CAudio-Pulse4x1100-pwr-sm维修电路原理图.pdf
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1、T E C H N I C A L S P E C I F I C A T I O N STechnical SpecificationsPower RatingsPulse 4x300Pulse 2x650Pulse 2x1100Measured per channel, both channels driven at 1kHz to no more than 0.1% THD+N8 Ohms170Wrms400Wrms700Wrms4 Ohms300Wrms650Wrms1100Wrms2 Ohms330Wrms*850Wrms*1500Wrms* Note: 2 Ohm spec is
2、at 1% THDBridged Mono16 Ohms400Wrms800Wrms1200Wrms8 Ohms600Wrms1300Wrms2200Wrms4 Ohms660Wrms*1700Wrms*3000Wrms* Note: 4 Ohm bridged spec is at 1% THDInput Sensitivity+1dBu for full outputInput Impedance20kOhmDistortion0.006% THD, 1kHz, 1dB below clip,22kHz measurement bandwidthFrequency Resp.20Hz to
3、 20kHz, +0/-0.2dB;120kHz +0/-3dBControlsPower switch, bridge mode switching,indented level controls (these maybe made tamper-proof)IndicatorsMains present, Operate, Signal, Bridge,Clip, Overtemperature, Protect, RemoteProtectionMicroprocessor supervised:overtemperature, DC on outputs, outputstage ov
4、erload, inrush current surge,mains fail and brownout.Noise50 V/microsecondDamping Factor200 ref 8 OhmOutput Connectors4x300 - Binding post or Speakon2x650, 2x1100 - Binding post and SpeakonPower115 or 230 volts AC nominal, internallyselectable, 2000VA, all channelsdriven (4x300, 2x650); 3000VA (2x11
5、00)Dimensions3.5 (89mm) x 18.2 (460mm) x 19 (483mm)- with rear rack ears depth 19.5”, -21”, 20” (494, 511, 530mm)Weight24lbs (11kg)Trade Descriptions Act: C Audio have a policy of continued product improvement and accordinglyreserve the right to change features and specifications without prior notic
6、e.Benefits of thePulse Series Very light weight Switched mode power supplies give solid performance at all power levels Microprocessor protection system Massive heatsinks for cooler operation and higher reliability Binding Post or Speakon output connector options Optional Remote control via C Audio
7、CONNECT Internal crossover card optionsPulse 4x300Into 8 Ohms170WInto 4 Ohms300WInto 2 Ohms330WPulse 2x650Into 8 Ohms400WInto 4 Ohms650WInto 2 Ohms850WPulse 2x1100Into 8 Ohms700WInto 4 Ohms1100WInto 2 Ohms1500WPower RatingsThe Pulse Series com-bines state-of-the-artswitched mode powersupplies to not
8、 onlyreduce amplifier weightby as much as 70%compared to conventionalamps, but also to providesolid, consistentperformance at all powerlevels.Occupying just 2U of rackspace, Pulse usesmassive heatsinks andfront-venting fans tokeep the electronicsreally cool, plus a built-inmicroprocessor whichcontin
9、ually monitors allthe protection aspects ofPulse - these factors alldramatically enhancereliability.Pulse amplifiers willperform for longerperiods than conventionalamplifiers at high outputlevels.The combination of theswitched mode PSU and arugged steel chassismeans inherent strength.Cooler, Lighter
10、, StrongerPulse SeriesMarch 2000RadioFans.CN 收音机爱 好者资料库Pulse P2X1100 circuit description1. switching power supply2. power amplifiers3. protection4. frontpanel & flashing lights5. PIC and system protectionRadioFans.CN 收音机爱 好者资料库1. Switching Power SupplyMains voltage is inserted via filtered IEC CN3.
11、Earth is connected directly to chassis from thebody of CN3. Live passes through fuse F2.Live and Neutral pass though a further filter consisting of C2 (X2 rated), L1 - a common modechoke - and C15 & 14 (Y2 rated).Live passes through the soft-start system, TH1, R14 and RLY1. R14 limits the initial cu
12、rrentsurge caused by the primary reservoir capacitors charging up. TH1 protects R14 if a faultcauses excessive dissipation in R14. RLY1 shorts out TH1 and R14 when the PSU is running.Live and Neutral then pass to bridge rectifier BR2 which, for the 230V setting full-waverectifies mains, smoothing pe
13、rformed by reservoir capacitors C22,23,44,45,32,33. In the 115Vsetting, this power supply is configured as a voltage doubler. Thus, the High Tension (+HT)DC generated is approximately equal for 230V mains and 115V mains.This will result in about 320Vdc between LIVE GND and +HT. LIVE GND is named as
14、suchbecause it is not isolated from mains but it is the reference point for the PSU. If you need tostick a scope probe around the primary side with the unit plugged in you must connect mainsvia an Isolation Transformer. Without this, at best you will only trip your RCD breaker, atworst you or your s
15、cope may not live to regret it. Do not forget that 320Vdc is still prettyshocking whether it is isolated or not.R36 and R37 ensure proper voltage sharing of the reservoir capacitors.Power for the switching controller circuit is provided from two sources.At start-up, the power comes from R93,113, ZD2
16、, D22 and C75. C75 is charged up to about47V through D22 from Zener regulator R93,113 and ZD2. The command to start the PSUcomes from the PIC (+5V for off, 0V to switch on) via R33. The LED in OPT1 is turned onwhich turns the transistor on, shorting out pins 5&4. While the transformer windings are c
17、oolerthan 1200C the thermal cut-out (TX5-B) will be a short circuit. So R166 will be connected tothe top of C75 and will form a Zener regulator with ZD9. The output of this zener regulator isbuffered by TR49 which then powers the switching controller circuit.C75 stores enough energy to run the contr
18、oller for long enough until the second source ofpower is ready.The second source of power comes from the transformer on pins 3 and 14. This secondary isvoltage doubled by C82, D29,31 and C74 and produces about 48Vdc on VAUX. This isconnected via D32 to the top of C75 so the controller circuit can co
19、ntinue running.VAUX is used to directly power RLY1 to short TH1 and R14 out while the PSU is running.The circuit comprising R165,R172,ZD10,R178,TR47 and R180 shut down the PSU when thevoltage on C75 falls below about 32V. while the voltage on C75 is greater than 32V, TR47 isswitched on and pulls pin
20、10 of IC6 down to 0V which enables IC6. When the voltage on C75falls below 32V, TR47 switches off and pin10 of IC6 is pulled up to 20V through R180,disabling IC6.R92,8,85,C67,ZD3 and TR23 form a time delayed drive for RYL2. At start-up, RLY2 will beopen and R127,145 will be in series with the primar
21、y of the transformer. These resistors limitthe current surge caused by charging up the secondary reservoir capacitorsC113,114,137,138. About 100ms after a successful start-up, TR23 will energise RLY2,shorting R127,145.The switching controller circuit is based around IC6, and SG3525 PWM controller. S
22、witchingfrequency is set by R175 and C199 to about 85kHz. R176 controls the dead time period,setting it to between 500ns and 1s. Outputs appear at pins11 and 14. These two outputs arecomplementary, that is when one is high (20V), the other is low (0V). Due to the dead timecontrol, neither outputs ar
23、e high at the same time but both are low for the dead time period.These outputs are fed through R169,170 to high current buffers TR40,41 and TR42,43. Thebuffered outputs push-pull drive the primary of Pulse transformer TX4. R160 is a dampingresistor used to minimise ringing caused by imperfections i
24、n TX4. The transformer has twosecondaries, each driving one IGBT in anti-phase. The turns ratio is 1.5:1 (pri:sec) and due tothe push-pull connection of the primary, the output of TX4 swings positive to about 15V to turnthe IGBT on, falls to 0V switching the IGBT off during dead time and falls to ab
25、out -15V whilstthe other IGBT is switched on.IGBTs TR24,29 form a half bridge driver for TX5. D14,23 provide flyback protection forTR24,29. These are not fitted as we are currently using IGBTs with integral flyback diodes.Snubbers R84,C56,R117,C68 damp any ringing which may occur.The drive for the t
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