PT6222 TI1 | Alldatasheet

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For assistance or to order, call (800) 531-5782 Power Trends, Inc. 27715 Diehl Road, Warrenville, IL 60555 (800) 531-5782 Fax: (630) 393-6902 http://www.ti.com/powertrends6 PT6220 Series Standard Application C1 =Optional 1µF ceramic C2 =Required 100µF electrolytic Q1 =NFET

Ordering Information

PT6222! = +5.0 Volts PT6223! = +3.3 Volts Pin-Out Information PT Series Suffix (PT1234X) Case/Pin Configuration Vertical Through-Hole N Horizontal Through-Hole A Horizontal Surface Mount C

2 AMP ADJUSTABLE LOW VOLTAGE INPUT

INTEGRATED SWITCHING REGULATOR Pin Function

1 Inhibit

(30V max) 2V in 3V in 4V in

5 GND

6 GND

7 GND

8 GND

10 V out

11 V out

12 V out Adj

Characteristics PT6220 SERIES (Ta = 25°C unless noted) Symbols Conditions Min Typ Max Units Output Current I o Over Vin range 0.1* — 2.0 A Short Circuit Current I sc Vin = Vin min — 5.0 — Apk Input Voltage Range V in 0.1 ≤ Io ≤ 2.0 A V o = 3.3V 7 — 26 V (Note: inhibit function cannot be used with Vin above 30V.) Vo = 5V 7 — 30/38 V Output Voltage Tolerance ∆Vo Over Vin Range, Io = 2.0 A — ±1.0 ±2.0 %V o Ta = 0°C to +60°C Line Regulation Reg line Over Vin range — ±0.25 ±0.5 %V o Load Regulation Reg load 0.1 ≤ Io ≤ 2.0 A — ±0.25 ±0.5 %V o Vo Ripple/Noise V n Vin = Vin min — ±2 — %V o Transient Response t tr 50% load change — 100 200 µSec with Co = 100µF Vos Vo over/undershoot — 5.0 — %V o Efficiency η Vin=9V, Io = 0.5 A V o = 3.3V — 84 — % Vin=9V, Io = 0.5 A V o = 5V — 89 — % Switching Frequency ƒ o Over Vin and Io ranges 450 — 900 kHz Shutdown Current I sc Vin = 16V — 100 — µA Quiescent Current I nl Io = 0A, Vin =10V — 10 — mA Output Voltage V o Below Vo See Application Notes. Adjustment Range Above V o Absolute Maximum T a -40 — +85 °C Operating Temperature Range Recommended Operating T a Free Air Convection, (40-60LFM) -40 — + 85* °C Thermal Resistance θja Free Air Convection (40-60LFM) — 40 — °C/W Storage Temperature T s — -40 — +125 °C Mechanical Shock — Per Mil-STD-883D, Method 2002.3, — 500 — G’s1 msec, Half Sine, mounted to a fixture Mechanical Vibration — Per Mil-STD-883D, Method 2007.2, —1 0 — G’s20-2000 Hz, Soldered in a PC board Weight — — — 6 — grams * ISR will operate to no load with reduced specifications. Input voltage cannot exceed 30V when the inhibit function is used. * See Thermal Derating chart Note: The PT6220 Series requires a 100µF electrolytic or tantalum output capacitor for proper operation in all applications. PT6220 2,3,4 5,6,7,8 9,10,11 VIN GND GND VOUT C2 + VO ADJ INH Q1

  • Low Voltage Input (7V)
  • 89% Efficiency
  • Adjustable Output Voltage
  • Internal Short Circuit Protection
  • Over-Temperature Protection
  • On/Off Control (Ground Off) The PT6220 series is a low volt- age input (typically 7V) version of Power Trends’ high-performance 2A, 12 pin SIP Integrated Switching Regulators (ISRs). These ISRs are de- signed with premium low threshold FETs for those applications requiring very low input/output voltage differentials such as battery powered equipment. This high- performance ISR family offers a unique combination of features combining 89% typical efficiency with open-collector on/ off control and adjustable output voltage. Quiescent current in the shutdown mode is less than 100µA. PT6220 SLTS082 (Revised 8/7/98)

For assistance or to order, call (800) 531-5782 Power Trends, Inc. 27715 Diehl Road, Warrenville, IL 60555 (800) 531-5782 Fax: (630) 393-6902 http://www.ti.com/powertrends 7 CHARACTERISTIC DATA 0.5 1.5 9 1 21 51 82 12 42 73 03 33 63 9 0.5 1.5 9 1 21 51 82 12 42 7 PT6223, 3.3 VDC (See Note 1) PT6222, 5.0 VDC (See Note 1) Note 1: All data listed in the above graphs, except for derating data, has been developed from actual products tested at 25°C. This data is considered typical data for the ISR. Note 2: Thermal derating graphs are developed in free air convection cooling of 40-60 LFM. (See Thermal Application Notes). Efficiency - %Ripple-(mV)Iout-(Amps)PD-(Watts) Efficiency - %Ripple-(mV)Iout-(Amps)PD-(Watts) Iout-(Amps) Iout-(Amps) Iout-(Amps) Iout-(Amps) Iout-(Amps) Iout-(Amps) Vin-(Volts) Vin-(Volts) 100 00 . 511 . 52 9.0V 12.0V 15.0V 18.0V 24.0V 26.0V Vin /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0 /i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0 /i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0/i0 /i0/i0/i0 /i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0 /i0/i0 /i0/i0 /i0/i0/i0 /i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0 100 00 . 511 . 52 9.0V 12.0V 18.0V 24.0V /i0/i0/i0/i0/i0/i0/i0 30.0V 38.0V Vin 120 150 00 . 511 . 52 26.0V 24.0V 18.0V 15.0V 12.0V 9.0V Vin /i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0 /i0/i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0 /i0/i0 /i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0 /i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0/i0 /i0/i0/i0 /i0/i0/i0 /i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0 /i0/i0/i0 /i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0/i0/i0 /i0/i0/i0/i0/i0/i0/i0 120 150 00 . 511 . 52 38.0V/i0/i0/i0/i0/i0/i0/i0/i0 30.0V 24.0V 18.0V 12.0V 9.0V Vin 0.5 1.5 2.5 0 0.5 1 1.5 2 26.0V 24.0V 18.0V 15.0V 12.0V 9.0V Vin 0.5 1.5 2.5 00 . 511 . 52 38.0V 30.0V 24.0V 18.0V 12.0V 9.0V Vin 60°C 70°C 85°C 70°C PT6220 Series 85°C Efficiency vs Output Current Efficiency vs Output Current Ripple vs Output Current Ripple vs Output Current Thermal Derating (T a) (See Note 2) Thermal Derating (Ta) (See Note 2) Power Dissipation vs Output Current Power Dissipation vs Output Current

For assistance or to order, call (800) 531-5782 3Power Trends, Inc. 27715 Diehl Road, Warrenville, IL 60555 (800) 531-5782 Fax: (630) 393-6902 http://www.powertrends.com Adjusting the Output Voltage of Power Trends’ Wide Input Range Bus ISRs The output voltage of the Power T rends’ Wide Input Range Series ISRs may be adjusted higher or lower than the factory trimmed pre-set voltage with the addition of a single external resistor. T able 1 accordingly gives the allowable adjustment range for each model for either series as V a (min) and Va (max). Adjust Up: An increase in the output voltage is obtained by adding a resistor R2, between pin 12 (Vo adjust) and pins 5-8 (GND). Adjust Down: Add a resistor (R1), between pin 12 (Vo adjust) and pins 9-11(Vout). Refer to Figure 1 and T able 2 for both the placement and value of the required resistor; either (R1) or R2 as appropriate. Notes: 1. Use only a single 1% resistor in either the (R1) or R2 loca- tion. Place the resistor as close to the ISR as possible. 2. Never connect capacitors from V o adjust to either GND or Vout. Any capacitance added to the Vo adjust pin will affect the stability of the ISR. 4. Adjustments to the output voltage may place additional limits on the maximum and minimum input voltage for the part. The revised maximum and minimum input voltage limits must comply with the following requirements. Note that the minimum input voltage limits are also model depen- dant. V in (max) = (8 x V a)V or *30/38V , whichever is less. *Limit is 30V when inhibit function is active. PT6x0x/PT6x1x series: Vin (min) = (V a + 4)V or 9V , whichever is greater. PT6x2x series: Vo <10V; V in (min) = (V a + 2.0)V or 7.0V , whichever is greater. Vo ≥10V; V in (min) = (V a + 2.5)V Figure 1 The values of (R1) [adjust down], and R2 [adjust up], can also be calculated using the following formulae. Ro (Va – 1.25)(R1) = Vo – Va kΩ

1.25 Ro kΩR2 = Va – Vo

Where: V o = Original output voltage Va = Adjusted output voltage Ro = The resistance value fromT able 1 Table 1 ISR ADJUSTMENT RANGE AND FORMULA PARAMETERS 1Adc Rated PT6102 PT6101 PT6103 PT6122 PT6121 2Adc Rated PT6213 PT6212 PT6214 PT6223 PT6222 3Adc Rated PT6303 PT6302 PT6304 PT6323 PT6322 Vo (nom) 3.3 5.0 5.0 12.0 Va (min) 1.89 1.88 2.18 2.43 Va (max) 6.07 11.25 8.5 22.12 Ro (kΩΩΩΩΩ ) 66.5 150.0 90.9 243.0 Adjust Up µ F Ceramic (Optional) 100 µF (Req'd) Vo COMCOM Vin (R1) Adj Down PT6100/6200/6300 9,10,11 125,6,7,8 2,3,4 Vin Vo GND Vo(adj) More Application Notes

For assistance or to order, call (800) 531-5782 Application Power Trends, Inc. 27715 Diehl Road, Warrenville, IL 60555 (800) 531-5782 Fax: (630) 393-6902 http://www.powertrends.com NotesPT6100/6120/6210/6220/6300/6320 Series ISR ADJUSTMENT RESISTOR VALUES (Cont) 1Adc Rated PT6101 PT6103 PT6121 2Adc Rated PT6212 PT6214 PT6222 3Adc Rated PT6302 PT6304 PT6322 Vo (nom) 5.0 5.0 12.0 Va (req.d) 6.2 156.0k Ω 94.7kΩ (207.0)kΩ 6.4 134.0k Ω 81.2kΩ (223.0)kΩ 6.6 117.0k Ω 71.0kΩ (241.0)kΩ 6.8 104.0k Ω 63.1kΩ (259.0)kΩ 7.0 93.8k Ω 56.8kΩ (279.0)kΩ 7.2 85.2k Ω 51.6kΩ (301.0)kΩ 7.4 78.1k Ω 47.3kΩ (325.0)kΩ 7.6 72.1k Ω 43.7kΩ (351.0)kΩ 7.8 67.0k Ω 40.6kΩ (379.0)kΩ 8.0 62.5k Ω 37.9kΩ (410.0)kΩ 8.2 58.6k Ω 35.5kΩ (444.0)kΩ 8.4 55.1k Ω 33.4kΩ (483.0)kΩ 8.6 52.1k Ω (525.0)kΩ 8.8 49.3k Ω (573.0)kΩ 9.0 46.9k Ω (628.0)kΩ 9.5 41.7k Ω (802.0)kΩ 10.0 37.5k Ω (1060.0)kΩ 10.5 34.1k Ω (1500.0)kΩ 11.0 31.3k Ω 11.5 12.0 12.5 608.0k Ω 13.0 304.0k Ω 13.5 203.0k Ω 14.0 152.0k Ω 14.5 122.0k Ω 15.0 101.0k Ω 15.5 86.8k Ω 16.0 75.9k Ω 16.5 67.5k Ω 17.0 60.8k Ω 17.5 55.2k Ω 18.0 50.6k Ω 18.5 46.7k Ω 19.0 43.4k Ω 19.5 40.5k Ω 20.0 38.0k Ω 20.5 35.7k Ω 21.5 33.8k Ω 21.5 32.0k Ω 22.0 30.4k Ω ISR ADJUSTMENT RESISTOR VALUES 1Adc Rated PT6102 PT6101 PT6103 PT6122 PT6121 2Adc Rated PT6213 PT6212 PT6214 PT6223 PT6222 3Adc Rated PT6303 PT6302 PT6304 PT6323 PT6322 Vo (nom) 3.3 5.0 5.0 12.0 Va (req.d) 4.8 55.4k Ω (1610.0)kΩ (120.0)kΩ 4.9 52.0k Ω (125.0)kΩ 5.0 48.9k Ω (130.0)kΩ Table 2 R1 = (Red) R2 = Black

www.ti.com 30-Aug-2012 Addendum-Page 1 PACKAGING INFORMATION Orderable Device Status (1) Package Type Package Drawing Pins Package Qty Eco Plan (2) Lead/ Ball Finish MSL Peak Temp (3) Samples (Requires Login) PT6222A OBSOLETE SIP MODULE EBA 12 TBD Call TI Call TI PT6222H OBSOLETE SIP MODULE EBH 12 TBD Call TI Call TI PT6222J OBSOLETE SIP MODULE EBJ 12 TBD Call TI Call TI PT6222S OBSOLETE SIP MODULE EBF 12 TBD Call TI Call TI PT6223H OBSOLETE SIP MODULE EBH 12 TBD Call TI Call TI (1) The marketing status values are defined as follows: ACTIVE: Product device recommended for new designs. LIFEBUY: TI has announced that the device will be discontinued, and a lifetime-buy period is in effect. NRND: Not recommended for new designs. Device is in production to support existing customers, but TI does not recommend using this part in a new design. PREVIEW: Device has been announced but is not in production. Samples may or may not be available. OBSOLETE: TI has discontinued the production of the device. (2) Eco Plan - The planned eco-friendly classification: Pb-Free (RoHS), Pb-Free (RoHS Exempt), or Green (RoHS & no Sb/Br) - please check http://www.ti.com/productcontent for the latest availability information and additional product content details. TBD: The Pb-Free/Green conversion plan has not been defined. Pb-Free (RoHS): TI's terms "Lead-Free" or "Pb-Free" mean semiconductor products that are compatible with the current RoHS requirements for all 6 substances, including the requirement that lead not exceed 0.1% by weight in homogeneous materials. Where designed to be soldered at high temperatures, TI Pb-Free products are suitable for use in specified lead-free processes. Pb-Free (RoHS Exempt): This component has a RoHS exemption for either 1) lead-based flip-chip solder bumps used between the die and package, or 2) lead-based die adhesive used between the die and leadframe. The component is otherwise considered Pb-Free (RoHS compatible) as defined above. Green (RoHS & no Sb/Br): TI defines "Green" to mean Pb-Free (RoHS compatible), and free of Bromine (Br) and Antimony (Sb) based flame retardants (Br or Sb do not exceed 0.1% by weight in homogeneous material) (3) MSL, Peak Temp. -- The Moisture Sensitivity Level rating according to the JEDEC industry standard classifications, and peak solder temperature. Important Information and Disclaimer:The information provided on this page represents TI's knowledge and belief as of the date that it is provided. TI bases its knowledge and belief on information provided by third parties, and makes no representation or warranty as to the accuracy of such information. Efforts are underway to better integrate information from third parties. TI has taken and continues to take reasonable steps to provide representative and accurate information but may not have conducted destructive testing or chemical analysis on incoming materials and chemicals. TI and TI suppliers consider certain information to be proprietary, and thus CAS numbers and other limited information may not be available for release. In no event shall TI's liability arising out of such information exceed the total purchase price of the TI part(s) at issue in this document sold by TI to Customer on an annual basis.

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