CC3000MOD >
CC3000MOD
Texas Instruments
RF TXRX MODULE WIFI CHIP SMD
1539 Pcs New Original In Stock
WiFi 802.11b/g Transceiver Module 2.4GHz Integrated, Chip Surface Mount
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CC3000MOD Texas Instruments
5.0 / 5.0 - (156 Ratings)

CC3000MOD

Product Overview

1440705

DiGi Electronics Part Number

CC3000MOD-DG

Manufacturer

Texas Instruments
CC3000MOD

Description

RF TXRX MODULE WIFI CHIP SMD

Inventory

1539 Pcs New Original In Stock
WiFi 802.11b/g Transceiver Module 2.4GHz Integrated, Chip Surface Mount
Quantity
Minimum 1

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In Stock (All prices are in USD)
  • QTY Target Price Total Price
  • 1 17.7678 17.7678
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CC3000MOD Technical Specifications

Category RF Transceiver Modules and Modems

Manufacturer Texas Instruments

Packaging Tray

Series SimpleLink™

Product Status Obsolete

DiGi-Electronics Programmable Not Verified

RF Family/Standard WiFi

Protocol 802.11b/g

Modulation CCK, DSSS, OFDM

Frequency 2.4GHz

Data Rate 54Mbps

Power - Output 18.3dBm

Sensitivity -97.5dBm

Serial Interfaces I2C, SPI, UART

Antenna Type Integrated, Chip

Utilized IC / Part -

Memory Size -

Voltage - Supply 1.8V ~ 3.6V

Current - Receiving 92mA

Current - Transmitting 190mA ~ 260mA

Mounting Type Surface Mount

Operating Temperature -20°C ~ 70°C

Package / Case Module

Base Product Number CC3000

Datasheet & Documents

HTML Datasheet

CC3000MOD-DG

Environmental & Export Classification

RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 4 (72 Hours)
REACH Status REACH Unaffected
ECCN 5A992C
HTSUS 8517.62.0090

Additional Information

Other Names
296-35057
TEXTISCC3000MOD
2156-CC3000MOD
Standard Package
84

Alternative Parts

View Details
PART NUMBER
MANUFACTURER
QUANTITY AVAILABLE
DiGi PART NUMBER
UNIT PRICE
SUBSTITUTE TYPE
CC3120MODRNMMOBR
Texas Instruments
89199
CC3120MODRNMMOBR-DG
9.4429
MFR Recommended
CC3100MODR11MAMOBR
Texas Instruments
1963
CC3100MODR11MAMOBR-DG
0.1789
MFR Recommended

Reviews

5.0/5.0-(Show up to 5 Ratings)
思***者
de desembre 02, 2025
5.0
DiGi Electronics的產品讓我非常放心,用的很安心。
Radia***Roots
de desembre 02, 2025
5.0
The packaging materials were both durable and lightweight, making handling effortless.
Drea***tcher
de desembre 02, 2025
5.0
Their after-sales assistance is comprehensive and left me very satisfied.
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Frequently Asked Questions (FAQ)

Can I use the CC3000MOD in a new product design despite its obsolete status, and what are the key supply chain and long-term reliability risks?

Using the CC3000MOD in new designs carries significant long-term risks due to its obsolete status. While it may be available in limited stock from distributors, Texas Instruments no longer supports it with updates, documentation, or volume production. This creates a single-point failure risk if inventory runs out. Additionally, MSL 4 (72-hour floor life) demands strict handling during assembly, increasing manufacturing complexity. For new designs, we strongly recommend migrating to the CC3100MODR11MAMOBR or CC3120MODRNMMOBR, which offer pin-compatible drop-in replacements with enhanced security, lower power, and active manufacturer support—critical for scalable production and future firmware updates.

What design modifications are needed to replace a CC3000MOD with a CC3100MODR11MAMOBR in an existing PCB layout, and how do power and antenna requirements differ?

The CC3100MODR11MAMOBR is a functional upgrade over the CC3000MOD and is designed for drop-in compatibility, but key differences require attention. While both support 1.8V–3.6V supply, the CC3100MOD draws lower peak transmit current (~200mA vs. 260mA), easing power supply design. However, the CC3100MOD integrates improved RF filtering and may require minor tuning of the matching network near the integrated antenna. Also, firmware must be updated—the CC3100MOD uses a newer SimpleLink™ SDK with different API calls and security features (e.g., TLS 1.2 support). Always validate radiated performance in an anechoic chamber, as layout parasitics can affect the chip antenna’s efficiency.

How does the CC3000MOD’s lack of WPA3 support impact security in industrial IoT applications, and what are the workarounds if I must continue using it?

The CC3000MOD only supports WEP, WPA, and WPA2 (TKIP/AES), making it incompatible with modern WPA3-Enterprise or WPA3-Personal networks, which are increasingly mandated in industrial and healthcare IoT deployments. This creates a critical security gap, as WPA2 is vulnerable to KRACK attacks. If you must use the CC3000MOD temporarily, isolate it behind a secure gateway that handles modern encryption externally, and never expose it directly to public networks. For any long-term or regulated application, replace it with the CC3120MODRNMMOBR, which supports WPA3 and hardware-accelerated crypto engines, ensuring compliance with evolving cybersecurity standards.

What thermal and mechanical risks should I consider when reflowing the CC3000MOD during assembly, given its MSL 4 rating and surface-mount module design?

The CC3000MOD’s MSL 4 classification means it can absorb moisture that turns to steam during reflow, risking internal delamination or ‘popcorning.’ To mitigate this, bake the modules at 125°C for 24 hours if exposed to ambient conditions beyond 72 hours. During reflow, follow the recommended profile with a peak temperature of 245°C ±5°C and ensure uniform heating to avoid warpage. The integrated chip antenna is sensitive to nearby conductive materials—maintain a 5mm keep-out zone and avoid ground planes beneath the antenna area. Poor thermal management during assembly can degrade RF performance permanently, so validate first articles with network analyzer testing.

Can the CC3000MOD operate reliably in outdoor environments near its -20°C to 70°C operating limit, and how does temperature affect its RF output and connection stability?

While the CC3000MOD is rated for -20°C to 70°C, real-world performance degrades near these extremes. At low temperatures, the internal crystal oscillator may drift, causing Wi-Fi association failures or packet loss. At high temperatures (>60°C), the PA efficiency drops, reducing effective output power and range. Additionally, thermal cycling can fatigue solder joints on the surface-mount module, leading to intermittent failures. For outdoor use, add a heatsink or thermal via array under the module, and consider a temperature-compensated crystal oscillator (TCXO) if timing accuracy is critical. For harsh environments, the CC3120MODRNMMOBR offers better thermal stability and extended industrial temperature support, making it a safer long-term choice.

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