TS mA Low Noise CMOS LDO

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SOT-343 Pin Definition: SOT-25 Pin Definition: DFN 2x2 1. Enable 1. Input 2. Ground 2. Ground 3. Output 3. Enable 4. Input 4. Bypass 5. Output Pin Definition: 1. Input 2. N/C 3. Output 4. N/C 5. Ground 6. Enable General Description TS9006 series is 150mA low-noise CMOS LDO especially designed for battery-power RF and wireless applications. The TS9006 regulator achieves a low 250mV dropout at 150mA load current of 3.3V output, ultra-low output voltage noise of 15uVrms and PSRR of 57dB at 1KHz.TS9006 regulators are also optimized to work with low-esr and low cost ceramic capacitors reducing the amount of board space critical in hand-held devices. The TS9006 requires only 0.47uF output capacitor for stability with and load. The TS9006 consumes less than 1uA in shutdown mode. Features 250mV Dropout at 150mA load (3.3V) Quiescent current: 90µA (typ.) Output voltage ±2% Internal current limit and thermal shutdown Power saving shutdown mode (<1uA) Only need input and output capacitors Build-In internal Soft-Start Output short-circuit current limit protection Applications Palmtops, PDA and Notebook Computers DSC, Handset Camera Modules PCMCIA Cards, PC Cameras USB Based Portable Devices (MPS, PMP) GSM/GPRS/3G RF Transceiver Modules Block Diagram Ordering Information Part No. Package Packing TS9006xCX5 RF SOT-25 3Kpcs / 7 Reel TS9006xCU4 RF SOT-343 3Kpcs / 7 Reel TS9006xCQ6 RF DFN 2x2 3Kpcs / 7 Reel Note: Where x denotes voltage option, available are D= 1.8, K= 2.5V, M= 2.7V, N= 2.8V, P= 3.0V, S= 3.3V Contact factory for additional voltage options. Typical Application Circuit off V IN EN on V OUT C BYP 30nF C OUT 0.47uF EN V IN off on V OUT C OUT 0.47uF C OUT 0.47uF EN (Pin 3) may be connected directly to V IN (Pin1) Low noise operation: C BYP =30nF, C OUT >0.47uF Basic operation: C BYP =not used, C OUT >1uF 1/9 Version: A07

Absolute Maximum Rating Parameter Symbol Limit Unit Supply Voltage V IN -0.3 ~ +7 V Input Supply Voltage (Recommended) V OPR +2 ~ +6 V Output Short-Circuit Duration Infinite SOT-25 300 Power Dissipation SOT-343 200 mw DFN 2x2 500 SOT-25 250 Thermal Resistance SOT-343 Ө JA 333 C/W DFN 2x2 165 Junction Temperature Range T J +150 C Storage Temperature Range T STG -65 ~ +150 C Notes: Stress above the listed absolute rating may cause permanent damage to the device. Electrical Characteristics (Ta=25 C, V IN = (Vout+1V), C IN =C OUT =0.47uF, V EN = V IN, unless otherwise noted.) Parameter Conditions Min Typ Max Unit Output Voltage V IN =Vo + 1V, IO=10mA -2.0 -- +2 % Output Current Limit Short-circuit output -- 200 -- ma Line Regulation V IN = (V OUT +1V) to 6V, I O =10mA -- 0.3 -- %/V Load Regulation I OUT =1mA to 150mA -- 0.2 1.0 % V OUT =3.3V, I OUT =150mA -- 250 -- V OUT =3.0V, I OUT =150mA -- 275 -- V OUT =2.8V, I OUT =150mA -- 300 -- Dropout Voltage V OUT =2.7V, I OUT =150mA -- 310 -- V OUT =2.5V, I OUT =150mA -- 320 -- V OUT =1.8V, I OUT =150mA -- 500 -- Shutdown Supply Current EN=0V -- 0.01 -- ua Ground Pin Current Io=0mA -- 90 -- ua f=100hz, Io=1mA -- 52 -- Ripple Rejection (PSRR) f=1khz, Io=1mA -- 55 -- db f=10hz, Io=1mA -- 53 -- Output Noise P D Io=10mA, f=10hz to 100kHz, Bypass = 0nF -- 45 -- Io=10mA, f=10hz to 100kHz, Bypass = 30nF -- 15 -- Shutdown Exit Delay (note 2) RLOAD = 50Ω -- 45 300 us EN Logic Low Level V IN =2.0V to 5.5V -- -- 0.4 V EN Logic High Level V IN =2.0V to 5.5V 1.5 -- VIN EN Input Bias Current V IN =5.5V, EN=0V or 6V -- 0.01 -- ua Thermal Shutdown Shutdown Temperature -- 160 -- C Thermal Shutdown Hysteresis -- 20 -- C Notes: a. The drop out voltage varies depending on output voltage selection Dropout is defined as V IN - V OUT when V OUT is 100mV below V OUT where V IN = V OUT +1V for nominal V OUT b. Time needed for V OUT to reach 90% of final value mv uvrms 2/9 Version: A07

Application Information Enable / Shutdown The TS9006 comes with and active-high enable pin that allows the regulator to be enabled. Forcing the enable pin low disables the regulator and puts it into the shutdown mode. This pin cannot be left floating as it may cause an undetermined state. Input / Output Capacitor It is recommended to use a 0.47uF capacitor on the TS9006 input and a 0.47uF capacitor on the output. For high regulation performance, larger input capacitor values and lower ESRs provide better noise rejection and line-transient response. The output noise, load-transient response, stability, and power-supply rejection can be improved by using large output capacitors. Low ESR ceramic capacitors provide optimal performance and save space. Power Supply Rejection and Transient Response The PSRR and transient response can be improved by increasing the values of the input and output bypass capacitors, and through passive filtering techniques Functional Description Description The TS9006 is an ultra-low-noise, low-quiescent current, low-dropout linear regulator. It is supplied in a SOT-25, SOT-343 & DFN 2x2 package for difference applications. This device can supply loads up to 150mA. As shown in the functional block diagram, the TS9006 consists of a reference and noise bypass circuit, error amplifier, output drive transistor, internal feedback voltage divider, thermal sensor, and short circuit current limiter. The internal reference is connected to the error amplifier s inverting input. The error amplifier compares this reference with the feedback voltage and amplifies the difference. If the feedback voltage is lower than the reference voltage, the pass=transistor gate is pulled low. This allows more current to pass to the output and increases the output voltage. Stability The TS9006 is a high performance LDO emphasizing stability with low output capacitance. It is able to maintain stability with an output capacitor can also be increased to optimize performance. The TS9006 will remain stable and in regulation with no load, unlike many other voltage regulators. Internal P-Channel Pass Transistor The TS9006 features allow impedance P-channel MOSFET pass transistor. This provides several advantages over similar designs using a PNP pass transistor, including low operating power and longer battery life. The TS9006 consumes only 90µA of quiescent current under most conditions. Output Short-Circuit Current Limit The TS9006 includes a current limiter, which monitors and controls the pass transistor s gage voltage, limiting the output current to about 200mA, for example, in a short-circuit output situation. Shutdown The TS9006 also features a low-power active shutdown mode. It has a switch that turns off the device when disabled. This allows the output capacitor and load to discharge and de-energize the load. In the shutdown mode, the internal functional blocks, such as voltage reference and the error amplifier, are turned off completely, and the quiescent current is less than 1µA. 3/9 Version: A07

Functional Description (Continue) Thermal Protection Shutdown The thermal protection shutdown function protects the device from operating in over temperature condition. When the junction temperature exceeds +160 C, the thermal sensor signals the shutdown logic, turning off the pass transistor and allowing the IC to tool down. The thermal sensor turns the pass transistor on again after the IC s junction temperature drops to +140 C. Soft-Start Circuitry The TS9006 includes a soft-start circuitry to limit inrush current at turn-on. During power up, the output capacitor and output load are charged with a reduce output current. Shortly after the initial power up, the soft-start feature is terminated and normal operation is resumed. 4/9 Version: A07

Electrical Characteristics Curve Dropout Voltage vs. Load Current Dropout Voltage vs. Temperature Ground Current vs. Input Voltage Output Voltage vs. Temperature PSRR vs. Frequency PSRR vs. Frequency 5/9 Version: A07

SOT-25 Mechanical Drawing SOT-25 DIMENSION DIM MILLIMETERS INCHES MIN MAX MIN MAX. A+A1 0.09 1.25 0.0354 0.0492 B 0.30 0.50 0.0118 0.0197 C 0.09 0.25 0.0035 0.0098 D 2.70 3.10 0.1063 0.1220 E 1.40 1.80 0.0551 0.0709 E 1.90 BSC 0.0748 BSC H 2.40 3.00 0.09449 0.1181 L 0.35 BSC 0.0138 BSC Ө1 0º 10º 0º 10º S1 0.95 BSC 0.0374 BSC Marking Diagram A = Device Code X = Fixed Output Voltage Code D=1.8V, K=2.5V, M=2.7V, N=2.8V, P=3.0V, S=3.3V Y = Year Code M = Month Code (A=Jan, B=Feb, C=Mar, D=Apl, E=May, F=Jun, G=Jul, H=Aug, I=Sep, J=Oct, K=Nov, L=Dec) L = Lot Code 6/9 Version: A07

DFN 2x2 Mechanical Drawing DFN 2x2 DIMENSION DIM MILLIMETERS INCHES MIN MAX MIN MAX A 0.25 0.35 0.0098 0.0138 a1 0.10 (typ) 0.0039 (typ) B 0.90 1.10 0.0354 0.0433 C 0.50 (typ) 0.0197 (typ) D 0.50 (typ) 0.0197 (typ) E 0.15 0.25 0.0059 0.0098 F 1.30 1.50 0.0512 0.0591 G 0.67 0.73 0.0264 0.0287 H 0.20 0.30 0.0079 0.0118 I 0.60 (MAX.) 0.0236 (MAX.) J 0.07 (MAX.) 0.0028 (MAX.) K 1.75 1.85 0.0689 0.0728 L 1.95 2.05 0.0768 0.0807 Marking Diagram A = Device Code X = Fixed Output Voltage Code D=1.8V, K=2.5V, M=2.7V, N=2.8V, P=3.0V, S=3.3V Y = Year Code M = Month Code (A=Jan, B=Feb, C=Mar, D=Apl, E=May, F=Jun, G=Jul, H=Aug, I=Sep, J=Oct, K=Nov, L=Dec) L = Lot Code 7/9 Version: A07

SOT-343 Mechanical Drawing SOT-343 DIMENSION DIM MILLIMETERS INCHES MIN MAX MIN MAX A 1.80 2.20 0.0709 0.0866 B 0.25 0.40 0.0098 0.0157 C 1.30(typ) 0.0512(typ) D 1.15 1.35 0.0453 0.0531 E 1.80 2.40 0.0709 0.0945 F 0.35 0.50 0.0137 0.0197 G 0.80 1.10 0.0315 0.0433 H 0.10 0.45 0.0039 0.0177 8/9 Version: A07

Notice Specifications of the products displayed herein are subject to change without notice. TSC or anyone on its behalf, assumes no responsibility or liability for any errors or inaccuracies. Information contained herein is intended to provide a product description only. No license, express or implied, to any intellectual property rights is granted by this document. Except as provided in TSC s terms and conditions of sale for such products, TSC assumes no liability whatsoever, and disclaims any express or implied warranty, relating to sale and/or use of TSC products including liability or warranties relating to fitness for a particular purpose, merchantability, or infringement of any patent, copyright, or other intellectual property right. The products shown herein are not designed for use in medical, life-saving, or life-sustaining applications. Customers using or selling these products for use in such applications do so at their own risk and agree to fully indemnify TSC for any damages resulting from such improper use or sale. 9/9 Version: A07