PULSE-WIDTH-MODULATION CONTROL CIRCUITS General Description. Features. Applications

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1 查询 AZ7500BP 供应商 捷多邦, 专业 PCB 打样工厂,24 小时加急出货 General Description The is a voltage mode pulse width modulation switching regulator control circuit designed primarily for power supply control. The consists of a reference voltage circuit, two error amplifiers, an on-chip adjustable oscillator, a dead-time control (DTC) comparator, a pulse-steering control flip-flop, and an output control circuit. The precision of voltage reference (V REF ) is improved up to ± 1% through trimming and this provides a better output voltage regulation. The provides for pushpull or single-ended output operation, which can be selected through the output control. The difference between AZ7500B and AZ7500C is that they have 4.95V and 5V reference voltage respectively. The is available in standard packages of DIP-16 and SOIC-16. Features Stable 4.95V/5V Reference Voltage Trimmed to ±1.0% Accuracy Uncommitted Output TR for 200mA Sink or Source Current Single-End or Push-Pull Operation Selected by Output Control Internal Circuitry Prohibits Double Pulse at Either Output Complete PWM Control Circuit with Variable Duty Cycle On-Chip Oscillator With Master or Slave Operation Applications SMPS Back Light Inverter Charger SOIC-16 DIP-16 Figure 1. Package Types of 1

2 Pin Configuration M / P Package (SOIC-16 / DIP-16) 1IN IN 1IN IN - FEEDBACK 3 14 REF DTC 4 13 OUTPUT CTRL CT 5 12 RT 6 11 C2 GND 7 10 E2 C1 8 9 E1 Output Function Control Table Top View Figure 2. Pin Configuration of Signal for Output Control V I = GND V I = V REF Output Function Single-ended or parallel output Normal push-pull operation Functional Block Diagram Output CTRL RT CT DTC V Oscillator Dead-Time Control Comparator Pulse-Steering Flip-Flop D CK 13 8 Q Q2 C1 E1 C2 1IN 1IN - 2IN 2IN Error Amplifier 1 Error Amplifier 2 PWM Comparator 0.7mA Reference Regulator E2 REF GND FEEDBACK 3 Figure 3. Functional Block Diagram of 2

3 Ordering Information AZ Circuit Type Reference Voltage B: 4.95V C: 5.0V E1: Lead Free Blank: Tin Lead TR: Tape and Reel Blank: Tube Package M: SOIC-16 P: DIP-16 Package SOIC-16 DIP-16 Temperature Range -40 to 85 o C Part Number Marking ID Tin Lead Lead Free Tin Lead Lead Free Packing Type AZ7500BM AZ7500BM-E1 AZ7500BM AZ7500BM-E1 Tube AZ7500BMTR AZ7500BMTR-E1 AZ7500BM AZ7500BM-E1 Tape & Reel AZ7500CM AZ7500CM-E1 AZ7500CM AZ7500CM-E1 Tube AZ7500CMTR AZ7500CMTR-E1 AZ7500CM AZ7500CM-E1 Tape & Reel AZ7500BP AZ7500BP-E1 AZ7500BP AZ7500BP-E1 Tube AZ7500CP AZ7500CP-E1 AZ7500CP AZ7500CP-E1 Tube The listed part numbers are used during the transition to lead-free products. After the transition completed, lead-free products will be considered as the "standard" and we will resume the original part numbers. 3

4 Absolute Maximum Ratings (Note 1) Parameter Symbol Value Unit Supply Voltage (Note 2) 40 V Amplifier Input Voltage V I -0.3 to 0.3 V Collector Output Voltage V O 40 V Collector Output Current I O 250 ma Package Thermal Impedance (Note 3) θ JA M Package 73 o C/W P Package 67 Lead Temperature 1.6mm from case for 10 seconds 260 o C Storage Temperature Range T STG -65 to 150 o C ESD rating (Machine Model) 200 V Note 1: Stresses greater than those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated under "Recommended Operating Conditions" is not implied. Exposure to "Absolute Maximum Ratings"for extended periods may affect device reliability. Note 2: All voltage values are with respect to the network ground terminal. Note 3: Maximum power dissipation is a function of T J (max), θ JA and T A. The maximum allowable power dissipation at any allowable ambient temperature is P D = ( T J (max) - T A ) / θ JA. Operating at the absolute maximum T J of 150 o C can affect reliability. Recommended Operating Conditions Parameter Symbol Min Typ Max Unit Supply Voltage V Collector Output Voltage V C1, V C V Collector Output Current (Each Transistor) I C1, I C2 200 ma Amplifier Input Voltage V I V Current Into Feedback Terminal I FB 0.3 ma Reference Output Current I REF 10 ma Timing Capacitor C T µf Timing Resistor R T KΩ Oscillator Frequency f osc KHz PWM Input Voltage (Pin 3, 4, 14) V Operating Free-Air Temperature T A o C 4

5 Electrical Characteristics T A = 25 o C, =20V, f=10khz unless otherwise noted. Parameter Symbol Conditions Min Typ Max Unit Reference Section Output Reference Voltage V REF I REF =1mA V for AZ7500B I REF =1mA, T A = -40 to 85 o C V Output Reference Voltage V REF I REF =1mA V for AZ7500C I REF =1mA, T A = -40 to 85 o C V Line Regulation R LINE = 7V to 36V 2 25 mv Load Regulation R LOAD I REF =1mA to 10mA 1 15 mv Short-Circuit Output Current I SC V REF = 0V ma Oscillator Section C T =0.001µF, R T =30KΩ, 40 Oscillator Frequency f OSC C T =0.01µF, R T =12KΩ KHz C T =0.01µF, R T =12KΩ, T A = to 85 o C Frequency Change with Temperature f / T C T =0.01µF, R T =12KΩ, T A = % to 85 o C Dead-Time Control Section Input Bias Current I BIAS =15V, V4= 0 to 5.25V µa Maximum Duty Cycle, D(MAX) =15V, V4= 0V, % Pin 13= V REF Input Threshold Voltage V ITH Zero Duty Cycle V Maximum Duty Cycle 0 Error-Amplifier Section Input Offset Voltage V IO V3 = 2.5V 2 10 mv Input Offset Current I IO V3 = 2.5V na Input Bias Current I BIAS V3 = 2.5V µa Common-Mode Input Voltage Range V CM =7V to 36V V Open-Loop Voltage Gain G VO V O =0.5V to 3.5V db Unity-Gain Bandwidth BW 650 KHz Common-Mode Rejection Ratio CMRR db Output Sink Current (Feedback) I SINK V ID = -15mV to -5V, V3 = 0.7V ma Output Source Current (Feedback) I SOURCE V ID =15mV to 5V V3 = 3.5V 2 ma 5

6 Electrical Characteristics (Continued) Parameter Symbol Conditions Min Typ Max Unit PWM Comparator Section Input Threshold Voltage V ITH Zero duty cycle V Input Sink Current I SINK V3 = 0.7V ma Output Section Output Saturation Voltage Common Emitter Emitter Follower V CE (SAT) (SAT) V E = 0V, I C =200mA = 15V, I E = -200mA Collector Off-State Current I C (OFF) V CE = 36V, =36V µa Emitter Off-State Current I E (OFF) = V C = 36V, V E = µa Total Device Supply Current I CC Pin 6 = V REF, =15V 6 10 ma Output Switching Characteristics Rise Time t R Common Emitter ns Common Collector Fall Time t F Common Emitter Common Collector ns V 6

7 Parametr Measurement information = 20V Test Inputs KΩ uF DTC 12 FEEDBACK RT CT 1IN 1IN- 2IN 2IN- C1 E1 C2 E Ω 4W 150Ω 4W Output 1 Output 2 50KΩ 13 OUTPUT CTRL GND 7 REF 14 Test Circuit Voltage at C1 0V Voltage at C2 0V Voltage at CT DTC Threshold Voltage 0V FEEDBACK Threshold Voltage 0.7V Duty Cycle 0% MAX Voltage Waveforms 0% Figure 4. Operational Test Circuit and Waveforms 7

8 Parametr Measurement information (Continued) V I Amplifier Under Test FEEDBACK V ref Other Amplifier Figure 5. Error Amplifier Characteristics 20V 68Ω 4W t f t r Each Output Circuit Output 90% 90% C L = 15pF (See Note A) 10% 10% Note A: C L includes probe and jig capacitance. Figure 6. Common-Emitter Configuration 20V Each Output Circuit 90% 90% C L = 15pF (See Note A) 68Ω 4W Output 10% t r 10% t f Note A: C L includes probe and jig capacitance. Figure 7. Emitter-Follower Configuration 8

9 Typical Performance Characteristics 100k =20V T A =25 O C f - Oscillator Frequency (Hz) 10k 0.1uF 0.01uF 0.001uF 1k 1k 10k 100k 1M RT - Timing Resistance (ohm) Figure 8. Oscillator Frequency vs. RT and CT 100 Voltage Gain (db) =20V V O =3V T A =25 o C k 10k 100k 1M Frequency (Hz) Figure 9. Error Amplifier Small-Signal Voltage Gain vs. Frequency 9

10 Typical Applications (V I =10V to 40V) V I () KSA1010 1mH 2A (V O =5V, I O =1A) V O µ 1M k 50µ 50V C2 C1 FEED BACK AZ7500B 1IN- REF 2IN- 1IN k 5.1k 50µ 10V 2IN 16 DTC 4 GND 7 E1 9 OUTPUT CONTROL 13 E2 10 RT 6 CT µ 10V 47k 0.001µ GND 0.1 V I (-) Figure 10. Pulse Width Modulated Step -down Converter 10

11 Mechanical Dimensions SOIC-16 Unit: mm B A 20:1 0.55± φ2.0 Depth 0.06~ R0.20 R ±2 0.25(0.20min) ± B 20:1 C-C 50:1 5 ±2 C 0.20 Sφ A C 11

12 Mechanical Dimensions (Continued) DIP-16 Unit: mm ± ± ±0.15 φ3 0.10± ±0.30 R ±

13 BCD Semiconductor Corporation 3170 De La Cruz Blvd, Suite # 105 Santa Clara, CA , U.S.A Tel : , Fax : Shanghai SIM-BCD Semiconductor manufacturing Co., Ltd. 800 Yi Shan Road, Shanghai , PRC Tel: , Fax: Advanced Analog circuits (Shanghai) Corporation 8F, B Zone, 900 Yi Shan Road, Shanghai , PRC Tel: , Fax: BCD Semiconductor (Taiwan) company Limited Room 2210, 22nd Fl, 333, Keelung Road, Sec. 1, TaiPei (110), Taiwan Tel: , Fax: IMPORTANT NOTICE BCD Semiconductor Manufacturing Limited reserves the right to make changes without further notice to any products or specifications herein. BCD Semiconductor Manufacturing Limited does not assume any responsibility for use of any its products for any particular purpose, nor does BCD Semiconductor Manufacturing Limited assume any liability arising out of the application or use of any its products or circuits. BCD Semiconductor Manufacturing Limited does not convey any license under its patent rights or other rights nor the rights of others.

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