ICC1. Monolithic Linear IC PWM Controller IC for Digital Power Amplifier

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1 Ordering number : ENA0177 ICC1 Monolithic Linear IC PWM Controller IC for Digital Power Amplifier Overview Control chip for high performance stereo class-d amplifier with power range from W. Used together with the ICC3 driver chip the system will include a full protection scheme including: current limitation, short circuit protection, thermal protection and DC protection. Features High audio performance. THD+N = 1W/1 khz, THD+N < 0.05% all frequencies and output powers. Idle Noise = 50µV Awtd, typical. Bandwidth typical: 80kHz (programmable). High undistorted output power. Po = 100W/ch, THD+N=0.05%, 4Ω, 1kHz, (Vd,Vs = ±40V). Po2 = 100W/ch, THD+N=0.05%, 8Ω, 1kHz, (Vd,Vs = ±50V). Max output = 150W, THD+N = 0.05%, 8Ω. Max output = 200W, THD+N = 0.05%, 4Ω (SE or BTL mode ). Total protection scheme. Local over current limit at each FET & Output short circuit protection. Over voltage protection. Optional under voltage protection. Thermal protection. High frequency/output filter protection. Sound quality optimized intelligent input soft clipping. Flexibility in MECC control system design provided by external components MS OT No S00010 No.A0177-1/12

2 Specifications Maximum Ratings Parameter Symbol Test condition min Ratings Supply voltage V DD, V SS ±7.5 V Operating temperature Topr C Storage temperature Tstg C max Unit Operating Conditions Ratings Parameter Symbol Test condition Unit min max Supply voltage V DD, V SS Normal Operating ±4.5 ±5.5 V Operating Characteristics at Ta = 25 C, Vd, Vs = ±50V, RL = 8Ω, fi = 1kHz ICC1 + ICC3 + MOSFET whole. Ratings Parameter Symbol Test condition Unit min typ max Channel separation CS 1w/1kHz db Input sensitivity V IN,CLIP Vp Channel gain unbalance VG 1% ext Resistors ±1 db Distortion THD+N P o = 1W, AES17 LPF % Output noise V NO R g = 0, A-weighted µvrms No.A0177-2/12

3 Operating Characteristics at Ta = 25 C, VDD, VSS = ±5V, RL = 10kΩ, fi = 1kHz Parameter Symbol Test condition Quiescent current I Q V DD, enable pin high V SS, enable pin high Ratings min typ max Unit ma V d UVP start-up V d Usu fi = 0, V d, V s check pin measure V V d UVP shut-down V d Usd fi = 0, V d, V s check pin measure V V s UVP start-up V s Usu fi = 0, V d, V s check pin measure V V s UVP shut-down V s Usd fi = 0, V d, V s check pin measure V V d OVP start-up V d Osu fi = 0, V d, V s check pin measure V V d OVP shut-down V d Osd fi = 0, V d, V s check pin measure V V s OVP start-up V s Osu fi = 0, V d, V s check pin measure V V s OVP shut-down V s Osd fi = 0, V d, V s check pin measure V Rail-to-rail upper thresh Rtr-Uth fi = 0, V d, V s check = ±2V V Rail-to-rail lower thresh Rtr-Lth fi = 0, V d, V s check = ±2V V Enable input upper thresh Ena-Uth fi = 0, V d, V s check = ±2V V Enable input lower thresh Ena -Lth fi = 0, V d, V s check = ±2V V Thermal upper threshold Th-Uth fi = 0, V d, V s check = ±2V V Thermal lower threshold Th-Lth fi = 0, V d, V s check = ±2V V OC bus saturation OC bus-sat fi = 0, V d, V s check = ±2V mv Vclip+ Vcp+ Vin = 4Vp-p, fi = 5kHz V d, V s check = ±1.85V Vclip- Vcp- Vin = 4Vp-p, fi = 5kHz V d, V s check = ±1.85V V V Voffset Voff fi = 0, Vd, Vs check = ±2V mv Package Dimensions unit : mm 3148A (1.0) max (2.5) SANYO : QIP44M(10X10) No.A0177-3/12

4 Pin Assignment ICC1 Pin Functions Pin Pin name Description 1 Vd_check This is a high impedance input for monitoring the positive power stage voltage. This monitoring controls the soft clipping circuit and the over and under voltage shut down. 2 Vs_check Same as above for the negative rail. 3 Discharge This high impedance output generates a current in case of over voltage condition on the power stage voltages (Vs/Vd). This current is designed to turn-on a set of discharge transistors. 4 OC_mon For monitoring the state of the control loop and the average voltage across the zobel resistor, this open collector output will turn on in case of of-limit conditions. 5 Enable Bi-directional input/output. Input is including hysteresis for glitch free enabling of the system. 6 Thermal Open collector output for over temperature warning. 7 In_A_ch2 Pin for connecting the external loop components. This pin is an virtual ground summing pin. 8 Out_A_ch2 Pin for connecting the external loop components. This pin is an op-amp output pin. 9 In_B_ch2 Pin for connecting the external loop components. This pin is an virtual ground summing pin. 10 Out_B_ch2 Pin for connecting the external loop components. This pin is an op-amp output pin. 11 In_C_ch2 Pin for connecting the external loop components. This pin is an virtual ground summing pin. 12 PWM-_ch2 The first of two balanced high impedance current comparator output. This output is connected via level shift transistors to the driver. 13 PWM+_ch2 The second of the balanced high impedance current comparator output. When both of these outputs are low (PWM-_ch2 and PWM+_ch2) the driver will regard this as a disable. This is the way the disable is communicated to the driver. Continued on next page. No.A0177-4/12

5 Continued from preceding page. Pin Pin name Description 14 Mod_ch2 Pin for connecting the external loop components. This pin is an op-amp output pin and is connected to the modulation comparator. 15 Zobel2 For estimating the power dissipation in the zobel resistor this input is sensing the zobel voltage via a resistive network. Channel Average2 For the averaging function in ch 2 of the OC monitor a capacitor is connected to this pin. 17 Average1 For the averaging function in ch 1 of the OC monitor a capacitor is connected to this pin. 18 NTC_in Comparator input for connection of an NTC resistor. When detection a hysterese current of 100µA is sourced via this pin. 19 Zobel1 Same as pin 15, but for ch Mod_ch1 Pin for connecting the external loop components. This pin is an op-amp output pin and is connected to the modulation comparator. 21 PWM-_ch1 The first of two balanced high impedance current comparator output. This output is connected via level shift transistors to the driver. 22 PWM+_ch1 The second of the balanced high impedance current comparator output. When both of these outputs are low (PWM-_ch1 and PWM+_ch1) the driver will regard this as a disable. This is the way the disable is communicated to the driver. 23 In_C_ch1 Pin for connecting the external loop components. This pin is an virtual ground summing pin. 24 Out_B_ch1 Pin for connecting the external loop components. This pin is an op-amp output pin. 25 In_B_ch1 Pin for connecting the external loop components. This pin is an virtual ground summing pin. 26 Out_A_ch1 Pin for connecting the external loop components. This pin is an op-amp output pin. 27 In_A_ch1 Pin for connecting the external loop components. This pin is an virtual ground summing pin. 28 NC No connection 29 V DD Positive supply pin 30 UVP_en Enabling of the Under Voltage Protection by connecting to V DD and disabling by connecting to V SS. 31 Main_GND General ground for protection and all miscellaneous circuits. 32 V SS Negative supply 33 Ref_ch1 Input reference for channel 2. This pin is a local ground reference for the audio circuit of this channel. It is not connected internally to main ground. 34 CS1_ch1 Pin for connection of capacitor for the dc servo. This pin is the output of the internal dc servo amplifier. 35 CS2_ch1 Pin for connection of capacitor for the dc servo. This pin is virtual ground. 36 RECout_ch1 This pin is the ch1 receiver output after an internal series resistor of 1kΩ. By connecting a capacitor to ground a low pass function is obtained. From this pin the signal is internally passed on to the output stage. 37 Vin ch1 High impedance audio input. This input is non-inverting. 38 DC_FB_ch1 DC servo feedback point. This is a low impedance point with a correction voltage of +/- 100mV range. Connect to input via a resistor of 47kΩ. 39 Vin_ch2 High impedance audio input. This input is non-inverting. 40 DC_FB_ch2 Same as pin 38, but for ch RECout_ch2 Same as pin 36, but for ch CS1_ch2 Pin for connection of capacitor for the dc servo. This pin is the output of the internal dc servo amplifier. 43 CS2_ch2 Pin for connection of capacitor for the dc servo. This pin is virtual ground. 44 Ref_ch2 Input reference for channel 2. This pin is a local ground reference for the audio circuit of this channel. It is not connected internally to main ground. No.A0177-5/12

6 Block Diagram ICC1 Block diagram of the ICC1 is shown. The control chip consist of fundamentally of receiver sections control or feedback section, comparator and local and global protection. No.A0177-6/12

7 Receiver The receiver is a versatile input engine with a broad range of features. The receiver has a high impedance input terminal for applying single ended signal, it also have a low impedance reversed input terminal for rejecting ground noise. For obtaining good channel separation the ground connections for the analog circuits of each channel has been pinned out separately. The receiver has a soft clipping circuit that performs a controlled clipping according to the voltage applied to the output stage. The clipping level will always be Vd*0.875 for the positive waves and equally Vs*0.875 for the negative waves. This feature secures that the control system is never saturated during normal operation and eliminates clipping with recovery time, which produce a very harsh clipping sound. The clipping circuit has a soft clipping characteristics producing is very pleasant clipping sound. The input clip level is always 1.86Vp no matter what voltage applied to the output stage. The design procedure of the control system will result in a gain, which always provides the standard clip level. A dc servo is build in the receiver to secure low pop noise during start-up. Low pass filtering. Control In this block all feedback circuitry is gathered. Feedback before and after filter. This means less coil requirements and better frequency response. Flexible loop control for various properties set by external components. Easy to use table recommendations available in application note. Comparator This is where the analog signals enter the PWM domain and following features are included. Fast low power comparator. Differential output for fast and noiseless level shift without excessive power dissipation in the level shift. Enable signal coded into the 2 outputs. Protection It is here beneficial to distinguish between the local protection features and the global protection features. Local protection refers to a protection feature, which are measuring and acting on the same channel only. Where as the global protection measures on shared items and act globally via the enable bus. The local protection (zobel protection and OC detection) consists of: Zobel protection to protect against excessive power dissipation in the zobel resistor. Saturation detection referred to as OC protection. DC protection on output. When a local protection feature is acting the OC monitor bus is pulled down. Both channels share the same bus and are connected internally by open collectors. The channel is shut down by disabling the comparator output. The Global protection features: Under/over voltage of the power stage (Vd/Vs) Under voltage of the control supply voltage (VDD/VSS) The global protection act directly on the enable bus and the enable bus state is forwarded by the global protection to the local protection blocks. The local protection are now shut down the amplifier. In the case of multi channel systems, sharing the same enable bus all chipset are shutdown. Thermal protection Finally a thermal warning function is included. This function basically works independently and is connected via an open collector to the thermal bus. This function is a simple over temperature indication including hysteresis, which can be adjusted by external components. No.A0177-7/12

8 Description of Pin Functions VDD, VSS = ±5V ICC1 Pin No. Pin name Pin voltage (V) Internal equivalent circuit 1 Vd_check Vs_check Discharge OC_mon 5 5 Enable 5 Continued on next page. No.A0177-8/12

9 Continued from preceding page. Pin No. Pin name Pin voltage (V) Internal equivalent circuit 6 Thermal Pwm-_ch2 Pwm-_ch Pwm+_ch2 Pwm+_ch Zobel2 Zobel1 0 Continued on next page. No.A0177-9/12

10 Continued from preceding page. Pin No. Pin name Pin voltage (V) Internal equivalent circuit Average2 Average NTC_in NC 29 V DD 5 30 UVP_en 5 31 GND 0 32 V SS GND_ch CS1_ch1 CS1_ch CS2_ch1 CS2_ch2 0 Continued on next page. No.A /12

11 Continued from preceding page. Pin No. Pin name Pin voltage (V) Internal equivalent circuit RECout_ch1 RECout_ch Vin_ch1- Vin_ch Agnd_ch1 Agnd_ch GND_ch Out_A_ch1 Out_B_ch1 Out_A_ch2 Out_B_ch2 In_A_ch1 In_B_ch1 In_C_ch1 In_A_ch2 In_B_ch2 In_C_ch2 Mod_ch1 Mod_ch2 No.A /12

12 Specifications of any and all SANYO products described or contained herein stipulate the performance, characteristics, and functions of the described products in the independent state, and are not guarantees of the performance, characteristics, and functions of the described products as mounted in the customer's products or equipment. To verify symptoms and states that cannot be evaluated in an independent device, the customer should always evaluate and test devices mounted in the customer's products or equipment. SANYO Electric Co., Ltd. strives to supply high-quality high-reliability products. However, any and all semiconductor products fail with some probability. It is possible that these probabilistic failures could give rise to accidents or events that could endanger human lives, that could give rise to smoke or fire, or that could cause damage to other property. When designing equipment, adopt safety measures so that these kinds of accidents or events cannot occur. Such measures include but are not limited to protective circuits and error prevention circuits for safe design, redundant design, and structural design. In the event that any or all SANYO products (including technical data, services) described or contained herein are controlled under any of applicable local export control laws and regulations, such products must not be exported without obtaining the export license from the authorities concerned in accordance with the above law. No part of this publication may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photocopying and recording, or any information storage or retrieval system, of otherwise, without the prior written permission of SANYO Electric Co., Ltd. Any and all information described or contained herein are subject to change without notice due to product/technology improvement, etc. When designing equipment, refer to the "Delivery Specification" for the SANYO product that you intend to use. Information (including circuit diagrams and circuit parameters) herein is for example only; it is not guaranteed for volume production. SANYO believes information herein is accurate and reliable, but no guarantees are made or implied regarding its use or any infringements of intellectual property rights or other rights of third parties. This catalog provides information as of January, Specifications and information herein are subject to change without notice. PS No.A /12

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