Details, datasheet, quote on part number: STLC2416
DescriptionBluetooth (TM) Baseband With Integrated Flash
CompanyST Microelectronics, Inc.
DatasheetDownload STLC2416 datasheet
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Features, Applications


Pin to pin compatible with the previous version STLC2415 Ericsson Technology Licensing Baseband Core (EBC) BluetoothTM specification compliance: V1.1 and V1.2 SW compatible with STLC2411-M28R400CT combination 2 layer class 4 PCB compatible Point-to-point, point-to-multi-point (up to 7 slaves) and scatternet capability Asynchronous Connection Oriented (ACL) logical transport link Synchronous Connection Oriented (SCO) links: 2 simultaneous SCO channels Supports Pitch-Period Error Concealment (PPEC) ­ Improves speech quality in the vicinity of interference ­ Improves coexistence with WLAN ­ Works at receiver, no Bluetooth implication Adaptive Frequency Hopping (AFH): hopping kernel, channel assessment as Master and as Slave Faster Connection: Interlaced scan for Page and Inquiry scan, first FHS without random backoff, RSSI used to limit range Extended SCO (eSCO) links Standard BlueRF bus interface QoS Flush Clock support ­ System clock input: any integer value from 12... 33 MHz ­ LPO clock input at 3.2 and 32 kHz or via the embedded 32 kHz crystal oscillator cell ARM7TDMI 32-bit CPU Memory organization ­ Integrated 4Mbit flash ­ 64KByte on-chip RAM ­ 4KByte on-chip boot ROM Low power architecture with 2 different low power levels: ­ Sleep Mode ­ Deep Sleep Mode HW support for packet types ­ ACL: 3, 5 and 5 ­ SCO: HV1, 3 and DV ­ eSCO: EV3, 5

Communication interfaces ­ Synchronous Serial Interface, supporting to 32 bit data and different industry standards ­ Two enhanced 16550 UARTs with 128 byte FIFO depth ­ 12Mbps USB interface ­ Fast master I2C bus interface ­ Multi slot PCM interface ­ 16 programmable GPIOs ­ 2 external interrupts and various interrupt possibilities through other interfaces Efficient support for WLAN coexistence in collocated scenario Ciphering support for to 128-bit key Receiver Signal Strength Indication (RSSI) support for power-controlled links Separate control for external power amplifier (PA) for class1 power support. Software support ­ Low level (up to HCI) stack or embedded stack with profiles ­ Support of UART and USB HCI transport layers.

1.1 Applications Features Typical applications in which the STLC2416 can be used are: Cable replacement Portable computers, PDA Modems Handheld data transfer devices Cameras Computer peripherals Other type of devices that require the wireless communication provided by BluetoothTM

This is preliminary information on a new product now in development or undergoing evaluation. Details are subject to change without notice.


The STLC2416 from STMicroelectronics is a BluetoothTM baseband controller with integrated 4 Mbit flash memory. Together with a BluetoothTM Radio this product offers a compact and complete solution for short-range wireless connectivity. It incorporates all the lower layer functions of the BluetoothTM protocol. The microcontroller allows the support of all data packets of BluetoothTM in addition to voice. The embedded controller can be used to run the BluetoothTM protocol and application layers if required. The software is located in the integrated flash memory.

3.1 Absolute Maximum Ratings Operation of the device beyond these conditions is not guaranteed. Sustained exposure to these limits will adversely affect device reliability. Table 2. Absolute Maximum Ratings

Symbol VDD VDDF VPP VDDIO VDDQ VIN Tstg Tlead Supply voltage flash Fast Program Voltage Supply voltage baseband I/O Supply voltage flash I/O Input voltage on any digital pin (excluding FLASH input pins) Storage temperature Lead temperature < 10s VSS ­ 0.5 VSS 0.5 -55 Conditions Supply voltage baseband core Min VSS ­ 0.5 VSS ­ 0.5 VSS ­ 0.5 Max VDDIO Unit °C

3.2 Operating Ranges Operating ranges define the limits for functional operation and parametric characteristics of the device. Functionality outside these limits is not implied. Table 3. Operating Ranges

Symbol VDD VDDF VDDIO VDDQ Tamb Supply voltage flash Supply voltage digital I/O Supply voltage flash I/O (VDDQ VDDF) Operating ambient temperature Conditions Supply voltage baseband core and EMI pads Min Typ Max Unit °C

3.3 I/O specifications Depending on the interface, the I/O voltage is typical 1.8V (interface to the flash memory) or typical 3.3V (all the other interfaces). These I/Os comply with the EIA/JEDEC standard JESD8-B. 3.3.1 Specifications for 3.3V I/Os Table 4. LVTTL DC Input Specification (3V<VDDIO<3.6V)

Symbol Vil Vih Vhyst Parameter Low level input voltage High level input voltage Schmitt trigger hysteresis 2 0.4 Conditions Min Typ Max 0.8 Unit V

Symbol Vol Voh Parameter Low level output voltage Conditions Iol mA VDDIO-0.15 Min Typ Max 0.15 Unit V

Note: X is the source/sink current under worst-case conditions according to the drive capability. (See table 8, pad information for value of X).

Symbol Vil Vih Vhyst Parameter Low level input voltage High level input voltage Schmitt trigger hysteresis 0.3 0.5 Conditions Min Typ Max 0.35*VDD Unit V

Symbol Vol Voh Parameter Low level output voltage High level output voltage Iol X mA Ioh =-X mA VDD-0.15 Conditions Min Typ Max 0.15 Unit V

3.4 Current Consumption Table 8. Typical power consumption of the STLC2416 (VDD = VDD Flash = PLLVDD = 1.8V, VDDIO = 3.3V) (Indicative only)

Core STLC2416 State Slave Standby (no low power mode) Standby (low power mode enabled) ACL connection (no transmission) ACL connection (data transmission) SCO connection (no codec connected) Inquiry and Page scan (low power mode enabled) Low Power mode (32 kHz crystal) Master n.a. µA IO Unit


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