Panasonic Electronic Components PAN1326C2 BLUETOOTH® RF Module & Evaluation Kit

Panasonic PAN1326C2 BLUETOOTH® RF Module is a Host Controlled Interface (HCI) device featuring the TI CC2564 dual-mode Bluetooth controller. The PAN1326C is Bluetooth 4.2-compliant and has about twice the range of other BLE solutions. The module is only 9.0mm x 9.5mm, which is ideal for space-constrained applications. The module accommodates a PCB pad pitch of 1.3mm and as few as two layers for easy implementation and manufacturing. Panasonic PAN1326C2 Module has been designed to be 100% pin‑compatible with previous generations of TI-based Bluetooth HCI modules.

The PAN1326C2 Evaluation Kit is an all-inclusive and comprehensive evaluation kit consisting of one PAN1326C2 Daughterboard (ETU) for TI’s development board and one TI adapter board.

Features

  • Bluetooth 4.2 compliant up to the HCI layer
  • Best-in-class Bluetooth RF performance (Tx, Rx sensitivity, blocking)
  • Fully Qualified Bluetooth
  • Based upon Texas Instruments CC2564C
  • Interfaces: UART, GPIO, PCM
  • FCC And IC Listed, CE Compliant
  • -40°C To +85°C operating temperature range
  • 1.7V to 4.8V supply voltage range
  • 9.0mm x 9.5mm x 1.8mm dimensions
  • RoHS and REACH Compliant
  • Bluetooth Features
    • Basic Rate Scatternet: Up to three Piconets simultaneously, one as master and two as slaves
    • Provide assisted mode for HFP 1.6 Wideband Speech (WBS) profile or A2DP profile
    • BLE concurrent peripheral and central, support up to 10 devices
    • Integration of Bluetooth 4.2 Low Energy (BLE) secure connections

Applications

  • Soundbars and smart speakers
  • Wearable devices
  • Smartphone accessories
  • Healthcare and fitness
  • Blood glucose meters
  • Industrial sensors
  • Toys

Evaluation Kit Overview

Panasonic Electronic Components PAN1326C2 BLUETOOTH® RF Module & Evaluation Kit

Block Diagram

Block Diagram - Panasonic Electronic Components PAN1326C2 BLUETOOTH® RF Module & Evaluation Kit

Videos

Pubblicato: 2019-08-19 | Aggiornato: 2024-03-11