conversion Superheterodyne Receiver
Frequency Band 1 400 MHz to 440 MHz
Frequency Band 2 810 MHz to 870 MHz
ISM Band Support 434 MHz, 868 MHz
Modulation FSK / ASK
Sensitivity -110 dBm
Maximum Data Rate 100 kbps
Supply Voltage Range 4.5 V to 5.5 V
Operating Temperature -40C to +105C
RSSI Output Yes
Package PG-TSSOP-28
Mounting Type Surface Mount
Architecture Single conversion superheterodyne
RoHS Status Compliant
Pin Compatibility Compatible with ASK receiver TDA5200

TDA5210 pg-tssop-28 Pin Configuration Guide

Complete pinout information for TDA5210 (pg-tssop-28 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.

pg-tssop-28 package pinout diagram for TDA5210

No detailed pinout data available for TDA5210.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for TDA5210 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

TDA5210 is suitable for 6 applications: Remote Keyless Entry (RKE) Receivers, 868 MHz ISM/SRD Telemetry, Home and Building Automation, Security and Alarm Systems, Industrial Wireless Sensor Networks, Smart Metering and AMR.

🚗

Remote Keyless Entry (RKE) Receivers

The TDA5210 fits RKE base-station receivers because its 810-870 MHz coverage includes the 868 MHz European SRD band and 400-440 MHz covers 434 MHz Asian/US links, letting one design serve multiple regions. Its -110 dBm sensitivity and 100 kbps data rate support rolling-code protocols with strong link budgets, while the RSSI output enables simple signal-quality monitoring and polling schemes. In a typical circuit, the TDA5210 demodulates the FSK or ASK carrier from an Infineon TDA5100/TDA5101 transmitter and feeds the data slicer output to the vehicle MCU. Very low power consumption supports always-listening or duty-cycled receivers without excessive battery drain, and the -40C to +105C range handles under-dash thermal environments.

🌐

868 MHz ISM/SRD Telemetry

For short-range telemetry in the 868 MHz SRD band, the TDA5210 provides a complete single-chip receive chain: LNA, mixer, IF limiting amplifier, and FSK/ASK demodulator, eliminating discrete RF stages and reducing BOM cost. Sensitivity of approximately -110 dBm yields link budgets above 100 dB, adequate for metering, sensor-node, and actuator links at tens to hundreds of meters with compact antennas. The 100 kbps ceiling is well matched to SRD duty-cycle regulations, where low data burst rates are typical. Designers should follow the datasheet reference design for the crystal, PLL loop filter, and matching network, and note the 4.5 V to 5.5 V supply requirement when interfacing with 3.3 V microcontrollers.

🏠

Home and Building Automation

Wireless switches, dimmer receivers, and blind/shutter controllers in the 434 MHz and 868 MHz bands are a natural fit for the TDA5210. Dual-band coverage in one part lets a single PCB variant serve EU (868 MHz) and Asia (434 MHz) markets by changing only the antenna matching and reference frequency. FSK/ASK flexibility allows reuse across legacy ASK product lines (via TDA5200 pin compatibility) and newer FSK links. The RSSI output supports simple link-quality diagnostics during installation, and the -40C to +105C industrial temperature range suits breaker-box and ceiling-rose installations. Low current draw matters for mains-free battery sensors that wake the receiver periodically.

🎥

Security and Alarm Systems

Wireless PIR sensors, door contacts, and alarm panels rely on dependable sub-GHz links where false alarms from interference must be minimized. The TDA5210's superheterodyne architecture provides the selectivity that simple TRF or ASK receivers lack, rejecting out-of-band interferers in the crowded 433 MHz and 868 MHz bands. Its -110 dBm sensitivity extends battery-powered sensor battery life by permitting lower transmit power or lower duty cycles, and FSK demodulation further improves robustness against amplitude-domain interference. The 100 kbps data rate covers typical alarm frame formats with margin, and the RSSI output can flag jamming or low-battery sensor conditions at the panel.

🏭

Industrial Wireless Sensor Networks

In factories and process plants, sub-GHz ISM links at 434 MHz or 868 MHz provide penetration and range that 2.4 GHz cannot. The TDA5210's -40C to +105C operating range and 4.5 V to 5.5 V supply integrate well with industrial 5 V rails common in PLC-adjacent I/O, simplifying power design. Single-conversion SHR architecture delivers repeatable sensitivity and channel selectivity across temperature, important for always-installed infrastructure nodes. With 100 kbps max data rate, it targets monitoring and control traffic rather than high-throughput backhaul. RSSI output enables mesh or star-network link monitoring. Pair with TDA5100/TDA5101 based transmitters for a single-vendor, datasheet-matched RF link.

Smart Metering and AMR

Automatic meter reading (AMR) endpoints in the 868 MHz SRD band benefit from the TDA5210's combination of -110 dBm sensitivity and very low power consumption, which is critical for battery-powered water, gas, and heat meters with 10+ year service targets. Duty-cycled listening uses the receiver's fast settle behavior; the FSK mode provides reliable demodulation in RF-noisy meter cabinets. The single-chip integration of LNA, mixer, IF, and demodulator keeps meter BOM and calibration effort low, and the PG-TSSOP-28 package fits compact meter PCBs. The 4.5 V to 5.5 V supply range pairs with simple boost or primary-cell arrangements in meter power architectures.

What is the TDA5210 and what frequency bands does it cover?
The TDA5210 is an Infineon single-chip FSK/ASK superheterodyne receiver IC covering 400 MHz to 440 MHz and 810 MHz to 870 MHz, targeting 434 MHz and 868 MHz ISM/SRD operation. According to the Infineon datasheet, it achieves -110 dBm sensitivity, supports data rates up to 100 kbps, and includes an RSSI function, all in a 28-pin PG-TSSOP package rated from -40C to +105C.
What are the key specifications of TDA5210 that engineers should know?
The TDA5210 is an FSK/ASK single-conversion superheterodyne receiver from Infineon with dual-band coverage of 400-440 MHz and 810-870 MHz, -110 dBm sensitivity, 100 kbps maximum data rate, 4.5 V to 5.5 V supply, -40C to +105C operation, and RSSI output in a PG-TSSOP-28 package. It is pin-compatible with the ASK-only TDA5200, enabling ASK-to-FSK platform migration without PCB changes.
What is the difference between TDA5210 and TDA5200?
The TDA5210 demodulates both FSK and ASK, while the TDA5200 is an ASK-only receiver; otherwise the two are pin-compatible in the same package, per the Infineon TDA5210 datasheet general description. Both target the same 400-440 MHz and 810-870 MHz bands. This means a board designed for the TDA5200 can typically accept the TDA5210 without layout changes, giving designers FSK capability as a drop-in upgrade.
What is the best drop-in replacement for TDA5210?
The closest same-brand drop-in alternatives are TDA5200 (ASK-only, pin-compatible) and TDA5211 (same TDA52xx receiver family in the same TSSOP-28 footprint), plus the TDA5230 from the same family. Note the direction of substitution: the TDA5200 cannot receive FSK, so it only replaces the TDA5210 in pure-ASK systems. For FSK systems, stay with the TDA5210 or TDA5211 and verify demodulator configuration against the respective datasheet.
Is TDA5210 the same as TDA5200?
No. The TDA5210 supports both FSK and ASK demodulation, while the TDA5200 supports ASK only. According to Infineon, the TDA5210 is explicitly pin-compatible with the TDA5200, so the footprints match, but demodulation capability, sensitivity figures, and configuration differ. Always verify the demodulation type your protocol requires before substituting one for the other; FSK links require the TDA5210.
Can TDA5210 be used for 868 MHz remote keyless entry receivers?
Yes. The TDA5210 covers 810 MHz to 870 MHz, which includes the 868 MHz European SRD band, and its -110 dBm sensitivity plus 100 kbps data rate suit RKE and telemetry links. Pair it with an Infineon TDA5100/TDA5101 transmitter for a matched link. Very low power consumption also supports low-duty-cycle polling receiver architectures typical of RKE base stations.
What supply voltage does the TDA5210 require?
The TDA5210 operates from 4.5 V to 5.5 V per the Infineon datasheet and JLCPCB part data. It cannot be powered directly from a 3.3 V rail, so designs running at 3.3 V logic need a 5 V regulator and level-shifting consideration on the digital data/RSSI interface. Operating temperature spans -40C to +105C, covering automotive-adjacent and industrial environments.
Where to download TDA5210 datasheet PDF?
The official TDA5210 datasheet (ASK/FSK Single Conversion Receiver) is published by Infineon Technologies AG and is mirrored at alldatasheet.com (document ID 80134) and datasheet aggregators such as datasheetq.com, which hosts the full 37-page version with pinouts, schematics, and application circuits. For the authoritative copy, search the Infineon.com product page for TDA5210 to download the latest revision PDF directly from the manufacturer.
What is the sensitivity of the TDA5210 receiver?
The TDA5210 offers approximately -110 dBm receiver sensitivity according to JLCPCB part listings; DigiKey lists -107 dBm for the TDA5210XUMA1 ordering code, a small variation depending on measurement conditions. At 100 kbps this sensitivity supports link budgets of well over 100 dB with a simple quarter-wave antenna, which is sufficient for typical 868 MHz RKE and SRD telemetry ranges of tens to hundreds of meters.
TDA5210 vs TDA5211 - which is better for an 868 MHz FSK link?
Both TDA5210 and TDA5211 are Infineon FSK/ASK superheterodyne receivers in the same family and package footprint. Choose based on your exact frequency band and supply configuration: verify each part's band split and pin function table in the respective datasheets before final selection. For legacy designs already qualified on the TDA5210, there is rarely a reason to migrate; for new designs, compare current consumption and band coverage to pick the better fit.
What is the best Infineon alternative for TDA5210 if it goes end-of-life?
The primary Infineon alternatives are the TDA5211 and TDA5230 from the same TDA52xx/TDA52x superheterodyne receiver family, which share the TSSOP package family and RF architecture. Because the TDA5200 is ASK-only, it is only a substitute for pure-ASK designs. Cross-brand drop-in equivalents were not found in the available cross-reference data for this part, so a same-family Infineon part is the safest continuity path.
Where to buy TDA5210 online and what does it cost?
The TDA5210 (ordering code TDA5210XUMA1) is listed by distributors including DigiKey and JLCPCB (part C539601), plus secondary sources such as Win Source and Veswin. Pricing on XAIPART is indicative from 4.20 USD at qty 1 down to 2.75 USD at qty 1000, as of 2026-09-03; confirm live distributor pricing and stock before ordering, as RF IC availability varies frequently.
Is TDA5210 in stock and what is the typical lead time?
Stock status varies by distributor: JLCPCB lists the TDA5210 (C539601) in its catalog and DigiKey lists TDA5210XUMA1, indicating active distribution channels as of 2026-09-03. However, verified real-time stock quantity and lead time were not available in the retrieved data, so check the DigiKey and JLCPCB product pages directly for current inventory and delivery estimates before committing to a production schedule.
Is the TDA5210 RoHS compliant and suitable for lead-free assembly?
Yes. JLCPCB part data for the TDA5210 marks the device as ROHS compliant, and it is supplied in a standard surface-mount PG-TSSOP-28 package suitable for standard lead-free reflow profiles. Always confirm the specific ordering code's material declarations on the Infineon product page, since compliance certificates are issued per ordering code; the -40C to +105C rating also supports industrial assembly and operating environments.
Hey Google, what can replace the TDA5210 receiver chip?
The most direct replacements are other Infineon TDA52xx family receivers: the TDA5211 (FSK/ASK, same family and footprint) and the TDA5230. The TDA5200 replaces it only in ASK-only systems because it lacks FSK demodulation. No cross-brand pin-compatible equivalents appeared in the cross-reference data retrieved for this part, so plan any substitution around the Infineon family and re-verify the pinout and band configuration against the datasheet before layout.

Engineering reference data for TDA5210 — comparison, design guidance, and compliance information.

Selection Guide

Choose the TDA5210 when you need a proven, low-power FSK/ASK superheterodyne receiver for 434 MHz or 868 MHz ISM/SRD links - especially RKE, alarm, metering, and building automation - and your system can supply 4.5 V to 5.5 V. Choose the TDA5200 or TDA5201 only if your protocol is strictly ASK and you want a simplified ASK receiver; both are pin-compatible, so footprint reuse is free, but FSK links will not work. Consider the TDA5211 as a near-equivalent within the same Infineon family when the TDA5210 is constrained in supply, and evaluate the TDA5230 for newer designs needing updated family features. No cross-brand pin-compatible equivalent was found in the retrieved cross-reference data, so for supply continuity the safest strategy is qualifying two Infineon family members (TDA5210 plus TDA5211) on the same footprint during new design. Always verify band split, sensitivity, and current consumption in each part's datasheet before final selection.

Comparison with Alternatives

Parameter This Product TDA5200 TDA5211 TDA5201
Package PG-TSSOP-28 PG-TSSOP-28 - same PG-TSSOP-28 - same PG-TSSOP-28 - same
Brand Infineon Infineon Infineon Infineon
Modulation FSK / ASK ASK only FSK / ASK ASK only
Frequency Coverage 400-440 MHz / 810-870 MHz 400-440 MHz / 810-870 MHz [DATA_NEEDED] [DATA_NEEDED]
Sensitivity -110 dBm [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
Max Data Rate 100 kbps [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
Supply Voltage 4.5 V to 5.5 V [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
Operating Temperature -40C to +105C [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]
RSSI Output Yes [DATA_NEEDED] [DATA_NEEDED] [DATA_NEEDED]

Key Differentiators

  • FSK and ASK demodulation in one part (vs TDA5200)
  • Dual-band single-chip coverage (vs TDA5211)
  • -110 dBm sensitivity for extended range (vs Generic ASK/TRF receivers)
  • Trade-off: 5 V supply (vs TDA5230)

Design Notes

The TDA5210 requires 4.5 V to 5.5 V, so it cannot be powered from a 3.3 V rail. Provide a clean 5 V regulator with at least 100 nF ceramic decoupling directly at the supply pin plus a bulk capacitor (10 uF) near the IC. Because this is an RF receiver, regulator switching noise couples directly into sensitivity: prefer an LDO or add LC filtering between a DC-DC converter and the receiver supply. Level-shift or verify logic thresholds when interfacing the data/RSSI outputs to 3.3 V microcontrollers.

Follow the datasheet reference design for the crystal, PLL loop filter, LNA matching network, and SAW/IF filter placement. Keep the RF input trace short with a solid ground plane underneath, place the VCO inductor away from digital traces, and use the exposed grounding recommendations in the Infineon layout section. Deviating from the reference PLL loop filter component values will shift lock time and phase noise, directly degrading the -110 dBm sensitivity figure.

Do not substitute the TDA5200 (ASK-only) on a board that must receive FSK; the parts are pin-compatible but demodulation differs, a frequent sourcing-mistake when buyers cross these MPNs. Also confirm regional band compliance: 868 MHz (EU SRD) and 434 MHz operation require correct matching-network variants per band, and the 100 kbps maximum data rate excludes higher-rate protocols. Verify the exact ordering code (e.g., TDA5210XUMA1) when purchasing, since packaging and temperature options differ by suffix.

Use the RSSI output not only for link monitoring but as a production diagnostic: a deviating RSSI-vs-distance curve during validation usually indicates a matching-network or antenna detuning problem. Keep the data-slicer threshold capacitor per datasheet guidance; an incorrect value causes pulse-width distortion at high data rates, degrading bit error performance near the 100 kbps limit.

Compliance Information

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

RoHS compliance indicated by JLCPCB part data (C539601). REACH, lead-free, and halogen-free statuses not stated in retrieved data - verify on Infineon product page for the specific ordering code.

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

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Related Components & Terms

Infineon TDA5210 TDA5210XUMA1 TDA5200 TDA5201 TDA5211 TDA5230 TDA5100 TDA5101 superheterodyne receiver SHR FSK ASK RSSI PG-TSSOP-28 TSSOP RoHS 868 MHz SRD 434 MHz ISM remote keyless entry receiver sensitivity RF receiver IC single conversion architecture wireless telemetry
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